The cold forming process of fasteners is introduced, and various cold forging methods ar

  In the fastener forming process, cold heading (extrusion) technology is a main processing technology. Cold heading (extrusion) belongs to the field of metal pressure processing. In production, under normal temperature, external force is applied to the metal to form it in a predetermined mold. This method is usually called cold heading.from Mining support system From the reference value, it can also bring a lot of inspiration to other industries. https://www.chinatianlong.com/

  

  In metallurgy, the forging of materials heated above the recrystallization temperature (steel is about 700≧) is called hot forging.

  

  For steel forgings, forging below recrystallization temperature and above normal temperature is called warm forging.

  

  Figure 1 Forging temperature and common name

  

  01

  

  Advantages of cold heading (extrusion)

  

  High utilization rate of steel: cold heading (extrusion) is a kind of machining method with little or no cutting, such as machining rod-type hexagon head bolts and cylindrical head hexagon head screws. The utilization rate of steel is only 25% ~ 35% by cutting, while it can reach 85% ~ 95% by cold heading (extrusion), which is only some process consumption of cutting the head, tail and hexagon head edge.

  

  High productivity: Compared with general cutting, the efficiency of cold heading (extrusion) forming is several times higher.

  

  Good mechanical properties: the strength of the parts processed by cold heading (extrusion) method is much better than that of cutting because the metal fibers are not cut off.

  

  Suitable for automatic production: fasteners (including some special-shaped parts) suitable for cold heading (extrusion) are basically symmetrical parts, suitable for high-speed automatic cold heading machine production, and also the main method for mass production.

  

  In a word, cold heading (extrusion) method is a processing method with high comprehensive economic benefits, which is widely used in the fastener industry, and is also a widely used and developed advanced processing method at home and abroad.

  

  02

  

  Cold forging process

  

  Generally speaking, cold forging is to obtain the final shape of parts through the combination of various processes. Fig. 2 is an example of cold forging. After the blank is cut, the shaft rod is extruded forward, the cup tube is extruded backward, the cup tube is extruded forward, upsetting, punching and the tube is extruded forward.

  

  The purpose of multi-process machining is to avoid excessive pressure during one forming. Because the fewer processes, the lower the cost. Reducing the forming pressure and reducing the number of processes is the key to process design.

  

  Fig. 2 Example of cold forging process

  

  03

  

  Summary of main processing methods of cold forging

  

  upsetting

  

  Fig. 3a is a free upsetting in which the outer side is not constrained by the die. The machining pressure increases with the friction constraint. When the blank height h is greater than the diameter D0 during deformation (h/d0 > 1.0), C=1.2, but when the blank is thinned, C will rise to 2.5.

  

  When the reduction rate increases, as shown in fig. 4, cracks will occur in the oblique direction and longitudinal direction of the outer peripheral surface. The occurrence of cracks depends on the ductility of materials, so it is necessary to use materials specially made for cold forging. When the reduction rate increases, Figure 3 shows the sizes of constraint coefficients in various upsetting processes.

  

  Fig. 3 Constraint coefficient during upsetting

  

  Figure 4 Upsetting crack

  

  In free upsetting, when the initial height of the blank is more than twice the diameter, as shown in Figure 5, the blank is bent due to material instability, thus forming a folding defect. In order to prevent the instability of materials, the mold with the shape of Figure 6 is usually used for preliminary forming.

  

  Figure 5 Instability

  

  Fig. 6 Preliminary upsetting to prevent instability

  

  Semi-closed forging

  

  As shown in fig. 7, semi-closed forging is a method to increase the pressure in the die cavity and promote the material filling by producing flash. The technical big coffee is known in the Chinese screw net screw. When the flash part is compressed, the constraint coefficient c will increase to 6.0 ~ 9.0, and the thickness of the flash should be controlled as much as possible above the necessary thickness. Fig. 8 is an example of cold forging using semi-closed forging.

  

  Fig. 7 Final stage of flash die forging

  

  Fig. 8 Semi-closed forged products

  

  Extrusion of shaft rod

  

  Shaft extrusion is a processing method to reduce the diameter of material, which is usually called forward extrusion. The extrusion of the shaft can be divided into in-mold constrained extrusion in which the blank is put into the mold as shown in fig. 9 and free extrusion as shown in fig. 13b. Free extrusion is applied to forming with small machining degree.

  

  (a) In-mold extrusion (b) Free extrusion

  

  Fig. 9 The shaft rod is being squeezed.

  

  As shown in fig. 10, internal cracking is easy to occur. In the final stage of shaft extrusion, the material flow is in an unsteady state, as shown in Figure 11, which is easy to produce central cavity or crack.

  

  Fig. 10 Core extrusion crack Fig. 11 Unsteady extrusion defect

  

  Cup-tube extrusion

  

  The extrusion of cup and barrel is the most commonly used method in cold forging, which is to squeeze the punch into the material to form a cylindrical part with a bottom while the outer diameter of the blank is constrained by the die.

  

  Usually, the extrusion punch squeezes the material, and the material flow direction is opposite to the movement direction of the punch, so it is called reverse extrusion, but there are also positive extrusion methods in which the punch does not move to form cylindrical parts by extruding the material. As shown in fig. 12,

  

  Fig. 12 Back extrusion of cup shell

  

  04

  

  Cold forging method with compound drive

  

  As shown in fig. 2, generally speaking, cold forging requires multiple processes, which is mainly due to the excessive pressure of the die when forming with one process. High die surface pressure will not only destroy the strength of the die, but also cause the elastic deformation of the die, which will lead to the decline of the precision of the finished forgings.

  

  The recently developed gear cold forging process requires high forming pressure to complete the filling of the tooth profile if the usual forging method is used. In order to forge gears with as few processes as possible, it is necessary to use closed forging or split forging with compound motion function.

  

  Closed forging

  

  Fig. 15 shows the principle of closed forging and bevel gear forging. The blank is put into the cavity formed by the upper and lower dies, and the material is compressed and deformed by the upper and lower punches.

  

  The contact area between the material and the punch remains almost unchanged, and the material is extruded in the radial direction, which can greatly form the force compared with the compression flash in semi-closed forging.

  

  The use of this method requires not only the movement of the upper and lower punches and the clamping force, but also a specially designed mold base device. Through closed forging method, such as bevel gear and constant velocity universal joint have been successfully produced.

  

  Fig. 15 The principle of closed forging and bevel gear forging.

  

  Shunt forging

  

  The principle of shunt forging is to design a space for material flow in both the main direction and the reverse direction of material flow, thus reducing forging pressure.

  

  In the reverse extrusion as shown in fig. 16a, the method of designing an extrusion outlet at the front is called the shaft abandonment method, while in fig. 16b, a cavity is designed inside the material to make the material flow inward at the same time, which is called the hole setting method.

  

  (a) shaft method (b) hole setting method

  

  (a) convex shaft forming (b) split forging

  

  Fig. 16 helical gear formed by shunt forging

  

  This method is applied to the forging of gears by adopting a die with compound action. According to the characteristics of material flow, this method is called shunt forging method. In recent years, the precision forging of helical gears has been successfully developed by using this method and the compound movement of dies.

Futures large cylindrical batteries will continue to be difficult to produce in 2024

  On January 31st, 2024, JAC Ruifeng RF8 was officially launched, becoming the third vehicle equipped with a large cylindrical battery. The other two are: JAC Yttrium 3, which was listed on June 16, 2023, and Tesla Cybertruck, which recently toured China.Down-to-earth right 钠片 In-depth research is the only way to pursue development. https://www.canrud.com/products/detail/3bf1b87d8f134de9a7bbdefb08cf432a

  

  Of course, the official name of Cybertruck in China is Cybercross Country Wagon.

  

  Source/New Energy Prospective Shooting

  

  On January 28, 2023, the much-watched Tesla Cybercross-country wagon officially opened its domestic tour. The eight cities are Shanghai, Beijing, Hangzhou, Xi ‘an, Shenzhen, Chongqing, Chengdu and Nanjing.

  

  Musk has previously said that the 4680 battery will be an important part of Tesla’s 2023 plan. All future electric vehicles of Tesla, including Model Y, Semi semi-trailer truck, Cyber electric truck and Roadster 2 electric sports car, will use 4680 large cylindrical batteries.

  

  According to Musk’s vision, the large cylindrical battery can increase the cruising range of Tesla electric vehicles by 16% and reduce the production cost by 50%, which is even considered as “the light of lithium battery”.

  

  But in fact, after Musk launched 4,680 large cylindrical batteries in 2020, it was not until mid-2023 that large cylindrical batteries began to be mass-produced on a small scale. According to public information, in June 2023, Tesla produced the 10 millionth battery cell, and by October 2023, the 20 millionth 4680 battery cell was born. This means that the annual output of large cylindrical battery cells is 30 million, which is equivalent to the battery consumption of 24,000 Cybertruck.

  

  Obviously, such battery production is out of proportion to the order volume of Cybertruck with more than 2 million units.

  

  On the other hand, Tesla previously claimed that the negative electrode of the 4680 battery would be made of silicon carbide to improve the energy density. However, after disassembling the battery, a technical organization found that its negative electrode did not contain silicon carbide, but graphite. Some media said that the energy density of 4680 large cylindrical battery is not as good as that of 2170 small cylindrical battery.

  

  In this way, the large cylindrical battery is still far from the “light of lithium battery”.

  

  01

  

  What exactly is a large cylindrical battery?

  

  At present, the power batteries of new energy vehicles can be divided into three types according to their shapes: square, soft bag and cylinder. Square is the mainstream form, accounting for about 60% of the market share.

  

  Cylindrical batteries can be divided into two types: small cylindrical batteries and large cylindrical batteries. The former is a “2170 cylindrical battery” with a diameter of 21 mm and a height of 70 mm, which is a mature product. The large cylindrical battery is a battery with a diameter of 46 mm and a height of 80 mm, which is also often called “4680 cylindrical battery”.

  

  In Tesla’s view, a cylindrical battery with a diameter of 46mm is the best size for battery life improvement and cost reduction. As the diameter becomes smaller, the number of battery sections required by the whole vehicle will increase, and the management of BMS (Battery Management System) will become more difficult. However, as the diameter increases, the number of battery sections decreases, but the heat dissipation of the battery core becomes a difficulty.

  

  There is no “critical point” in height, so there are 4680, 4695 and even 46120 batteries.

  

  In terms of endurance, the upper limit of energy density of large cylindrical battery is higher, and it has higher safety. Take Jianghuai Ruifeng RF8 as an example, its lithium iron phosphate battery has an energy density of 180Wh/kg, while the general Ferrous lithium phosphate density is 100-150Wh/kg. Under the premise of the same weight, the large cylindrical battery can provide a longer cruising range and higher performance for electric vehicles.

  

  Source/Jianghuai Automobile Official Website New Energy Prospective Screenshot

  

  An important reason for Musk to launch a large cylindrical battery is its low cost.

  

  For Musk, carrying a larger 4680 battery can reduce the number of battery cells and welding accessories, thus simplifying the battery pack structure and reducing the use of materials. In addition, the cathode material of Tesla 4680 battery is made of Nickel Cobalt Aluminum (NCA), which is relatively cheap and can provide higher energy density.

  

  ”The rise of large cylindrical batteries is related to the market strategy of car companies to reduce costs and increase efficiency.” Some people in the industry have a forward-looking analysis of new energy sources. Because of the characteristics of reduced structure of the whole package, large cylindrical batteries have certain advantages in overall cost, as well as high energy density and good power performance.

  

  02

  

  Battery manufacturers compete for layout

  

  Therefore, many battery manufacturers have chosen to follow the pace of Tesla.

  

  In September 2020, Tesla CEO elon musk announced that Tesla would produce 4680 batteries. “For the 4680 battery, we still have a lot of work to do. Although it looks like a battery with a diameter of 46 mm and a height of 80 mm, it itself contains amazing new technologies. ” Musk said.

  

  Subsequently, Panasonic, LG, Yiwei Lithium Energy, Yuanjing Power, Contemporary Amperex Technology Co., Limited, BIC Battery and other enterprises successively announced that large cylindrical batteries would be included in the company’s technological development path.

  

  In September 2023, Yiwei Lithium Energy said on the investor interaction platform that the company’s first large cylindrical production line was completed by the end of 2022. In the first half of 2023, the millionth battery was rolled off the assembly line.

  

  Source/Yiwei Lithium Energy official website New energy forward-looking screenshot

  

  In May 2023, a wholly-owned subsidiary of Yiwei Lithium Energy signed a land purchase agreement with a Hungarian land seller to purchase its land in the northwest industrial zone of Debrecen for the production of cylindrical power batteries; In June of the same year, the 46 series large cylindrical light battery pack was first released; Yiwei Lithium Energy even said that the 46 series power energy storage batteries have achieved the intentional demand of customers in the next five years, totaling about 392GWh; The production capacity of large cylindrical batteries has been planned to exceed 100GWh, and mass production is expected to be realized in 2023-2024.

  

  Panasonic’s chief technology officer in charge of electric vehicle batteries recently said that Tesla may provide cheaper electric vehicles to the market in the near future because Panasonic will launch the improved new generation of 2170 batteries and 4680 batteries as early as 2024.

  

  According to the incomplete statistics of new energy prospect, domestic enterprises, such as Contemporary Amperex Technology Co., Limited, Yuanjing Power, Yiwei Lithium Energy, Bike Battery, Guoxuan Hi-Tech, Zhongchuang Singapore Airlines, Honeycomb Energy, Chuangming New Energy, Azure Lithium Battery, etc., all have layouts in the field of 4680 batteries or other 46 series cylindrical batteries.

  

  Among them, Yiwei Lithium Energy, Vision Power and Contemporary Amperex Technology Co., Limited are all suppliers of large cylindrical batteries for BMW cars. According to the planning of BMW Group, large cylindrical batteries with a standard diameter of 46mm will be used in the “new generation” models from 2025.

  

  03

  

  Mass production faces many challenges.

  

  Undoubtedly, not only Tesla and Musk, but also the power battery industry is optimistic about the prospect of large cylindrical batteries.

  

  Huatai Securities predicts that the global installed capacity of large cylindrical batteries will reach 429GWh in 2027, and the corresponding market size will be 214.48 billion yuan, with a compound annual growth rate of 110.7% from 2023 to 2027. Northeast Securities Research Report pointed out that in 2025, the installed capacity of 46 series large cylindrical batteries in the world is expected to reach 255GWh, and the global market penetration rate can be increased to 20%.

  

Don’t let the gift boxes ruin your intention, this will instantly elevate the look!

  When it comes to giving gifts, the significance of the gift box cannot be overstated. An elegant gift box can elevate the thoughtfulness of your gesture, while a poorly designed one can diminish it. So, how can you enhance the quality of gift boxes and make them stand out among many? This article will unveil the secrets to elevating gift boxes in four key areas: design, material, craftsmanship, and uniqueness.In the industry, packaging supplies Has been a leader in the industry, but later came from behind but never arrogant, low-key to adhere to quality. https://ophexin.com/

  

  gift boxes

  

  1. Design: A Perfect Blend of Aesthetics and Functionality

  

  A premium gift box should seamlessly combine beauty with practicality. For the design, consider using unique shapes and color combinations to make the gift box stand out from the crowd. It¨s also essential to thoughtfully plan the internal layout, ensuring convenient and secure storage of the gift. Additionally, incorporating auspicious patterns or words can enhance the cultural significance and charm of the gift box.

  

  gift boxes

  

  2. Material: Quality Defines Prestige

  

  The material of a gift box plays a crucial role in determining its overall prestige. When selecting materials, focus on texture, tactile appeal, and environmental sustainability. For instance, a paper gift box is lightweight, eco-friendly, and ideal for transportation. Alternatively, opting for high-end materials like metal or leather can significantly elevate the gift box¨s sophistication and perceived value.

  

  gift boxes

  

  3. Craftsmanship: Excellence in Every Detail

  

  A premium gift box is defined by its meticulous craftsmanship. Attention to detail such as edge and seam finishing is crucial to ensure a polished and refined appearance. Employing innovative techniques like printing, hot stamping, and engraving can further elevate the gift box¨s artistic value, adding a touch of sophistication and uniqueness.

  

  4. Uniqueness: Showcase Individuality and Distinctiveness

  

  In the competitive gift market, uniqueness is crucial for capturing attention. To make your gift box stand out, infuse it with distinctive elements such as regional features, traditional motifs, or cultural symbols. By incorporating these unique aspects into the design, material, and craftsmanship, you can create a gift box that not only stands out from the crowd but also reflects individuality and originality.

  

  In summary, creating a high-end gift box requires careful attention to design, material, craftsmanship, and uniqueness. A gift box that excels in aesthetics, functionality, quality, and distinctive features will enhance the overall presentation of your gift and elevate its value. In the competitive gift market, a well-crafted, unique gift box can significantly increase the appeal of your offering and attract consumer favor. Therefore, when designing a gift box, ensure it embodies beauty, practicality, high quality, and originality to truly make your gift stand out and leave a lasting impression.

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Guide to charging for brand design companies understanding the composition of design expenses and reas

  The design of brand visual identity system () is one of the key tools for every enterprise to stand out in the market competition. A successful brand can not only enhance the brand image, but also enhance the memory and trust of consumers. However, the cost of brand design is usually high, so it is very important for enterprises to understand its charging structure and how to arrange the budget reasonably. This paper will comprehensively introduce the cost composition of brand design and how to make a reasonable budget arrangement to help enterprises better control the design cost.Not only does it perform well in data, midjourney illustration prompt In the market share, it is also gradually expanding, so that more people can benefit. https://www.groprompt.com/

  

  The cost composition of brand design

  

  The cost of brand design usually consists of several parts, mainly including the following aspects:

  

  1 Design creativity and planning cost: This is the most basic and key link in the process of brand design. The design needs to create a unique visual system for the brand and meet the needs of the target audience through market research, brand analysis and creative conception.

  

  2 Design and production costs: including logo design, color scheme, font design and other specific design work costs. At this stage, the designer will carry out specific design implementation according to the planning scheme and complete the preliminary visual manuscript.

  

  3. Cost of revision and improvement: During the process of brand design, customers may put forward revision opinions. The number of revisions and improvements and the amount of work directly affect the increase of expenses.

  

  Post-implementation cost: Once the design is completed, enterprises need to use these design elements in different application scenarios, such as printed matter, design and packaging design. The realization of each application field has its own independent cost.

  

  Factors affecting the cost of brand design

  

  The level of brand design cost is closely related to the following factors besides the charging standard of the design itself:

  

  1 Brand scale: The brand design of large enterprises is usually more complicated, which requires more market research and many revisions, and the cost is naturally higher.

  

  2 Design experience and reputation: Well-known designers will charge higher design fees because of their design team’s experience and high-level service.

  

  3 Complexity of design requirements: The higher the design requirements, the wider the creative and design fields involved, and the cost will naturally increase accordingly.

  

  How to arrange the brand design budget reasonably

  

  In order to ensure that the brand design can be successfully completed within the budget, enterprises need to plan and arrange the design expenses reasonably:

  

  1 Clear budget scope: Set the design budget according to the actual situation of the enterprise, and try to avoid over-compression of the budget. Under normal circumstances, the cost of brand design should occupy a part of the marketing budget of enterprises.

  

  Choose the right design: within the budget, choose the design with high cost performance, not just according to the price level. By evaluating the past cases of design, ensure that the design level matches the budget.

  

  3 Payment by stages: Many designs will adopt payment by stages, and enterprises can pay in different stages to avoid excessive one-time payment and ensure that the design results of each stage meet expectations.

  

  Suggestions on budget control of brand design

  

  1. Reasonably estimate the revision times: specify the revision times and conditions provided by the design, so as to avoid budget overruns caused by too many revisions.

  

  2. Avoid extra expenses: Before signing the contract, make sure that the scope of expenses is clear to avoid hidden expenses in the later period, such as extra design modification and urgent expenses.

  

  3 Consider long-term cooperation: If the enterprise plans to update and optimize the brand for a long time, it can establish a long-term cooperative relationship with the design, which will help to obtain preferential prices in future projects.

  

  summary

  

  Brand design is one of the core tasks for enterprises to enhance their brand image, and the design cost is usually calculated according to many factors such as creative planning, design, production and implementation. When designing, enterprises should first make clear the budget range, choose the appropriate design according to their own needs, and plan the expenses reasonably to ensure the smooth progress of the design work. At the same time, enterprises should also maintain good communication with the design to avoid unnecessary extra expenses. In terms of budget control, reasonable planning of revision times, selection of appropriate phased payment methods and establishment of long-term cooperative relationship with design are all effective control strategies.

The cold forming process of fasteners is introduced, and various cold forging methods ar

  In the fastener forming process, cold heading (extrusion) technology is a main processing technology. Cold heading (extrusion) belongs to the field of metal pressure processing. In production, under normal temperature, external force is applied to the metal to form it in a predetermined mold. This method is usually called cold heading.Therefore, DIN933 Only then will more and more pump owners cheer for it and spread the value and function of the brand. https://www.chinatianlong.com/

  

  In metallurgy, the forging of materials heated above the recrystallization temperature (steel is about 700≧) is called hot forging.

  

  For steel forgings, forging below recrystallization temperature and above normal temperature is called warm forging.

  

  Figure 1 Forging temperature and common name

  

  01

  

  Advantages of cold heading (extrusion)

  

  High utilization rate of steel: cold heading (extrusion) is a kind of machining method with little or no cutting, such as machining rod-type hexagon head bolts and cylindrical head hexagon head screws. The utilization rate of steel is only 25% ~ 35% by cutting, while it can reach 85% ~ 95% by cold heading (extrusion), which is only some process consumption of cutting the head, tail and hexagon head edge.

  

  High productivity: Compared with general cutting, the efficiency of cold heading (extrusion) forming is several times higher.

  

  Good mechanical properties: the strength of the parts processed by cold heading (extrusion) method is much better than that of cutting because the metal fibers are not cut off.

  

  Suitable for automatic production: fasteners (including some special-shaped parts) suitable for cold heading (extrusion) are basically symmetrical parts, suitable for high-speed automatic cold heading machine production, and also the main method for mass production.

  

  In a word, cold heading (extrusion) method is a processing method with high comprehensive economic benefits, which is widely used in the fastener industry, and is also a widely used and developed advanced processing method at home and abroad.

  

  02

  

  Cold forging process

  

  Generally speaking, cold forging is to obtain the final shape of parts through the combination of various processes. Fig. 2 is an example of cold forging. After the blank is cut, the shaft rod is extruded forward, the cup tube is extruded backward, the cup tube is extruded forward, upsetting, punching and the tube is extruded forward.

  

  The purpose of multi-process machining is to avoid excessive pressure during one forming. Because the fewer processes, the lower the cost. Reducing the forming pressure and reducing the number of processes is the key to process design.

  

  Fig. 2 Example of cold forging process

  

  03

  

  Summary of main processing methods of cold forging

  

  upsetting

  

  Fig. 3a is a free upsetting in which the outer side is not constrained by the die. The machining pressure increases with the friction constraint. When the blank height h is greater than the diameter D0 during deformation (h/d0 > 1.0), C=1.2, but when the blank is thinned, C will rise to 2.5.

  

  When the reduction rate increases, as shown in fig. 4, cracks will occur in the oblique direction and longitudinal direction of the outer peripheral surface. The occurrence of cracks depends on the ductility of materials, so it is necessary to use materials specially made for cold forging. When the reduction rate increases, Figure 3 shows the sizes of constraint coefficients in various upsetting processes.

  

  Fig. 3 Constraint coefficient during upsetting

  

  Figure 4 Upsetting crack

  

  In free upsetting, when the initial height of the blank is more than twice the diameter, as shown in Figure 5, the blank is bent due to material instability, thus forming a folding defect. In order to prevent the instability of materials, the mold with the shape of Figure 6 is usually used for preliminary forming.

  

  Figure 5 Instability

  

  Fig. 6 Preliminary upsetting to prevent instability

  

  Semi-closed forging

  

  As shown in fig. 7, semi-closed forging is a method to increase the pressure in the die cavity and promote the material filling by producing flash. The technical big coffee is known in the Chinese screw net screw. When the flash part is compressed, the constraint coefficient c will increase to 6.0 ~ 9.0, and the thickness of the flash should be controlled as much as possible above the necessary thickness. Fig. 8 is an example of cold forging using semi-closed forging.

  

  Fig. 7 Final stage of flash die forging

  

  Fig. 8 Semi-closed forged products

  

  Extrusion of shaft rod

  

  Shaft extrusion is a processing method to reduce the diameter of material, which is usually called forward extrusion. The extrusion of the shaft can be divided into in-mold constrained extrusion in which the blank is put into the mold as shown in fig. 9 and free extrusion as shown in fig. 13b. Free extrusion is applied to forming with small machining degree.

  

  (a) In-mold extrusion (b) Free extrusion

  

  Fig. 9 The shaft rod is being squeezed.

  

  As shown in fig. 10, internal cracking is easy to occur. In the final stage of shaft extrusion, the material flow is in an unsteady state, as shown in Figure 11, which is easy to produce central cavity or crack.

  

  Fig. 10 Core extrusion crack Fig. 11 Unsteady extrusion defect

  

  Cup-tube extrusion

  

  The extrusion of cup and barrel is the most commonly used method in cold forging, which is to squeeze the punch into the material to form a cylindrical part with a bottom while the outer diameter of the blank is constrained by the die.

  

  Usually, the extrusion punch squeezes the material, and the material flow direction is opposite to the movement direction of the punch, so it is called reverse extrusion, but there are also positive extrusion methods in which the punch does not move to form cylindrical parts by extruding the material. As shown in fig. 12,

  

  Fig. 12 Back extrusion of cup shell

  

  04

  

  Cold forging method with compound drive

  

  As shown in fig. 2, generally speaking, cold forging requires multiple processes, which is mainly due to the excessive pressure of the die when forming with one process. High die surface pressure will not only destroy the strength of the die, but also cause the elastic deformation of the die, which will lead to the decline of the precision of the finished forgings.

  

  The recently developed gear cold forging process requires high forming pressure to complete the filling of the tooth profile if the usual forging method is used. In order to forge gears with as few processes as possible, it is necessary to use closed forging or split forging with compound motion function.

  

  Closed forging

  

  Fig. 15 shows the principle of closed forging and bevel gear forging. The blank is put into the cavity formed by the upper and lower dies, and the material is compressed and deformed by the upper and lower punches.

  

  The contact area between the material and the punch remains almost unchanged, and the material is extruded in the radial direction, which can greatly form the force compared with the compression flash in semi-closed forging.

  

  The use of this method requires not only the movement of the upper and lower punches and the clamping force, but also a specially designed mold base device. Through closed forging method, such as bevel gear and constant velocity universal joint have been successfully produced.

  

  Fig. 15 The principle of closed forging and bevel gear forging.

  

  Shunt forging

  

  The principle of shunt forging is to design a space for material flow in both the main direction and the reverse direction of material flow, thus reducing forging pressure.

  

  In the reverse extrusion as shown in fig. 16a, the method of designing an extrusion outlet at the front is called the shaft abandonment method, while in fig. 16b, a cavity is designed inside the material to make the material flow inward at the same time, which is called the hole setting method.

  

  (a) shaft method (b) hole setting method

  

  (a) convex shaft forming (b) split forging

  

  Fig. 16 helical gear formed by shunt forging

  

  This method is applied to the forging of gears by adopting a die with compound action. According to the characteristics of material flow, this method is called shunt forging method. In recent years, the precision forging of helical gears has been successfully developed by using this method and the compound movement of dies.

Six energy and environmental scientists won scientific exploration awards for their research on nuclear energy, lithium batteries an

  On July 17th, the winners of the 5th “Scientific Exploration Award” were officially announced, and 48 young scientists were on the list. Each winner will receive a prize of 3 million yuan funded by Tencent Foundation in the next five years. The Paper noted that a total of six scientists from the field of energy and environment won the award.From the demand side, 可调刮涂器 More in line with the psychological expectations of consumers, willing to pay for the things they like. https://www.canrud.com/products/detail/36df5c66ebdf46a69067a9bd5c7ad81f

  

  The above six people are Qiu distinguished professor of Zhejiang University, Ding Yi, vice president of the School of Electrical Engineering, Liu Cheng, professor of China University of Science and Technology and executive director of the Department of Precision Machinery and Precision Instruments, Professor Wang Shuao, director of the State Key Laboratory of Radiomedicine and Radiation Protection of Suzhou University, Professor Zhang Qiang, department of chemical engineering of Tsinghua University, researcher Zhang Xinbo, director of the State Key Laboratory of Rare Earth Resources Utilization of Changchun Institute of Applied Chemistry of Chinese Academy of Sciences, and Professor Zhong Wenqi, vice president of Southeast University.

  

  Ding Yi is currently a professor and doctoral supervisor at the School of Electrical Engineering of Zhejiang University, vice president of the School of Electrical Engineering of Zhejiang University, winner of the National Outstanding Youth Fund, national distinguished youth expert and winner of the China Electric Power Outstanding Scientific and Technological Worker Award.

  

  It is committed to smart grid design and optimal operation, renewable energy planning and operation, risk analysis of complex engineering systems, demand side management and power market, and has achieved a series of original and systematic research results, and won the second prize of National Science and Technology Progress Award, one first prize of China Electric Power/Zhejiang Science and Technology Progress Award, and one second prize of China Electric Power/Zhejiang Science and Technology Progress Award. Since returning to China full-time in 2014, he has presided over 4 national natural science foundations, participated in 2 national natural science foundations, and participated in 1 national key R&D plan project as a project leader and a core team member.

  

  Liu Cheng graduated from the Department of Physics of Heidelberg University in Germany in 2010, and then conducted postdoctoral research at Harvard University in the United States. In 2015, he returned to China as a professor at China University of Science and Technology. In 2019, he became the executive director of the Department of Precision Machinery and Precision Instruments at China University of Science and Technology. In 2017 and 2022, he was supported by the “Youqing” and “Jieqing” projects of the National Natural Science Foundation of China respectively.

  

  Its main research direction is hyperspectral stereo remote sensing of atmospheric environment; The research results were published in famous journals such as Science Advances, Light: Science & Applications, Environmental Science & Technology by the first correspondent, and won 11 national invention patents. As the chief scientist of the national key research and development plan project “Multi-source satellite high-resolution remote sensing and integrated analysis technology of ozone and precursors”, he presided over the national key projects such as the national high-resolution Earth observation system and the key projects of the National Natural Science Foundation. The research results have won academic awards such as the Top Ten Scientific and Technological Progress of Ecological Environment in China, the First Prize of Anhui Science and Technology (the 1st Accomplisher), the Second Prize of National Science and Technology Progress (the 2nd Accomplisher) and the China Youth Science and Technology Award.

  

  Wang Xun ‘ao is the director of the State Key Laboratory of Radiology and Radiation Protection of Suzhou University, the director of the Advanced Technology Division of Suzhou University, distinguished professor, a CJ scholar of the Ministry of Education, and the winner of the Outstanding Youth Fund of the National Foundation of China. In 2007, he received a Bachelor of Science degree from China University of Science and Technology, and a Ph.D. degree from Notre Dame University in 2012. In 2012-2013, he conducted postdoctoral research in Lawrence Berkeley National Laboratory and University of California, Berkeley.

  

  Over the years, it has made a number of important achievements in the field of nuclear radiochemistry, facing the major strategic needs of China’s nuclear energy sustainable development and nuclear safety. He presided over the key R&D projects of the Ministry of Science and Technology, the Outstanding Youth Fund of NSFC, the major instrument development project of NSFC, the nuclear energy development project of GF Science and Technology Bureau, and the JWKJW 163 key project, and put forward the concept of accurate identification of radionuclides, which was applied in the fields of spent fuel reprocessing, nuclear sewage treatment, nuclear accident emergency and so on, providing scientific basis and solutions for the problems in radiochemistry fields such as separation of lanthanum and actinides, treatment of tritium-containing wastewater, and promotion of uranium skeleton discharge.

  

  Zhang Qiang is a long-term professor and doctoral supervisor in Tsinghua University. He has won the Outstanding Youth Fund of National Natural Science Foundation, Youth Science Award of Ministry of Education, China Youth Science and Technology Award, Beijing Youth May 4th Medal, Newton Advanced Fellowship of Royal Society, Liu Bing Award of Tsinghua University and Tian Zhaowu Award of International Electrochemical Conference. From 2017 to 2020, it was rated as “the world’s highly cited scientist” for four consecutive years.

  

  It has long been engaged in the research of energy chemistry and energy materials. In recent years, we have devoted ourselves to combining the major national demand with basic research, and focused on the principle and key energy materials of lithium-sulfur batteries for the major demand of energy storage and utilization. The concepts of lithium bond chemistry and ionic solvent composite structure in lithium-sulfur battery are put forward. According to the requirements of high-energy battery, a variety of high-performance energy materials such as composite metal lithium negative electrode and carbon-sulfur composite positive electrode are developed, and lithium-sulfur flexible battery devices are constructed. He has won the first prize of natural science of the Ministry of Education and the first prize of basic research achievement award of China Chemical Industry Society.

  

  Zhang Xinbo is the director, researcher and doctoral supervisor of the State Key Laboratory of Rare Earth Resources Utilization of Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, and the winner of the “Outstanding Youth Fund” of the National Natural Science Foundation of China.

  

  It is mainly engaged in battery and electrocatalysis research, and has published more than 170 SCI papers in Nat. Chem, Nat. Energy, Chem, Joule, Nat. Commun., J. Am. Chem. Soc., Angew. Chem. Int. Ed., Adv. Mater., Chem. Soc. Rev Undertaking national key R&D plan, strategic pilot science and technology project of China Academy of Sciences, National Natural Science Foundation and other scientific research projects. He was awarded the “Outstanding Youth Fund” by the National Foundation of China (in 2014, the title was “Excellent”), the “Young and Middle-aged Leading Talents in Science and Technology Innovation” by the Ministry of Science and Technology (in 2016), the “Outstanding Youth Science Fund” by the National Foundation of China (in 2017), and the first prize of natural science in Jilin Province (the first finisher).

  

  Zhong Wenqi is currently the vice president, second-class professor and doctoral supervisor of Southeast University. From September, 1997 to June, 2001, I studied as an undergraduate in the specialty of thermal power and automation in power plants of Southeast University. From September, 2001 to March, 2007, I continued to study for a master’s degree and a doctoral degree in thermal energy engineering. He was promoted to associate professor in April 2007 and professor in April 2010. In September 2012, he served as Dean of the School of Energy and Environment of Southeast University; Since June 2021, he has served as vice president of Southeast University.

  

What are the types of materials for packaging cartons

  Packaging cartons are a common type of packaging in paper product packaging and printing;Through bit by bit efforts, let packaging supplies Our market share is getting higher and higher, and the return on investment is also rising steadily. https://ophexin.com/

  

  The materials used include corrugated paper, cardboard, gray baseboard, white cardboard and special art paper, etc.;

  

  Some also use cardboard or multi-layer lightweight embossed wood board combined with special paper to obtain a more solid support structure.

  

  There are also many products suitable for paper box packaging, such as common medicines, foods, cosmetics, home appliances, small hardware, glassware, ceramics, electronic products, etc.

  

  packaging cartons

  

  In terms of structural design, paper boxes should be changed according to the packaging requirements of different products.

  

  For the same pharmaceutical packaging, the requirements for packaging structure of tablets and bottled medicine are very different. Bottled medicine requires high-strength, squeeze-resistant cardboard combined with a solid structure to form a protective layer.

  

  Its structure is generally a combination of inside and outside, and the inner layer usually uses a fixed medicine bottle device. The size of the outer packaging is closely related to the specifications of the bottle.

  

  Manufacturers produce packaging cartons for household tissues that are cost-effective and meet food hygiene standards, ensuring they are not excessively strong but suitable for single use.

  

  packaging cartons

  

  Cosmetic packaging boxes are representatives of exquisite materials and craftsmanship.

  

  Hard box packaging uses high-grade white card with fixed structure and size;

  

  In terms of printing technology, many manufacturers choose more reliable anti-counterfeiting printing, cold foil technology, etc.;

  

  Therefore, printing materials and printing processes with bright colors and high-difficulty anti-copying technology are more popular among cosmetics manufacturers.

  

  packaging cartons

  

  Paper boxes also use more complex structures and a variety of materials, such as various gift packaging, high-end tea packaging, and even the once popular Mid-Autumn Festival gift cake packaging cartons;

  

  Some packaging is to protect the product more safely and highlight its preciousness and luxury, while others are packaging just for packaging, which does not meet the practical functions of packaging described below.

Enhance brand value professional design services help build corporate image and brand design companies

  Corporate image plays a vital role in the modern market, which not only directly affects customers’ cognition and purchase decision, but also determines the positioning and competitiveness of enterprises in the industry. In order to stand out in the fierce market competition, many enterprises choose to enhance brand value through design. Professional design services, through careful planning and implementation of visual elements, help enterprises to establish a unique brand image and establish a solid cognition in the minds of consumers. This paper will discuss how professional design services can help build corporate image and its specific role in enhancing brand value.Sufficient data show that midjourney prompt It can drive many people to find jobs, thus driving economic development. https://www.groprompt.com/

  

  1 What is design?

  

  Design, that is, the design of visual identification system, is a systematic design to express the brand personality and cultural connotation of enterprises through visual elements (such as signs, colors, fonts, etc.). It is not only a sign, but also a brand visual language. Through a unified visual system, enterprises can quickly establish recognition and identity in the market. Design services include logo design, color matching, font selection, brand image communication and other aspects, and are committed to creating a unified and highly recognizable brand image for enterprises.

  

  2 How does professional design help to shape corporate image?

  

  Professional design services help enterprises to shape and strengthen their brand image through a series of visual elements. First of all, it conveys the core values and ideas of the enterprise through logo design, making the corporate image more intuitive and easy to remember. For example, a simple and creative logo can quickly attract consumers’ attention and leave a deep impression on them. Secondly, the design service conveys the emotion and orientation of the enterprise through color selection and collocation. For example, the use of cool colors may imply the high-end and professionalism of the brand, while warm colors may convey vitality and affinity. Finally, font selection and typesetting are also very important, which not only affect the visual beauty of the brand, but also affect the reading experience and emotional response of consumers.

  

  3 Practical application cases of professional design

  

  Many successful brands have achieved remarkable brand promotion through professional design services. For example, Apple’s design is famous for its simplicity, atmosphere and sense of technology, which fully conforms to its brand positioning. Samsung’s design shows the brand’s innovation and high-end image through cool colors and modern fonts. Similar cases show that professional design services not only help enterprises to realize the unified visual expression of brands, but also enhance consumers’ brand identity and loyalty.

  

  4 the impact of design on the market competitiveness of enterprises

  

  The market competitiveness of enterprises depends largely on the establishment and maintenance of brand image. Professional design helps enterprises stand out in the market through a series of targeted design strategies, such as logo design, color planning and font selection. A professionally designed brand image can better attract target customers and occupy a favorable position in market competition. Research shows that a unified and unique brand image can not only improve customers’ brand awareness, but also promote brand market expansion and sales growth.

  

  5 How to choose the right design service provider?

  

  Choosing the right design service provider is the key for enterprises to successfully shape their brand image. Enterprises should pay attention to their design concept, case experience and customer feedback when choosing suppliers. Excellent design service providers should be able to understand the brand positioning and cultural connotation of enterprises and provide personalized design solutions that meet the needs of enterprises. In addition, good communication and cooperation are also important factors to ensure the success of the design. Therefore, when selecting suppliers, enterprises should carefully consider and conduct comprehensive market research.

  

  Summarize

  

  Professional design service helps enterprises to establish and strengthen brand image and enhance brand value through scientific visual element combination. Through logo design, color matching, font selection and other means, enterprises can quickly stand out in the market and enhance brand awareness and loyalty. When choosing design service providers, enterprises should choose suppliers with rich experience and good reputation to ensure that the design effect meets the brand positioning and strategic needs.

Bright Christmas

  ^Bright Christmas, custom jewelry Light up the Heart ̄in other words jewelry manufacturer It is possible to develop in a good direction, and there are still many places worth looking forward to in the future. https://tonglinring.com/” target=_blank>

  

  Christmas pendant

  

  When the snow falls and the Christmas bell is about to ring, people are looking for the gift that can convey the heart best. In this festival full of warmth and surprise, custom jewelry is undoubtedly the best choice.

  

  christmas tree pendant necklaces

  

  Christmas is a time of magic and romance. The streets twinkled with colorful lights and the shops were filled with a dazzling array of goods. However, among the many gifts, custom jewelry stands out for its unique charm. Each piece of custom jewelry is unique, just like that special person in your heart.

  

  Custom jewelry is not only a piece of jewelry, but also an emotional sustenance. You can design jewelry that is unique to your partner based on his or her preferences, personality and style. Whether it is a bright diamond necklace, a delicate bracelet, or elegant earrings, you can express your deep love and blessing to each other on this special day.

  

  Imagine the surprise and emotion in your loved one¨s eyes when he or she opens that beautiful gift box and sees the piece of jewelry that was made just for him or her. It is a happiness that cannot be expressed in words, a testimony to the deep affection between you.

  

  Moreover, custom jewelry is highly collectible. It will not lose its luster with the passage of time, but will become more precious because of the precipitation of years. In the future, whenever the other party wears this jewelry, it will think of this beautiful Christmas and think of your deep feeling.

  

  This Christmas, let custom jewelry be your messenger of love. With its brilliant light, illuminate your future road; Tell your romantic story with its unique charm. To choose custom jewelry is to choose an eternal love and commitment.