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Bolt in the lithium-ion new energy automobile industry equipment in the solution

Jan. 19, 2024

Bolt in the lithium-ion new energy automobile industry equipment in the solution

Bolts are common fastening elements in the lithium-ion new energy vehicle industry and play an essential role in the production process of lithium-ion equipment. As necessary mechanical connectors in the lithium industry, screws play a vital role in the performance and reliability of the equipment. High-quality materials and advanced manufacturing processes are used to produce the screws to ensure high precision, quality, and durability of each screw. Screws can be supplied in a variety of different materials, sizes, and specifications, such as stainless steel, carbon steel, aluminum alloy, etc., according to demand. Our product range includes a variety of standard screws, self-tapping screws, check screws, rebound screws, cylindrical head screws, and more.

Lithium-ion new energy vehicle screws cover a variety of fields, such as battery cover, battery connecting plate, battery terminal, battery holder, battery clip, battery buckle, etc. Meanwhile, they have many applications in automobiles, electric vehicles, electric bicycles, electronic devices, etc.

We focus on continuously improving the production technology and quality management system to ensure that the screws provided are of stable performance, good quality, reliable and durable.

The characteristics of screws for equipment in the lithium-ion new energy vehicle industry are as follows:

1. Variety of material choices: screws for equipment in the lithium-ion industry can be selected from different materials according to specific needs, such as stainless steel, aluminum alloy, carbon steel, and so on. This allows you to choose the material according to the particular use of the environment and requirements, to ensure the corrosion resistance, strength, and reliability of the screws.

2. A variety of specifications and sizes: lithium industry screws have a variety of specifications and sizes to choose from. Different equipment and components may require different sizes of screws to fix, so screws with a variety of specifications and dimensions can meet the needs of other equipment.

3. Reliable fastening performance: the design and manufacturing accuracy of the screws is very critical for the assembly of lithium industry equipment. Reasonable selection of suitable threads and screws to ensure that the screw's fastening performance is reliable and to avoid loosening or damage to the equipment in the process of use.

4. Easy to install: screws for lithium industry equipment are usually easy to install and remove and can be quickly installed and tightened using manual or automatic tools. This can reduce the labor intensity of workers and improve productivity. Screws have an essential role in the lithium industry equipment. By choosing the appropriate material and specification size, screws can provide reliable fastening performance to ensure the stability and safety of lithium equipment. The easy and efficient installation of screws also facilitates the manufacture and maintenance of lithium-ion equipment.

Alloy Steel Socket Head Screws: With a tensile strength of 170,000 psi, these alloy steel screws are more robust than Grade 8 steel screws. Length is measured from under the head.

Black-oxide steel screws are mildly corrosion-resistant in dry environments. Zinc-plated steel screws resist corrosion in wet environments. The screws with a blue-dyed finish are easy to distinguish. Zinc-flake-coated steel screws are 20 times as corrosion-resistant as zinc-plated screws and comparable to Dacromet-coated screws.

Coarse threads are the industry standard; choose these screws if you don't know the pitch or threads per inch. Fine and extra-fine threads are closely spaced to prevent loosening from vibration; the finer the thread, the better the resistance. They are not compatible with coarse threads.

Screws that meet ASTM A574, ASTM A574M, and ISO 898-1 comply with specifications and testing requirements for material quality. Screws that meet ASME B18.3, ASME B18.3.1M, ISO 21269, and ISO 4762 (formerly DIN 912) comply with specifications for dimensional standards.

Torx Alloy Steel Socket Head Screws: A Torx-Plus drive has more points of contact than a hex drive, allowing you to tighten these screws with less slippage or damage to the recess. With a tensile strength of 180,000 psi, these alloy steel screws are more robust than Grade 8 steel screws. Their black-oxide finish provides mild corrosion resistance in dry environments. They can be used with both Torx-Plus and standard Torx tools (see Torx bits and Torx keys and drivers). Screws meet ASTM A574 specifications and testing requirements for material quality. Length is measured from under the head.

Coarse threads are the industry standard; choose these screws if you don't know the threads per inch. Fine threads are closely spaced to prevent loosening from vibration. They are not compatible with coarse threads.

Bolt in the lithium-ion new energy automobile industry equipment in the solutionBolt in the lithium-ion new energy automobile industry equipment in the solution

Alloy Steel Ultra-Low-Profile Socket Head Screws: Made from alloy steel, these screws are nearly twice as strong as stainless steel ultra-low-profile screws. Their black-oxide finish provides mild corrosion resistance in dry environments. To fit in the tightest spaces, they have a head about one-third the height of a standard socket head, but their low profile weakens their head. It is not recommended for critical fastening applications. Length is measured from under the head.

Coarse threads are the industry standard; choose these screws if you don't know the pitch or threads per inch. Fine threads are closely spaced to prevent loosening from vibration. They are not compatible with coarse threads.

Serrated-Flange Socket Head Screws: Serrations under the head grip the material's surface for mild vibration resistance, and the flange distributes pressure, eliminating the need for a separate washer. With a tensile strength of 140,000 psi, these alloy steel screws are comparable in strength to Grade 8 steel screws and are more potent than stainless steel screws. Their black-oxide finish provides mild corrosion resistance in dry environments. Head height includes the flange. Length is measured from under the flange.

High-Strength Grade 8 Steel Flanged Hex Head Screws: Made to Japanese Industrial Standards, these Class 10.9 steel screws can be used in high-stress applications, such as valves, pumps, motors, and automotive suspension systems. They are at least 25% stronger than medium-strength steel screws. The flange distributes pressure where the screw meets the surface, eliminating the need for a separate washer. The zinc plating provides corrosion resistance in wet environments. Head height includes the flange. Length is measured from under the flange.

Match the thread spacing of mating components. Coarse threads are the industry standard; choose these screws if you don't know the pitch. Fine and extra-fine threads are closely spaced to prevent loosening from vibration; the finer the thread, the better the resistance.

First of all, lithium-ion new energy automobile industry equipment usually adopts stainless steel bolts. Stainless steel bolts are characterized by strong corrosion, high temperature, and cold resistance, which makes them suitable for using lithium equipment in different environmental conditions. In addition, stainless steel bolts are also characterized by high strength and good durability, which can ensure the stability and safety of the equipment.

Secondly, the bolts used in the lithium-ion new energy automobile industry equipment are generally standard bolt specifications, such as M4, M5, M6, and so on. These bolts' specifications have a specific tolerance range, which is convenient for assembly and disassembly in production. At the same time, the length of the bolts is also selected according to the specific equipment requirements to ensure that the bolts are the right length in the assembly process.

Equipment in the lithium industry pays close attention to bolt quality in addition to specifications and materials. The bolt's quality directly affects the equipment's reliability and safety. Therefore, when selecting bolts, lithium equipment manufacturers will choose bolt suppliers with excellent quality, rigorous testing, and certification to ensure that the bolts used meet the relevant standards and requirements.

Finally, the lithium-ion new energy automobile industry's bolts must also be correctly installed and regularly inspected. The tightening force of the bolts is critical to the ordinary operation and safety of the equipment. Therefore, during the assembly process of the equipment, the bolts need to be tightened using the correct torque tool and torque to ensure that the bolts achieve the required tightening force.

Overall, the bolts used in equipment for the lithium-ion new energy automotive industry are essential components to ensure the stability and safety of the equipment. The correct specification, material, and bolt quality can provide the equipment's strength and reliability in the use process. At the same time, correct bolt installation and regular inspection are also vital to ensure the normal operation of the bolt. With the continuous development of the lithium industry, bolts in new lithium energy vehicle equipment will be more widely used.

Please get in touch with me if you want high-quality Medium-Strength Metric Class 8.8 Steel Flanged Hex Head Screws fasteners or technical support for structural design. Thanks.Email:adelajonly@gmail.com

Website: https://www.juxinfasteners.com


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