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Custom Stainless Steel Metal Shoulder Bolts with slot for Engineering furniture in 1/6 8/12 1

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Custom Stainless Steel Metal Shoulder Bolts with slot for Engineering furniture in 1/6 8/12 1

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Brand Name :JIA SHAN
Model Number :DIN, ASEM, ISO
Certification :ISO
Place of Origin :China
MOQ :100
Price :USD0.2/pcs-USD1/pcs
Payment Terms :T/T,Western Union
Supply Ability :Batch order abailable
Delivery Time :1-5 weekds
Usage :Fastening
Style :shoulder bolt
Size :Various sizes available
Head Style :cap head/shoulder bolt
Strength :High
Finish :Plain
Manufacturer :JIA SHAN Hardward Company
Length :As customisation
Package :Small Packing+Carton Packing+Pallet
Standard :DIN
Package Quantity :100 pieces
Shape :Self Tapping Screws
Measurement System :INCH, Metric
Port :Shenzhen
Quality :Inspection before shipment
Color :As customisation
Material :stainless steel
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Custom Stainless Steel Metal Shoulder Bolts with slot for Engineering furniture in 1/6 8/12 1

Custom Stainless Steel Metal Shoulder Bolts with slot for Engineering furniture in 1/6 8/12 1

Custom Stainless Steel Metal Shoulder Bolts with slot for Engineering furniture in 1/6 8/12 1
Product Description:

A shoulder bolt, also known as a stripper bolt or shoulder screw, is a specialized fastener designed for precision applications in machinery, automation, and mechanical assemblies. Its unique structure and functionality make it indispensable in scenarios requiring precise alignment, rotational movement, or controlled spacing. Below is a detailed overview of its functions and applications.

Structure of a Shoulder Bolt

A shoulder bolt consists of three distinct sections:

  1. Head: Typically hexagonal or socket-style for tool engagement (e.g., Allen wrench).

  2. Shoulder (Unthreaded Shank): A smooth, cylindrical section with a larger diameter than the threaded portion. This precision-machined segment acts as a bearing surface or pivot.

  3. Threaded End: Smaller in diameter than the shoulder, this section secures the bolt into a tapped hole.

The shoulder’s length and diameter are customizable, allowing engineers to tailor the bolt to specific load, alignment, or spacing requirements.

Some common uses include:

1. Machinery: Essential for ensuring precise alignment and smooth movement in sliding components, especially in transmission systems.
2. Automotive: Commonly found in suspension systems, engines, and brakes, linking bushings and bearings for smooth rotation.
3. Electronics: Crucial in maintaining proper spacing between circuit boards and chips, preventing electrical interference.
4. Mold Manufacturing: Used for guiding parts within molds, ensuring smooth sliding and maintaining mold precision.
5. Furniture Hardware: Shoulder bolts are used in hinges and sliding rails to control movement and increase furniture durability.
6. Aerospace: Applied in aerospace components where high precision and stability are necessary for positioning parts reliably.
7. Industrial Automation: Shoulder bolts support smooth and accurate movement in robotic arms, conveyors, and automated machinery.
8. Medical Equipment: Used in adjustable medical devices to ensure smooth, controlled movement for improved functionality.
9. Tooling & Fixtures: Key in maintaining alignment and spacing in manufacturing jigs and fixtures to ensure consistent precision.
10. Construction & Heavy Equipment: Shoulder bolts are used in structural components to provide stable movement and reliability under heavy loads.

Key Applications

  • Automotive: Suspension pivots, throttle linkages.

  • Aerospace: Control surface hinges, actuator mounts.

  • Manufacturing: Jigs, fixtures, robotic joints.

  • Consumer Electronics: Hinges for laptops, rotating displays.


Installation Considerations

  • The shoulder must fit snugly into its bore to prevent misalignment.

  • Thread engagement length should match the tapped hole depth to avoid stripping.

  • Lubrication may be required for high-rotation applications.


Applications:
Stainless Steel:
1, the basic knowledge of stainless steel
Stainless steel is an alloy material with corrosion resistance, and its main components are an alloy of elements such as iron, chromium and nickel. These elements can effectively resist oxidation and corrosion, so that stainless steel has a high degree of durability and aesthetics.
2, stainless steel maintenance methods
Cleaning
Keeping stainless steel products clean is an important part of their maintenance. You can use mild detergents and soft cloth for cleaning, avoid the use of detergents containing acidic and alkaline components, so as not to damage the surface of stainless steel. When removing dirt, you should try to avoid using irritating cleaning tools to avoid scratching the stainless steel surface. After cleaning, rinse with water and dry with a clean soft cloth.
3, the use of stain remover
For some stubborn dirt, you can use special stainless steel stain remover for cleaning. But before using it, you should carefully read and follow the instructions in the product manual. In addition, stainless steel products on the dirt can be cleaned with alcohol or vinegar, these common cleaners on stainless steel has a certain decontamination effect.

Steel types:

No. C% Cr% Ni % Mo %
304 0.07 17.5-19.5 8.0-10.5 /
316 0.08 16.0-18.0 10.0-14.0 2.00-3.00
301 0.15 16.0-18.1 6-8 /
310 0.08 24-26 19-22 /
304L 0.03 18-20 8-12 /
316L 0.03 16-18 10-14 2-3
321 0.08 17-19 9-12 /


201, 304, 316 are austenitic stainless steel, according to the performance of the non-magnetic, some of the performance of the weak magnetic because of the smelting of the composition of the segregation or improper heat treatment leads to the austenite in a small amount of martensite or ferrite. Austenitic stainless steel corrosion resistance comes from the formation of chromium oxide protective layer on the metal surface. When the material temperature is heated to 450 degrees -900 degrees, the structure changes, will form chromium carbide along the edge of the crystal and can not form a protective layer of chromium oxide, thus reducing the corrosion resistance, this is also known as ‘intergranular corrosion’. As a result, there are 304L and 316L, the two due to the low carbon content also reduces the intergranular corrosion. In particular, the higher susceptibility to intergranular corrosion does not mean that non-low carbon content is more susceptible to corrosion, in a highly chlorinated environment, this susceptibility is also higher.

304 stainless steel
304 is a general-purpose stainless steel that is widely used to make equipment and machine parts that require good all-round performance (corrosion resistance and formability). In order to maintain the corrosion resistance inherent in stainless steel, the steel must contain more than 18% chromium, more than 8% nickel content. 304 stainless steel is a grade of stainless steel produced according to the American ASTM standard.

A2 stainless steel and A4 stainless steel, A2 is a class of 304 stainless steel, A4 is a class of 316 stainless steel, the main difference between the two is here, some of the fastener industry will be 302HQ and 304 referred to as: A2, 316 and 316L (C content of carbon C is less than 03% of the stainless steel, you can increase the ‘L’ logo) called A4.

What is the difference between a270 and a470 stainless steel bolts Nuts are usually used in conjunction with bolts. Hexagonal nuts are more widely used.C-grade hexagonal nuts are used in steel structures, machinery and equipment with rough surfaces and low requirements for precision.A-grade and B-grade hexagonal nuts are mainly used in machinery and equipment with smooth surfaces and high requirements for precision.
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Custom Stainless Steel Metal Shoulder Bolts with slot for Engineering furniture in 1/6 8/12 1
Custom Stainless Steel Metal Shoulder Bolts with slot for Engineering furniture in 1/6 8/12 1
Custom Stainless Steel Metal Shoulder Bolts with slot for Engineering furniture in 1/6 8/12 1
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Custom Stainless Steel Metal Shoulder Bolts with slot for Engineering furniture in 1/6 8/12 1

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