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Round Head Torx Full Thread Micro Crimping Screw

The Round Head Torx Full Thread Micro Crimping Screw is a specialized type of screw designed for precise applications, particularly in electronics and small mechanical assemblies.
  • Screw

  • ARIDA

  • 7318159090

  • CNC machining center

  • Stainless Steel

  • Fastener

  • Cold Forging

  • High Rigidity and Precision

  • ISO, GS, RoHS, CE

  • One year

  • Forging

  • Standard exporting package

  • ARIDA

  • China

  • CNC precision

  • New

  • Motor

  • Worldwide

  • yes

  • CNC

Availability:
Quantity:
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Parameters

铆压螺钉图纸

d p b ds k s
reference max min max min max min
M4 0.7 20 4 3.7 3 2.6 7 6.64
M5 0.8 22 5 4.7 3.24 2.76 8 7.64
M6 1 24 6 5.7 4.24 3.76 10 9.64
M8 1.25 28 8 7.64 5.54 5.06 13 12.57
M10 1.5 32 10 9.64 6.69 6.11 16 15.57
M12 1.78 36 12 11.57 7.79 7.21 18 17.48
M14 2 40 14 13.57 9.09 8.51 21 19.16
M16 2 44 16 15.57 10.29 9.71 24 23.16
M18 2.5 48 18 17.57 11.85 11.15 27 26.15
M20 2.5 52 20 19.8 12.85 12.15 30 29.16


Description
  • Head Type: Round head, which provides a smooth, flush surface when installed. The round shape is often preferred for aesthetic reasons or to avoid snagging on clothing or other materials.

  • Drive Type: Torx (also known as star drive), which offers a high level of torque transfer and reduces the risk of cam-out during installation. This drive type is ideal for applications where precision and control are critical.

  • Thread Type: Full thread, meaning the entire length of the screw has threads, allowing it to be crimped onto a terminal or securely fastened in a threaded hole.

  • Size: These screws are typically micro-sized, making them suitable for delicate components and tight spaces.

  • Material: Commonly made from stainless steel, brass, or other corrosion-resistant alloys, depending on the specific application requirements.

  • Crimping Feature: The full thread allows for crimping, which means that the screw can be permanently attached to a wire or terminal by deforming the end of the screw around the wire, creating a secure electrical and mechanical connection.

Sample Display
M3-M12304不锈钢盘头内六角螺丝半圆头蘑菇头机螺钉
圆柱头梅花螺丝304不锈钢星型杯头内六花机螺钉3
铆压螺钉梅花槽
Materials

1. Material Selection

  • Steel (e.g., Stainless Steel): Often made from stainless steel alloys such as 304 or 316 stainless steel, which offer good corrosion resistance and strength. Stainless steel is a popular choice due to its durability and ability to withstand harsh environments.

  • Aluminum: In some cases, lightweight aluminum might be used for applications where weight reduction is a priority.

  • Special Alloys: For specialized applications, screws may be made from exotic alloys like titanium, which offers a combination of high strength and low weight.

2. Head Style: Round Head

  • Design: The round head design provides a smooth, aesthetically pleasing appearance and can be less prone to snagging on clothing or other materials compared to hex or square heads.

  • Benefits: Round heads are typically easier to recess into a countersunk hole, which can be beneficial in applications where a flush surface is desired.

3. Drive Type: Torx

  • Advantages: Torx drives (also known as star drives) are designed to reduce cam-out (the tendency of a screwdriver to slip out of the screw head) and provide a higher torque capacity compared to Phillips or slotted drives.

  • Precision: The Torx drive is particularly useful in applications where precise alignment and tight torque control are required.

4. Thread Style: Full Thread

  • Purpose: Full threading means that the screw is threaded from the tip to the head, which allows for a wide range of adjustment and secure fastening.

  • Versatility: Full threading can be advantageous when the exact depth of insertion needs to be adjusted or when the screw must bear a load along its entire length.

5. Micro Size

  • Dimensions: Micro screws are typically very small, often with diameters ranging from 0.5 mm to 3 mm. They are designed for use in compact and intricate assemblies.

  • Precision: The small size requires high manufacturing precision to ensure consistent quality and performance.

6. Crimping Feature

  • Functionality: Crimping screws are designed to be deformed (crimped) during installation to secure the fastener in place without the need for additional locking mechanisms.

  • Benefits: This feature can be useful in applications where vibration or movement might otherwise loosen the screw.

7. Surface Treatments

  • Coatings: Depending on the application, the screws may be coated with materials such as zinc, nickel, or chrome to enhance corrosion resistance.

  • Lubricants: Some applications may require a lubricated finish to facilitate easier insertion and removal.

Key Properties and Applications

1. Corrosion Resistance

  • Materials: Stainless steel provides excellent resistance to corrosion, making these screws ideal for use in environments where exposure to moisture or chemicals is likely.

2. Strength and Durability

  • Alloy Choice: The choice of alloy (such as stainless steel) contributes to the strength and durability of the screw, allowing it to withstand high loads and repeated use.

3. Precision Fastening

  • Torx Drive: The Torx drive enables precise torque application, which is crucial for delicate assemblies where overtightening could damage components.

4. Compact and Lightweight

  • Size and Weight: The micro size and potentially lightweight materials (like aluminum) make these screws ideal for applications where space and weight are critical factors.


FAQ


1. What is a Round Head Torx Full Thread Micro Crimping Screw?

Answer: A Round Head Torx Full Thread Micro Crimping Screw is a specialized screw designed for precise applications, particularly in electronics and small mechanical assemblies. It features a round head, Torx drive, full threading, and is suitable for crimping onto wires or terminals.

2. Why would I need a Torx drive instead of a Phillips or slot drive?

Answer: Torx drives offer a higher torque transfer and reduce the risk of cam-out during installation. This makes them ideal for applications where precision and control are critical, especially in tight spaces or delicate components.

3. What does "full thread" mean?

Answer: "Full thread" means that the entire length of the screw is threaded. This is useful for crimping applications where the screw is deformed around a wire or terminal to create a secure electrical and mechanical connection.

4. What are the typical materials used for these screws?

Answer: These screws are commonly made from stainless steel, brass, or other corrosion-resistant alloys, depending on the specific application requirements.

5. Are there different sizes available?

Answer: Yes, these screws are available in a range of sizes suitable for micro applications. The sizes vary depending on the specific requirements of your project.

6. Can these screws be used for electrical connections?

Answer: Yes, the full thread design allows these screws to be crimped onto wires or terminals, making them suitable for electrical connections.

7. How do I install a Round Head Torx Full Thread Micro Crimping Screw?

Answer: Use a Torx driver or bit that matches the screw's drive to install it. For crimping applications, deform the end of the screw around the wire or terminal using a crimping tool.

8. Are there any special considerations for crimping?

Answer: Yes, ensure that the crimping tool is compatible with the screw size and type. Follow the manufacturer's guidelines for crimping to ensure a secure and reliable connection.

9. Can I use these screws outdoors or in harsh environments?

Answer: If the screws are made from corrosion-resistant materials, they can be used outdoors or in harsh environments. Stainless steel and other coatings are commonly used for such applications.

10. Are there any safety concerns I should be aware of?

Answer: Ensure that the screws are properly installed and tightened to avoid loose connections. Follow the manufacturer's guidelines for torque settings and use appropriate tools to prevent damage to the screw or surrounding components.


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