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Introduction to the application and performance of wire drawing rivets
- 2022-11-10-

Drawn rivets are high-strength structural blind rivets. The nail core is firmly locked and has excellent gap-filling performance. It is especially suitable for heavy-duty application environments. Traditional usage scenarios include steel frame structures, the automotive industry, switch cabinet structures and outer bodies, and ventilation equipment. , household appliances, container industry, etc.

Recently, the use of brushed rivets in the construction industry has been gradually promoted, especially after the emergence of 12.7mm diameter brushed rivets, which provide a more convenient connection method for the main structure. The tensile strength can reach more than 30,000 Newtons, and the shear strength is It can exceed 40,000 Newtons. Whether it is a light steel structure or a heavy steel frame structure, wire drawing rivet products of different sizes can take advantage of a wide riveting range, high work efficiency, and high structural strength to help improve the reliability of the connection and speed up the production progress. .

Internal locking wire drawing rivets and external locking wire drawing rivets are very similar in appearance, and their functions and strengths are basically the same. There are slight differences in the use of the two products. External locking wire drawing rivets need to be equipped with a special special gun head, which can be formed after riveting. The visual external locking facilitates inspection. The internal locking wire rivets can be used with standard gun heads to provide internal locking protection.

Brushed rivets have the following advantages:

Wide riveting range helps optimize and reduce inventory

Extremely high tensile and shear strength

Provides good clamping effect

Can adapt to irregular and non-uniform opening environments and has the ability to fill in the blanks

The nail core is firmly locked and will not loosen, avoiding the risk of electrical failure and making no noise.