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SKT-M2.5x3.0-OD4.5

SKT-Knurl Inserts

SKT Series Inserts

The advantages:
Injection molding available in brass and stainless steel materials products.
Straight knurling with groove design can provide strong torque and pulling force.
Suitable for thermoplastic plastics and thermosetting plastics.
 
Installation instruction:
Please put the threaded inserts into a reserved core pins, then closed the mold and mold it together with the plastic.
The core pin is designed to match the bottom hole of the thread or be designed according to the size table. 
If the core pin is smaller, it will cause the platic overflow into the internal thread; if the pin oversize, it will cause the inserts failed put into.
REQUEST SAMPLES
A Thread size M2.5x0.45
L Insert lengths 3.0 mm
OD Insert diameter 4.5 mm
Base panel material Plastic
Materials Brass
Surface Treatment Cleaning
Installation Equipment/Method Molded-in Threaded Inserts

SKT Series Inserts data


What metal are threaded inserts made of?

Threaded Inserts can be made from a variety of metals, depending on the specific application and requirements. Common materials used for threaded inserts include:

Brass: Brass is commonly used for threaded inserts due to its corrosion resistance, good mechanical properties, and ease of machining. It is suitable for electronics, plumbing, and furniture applications.

Steel: Steel inserts, including stainless steel, are widely used for their strength and durability. Stainless steel inserts are highly regarded for their corrosion resistance and are often used in automotive and industrial applications.

Aluminum: Aluminum inserts are lightweight and corrosion-resistant, making them suitable for applications with high weight requirements, such as the aerospace and automotive industries.

Plastic: While not metal, some threaded inserts are made from reinforced plastic and can be used in lightweight applications or where electrical insulation is required.

The material selection for a threaded insert depends on many factors, such as the environment in which it will be used, the mechanical loads it will be subjected to, and the specific requirements of the application.