NM360 wear-resistant plate processing

NM360 wear-resistant plate is a steel plate material with excellent wear resistance. It is often used in construction machinery, mining equipment, port handling equipment and other occasions that require wear resistance. NM360 wear-resistant plate processing is to subject raw materials to a series of processes to obtain the required size, shape and performance. This article will introduce the importance, processing steps and application areas of NM360 wear-resistant plate processing.

NM360 wear-resistant plate processing is critical to ensuring the quality and performance of the material. Through processing, the wear-resistant plate can be ensured to have good wear resistance, strength and hardness during use. All aspects of the processing process need to be strictly controlled to ensure that the quality of the final product meets the requirements.

Processing steps

NM360 wear-resistant plate processing usually includes the following steps:

1. Cutting and shearing

Cutting and shearing Shearing is an important step in cutting NM360 wear-resistant plate to the required size. Commonly used cutting methods include flame cutting, plasma cutting and laser cutting. Shearing is to cut the plate through shearing machinery.

2. Bending and forming

Bending and forming are the steps to process the NM360 wear-resistant plate into the required shape. Commonly used methods include cold bending and hot bending. Cold bending uses mechanical equipment to bend the plate into the desired angle and arc, while hot bending bends it under heating conditions.

3. Welding and connection

Welding and connection are key steps in processing NM360 wear-resistant plate into the required structure. Commonly used welding methods include arc welding, gas shielded welding and laser welding. The connection is to connect the plates together through bolts, rivets, etc.

4. Surface treatment

Surface treatment is to improve the surface performance and appearance quality of NM360 wear-resistant plate. Common surface treatment methods include spraying, galvanizing and polishing. Spraying can increase the corrosion resistance of the plate, galvanizing can prevent the plate from rusting, and polishing can improve the finish of the plate.

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