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       The hammer head of the crusher should be accurately defined as the hammer head of the hammer crusher. The hammer head is one of the core components of the hammer crusher. It is arranged on the hammer shaft of the crusher rotor. The hammer head hits directly when the crusher runs at high speed. The material is finally crushed into a suitable material size.

The hammer head of the crusher should be accurately defined as the hammer head of the hammer crusher. The hammer head is one of the core components of the hammer crusher. It is arranged on the hammer shaft of the crusher rotor. The hammer head hits directly when the crusher runs at high speed. The material is finally crushed into a suitable material size. According to the manufacturing process, the hammer heads of crushers on the market can be divided into two types: casting and forging, but their wear resistance is different. Due to the crushed materials, the head needs good wear resistance and the handle needs sufficient toughness. Usually alloy steel, high manganese steel, cast steel and high chromium cast iron bimetal composite materials are used for forging or casting to form at one time, with The corresponding heat treatment process is more economical. According to the material, the hammers of the crusher can be divided into types: high manganese steel hammers, bimetal hammers, composite hammers, large gold hammers, medium chromium alloy hammers, hard alloys Hammers, etc. The main factor is the content of silica. The technology under modern industry shows that the use of cemented carbide hammers performs well in wear resistance.

Compared with other materials, cemented carbide hammers have higher hardness, bending strength and impact, thermal fatigue resistance, good thermal hardness, and low cost. It solves the cracks, desoldering, and welding of high manganese materials. Problems such as collapse, block loss, etc.

1. Ultra-high wear resistance, more than 20 times that of high manganese steel hammers

2. It has good resistance to mechanical shock and thermal shock.


3. It has a wide range of applications and can basically be adapted to all crushing industries.




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