At present, the crusher hammer materials sold on the market mainly include 
bimetal composite, high manganese steel 
[https://www.wearresistantcasting.com/product/cast-steel-series/high-manganese-steel-series/](https://www.wearresistantcasting.com/product/cast-steel-series/high-manganese-steel-series/),
 high chromium cast iron and alloy steel.

So what material is used in the end, which material is the most wearable? Can 
not be generalized, different materials suitable for different working 
conditions, to analyze their own broken materials, feed size, impact force, 
working hours, etc. to choose the crusher hammer material.

Generally, High manganese steel is suitable for the case where the hammer head 
is large, the feeding force is large, and the impact force is large.

The hammer head produced by bimetal thermal composite material is 2-3 times 
more effective than the high manganese series material, especially suitable for 
large crusher hammer head, plate hammer and large ball mill liner, especially 
in the environment with harsh industrial and mining conditions. Very 
significant.

High chrome white iron castings is mainly used for hammer blocks. The following 
is an example of the choice of the material of the wear-resistant hammer.

The normal high-manganese steel hammer can be used for 2-3 months. If it is 
used for 1 month, the broken stone is not easy to break. You can choose to use 
the bi-metal composite hammer, the use efficiency can be doubled, and the high 
manganese steel can also be selected. Inlaid alloy rods have the same effect as 
bimetals.

If the hammer is to be replaced with a frequency block, a bimetal hammer must 
be used. If the hammer is used for a long time, a high manganese steel inlaid 
alloy rod hammer can be used.

If you have any questions, welcome to Shenyang Gongda Heavy Equipment 
Manufacturing Co., Ltd., our professional team can design wear-resistant 
solutions for you: Wear Resistant Castings 
[https://www.wearresistantcasting.com/](https://www.wearresistantcasting.com/). 

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