Nm360 Wear Resistant Steel Composition and Hardness Casting_News Center Co., Ltd._Nm360 Wear Resistant Steel Composition and Hardness Casting,Shandong Longcheng International Trade Co., Ltd._Shandong Longcheng International Trade Co., Ltd._Zhongshang 114 Industry Resources Network
Shandong Longcheng International Trade Co., Ltd.

NM400 Wear Resistant Plate, NM360 Wear Resistant Plate, NM450 Wear Resistant Plate

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  • 公司名称Shandong Longcheng International Trade Co., Ltd.
  • 联 系 人冯永存 (先生)
  • 公司电话13626351003
  • 手机号码13626351003
  • Company AddressShandong Liaocheng High-tech Industrial Development Zone
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News Center Co., Ltd.
Nm360 Wear Resistant Steel Composition and Hardness Casting
Publish Time:2022-09-12        View Count:8        Return to List

Nm360 Wear-Resistant Steel Plate boasts distinctive, irreplaceable features: 1) the carbon content in the chemical composition of its high-wear alloy layer. The wear-resistant steel plate offers properties such as wear resistance, impact resistance, deformability, and weldability. The casting density of Nm360 wear-resistant steel plate, with its composition and hardness, is 3.6g/cm3, featuring Rockwell hardness of 58-63HRC, tensile strength of 850Mpa, fracture toughness of KC4.8 MPa M1/2, and bending strength. The carbides are vertically distributed along the wear direction, thereby doubling the wear resistance compared to cast alloys with the same composition and hardness. When compared to the wear resistance of several typical materials:

Lesson 1: Low-carbon steel; 20~252, High manganese steel; 5~103, Tool steel; 5~104, and Cast High Chromium Cast Iron; 1.5~2.52. The bottom of the Nm360 wear-resistant steel plate with excellent impact resistance is made of low-carbon steel or low-alloy steel. Materials like stainless steel, with their toughness, reflect the superiority of bimetallic structures. The wear-resistant layer resists wear from the medium, while the base plate bears the load of the medium, thus providing excellent impact resistance. It can withstand impacts and wear from high-level hoppers during material transportation.


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