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1)  manganiferous white cast iron
含锰白口铸铁
2)  high Cr-Mn white cast iron
高铬锰白口铸铁
1.
The effects of V on the microstructures and properties of high Cr-Mn white cast iron was Investigated in this paper.
探讨了钒以及热处理工艺对高铬锰白口铸铁组织和性能的影响。
3)  medium manganese white cast iron
中锰白口铸铁
1.
It is possible to change the shape and distribution of carbides in medium manganese white cast iron and make them change from network into semi network,streaky and blocky structure,eliminating cast defects,refining the structure and enhancing strength and toughness greatly.
采用变质处理、热塑性变形和热处理 3种工艺可以改变中锰白口铸铁碳化物的形态和分布。
2.
In different wear situations , the effect of residual austenite (γR) on abrasion resistance of medium manganese white cast iron was investigated.
研究了在不同磨损工况中残余奥氏体(γR)对中锰白口铸铁抗磨性的影响。
4)  Mn-B white cast iron
锰硼白口铸铁
5)  Cr-alloyed white cast iron
含铬白口铸铁
1.
The effects of various modifying additives and modifying processes on the microstructure and properties of Cr-alloyed white cast irons were summarized.
总结了变质处理对含铬白口铸铁组织和性能的影响。
6)  Cr-Mn-Cu alloy white cast iron
铬锰铜合金白口铸铁
1.
The wear resistance of Cr-Mn-Cu alloy white cast iron after heat treatment was studied and compared with that of as-cast Cr-Mn-Cu alloy white cast iron,the wear failure mechanism and microstructure on the wear end surface and nonwear end surface were analyzed.
以铬锰铜合金白口铸铁的铸态材料为对比材料,考察了热处理后的铬锰铜合金白口铸铁材料的耐磨性能,对试验材料的磨损失效机理和磨损端面与无磨损端面的金相组织进行了分析。
2.
The wearing resistance,microstructure,worn surface morphology and hardness change in wearing end-face and non-wearing end-face of Cr-Mn-Cu alloy white cast iron were tested and analyzed.
对铬锰铜合金白口铸铁的耐磨性、无磨损端面及磨损端面的微观组织、磨损形貌及硬度进行了试验和分析。
3.
The erosive-wear resistance of heat treated Cr-Mn-Cu alloy white cast iron was investigated compared with that of as-cast one, and the impact fractures,the erosive-wear resistant failure mechanism and the section metallurgical structure of the test materials were analyzed.
以铸态铬锰铜合金白口铸铁为对比材料,考察了热处理后的铬锰铜合金白口铸铁的抗冲蚀磨损性能,并对试验材料的冲击断口形貌、抗冲蚀磨损失效机理和冲蚀磨损横切面的金相组织进行了分析。
补充资料:高铬铸铁
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性质: 铬含量高的耐蚀耐热白口铸铁。依铬含量的不同,可分为铬含量26%~30%和32%~36%两类铸铁。在1000℃以上的氧化性气氛中,高铬耐热铸铁仍有好的抗氧化能力。有良好的强度以及较好的机械加工性能,但韧性较低,不宜用于温度急变场合。常用来制作加热炉炉底板、炉子传送链的构件等。

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