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1)  low carbon-high chromium cast iron
低碳高铬白口铸铁
1.
Effects of heat treatment on properties of low carbon-high chromium cast iron;
热处理对低碳高铬白口铸铁性能的影响
2)  low carbon and high chromium cast iron
低碳高铬铸铁
1.
Based on sliding and drum wear test and microstucture examination,the influence of quenching temperature and holding time on wear resistance of low carbon and high chromium cast iron was inuvestigated.
通过滑动和滚筒式磨损试验及金相组织观察,研究了淬火温度及保温时间对低碳高铬铸铁耐磨性能的影响。
3)  Low chromium white cast iron
低铬白口铸铁
1.
Study on the abrasive wear resistance of low chromium white cast iron balls used in large-scale grinding coal mill of power station;
火电厂大型磨煤机低铬白口铸铁磨球耐磨性的试验研究
2.
The effect of Si content on the corrosion wear resistance of low chromium white cast iron in the slurry with Cu2+ ion was studied by three-body corrosion wear test.
采用三体腐蚀磨损试验方法研究了硅对低铬白口铸铁在含铜离子浆料介质中的腐蚀磨损耐磨性的影响。
3.
The low chromium white cast iron using silicon as alloy element has been studied.
采用硅进行低铬白口铸铁的合金化,试验发现,随着硅含量增加,碳化物形貌由网状向断网状、分散孤立的条状转变;碳化物的含量增加,尺寸细化;碳化物硬度及材料的整体硬度也逐渐增加。
4)  low-chromium white cast iron
低铬白口铸铁
1.
A reasonable forming process of low-chromium white cast iron has been worked out through a series of tests.
通过试验制定了低铬白口铸铁磨球的合理锻造工艺,并对磨球进行了必要的机械性能测试。
2.
In this paper, the reason why low-chromium white cast iron produced in EPC process shows bad synthetic property is profoundly analyzed.
本文简述了国内外抗磨材料及铸造磨球生产工艺的发展及现状,剖析了采用EPC工艺生产低铬白口铸铁综合性能差的原因。
5)  Low-medium Chromium white cast iron
中低铬白口铸铁
6)  high chromium cast iron
高铬白口铸铁
1.
The effects of cryogenic treatment on the microstructure and the hardening behavior for high chromium cast iron were investigated by X-ray diffraction,magnetic method and hardness test.
采用X射线衍射、磁性法和硬度测量等方法研究了深冷处理对高铬白口铸铁显微组织和硬化行为的影响。
2.
In this paper, the influenceof remelt and insulation during the secondremelt on the carbide structural in- heritance of high chromium cast iron were studied.
采取重熔的工艺措施并在第二次重熔时进行保温处理,研究高铬白口铸铁中碳化物的遗传性并对高铬白口铸铁的力学性能进行测试。
补充资料:高铬铸铁
分子式:
CAS号:

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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