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1)  austenitic medium manganese steel
奥氏体中锰钢
2)  austenitic manganese steel
奥氏体锰钢
1.
Resistance measurement of alloying austenitic manganese steel at different temperature can reflect orderly clustering process of alloying elements in the material and the promotion of chromium to the short range of orderly clustering.
通过对合金化奥氏体锰钢不同温度下的电阻测量,能够反映这种材料中合金元素的有序簇聚过程,以及铬对短程有序簇聚的促进作用,为奥氏体锰钢中的合金元素有序簇聚现象提供了新的证据。
2.
Based on effect of heat treating technology on wear resistance of austenitic manganese steel,it was pointed out in this paper that the emphasis should put on the investigation of alloying treatment and acting mechanism of alloying elements,simple and convenient grain refining and dispersion heat treatment as well as the effect of grain size of austenitic manganese steel.
提出应重点研究奥氏体锰钢的合金化及其合金元素作用机理、高效复合变质剂及其变质机理、简便有效的细晶和弥散热处理、奥氏体晶粒大小对奥氏体锰钢冲击韧度和耐磨性的影
3.
In this paper, the four principal suppositions on the mechanisms ofwork hardening of austenitic manganese steel (AMS),1.
本文分析讨论了奥氏体锰钢加工硬化机理的几个主要假说:即高位错密度,动态应变时效,形变孪晶及形变马氏体四种强化机理。
3)  high manganese austenitic steel
高锰奥氏体钢
1.
Deformation behavior of nitrogen strengthened high manganese austenitic steel;
氮强化高锰奥氏体钢热变形行为研究
4)  austenitic high-manganese steel
奥氏体高锰钢
1.
Cutting processes and deformation hardening behavior of austenitic high-manganese steel;
奥氏体高锰钢的切削过程与形变强化规律
5)  High Mn Austenitic Steel
高锰奥氏体钢
6)  metastable austenitic manganese steel
介稳奥氏体锰钢
1.
it is to study the worn surface hardness H VS the work-hardening exponent n and the abrasive impact energy a the wear resistance △W-1 VS the worn surface hardness H and the toughness ak for the metastable austenitic manganese steels.
通过对介稳奥氏体锰钢磨面硬度H与加工硬化指数n和磨损冲击功a之间关系。
补充资料:奥氏体-贝氏体球铁
分子式:
CAS号:

性质:又叫奥-贝球铁。基体组织为奥氏体加贝氏体组织的球墨铸铁。这类球铁硅含量一般在1.4%~3.8%。含锰量小于0.5%,与普通球铁比较硅偏高、锰偏低。通过调节化学成分与热处理获得理想的奥-贝球铁的基体组织为针状贝氏体或无碳贝氏体一富碳奥氏体。这类球铁具有优良的综合机械性能、强度高、耐磨性好、韧性好、特别是有高的缺口韧性,可代替钢,用于制作重要受力结构件,如曲轴、齿轮、凸轮轴等。

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