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1.
Investigation on the Austenitic Welding Material with Low Cr and High Mn Contents
一种低铬高锰奥氏体钢焊接材料的研究
2.
Metallurgical Sources and Restrictive Methods of Cryogenic Intergranular Brittleness in High Manganese Austenitic Steels;
高锰奥氏体钢低温沿晶脆性的产生原因及抑制方法的研究
3.
High manganese steels undergo a ductile to brittle transition at low temperature, which is accompanied by a change in the fracture mechanism from dimple fracture to intergranular fracture.
高锰奥氏体钢随温度降低其断裂机制由韧窝状断裂转变到晶界断裂。
4.
The surface hardness of medium manganese austenite steel's is increased remarkably by using the casting surface alloy.
通过铸造表面合金化方法,使中锰奥氏体钢表面硬度提高。
5.
Influence of Manganese on Low Temperature Impact Behavior of Austenite TRIP/TWIP Steels
锰含量对奥氏体TRIP/TWIP钢低温冲击行为的影响
6.
Study on Wear Resistance of As-cast High Cr-Mn Austenitic White Cast Iron
铸态高铬锰奥氏体白口铸铁抗磨性试验研究
7.
Corrosion mechanisms of a new-type high-manganese austenitic alloy in a molten zinc bath
新型高锰奥氏体合金耐液锌的腐蚀机理
8.
steel that has enough nickel and chromium or manganese to retain austenite at atmospheric temperatures.
含有足量的镍和铬或锰以在大气温度下保持奥氏体的钢。
9.
Analysis on fatigue fracture of high nitrogen austenitic stainless steel at room temperature
高氮奥氏体不锈钢室温疲劳断口分析
10.
Study on Austenite Grain Growth Behavior of High-Strength Shipbuilding Steel
高强度船板钢奥氏体晶粒长大的规律
11.
ferritic-austenitic alloy steel
铁素体奥氏体合金钢
12.
Effect of Manganese on austenite cooling transformation of high Chromium cast iron is investigated.
研究了锰对高铬铸铁奥氏体冷却转变过程的影响。
13.
Krupp austenitic steel
克虏伯奥氏体不锈钢
14.
Boronizing of ZG1Cr18Ni9 austenite stainless steel
ZG1Cr18Ni9奥氏体不锈钢的渗硼
15.
twelve-two maraging stee
十二-二镍锰马氏体时效钢
16.
Deformed Austenite Cooling Transformation and Bainite Transformation in High Pressure of Cr-Mo-V Steel
Cr-Mo-V钢形变奥氏体冷却转变及高压下的贝氏体相变
17.
HF WELDING PROCESS OF AUSTENIC STAINLESS STEEL PIPES HAS PASSED APPRAISAL
奥氏体不锈钢管高频焊接工艺通过省级鉴定
18.
Mechanical Behaviors and Mechanisms of Nitrogen Effect of High Nitrogen Austenitic Stainless Steels;
高氮奥氏体不锈钢的力学行为及氮的作用机理