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1.
martempering medium
马氏体分级淬火介质
2.
Study on Immediate Quenching Process of Martensitic Based Spheroidal Graphite Cast Iron Grinding Ball
马氏体基球墨铸铁磨球的余热淬火工艺分析
3.
On Quasi austempering Bainitic/Martensitic Ductile Iron Grinding Ball
贝氏体/马氏体球铁磨球准等温淬火工艺的研究
4.
Process Research on the Isothermal Quenching of Ductile Iron of Austenite and Bainite;
奥氏体贝氏体球铁等温淬火工艺研究
5.
The content of thermalelastic martensite in the sample increases as the quenching temperature.
试样中热弹性马氏体含量随着淬火温度的升高而增多。
6.
As for small diameter workpiece, martensite distribution can be obtained by immediately quenching.
对于直径较细的工件,轧后立即淬火几乎可得到全部马氏体。
7.
Study on the Bainite Morphology of ADI
等温淬火球铁贝氏体组织形态的研究
8.
The Austenite Inverse Phase Transformation Quenching in Zero Time Holding of 40Cr Steel
40Cr钢“零保温”奥氏体逆相变淬火
9.
An Investigation on Organic Cooling Medium Quenching Process to Produce Bainite Gray Iron
贝氏体灰铸铁有机介质淬火工艺研究
10.
modified austemper
(获得珠光体加贝氏体混合组织的)准等温淬火(如铅淬火)
11.
Step Iso-Thermal Quenching Process Used to Obtain Heavy Section ADI Casting
用于厚大ADI铸件的分级淬火工艺
12.
Hardenability of Wear Resistant Bainitic Steel Casting by Numerical Simulation
基于数值模拟的贝氏体/马氏体耐磨铸钢件淬透性预测
13.
The microstructure of isothermally-quenched ductile iron (ADI) is a mixture structure consisting of austenite plus acicular ferrite.
等温淬火球铁的显微组织由奥氏体加针状铁素体的混合组织组成。
14.
Study of High Carbon Low Alloy Bainite Steel Ball by Forged Isothermal Hardening
锻热等温淬火高碳低合金钢贝氏体磨球的研究与应用
15.
The Carburization Quenching Distortion Rule and Mechanism Study of a New Kind of Micro-distortion and High Strength High Toughness Bainitic Steel;
新型微变形高强韧贝氏体GDL-1钢渗碳淬火变形规律的探索
16.
Evolution of ultra-fine austenite grains in Nb and Nb-V-Ti microalloyed low carbon steel under cyclic heating-quenching treatment
循环加热-淬火工艺下超细晶奥氏体的晶粒演变特征
17.
Micron scale spheres may be preserved in quenched volcanic matrix.
有时微米级球体可以在淬冷火山岩基质中得以保存。
18.
Research on the Influence of Temper Temperature of Austenite to High-speed Cutting Properties of Austempering Ductile Iron (ADI);
奥氏体回火温度对等温淬火球墨铸铁(ADI)高速切削加工性能的影响研究