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1.
Grain Boundary Martensite Formation and Tempering Brittleness at Low Temperature of Steels
钢的晶界马氏体形成与低温回火脆性
2.
The Early Metallographic Studies of Chih-Hung Chou on the Formation and Morphology of Widmanstatten Structure and Martensite
周志宏对魏氏组织及马氏体的形成和形貌的早期金相研究
3.
a solid solution of ferric carbide or carbon in iron; cools to form pearlite or martensite.
含铁碳化物或含碳铁的固体溶体,冷却可形成珠光体或马氏体。
4.
THE EFFECT OF PRIOR AUSTENITIC GRAIN BOUNDARIES ON NUCLEATION OF(225)_γ MARTENSITE IN STEELS
钢中原始奥氏体晶界对(225)_γ马氏体形核的影响
5.
Matrix should be of martensite, because it can resist impact and has little deformation.
基体应是马氏体,它能抵抗冲击,变形小。
6.
Martensitic Transformation of Ni-Fe-Ga Magnetic Shape Memory Alloy
Ni-Fe-Ga磁性形状记忆合金马氏体相变
7.
Effect of Lath Martensite Morphology on the Mechanical Properties of Steel
条状马氏体形态对钢力学性质的影响
8.
STRAIN-INDUCED MARTENSITIC TRANSFORMATION IN 304L AUSTENITIC STAINLESS STEEL UNDER ECAP DEFORMATION
ECAP变形下304L奥氏体不锈钢的形变诱导马氏体相变
9.
AFM Observation on Martensitic Surface Relief and Research on Its Crystallography and Morphology;
马氏体表面浮凸AFM观察及晶体—形态学研究
10.
Effect of Different Volume Fraction of Martensite on Deformation Behavior of Dual Phase Steels
马氏体体积分数对双相钢变形行为的影响
11.
Formation and Organizational Setup of the Powerful Sima Family during the Reign of the Cao Family in the Wei Period;
曹魏时期司马氏霸府的形成与机构设置考论
12.
Study on Tool and Chip Contact Area DeformationTest for Martensite Ageing Steel Cutting
马氏体时效钢的刀-屑接触区变形试验研究
13.
The Study of Martensite Morphology, Surface Relief and Interface on Iron-Based Alloy;
铁基合金马氏体形态、表面浮凸及相界面研究
14.
THE STUDY ON THE NUCLEATION OF MARTENSITIC TRANSFORMATION AND LATH WIDTH NANOMETRE IN STEEL;
钢的马氏体相变形核与板条晶宽纳米化研究
15.
Effect of Zr on Martensite Stabilization of CuZnAl Shape Memory Alloy
Zr对CuZnAl形状记忆合金马氏体稳定化的影响
16.
MORPHOLOGY AND SUBSTRUCTURE OF JUJUBE-STONE-LIKE MARTENSITE IN ULTRAHIGH CARBON STEEL
超高碳钢中枣核状马氏体形态及亚结构
17.
Through the processing, it becomes a kind of extremely hard, wear-resistant and dispersed ledeburite structure which consists of martensite, retained austenite and carbide phases.
表面层极硬、耐磨而弥散的莱氏体是由马氏体+残留奥氏体+碳化物相组成。
18.
Morphology and Formation Mechanism of Bainite Carbide of High Carbon Chromium-Molybdenum Steel
高碳铬钼钢贝氏体碳化物形貌及形成机理