马氏体的;
Antiferromagnetic transition has soft modulus effect while martensitic transformation also accompanied by a soft phonon mode.
反铁磁转变存在模量软化,马氏体相变也具有声学软模.
互联网The critical driving force martensitic pretransition has been calculated based on the Hamiltonian containing electron - phonon interaction.
基于电子 - 声子相互作用计算了马氏体预相变的临界驱动力.
互联网The stress takes some effects on the martensitic transformation.
应力对于马氏体相变有一定的影响.
互联网The size effect on start temperature of martensitic transformation, Ms, is summarized.
总结了马氏体相变的尺寸效应.
互联网The last decade development of martensitic transformation in nanostructured materials and thermodynamic studies are reviewed.
概括了近十年来,纳米材料的马氏体相变和热力学研究的最新结果.
互联网This stainless steel normally magnetic due to its martensitic structure and iron - content.
这种不锈钢具有马氏体结构和铁元素,因此具有正常的磁特性.
互联网Through theory analysis a mathmatical relation between martensitic { 112 } crystal plane diffraction peak is established.
通过讨论分析,建立了马氏体碳浓度与马氏体{112}晶面族衍射峰双线分离距离之间的关系式.
互联网Hydrogen embrittlement can become important in martensitic steels.
马氏体钢容易浮现氢脆现象.
互联网For thetempeture - changed martensitic transformation, temperature stress is main origin of itsstess.
对于变温马氏体相变, 温度应力是其应力主要来源.
互联网The martensitic transformation of several industrial steels was studied, such as 65 Mn, 60 Si 2 Mn , 9 CrSi, CrWMn, 5 CrMnMo and 42 CrMo.
研究了工业用钢65Mn 、 60Si2Mn 、 9CrSi、CrWMn 、 5CrMnMo、42CrMo淬火马氏体的形成过程.
互联网Martensitic transformation is one of the important means to improve the properties of steel and iron.
马氏体相变是改善钢铁材料力学性能的1种重要途径.
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