martensitic transformation中文,martensitic transformation的意思,martensitic transformation翻译及用法

2026-04-13 17:27 浏览次数 16

martensitic transformation

[ˌmɑ:tinˈzitik ˌtrænsfəˈmeɪʃən]

[材] 马氏体转变;马顿斯体式变化;麻田散体式变化

martensitic transformation 片语

片语

martensitic structural transformation马氏体结构相变

isothermal martensitic transformation等温马氏体相变

martensitic phase transformation马氏体相变

stress-induced martensitic phase transformation应力诱发马氏体相变

Martensitic Phase Transformation Plasticity马氏体相变塑性

martensitic transformation interface马氏体相界面

martensitic shape transformation马氏体相变

martensitic reverse transformation马氏体逆相变

reverse martensitic phase transformation相变特征

martensitic transformation 例句

英汉例句

  • 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。

  • The lower interphase energy in the martensitic transformation results in a lower value of internal friction peak as compared with that in diffusional transformation.

    马氏体相变中相界面能量较低,导致其内耗峰值低于扩散型相变的峰值。

  • If the constrained thermal cycle stopped upon cooling while the forward martensitic transformation was in progress, the loading stress strain curves exhibited the stress plateau immediately.

    如果在冷却过程中发生正相变的时候停止冷却并加载,则加载应力-应变曲线只出现应力平台。

  • The martensitic transformation of retained austenite particles in an intercritically annealed low-alloy steel has been studied using the acoustic emission technique.

    用声发射法研究了一种低合金钢于双相区热处理所得残余奥氏体的马氏体相变。

  • Stacking fault energy plays an important role in the decompounds of dislocation and the martensitic transformation behavior of shape mechanism as forming nucleus with stacking fault.

    在位错的分解以及以层错形核为变形机制的马氏体相变中层错能扮演了重要的角色。

  • Subsequently, the melted portion is rapidly cooled to a martensitic transformation region, to form a martensitic structure.

    随后,融化的部分迅速冷却到马氏体相变的地区,形成马氏体结构。

  • The martensitic transformation fields at the notch of specimen without pre-cracks and that at the crack tips of specimens with different crack length were studied.

    研究了无裂纹试样缺口根部以及不同裂纹长度的试样裂纹尖端的相变场。

  • The results of researching for crystallographic aspect and mechanism of martensitic transformation in zirconia ceramics have been reviewed in this paper.

    本文综述了自氧化锆被开发应用以来,人们关于氧化锆中马氏体相变晶体学和相变机制的研究成果。

  • Temperature-floating martensitic transformation is an important transformation during the quenching treatment process. The calculation of temperature field is the key to the transformation simulation.

    变温马氏体相变是重要的相变,其温度场的计算是相变模拟关键环节。

  • Progress in the characteristics of martensitic transformation and the development of its close related shape memory materials were generally described.

    概述对马氏体相变基本特征认识的进程,以及与马氏体相变密切相关的形状记忆材料的发展。

  • The inheritance phenomenon of precipitated V_4C_3 in martensitic transformation has been investigated by means of electron diffraction and matrix analysis.

    本文利用电子衍射和矩阵分析方法探讨了析出V_4C_3在马氏体相变中的遗传现象。

  • The results of metallograph, X ray diffraction, and resistance experiments confirmed that thermal elastic martensitic transformation could be showed in casting Cu Al Be alloys.

    结果表明,超声速度与合金相状态有关,而且对热弹性马氏体相变及其逆相变非常敏感。

  • Ion beam irradiation can affect the martensitic transformation and induce the amorphous transition by production, accumulation of defects and atomic disordering in alloys.

    粒子束辐照,将点缺陷引入合金,会对马氏体相变产生影响; 点缺陷和化学无序积累到一定程度,还会诱发扩散型晶体→非晶体转变。

  • Moreover, it is found that aging treatment has obvious effect on the martensitic transformation temperatures.

    时效处理对合金的相变温度有显着影响。

  • Antiferromagnetic transition has soft modulus effect while martensitic transformation is 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。

  • A new phonon model of excitation martensitic transformation is presented.

    本文提出了一个新的激发马氏体相变的声子模型。

  • In the paper, the mechanical relaxation behaviors in the Cu-based shape memory alloy were studied to reveal the process of the thermo-elastic martensitic transformation and to expand its applications.

    本文通过研究铜基形状记忆合金的低频力学弛豫行为揭示其热弹性马氏体相变过程,从而拓展其应用领域。

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