martensitic

[mɑ:tɪn'zɪtɪk]
  • martensitic
  • adj.

    马氏体的;

纠错 数据更新时间:2026-06-10 08:51:43
1、

Gas Nitriding Treatment of Piston Ring Made of Martensitic Stainless Steel

马氏体不锈钢活塞环的气体氮化

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2、

Application limitation and development trend of low carbon martensitic steels

低碳马氏体钢的应用局限性和发展趋向

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3、

The design and development of a low-carbon martensitic ultra-high strength steel

低碳马氏体型超高强度钢的设计与开发

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4、

The stress takes some effects on the martensitic transformation.

应力对于马氏体相变有一定的影响。

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5、

Martensitic Phase Transformation Plasticity and Its Application in Numerical Simulation of Quenching

马氏体相变塑性及其在淬火数值模拟中的应用

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6、

Effect of Post Heat Treatment on Mechanical Performance of Martensitic Steel Weld

后热处理对新型马氏体耐热钢焊缝性能的影响

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7、

Status and Tendency of Development for Cast Low Carbon Martensitic Stainless Steel

铸造低碳马氏体不锈钢的现状与发展趋势

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8、

The development of low activation martensitic steels for fusion reactor

聚变堆低活化马氏体钢的发展

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9、

The Application of the Simplex Optimization Method in the Calculation of Martensitic structure

单纯形优化法在马氏体相结构计算中的应用

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10、

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.

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11、

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.

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12、

A Study of Martensitic Stainless Steel with Free-Cutting and High Hardness

易切削高硬度马氏体不锈钢研究

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13、

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.

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14、

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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15、

Study on China Low Activation Martensitic Steel in Laser Weld

中国低活化马氏体钢的激光焊接研究

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16、

Study on heat treatment process of new type Martensitic wear resistant steel

新型马氏休耐磨钢的热处理工艺研究

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17、

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.

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18、

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.

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19、

High voltage TEM observation of thermoelastic martensitic transformation in a Cu-Zn-Al Alloy

Cu-Zn-Al合金中热弹性马氏体的高压电镜观察

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20、

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.

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21、

Predicting the martensitic transformation start temperature using back-propagation artificial neural networks

用反向传播人工神经网络预测低碳低合金钢的马氏体转变开始温度

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22、

It can be obtained that quantity of the martensitic transformation reduces with the increase of these factors.

结果表明,随着这两个因子的增大,马氏体的转变量变小。

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23、

New Methods on the Determination of Martensitic Transformation Shear Angle and Lattice Parameters;

马氏体相变切变角和点阵常数测定的新方法◆剪切角可调,减少板料扭曲变形。

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24、

Influence of Carbon Content on the Characteristic of Martensitic Steel in Abrasion

含碳量对马氏体钢磨料磨损特性的影响

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25、

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.

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26、

Prediction of M_s Temperature of Martensitic Stainless Steel by Fuzzy Identification Method

模糊辨识方法预测马氏体不锈钢M s温度

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27、

Hydrogen embrittlement can become important in martensitic steels.

马氏体钢容易浮现氢脆现象.

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28、

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。

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29、

The Martensitic Phase Transformation in Austenite Stainless Steel under High Velocity Impact

撞击条件下奥氏体不锈钢中的马氏体相变

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30、
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