1. Deposit of martensitic type.
马氏体型熔敷。

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2. 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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3. 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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4. The mechanism of laser hardening is martensitic hardening and grain refining.
激光相变硬化机理主要是马氏体强化和晶粒细化。

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5. Perspective in further study and applications of martensitic transformations was presented.
对马氏体相变的继续研究和应用作了展望。

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6. XRD investigation shows that martensitic phase transformation takes place in the white layers.
射线衍射表明白层内发生了马氏体相变。

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7. Structural steels, Carbon content. Low-alloy steels. Ferritic and martensitic stainless steels.
结构钢,碳钢,低合金钢,鉄素体和马氏体不锈钢。

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8. The chemical constituent change in bond area is the main factor that makes the martensitic zone.
熔合区化学成分的变化是马氏体带形成的主要原因。

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9. The AFM observation of martensitic surface relief effect showed to be direct, accurate and vivid.
AFM对马氏体相变形状应变特征的观测更直观、准确和真实。

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10. The microstructure reconstruction during the martensitic nucleation and growth processes was analysed.
分析了马氏体形核和长大过程中系统微观结构的变化规律。

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11. Martensitic transformation is a kind of specific and valuable transformation in Ni - Al applied field.
镍铝合金中的马氏体相变是一种特殊的并且在应用领域有重要价值的相变。

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12. And the effects of incomplete transformation on martensitic and reverse transformation has been studied.
并研究了不完全转变对正、逆马氏体相变内耗的影响。

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13. 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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14. Precision processing is performed for martensitic stainless steel SUS440C by loose abrasive machining technique.
利用游离磨粒加工方法对马氏体平面不锈钢SUS440C试件进行精密加工。

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15. The principle for the oil-quenching and tempering technology of two high chromium martensitic stainless steels is introduced.
介绍两种高铬马氏体不锈钢的油淬火回火工艺原理;

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16. 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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17. The magnitude and direction of lath martensitic shape strain is firstly measured by a new interference method in this research.
利用干涉显微镜首次测得了板条马氏体形状应变的大小及方向。

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18. 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。

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19. A low carbon martensitic spring steel has been developed to meet the requirements of variable-cross-section plate spring for trucks.
为适应变截面汽车板簧用材所需,研制了一种低碳马氏体型弹簧钢。

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20. Factorials design and Latin hypercube sampling design are applied in the high-speed milling experiments of martensitic stainless steel.
综合应用析因试验设计与拉丁超立方抽样试验设计,对难加工材料马氏体不锈钢进行了高速铣削试验。

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21. He invented the metal alloys stellite and martensitic stainless steel and designed one of the earliest automobiles in the United States.
他发明了哈氏合金以及马氏不锈钢,设计出了美国最早的汽车之一。

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22. And the influence of annealing temperature was also found to be caused by the expansion coefficient difference and martensitic transition.
晶化处理温度对因热胀系数差异带来的热拉应力因马氏体相变而致的相变压应力均有不同程度的影响。

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23. Could exponentially increase the corrosion resistance of martensitic stainless steel to improve the polishing performance of the workpiece.
可成倍提高马氏体不锈钢的抗蚀性,提高工件的抛光性能。

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24. The critical driving force of 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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25. In these films, it can be seen an obvious martensitic transition and a change of resistance as high as 1500% brought by martensite transition.
在这些薄膜中,观察到明显的马氏体相变过程和高达1500%的相变诱导电阻变化率。

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26. When carburized under high carbon potential (1. 1% C), microcracks tend to appear on the martensitic matrix near the outer surface of the layer.
表面碳势为1.1%C的渗碳硬化层内,临近外表面部位的枣核马氏体中会出现显微裂纹。

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27. The higher the peak temperature, the coarser the grain size of prior austenite, the larger the martensitic lath bundle after phase transformation.
峰温越高,奥氏体晶粒越粗大,冷却后形成的马氏体板条束尺寸也越大。

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28. The martensitic and undissolved carbide contents continuously increase as the laser scanning speed increases while the residual austenite decreases.
随激光扫描速度增大,试样中的马氏体和未溶碳化物的含量不断增加,残余奥氏体含量则连续下降。

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29. 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。

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30. 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。

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