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没有发现形变诱发马氏体相。No deformation martensite phase was discovered.

马氏体型耐热钢的热处理。Martensite heat-resistant steel type of heat treatment.

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从马氏体转变成网状的碳化铬。Transformation of martensite into a network of chromium carbides.

分析研究了马氏体基体主要是位错马氏体。The matrix of martensite mainly consists of dislocated martensite.

两种制度的组织均为主要是孪晶型马氏体。The structure of the two system is mainly the twin-type martensite.

组元中马氏体的精细结构为孪晶亚结构。Fine structure of martensite in M-A constituents is twin sub structure.

结果表明,板条马氏体内存在少量的微孪晶。The results indicated that there are some microtwins in lath martensite.

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热影响区中存在少量细小马氏体组织,且呈梯度分布。There ate a small amount of martensite in HAZ, and distributed in gradient.

钢的组织主要由针状铁素体和马氏体两相组成。Mainly its metallographic structure consists of acicular ferrite and martensite.

枝晶内为孪晶马氏体和部分板条马氏体。The prodominant twin martensite and partial lath martensite existed in dendrite.

这些微区分别为内孪晶马氏体区和位错板条马氏体区。They are dislocated lath martensite area and twinned martensite area respectively.

结果表明处理后表面马氏体均减少。The results show that the amount of martensite always decreases after the treatment.

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该方程能较好地反映马氏体相变特征。This equation reflects the special character of martensite phase transformation well.

对钢的机械性能和马氏体亚结构间的关系也进行了研究。The relation between mechanical properties and martensite substructures was also studied.

应变诱发马氏体首先在原奥氏体晶界和孪晶界形核。These lath martensite first nucleates in parent austenite intergranular and twin boundary.

采用TEM对形变位错密度以及马氏体组织进行了分析。The deformation dislocation density and martensite microstructure were also analysed by TEM.

奥氏体型是无磁或弱磁性,马氏体或铁素体是有磁性的。Austenitic type is non-magnetic or weak magnetic properties martensite or ferrite is magnetic.

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氮碳共渗后快冷,在渗层获得含氮碳的马氏体组织。Rapid cooling after nitrocarburizing, martensite structure is obtained at the diffusion layer.

回火完全淬硬钢得到的最终组织结构被称为回火马氏体。The final structure obtained from tempering a fully hardened steel is called tempered martensite.

结果表明,含氮马氏体深冷处理后有更好的耐磨性能。The results show that the nitric martensite after cryogenic treatment has better wear resistance.