• No deformation martensite phase was discovered.

    没有发现形变诱发马氏体

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  • The interface of austenite and martensite is somewhat straight.

    奥氏体马氏体之间界面为较平直界面。

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  • The structure of the two system is mainly the twin-type martensite.

    制度组织为主要是晶型马氏体。

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  • The microstructure of surfacing metal is lath martensite and carbide.

    堆焊显微组织低碳马氏体和碳化物。

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  • Fine structure of martensite in M-A constituents is twin sub structure.

    组元中马氏体精细结构孪晶结构。

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  • Mainly its metallographic structure consists of acicular ferrite and martensite.

    钢的组织主要由针状铁素体马氏体两相组成。

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  • They are dislocated lath martensite area and twinned martensite area respectively.

    这些分别为内孪晶马氏体区位错板条马氏体区。

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  • The structure of the studied steels was bainite, martensite and retained austenite.

    研究用钢室温组织贝氏、马氏体、少量残余奥氏体。

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  • This equation reflects the special character of martensite phase transformation well.

    方程能较好地反映马氏相变特征

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  • These lath martensite first nucleates in parent austenite intergranular and twin boundary.

    应变诱发马氏体首先氏体晶界孪晶界形核。

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  • The deformation dislocation density and martensite microstructure were also analysed by TEM.

    采用TEM对形变位错密度以及马氏体组织进行了分析。

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  • The results show that the microstructure was mainly composed of martensite and lower-bainite.

    结果表明,实验钢的组织马氏下贝氏体为主。

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  • Rapid cooling after nitrocarburizing, martensite structure is obtained at the diffusion layer.

    氮碳共渗后快冷,渗层获得含氮碳的马氏体组织。

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  • The final structure obtained from tempering a fully hardened steel is called tempered martensite.

    回火完全淬硬得到最终组织结构称为回火马氏体。

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  • The structure of adhesive phase and transition layer in bright layers are mixed type of martensite.

    白亮中的粘结以及过渡组织均为混合马氏体组织。

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  • As cast martensite high chromium white cast iron has good wear resistance and high impact toughness.

    马氏铸态铸铁具有良好抗磨强韧性。

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  • The decomposition and transformation of the retained austenite in bainite differ from that in martensite.

    体中的残余奥氏体分解转变行为与马氏体中的不同

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  • The original structure consists of deformation induced martensite, quenching martensite and retained austenite.

    原始材料组织状态为形变马氏体、淬火马氏体残余奥氏体。

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  • Tempering is possible because of the instability of the martensite, the principal constituent of hardened steel.

    由于马氏体这一淬硬主要成分不稳定性使得回火成为可能。

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  • The role of atomic hydrogen and hydrogen-induced martensite in hydrogen-induced delayed fracture was very small.

    原子马氏体氢致滞后断裂中所起作用则极小。

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  • The specimen with larger crack length has larger volume fraction of the martensite and larger transformation zone.

    马氏体体积分数以及相变区域随着裂纹长度增加而显著增大

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  • Because the V_4C_3 precipitated along the crystalline defects in austenite, they could be inherited to martensite.

    由于V_4C_3沿氏体晶体缺陷析出,故这些缺陷遗传马氏体中。

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  • Retained austenite reduction and carbide precipitations in the martensite are anticipated by the tempering process.

    减少残余奥氏体马氏体碳化物降水预计回火工艺。

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  • TEM morphology of the twin specimens at stress plateau stage and martensite section at hardening stage has been observed.

    观察到应变应力平台硬化阶段TEM组织形貌分别为晶与断续马氏体。

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  • The research results show that the maximum shear stress of dual-phase steel raises with the increase of martensite content.

    研究表明随着马氏体含量增加最大剪切应力随之增加。

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  • The formation of granular relief and martensite on the specimen surface seems to be reversible during deformation under loading.

    加载变形过程中样品表面形成马氏体和晶粒状浮雕具有可逆性。

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  • The reverse transformation of martensite to austenite takes place when the alloys are annealed after the external stress is unloaded.

    卸去外加应力,对其进行回复退火,合金发生逆转变,即从马氏体转变奥氏体

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  • It is shown that the transformation hysteresis increases and the reversible martensite amount decreases as the increasing of the strain.

    结果表明,随着应变增大该合金相变滞后宽,马氏可逆转变量减少

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  • It is shown that the transformation hysteresis increases and the reversible martensite amount decreases as the increasing of the strain.

    结果表明,随着应变增大该合金相变滞后宽,马氏可逆转变量减少

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