• 需要面心立方体氏体结构转变为体心立方体素体结构,但是铁素体只能容纳固溶体状态的0.02%的

    The iron wants to change from the FCC austenite structure to the BCC ferrite structure, but the ferrite can only contain 0.02% carbon in solid solution.

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  • 回火过程中,贝中的奥氏体扩散转变方式分解铁素体渗碳体

    During the tempering process, the austenite in bainite decomposed into ferrite and cementite by diffusion transformation.

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  • 一般认为珠光体转变得到铁素体渗碳体机械混合物而且存在领先

    It is generally considered that the simple mechanical mixture of ferrite and cementite is gained in the pearlite transformation and there is prevenient phase in this process.

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  • 魏氏组织的试样等轴铁素体的试样更高冲击韧性更低韧脆转变温度

    The specimens with Widmanstatten structure have higher impact strength and lower ductile-brittle transition temperature than those with equiaxial granular ferrite structure.

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  • 相变动力学基础,研究铁素体珠光体和贝氏体转变温度和相变体积分数的计算方法。

    On the basis of transformation kinetics, the transformation of austenite to ferrite, austenite to pearlite, austenite to bainite was investigated.

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  • 结果表明,在多道次变形过程中,部分通过形变诱导相变转变素体

    The results show that some ferrite can form through deformation-induced ferrite transformation during multi-pass deformation.

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  • 合理控制低合金高强钢焊缝针状素体转变行为获得理想焊缝性能具有重要意义。

    It is of great importance for obtaining the perfect welding properties to control the AF transformation behavior reasonably in HSLA steel weld.

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  • 随着冷却速率增加,实验显微组织铁素体+粒状体逐步转变板条贝氏+板条马氏板条马氏体组织;

    The microstructure of the steel transforms from ferrite plus granular bainite, lath bainite plus lath martensite and then to lath martensite successively with the increasing of cooling rate;

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  • 碳氮化物析出弥散析出、相间析出、纤维状析出及等温转变温度较低时,碳氮化物在素体晶内沿位错处弥散析出等形态。

    It has been found that interphase precipitation, fibrous precipitation, precipitation on dislocation, precipitation from supersaturated ferrite at lower isothermal transformed temperature.

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  • 试验表明,铸态铁素体含量增加时,脆性转变温度相应提高。

    Test shows that the embrittlement temperature will increase with increase of the Si content.

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  • 计算表明变形加入可以使临界核胚减小并且提高素体开始转变温度

    Results show that the critical nucleus will be reduced and the initial transformation temperature of ferrite improved with increase of the deformation store energy.

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  • 计算表明变形加入可以使临界核胚减小并且提高素体开始转变温度

    Results show that the critical nucleus will be reduced and the initial transformation temperature of ferrite improved with increase of the deformation store energy.

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