首页> 外国专利> The crystal axis the body heart cube where 001 direction is controlled (BCC) the metallic materials and its production method of being the solid solution of structure

The crystal axis the body heart cube where 001 direction is controlled (BCC) the metallic materials and its production method of being the solid solution of structure

机译:晶体轴是控制<001>方向(BCC)的金属材料的体心立方及其为结构固溶体的生产方法

摘要

The crystal axis of the metallic materials 001 controlling distribution, the metallic materials which it makes be distributed the crystal axis 001, for example the electromagnetic material (the electromagnetic steel sheet) and it offers its production method according to adding management. In the temperature limits which become the BCC single-phase solid solution body heart cube (BCC) in the metallic materials which consist of the solid solution of structure the crystal axis of the metal they are the metallic materials and its production method of making be distributed 001 with high-temperature compression processing according to the adding management of aforementioned metallic materials. For example, the aforementioned metallic materials are the Fe Si alloy and this it heats to the temperature limits which become the BCC single-phase solid solution, parallel with adding management {the metallic materials which feature that it makes 100 be distributed}, for example the electromagnetic material (the electromagnetic steel sheet) and it is its production method by the fact that at the rate of strain which can maintain a process state where it can move the grain boundary the train energy where the solute atomic atmosphere which appears in the BCC single-phase solid solution controls the motion of transposition, at the same time is accumulated to the crystal grain as a driving force compression processing is done in the aforementioned BCC single-phase solid solution.
机译:金属材料<001>的晶轴控制分布,使金属材料<001>分布的金属材料,例如电磁材料(电磁钢板)的晶轴<001>,并根据添加管理提供其生产方法。由金属的晶体轴构成结构的固溶体的金属材料中成为BCC的单相固溶体心立方(BCC)的温度极限是其金属材料及其制备方法<001>根据前述金属材料的添加管理进行高温压缩处理。例如,上述金属材料是Fe Si合金,并且其例如与添加管理{其特征在于使其分布为100的金属材料}平行地加热到成为BCC单相固溶体的温度极限。电磁材料(电磁钢板)及其制造方法,其原理是:在应变速率下,可以维持使晶界移动的过程状态,而在BCC中出现的溶质原子气氛的火车能量单相固溶体控制转座的运动,同时在上述BCC单相固溶体中进行驱动力压缩处理的同时,将其累积到晶粒中。

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