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Mechanical Properties and Texture Evolution of AZ31 Mg Alloy during Equal Channel Angular Pressing

机译:AZ31 mg合金在等通道角压期间的机械性能和纹理演化

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Microstructure and texture evolution in the AZ31 Mg alloy subject to equal channel angular pressing (ECAP) have been investigated and correlated with the mechanical properties. When AZ31 Mg alloy was ECAPed up to 8 passes following the route B_c, grain refinement occurred effectively. Texture was also changed during ECAP. The original fiber texture of the extruded AZ31 Mg alloy changed to a new texture component of (011-bar 1)[52-bar3-bar1-bar], and the texture of (011-bar 1)[52-bar3-bar1-bar] orientation was rotated to (134-bar6)[75-bar2-bar0] orientation after 6-pass ECAP process. The variation of the strength with the pass number was explained by the texture and grain size. The strength data of AZ31 Mg alloys followed the standard Hall-Petch relationship when the similar texture was retained during the ECAP process. Otherwise the effect of texture on strength was dominant over the strengthening due to grain refinement.
机译:已经研究了AZ31mg合金的微观结构和纹理演化,其进行了等于沟道角压(ECAP),并与机械性能相关。 当AZ31镁合金在路线B_C之后产生高达8次通过时,晶粒细化有效地发生。 ECAP期间也改变了纹理。 挤出的AZ31 mg合金的原始纤维纹理变为(011-BAR 1)[52-BAR3-BAR1-BAR]的新纹理组件,以及(011-BAR 1)的质地[52-BAR3-BAR1- 杆]定向旋转到(134-BAR6)[75-BAR2-BAR0]方向后6乘以ECAP工艺。 通过纹理和晶粒尺寸解释了传递号码的强度的变化。 AZ31 mg合金的强度数据在ECAP过程中保留了类似的纹理时,AZ31 mg合金的强度数据跟随标准霍尔辅助关系。 否则,由于晶粒细化,纹理对强度的影响是显着的。

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