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Effect of precipitation in the compressive behavior of high strength Mg-Gd-Y-Zn extruded alloy

机译:析出对高强度Mg-Gd-Y-Zn挤压合金压缩行为的影响

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The influence of beta' and gamma' precipitates on prismatic and basal planes and long-period stacking ordered (LPSO) fibers on the compressive behavior of high strength Mg-Gd-Y-Zn alloy was investigated using the combination of in-situ synchrotron radiation diffraction and acoustic emission, as well as transmission electron microscopy. After extrusion, the microstructure is characterized by highly oriented LPSO fibers elongated along the extrusion direction within the magnesium matrix. The microstructure of the magnesium matrix consists of a mixture of randomly oriented DRX-ed and coarse, textured non-DRXed grains (DRXed means Dynamically Recrystallised). Alloying elements in solid solution in the as-extruded condition precipitate during heat treatment at 200 degrees C. The formation of beta' prismatic plates and gamma' basal lamellar precipitates increases the compressive yield stress from 310 to 409 MPa. The onset of macroscopic plastic deformation in as-extruded and peak aged conditions is controlled by the activation of extension twinning in non-DRXed grains. In the peak aged alloy, prismatic plates and basal lamellae interact with twins during the propagation and growth stages of these. beta' precipitates are more efficient than gamma' basal lamellae not only in hindering extension twinning but also in the hardening of the basal system. During twin growth, the internal stress in the beta' precipitates continuously increases due to stress misfit generated when precipitates are engulfed by twins.
机译:利用原位同步加速器辐射研究了β'和γ'析出物对棱晶和基面以及长周期堆积有序(LPSO)纤维对高强度Mg-Gd-Y-Zn合金压缩行为的影响。衍射和声发射,以及透射电子显微镜。挤压后,微观结构的特征是高度定向的LPSO纤维在镁基质内沿挤压方向伸长。镁基体的微观结构由随机取向的DRX-ed和粗糙的,纹理化的非DRX晶粒(DRXed表示动态重结晶)的混合物组成。处于挤压状态的固溶体中的合金元素在200摄氏度的热处理过程中析出。β'棱柱形板和γ'基层状析出物的形成将压缩屈服应力从310 MPa增加到409 MPa。挤压和峰值时效条件下宏观塑性变形的发生是由非DRX晶粒中的孪生孪生的激活控制的。在峰值时效合金中,棱形板和基底层在孪晶的传播和生长阶段与孪晶相互作用。 β'沉淀物比γ'基底层更有效,不仅在阻碍延伸孪生方面,而且在基底系统的硬化方面。在双胞胎生长期间,由于沉淀物被双胞胎吞没而产生的应力失配,β'沉淀物中的内部应力持续增加。

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