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Comparative Study of Hot Deformation Behavior and Microstructure Evolution of As-Cast and Extruded WE43 Magnesium Alloy

机译:热变形行为的比较研究及浇铸和挤出We43镁合金的微观结构演化

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摘要

Under compressive testing at 400C and a strain rate range of 0.05-5 s-1, the hot deformation behavior and microstructure evolution of an as-cast (AC), as-extruded (with a bimodal grain structure (named as Ex-1) or a relatively uniform fine grain structure (Ex-2)) WE43 alloy have been investigated and compared. The results indicate that the AC sample exhibits the highest peak stress, while the Ex-2 sample has the lowest value. Within the AC material, fine grains were firstly formed along the pancake-like deformed grains (as a necklace structure). The necklace structure was also formed within the Ex-1 and Ex-2 materials at high strain rates of 0.5 and 5 s-1. However, a lamellar structure that the coarse elongated grains divided by parallel boundaries was formed within the Ex-1 material. A relatively more homogeneous fine grain structure is achieved after a true strain of 1.0 within the Ex-2 material at a low strain rate of 0.05 s-1. In addition, a discontinuous dynamic recrystallization mechanism by grain boundary bulging is found to occur. After a true strain of 1.2, a (0001) fiber texture, a typical rare earth (RE) texture, and a relatively random texture are formed within the AC, Ex-1, and Ex-2 WE43 alloy material, respectively.
机译:在400℃的压缩检测和0.05-5S-1的应变率范围内,热变形行为和浇铸(AC)的热变形行为和微观结构演化,以挤出(具有双峰晶粒结构(名称为EX-1)或者进行了相对均匀的细粒结构(EX-2))WE43合金已经研究并进行比较。结果表明,AC样品表现出最高的峰值应力,而EX-2样品具有最低值。在AC材料内,首先沿着薄片状变形晶粒(作为项链结构)形成细晶粒。在EX-1和EX-2材料中,在0.5和5S-1的高应变率下也形成项链结构。然而,在EX-1材料中形成粗细长晶粒的粗细长细长晶粒。在低应变率为0.05 s-1的Ex-2材料中真正的1.0真正应变后,实现了相对较均匀的细粒结构。另外,发现通过晶界凸出的不连续的动态再结晶机制发生。在真正应变为1.2,A(0001)纤维纹理,分别在AC,EX-1和EX-2WE43合金材料内形成典型的稀土(RE)纹理和相对随机的纹理。

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