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Improving performance of friction stir welded AZ31/AM60 dissimilar joint by adjusting texture distribution and microstructure

机译:通过调整织构分布和微观结构来提高搅拌摩擦焊AZ31 / AM60异种接头的性能

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Inhomogeneous deformation, which was usually found during the deformation of friction stir welding (FSW) Mg alloys joints, could deteriorate the joint performance. This work aims to understand the effect of microstructure and texture distribution in joint on mechanical properties and deformation behavior of the FSW dissimilar Mg alloys joints. Two kinds of AZ31/AM60 dissimilar Mg alloys joints were obtained via FSW at two sets of welding parameters (higher rotation rate and welding speed (HRW), lower rotation rate and welding speed (LRW)). Electron backscatter diffraction measurements were conducted to examine the microstructure and texture distribution of these two joints. The results showed that the joint with finer grains, weaker texture and higher nugget zone (NZ) interface angle was obtained with HRW. The weaker texture and finer microstructure were beneficial to the homogeneous deformation of the joint. The larger angle between the NZ interface and the transverse direction (about 75°) made it away from the maximum shear force direction (45°) to avoid premature fracture. With these advantages, the mechanical properties of the joint with HRW were better than that with LRW. The yield strength, ultimate strength and elongation were improved 14.4%, 19.7% and 63.7%, respectively. In addition, the grain size of AZ31 of NZ in two joints was smaller than that of AM60. All the joints fractured at the AM60 side near the NZ boundary during the tension tests. This was mainly attributed to the larger grain size and higher Schmid factor of basal slip at the AM60 side near the NZ interface. This study provided some insights in understanding the improvement of the dissimilar FSW Mg joint performance by controlling texture distribution and microstructure.
机译:通常在搅拌摩擦焊(FSW)镁合金接头变形过程中发现的不均匀变形会降低接头性能。这项工作旨在了解接头的微观结构和织构分布对FSW异质镁合金接头的力学性能和变形行为的影响。通过FSW在两组焊接参数(较高的转速和焊接速度(HRW),较低的转速和焊接速度(LRW))下通过FSW获得了两种AZ31 / AM60不同镁合金接头。进行电子背散射衍射测量以检查这两个接头的微观结构和织构分布。结果表明,采用HRW可以得到晶粒细小,组织较弱,熔核区(NZ)界面角较高的接头。较弱的质地和较精细的微观结构有利于接头的均匀变形。 NZ界面和横向之间的角度较大(大约75°),使其远离最大剪切力方向(45°),以避免过早断裂。具有这些优点,HRW的接头的机械性能优于LRW的接头。屈服强度,极限强度和伸长率分别提高了14.4%,19.7%和63.7%。此外,两个接头中NZ AZ31的晶粒尺寸小于AM60。在拉伸试验中,所有接头均在NZ边界附近的AM60侧断裂。这主要是由于在NZ界面附近的AM60侧晶粒尺寸较大和基面滑动的Schmid因子较高。该研究为通过控制织构分布和微结构改善FSW Mg异种接头性能提供了一些见识。

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