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首页> 外文期刊>High temperature materials and processes >Microstructure and Mechanical Properties of Thick Plate Friction Stir Welds for 6082-T6 Aluminum Alloy
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Microstructure and Mechanical Properties of Thick Plate Friction Stir Welds for 6082-T6 Aluminum Alloy

机译:6082-T6铝合金厚板摩擦搅拌焊接的微观结构和力学性能

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6082-T6 aluminum alloy plate with thickness of 42mm was butt welded by friction stir welding (FSW) from two sides. The microstructures of the joints exhibited different grain sizes because of unequal frictional heating and plastic flow during FSW process. The transition from the heat affected zone (HAZ) to the nugget zone (NZ) in thermos-mechanical affected zone of advancing side (AS-TMAZ) was more sudden than thermos-mechanical affected zone of retreating side (RS-TMAZ). Kissing bond (KB) defect throughout the entire FSW joint was displayed both at the grain boundary and in the interior of the grain with semi-continuous bands. KB had no direct effect on tensile properties. Vickers hardness of the FSW joint was lower than the BM because its high heat input, dissolved and coarsened precipitates and little to the grain size after FSW. Hardness distribution of double-sided welding joint showed X-shaped area softening characteristics, that is to say the lowest hardness was the junction of two welding joint of NZ and the junction of TMAZ and HAZ. The tensile fracture position occurred in the lowest hardness region of the FSW joint, and it did not occur in the KB defect position.
机译:6082-T6厚度为42mm的铝合金板由两侧的摩擦搅拌焊接(FSW)焊接。由于FSW工艺期间,接头的微观结构表现出不同的晶粒尺寸。从热影响区域(HAZ)转变为掘金区域(AS-TMAZ)的热源机械受影响区(AS-TMAZ)中的核心区(NZ)比热源机械受试侧(RS-TMAZ)更突然突然突然(RS-TMAZ)。在整个FSW接头上的接吻键(KB)缺陷在晶粒边界和半连续带内展示。 KB对拉伸性能没有直接影响。 FSW接头的维氏硬度低于BM,因为其高热量输入,溶解和腐蚀性沉淀,FSW之后的晶粒尺寸少。双面焊接接头的硬度分布显示X形面积软化特性,即最低硬度是NZ两种焊接接头的连接和TMAZ和HAZ的结。拉伸断裂位置发生在FSW关节的最低硬度区域中,并且在KB缺陷位置不会发生。

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