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Tensile Strength and Macro-microstructures of A6061 CDFW Weld Joint Influenced by Pressure and Holding Time in the Upset Stage

机译:A6061 CDFW焊接接头的拉伸强度和宏观组织受到压力和镦锻时间

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摘要

This paper aims to analyze the effect of pressure and holding time in the upset stage on tensile strength and macro-microstructures of continuous drive friction welded (CDFW) joints of aluminum alloys A6061. Friction weld specimens were welded using variations of upset pressure (40, 80, 120 MPa). The upset holding time was varied from 3, 10, to 20 seconds. Tensile strength test was conducted based on the AWS standard. The result showed that the higher upset pressure and the longer holding time in the upset stage are able to reduce the porosity of the CDFW weld joint and cause a higher tensile strength of the specimens. Meanwhile, from macro-mic restructures observation results, it was found that the specimen with maximum tensile strength has a wider partly deformed area (ZPD) and finer grains in the center of the specimen longitudinal section compared to those of the specimens with minimum tensile strength. It was occurred due to plastic deformation as the result of the higher pressure and the longer holding time in the upset stage. Fracture surface observation results indicate that in the specimen with a higher upset pressure and a longer holding time, has inflated fracture surface and the fracture zone exists in the heat affected zone, not in the interface like that of the specimen with lower tensile strength due to the lower upset pressure and the shorter holding time.
机译:本文旨在分析压力和保持时间在铝合金A6061的连续驱动摩擦焊接(CDFW)关节的拉伸强度和宏观微观结构中的压力阶段的影响。使用镦粗压力(40,80,120MPa)的变化焊接摩擦焊接试样。镦锻保持时间从3,10到20秒变化。基于AWS标准进行拉伸强度试验。结果表明,镦锻阶段中较高的镦粗压力和较长的保持时间能够降低CDFW焊接接头的孔隙率并引起样品的较高拉伸强度。同时,从宏观 - 麦克风重组观察结果,发现具有最大拉伸强度的样品在标本纵向截面的中心具有较宽的部分变形区域(ZPD)和更细的晶粒,与具有最小拉伸强度的标本相比。由于塑性变形,由于较高的压力和镦锻阶段的较长保持时间较长。断裂表面观察结果表明,在具有更高的镦粗压力和较长的保持时间的样品中,在热影响区域中存在膨胀的骨折表面,并且裂缝区域存在于像样品的界面中,由于较低的拉伸强度较低的镦粗压力和较短的保持时间。

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