首页> 外文期刊>International Journal Precision Engineering Manufacturing-Green Technology >Influence of Preheating Source on Mechanical Properties and Welding Residual Stress Characteristics in Ultra Thin Ferritic Stainless Steel Hybrid Friction Stir Welded Joints
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Influence of Preheating Source on Mechanical Properties and Welding Residual Stress Characteristics in Ultra Thin Ferritic Stainless Steel Hybrid Friction Stir Welded Joints

机译:预热源对超薄铁素体不锈钢混合摩擦搅拌焊接接头力学性能和焊接残余应力特性的影响

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摘要

The joining of ultra thin ferritic stainless steel (STS) with thickness of 0.5 mm has been carried out by Hybrid Friction Stir Welding (HFSW) without pin method using additional Gas Tungsten Arc Welding (GTAW) as preheating source. The influence of preheating source on mechanical properties and welding residual stress characteristics has been investigated through mechanical test and numerical analysis. The ultimate tensile strength of HFSWelded joints is approximately 103% of base metal tensile strength which is higher than that of FSWelded joints. From the result of numerical analysis for thermal elastic-plastic analysis, it is founded that the magnitude of residual stress component (sigma x) of welding direction is in following order: HFSWelded joints (470 MPa) > FSWelded joints (400 MPa). For the stress component (sigma y) of perpendicular direction to welding line, there is no great difference for maximum tensile residual stress of FSWelded joints (180MPa) and HFSWelded joints (200 MPa). On the other hand, the area of residual stress distributions in HFSW is smaller than FSW method. The overall results obtained in mechanical test and numerical analysis confirmed that HFSW is a distinct possibility to join ultra thin STS.
机译:厚度0.5mm的超薄铁素体不锈钢(STS)的焊接是通过无针方式的混合摩擦搅拌焊接(HFSW),使用附加的钨极氩弧焊(GTAW)作为预热源进行的。通过力学试验和数值分析,研究了预热源对力学性能和焊接残余应力特性的影响。 HF焊接接头的极限抗拉强度约为母材抗拉强度的103%,高于FSW焊接接头的抗拉强度。根据热弹塑性分析的数值分析结果,发现焊接方向的残余应力分量的大小按以下顺序排列:HF焊接接头(470 MPa)> FSW焊接接头(400 MPa)。对于垂直于焊接线方向的应力分量(σy),FSW焊接接头(180 MPa)和HFSW焊接接头(200 MPa)的最大拉伸残余应力没有太大差异。另一方面,HFSW中的残余应力分布面积小于FSW方法。通过机械测试和数值分析获得的总体结果证实,HFSW是加入超薄STS的独特可能性。

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