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首页> 外文期刊>Metals >A Correlation between the Ultimate Shear Stress and the Thickness Affected by Intermetallic Compounds in Friction Stir Welding of Dissimilar Aluminum Alloy–Stainless Steel Joints
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A Correlation between the Ultimate Shear Stress and the Thickness Affected by Intermetallic Compounds in Friction Stir Welding of Dissimilar Aluminum Alloy–Stainless Steel Joints

机译:铝合金-不锈钢接头摩擦搅拌焊接中的极限剪切应力与金属间化合物影响的厚度之间的相关性

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In this work, Friction Stir Welding (FSW) was applied to join a stainless steel 316L and an aluminum alloy 5083. Ranges of rotation and translation speeds of the tool were used to obtain welding samples with different heat input coefficients. Depending on the process parameters, the heat generated by FSW creates thin layers of Al-rich InterMetallic Compound (IMC) mainly composed of FeAl 3 , identified by energy dispersive spectrometry. Traces of Fe 2 Al 5 were also depicted in some samples by X-ray diffraction analysis and transmission electron microscopy. Monotonous tensile tests performed on the weld joint show the existence of a maximum mechanical resistance for a judicious choice of rotation and translation speeds. It can be linked to an affected zone of average thickness of 15 μm which encompass the presence of IMC and the chaotic mixing caused by plastic deformation in this area. A thickness of less than 15 μm is not sufficient to ensure a good mechanical resistance of the joint. For a thickness higher than 15 μm, IMC layers become more brittle and less adhesive due to high residual stresses which induces numerous cracks after cooling. This leads to a progressive decrease of the ultimate shear stress supported by the bond.
机译:在这项工作中,摩擦搅拌焊接(FSW)用于连接316L不锈钢和5083铝合金。使用该工具的旋转和平移范围来获得具有不同热输入系数的焊接样品。根据工艺参数,FSW产生的热量会形成薄层铝富金属间化合物(IMC),该薄层主要由FeAl 3组成,通过能量色散光谱法鉴定。还通过X射线衍射分析和透射电子显微镜在一些样品中描绘了Fe 2 Al 5的痕迹。对焊接接头进行的单调拉伸试验表明,对于明智地选择旋转和平移速度,存在最大的机械阻力。它可以链接到平均厚度为15μm的受影响区域,该区域包含IMC的存在以及该区域中塑性变形导致的混乱混合。小于15μm的厚度不足以确保接头的良好的机械阻力。对于大于15μm的厚度,由于高残余应力,IMC层变得更脆,粘合剂更少,这会在冷却后引起许多裂纹。这导致由粘结支撑的极限剪切应力逐渐降低。

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