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A Study of Residual Stresses in Al/SiC_p Linear Friction Weldment by Energy-Dispersive Neutron Diffraction

机译:能量色散中子衍射研究Al / SiC_p线性摩擦焊缝中的残余应力

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Linear friction welding (LFW) is a solid state joining process for bonding of two flat-edged, complex geometry components through relative reciprocating motion under axial (compressive) forces. Although the proof of principle has been obtained some time ago, recently a number of studies have been published aimed at optimising the joining operations to obtain best joint strength and reduced distortion and residual stress. The present paper is devoted to the study of linear friction welds between components made from aluminium alloy 2124 matrix composite (AMC) reinforced with 25vol% particulate silicon carbide (SiC_p). Neutron diffraction was used to measure interplanar lattice spacings in the matrix and reinforcement, and to deduce residual elastic strains and stresses as a function of distance from the bond line. Significant asymmetry is observed in the residual stress distribution within the two components being joined, that may be associated with the difference in the microstructure and texture.
机译:线性摩擦焊接(LFW)是一种固态连接工艺,用于在轴向(压缩)力作用下通过相对往复运动来粘结两个平整,复杂的几何形状零件。尽管前一段时间已经获得了原理证明,但最近已发表了许多研究,旨在优化连接操作以获得最佳的连接强度,并减少变形和残余应力。本文致力于研究由25vol%颗粒碳化硅(SiC_p)增强的铝合金2124基复合材料(AMC)制成的零件之间的线性摩擦焊缝。中子衍射用于测量基体和增强材料中的晶面晶格间距,并推论出残余弹性应变和应力与距键合线距离的关系。在连接的两个组件内的残余应力分布中观察到明显的不对称性,这可能与微观结构和织构的差异有关。

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