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Half-transient liquid phase diffusion welding: An approach for diffusion welding of SiCp/A356 with Cu interlayer

机译:半瞬态液相扩散焊接:SiC p / A356与Cu中间层的扩散焊接方法

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摘要

Aluminum matrix composite SiCp/A356 was welded by half-transient liquid Phase diffusion welding (HTLPDW) with a Cu interlayer. The effects of welding parameters and interlayer thickness on the properties of the welded joint were investigated, and the optimal welding parameters were subsequently put forward. The relationship between the tensile strength of the joint and the microstructure was studied by analyzing the microstructure of joint using a scanning electron microscope (SEM) and an electron probe micro-analysis (EPMA). Results confirmed the success of welding aluminum matrix composite SiCp/A356 utilizing HTLPDW method with a Cu interlayer. Shorter welding time was a prominent characteristic of HTLPDW as compared with conventional transient liquid phase (TLP) diffusion welding. Furthermore, its welded joints had a tensile strength almost 72% of its parent matrix composites, evidently signifying the suitable application of half-transient liquid phase diffusion welding in welding composite engineering structures.
机译:铝基复合材料SiC p / A356通过具有Cu中间层的半瞬态液相扩散焊接(HTLPDW)进行焊接。研究了焊接参数和夹层厚度对焊接接头性能的影响,并提出了最佳焊接参数。通过使用扫描电子显微镜(SEM)和电子探针显微分析(EPMA)分析接头的微观结构,研究了接头的拉伸强度与微观结构之间的关系。结果证实了采用带铜中间层的HTLPDW方法焊接铝基复合材料SiC p / A356的成功。与传统的瞬态液相(TLP)扩散焊接相比,更短的焊接时间是HTLPDW的主要特点。此外,其焊接接头的抗拉强度几乎是其母体基体复合材料的72%,显然表明半瞬态液相扩散焊接在焊接复合工程结构中的适当应用。

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