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INERTIA-FRICTION WELDING OF SIC-REINFORCED 8009 ALUMINIUM

机译:SIC增强8009铝的惯性焊接

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Inertia-drive friction welding (IFRW) of an 8009 Al alloy (Al-8.5 Fe-1.7 Si-1.3 V, wt %) reinforced with 11 volume per cent SIC particles (8009/SiC/11(p)) has been investigated. Inertia-drive friction welds were made with constant energy at two levels of axial force. The microstructures of the base material and the welds were characterized using optical and scanning electron microscopy, while the mechanical properties were evaluated using microhardness and tensile testing. Examination of weld sections revealed that the hot deformation experienced during welding produced a homogenized microstructure with a uniform distribution of SiC particles along the bond line. No evidence of a chemical reaction between the SIC and the matrix was found in any of the welds, but cracking of some of the larger SIC particles was observed in the base material as well as in the IFR welds. The average microhardness of the various heat-a nd-deformation affected zones (HDZs) of the welds did not vary greatly from that of the base material, and no weld induced weak regions were discerned. The room-temperature (RT) tensile strength of the IFR welds exceeded 90 per cent of the base material. The weld tensile specimens failed at the outer edge of the HDZ for a II of the welds tested. The fracture surface of the 8009 matrix of tensile samples for both the base material and the welds exhibited a dimpled appearance indicating a ductile failure, while fracture through the SIC appeared to occur in a brittle fashion. IFRW has proven effective in joining 8009/SiC/11(p) with little loss in RT hardness and tensile properties. [References: 33]
机译:研究了用11体积百分比的SIC颗粒(8009 / SiC / 11(p))增强的8009铝合金(Al-8.5 Fe-1.7 Si-1.3 V,wt%)的惯性驱动摩擦焊接(IFRW)。惯性驱动摩擦焊缝是在两个轴向力水平下以恒定能量制成的。使用光学和扫描电子显微镜对基材和焊缝的微观结构进行表征,同时使用显微硬度和拉伸测试对机械性能进行评估。焊接截面的检查表明,焊接过程中发生的热变形产生了均匀的微观结构,沿着结合线碳化硅颗粒均匀分布。在任何焊缝中均未发现SIC与基体之间发生化学反应的迹象,但在基材和IFR焊缝中均观察到一些较大的SIC颗粒开裂。焊缝的各种受热和变形影响的区域(HDZ)的平均显微硬度与基础材料的平均显微硬度没有太大差异,也没有发现焊缝引起的薄弱区域。 IFR焊缝的室温(RT)拉伸强度超过基础材料的90%。焊缝拉伸试样在HDZ的外边缘处断裂,测试的焊缝为II。用于基材和焊缝的8009拉伸样品矩阵的断裂表面表现出凹陷的外观,表明其韧性断裂,而通过SIC的断裂似乎以脆性方式发生。事实证明,IFRW能有效地加入8009 / SiC / 11(p),而RT硬度和拉伸性能几乎没有损失。 [参考:33]

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