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Effect of Ti-Al on microstructures and mechanical properties of plasma arc in-situ welded joint of SiCp/Al MMCs

机译:Ti-Al对SiCp / Al MMC等离子弧原位焊接接头组织和力学性能的影响

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摘要

The effect of Ti-Al on microstructures and mechanical properties of SiCp/Al MMC joints produced by plasma arc in-situ weld-alloying was investigated, in which argon-nitrogen mixture was used as plasma gases and Ti-Al alloy as filling composite. The results show that the formation of needle-like harmful phase Al4C3 is effectively prevented in the weld by in-situ weld-alloying/plasma arc welding with Ti-Al alloy sheet filler whose titanium content is more than 20%. The fluidity of molten pool is improved, and stable molten pool is gained for the addition of the Ti-Al alloy. The mechanical properties of welded joint are effectively enhanced by the compact-grain structure and the new reinforced composites such as Al3Ti, TiN, AlN and TiC welded joint. The test results of mechanical property show that the maximum tensile strength of welded joint gained by adding Ti-60Al alloy is up to 235 MPa. The factors influencing the tensile strength were also investigated.
机译:研究了等离子弧原位焊接合金化工艺中Ti-Al对SiCp / Al MMC接头组织和力学性能的影响,其中氩氮混合气为等离子体气体,Ti-Al合金为填充复合材料。结果表明,采用钛含量大于20%的Ti-Al合金薄板填料进行原位焊接合金/等离子弧焊可有效防止焊缝中针状有害相Al4C3的形成。提高了熔​​池的流动性,并通过添加Ti-Al合金获得了稳定的熔池。紧密晶粒结构和新型增强复合材料(如Al3Ti,TiN,AlN和TiC焊接接头)有效地提高了焊接接头的机械性能。力学性能测试结果表明,添加Ti-60Al合金可获得最大的焊接接头抗拉强度达235 MPa。还研究了影响拉伸强度的因素。

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