The Effects of SiC Particle Addition as Reinforcement in the weld Zone during Friction Stir Welding of Magnesium Alloy AZ31B

M. Pasha, P. Reddy, P. Laxminarayana, I. A. Khan
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引用次数: 6

Abstract

Welding of magnesium alloys influence a great effect on magnesium application expansion, especially in marine and aerospace where large-size, complex components are required. Due to specific physical properties of magnesium, its welding requires great control. In general, the solid-state nature of friction stir welding (FSW) process has been found to produce a low concentration of defects. Mechanical properties of  friction stir welded joints are decreases than base material, so to enhance the mechanical properties of welded portion, In the present research additional SiC particulates were incorporated in the weld interface of friction stir welding of Magnesium alloy AZ31B. Silicon Carbide has been added as reinforcement by creating separate geometry, at the edges where the welding is interface with 4 different volume proportions such as 10%, 15%, 25% and 30%. Tool Steel of H13 grade has been used as friction stir welding tool. Rotational Speed of 1400 RPM and Transverse Speed of 25 mm/min were selected. Joined Mg Alloy AZ31B alloy plates were evaluated for their mechanical properties under two different conditions, i.e in the un-reinforced welded condition and reinforced welded conditions. The results of the study revealed that the mechanical properties of the SiC particulates added Mg alloy AZ31B welded joints are superior in all four proportions of SiC, compared to un-reinforced Mg alloy AZ31B welded joints. Microstructural examination of the welded joints was conducted using Optical microscope and revealed that distribution of SiC particles producing increased weld strength. The comparison of the microstructures and mechanical properties of unreinforced Friction stir welded AZ31 with those of SiC reinforced FS-welded joints showed that the addition of SiC particles decreased the grain size and increased the strength.
添加SiC颗粒增强AZ31B镁合金搅拌摩擦焊焊缝区的效果
镁合金的焊接对镁的应用范围有很大的影响,特别是在需要大尺寸、复杂部件的船舶和航空航天领域。由于镁的特殊物理性质,它的焊接需要很大的控制。一般来说,人们发现搅拌摩擦焊(FSW)工艺的固态性质会产生低浓度的缺陷。搅拌摩擦焊接接头的力学性能比母材有所降低,为了提高焊接部分的力学性能,本研究在AZ31B镁合金搅拌摩擦焊接界面中添加SiC颗粒。通过创建单独的几何形状,在焊接界面的边缘添加碳化硅作为增强材料,其中有4种不同的体积比例,如10%、15%、25%和30%。采用H13级工具钢作为搅拌摩擦焊工具。转速为1400 RPM,横向转速为25 mm/min。对AZ31B镁合金连接板在未加筋焊接和加筋焊接两种不同条件下的力学性能进行了评价。研究结果表明:与未增强的镁合金AZ31B焊接接头相比,添加SiC颗粒的镁合金AZ31B焊接接头在4种SiC含量下的力学性能均优于未增强的AZ31B焊接接头。利用光学显微镜对焊接接头进行了显微组织检查,发现SiC颗粒的分布使焊缝强度提高。通过对AZ31搅拌摩擦焊接接头与SiC增强fs焊接接头组织和力学性能的比较表明,SiC颗粒的加入减小了AZ31搅拌摩擦焊接接头的晶粒尺寸,提高了AZ31的强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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