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Effect of Tools Geometry and Dwell Time on Mechanical Properties and Macrograph of Two-Stage Refilled Friction Stir Spot Micro Weld

机译:刀具几何形状和停留时间对两阶段填充摩擦搅拌点微焊缝力学性能和宏观性能的影响

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In this present study, the two independent tools were used in the RFSSW process to joint similar material of AA1100 with a thickness of 0.42 mm using lap joint configuration. Effect of tools geometry and dwell time on mechanical properties, and macrograph was investigated. The joints were successfully obtained with better surface appearance. The micro-hardness variation at 4 group location shows higher than the base metal, while the maximum micro-hardness was obtained at parameter TC-8 at the center of the weld. Macrograph analysis showed the important factor that brings the plug fracture in all combination of parameters. It was the upward bending hook that leads to the crack propagate along the stirred zone to the top sheet, resulted in tear-off the top sheet from the bounded region. Increasing dwell time and tools size will increase the maximum tensile shear load significantly. The best average value of maximum tensile shear load that has been achieved was 561±24 N using the parameter tool C with 8 s dwell time (TC-8).
机译:在本研究中,在RFSSW工艺中使用了两个独立的工具,以搭接方式配置了厚度为0.42 mm的AA1100类似材料。工具的几何形状和停留时间对力学性能的影响,并进行了宏观分析。成功获得了具有更好表面外观的接头。 4组位置的显微硬度变化高于母材,而在焊接中心的参数TC-8处获得了最大显微硬度。宏观分析表明,在所有参数组合中,导致塞子破裂的重要因素。正是向上弯曲的钩子导致裂纹沿着搅拌区域传播到顶板,从而导致顶板从边界区域撕下。增加保压时间和工具尺寸会显着增加最大拉伸剪切载荷。使用参数工具C和8 s的停留时间(TC-8),已获得的最大拉伸剪切负荷的最佳平均值为561±24N。

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