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Effect of tool rotational speed on residual stress, microstructure, and tensile properties of friction stir welded 6061-T6 aluminum alloy thick plate

机译:工具转速对搅拌摩擦焊接6061-T6铝合金厚板残余应力,显微组织和拉伸性能的影响

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摘要

In the present study, the effect of tool rotational speed on residual stress, microstructure, and tensile properties of friction stir welded AA 6061-T6 was investigated. AA 6061-T6 plates with a thickness of 16 mm were friction stir welded using three different tool rotational speeds of 500, 700, and 900 rpm and a constant welding speed of 120 mm/min. The results indicate that the longitudinal residual stress distribution is an M-shaped distribution in the transverse direction; in weld region, the tensile longitudinal stress in the advancing side is larger than that in the retreating side. With increasing rotation speed, the values of the tensile longitudinal residual stresses increased slightly, the peak tensile longitudinal stresses appear at the edge of the shoulder in the AS of the joints, and the maximum value of tensile longitudinal residual stress was 153 MPa with the rotation speed of 900 rpm which reaches up to 55 % of the yield strength of AA 6061-T6. Meanwhile, only the appearance of welded joint with 700 rpm is smooth. The grain size in WNZ grows up with increasing the rotation speed. The microhardness variation is determined by microstructure evolution, and the average microhardness decreases with increasing the rotation speed. The welded joint with the rotation speed of 700 rpm performs the maximum tensile strength of 236 MPa which is 76 % of the base material strength.
机译:在本研究中,研究了工具转速对搅拌摩擦焊接AA 6061-T6的残余应力,显微组织和拉伸性能的影响。使用三种不同的工具转速500、700和900 rpm和120 mm / min的恒定焊接速度,摩擦搅拌焊接厚度为16 mm的AA 6061-T6板。结果表明,纵向残余应力分布在横向方向上呈M形分布。在焊缝区域,前进侧的纵向拉伸应力大于后退侧的纵向拉伸应力。随着旋转速度的增加,拉伸纵向残余应力的值略有增加,峰值拉伸纵向应力出现在关节AS的肩部边缘,并且旋转纵向拉伸纵向残余应力的最大值为153 MPa。最高900 rpm的转速,最高可达到AA 6061-T6屈服强度的55%。同时,只有700 rpm的焊接接头外观是光滑的。 WNZ中的晶粒尺寸随着转速的增加而增大。显微硬度变化是由显微组织的演变决定的,平均显微硬度随转速的增加而降低。转速为700 rpm的焊接接头具有236 MPa的最大抗拉强度,为基础材料强度的76%。

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