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首页> 外文期刊>Metallurgical and Materials Transactions B >Residual Stresses and Tensile Properties of Friction Stir Welded AZ31B-H24 Magnesium Alloy in Lap Configuration
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Residual Stresses and Tensile Properties of Friction Stir Welded AZ31B-H24 Magnesium Alloy in Lap Configuration

机译:旋转搅拌摩擦焊接AZ31B-H24镁合金的残余应力和拉伸性能

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摘要

AZ31B-H24 Mg alloy sheets with a thickness of 2 mm were friction stir welded in lap configuration using two tool rotational rates of 1000 and 1500 rpm and two welding speeds of 10 and 20 mm/s. The residual stresses in the longitudinal and transverse directions of the weldments were determined using X-ray diffraction. The shear tensile behavior of the lap joints was evaluated at low [233 K (−40 °C)], room [298 K (25 °C)], and elevated [453 K (180 °C)] temperatures. The failure load was highest for the lower heat input condition that was obtained at a tool rotational rate of 1000 rpm and a welding speed of 20 mm/s for all the test temperatures, due to the smaller hooking height, larger effective sheet thickness, and lower tensile residual stresses, as compared to the other two welding conditions that were conducted at a higher tool rotational rate or lower welding speed. The lap joints usually fractured on the advancing side of the top sheet near the interface between the thermo-mechanically affected zone and the stir zone. Elevated temperature testing of the weld assembled at a tool rotational rate of 1000 rpm and a welding speed of 20 mm/s led to the failure along the sheet interface in shear fracture mode due to the high integrity of the joint that exhibited large plastic deformation and higher total energy absorption.
机译:厚度为2毫米的AZ31B-H24镁合金薄板采用两种工具旋转速度1000和1500 rpm和两种焊接速度10和20 mm / s进行摩擦搅拌搭接焊接。使用X射线衍射确定焊件的纵向和横向方向上的残余应力。在低温[233 K(−40°C)],室温[298 K(25°C)]和高温[453 K(180°C)]下评估搭接接头的剪切拉伸行为。在较低的热输入条件下,由于在较小的钩接高度,较大的有效板材厚度和较高的钩挂高度下,在所有测试温度下以1000 rpm的工具转速和20 mm / s的焊接速度获得的热输入条件下,失效载荷最高与在较高的工具转速或较低的焊接速度下进行的其他两种焊接条件相比,具有较低的拉伸残余应力。搭接接头通常在热机械影响区和搅拌区之间的界面附近,在顶片的前进侧断裂。以1000 rpm的工具转速和20 mm / s的焊接速度进行组装的焊缝的高温测试,由于接头的高整体性表现出较大的塑性变形和更高的总能量吸收。

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  • 来源
    《Metallurgical and Materials Transactions B》 |2015年第4期|1626-1637|共12页
  • 作者单位

    Department of Mechanical and Industrial Engineering Ryerson University">(1);

    Department of Mechanical and Industrial Engineering Ryerson University">(1);

    Structures Materials and Manufacturing Laboratory National Research Council Canada - Aerospace">(2);

    Structures Materials and Manufacturing Laboratory National Research Council Canada - Aerospace">(2);

    Department of Mechanical and Industrial Engineering Ryerson University">(1);

    Department of Mechanical and Industrial Engineering Ryerson University">(1);

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