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首页> 外文期刊>Journal of Materials Processing Technology >Quality improvement of bobbin tool friction stir welds in Mg-Zn-Zr alloy by adjusting tool geometry
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Quality improvement of bobbin tool friction stir welds in Mg-Zn-Zr alloy by adjusting tool geometry

机译:用调整工具几何形式改进Mg-Zn-ZR合金中梭芯摩擦搅拌焊接的质量改进

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摘要

The bobbin tool friction stir welding (BTFSW) technique was applied to a Mg-Zn-Zr alloy, ZK60-T5. The effects of shoulder diameter and stir pin geometry on the macrostructure, microstructure and mechanical properties of the BTFSW joints were studied. Weld quality was sensitive to the interaction of bobbin tool geometries and processing parameters. The reduction in the shoulder diameter led to less frictional contact and resistance and hence lowered the mechanical load imposed on the tool. The employment of the tapered stir pin reduced the traversing force, which displaced substantially less plasticized metal during the BTFSW than the cylindrical stir pin. The welding speed for the BTFSW was increased benefiting from these mechanical load alleviations. The visual aspects of the BTFSW joints, characterized by limited tunneling and voiding phenomena occurring were improved with the increase in welding speed. The BTFSW resulted in extensive softening in the stir zones of the joints due to dissolution of the beta(2)'precipitates. The tensile properties of the joints were inferior to those of the base metal due to the crystallographic isotropy in the stir zone. The improvements in tensile properties of the BTFSW joint were achieved through texture tailoring by adding threads on the stir pin. The complicated plasticized metal flow introduced by the threaded stir pin provided a randomized crystallographic texture in the stir zone which contributed to the preferable tensile properties.
机译:将筒管工具摩擦搅拌焊接(BTFSW)技术应用于Mg-Zn-Zr合金,ZK60-T5。研究了肩部直径和搅拌销几何形状对BTFSW关节的宏观结构,微观结构和力学性能的影响。焊接质量对梭芯工具几何和处理参数的相互作用敏感。肩部直径的减小导致较少的摩擦接触和电阻,因此降低了工具上施加的机械负荷。锥形搅拌销的就业减少了穿过的横向力,其在BTFSW期间比圆柱搅拌销在BTFSW期间移动基本更少的增塑金属。 BTFSW的焊接速度从这些机械负荷缓解增加了受益。随着焊接速度的增加,改善了BTFSW接头的视觉方面,其特征在于发生有限的隧道和空隙现象。由于β(2)'沉淀物的溶解,BTFSW导致接头的搅拌区中的搅拌区大量软化。由于搅拌区中的结晶各向同性,接头的拉伸性质差不等。通过在搅拌销上添加螺纹来实现BTFSW接头的拉伸性能的改善。由螺纹搅拌销引入的复杂增塑金属流动在搅拌区中提供了随机结晶纹理,这有助于优选的拉伸性能。

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