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首页> 外文期刊>Journal of Materials Engineering and Performance >Fusion zone grain refinement in aluminum alloy welds through magnetic arc oscillation and its effect on tensile behavior
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Fusion zone grain refinement in aluminum alloy welds through magnetic arc oscillation and its effect on tensile behavior

机译:铝合金电弧弧焊熔合区晶粒细化及其对拉伸行为的影响

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摘要

Grain size reduction in weld fusion zones confers the advantages of an increased resistance to solidification cracking and an improvement in mechanical properties. Oscillation of the welding arc through an imposed alternating magnetic field is one of several approaches to modify weld solidification structures. In this study, gas tungsten arc welds were produced in two high strength, age hardenable aluminum alloys with and without an external magnetic field. Metallographic characterization revealed the degree of structural refinement produced by magnetic arc oscillation. The decrease in grain size was found to increase tensile elongation, while the effect on strength and age hardening response was only meager. The improvement in ductility was partially maintained in the peak aged condition also.
机译:减小焊接熔合区的晶粒尺寸具有提高抗凝固裂纹性和改善机械性能的优点。通过施加的交变磁场使焊接电弧振荡是修改焊接凝固组织的几种方法之一。在这项研究中,使用两种高强度,可时效硬化的铝合金在有或没有外部磁场的情况下生产钨极气体保护焊。金相表征揭示了由磁弧振荡产生的结构细化程度。发现晶粒尺寸的减小增加了拉伸伸长率,而对强度和时效硬化响应的影响仅是微不足道的。在峰值时效条件下,延展性的改善也部分保持。

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