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Neutron diffraction measurements on dissimilar metal weld of Cu-AI obtained by Friction Stir Welding method

机译:通过摩擦搅拌焊接法获得的Cu-AI异种金属焊缝中子衍射测量

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Dissimilar metal weld (DMW) of Cu and Al alloy, namely DMW CuAl, was produced using Friction Stir Welding (FSW) technique. Characterization was performed at retreating and advancing side by neutron diffraction method. It is obtained that the weight percent composition of Cu and Al are dynamically change, depend on weld zone and welding direction. In SZ Cu element 55,18%, and it is majority component in the retreating side and it decreases gradually from the retreating side to the advancing side. The weight percent composition of Cu in the retreating side at HAZ and TMAZ are 99.25 %, and 61.25%, respectively, and in the advancing side are 0.35% and 38.75 %, respectively. Cu Bragg peaks of (111), (200) and (220) show that peak width ratio of BMZ / SZ is approximately 13%. This indicates a change in crystallite size that affects the behavior of plastic deformation in the welded material.
机译:使用摩擦搅拌焊接(FSW)技术生产Cu和Al合金的不同金属焊接(DMW),即DMW Cual。通过中子衍射法在退回和推进侧进行表征。得到的是,Cu和Al的重量百分比是动态变化的,取决于焊接区和焊接方向。在Sz Cu元素55,18%中,在退回侧是多数分量,并且从退回侧逐渐降低到前进侧。 HAZ和TMAZ在REGREATING侧的Cu的重量百分比分别为99.25%,分别为61.25%,并且在前进侧分别为0.35%和38.75%。 (111),(200)和(220)的Cu Bragg峰表明,BMZ / Sz的峰值宽度比约为13%。这表明了微晶尺寸的变化,影响焊接材料中塑性变形的行为。

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