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UNIAXIAL TENSION OF FRICTION-WELDED 304 STAINLESS STEEL AND 6061 ALUMINUM

机译:摩擦焊接304不锈钢和6061铝的单轴拉伸

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A study of friction-welded 304 stainless steel and 6061 aluminum was conducted using uniaxial tension loading and optical two-dimensional digital image correlation (2D-DIC) to generate full field deformation maps on the surface of the specimen and to quantify the mechanical stress-strain response. A significant observation was that failure did not occur at the friction-welded interface, but instead occurred within a strain-localized neck region in the aluminum approximately 1.5 mm away from the weld interface. A detailed analysis of the 2D-DIC data set for one test specimen was used to illustrate how the mechanical response of the aluminum changed significantly from its "pre-weld" behavior due to the friction-weld process on a sub-millimeter length scale. A methodology for quantifying the mechanical property variations in the aluminum as a function of the distance from the welded interface was demonstrated using multiple, high spatial resolution, post-test "virtual extensometers".
机译:使用单轴拉伸载荷和光学二维数字图像相关性(2D-DIC)对摩擦焊接的304不锈钢和6061铝进行了研究,以在试样表面生成全场变形图并量化机械应力,应变响应。一个重要的观察结果是,在摩擦焊接界面处未发生破坏,而是在距焊接界面约1.5毫米的铝中的应变局部颈区域内发生了破坏。对一个试样的2D-DIC数据集进行了详细分析,以说明铝的机械响应如何由于在亚毫米长度范围内的摩擦焊接工艺而与其“预焊接”行为发生了显着变化。使用多个高空间分辨率的后测试“虚拟引伸计”演示了一种量化铝的机械性能变化的方法,该铝性能是距焊接界面的距离的函数。

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