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CROSS WELD TENSILE TESTING WITH DIGITAL IMAGE CORRELATION TO DETERMINE LOCAL STRAIN RESPONSE

机译:用数字图像相关性交叉焊接拉伸测试,以确定局部应变响应

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摘要

Qualification for weld strength is typically accomplished using cross weld tensile testing. This style of testing only gives the global behavior of the welded joint and limited materials properties, such as elongation at failure and tensile strength of the material where final failure occurs. Qualification for welded structures usually requires the weldment fails in the base metal. Final failure in cross weld tensile tests in the base metal does not provide information about the actual weld metal and heat affected zone properties. There may be weaker points in the microstructure that cannot be identified in a global cross weld tensile test due to being constrained by surrounding microstructures. Additionally, the traditional cross weld tensile test does not quantify how strain accumulates and transfers in the microstructure at various loads. Using Digital Image Correlation (DIC) in combination with tensile testing, local strain of the various microstructures present across the weld was obtained for ferritic to austenitic dissimilar metal welds (DMW), as well as for a typical "matching "ferritic steel filler metal weld with a higher tensile strength than the base metal. This test also showed where and how strain accumulated and transferred during tensile loading of various welded microstructures. Local yield stresses of each region were also obtained. Obtaining such local properties provides insight into design and service limits of welded components in service.
机译:焊接强度的鉴定通常使用交叉焊接拉伸试验完成。这种测试风格仅赋予焊接接头和有限的材料特性的全局行为,例如发生最终失效的材料的失效和拉伸强度的伸长率。焊接结构的资格通常要求焊接在基础金属中发生故障。基础金属中的交叉焊接拉伸试验中的最终失效不提供有关实际焊接金属和热影响区域性质的信息。有可能是在不能在全局横焊接拉伸试验由于由周围的微结构被约束来识别微结构较弱的点。另外,传统的十字焊接拉伸试验不量化应变如何在各种负载下的微观结构中累积和转移。使用数字图像相关(DIC)与拉伸测试的组合,为铁素体与奥氏体不同的金属焊接(DMW)提供焊缝上存在的各种微结构的局部应变,以及典型的“匹配”铁素体钢填充金属焊缝具有比基础金属更高的拉伸强度。该测试还显示出在各种焊接微结构的拉伸载荷期间累积和转移的剩余和转移的左后和转移。还获得了每个区域的局部屈服应力。获得此类本地属性提供了进入服务中焊接组件的设计和维修限制的洞察力。

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