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Numerical and experimental investigation for formability of friction stir welded dissimilar aluminum alloys

机译:摩擦搅拌焊接不同铝合金成形性的数值和实验研究

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Automotive manufacturers have been trying to improve fuel efficiency without compromising the structural integrity and one of the ways to resolve the issue is to expand usage of tailor welded blanks (TWBs) in car body structure. Friction stir welding (FSW) is a joining process, which can be well fitted to obtaining aluminum tailored blanks when compared to other conventional joining processes. This paper presents an experimental and numerical study on TWBs produced by FSW with dissimilar aluminum 5083-H32 and 6061-T6 alloy sheets. The quality of the friction stir welded dissimilar joints was evaluated in terms of metallographic observations, hardness studies and tensile tests. Moreover, the local property changes in the weld regions were observed through digital image correlation (DIC) method. Formability of friction stir welded blanks was evaluated in the biaxial stretch forming mode using the limiting dome height (LDH) test. The failure location and the LDH values of the formed blanks were correlated to the hardness and local properties across the welds. The FE simulation of the LDH tests was also conducted incorporating Yld2000-2d anisotropy constitutive properties of the parent metal and further considering the properties of the non-homogeneous welded zone. The Marciniak-Kuczynski model was applied to predict the failure successfully in the FE model, and the results were validated with experimental data.
机译:汽车制造商一直在努力提高燃油效率而不会影响结构完整性,以及解决问题的方法之一是扩大车身结构中裁缝焊接坯料(TWB)的使用。摩擦搅拌焊接(FSW)是加入过程,其可以很好地安装,以获得与其他传统连接过程相比的铝制量坯料。本文介绍了FSW生产的TWB与不同铝5083-H32和6061-T6合金板材生产的实验和数值研究。在金相观察,硬度研究和拉伸试验方面评价摩擦搅拌焊接不同关节的质量。此外,通过数字图像相关(DIC)方法观察焊接区域的局部性质变化。使用限制圆顶高度(LDH)试验在双轴拉伸成型模式中评价摩擦搅拌焊的焊接的可成形性。形成的坯料的故障位置和LDH值与焊缝穿过的硬度和局部性能相关。还对LDH试验的Fe模拟掺入了母金属的YLD2000-2D各向异性本构体性质,并进一步考虑了非均相焊接区域的性质。 Marciniak-kuczynski模型被应用于在FE模型中成功预测失败,并通过实验数据验证结果。

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