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Macro-performance evaluation of friction stir welded automotive tailor-welded blank sheets: Part I - Material properties

机译:搅拌摩擦焊接汽车拼焊板的宏观性能评估:第一部分-材料性能

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In order to evaluate the macroscopic performance of friction stir welded automotive tailor welded blank (TWB) sheets, the hardening behavior, anisotropic yielding properties and forming limit diagram were characterized both for base (material) and weld zones. In order to describe the Bauschinger and transient hardening behaviors as well as permanent softening during reverse loading, the modified Chaboche type combined isotropic-kinematic hardening law was applied. As for anisotropic yielding, the non-quadratic anisotropic yield function, Yld2000-2d, was utilized for base material zones, while isotropy was assumed for weld zones for simplicity. As for weld zones, hardening properties were obtained using the rule of mixture and selectively by direct measurement using sub-sized specimens. Forming limit diagrams were measured for base materials but calculated for weld zones based on Hill's bifurcation and M-K theories. In this work, four automotive sheets were considered: aluminum alloy 6111-T4, 5083-H18, 5083-O and dual-phase steel DP590 sheets, each having one or two thicknesses. Base sheets with the same and different thicknesses were friction-stir welded for tailor-welded blank (TWB) samples.
机译:为了评估搅拌摩擦焊汽车拼焊毛坯(TWB)板的宏观性能,对基底(材料)和焊接区域的硬化行为,各向异性屈服特性和成形极限图进行了表征。为了描述包辛格和瞬态硬化行为以及反向加载过程中的永久软化,应用了改进的Chaboche型组合各向同性运动硬化法则。至于各向异性屈服,非二次各向异性屈服函数Yld2000-2d用于基础材料区域,而为简单起见,假定各向异性为焊接区域。对于焊接区,使用混合法则并通过使用小尺寸试样直接测量来选择性地获得淬火性能。测量了基础材料的成形极限图,但根据Hill的分叉理论和M-K理论计算了焊接区域。在这项工作中,考虑了四种汽车板:铝合金6111-T4、5083-H18、5083-O和双相钢DP590板,每个板都有一个或两个厚度。对于定制焊接的毛坯(TWB)样品,用相同的厚度和不同的厚度进行摩擦搅拌焊接。

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