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Identification of heterogeneous constitutive parameters in a welded specimen: Uniform stress and virtual fields methods for material property estimation

机译:鉴定焊接试样中的非均质本构参数:材料特性估算的均匀应力和虚场方法

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摘要

Local strain data obtained throughout the entire weld region encompassing both the weld nugget and heat affected zones (HAZs) are processed using two methodologies, uniform stress and virtual fields, to estimate specific heterogeneous material properties throughout the weld zone. Results indicate that (a) the heterogeneous stress-strain behavior obtained by using a relatively simple virtual fields model offers a theoretically sound approach for modeling stress-strain behavior in heterogeneous materials, (b) the local stress-strain results obtained using both a uniform stress assumption and a simplified uniaxial virtual fields model are in good agreement for strains epsilon(xx) < 0.025, (c) the weld nugget region has a higher hardening coefficient, higher initial yield stress and a higher hardening exponent, consistent with the fact that the steel weld is overmatched and (d) for epsilon(xx) > 0.025, strain localization occurs in the HAZ region of the specimen, resulting in necking and structural effects that complicate the extraction of local stress strain behavior using either of the relatively simple models.
机译:使用包括均匀应力和虚拟场在内的两种方法处理在包括焊核和热影响区(HAZs)的整个焊接区域中获得的局部应变数据,以估计整个焊接区域的特定异质材料特性。结果表明:(a)通过使用相对简单的虚拟场模型获得的异质应力-应变行为为建模异质材料中的应力-应变行为提供了理论上合理的方法,(b)使用两种均质方法获得的局部应力-应变结果对于应变epsilon(xx)<0.025,应力假设和简化的单轴虚拟场模型非常吻合,(c)焊核区域具有更高的硬化系数,更高的初始屈服应力和更高的硬化指数,这与以下事实一致:钢焊缝过度匹配并且(d)ε(xx)> 0.025时,应变局部化发生在样品的HAZ区域,从而导致颈缩和结构效应,这使得使用相对简单的模型之一提取局部应力应变行为变得复杂。

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