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Alternative simulation techniques for distortion of thin plate due to fillet-welded stiffeners

机译:角焊补强板导致薄板变形的替代模拟技术

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This study aims to develop and validate a wide-ranging simulation tool to predict welding distortion in stiffened plates and shells, with particular emphasis on out-of-plane deformation. The approach adopted in this study uncouples the thermal, elasto-plastic and structural effects leading to distortion. The computational models and results are supported by realistic welding tests and appropriate measurements to validate the simulated thermal fields and out-of-plane distortions. The simplest and most computationally efficient model makes use of algorithms, instead of numerical computation, to link the thermal welding strains to the elasto-plastic and structural responses of the welded assembly, via a static, single-load-step analysis. Alternative, more computationally intensive models are explored which simulate the full transient thermal and elasto-plastic structural responses in an uncoupled fashion. These provide a cross-reference for the more rudimentary but computationally efficient models. The experiments and computational strategies are applied to welded assemblies incorporating double-fillet-welded stiffeners.
机译:这项研究旨在开发和验证广泛的仿真工具,以预测加劲板和壳体中的焊接变形,尤其是平面外变形。本研究中采用的方法将导致变形的热,弹塑性和结构效应解耦。计算模型和结果得到实际的焊接测试和适当的测量的支持,以验证模拟的热场和面外变形。最简单,计算效率最高的模型通过静态的单步分析将算法(而不是数值计算)用于将热焊接应变与焊接组件的弹塑性和结构响应联系起来。探索了更多的计算密集型模型,这些模型以非耦合方式模拟了完整的瞬态热和弹塑性结构响应。这些为更基本但计算效率更高的模型提供了交叉引用。实验和计算策略被应用于结合了双角焊接加劲肋的焊接组件。

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