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A practical approach to modeling aluminum weld fracture for structural applications

机译:用于建模铝焊缝骨折用于结构应用的实用方法

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摘要

This paper addresses the numerical simulation of plasticity and ductile fracture of large scale structures (e.g. ships, railcars, automobiles) fabricated with welds that exhibit appreciably lower strength than the plate material, often referred to as weld undermatching. It has been observed, both numerically and experimentally, that for such structures the weld undermatching often leads to plasticity and fracture being limited to the weld and heat affected zone (HAZ). While the large size of the structures of interest precludes the use of a refined three-dimensional element mesh capable of capturing the details of the weld/HAZ behavior, cohesive zones are ideal for capturing the overall effects of under matched weld plasticity and fracture on a structural scale. This paper focuses on establishing a systematic calibration process for determining the cohesive zone constitutive behavior and examining the validity of this approach in the context of mode I tearing of a large welded two-layer AA6061-T6 sandwich panel. First, test data from a welded coupon is used to calibrate the cohesive law. Tearing fracture of this panel is examined using the established cohesive law to represent weld/HAZ along with elastic-plastic shell elements, with in-plane dimensions much greater than the layer thickness, to represent the parent metal. It was verified that, for this structure, plasticity was indeed confined to the welds and heat affected zones, and that the behavior of the panel was captured with reasonable fidelity. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文解决了大规模结构的可塑性和韧性骨折的数值模拟(例如,船舶,轨道,汽车),其焊接制造的焊缝,其明显低于板材,通常被称为焊缝不承诺。在数值和实验中观察到,对于这种结构,焊缝承诺通常导致可塑性和断裂限制在焊缝和热影响区域(HAZ)。虽然感兴趣的结构的大尺寸绝不能解决能够捕获焊接/ HAZ行为的细节的精制的三维元件网,但粘性区域是捕获匹配焊接可塑性和骨折下方的整体效果的理想选择结构规模。本文侧重于建立系统校准过程,用于确定凝聚区组成型行为,并在模型I撕开大型焊接双层AA6061-T6夹心板的情况下检查这种方法的有效性。首先,来自焊接优惠券的测试数据用于校准凝聚性法律。使用建立的粘性定律检查该板的撕裂骨折,以表示焊接/危险以及弹性塑料壳元件,面内尺寸大于层厚度,表示母体金属。验证了,对于这种结构,确实限制了焊接和热影响的区域的可塑性,并且面板的行为具有合理的保真度。 (c)2017 Elsevier Ltd.保留所有权利。

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