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Predicting Fracture In Structural Fillet Welds Using Traditional And Micromechanical Fracture Models

机译:使用传统和微机械断裂模型预测结构角焊缝中的断裂

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摘要

Traditional J-integral based fracture mechanics approaches and novel micromechanics-based simulations featuring the Stress Modified Critical Strain (SMCS) model are examined to evaluate their effectiveness in predicting fracture deformation capacity of structural fillet welds. This study represents one of the first detailed applications of these novel modeling techniques to fillet weld materials and details commonly used in civil construction. The study is based on experiments on twenty-four fillet welded cruciform specimens featuring a sharp root notch transverse to the direction of loading. The tested parameters include two weld filler materials, two weld sizes and two root notch lengths. The cruciform tests are complemented by detailed finite element simulations as well as ancillary tests (including sharp cracked fracture mechanics tests, Charpy V-Notch tests and notched tension coupons) to calibrate weld material toughness properties. The results indicate that the SMCS model can predict fracture in the structural fillet welds with good accuracy, while the J-integral based methods result in somewhat conservative and inaccurate predictions of fracture. The inaccuracy is higher, especially for the tougher fillet welds where extensive yielding prior to fracture invalidates the J-integral as a measure of fracture toughness. The results suggest that if calibrated and applied appropriately, micromechanics-based models such as the SMCS show promise in predicting fracture in fillet welds, when traditional approaches may not be reliable.
机译:研究了传统的基于J积分的断裂力学方法和基于应力修正临界应变(SMCS)模型的新型基于微力学的模拟,以评估其在预测结构角焊缝断裂变形能力方面的有效性。这项研究代表了这些新颖的建模技术在角焊缝材料和民用建筑中常用的详细信息中最早的详细应用之一。这项研究基于对二十四块角焊缝十字形试样进行的实验,该试样的横切载荷方向具有明显的根部缺口。测试的参数包括两种焊缝填充材料,两种焊缝尺寸和两种根部切口长度。十字形测试辅以详细的有限元模拟和辅助测试(包括锋利的裂纹断裂力学测试,夏比V型缺口试验和缺口拉伸试样),以校准焊接材料的韧性。结果表明,SMCS模型可以很好地预测结构角焊缝中的断裂,而基于J积分的方法导致的断裂预测有些保守和不准确。精度更高,尤其是对于更坚硬的角焊缝,在这种情况下,断裂前的大量屈服会使J积分失效,从而无法衡量断裂韧性。结果表明,如果进行了适当的校准和应用,基于SMMC的基于微力学的模型在预测角焊缝断裂时很有希望,而传统方法可能并不可靠。

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