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Prediction of failure initiation of adhesively bonded joints using mixed-mode fracture data.

机译:使用混合模式断裂数据预测胶接接头的失效起始。

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An increased use of adhesively bonded joints in industrial applications has renewed the interest of mixed mode fracture research in adhesive joints. Most practical plane fracture problems are mixed mode, and most advanced materials and joints are shown to fail through mixed mode fracture. It is widely accepted that a useful method for characterizing the toughness of bonded joints is to measure the fracture toughness, GC; energy per unit area needed to produce failure. Mode mixity has a strong dependency toward fracture toughness, and fracture toughness is directly associated with load.; FRANC2D is used to model and analyze single-lap joint specimens to determine the mode mixity at failure initiation. Virtual loads are applied to the single-lap joint model to generate load vs. strain energy release rate curves. Failure loads obtained experimentally are then compared with predictions made by the mode-mixity fracture toughness curves for the two adhesive types considered.; It is concluded that failure loads predicted by mixed-mode fracture toughness curves are in good agreement with those obtained experimentally. Recommendations are made for future work in mixed-mode fracture toughness characterization, ranging from process stage to testing methods and analytical tools. (Abstract shortened by UMI.)
机译:在工业应用中越来越多地使用粘合接头,这引起了人们对粘合接头混合模式断裂研究的兴趣。大多数实际的平面断裂问题都是混合模式,并且大多数先进的材料和接头都因混合模式断裂而失效。人们普遍认为,表征粘结接头韧性的一种有用方法是测量断裂韧性GC。产生故障所需的单位面积能量。模式混合对断裂韧性有很强的依赖性,断裂韧性与载荷直接相关。 FRANC2D用于建模和分析单膝关节样本,以确定在失效开始时的模式混合。将虚拟载荷应用于单膝关节模型,以生成载荷与应变能释放速率的曲线。然后将实验获得的破坏载荷与考虑的两种胶粘剂的模式混合断裂韧性曲线所作的预测进行比较。结论是,通过混合模式断裂韧性曲线预测的破坏载荷与通过实验获得的破坏载荷具有良好的一致性。针对混合模式断裂韧性表征的未来工作提出了建议,范围从过程阶段到测试方法和分析工具。 (摘要由UMI缩短。)

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