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Application of Fracture Mechanics to Crack Growth in Rubber-Cord Laminates

机译:断裂力学在橡胶丝层压板裂纹扩展中的应用

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The use of a fracture mechanics approach based on the strain energy release rate to assess failure due to the growth of fatigue cracks in rubber-cord laminated structures is discussed. The mechanics of crakc propagation is considered for cracking either between the plies or around individual cords, nd also for crack initiation and growth near cord ends. Energy release rates can be calculated approximately for each of these cases and enable the laminate results to be related to the independently measured crack growth characteristics of the rubber. Experimental energy release rate determinations, from compliance changes produced by propagating model inter-ply cracks by cutting, provide a check on the accuracy of the calculated energies. The approach identifies material properties relevant to laminate failure and indicates the effects of loading, design and construction parameters on the rate and nature of failure.
机译:讨论了基于应变能释放率的断裂力学方法来评估橡胶帘线层压结构中由于疲劳裂纹的增长而导致的破坏。裂纹传播的机理被认为是在帘布层之间或在单个帘线周围破裂,并且还考虑到在帘线末端附近的裂纹萌生和扩展。可以针对每种情况大致计算能量释放速率,并使层压结果与橡胶的独立测量的裂纹扩展特性相关。根据通过切割传播模型层间裂纹产生的柔度变化来确定实验的能量释放速率,可以检查所计算能量的准确性。该方法识别与层压板破坏相关的材料特性,并指示载荷,设计和构造参数对破坏率和性质的影响。

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