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Effect of the size reduction on the bulk tensile and double cantilever beam specimens used in cohesive zone models

机译:尺寸减小对内聚力区域模型中使用的整体拉伸和双悬臂梁试样的影响

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Cohesive zone elements used in finite element analysis are a reliable way to design and predict the behaviour of the joint. The characterisation of the traction separation law used in these models is done using tensile and fracture tests, and the parameters of such laws depend on humidity and temperature. Water diffusion tests are therefore necessary, which are dependent on specimen geometry, meaning a bigger specimen takes longer to fully saturate. To solve this problem and increase the efficiency of the ageing process, smaller tensile bulk and double cantilever beam (DCB) specimens are necessary. Another advantage of smaller DCB specimens is that they can be tested in smaller high-temperature chambers, where normal DCB specimens do not fit. Smaller geometries of the bulk tensile and DCB tests are analysed, and a proposed geometry for each test is shown to produce very satisfactory results, validating the use of these specimens.
机译:有限元分析中使用的粘性区域元素是设计和预测接头行为的可靠方法。这些模型中使用的牵引力分离定律的表征是通过拉伸和断裂试验完成的,这些定律的参数取决于湿度和温度。因此,必须进行水扩散测试,这取决于样品的几何形状,这意味着较大的样品需要更长的时间才能完全饱和。为了解决此问题并提高时效效率,需要较小的抗拉体积和双悬臂梁(DCB)标本。较小的DCB样本的另一个优点是,它们可以在较小的高温箱中进行测试,而普通的DCB样本则不适合。分析了整体拉伸和DCB测试的较小几何形状,并且显示了针对每个测试的拟议几何形状均产生非常令人满意的结果,从而验证了这些样品的使用。

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