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首页> 外文期刊>The Journal of Adhesion >Analysis of the fracture process zone and effective crack length in the adhesively bonded end-notched flexure specimen
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Analysis of the fracture process zone and effective crack length in the adhesively bonded end-notched flexure specimen

机译:粘接末端缺口弯曲标本中断裂过程区和有效裂缝长度分析

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摘要

The mode II fracture of adhesive joints is well-known to involve large fracture process zones. Their effect in fracture energy measurements can be taken into account by the effective crack length approach. Moreover, fracture process zones can be simulated by cohesive zone models, which are increasingly used for structural analysis of adhesive joints. This paper aimed at evaluating the influence of the traction-separation law on the fracture process zone and on the effective crack length in end-notched flexure tests. Novel analytical cohesive zone models were developed for the bilinear and trapezoidal traction-separation laws. The latter were shown to affect significantly the energy dissipation rate versus effective crack length curve prior to crack initiation. Therefore, this effect seems to provide a simple approach for evaluating approximate traction-separation laws. The models here developed are easy to apply and provide simple approximate expressions useful for specimen selection.
机译:粘合剂的模式II骨折是众所周知的,可涉及大的骨折过程区域。 通过有效的裂缝长度方法可以考虑它们在裂缝能量测量中的效果。 此外,骨折处理区可以通过粘性区域模型来模拟,越来越多地用于粘合接头的结构分析。 本文旨在评估牵引分离法对骨折处理区的影响以及结束挠性弯曲试验中的有效裂缝长度。 开发了新型分析凝聚区模型,用于双线性和梯形牵引分离法。 显示后者在裂化开始之前显着影响能量耗散速率与有效裂缝长度曲线。 因此,这种效果似乎提供了一种评估近似牵引分离法的简单方法。 这里开发的模型很容易申请,并为样本选择提供有用的简单近似表达。

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