首页> 外文会议>International Conference on Fracture and Strength of Solids(FEOFS 2005) pt.1; 20050404-06; Bali(ID) >Time-Dependent Effect of Viscoelastic Substrate on a Cracked Body under Inplane Load
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Time-Dependent Effect of Viscoelastic Substrate on a Cracked Body under Inplane Load

机译:粘弹性基体在平面载荷下对裂纹体的时变影响

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摘要

Theoretical and experimental methods dealing with the effect of a viscoelastic substrate on a cracked body under inplane load are presented in this article. A generalized trimaterial solution is solved as a convergent series in terms of complex potentials via the successive iterations of the alternating technique in order to satisfy the continuity condition along the interfaces between dissimilar media. This trimaterial solution is then applied to the problem of a finite thickness layer bonded to a half-plane substrate. Using a standard solid model to formulate the viscoelastic constitutive equation, the real time stress intensity factors can be directly obtained from the Laplace domain. In the experiment, an aluminum cracked plate bonded to a polymer substrate is tested in a tension machine, where the displacement of the specimen is recorded by a high precision digital camera. The time-dependent stress intensity factor is determined by an inverse calculation through the crack opening displacement. The comparisons between the theoretical and experimental results are discussed in the final.
机译:本文介绍了在平面载荷下处理粘弹性基底对裂纹体的影响的理论和实验方法。通过交替技术的连续迭代,将广义三材料解决方案作为复杂势的收敛序列进行求解,以便满足沿不同介质之间的界面的连续性条件。然后将此三材料解决方案应用于粘合到半平面基板的有限厚度层的问题。使用标准的固体模型来制定粘弹性本构方程,可以从拉普拉斯域直接获得实时应力强度因子。在实验中,在张力机上测试了粘合到聚合物基材上的铝制裂纹板,其中通过高精度数码相机记录样品的位移。时间相关的应力强度因数是通过裂纹开口位移的反算来确定的。最后讨论了理论和实验结果之间的比较。

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