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Rheological Properties and Adhesive Failure of Thin Viscoelastic Layers

机译:薄粘弹性层的流变特性和粘接失效

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摘要

Methods have been developed for measuring the linear viscoelastic properties of thin adhesive layers, and for determining the stress intensity factor characterizing the driving force for adhesive failure. Both methods involve bringing a hemispherical indenter in contact with the adhesive layer while simultaneously monitoring the load, displacement, and radius of contact between the indenter and the adhesive. Dynamic moduli for the adhesive layer are obtained by oscillating the indenter, and the adhesive properties are obtained by pulling the indenter completely out of contact with the adhesive layer. Existing theories of viscoelastic contact mechanics were extended to account for the fact that the adhesive layer thickness is not substantially larger than the contact radius, as is generally assumed. A variety of correction factors were introduced that depend on the ratio of the contact radius to the adhesive layer thickness. These methods were applied to a model adhesive based on an acrylic triblock copolymer. Determination of the time-dependent creep and relaxation functions for this material was simplified by the power-law frequency response of the dynamic moduli. The large stress intensity factors observed were related to a Dugdale model of the cohesive zone at the contact edge.
机译:已经开发出了用于测量薄的粘合剂层的线性粘弹性特性,以及用于确定表征粘合失败的驱动力的应力强度因子的方法。两种方法都涉及使半球形压头与粘合剂层接触,同时监视压头和粘合剂之间的负载,位移和接触半径。通过振荡压头获得粘合剂层的动态模量,并通过完全拉出压头使其不与粘合剂层接触而获得粘合性能。粘弹性接触力学的现有理论得到了扩展,以解决粘合剂层厚度基本上不大于接触半径的事实,这是通常假定的。引入了各种校正因子,这些校正因子取决于接触半径与粘合剂层厚度的比率。这些方法被应用于基于丙烯酸三嵌段共聚物的模型粘合剂。动态模量的幂律频率响应简化了这种材料随时间变化的蠕变和弛豫函数的确定。观察到的较大的应力强度因子与接触边缘内聚区的Dugdale模型有关。

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