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A viscoelastic-viscoplastic model with non associative plasticity for the modelling of bonded joints at high strain rates

机译:具有非缔合塑性的粘弹-粘塑性模型,用于高应变速率下的粘结接头建模

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摘要

The purpose of this work is to present a constitutive model able to represent the behaviour of rubber toughened adhesive joints under dynamic loading. A fully coupled viscoelastic-viscoplastic damage model at finite strains developed for mineral filled semi-crystalline polymer is identified for an epoxy adhesive. The parameters of the model are identified from experimental tests undertaken on bulk material in compression and tension at several loading speeds. In order to validate the accuracy of the model to represent bonded joints, a specific dynamic Arcan device is used. Experimental tests on this apparatus are carried out for tensile, shear and mixed tensile/shear loadings at 1 mm/s, 10 mm/s and 100 mm/s. A very good agreement between experimental and numerical results is obtained for a large strain rate range and for various stress states. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项工作的目的是提出一个本构模型,该模型能够表示动态载荷下橡胶增韧粘合剂接头的行为。对于环氧胶粘剂,确定了为矿物填充的半结晶聚合物开发的在有限应变下的全耦合粘弹-粘塑性损伤模型。该模型的参数是从对散装物料在几种加载速度下的压缩和拉伸进行的实验测试中确定的。为了验证表示接合节点的模型的准确性,使用了特定的动态Arcan设备。在该设备上进行了拉伸,剪切和混合拉伸/剪切载荷为1 mm / s,10 mm / s和100 mm / s的实验测试。对于较大的应变速率范围和各种应力状态,实验结果和数值结果之间取得了很好的一致性。 (C)2016 Elsevier Ltd.保留所有权利。

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