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Yield Behavior of rubber-modified epoxy adhesives under multiaxial stress conditions

机译:橡胶改性环氧胶粘剂在多轴应力条件下的屈服行为

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摘要

In rubber-modified epoxy resins, a damage zone is generated in the vicinity of the crack tip due to the cavitation of rubber particles, which improves fracture toughness dramatically. Hence, in evaluating the stress distribution in adhesive joints with rubber-modified adhesives, the void formation and growth should be taken into account. In most studies, however, the adhesive layer is still considered as a continuum material governed by the von Mises yield criterion. For many ductile materials, Gurson's model is used for the stress analysis, in which the void formation and growth is taken into account. In a previous study, using adhesively bonded scarf and torsional butt joints, the effect of stress triaxiality on the yield stress in the adhesive layer was investigated. In this study these experimentally-obtained yield stresses were compared with those obtained by a finite element method, where Gurson's constitutive equations were applied to the adhesive layer. As a result, the calculated yield agreed well with the experimentally-obtained yield stresses. This indicates that Gurson's model is a useful tool for estimating stress distributions in adhesive joints with rubber-modified adhesives.
机译:在橡胶改性的环氧树脂中,由于橡胶颗粒的空化作用,在裂纹尖端附近产生了损伤区域,从而显着提高了断裂韧性。因此,在评估橡胶改性胶粘剂的胶接接头中的应力分布时,应考虑空隙的形成和增长。但是,在大多数研究中,粘合层仍被视为由冯·米塞斯屈服准则控制的连续材料。对于许多韧性材料,Gurson模型用于应力分析,其中考虑了空隙的形成和增长。在以前的研究中,使用粘结的丝巾和扭转对接接头,研究了应力三轴性对粘结层中屈服应力的影响。在这项研究中,将这些实验获得的屈服应力与通过有限元方法获得的屈服应力进行了比较,在有限元方法中,将Gurson的本构方程应用于粘合剂层。结果,计算出的屈服与实验获得的屈服应力很好地吻合。这表明,Gurson模型是用于评估橡胶改性胶粘剂中胶粘剂接头应力分布的有用工具。

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