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首页> 外文期刊>Polymers & Polymer Composites >Evolution of Damage Zone in Adhesive Layer of Adhesively Bonded Butt Joints under Cyclic Loading
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Evolution of Damage Zone in Adhesive Layer of Adhesively Bonded Butt Joints under Cyclic Loading

机译:循环载荷作用下对接接头粘结层损伤区的演变

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摘要

For rubber-modified adhesives, the damage zone plays and important role in governing adhesive strength. Recently, the damage to the adhesive layer has been inverstigated by in-situ observation under several load conditions. However, these observations are limited to the behaviour on the surface of the adhesive layer. If an adhesively bonded butt joint with a very thin adherend can be tested, damage in the interior of the adhesive layer will be observed in transmitted light, which facilitates clarification of the adhesive layer will be observed in transmitted light, which facilitates clarification of the fracture mechanism of adhesive joints. In this study, to observe the damage in the interiour of the adhesive layer, adhesively bonded butt joint specimens were made from 0.3 mm thick steel plates bonded by a rubber modified adhesive. These specimens were used for the fatigue tests, and the damage to the adhesive layer was examined by use of a microscopic video-camera under transmitted light. Furthermore, elastic-plastic finite element analysis of the butt joint was conducted to simulate the propagation behaviour of the damage zone. Modified Gurson's constitutive equations were applied to the adhesive layer and the rubber particles were considered to be the initial voids. The result for the analytical distributions of the void volume fraction was compared with the observed damage zone. It was found that the observed damage zone coincides with the high volume fraction zone.
机译:对于橡胶改性的粘合剂,损伤区在控制粘合强度方面起着重要作用。近来,通过在几种载荷条件下的现场观察已证实了对粘合剂层的损害。但是,这些观察仅限于粘合剂层表面上的行为。如果可以测试具有非常薄的被粘物的粘合对接接头,则在透射光中将观察到粘合剂层内部的损坏,这将有助于在透射光中观察到粘合剂层的澄清,从而有助于断裂的澄清。粘合接头的机理。在这项研究中,为观察粘合剂层之间的损伤,用0.3 mm厚的钢板通过橡胶改性的粘合剂粘合而成的对接接头样品。这些样品用于疲劳测试,并且在透射光下通过使用显微摄像机来检查对粘合剂层的损伤。此外,对接接头进行了弹塑性有限元分析,以模拟损伤区域的传播行为。将修改后的Gurson本构方程应用于粘合剂层,并将橡胶颗粒视为初始空隙。将空隙体积分数的分析分布结果与观察到的损伤区域进行比较。发现观察到的损坏区域与高体积分数区域一致。

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