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ROLE OF STRESS-STATE ON MODE-I FRACTURE OF ADHESIVE BONDED JOINTS

机译:压力 - 态在粘合剂粘结关节模式 - I骨折的作用

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In the fracture behavior of adhesive bonded joints, the adhesive layer thickness is known to play a significant role. Fracture data from mode-I testing of an aluminum alloy double cantilever beam bonded with an epoxy based structural adhesive is well simulated by plain strain simulations using a triaxiality dependent cohesive zone model (TCZM). As observed, the thinner adhesive layer develops higher constraint compared to relatively thicker adhesive layers and in order to capture these effects for different constraint conditions it is shown that, cohesive model that incorporates the stress-state effects in traction-separation law is better suited than a conventional fixed cohesive law.
机译:在粘合接头的断裂行为中,已知粘合剂层厚度发挥着重要作用。通过使用三轴依赖性粘性区域模型(TCZM)通过普通菌株模拟粘接与环氧基结构粘合剂的铝合金双悬臂梁的裂缝数据进行骨折数据。与所观察到的,与相对较厚的粘合剂层相比,较薄的粘合剂层显影了更高的约束,并且为了捕获这些效果对不同的约束条件,表明,包含在牵引 - 分离法中的应力状态效应的内聚模型更适合传统的固定粘性法。

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