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Mixed-mode crack propagation tests of composite bonded joints using a dual-actuator load frame - Constant and variable G(II)/G(I) conditions

机译:使用双致动器载荷框架的复合粘接接头的混合模式裂纹传播试验 - 恒定和可变G(II)/ g(i)条件

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摘要

The increasing use of high-performance composite materials in primary structures is boosting the interest in structural bonding since it allows for higher mechanical performances under static and fatigue loading conditions. The design of highly efficient bonded structures, however, requires the capability of being able to correctly characterize the bonded joints which usually present multiple failure mechanisms. In this work, crack propagation experiments are performed under mixed mode conditions on composite bonded specimens using a dual actuators loading frame. Three different test protocols are developed and implemented in order to investigate the debonding failure envelope in the GI-GII space. At first, a constant displacement rate is imposed on both the actuators. According to the simple beam theory analysis, large mode mixity ratio variation is expected during the test under such loading condition. As a result, large variation of fracture energy is measured during the test, and crack path bifurcations are observed. Then, two different strategies are proposed to keep the mode mixity ratio constant during the test. When keeping GII/GI ratio constant during the test, stable fracture energy values are recorded all along the crack propagation path with identical fractured surface aspect.
机译:在初级结构中不断使用高性能复合材料的使用是提高结构粘合的兴趣,因为它允许在静态和疲劳负载条件下进行更高的机械性能。然而,高效的粘合结构的设计需要能够正确地表征通常存在多种故障机制的粘合接头的能力。在该作品中,使用双致动器装载框架在复合粘合试样上的混合模式条件下进行裂缝繁殖实验。开发并实施了三种不同的测试协议,以便在GI-GII空间中调查剥离故障包络。首先,在两个致动器上施加恒定的位移率。根据简单的光束理论分析,在这种负载条件下测试期间预期大模式混合比变化。结果,在测试期间测量裂缝能量的大变化,观察到裂纹路径分叉。然后,提出了两种不同的策略来在测试期间保持模式混合比恒定。当在测试期间保持GII / GI比率恒定时,沿着具有相同裂缝表面方面的裂缝传播路径全部记录稳定的断裂能量值。

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