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Damage Tolerance Assessment By Bend And Shear Tests Of Two Multilayer Composites: Glass Fibre Reinforced Metal Laminate And Aluminium Roll-bonded Laminate

机译:通过两种多层复合材料的弯曲和剪切试验评估损伤容限:玻璃纤维增​​强金属层压板和铝辊压层压板

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摘要

The damage tolerance of an aluminium roll-bonded laminate (ALH19) and a glass fibre reinforced laminate (GLARE) (both based on Al 2024-T3) has been studied. The composite laminates have been tested under 3-point bend and shear tests on the interfaces to analyze their fracture behaviour. During the bend tests different fracture mechanisms were activated for both laminates, which depend on the constituent materials and their interfaces. The high intrinsic toughness of the pure Al 1050 layers present in the aluminium roll-bonded laminate (ALH19), together with extrinsic toughening mechanisms such as crack bridging and interface delamination were responsible for the enhanced toughness of this composite laminate. On the other hand, crack deflection by debonding between the glass fibres and the plastic resin in GLARE was the main extrinsic toughening mechanism present in this composite laminate.
机译:研究了铝轧制层压板(ALH19)和玻璃纤维增​​强层压板(GLARE)(均基于Al 2024-T3)的损伤容限。复合层压板已经在界面上经过三点弯曲和剪切测试,以分析其断裂行为。在弯曲测试期间,两种层压板均激活了不同的断裂机制,这取决于构成材料及其界面。存在于铝辊压层压板(ALH19)中的纯Al 1050层的高固有韧性,以及诸如裂纹桥接和界面分层等非本征增韧机制,共同导致了该复合层压板的增强韧性。另一方面,在GLARE中玻璃纤维和塑料树脂之间的剥离引起的裂纹挠曲是该复合层压板中存在的主要外在增韧机理。

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