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Large Deformation Behavior of Angle-Plied CFRP Laminates by inserting PA Mesh as Interlayer

机译:通过将PA网格作为层间插入PA网眼层压层压层的大变形行为

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When angle-plied CFRP laminates which do not contain 0° fibers are loaded in tension, intralaminar matrix cracks are developed in all plies and followed by interlaminar delamination, and then this leads to rupture of laminates at relatively low strain. Some studies found that greater fracture strain can be achieved by using thin plies since matrix crack is suppressed by the constraint effect. However using thin plies is costly because stacking number increases. The present study applies polyamide (PA) mesh which can. improve interlaminar fracture toughness by inserting them between plies. This study aims greater fracture strain in angle-plied laminates by suppressing interlaminar delamination between plies by inserting PA mesh. Damage behavior in two kinds of angle-plied CFRP laminates such as [452/-452]s and [452/PA/-452]s are evaluated by tensile tests. It is found.' that by inserting PA mesh strength and maximum strain improved compared to the laminates without PA mesh. An X-ray observation for the specimen just before tensile rupture reveals i that interlaminar delamination is not induced though there are many intralaminar matrix cracks in the laminates with PA mesh. From these experimental results, it is assumed that even if matrix cracking occurred, it does not progress to interlaminar delamination by ; inserting PA mesh and these phenomena lead to greater fracture strain due to accumulation of damage.
机译:当不含0°纤维的角度覆盖的CFRP层压材料张力时,在所有层中开发胰鸡腔内裂缝,然后是层间分层,然后导致层压板在相对低的菌株下破裂。一些研究发现,通过使用薄层可以实现更大的断裂应变,因为通过约束效果抑制了基质裂缝。然而,使用薄层昂贵,因为堆叠数量增加。本研究适用于可以的聚酰胺(PA)网。通过在层之间插入它们来改善层间骨折韧性。本研究通过插入PA网眼抑制层之间的层间分层来实现更大的断裂骨折。通过拉伸试验评估两种角度覆层CFRP层压板中的两种角度覆盖CFRP层压板的损伤行为。找到了。'通过插入PA网格强度和最大应变与没有PA网格的层压板相比改进。在拉伸破裂之前的标本的X射线观察揭示了ID,虽然层压板中的层压板中有许多腔内基质裂缝,但是具有PA网的intralaminar基质裂缝。从这些实验结果中,假设即使发生矩阵裂缝,它也不会通过跨域分层进行;插入PA网和这些现象导致由于损坏的积累而导致更大的断裂菌株。

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