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Influence of the Deformation Rate on the Delamination of Laminated Composite Materials

机译:变形率对层压复合材料分层的影响

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It is well known that delamination is one of the most critical mechanism of failure of laminated composite materials. It supposes an important load capacity reduction, it is difficult to see and his evolution modify the failure of the component. Composite delamination depends on their fracture toughness. On the other hand, impacts are the most dangerous loads for those materials due to the important deformation rate induced in the material.This work analyses the influence of load velocity in the fracture toughness, for modes I and II, in textile carbon/epoxy, up to an impact velocity of 0,190 m/s. For that range, results show that the mode I fracture toughness decrease with velocity, while for mode II it remains nearly constant.However, the load velocities analyzed are yet far from those induced in a low speed impact. We propose to continue this research by increasing deformation rates using drop tower impact techniques, to observe if the trend observed so far is maintained on increasing speed.
机译:众所周知,分层是层压复合材料失效的最关键机制之一。它假设重要的负载能力减少,很难看到,他的演进修改了组件的故障。复合分层取决于它们的断裂韧性。另一方面,由于材料中诱导的重要变形速率,影响是这些材料的最危险的负载。本作品分析了纺织碳/环氧树脂中的裂缝韧性中载荷韧性的载荷速度的影响,距离0,190米/秒的冲击速度。对于该范围,结果表明,该模式I断裂韧性随速度而降低,而对于模式II,它仍然几乎是恒定的。然而,分析的负载速度距离较低的荷载感。我们建议通过使用跌落塔冲击技术提高变形率来继续进行这项研究,以观察到到目前为止所观察到的趋势是否保持升高。

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