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Failure processes in composite materials: getting physical

机译:复合材料的失效过程:变得物理化

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摘要

This paper describes crack growth processes in carbon fibre and glass fibre-epoxy laminates under stress and quantifies by physical modelling the accumulation of damage with load cycling. Cracking mechanisms are observed directly and identified by in-situ dynamic scanning electron microscopy. Armed with this information, particular attention is given to the differences between these cracking processes and the way they interact, their growth-rate, and their effect on the damage-state of the structure with variations in laminate geometry, with changes in magnitude of applied stress, and with fatigue cycles. Particular attention is given to the internal damage state variable approach to physical modelling.
机译:本文描述了碳纤维和玻璃纤维-环氧层压板在应力下的裂纹扩展过程,并通过物理建模量化了载荷循环下损伤的累积。直接观察破裂机理,并通过原位动态扫描电子显微镜鉴定。有了这些信息,就可以特别注意这些破裂过程之间的差异,它们的相互作用方式,它们的生长速率以及它们对层压板几何形状的变化以及施加的大小变化对结构的破坏状态的影响。压力,并带有疲劳周期。尤其要注意内部损伤状态变量方法的物理建模。

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