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Inverse method for estimation of composite kink-band toughness from open- hole compression strength data

机译:从裸眼抗压强度数据估算复合材料扭结带韧性的逆方法

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Fiber-reinforced polymer matrix composite materials can fail by kink-band propagation mechanism when subjected to in-plane compressive loading. This mode of failure is especially prevalent in compressive loading of laminates with holes, cut-outs, or impact damage. Most of the successful models for predicting compressive strength of such laminates require "fracture" toughness associated with kink-band propagation under in-plane compression. However, this property is difficult to measure experimentally, limiting the use of such models in design practice. In this paper an inverse method is proposed to estimate the kink-band toughness of the laminate from its open-hole compression strength data, which is an easier property to measure experimentally. Furthermore, a scaling relationship is proposed to estimate kink-band toughness for other laminate configurations of the same material. Through various investigations, it is shown that the developed inverse method and scaling relationships can serve as effective and accurate tools in the prediction of open-hole compression and compression after impact strengths for multiple layups of different material systems.
机译:当经受面内压缩载荷时,纤维增强的聚合物基复合材料会因扭结带传播机制而失效。这种破坏方式在带有孔,切口或冲击损坏的层压板的压缩载荷中尤为普遍。用于预测此类层压板抗压强度的大多数成功模型都需要与“面内压缩”下扭结带传播相关的“断裂”韧性。但是,此属性很难通过实验测量,从而限制了此类模型在设计实践中的使用。本文提出了一种反演方法,根据其开孔抗压强度数据估算层压板的扭折带韧性,这是一种较容易通过实验测量的性质。此外,提出了比例关系以估计相同材料的其他层压构造的扭结带韧性。通过各种研究表明,所开发的反演方法和比例关系可以作为有效而准确的工具,用于预测裸眼压缩和不同材料系统的多层叠合的冲击强度后的压缩。

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