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Models of interactions between process, microstructure and mechanical properties of composite materials—a study of the interlock layer-to-layer braiding technique

机译:复合材料的工艺,微观结构和力学性能之间的相互作用模型—层间互锁编织技术的研究

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摘要

A novel 3D braiding machine has been designed in order to produce high performance composites. Our objective is to establish the link between some of the main parameters governing the braiding process and the mechanical properties of layer-to-layer interlock 3D braided composites. We first deal with the microstructure of the composite. We distinguish an initial virtual state of the microstructure assuming that the reinforcing yarns show a non-deformed cross-section and that their path depends only on the motion of the bobbins carriers on the braiding plate. A final "realistic" state of the microstructure is determined by taking into account the yarns interactions and the consolidation process assuming a known thickness of the composite. Based on the micro-structure geometry, mosaic-type models are developed assuming that the textile microstructure can be mapped into a 3D grid of homogenized elements models. Reuss, Voigt bounds and a last model based on Aboudi's method of cells are used in order to evaluate the effect of the process parameters on stiffness and strength terms.
机译:为了生产高性能复合材料,设计了一种新颖的3D编织机。我们的目标是在控制编织过程的一些主要参数与层到层互锁3D编织复合材料的机械性能之间建立联系。我们首先处理复合材料的微观结构。我们假设增强丝显示出未变形的横截面,并且其路径仅取决于梭芯在编织板上的运动,从而区分出微观结构的初始虚拟状态。通过考虑纱线的相互作用和假设复合材料厚度已知的固结过程来确定微观结构的最终“现实”状态。基于微结构的几何形状,假设可以将纺织品微结构映射到均质元素模型的3D网格中,则可以开发镶嵌类型的模型。为了评估工艺参数对刚度和强度项的影响,使用了Reuss,Voigt边界和基于Aboudi的单元格方法的最后一个模型。

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