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FORMING OF A NON-CRIMP 3D ORTHOGONAL WEAVE E-GLASS COMPOSITE REINFORCEMENT

机译:非蠕变3D正交织法电子玻璃复合材料的形成

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In this work, the formability of a single layer E-glass non-crimp 3D orthogonal woven reinforcement (commercialized under trademark 3WEAVE® by 3Tex Inc.) is experimentally investigated. The first phase of the study is dedicated to the understanding and measurement of the main deformation mechanisms occurring during forming processes. The deformation during extension is investigated under biaxial loading in the in-plane tows directions (i.e. warp and weft). Particular attention is dedicated to the behaviour during shear loading because this is considered the primary deformation mechanism in the reinforcement forming. The second phase involves the forming process of the 3D fabric on two moulds, i.e. tetrahedral and double-dome shape. The tests are assisted by 3D digital image correlation (DIC) technique to have a continuous measurement of the local deformation in the fabric plane during forming processes. The obtained results represent useful information and comparison to predictive numerical modelling of the forming process with such 3D composite reinforcement.
机译:在这项工作中,实验研究了单层E玻璃非卷曲3D正交编织增强材料(由3Tex Inc.以商标3WEAVE®商业化)的可成型性。研究的第一阶段致力于理解和测量在成形过程中发生的主要变形机理。在平面内丝束方向(即经纱和纬纱)的双轴载荷作用下,研究了拉伸过程中的变形。特别要注意剪切载荷期间的行为,因为这被认为是钢筋成形中的主要变形机制。第二阶段涉及在两个模具(即四面体和双圆顶形状)上形成3D织物的过程。通过3D数字图像相关(DIC)技术辅助测试,以连续测量成形过程中织物平面中的局部变形。获得的结果代表了有用的信息,并且与使用这种3D复合材料增强材料的成型过程的预测数值建模进行了比较。

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