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Investigation of mechanical properties of tufted composites: Influence of tuft length through the thickness reinforcement

机译:簇绒复合材料的机械性能研究:簇绒长度对厚度增强的影响

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摘要

In the aerospace, transport and energy industries, laminated composites are widely used to manufacture thicker and more complex composite pieces. Three-dimensional (3D) fabrics have been developed to replace the multilayered reinforcements in some applications to increase performance through the thickness. The present study is dedicated to improving the understanding of the mechanical performances of 3D composite pieces reinforced by tufting. The tufting process and the equipment configuration are described in detail in the present paper. A 3D reinforcement architecture is prepared by the tufting process with varied tuft length, and then resin transfer moulding technology is used to manufacture the composite samples. Tensile tests are carried out to characterise specifically the influence of the tuft length on the tensile performance of tufting threads through the thickness of composites. The tensile results and microscopic analysis on the cross section of the 3D specimens show that the tuft length strongly influences the mechanical properties of tufted composite. Therefore, control of the tuft length is necessary to optimise the tufting process and thus improve the mechanical performance of assembled thick reinforcements and composites. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在航空航天,运输和能源行业,层压复合材料被广泛用于制造更厚,更复杂的复合材料件。在某些应用中,已经开发出了三维(3D)织物来代替多层增强材料,以提高整个厚度的性能。本研究致力于增进对簇绒增强的3D复合材料力学性能的理解。本文对簇绒工艺和设备配置进行了详细描述。通过簇绒工艺以不同的簇长准备3D增强结构,然后使用树脂传递模塑技术制造复合材料样品。进行拉伸试验以具体表征簇绒长度对通过复合材料厚度的簇绒线的拉伸性能的影响。对3D样品横截面的拉伸结果和微观分析表明,簇绒长度强烈影响簇绒复合材料的机械性能。因此,必须控制簇绒长度以优化簇绒工艺,从而改善组装的厚增强材料和复合材料的机械性能。 (C)2017 Elsevier Ltd.保留所有权利。

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