Investigation of Metal Wire Mesh as Support Material for Dieless Forming of Woven Reinforcement Textiles

IF 3.3 Q2 ENGINEERING, MANUFACTURING Journal of Manufacturing and Materials Processing Pub Date : 2023-10-11 DOI:10.3390/jmmp7050182
Jan-Erik Rath, Thorsten Schüppstuhl
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Abstract

Within the rapidly growing market for fiber-reinforced plastics (FRPs), conventional production processes involving molds are not cost-efficient for prototype and small series production. Therefore, new flexible forming techniques are increasingly being researched, many of which have been inspired by incremental sheet metal forming (ISF). Due to the different deformation mechanisms of woven reinforcement fibers and metal sheets, ISF is not directly applicable to FRP. Instead, shear and bending of the fibers need to be realized. Therefore, a new dieless forming process for the production of FRP supported by metal wire mesh as an auxiliary material is proposed. Two standard tools, such as hemispherical punches, are used to locally bend a reversible layup of metal wire mesh and woven reinforcement fiber fabric enclosed in a vacuum bag. Therefore, the mesh aids in introducing shear into the material due to its ability to transmit compressive in-plane forces, and it ensures that the otherwise flexible fabric maintains the intended deformation until the part is cured or solidified. Basic experiments are conducted using thermoset prepreg, woven commingled yarn fabric, and thermoplastic organo sheets, proving the feasibility of the approach.
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金属丝网作为机织增强织物无模成型支撑材料的研究
在快速增长的纤维增强塑料(frp)市场中,涉及模具的传统生产工艺对于原型和小批量生产并不具有成本效益。因此,新的柔性成形技术得到了越来越多的研究,其中许多技术的灵感来自于增量钣金成形(ISF)。由于编织增强纤维和金属薄板的变形机制不同,ISF不能直接适用于FRP。相反,需要实现纤维的剪切和弯曲。为此,提出了一种以金属丝网为辅助材料的玻璃钢无模成形新工艺。两种标准工具,如半球形冲头,用于局部弯曲封闭在真空袋中的金属丝网和编织增强纤维织物的可逆堆叠。因此,由于网格具有传递平面内压缩力的能力,因此它有助于将剪切引入材料,并确保原本柔性的织物保持预期的变形,直到该部分被固化或固化。采用热固性预浸料、机织混纺纱织物和热塑性有机片材进行了基础实验,证明了该方法的可行性。
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来源期刊
Journal of Manufacturing and Materials Processing
Journal of Manufacturing and Materials Processing Engineering-Industrial and Manufacturing Engineering
CiteScore
5.10
自引率
6.20%
发文量
129
审稿时长
11 weeks
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