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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Development of the layered structure in a double-gated glass fiber-reinforced polypropylene injection molding: Experimental and simulated results
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Development of the layered structure in a double-gated glass fiber-reinforced polypropylene injection molding: Experimental and simulated results

机译:双门控玻璃纤维增强聚丙烯注塑成型层结构的研制:实验和模拟结果

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摘要

The present study aims to experimentally validate numerical simulation of fiber orientation distribution performed by molding simulation software Moldex3D in a double-gated injection-molded glass fiber-filled (40wt%) polypropylene box, by making a detailed comparison of predicted and experimentally measured fiber orientation distribution data. The modeling approach evaluated in this work consists in the implementation of the Folgar-Tucker rotary diffusion model with the invariant-based optimal fitting closure approximation for the fourth-order orientation tensor. The specimen used has a weld line in the center and sharp corners. This investigation characterizes in detail the development of the through-thickness layered structure at distinctive locations of the specimen. The sensitivity of fiber orientation distribution and the layered structure to changes upon injection time and melt temperature is also evaluated. The boxes display the typical layered laminate structure, with fibers aligned in the main flow direction near the walls (shell layer) and less oriented in the middle plane (core layer). The boxes injected at the lowest melt temperature display an additional skin layer. Unfortunately, simulation fails in predicting the five layers structure developed under these latter conditions. The grade of fiber orientation is deemed to be independent of process parameters but not the layered structure.
机译:本研究旨在通过制作预测和实验测量的纤维取向的详细比较,通过模制在双门控注塑玻璃纤维填充(40wt%)聚丙烯盒中模拟模拟软件Moldex3D进行的纤维取向分布的数值模拟。分发数据。在本工作中评估的建模方法包括使用基于不变的最佳装配闭合近似的Fongar-Tucker旋转扩散模型,用于四阶定向张量。所用样品在中心和尖角中具有焊点。该研究详细描述了在样本的独特地点的贯穿厚度分层结构的发展。还评估了纤维取向分布和分层结构对喷射时间和熔融温度的改变的敏感性。盒子显示典型的层状层压结构,纤维在壁(壳层)附近的主流量方向上对齐,并且在中间平面(芯层)中较少。注入最低熔体温度的盒子显示额外的表层。不幸的是,模拟在预测在这些后一种条件下开发的五层结构失败。纤维取向等级被认为是独立于工艺参数但不是层状结构。

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