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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Mechanical and thermo-mechanical peculiarity of functionally graded materials-based glass fiber-filled polybutylene terephthalate composites
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Mechanical and thermo-mechanical peculiarity of functionally graded materials-based glass fiber-filled polybutylene terephthalate composites

机译:基于功能分级材料的玻璃纤维填充聚对苯二甲酸丁二醇酯复合材料的机械和热机械特性

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摘要

This article proposes to develop novel functionally graded materials-based thermoplastic composites and present investigations on their mechanical and thermal properties. An especially designed mold and punch are used to fabricate functionally graded materials and homogeneous composites. Punch is a rotating member of the mold with a cavity at the center along the axis where the material is filled to produce desired samples. The punch rotates for 2 min at 1800 r/min for the gradation of fibers in functionally graded materials towards the outermost zone of the punch cavity. The punch is placed stationary for the fabrication of homogeneous composites. Functionally graded materials and homogeneous composites are fabricated with 15 wt.% and 30 wt.% glass fibers-reinforced polybutylene terephthalate. Neat polybutylene terephthalate is also fabricated for comparative study. The gradient of fiber distribution in functionally graded materials is verified by ignition loss test, hardness measurement, and scanning electron microscope analysis. Mechanical, fracture toughness, and thermo-mechanical peculiarity of functionally graded materials are investigated and compared with neat polybutylene terephthalate and homogeneous composites. Functionally graded materials outperform neat polybutylene terephthalate and homogeneous composites. This manufacturing technique shows a promising potential for fabrication of thermoplastics-based functionally graded materials which otherwise is difficult to produce because of their inherence characteristic to solidify at fast rate.
机译:本文提出开发新型功能渐进的基于材料的热塑性复合材料,并对其机械和热性能进行了研究。特别设计的模具和冲头用于制造功能渐进的材料和均匀的复合材料。冲头是模具的旋转构件,该模具沿着沿着轴线处的腔,其中填充材料以产生所需的样品。冲头在1800 r / min以1800 r / min旋转2分钟,以在功能上分级材料朝向冲头腔的最外区域渐变。将冲头放置在均匀复合材料的制造中。功能梯度材料和均匀复合材料用15wt%制备,%和30重量%。%玻璃纤维增​​强的聚对苯二甲酸丁二醇酯。纯聚丁烯对苯二甲酸丁酯也用于对比研究。通过点火损失试验,硬度测量和扫描电子显微镜分析验证功能渐变材料中纤维分布的梯度。研究了功能梯度材料的机械,断裂韧性和热机械特性,并与纯聚丁二醇酯和均匀复合材料进行比较。功能梯度材料优于纯净聚丁烯对苯二甲酸丁二醇酯和均匀复合材料。该制造技术表明,基于热塑性塑料的功能渐变材料的制造具有很有希望的潜力,否则由于其具有快速速率固化的固有特性而难以产生。

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