熔融粘结纤维增强热塑性复合材料亲密接触的估算

Jiakuan Zhou
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引用次数: 0

摘要

摘要熔融粘接部件的质量取决于最初的亲密接触和随后的愈合,其中前者作为先决条件在很大程度上决定了最终部件的固结和机械性能。本文研究了连续焊接单向玻璃纤维增强聚丙烯带的亲密接触程度。本研究采用经典的 Lee & Springer 模型对亲密接触进行理论估算。为此,提出了一个相对稳健的机制来提取表面参数、粘度等数据输入,并进行了清晰的演示。因此,亲密接触程度可以绘制成时间函数图。此外,分层表面的亲密接触程度还通过横截面显微镜、超声波 C 扫描和光学分析进行了表征。实验测量结果与理论预测结果显示出良好的一致性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Estimation of intimate contact of the fusion-bonded fiber reinforced thermoplastic composites
Abstract. The quality of fusion-bonded parts relies on the development of intimate contact at first and followed by healing, where the former as a prerequisite highly dominates the consolidation and the mechanical performance of final parts. In this paper, the degree of intimate contact of continuously welded unidirectional glass fiber reinforced polypropylene tapes was investigated. Classic Lee & Springer model for theoretical estimation of intimate contact was considered in the present study. For this purpose, a relatively robust regime to extract the data inputs like surface parameters, viscosity, etc. was proposed and demonstrated clearly. Consequently, the degree of intimate contact can be plotted as a function of time. Furthermore, the degree of intimate contact was also characterized by cross-sectional microscopy, ultrasonic C-scan, and optical analysis on the delaminated surfaces. The experimentally measured results show good agreement with the theoretically predicted counterparts.
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