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热塑性复合材料及其在复合材料结构连接与修复中的应用前景:综述

Thermoplastic Composites and Their Promising Applications in Joining and Repair Composites Structures: A Review.

作者信息

Reis João Pedro, de Moura Marcelo, Samborski Sylwester

机构信息

INEGI-Instituto de Ciência e Inovação em Engenharia Mecânica e Engenharia Industrial, 4200-465 Porto, Portugal.

Departamento de Engenharia Mecânica, Faculdade de Engenharia da Universidade do Porto, 4200-465 Porto, Portugal.

出版信息

Materials (Basel). 2020 Dec 21;13(24):5832. doi: 10.3390/ma13245832.

Abstract

Thermoset fiber reinforced composites, widely used in current structural applications, have complex repair procedures and generates significant amounts of scrap due to its recycling difficulties, which does not comply with the most recent environmental restrictions. These disadvantages may be overcome by using a thermoplastic matrix phase, which is very suitable to be joined and repaired by local melting, making the composite material fully recyclable. This work presents a literature review on the joining methods applicable to thermoplastic based composites and their potential applications to be used as repair procedures in structural elements. The effectiveness of selected adhesive and fusion bonding techniques for several thermoplastic composite systems is evaluated by a comparative study based on the joints' strength and toughness results available in the literature. This work focuses on the three most promising fusion bonding techniques: Resistance welding, induction welding, and ultrasonic welding. The advantages and drawbacks for each one of these processes are discussed, as well as their suitability for several specific structural applications. In addition, several discordant aspects for each welding technique are identified and the corresponding recommendations are discussed. A compilation of analytical models for the mechanisms of heat generation and transient heat transfer modelling is also presented for each fusion bonding process in order to promote their application in numerical modelling.

摘要

热固性纤维增强复合材料在当前结构应用中广泛使用,但其修复程序复杂,且由于回收困难会产生大量废料,不符合最新的环境限制要求。使用热塑性基体相可以克服这些缺点,热塑性基体相非常适合通过局部熔化进行连接和修复,从而使复合材料完全可回收。本文对适用于热塑性基复合材料的连接方法及其在结构元件修复程序中的潜在应用进行了文献综述。通过基于文献中接头强度和韧性结果的对比研究,评估了几种热塑性复合材料体系所选胶粘剂和熔接技术的有效性。本文重点关注三种最有前景的熔接技术:电阻焊接、感应焊接和超声波焊接。讨论了这些工艺各自的优缺点,以及它们在几种特定结构应用中的适用性。此外,还确定了每种焊接技术的几个不一致方面并讨论了相应建议。还针对每种熔接工艺给出了热生成机制和瞬态热传递建模的分析模型汇编,以促进其在数值建模中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b0bb/7767475/bd6ab6fffdc2/materials-13-05832-g001.jpg

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