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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >A review on research progress of machining technologies of carbon fiber-reinforced polymer and aramid fiber-reinforced polymer
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A review on research progress of machining technologies of carbon fiber-reinforced polymer and aramid fiber-reinforced polymer

机译:碳纤维增强聚合物加工技术研究进展综述及芳纶纤维增强聚合物

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摘要

Since the application of fiber-reinforced polymer continues to expand, the demands of product quality for secondary cutting process are becoming increasingly higher to ensure the accurate coordination, connection, and assembly. There are some defects such as tearing, burr, delamination, and thermal damage after secondary cutting process, which limit the further applications of the materials. It is urgent to carry out comprehensive research on the secondary processing technology. In this paper, the fiber-reinforced composites' category, characteristics, and their applications were first described. Then the cutting performances, the causes of machining defects, and machining mechanisms have been analyzed. Finally, different compound processing methods, their characteristics, and applications have been elaborated. The most common forms of compound processing method including combined machining of cutting and grinding, ultrasonic vibration-assisted machining, and low-temperature-assisted machining have been covered in this paper. Results show that the compound processing method is the most effective way for improving the second processing quality of fiber-reinforced polymer. More machining mechanisms and applications of compound processing method need further experimental research. The barriers and future in the fields of research on machining of fiber-reinforced composites have been analyzed in this paper.
机译:由于纤维增强聚合物的应用继续扩大,因此对二次切割过程的产品质量的需求变得越来越高,以确保准确的协调,连接和装配。在二次切割过程后,存在一些缺陷,如撕裂,毛刺,分层和热损坏,这限制了材料的进一步应用。迫切需要对二次加工技术进行综合研究。本文首先描述了纤维增强复合材料的类别,特征及其应用。然后,分析了切割性能,加工缺陷的原因和加工机构。最后,已经详细阐述了不同的化合物加工方法,其特征和应用。本文介绍了包括切割和研磨,超声波振动加工和低温辅助加工的组合加工的最常见的复合加工方法。结果表明,复合加工方法是改善纤维增强聚合物的第二加工质量的最有效方法。复合处理方法的更多加工机理和应用进一步的实验研究。本文分析了纤维增强复合材料加工研究领域的障碍和未来。

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