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作 者:韩阳 王金伙 葛晓宏[1] 祁正兵[1] 赵军[1] 王荣文 吴桦炜 韩太平 孙绍训 林佳[1] 刘跃军[1] 孔祥松[1] 陈啓铭 曾翔栩 HAN Yang;WANG Jin-huo;GE Xiao-hong;QI Zheng-bing;ZHAO Jun;WAN Rong-wen;WU Hua-wei;HAN Tai-ping;SUN Shao-xun;LIN Jia;LIU Yue-jun;KONG Xiang-song;CHEN Qi-ming;ZENG Xiang-xu(Key Laboratory of Functional Materials and Application of Fujian Province,Xiamen Engineering and Technology Research Center of High Efficiency and Precision Intelligent Manufacturing,Xiamen University of Technology,Xiamen 361024,China)
机构地区:[1]厦门理工学院、福建省功能材料及应用重点实验室、福建省厦门市高效精密智能制造工程技术研究中心,厦门361024
出 处:《高分子通报》2023年第10期1302-1311,共10页Polymer Bulletin
摘 要:连续纤维增强高分子复合材料成型技术的一个最大障碍是制造质量控制,而成型过程中材料与模具之间(tool/ply)、材料铺层与铺层之间(ply/ply)因摩擦作用所产生的剪切流变行为极为关键,因此本文对界面摩擦行为研究的文献进行归纳和总结以便表征和模拟其变形机理,最终达到工艺优化设计的目的。本文综述了连续纤维增强高分子复合材料在成型过程中与界面摩擦行为相关的研究成果,通过对理论模型与实验测量技术两方面分别详细地阐述,重点论述了前人所设计装置的测量方法并分析其结果,总结了多种因素(温度、压力、运动速率、纤维取向、表面形貌、表面粗糙度、装置结构、摩擦面积)对界面摩擦机理的影响规律。该领域研究旨在为连续纤维增强高分子复合材料成型加工技术提供理论依据,也将为传统摩擦学和流变学的交叉发展奠定理论基础。One of the greatest challenges to the forming technology of continuous fiber reinforced polymer composites is quality control,and the shear rheological behavior of tool/ply and ply/ply due to friction is extremely critical during the forming process.This paper is to summarize the work available on literature about frictional rheology of continuous fiber reinforced polymer composites in the molding process,in order to characterize and simulate its deformation mechanism,and ultimately achieve process optimization design.By elaborating the theoretical models and experimental measurement techniques respectively,the measurement methods of the devices and the results were analyzed and discussed.It was found that various factors(temperature,pressure,motion rate,fiber orientation,surface morphology,surface roughness,device structure,friction area)play an important role on the friction rheological mechanism.The research in this field aims to provide a theoretical basis for the processing technologies of continuous fiber reinforced polymer composites,and will also lay a theoretical foundation for the cross development of traditional tribology and rheology.
关 键 词:高分子复合材料 成型加工 摩擦 流变 表征方法 本构模型
分 类 号:TB332[一般工业技术—材料科学与工程]
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