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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Delamination in rotary ultrasonic machining of CFRP composites: finite element analysis and experimental implementation
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Delamination in rotary ultrasonic machining of CFRP composites: finite element analysis and experimental implementation

机译:CFRP复合材料旋转超声机加工中的分层:有限元分析与实验实施

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Delamination, an inter-ply debonding failure phenomenon, is considered as the most undesirable and challenging failure mode in hole making of carbon fiber-reinforced plastic (CFRP) composite laminates. The existence of delamination, even small ones, noticeably damages the strength and stability of the assembled products. It is reported that delamination is responsible for up to 60% of composite components' rejection during assembling. In order to reduce delamination, rotary ultrasonic machining (RUM) has been studied and utilized in hole making of CFRP composites. Existing investigations on delamination of CFRP composites in RUM hole making are experimental studies, in which several methods (such as adjusting input variables and the use of supportive plate) to reduce delamination are reported. To understand delamination generation mechanisms and predict delamination initiation, theoretical investigations are needed. Cutting force models in RUM of CFRP composites have been developed, and it is well accepted that delamination is correlated to thrust force. However, there are no reported investigations to predict delamination initiation and study the impact of thrust force on the delamination of CFRP composites in the RUM hole-making process. Finite element analysis (FEA) could be an effective way to study the delamination in the RUM process. In this paper, FEA was conducted to predict delamination initiation and establish the relationship between the thrust force and delamination thickness in RUM, for the first time. In addition, experiments were conducted to validate the FEA model. The proposed model was proved to be effective in predicting delamination initiation, and the trends of the FEA results agreed well with those of the experimental results.
机译:分层,普利间剥离失效现象被认为是碳纤维增强塑料(CFRP)复合层压板孔制造中最不期望和挑战的故障模式。分层的存在,即使是小的,明显损坏组装产品的强度和稳定性。据报道,分层在组装期间负责高达60%的复合组件的拒绝。为了减少分层,已经研究了旋转超声机加工(朗姆酒)并利用了CFRP复合材料的孔制作。据报道,据报道,对CFRP复合材料分层的现有研究是实验研究,其中报道了几种方法(例如调整输入变量和使用支撑板的使用)以减少分层。要了解分层产生机制和预测分层启动,需要理论研究。已经开发了CFRP复合材料朗姆酒中的切割力模型,并且很好地接受了分层与推力相关。然而,没有报告的调查预测分层开始并研究推力力对朗姆酒空穴过程中CFRP复合材料分层的影响。有限元分析(FEA)可能是研究朗姆酒过程中分层的有效方法。在本文中,进行了FEA以预测分层启动,并首次在朗姆酒中建立推力和分层厚度之间的关系。此外,进行实验以验证FEA模型。拟议的模型被证明是有效的预测分层启动,并且FEA结果的趋势与实验结果的趋势很好。

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