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首页> 外文期刊>International Journal of Mechanical Sciences >A mechanistic cutting force model based on ductile and brittle fracture material removal modes for edge surface grinding of CFRP composites using rotary ultrasonic machining
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A mechanistic cutting force model based on ductile and brittle fracture material removal modes for edge surface grinding of CFRP composites using rotary ultrasonic machining

机译:基于延性和脆性断裂材料去除模式的机械切割力模型,使用旋转超声机加工对CFRP复合材料的边缘表面研磨

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摘要

Rotary ultrasonic machining (RUM) has been proven to be an effective method for surface grinding of carbon fiber reinforced plastic (CFRP) composites. Cutting force is considered as the main criterion to evaluate the performance of RUM surface grinding process. The cutting force modeling is essential to better understand such a process. All reported cutting force models for RUM of CFRP are developed based on brittle fracture material removal mode (brittle mode). However, it is recently found that both ductile material removal mode (ductile mode) and brittle mode exist in RUM of CFRP. Among surface grinding processes, edge surface grinding is the mandatory and primary process to remove an amount of composite material from the workpiece edge to achieve the desired workpiece with high precision. In edge surface grinding process, cutting forces in both feeding direction and in depth-of-cut direction (being perpendicular to feeding direction) play important roles in material removal. In addition, the understandings of material removal mechanisms will greatly benefit the modeling development of cutting forces and improve the RUM process. In this study, a mechanistic model based on both ductile mode and brittle mode is developed to predict cutting forces in both feeding and depth-of-cut directions for RUM edge surface grinding of CFRP composites. A series of experiments are conducted to verify this mechanistic model. The model prediction agrees well with the experimental results under different groups of input variables.
机译:已证明旋转超声波加工(朗姆酒)是碳纤维增强塑料(CFRP)复合材料表面研磨的有效方法。切削力被认为是评估朗姆酒表面研磨过程性能的主要标准。切割力建模对于更好地理解这种过程至关重要。所有报告的CFRP的切割力模型都是基于脆性断裂材料去除模式(脆性模式)开发的。然而,最近发现延性材料去除模式(延性模式)和脆性模式存在于CFRP中。在表面研磨过程中,边缘表面研磨是强制性和主要方法,以从工件边缘中除去一定量的复合材料,以高精度地实现所需的工件。在边缘表面研磨过程中,馈送方向和切割深度方向(垂直于进给方向)的切割力在材料去除中起重要作用。此外,材料去除机制的谅解将极大地利用切割力的建模和改善朗姆酒过程。在该研究中,基于延性模式和脆性模式的机制模型开发成预测CFRP复合材料的朗姆边缘表面研磨的馈送和深度方向上的切割力。进行了一系列实验以验证这一机制模型。模型预测对不同输入变量组下的实验结果吻合良好。

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