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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Surface grinding of CFRP composites with rotary ultrasonic machining: a mechanistic model on cutting force in the feed direction
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Surface grinding of CFRP composites with rotary ultrasonic machining: a mechanistic model on cutting force in the feed direction

机译:具有旋转超声机加工的CFRP复合材料的表面研磨:饲料方向切割力的机制模型

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摘要

For carbon fiber-reinforced plastic (CFRP) composite components, especially advanced CFRP components with complex three-dimensional features, surface grinding is often needed to generate final dimensions and functional surfaces. Surface damages are frequently induced during surface grinding, reducing the load-bearing capability and service life of the components. Therefore, it is desirable to perform surface grinding of CFRP in a high-quality and high-efficiency way. Rotary ultrasonic machining (RUM) surface grinding has been investigated to machine CFRP for improved surface quality. Cutting force is one of the most important output variables for evaluating RUM surface grinding. The modeling of cutting force is essential to effectively control the occurrence of surface damages during RUM surface grinding of CFRP. In the RUM surface grinding process, the workpiece material is primarily removed by abrasives on the tool peripheral surface, thus it is essential to investigate the feed-direction cutting force model. However, such models are not available in the literature. In this study, for the first time, a mechanistic feed-direction cutting force model in RUM surface grinding of CFRP is established based on the assumption that the material is removed by brittle fracture. The mechanistic model has one parameter, fracture volume factor of the workpiece material, which needs to be determined by an experiment. There is a good consistency between theoretically predicted trends and experimentally observed results on the relationships between feed-direction cutting force and input variables.
机译:对于碳纤维增强塑料(CFRP)复合组件,特别是具有复杂的三维特征的高级CFRP组件,通常需要表面研磨以产生最终尺寸和功能表面。表面损坏经常在表面研磨过程中诱导,降低了部件的承载能力和使用寿命。因此,希望以高质量和高效率的方式对CFRP进行表面磨削。已经研究了旋转超声波加工(朗姆酒)表面研磨,以加工CFRP,以改善表面质量。切割力是评估朗姆酒表面研磨的最重要的输出变量之一。切割力的建模对于有效地控制CFRP的朗姆地表面研磨过程中的表面损伤的发生是必要的。在朗姆酒表面研磨过程中,工件材料主要通过工具周面上的研磨剂除去,因此研究进料方向切割力模型是必要的。但是,这些模型在文献中不可用。在这项研究中,首次基于通过脆性骨折除去材料的假设来建立CFRP的Rum表面研磨中的机械进料方向切割力模型。机械模型具有一个参数,工件材料的断裂体积因子,需要通过实验来确定。在理论上预测的趋势和实验观察结果之间存在良好的一致性,对进料方向切割力与输入变量之间的关系。

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