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Effect of curing pressure on machinability of carbon fiber composite

机译:固化压力对碳纤维复合材料切削性能的影响

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The increasing use of composite materials in aerospace structures and their associated manufacturing and machining processes have shown the need to reengineer traditional tools. This study aims to provide an understanding of the relationship between the manufacturing parameters of carbon fiber/epoxy composites and their machinability. The main objective is to establish a new predictive model for cutting forces during machining as a function of curing pressure, cutting speed and feed rate. The research methodology is based on a multifactorial design of experiments, with input factors being the curing pressure, the feed rate, and the cutting speed. To examine the effect of the composite curing pressure, correlations between the curing pressure and the void content, as well as between the curing pressure and the mechanical properties, are evaluated. The cutting forces are then predicted based on the curing pressure and the cutting parameters.
机译:复合材料在航空航天结构及其相关的制造和机加工过程中的使用越来越多,这表明需要对传统工具进行重新设计。这项研究旨在提供对碳纤维/环氧树脂复合材料的制造参数与其可加工性之间关系的理解。主要目标是建立一个新的预测模型,以预测加工压力与固化压力,切削速度和进给速度之间的关系。研究方法基于实验的多因素设计,输入因素包括固化压力,进料速度和切割速度。为了检查复合固化压力的影响,评估了固化压力与空隙含量之间的相关性,以及固化压力与机械性能之间的相关性。然后基于固化压力和切割参数预测切割力。

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