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首页> 外文期刊>Machining Science and Technology >An investigation of the hole machining processes on woven carbon-fiber reinforced polymers (CFRPs) using abrasive waterjets
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An investigation of the hole machining processes on woven carbon-fiber reinforced polymers (CFRPs) using abrasive waterjets

机译:使用磨探水射流进行编织碳纤维增强聚合物(CFRPs)的孔加工过程的研究

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摘要

An investigation of the hole cutting and drilling processes on woven carbon-fiber reinforced polymer sheets using abrasive waterjet (AWJ) is presented. The drilling process uses a stationary AWJ to impinge a target material to make a hole, while the cutting process requires an AWJ to penetrate the workpiece before moving in a circular path to cut a hole. It is found that the holes machined by both the processes exhibit similar geometrical features, where the diameter at the top is greater than at the bottom. It is further found that the holes from the drilling process have a better roundness than those from cutting process primarily due to the jet instability during cutting movement. Plausible trends of the hole characteristics (e.g., diameter and wall inclination) and defects (e.g., delamination) with respect to the process parameters are discussed. It is shown that water pressure is the major parameter affecting hole defects. The hole drilling process yields more severe defects than the cutting process because of the initial impact of the jet. Predictive models for machined hole diameter in both processes are developed. The model predictions are in good agreement with the experimental data under the corresponding conditions.
机译:介绍了使用磨料水射流(AWJ)编织碳纤维增强聚合物板上的孔切割和钻孔过程的研究。钻井过程使用静止的awj来撞击目标材料来制造孔,而切割过程需要a awj以在沿圆形路径移动以切割孔之前穿透工件。结果发现,由两个过程加工的孔表现出类似的几何特征,其中顶部的直径大于底部。进一步发现,来自钻井过程的孔具有比在切割运动期间喷射不稳定性的切割过程的切割过程的圆形更好的圆度。讨论了孔特性(例如,直径和壁倾斜)和相对于工艺参数的缺陷(例如,分层)的可粘附趋势。结果表明,水压是影响孔缺陷的主要参数。由于喷射的初始撞击,孔钻井过程产生比切割过程更严重的缺陷。开发了两个过程中加工孔直径的预测模型。模型预测与在相应条件下的实验数据吻合良好。

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