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Kerf Taper Defect Minimization Based on Abrasive Waterjet Machining of Low Thickness Thermoplastic Carbon Fiber Composites C/TPU

机译:基于低厚度热塑性碳纤维复合材料C / TPU磨料射流加工的Kerf锥度缺陷最小化

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摘要

Carbon fiber-reinforced thermoplastics (CFRTPs) are materials of great interest in industry. Like thermosets composite materials, they have an excellent weight/mechanical properties ratio and a high degree of automation in their manufacture and recyclability. However, these materials present difficulties in their machining due to their nature. Their anisotropy, together with their low glass transition temperature, can produce important defects in their machining. A process able to machine these materials correctly by producing very small thermal defects is abrasive waterjet machining. However, the dispersion of the waterjet produces a reduction in kinetic energy, which decreases its cutting capacity. This results in an inherent defect called a kerf taper. Also, machining these materials with reduced thicknesses can increase this defect due to the formation of a damage zone at the beginning of cut due to the abrasive particles. This paper studies the influence of cutting parameters on the kerf taper generated during waterjet machining of a thin-walled thermoplastic composite material (carbon/polyurethane, C/TPU). This influence was studied by means of an ANOVA statistical analysis, and a mathematical model was obtained by means of a response surface methodology (RSM). Kerf taper defect was evaluated using a new image processing methodology, where the initial and final damage zone was separated from the kerf taper defect. Finally, a combination of a hydraulic pressure of 3400 bar with a feed rate of 100 mm/min and an abrasive mass flow of 170 g/min produces the minimum kerf taper angle.
机译:碳纤维增强热塑性塑料(CFRTP)是工业界非常感兴趣的材料。像热固性复合材料一样,它们具有优异的重量/机械性能比,并且在制造和回收方面具有高度的自动化。然而,由于它们的性质,这些材料在其加工中存在困难。它们的各向异性以及较低的玻璃化转变温度会在加工中产生重要的缺陷。能够通过产生很小的热缺陷来正确加工这些材料的方法是研磨水刀加工。但是,水刀的分散会降低动能,从而降低其切割能力。这导致称为缝隙锥度的固有缺陷。同样,以减小的厚度加工这些材料会由于在切割开始时由于磨粒而形成损坏区域而增加了这种缺陷。本文研究了切削参数对薄壁热塑性复合材料(碳/聚氨酯,C / TPU)的水刀加工过程中产生的切缝锥度的影响。通过ANOVA统计分析研究了这种影响,并通过响应面方法(RSM)获得了数学模型。使用新的图像处理方法评估了切缝锥度缺陷,其中初始和最终损坏区域与切缝锥度缺陷分开。最后,将3400 bar的液压压力与100 mm / min的进给速度和170 g / min的磨料质量流结合起来,可产生最小的切角锥角。

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