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首页> 外文期刊>Journal of Manufacturing Processes >Deburring drilled holes in CFRP composites with large pulsed electron beam (LPEB) irradiation
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Deburring drilled holes in CFRP composites with large pulsed electron beam (LPEB) irradiation

机译:用大脉冲电子束(LPEB)辐射处理CFRP复合材料中的钻孔

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摘要

The generation of burrs is one of the most common problems affecting carbon fiber reinforced plastic (CFRP) machining processes. However, it is difficult to develop machining processes that generate no burrs. To overcome the limitations of conventional CFRP composite deburring methods, we propose a new process for de burring drilled holes in CFRP composites based on large pulsed electron beam (LPEB) irradiation. We evaluated the deburring performance as we independently varied the three major controllable parameters that affect energy transfer during LPEB irradiation, namely the acceleration voltage, solenoid voltage, and number of pulses. We optimized the irradiation process to improve the accuracy of the shapes of the holes, and reduced the sizes of the burrs by 97%. We evaluated deviations in the shapes of the holes from perfect circles by measuring their diameters. As our deburring process reduced these deviations by 93%, it significantly improved the dimensional accuracy of the holes. We hypothesize that the deburring mechanism starts with evaporation of the resin that coats the carbon fibers evaporates. This leaves the uncut carbon fibers exposed so that they can be detached by the LPEB irradiation. We obtained high quality, burr-free drilled holes by applying the proposed LPEB debarring method.
机译:毛刺的产生是影响碳纤维增强塑料(CFRP)加工过程的最常见问题之一。但是,难以开发不产生毛刺的加工工艺。为了克服常规CFRP复合材料去毛刺方法的局限性,我们提出了一种基于大脉冲电子束(LPEB)辐射对CFRP复合材料中钻孔进行去毛刺的新工艺。当我们独立改变影响LPEB辐照过程中能量转移的三个主要可控参数时,我们评估了去毛刺性能,即加速电压,螺线管电压和脉冲数。我们优化了辐照工艺,以提高孔的形状精度,并将毛刺的尺寸减小了97%。我们通过测量孔的直径来评估孔与理想圆的形状偏差。由于我们的去毛刺工艺将这些偏差减少了93%,因此显着提高了孔的尺寸精度。我们假设去毛刺机理始于覆盖碳纤维的树脂的蒸发。这使未切割的碳纤维暴露在外,从而可以通过LPEB辐射将其分离。通过采用建议的LPEB剥线方法,我们获得了高质量,无毛刺的钻孔。

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