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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Surface damage reduction of dry milling carbon fiber reinforced plastic/polymer using left-right edge milling tool
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Surface damage reduction of dry milling carbon fiber reinforced plastic/polymer using left-right edge milling tool

机译:左右边缘研磨工具干铣碳纤维增强塑料/聚合物的表面损伤

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Carbon fiber reinforced plastic/polymer is popular for aerospace structures and these structures require milling with desired configuration and integrity within strict damage tolerance. However, due to the influence of cutting thrust force on the surface materials when milling carbon fiber reinforced plastic/polymer, it is easy to cause surface damages. This article aimed to study the effect of cutting thrust force direction and size on the damages and guided the suitable milling tool and cutting parameters, further to propose a milling method with low damages. The two-dimensional cutting model was established successfully for analyzing the tool-composite contact and the fiber-plastic/polymer interface crack. Based on the model, the cutting direction forward inside and small cutting force are the ways to avoiding the burrs and tears. The thrust force was the main concentrated force causing the damages in milling, so the left-right edge milling tool was proposed to realize cutting fibers to inside for both surfaces. Besides, small feed per tooth is an effective way to reduce the force. Therefore, the left-right edge milling tool with small feed per tooth is low-damages method. Comparative milling experiments are carried out to verify the method, from the result, the burrs, tears and delamination are effectively inhibited.
机译:碳纤维增强塑料/聚合物是航空航天结构的普遍,这些结构需要在严格的损害耐受性范围内具有所需的配置和完整性。然而,由于铣削碳纤维增强塑料/聚合物的表面材料对表面材料的影响,易于引起表面损坏。本文旨在研究切割推力方向和规模对损坏的影响,并引导合适的铣削工具和切割参数,进一步提出一种低损坏的铣削方法。成功建立了二维切削模型,用于分析工具复合触点和纤维塑料/聚合物界面裂缝。基于该模型,切割方向前进和小的切割力是避免毛刺和泪水的方法。推力是引起铣削损坏的主要浓缩力,因此提出了左右边缘铣削工具,以实现两个表面的切割纤维。此外,每颗牙齿的小饲料是减少力的有效方法。因此,每颗牙齿小饲料的左边缘铣削工具是低损伤的方法。对比较铣削实验进行验证该方法,从结果,有效地抑制毛刺,泪水和分层。

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