首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Tribo-functional effects of double-crossed helix on surface finish, cutting friction and tool wear mechanisms during the milling process of natural fiber composites
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Tribo-functional effects of double-crossed helix on surface finish, cutting friction and tool wear mechanisms during the milling process of natural fiber composites

机译:自然纤维复合材料铣削过程中双交叉螺旋对表面光洁度,切割摩擦和工具磨损机理的摩擦功能影响

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摘要

Tribological mechanisms that control the machining of natural fiber reinforced plastic (NFRP) composites are different from those of synthetic fiber composites in terms of cutting forces, tool wear, and surface finish. The aim of this paper is to investigate the cutting performances of NFRP composites using improved milling tool geometry with double-crossed helix (DCH). Cutting edges are coated with PVD-TiAlN thin coating thickness to ensure low cutting edge radius. Milling experiments are performed on unidirectional flax fibers reinforced polypropylene composites with CNC machine varying the tool kinematics. The in-situ cutting forces are acquired to evaluate the tribological performances of machining NFRP with DCH tool. The machined surfaces are rated by Scanning Electron Microscope (SEM) and peripheral surface defects are rated using an optical microscope. Moreover, the tool wear is evaluated at the cutting tool edge by SEM observations after accelerated wear tests. Results show that the improved milling tool overcomes the disadvantages and limitations of known NFRP machining in terms of surface finish. The functional design of the DCH generates a specific tool wear behavior where the wear mechanisms differ at each cutting helix orientation.
机译:控制天然纤维增强塑料(NFRP)复合材料加工的摩擦学机制与切割力,工具磨损和表面光洁度方面的合成纤维复合材料的机制不同。本文的目的是使用双交叉螺旋(DCH)的改进的研磨工具几何形状来研究NFRP复合材料的切割性能。切割边缘涂有PVD-TiAlN薄涂层厚度,以确保低切削刃半径。在单向亚麻纤维上进行铣削实验,增强聚丙烯复合材料,其CNC机改变工具运动学。采用原位切削力来评估用DCH工具加工NFRP的摩擦学性能。通过扫描电子显微镜(SEM)额定机加工表面,并且使用光学显微镜额定外围表面缺陷。此外,在加速磨损试验后,通过SEM观测在切削刀具边缘处评价工具磨损。结果表明,改进的铣刀克服了在表面光洁度方面克服了已知的NFRP加工的缺点和限制。 DCH的功能设计产生了特定的工具磨损行为,其中磨损机构在每个切削螺旋方向上不同。

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