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The effects of cutting conditions and tool geometry on mechanics, tool wear and machined surface integrity when routing CFRP composites

机译:路由CFRP复合材料时切割条件和工具几何形状对力学,工具磨损和加工表面完整性的影响

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Carbon-fibre-reinforced plastic (CFRP) composite materials are highly susceptible to tool-wear-induced interlayer delamination and superficial carbonization when subjected to routing, particularly under high cutting speeds ( 100 m/min) and high feed rates ( 0.40 mm/rev). This study modelled orthogonal, mono-oblique, and dual-oblique cuttings in routing CFRP composite workpieces with a consideration of the bending-momentinduced deflections in the cutting tools, and the effects of the cutting conditions on the delayed tool wear, vibrations and the produced machined surface integrity. The interactions of the cutting conditions and the alterations in the cutting edges are discussed and analysed, particularly the quality of the machined surfaces in their forms and topographies. The tool geometries of helical and cross-flute routers outperformed straight-flute routers in preserving tool life, by allowing the cutting forces generated by the primary cutting edges to counteract those generated by the secondary cutting edges, and in so doing, reduce the forces more effectively. Nonetheless, the straight flute router produced a smooth surface without the pulled-out fibres, smearing, or material adhesion produced by the other routers. Statistical methods were used to analyse the relative contributions of the various operating parameters for the least power consumption. We also sought to clarify the cutting mechanisms underlying the observed cutting forces and tool flank wear, as well as to interpret their effects on the machined surface texture, roughness, and topography. In addition, a detailed discussion of fibre fracture mechanisms and subsurface alterations on the matrix material are provided.
机译:碳纤维增强塑料(CFRP)复合材料高易受工具磨损诱导的中间层分层和浅表碳化,特别是在高切削速度(& 100米/分钟)和高进料速率下(& 0.40 mm / ref)。这项研究用CFRP复合工件进行了建模的正交,单倾斜和双斜切割,以考虑切割工具中的弯曲势地偏转,以及切割条件对延迟工具磨损,振动和所生产的影响机加工表面完整性。讨论和分析切割条件的相互作用和切削刃的改变,特别是其形式和地形上的加工表面的质量。通过允许由主切削刃产生的切割力来抵消由次级切削刃产生的切割力,螺旋和横槽路由器的工具几何形式,直线长笛路由器在保存工具寿命中,以抵消由二次切割边缘产生的那些,并且更加减少势力有效地。尽管如此,直笛路由器在没有拉出的纤维,涂抹或由其他路由器产生的粘合性的情况下产生光滑的表面。使用统计方法来分析各种操作参数的相对贡献,以获得最小功耗。我们还寻求阐明观察到的切割力和刀具侧面磨损的割削机制,以及解释其对机加工表面纹理,粗糙度和地形的影响。另外,提供了对基质材料的纤维断裂机构和地下改变的详细讨论。

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