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Experimental study on milling performance of 2D C/SiC composites using polycrystalline diamond tools

机译:使用多晶金刚石工具的2D C / SIC复合材料铣削性能的实验研究

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摘要

The present paper concerns assessment of the milling machinability of 2D C/SiC composites using polycrystalline diamond (PCD) tools. Influences of milling parameters on cutting forces, surface integrity and machined defects were studied. Experimental results showed that cutting forces varied greatly in a milling circle due to the sudden changes of fiber cutting angle. As cutting speed increased, cutting forces and surface roughness decreased. Cutting forces and surface roughness both increased as feed rate increased. Fiber fracture, matrix damage and fiber-matrix debonding were three main material removal mechanisms during slot milling. Pits and cracks were main machined defects at ground surface, and they more easily happened at the intersection of woven yarns. Surface integrity of 90 degrees fiber orientation was better than that of 0 degrees fiber orientation. Machined defects of side edges had three types: fiber protrusion combined with surface damage, fiber protrusion and surface damage. Quantity and size of surface damage were much larger than fiber protrusion. Both of surface damage and fiber protrusion increased with the increase in feed rate. Higher cutting speeds could decrease the fiber protrusion of side edges evidently, however have minor influence on the surface damage.
机译:本文涉及使用多晶金刚石(PCD)工具评估2D C / SIC复合材料的铣削加工性。研究了铣削参数对切割力,表面完整性和机加工缺陷的影响。实验结果表明,由于纤维切削角度的突然变化,切割力在铣削圆圈中变化。随着切割速度的增加,切割力和表面粗糙度降低。随着进料速率的增加,切割力和表面粗糙度增加。纤维骨折,基质损伤和纤维 - 基质剥离是槽铣过程中的三个主要材料去除机制。凹坑和裂缝是地面的主要​​机加工缺陷,并且在编织纱线的交叉处更容易发生。表面完整性为90度纤维取向优于0度纤维取向。侧边缘的加工缺陷有三种类型:纤维突起与表面损坏,纤维突起和表面损坏结合。表面损伤的数量和大小远大于纤维突起。随着进料速率的增加,表面损伤和纤维突起都会增加。更高的切削速度可以显着降低侧边的纤维突起,但对表面损坏有微小的影响。

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