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首页> 外文期刊>Journal of the European Ceramic Society >Hole exit quality and machined surface integrity of 2D C-f/SiC composites drilled by PCD tools
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Hole exit quality and machined surface integrity of 2D C-f/SiC composites drilled by PCD tools

机译:PCD工具钻出2D C-F / SIC复合材料的孔出口质量和加工表面完整性

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摘要

The brittle matrix and the anisotropic reinforcing phase of C-f/SiC composites bring great challenges to the machining process. Polycrystalline diamond (PCD) tool was used to drill 2D C-f/SiC composites. The influence of thrust force on hole exit defects was analyzed, and the transformation rule of material removal mechanism and surface generation of hole were studied. With the increase of feed rate, the thrust force increased and the hole exit defects increased. Specific drilling energy was used as an index to quantitatively describe the energy consumption of material removal. With the increase of feed rate and the decrease of cutting speed, the brittle fracture mode of carbon fibers changed from micro-brittle fracture inside carbon fiber to macro-brittle fracture. Although the machined surface of carbon fibers produced by micro-brittle fracture was composed of many micro-fracture, the hole surface was flat overall. Therefore, the hole surface roughness was small.
机译:C-F / SiC复合材料的脆性基质和各向异性增强阶段对加工过程带来了极大的挑战。 使用多晶金刚石(PCD)工具探测2D C-F / SiC复合材料。 分析了推力对孔出口缺陷的影响,研究了材料去除机理和孔表面产生的转化规律。 随着进料速率的增加,推力增加,孔出口缺陷增加。 使用特定的钻孔能量作为定量描述材料去除的能量消耗的指数。 随着进料速率的增加和切割速度的降低,碳纤维的脆性断裂模式从碳纤维内的微脆性断裂变为宏观脆性骨折。 虽然通过微脆性骨折产生的碳纤维的加工表面由许多微骨折组成,但是孔表面整体平坦。 因此,孔表面粗糙度小。

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