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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Investigation on machined surface quality in ultrasonic-assisted grinding of C-f/SiC composites based on fracture mechanism of carbon fibers
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Investigation on machined surface quality in ultrasonic-assisted grinding of C-f/SiC composites based on fracture mechanism of carbon fibers

机译:基于碳纤维断裂机制的C-F / SiC复合材料超声波辅助研磨机加工表面质量研究

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摘要

As a kind of carbon fiber-rich material, the machined surface quality of C-f/SiC composites is greatly affected by the fracture mode of carbon fibers. Therefore, exploring the material removal mechanism of C-f/SiC composites in grinding through the different fracture mechanisms of carbon fibers from the perspective of microstructure is necessary. In research, the micro-scale fracture mechanism of carbon fibers and the transformation of mechanism were explored. The difference in fracture behavior of carbon fibers caused different energy consumption in material removal, which is instructive for monitoring the machining process with specific grinding energy. The difference of machined surface morphology was directly caused by the difference of material removal mechanism, which can be effectively characterized by the machined surface roughness. The transition of the material removal mechanism was determined by the maximum undeformed chip thicknesses. Ultrasonic-assisted grinding promoted the removal of carbon fibers in nano-scale brittle fractures by reducing the maximum undeformed chip thicknesses, thereby improving the quality of the machined surface.
机译:作为一种碳富含纤维的材料制成的,C-F / SiC复合材料的加工面质量的碳纤维的断裂方式有很大的影响。因此,探索C-F / SiC复合材料的材料去除机构中,通过碳纤维的不同断裂机理从微观的角度磨削是必要的。在研究中,碳纤维的微观尺度断裂机理和机构的改造进行了探讨。在碳纤维的断裂行为的差异在材料去除,这是有益的用于监视与比磨削能加工过程引起的不同的能量消耗。加工表面形态的差异直接用的材料去除机理的不同,这可以有效地,其特征在于加工表面粗糙度引起的。材料去除机构的过渡是由未变形的最大厚度芯片确定。超声波辅助通过降低最大未变形芯片的厚度,从而提高了加工表面的质量研磨促进了去除在纳米尺度脆性断裂的碳纤维。

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