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Experimental studies on drilling tool load and machining quality of C/SiC composites in rotary ultrasonic machining

机译:旋转超声加工中C / SiC复合材料的钻具载荷和加工质量的实验研究

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Carbon fiber reinforced silicon carbide matrix (C/SiC) composites have great potential in space applications because of their excellent properties such as low density, superior wear resistance and high temperature resistance. However, the use of C/SiC has been hindered seriously because of its poor machining characteristics. With an objective to improve the machining process of C/SiC composites, rotary ultrasonic machining (RUM) and conventional drilling (CD) tests with a diamond core drill were conducted. The effects of ultrasonic vibration on mechanical load and machining quality were studied by comparing the drilling force, torque, quality of holes exit and surface roughness of drilled holes between the two processes. The results showed that the drilling force and torque for RUM were reduced by 23% and 47.6%, respectively of those for CD. In addition, the reduction in drilling force and torque decreased gradually with increasing spindle speed, while they changed slightly with increasing feed rate. Under identical conditions, RUM gave better holes exit than CD. Moreover, because of the lower lamellar brittle fracture and pit originating from carbon fibers fracture, the roughness of surface of drilled holes obtained with RUM was lower than CD and the maximum reduction was 23%.
机译:碳纤维增强的碳化硅基复合材料(C / SiC)具有低密度,优异的耐磨性和耐高温性等优异性能,在空间应用中具有巨大的潜力。但是,由于其不良的加工特性,严重阻碍了C / SiC的使用。为了改善C / SiC复合材料的加工工艺,进行了旋转超声加工(RUM)和使用金刚石空心钻的常规钻孔(CD)试验。通过比较两个过程之间的钻孔力,扭矩,孔出口质量和钻孔表面粗糙度,研究了超声振动对机械负载和加工质量的影响。结果表明,RUM的钻削力和扭矩分别比CD降低了23%和47.6%。另外,随着主轴转速的增加,钻削力和扭矩的减小逐渐减小,而随着进给速度的增加,它们的减小量却有所变化。在相同条件下,RUM的孔出口比CD更好。而且,由于较低的层状脆性断裂和源自碳纤维断裂的凹坑,用RUM获得的钻孔表面的粗糙度低于CD,并且最大减少率为23%。

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