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Material removal mechanism in rotary ultrasonic machining of high-volume fraction SiCp/Al composites

机译:高批量级馏分SICP / Al复合材料旋转超声加工材料的材料去除机理

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摘要

High-volume fraction silicon carbide-reinforced aluminum matrix (SiCp/Al) composites are widely used in many industrial fields due to their excellent material properties. However, these composites are regarded as one of the most difficult-to-machine materials, owing to the presence of many hard and brittle SiC reinforcements. Rotary ultrasonic machining (RUM) is an effective processing method for SiCp/Al composites. The material removal mechanism in RUM of SiCp/Al composites was investigated by comparing the deformation characteristics of the composites in ultrasonic vibration-assisted scratch (UVAS) tests and conventional scratch (CS) tests which were performed on a rotary ultrasonic machine. The influence of ultrasonic vibration on the machining process was analyzed. Furthermore, the morphologies of the scratching surfaces, scratching forces, and material removal process were evaluated in detail. The theoretical and experimental results revealed that ultrasonic vibration changes the interaction between the cutting tool and the workpiece. The vibration enhanced the Al matrix and facilitated SiC reinforcements removal by increasing the cracks in them. Therefore, the scratching forces in UVAS were smaller and more stable than those in CS. The coefficient of friction (COF) was also smaller than that of CS and hence, the adhesion effect of Al matrix during the scratching process was weakened. This study shows that the removal mode of SiC reinforcements plays a decisive role in the formation of the machined surface. These results can serve as a guide for selecting appropriate processing parameters to obtain improved machining quality of SiCp/Al composites.
机译:由于其优异的材料特性,大量碳化硅增强铝基质(SICP / Al)复合材料广泛用于许多工业领域。然而,由于存在许多硬度和脆性的SiC增强部分,这些复合材料被认为是最难以充气的材料之一。旋转超声加工(朗姆酒)是SICP / Al复合材料的有效处理方法。通过比较在旋转超声波机器上进行的超声波振动辅助划痕(UVAS)测试中的复合材料的变形特性和在旋转超声波机上进行的传统划痕(CS)测试来研究SICP / Al复合材料中的材料去除机制。分析了超声波振动对加工过程的影响。此外,详细评估刮擦表面,刮擦力和材料去除过程的形态。理论和实验结果表明,超声波振动改变了切削工具和工件之间的相互作用。通过增加它们中的裂缝,振动增强了Al基质,并促进的SiC增强物去除。因此,UVAs中的刮擦力较小,比CS中的刮擦力较小。摩擦系数(COF)也小于Cs的系数,因此,耐刮擦过程中Al基质的粘附效果削弱。该研究表明,SiC增强材料的去除模式在机加工表面的形成中起着决定性作用。这些结果可以用作选择适当的处理参数的指导,以获得SICP / Al复合材料的改进的加工质量。

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