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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Experimental study on tool wear in ultrasonic vibration-assisted milling of C/SiC composites
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Experimental study on tool wear in ultrasonic vibration-assisted milling of C/SiC composites

机译:超声振动辅助研磨刀具磨损的实验研究C / SIC复合材料

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摘要

Carbon-fiber reinforced silicon carbide matrix (C/SiC) composites are typical difficult-to-cut materials due to high hardness and brittleness. Aiming at the problem of the serious tool wear in conventional milling (CM) C/SiC composite process, ultrasonic vibration-assisted milling (UVAM) and conventional milling tests with a diamond-coated milling cutter were conducted. Theoretical and experimental research on the cutting force during the ultrasonic vibration milling process of C/SiC composites is carried out. Based on the kinematics analysis of tool path during ultrasonic vibration milling process, the cutting force model of ultrasonic vibration milling is established, and the influence mechanism of ultrasonic vibration on the cutting force is revealed. Based on the analysis of the evolution law of tool wear profile and wear curve during the traditional milling and ultrasonic vibration milling of C/SiC, the tool wear forms and mechanism of diamond-coated milling cutters in two processing modes and the influence mechanism of ultrasonic vibration on tool wear are revealed. It is found that the main wear mechanism of the diamond-coated milling cutter is abrasive wear, and the main wear form is the coating peeling. Compared with the traditional milling, the tool wear can be reduced by the ultrasonic vibration milling in machining process. In the range of test parameters, the tool wear decreases first and then increases with the increase of ultrasonic amplitude.
机译:由于高硬度和脆性,碳纤维增强碳化硅基质(C / SiC)复合材料是典型的难以切割的材料。针对传统铣削(CM)C / SiC复合过程中的严重工具磨损的问题,进行了超声波振动备铣削(UVAM)和具有金刚石涂层铣刀的常规研磨试验。进行了C / SIC复合材料超声波振动过程中切割力的理论和实验研究。基于超声振动铣削过程中工具路径的运动学分析,建立了超声波振动铣削的切割力模型,揭示了超声波振动对切割的影响机理。基于C / SIC的传统铣削和超声振动研磨过程中工具磨损型材和磨损曲线的进化规律的分析,两种加工模式中金刚石涂层铣刀工具磨损形式和机理及超声波的影响机理揭示了刀具磨损的振动。发现金刚石涂层铣刀的主磨损机构是磨料磨损,主磨损形式是涂层剥离。与传统铣削相比,通过在加工过程中的超声波振动铣削可以减少工具磨损。在测试参数的范围内,刀具磨损首先降低,然后随着超声幅度的增加而增加。

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