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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A cutting force model based on kinematic analysis in longitudinal and torsional ultrasonic vibration drilling
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A cutting force model based on kinematic analysis in longitudinal and torsional ultrasonic vibration drilling

机译:基于运动学分析的纵向和扭转超声振动钻井切割力模型

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摘要

The longitudinal and torsional ultrasonic machining (LTUM) is an emerging ultrasonic vibration machining method, which is an innovation method based on rotary ultrasonic machining (RUM). Compared with one-dimensional longitudinal ultrasonic machining (LUM), LTUM has better performances and promising applicability. In this research, the machining mechanism and a drilling force model in longitudinal and torsional ultrasonic vibration drilling is proposed based on kinematic analysis. Besides, the kinematic model and track model in LTUM are established. In addition, the dynamic characteristics and cutting characteristics of the abrasive grains in LTUM are analyzed. Meanwhile, the material removal model for fracture material based on the indentation fracture theory in LTUM is considered. Based on the kinematic analysis and material removal model in the longitudinal and torsional ultrasonic vibration drilling, the cutting force model is developed and the relationship of cutting force with processing parameters and material parameters is investigated. Eventually, the verification experiment is carried out on carbon fiber-reinforced polymer (CFRP)-T700. The experimental result shows that the developed cutting force model predicts the cutting force accurately and the deviation is less than 10% in CFRP drilling. Additionally, the drilling experiment of LTUM, LUM, and conventional drilling (CD) are carried out respectively, and drilling force in the three processes are compared. The comparative analysis results show LTUM is superior to LUM and CD with lower drilling force and better performance.
机译:纵向和扭转超声波加工(LTUM)是一种新兴的超声波振动加工方法,它是基于旋转超声机械加工(RUM)的创新方法。与一维的纵向超声波加工(LUM)相比,具有LTUM更好的性能和有前途的适用性。在这项研究中,加工机构和在纵向和扭转超声振动钻削钻孔力模型是基于运动分析提出。此外,在LTUM运动学模型和跟踪模型建立。此外,动态特性和在LTUM磨粒的切削特性进行了分析。同时,基于在LTUM压痕断裂理论骨折材料的材料去除模型被认为。基于在纵向和扭转超声振动钻削的运动学分析和材料去除模型,切割力模型的开发和切削力与处理参数和材料参数的关系进行了研究。最终,验证实验是在碳纤维增强的聚合物(CFRP)-T700进行。实验结果显示,所开发的切削力模型准确地预测切削力和偏差在CFRP钻孔小于10%。此外,LTUM,LUM,和常规钻井(CD)的钻孔试验分别进行,并且在三个过程钻孔力进行比较。对比分析结果表明LTUM优于LUM和CD低钻削力和更好的性能。

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