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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A study on the effects of machining variables in surface grinding of CFRP composites using rotary ultrasonic machining
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A study on the effects of machining variables in surface grinding of CFRP composites using rotary ultrasonic machining

机译:使用旋转超声加工对CFRP复合材料表面磨削机械加工变量的影响

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Due to their excellent properties, carbon fiber-reinforced plastic (CFRP) composites are attractive in many industries, including aerospace, automobile, sports, etc. The structure of anisotropy and heterogeneity and the high abrasive resistance of carbon fibers make CFRPs difficult to cut in surface grinding processes. Many problems, including high cutting force, high tool wear, severe delamination, and high cutting temperature, are associated with conventional surface grinding processes. To reduce or eliminate these problems, surface grinding of CFRP composites using rotary ultrasonic machining (RUM) has been conducted. Machining variables play dominant roles in such a process. However, no investigations on effects of machining variables on output variables were reported. This paper, for the first time, reports effects of machining variables (ultrasonic power, tool rotation speed, feed rate, and depth of cut) on output variables (cutting force, torque, and surface roughness). The results revealed that the cutting force could be decreased by using higher level of ultrasonic power, higher level of tool rotation speed, lower level of feed rate, or lower level of depth of cut. Lower surface roughness could be achieved by a decrease of ultrasonic power, an increase of tool rotation speed, a decrease of feed rate, or a decrease of depth of cut. The machined CFRP surfaces' morphology and the characteristics of damaged carbon fibers were, for the first time, analyzed and reported in such a process.
机译:由于其优异的性能,碳纤维增强塑料(CFRP)复合材料在许多行业中具有吸引力,包括航空航天,汽车,运动等。各向异性和异质性的结构,碳纤维的高磨蚀性使CFRP难以切入表面研磨工艺。许多问题,包括高切削力,高刀具磨损,严重分层和高切削温度,与传统的表面研磨工艺相关。为了减少或消除这些问题,已经进行了使用旋转超声机加工(朗姆酒)的CFRP复合材料的表面研磨。加工变量在这样的过程中扮演主导角色。然而,没有对加工变量对输出变量的影响进行调查。本文首次报告了加工变量(超声波功率,刀具转速,进料速率和切割深度)对输出变量(切割力,扭矩和表面粗糙度)的影响。结果表明,通过使用更高水平的超声波功率,更高水平的工具转速,较低的进料速度水平或较低的切割水平,可以降低切割力。通过超声波的降低,刀具旋转速度的增加,进料速度的降低或减小切割的减小,可以实现较低的表面粗糙度。在这样的过程中,加工CFRP表面的形态和受损碳纤维的特性是在这种过程中分析和报道的。

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