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Scratching-induced surface characteristics and material removal mechanisms in rotary ultrasonic surface machining of CFRP

机译:CFRP旋转超声表面加工中的刮擦诱导的表面特性和材料去除机制

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摘要

Rotary ultrasonic machining has been successfully explored in surface machining of carbon fiber reinforced plastic (CFRP) composites. It has been proven to be an effective and efficient CFRP machining method. Both theoretical and experimental investigations have been conducted with the assumption that the CFRP is removed by brittle fracture removal mode. However, in brittle material machining, ductile flow phenomenon still exists. Ductile scratching marks are also observed on the machined CFRP surfaces. It is still unknown that what actual material removal modes are under different machining variables. To investigate the material removal mechanisms in rotary ultrasonic surface machining (RUSM) of CFRP, single abrasive scratching tests were conducted. The scratching induced characteristics and scratching forces were analyzed. Both the ductile removal mode and the brittle fracture removal mode were observed and identified in both carbon fiber layers and epoxy resin layers on the machined marks by using scanning electron microscopy (SEM) imaging. With the increase of scratching depth, the material removal mode of CFRP was changed from the ductile removal mode to the brittle fracture mode. From the analysis of kinematic trajectory of diamond grain, the scratching cutting forces were decreased in the tests with the assistance of ultrasonic vibration under the same machining variables. The generation mechanisms of the delamination were analyzed and discussed.
机译:碳纤维增强塑料(CFRP)复合材料的表面加工成功探索了旋转超声波加工。已被证明是一种有效而有效的CFRP加工方法。已经假设通过脆性断裂去除模式除去CFRP来进行理论和实验研究。然而,在脆性材料加工中,延展性流动现象仍然存在。在加工的CFRP表面上也观察到韧性刮痕标记。仍然不知道那种实际的材料去除模式在不同的加工变量下。为了研究CFRP的旋转超声波表面加工(RUSM)中的材料去除机制,进行了单一磨料刮擦测试。分析了刮伤的诱导特征和刮擦力。通过使用扫描电子显微镜(SEM)成像,在机加工标记上观察并鉴定延性去除模式和脆性断裂去除模式并在加工标记上鉴定。随着刮擦深度的增加,CFRP的材料去除模式从韧性去除模式变为脆性断裂模式。根据钻石颗粒的运动轨迹分析,在相同的加工变量下的超声波振动的辅助下降,在测试中减少了刮擦的切割力。分析并讨论了分层的产生机制。

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