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材料去除过程中Rehbinder效应的研究进展 被引量:1
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作者 邱天 言兰 +4 位作者 王福增 谢鸿 税妍 张涛 姜峰 《中国表面工程》 EI CAS CSCD 北大核心 2024年第1期59-74,共16页
精密机械加工过程中,利用Rehbinder效应对工件表面特性的影响,可以更好地控制零件表面质量。不同工程材料的Rehbinder效应的微观表现形式有所差异,但宏观结果都是降低工件表面硬度,使材料去除过程更容易进行。回顾了Rehbinder效应概念... 精密机械加工过程中,利用Rehbinder效应对工件表面特性的影响,可以更好地控制零件表面质量。不同工程材料的Rehbinder效应的微观表现形式有所差异,但宏观结果都是降低工件表面硬度,使材料去除过程更容易进行。回顾了Rehbinder效应概念的提出和发展过程并对其内涵和应用范围进行了阐述,为加工过程中的材料去除方法提供思路,对材料表面完整性的形成具有指导意义。列举了近年来科研人员对Rehbinder效应的相关研究成果,分析对比其在硬脆材料和塑性材料加工过程中的表现形式和微观作用机理,总结Rehbinder效应的影响因素,如极性分子的吸附活性、工件材料的晶粒尺寸等。揭示了Rehbinder效应中极性分子的吸附作用,以及吸附作用后的扩散、位错和间隙三种促进机制,并综述离散元法、有限元法和分子动力学等数值仿真方法对宏观尺度和微观尺度Rehbinder效应机理的研究。Rehbinder效应可以看作是一种对加工表面的改性机制,研究Rehbinder效应作用下的表面活性剂与被加工表面的匹配机制是提高材料表面完整性的关键,对推动精密制造工艺的发展有重要意义。 展开更多
关键词 材料去除 rehbinder效应 机械加工 数值仿真
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A review of low-temperature plasma-assisted machining:from mechanism to application 被引量:10
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作者 Jiyu LIU Yuheng LI +5 位作者 Yang CHEN Yuyang ZHOU Shuaishuai WANG Zizhen YUAN Zhuji JIN Xin LIU 《Frontiers of Mechanical Engineering》 SCIE CSCD 2023年第1期35-53,共19页
Materials with high hardness,strength or plasticity have been widely used in the fields of aviation,aerospace,and military,among others.However,the poor machinability of these materials leads to large cutting forces,h... Materials with high hardness,strength or plasticity have been widely used in the fields of aviation,aerospace,and military,among others.However,the poor machinability of these materials leads to large cutting forces,high cutting temperatures,serious tool wear,and chip adhesion,which affect machining quality.Low-temperature plasma contains a variety of active particles and can effectively adjust material properties,including hardness,strength,ductility,and wettability,significantly improving material machinability.In this paper,we first discuss the mechanisms and applications of low-temperature plasma-assisted machining.After introducing the characteristics,classifications,and action mechanisms of the low-temperature plasma,we describe the effects of the low-temperature plasma on different machining processes of various difficult-to-cut materials.The low-temperature plasma can be classified as hot plasma and cold plasma according to the different equilibrium states.Hot plasma improves material machinability via the thermal softening effect induced by the high temperature,whereas the main mechanisms of the cold plasma can be summarized as chemical reactions to reduce material hardness,the hydrophilization effect to improve surface wettability,and the Rehbinder effect to promote fracture.In addition,hybrid machining methods combining the merits of the low-temperature plasma and other energy fields like ultrasonic vibration,liquid nitrogen,and minimum quantity lubrication are also described and analyzed.Finally,the promising development trends of low-temperature plasma-assisted machining are presented,which include more precise control of the heat-affected zone in hot plasma-assisted machining,cold plasma-assisted polishing of metal materials,and further investigations on the reaction mechanisms between the cold plasma and other materials. 展开更多
关键词 low-temperature plasma difficult-to-cut material MACHINABILITY hydrophilization effect rehbinder effect
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