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Microscopic machining mechanism of polishing based on vibrations of liquid

机译:基于液体振动的抛光微观加工机理

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A molecular dynamics method has been applied to study the mechanism of polishing based on vibrations of liquid. Movements of polishing particles and formations of impact dents are simulated and discussed. The abrasive effect between particle and machined substrate is evaluated empirically. Polishing qualities, including roughness and fractal character under multiple impacts, are obtained by numerical methods. Results show that the particle will vibrate and roll viscously on the substrate. Press, tear and self-organization effects will be responsible for the formation of impact dents. Simulation results are compared with experimental data to verify the conclusions.
机译:分子动力学方法已被用于研究基于液体振动的抛光机理。模拟和讨论了抛光颗粒的运动和冲击凹痕的形成。凭经验评估颗粒与机加工基材之间的磨蚀效果。通过数值方法获得抛光质量,包括在多次冲击下的粗糙度和分形特征。结果表明,该颗粒将振动并在基底上粘性滚动。压痕,撕裂和自组织效应将导致冲击凹痕的形成。仿真结果与实验数据进行比较以验证结论。

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