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Modeling the optimal compensation capacitance of a giant magnetostrictive ultrasonic transducer with a loosely-coupled contactless power transfer system
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作者 Tian LAN Ping-fa FENG +2 位作者 Jian-jian WANG Jian-fu ZHANG Hui-lin ZHOU 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2022年第10期757-770,共14页
The giant magnetostrictive rotary ultrasonic processing system(GMUPS)with a loosely-coupled contactless power transfer(LCCPT)has emerged as a high-performance technique for the processing of hard and brittle materials... The giant magnetostrictive rotary ultrasonic processing system(GMUPS)with a loosely-coupled contactless power transfer(LCCPT)has emerged as a high-performance technique for the processing of hard and brittle materials,owing to its high power density.A capacitive compensation is required to achieve the highest energy efficiency of GMUPS to provide sufficient vibration amplitude when it works in the resonance state.In this study,an accurate model of the optimal compensation capacitance is derived from a new electromechanical equivalent circuit model of the GMUPS with LCCPT,which consists of an equivalent mechanical circuit and an electrical circuit.The phase lag angle between the mechanical and electrical circuits is established,taking into account the non-negligible loss in energy conversion of giant magnetostrictive material at ultrasonic frequency.The change of system impedance characteristics and the effectiveness of the system compensation method under load are analyzed.Both idle vibration experiments and machining tests are conducted to verify the developed model.The results show that the GMUPS with optimal compensation capacitance can achieve the maximum idle vibration amplitude and smallest cutting force.In addition,the effects of magnetic conductive material and driving voltages on the phase lag angle are also evaluated. 展开更多
关键词 Rotary ultrasonic machining Giant magnetostrictive transducer(GMT) loosely-coupled contactless power transfer(LCCPT) Electromechanical equivalent circuit Optimal compensation capacitance
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基于改进结合界面边界条件方法的矩形柱驰振数值模拟 被引量:3
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作者 周岱 何涛 刘光众 《水动力学研究与进展(A辑)》 CSCD 北大核心 2013年第4期391-398,共8页
针对流固耦合问题该文提出了一种改进结合界面边界条件方法,即通过重构界面修正公式,完全消除未经修正的拖曳力,引入新的耦合参数/t以考虑时间步的影响。基于任意拉格朗日-欧拉有限元方法和弱耦合算法求解流固耦合系统。采用CBS(Charact... 针对流固耦合问题该文提出了一种改进结合界面边界条件方法,即通过重构界面修正公式,完全消除未经修正的拖曳力,引入新的耦合参数/t以考虑时间步的影响。基于任意拉格朗日-欧拉有限元方法和弱耦合算法求解流固耦合系统。采用CBS(Characteristic-Based Split)稳定化流体有限元算法求解不可压缩Navier-Stokes方程;采用Newmark-法求解结构运动方程;对流固耦合系统的网格更新,采用子块移动技术结合正交-半扭转弹簧近似法;在流场压力泊松方程中加入质量源项以保证几何守恒律;增加界面处的位移修正,以保持几何连续性。并运用该方法数值模拟了低雷诺数下长宽比4:1的矩形柱驰振,计算结果与已有文献结果高度吻合。 展开更多
关键词 流固耦合 任意拉格朗日-欧拉有限元法 弱耦合分区算法 结合界面边界法 扭转驰振
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