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纵向-扭转复合超声内圆磨削变幅杆的设计与实验研究

Design and Experimental Study of Longitudinal-Torsional Composite Ultrasonic Internal Grinding Horn.

作者信息

Zhang Hongyin, Jiao Feng, Niu Ying, Li Chenglong, Zhang Ziqiang, Tong Jinglin

机构信息

School of Mechanical and Power Engineering, Henan Polytechnic University, Jiaozuo 454003, China.

出版信息

Micromachines (Basel). 2023 Nov 2;14(11):2056. doi: 10.3390/mi14112056.

Abstract

Longitudinal-torsional composite ultrasonic vibration has been widely used in grinding. This paper aims to solve the problem that the resonance frequency deviates greatly from the theoretical design frequency and the vibration mode is poor when the horn is matched with a larger tool head. This paper presents how the longitudinal-torsional composite ultrasonic conical transition horn was designed and optimized by the transfer matrix theory and finite element simulation. For this purpose, the spiral groove parameters were optimized and selected by finite element simulation. Then, the modal analysis and transient dynamic analysis of the horn with grinding wheel were carried out to verify the correctness of the theoretical calculation. The impedance analysis and amplitude test of the horn with grinding wheel were carried out. The test results were in very good agreement with the theoretical and simulation results. Finally, the grinding experiment was carried out. The surface roughness of the workpiece in longitudinal-torsional ultrasonic vibration grinding was obviously reduced compared to that of ordinary grinding. All these obtained results demonstrate that the designed longitudinal-torsional composite ultrasonic horn has very good operational performance for practical applications.

摘要

纵向-扭转复合超声振动已在磨削中得到广泛应用。本文旨在解决当变幅杆与较大尺寸的刀头匹配时,共振频率与理论设计频率偏差较大且振动模式不佳的问题。本文介绍了如何通过传递矩阵理论和有限元模拟对纵向-扭转复合超声锥形过渡变幅杆进行设计和优化。为此,通过有限元模拟对螺旋槽参数进行了优化和选择。然后,对带有砂轮的变幅杆进行了模态分析和瞬态动力学分析,以验证理论计算的正确性。对带有砂轮的变幅杆进行了阻抗分析和振幅测试。测试结果与理论和模拟结果非常吻合。最后进行了磨削实验。与普通磨削相比,纵向-扭转超声振动磨削中工件的表面粗糙度明显降低。所有这些结果表明,所设计的纵向-扭转复合超声变幅杆在实际应用中具有非常良好的运行性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/60ee/10673021/d11521aed638/micromachines-14-02056-g001.jpg

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