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第 40 卷 第 4 期            周瑞峰等: 旋转超声磨削平行砂轮复合变幅器设计与试验                                          561


                 status and future prospects of rotary ultrasonic machin-  [8] 吕明, 王时英, 秦慧斌. 非谐振设计理论与齿轮超声加工 [M].
                 ing of hard and brittle materials[J]. Journal of Mechanical  北京: 科学出版社, 2014.
                 Engineering, 2017, 53(19): 3–21.                [9] 赵波, 陈凡, 贾晓凤, 等. 非谐振大工具头变幅杆优化设计
              [2] 制造科学编委会. 10000 个科学难题 · 制造科学卷 [M]. 北京:            及声学特性测试 [J]. 陕西师范大学学报 (自然科学版), 2017,
                 科学出版社, 2018: 10.                                  45(1): 45–51.
              [3] Brecher C, Schug R, Weber A, et al. New systematic  Zhao Bo, Chen Fan, Jia Xiaofeng, et al. Optimization
                 and time-saving procedure to design cup grinding wheels  design and characteristics test of non-resonant large tool
                 for the application of ultrasonic-assisted grinding[J]. The  head horn[J]. Journal of Shaanxi Normal University (Nat-
                 International Journal of Advanced Manufacturing Tech-  ural Science Edition), 2017, 45(1): 45–51.
                 nology, 2010, 47(1–4): 153–159.                [10] 付俊帆, 秦慧斌, 吕明. 基于 Mindlin 理论的功率超声纵弯谐
              [4] Han X, Zhang D, Song G. Review on current situation and  振变幅器设计理论与试验研究 [J]. 振动与冲击, 2018, 37(7):
                 development trend for ultrasonic vibration cutting tech-  259–266.
                 nology[J]. Materials Today: Proceedings, 2020, 22(Pt 3):  Fu Junfan, Qin Huibin, Lyu Ming. Design and experi-
                 444–455.                                          ment of ultrasonic longitudinal-flexural resonance trans-
              [5] 房善想, 赵慧玲, 张勤俭. 超声加工技术的应用现状及其发展                   ducer based on Mindlin theory[J]. Journal of Vibration
                 趋势 [J]. 机械工程学报, 2017, 53(19): 22–32.              and Shock, 2018, 37(7): 259–266.
                 Fang Shanxiang, Zhao Huiling, Zhang Qinjian. The ap-  [11] 靳涛, 胡小平, 于保华. 大端接圆柱杆的复合圆锥形变幅
                 plication status and development trends of ultrasonic ma-  杆设计及应用 [J]. 北京航空航天大学学报, 2019, 45(8):
                 chining technology[J]. Journal of Mechanical Engineering,  1630–1638.
                 2017, 53(19): 22–32.                              Jin Tao, Hu Xiaoping, Yu Baohua. Design and applica-
              [6] Wang Y, Guangheng D, Zhao J, et al. Study on key fac-  tion of compound conical horn with cylinder at big end[J].
                 tors influencing the surface generation in rotary ultrasonic  Journal of Beijing University of Aeronautics and Astron-
                 grinding for hard and brittle materials[J]. Journal of Man-  sutics, 2019, 45(8): 1630–1638.
                 ufacturing Processes, 2019, 38(2): 549–555.    [12] 秦慧斌, 石喜玲, 吴霄, 等. 一种超声辅助磨削装置及其应用:
              [7] Chen Y, Liang Y, Xu J, et al. Ultrasonic vibration assisted  中国, ZL201810864416.6[P]. 2018–10–12.
                 grinding of CFRP composites: effect of fiber orientation  [13] Qin H, Lyu M, Wang S, et al.  Modeling and solving
                 and vibration velocity on grinding forces and surface qual-  for transverse vibration of gear with variational thick-
                 ity[J]. International Journal of Lightweight Materials and  ness[J]. Journal of Central South University, 2013, 20(8):
                 Manufacture, 2018, 1(3): 189–196.                 2124–2133.
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