机械工程学报 ›› 2017, Vol. 53 ›› Issue (19): 22-32.doi: 10.3901/JME.2017.19.022
房善想, 赵慧玲, 张勤俭
收稿日期:
2016-12-16
修回日期:
2017-03-06
出版日期:
2017-10-05
发布日期:
2017-10-05
通讯作者:
张勤俭(通信作者),男,1972年出生,博士,教授,博士研究生导师。主要研究方向为超声加工、虚拟现实与增强现实技术、微纳制造方向,E-mail:qjzhang@bjtu.edu.cn
作者简介:
房善想,男,1992年出生,博士研究生。主要研究方向为超声加工、微纳制造方向,E-mail:16116349@bjtu.edu.cn;赵慧玲,女,1988年出生,硕士研究生。主要研究方向为超声加工、微纳制造方向,E-mail:15121234@bjtu.edu.cn
基金资助:
FANG Shanxiang, ZHAO Huiling, ZHANG Qinjian
Received:
2016-12-16
Revised:
2017-03-06
Online:
2017-10-05
Published:
2017-10-05
摘要: 根据近年来超声加工技术的发展状况,综述了超声加工技术的应用现状及其发展趋势。超声加工技术具有其极强的切削能力、极小的切削抗力、极细微的光整能力以及极高的强化能力。国内外学者对超声振动系统中的超声换能器和变幅杆进行研究,目的在于增加系统的功率与变幅杆的振幅,以及适用于特定的加工环境。超声加工技术以其工艺优势在难加工材料加工、深小孔加工、薄壁件加工、超声表面光整强化、超声焊接和磨粒冲击等加工领域获得越来越广泛的应用,并且其应用涉及半导体工业、高速列车、汽车制造、航空航天、光学元器件、医疗工业等产业领域。随着超声加工技术应用的日益普遍,超声复合加工、微细超声加工、旋转超声加工以及超声骨切削技术也将得到进一步的发展和运用。
中图分类号:
房善想, 赵慧玲, 张勤俭. 超声加工技术的应用现状及其发展趋势[J]. 机械工程学报, 2017, 53(19): 22-32.
FANG Shanxiang, ZHAO Huiling, ZHANG Qinjian. The Application Status and Development Trends of Ultrasonic Machining Technology[J]. Journal of Mechanical Engineering, 2017, 53(19): 22-32.
[1] 张勤俭,杨小庆,李建勇,等. 超声加工技术的现状及其发展趋势[J]. 电加工与模具,2012(5):11-15,40. ZHANG Qinjian,YANG Xiaoqing,LI Jianyong,et al. The present situation and development of ultrasonic machining technology[J]. Electromachining & Mould,2012(5):11-15,40. [2] 张德远,辛文龙,姜兴刚,等. 超声加工研究的趋势[C]//第16届全国特种加工学术会议,2015,10月,厦门. ZHANG Deyuan,XIN Wenlong,JIANG Xinggang,et al. Trends in tltrasonic machining[C]//Proceedings of the Sixteenth National Conference on Non-traditional Machining(2),2015,October,Xiamen. [3] 袁易全. 超声换能器[M]. 南京:南京大学出版社, 1992. YUAN Yiquan. Ultrasonic transducer[M]. Nanjing:Nanjing University Press,1992. [4] 杨大师,顾翔,王芳,等. 超声调制电加工系统换能器的特性分析与研究[J]. 压电与声光,2016(3):469-474. YANG master,GU Xiang,WANG Fang,et al. Study and characteristics of piezoelectric transducer for ultrasound modulated electric machining system[J]. Piezoelectrics & Acoustooptics,2016(3):469-474. [5] 李陆化,刘世清,李丹. 镶拼式复合压电超声换能器的径向振动特性[J]. 机械工程学报,2016,52(16):22-26. LI Luhua,LIU Shiqing,LI Dan. Radial vibration of a regular polygon composite piezoelectric ultrasonic transducer[J]. Journal of Mechanical Engineering,2016,52(16):22-26. [6] C1ALK A E. Magnetostrictive rare earth-Fe2 compound[J]. New York:Nonh-Holland PubishiIlg Comally,1980. [7] 程宜杰. 稀土超磁致伸缩材料在水下发射器中的应用[J]. 金属功能材料,2007,2(3):16-18. CHENG Yijie. Application of terfenol一(giant magnetostrictive materials, GMM)in hydroacoustic projector transducer[J]. Metallic Functional Materials,2007,2(3):16-18. [8] STILLESJO F,ENGDAHL G,WEI Z G. Dynamic simulation and performance study of magnetostrictive transducers for ultrasonic applications[J]. Spies Annual International Symposium on Smart Structures & Materials,2000,3992:594-602. [9] 初永臣. 稀土超磁致伸缩超声振动强化系统的研制与试验研究[D]. 北京:北京交通大学,2015. CHU Yongchen. Development and experimental research of rare-earth giant magnetostrictive ultrasonic vibration strengthening system[D]. Beijing:Beijing Jiaotong University,2015. [10] 徐明刚,张振,黄文勇. 超声旋转微细电火花加工装置变幅杆的设计[C]//第16届全国特种加工学术会议,2015,10月,厦门. XU Minggang,ZHANG Zhen,HUANG Wenyong. Design of ultrasonic rotary micro EDM device horn[C]//Proceedings of the Sixteenth National Conference on Non-traditional Machining(2),2015,October,Xiamen. [11] 袁松梅,刘明. 纵-扭复合超声振动加工系统设计及频率简并研究[J]. 振动与冲击,2016(5):8-13. YUAN Songmei,LIU Ming. Design of a longitudinal}orsional composite ultrasonic vibrationmachining system and its natural frequencies merging[J]. Journal of Vibration and Shock,2016(5):8-13. [12] 佘银柱,吕明,王时英. 非谐振单元变幅器的设计及其动力学研究[J]. 机械工程学报,2012,48(7):49-55. SHE Yinzhu,LÜ Ming,WANG Shiying. Design of transformer with non-resonance structure and its dynamic study[J]. Journal of Mechanical Engineering,2012,48(7):49-55. [13] 吕明,佘银柱,秦慧斌,等. 超声珩齿振动系统的设计方法及其动力学特性[J]. 振动与冲击,2013(2):147-152. LV Ming,SHE Yinzhu,QIN Huibin,et al. Design method for a vibration system of ultrasonic gear honing and its dynamic characteristics[J]. Journal of Vibration and Shock,2013(2):147-152. [14] 秦慧斌,吕明. 超声珩齿振动系统的非谐振设计理论与试验研究[J]. 机械工程学报,2015,51(14):121. QIN Huibin,LÜ Ming. Theoretical and experimental research on inharmonic design of resonance system in ultrasonic gear honing[J]. Journal of Mechanical Engineering,2015,51(14):121. [15] 梁欣,吕明,王时英. 新型齿轮超声加工纵向振动系统的设计[J]. 工程设计学报,2015(4):381-386. LIANG Xin,LÜ Ming,WANG Shiying. Design of new longitudinal vibration system in gear ultrasonic machining[J]. Chinese Journal of Engineering Design,2015(4):381-386. [16] RAJURKAR K P,WANG Z Y,KUPPATTAN A. Micro removal of ceramie material (A1203) in the precision ultrasonic machining[J]. Precision Engineering, 1999, 23:73-78. [17] 丁凯,苏宏华,傅玉灿,等. 陶瓷基复合材料超声辅助加工技术[J]. 航空制造技术,2016,15:42-49,56. DING Kai,SU Honghua,FU Yucan,et al. Ultrasonic assisted machining of ceramic matrix composites[J]. Aeronautical Manufacturing Technology,2016,15:42-49,56. [18] 曹有为,乔国朝. Si3N4陶瓷超声振动铣磨加工表面粗糙度的数学模型[J]. 机械工程材料,2016,40(5):101-104,110. CAO Youwei,QIAO Guochao. Mathematical model for surface roughness of Si3N4 ceramic machined byUltrasonic vibration milling-grinding[J]. Materials for Mechanical Engineering,2016,40(5):101-104,110. [19] 邵水军,赵波,闫燕艳,等. 纳米陶瓷超声ELID复合磨削加工磨削力特性研究[J]. 兵器材料科学与工程,2016(4):1-4. SHAO Shuijun,ZHAO Bo,YAN Yanyan,et al. Grinding force characteristics in ultrasonic vibration ELID for nano-ceramics[J]. Ordnance Material Science and Engineering,2016(4):1-4. [20] 郑侃,肖行志,廖文和,等. 完全烧结氧化锆牙科陶瓷材料的旋转超声加工试验研究[J]. 人工晶体学报,2013(9):1864-1869. ZHENG Kan,XIAO Hangzhi,LIAO Wenhe,et al. Study on rotary ultrasonic machining of sintered zirconia dental ceramics[J]. Journal of Synthetic Crystals,2013(9):1864-1869. [21] 张辽远,赵炎,马康乐,等. 超声金刚石线锯复合加工工件的对比试验研究[J]. 金刚石与磨料磨具工程,2016(2):32-36. ZHANG Liaoyuan,ZHAO Yan,MA Kangle,et al. Contrastive study on diamond wire saw cutting with/without ultrasonic vibration[J]. Diamond & Abrasives Engineering,2016(2):32-36. [22] 张勤俭,李建勇,蔡永林,等. 聚晶金刚石电火花超声机械复合加工技术研究[J]. 金刚石与磨料磨具工程,2012(1):8-11. ZHANG Qinjian,LI Jianyong,CAI Yonglin,et al. Study on electrical discharge and ultrasonic}ssisted mechanicalcombined machining of polycrystalline diamond[J]. Diamond & Abrasives Engineering,2012(1):8-11. [23] 张勤俭,赵路明,李建勇,等. 聚晶金刚石拉丝模卧式超声加工运动轨迹的计算机仿真[J]. 应用基础与工程科学学报,2012(S1):235-243. ZHANG Qinjian,ZHAO Luming,LI Jianyong,et al. Computer simulation of polycrystalline diamond drawing die horizontal movement ultrasonic machining[J]. Journal of Basic Science and Engineering,2012(S1):235-243. [24] VARUN S,PULAK M. Optimization of machining and vibration parameters for residual stresses minimization in ultrasonic assisted turning of 4340 hardened steel[J]. Ultrasonics,2016,70:172-182. [25] 李文忠,胡玉景. 超声磨削加工硬质合金材料的仿真分析[J]. 青岛大学学报,2015(4):66-71. LI Wenzhong,HU Yujing. Simulation analysis of ultrasonic grinding hard alloy material[J]. Journal of Qingdao University,2015(4):66-71. [26] 董树亮,张雯,王玉魁,等. 基于工件超声辅助的微细电火花不锈钢微小孔加工研究[C]//第16届全国特种加工学术会议论文集(上),2015,10月,厦门. DONG Shuliang,ZHANG Wen,WANG Yukui,et al. Micro hole machining of micro EDM based on ultrasonic assisted workpiece[C]//Proceedings of the Sixteenth National Conference on Non-traditional Machining(1),2015,October,Xiamen. [27] 汪红兵,张义平,李志荣,等. 大深径比微小深孔超声电火花加工工艺研究[J]. 现代制造工程,2015(6):110-114. WANG Hongbing,ZHANG Yiping,LI Zhirong,et al. Research on an ultrasonic vibration assisted electrical discharge machining technology of micro deep hole with high aspect ratio[J]. Modern Manufacturing Engineering,2015(6):110-114. [28] 陈汇资,赵波,童景琳,等. 适用于深腔加工的超声振动系统设计与试验[J]. 机械设计与研究,2016(1):84-87,91. CHEN Hui,ZHAO Bo,TONG Jinglin,et al. Based on the ultrasonic vibration system design and experiment of the deep cavity machining[J]. Machine Design & Research,2016(1):84-87,91. [29] 梁桂强,冯平法,张建富,等. SiCp/Al薄壁件超声辅助磨削加工表面质量研究[C]//第16届全国特种加工学术会议论文集(下),2015,10月,厦门. LIANG Guiqiang,FENG Pingfa,ZHANG Jianfu,et al. Study on surface quality of ultrasonic assisted grinding of SiCp/Al thin wall parts[C]//Proceedings of the Sixteenth National Conference on Non-traditional Machining(2), 2015,October,Xiamen. [30] 刘赛. SiCp/Al薄壁件超声辅助磨削加工振动及工艺优化研究[D]. 哈尔滨:哈尔滨工业大学,2012. LIU Sai. Research on processing vibration and optimization in ultrasonic-assisted grinding of SiCp/A1 thin-wallde structures[D]. Harbin:Harbin Institute of Technology,2012. [31] 辛文龙,刘佳佳,姜兴刚,等. 钛合金薄壁件腹板超声椭圆振动铣削精度研究[A]. 中国机械工程学会特种加工分会.第16届全国特种加工学术会议论文集(下)[C],2015,10月,厦门. XIN Wenlong,LIU Jiajia,JIANG Xinggang,et al. Research on ultrasonic elliptical vibration milling of titanium alloy thin-walled parts[C]//Proceedings of the Sixteenth National Conference on Non-traditional Machining(2),2015,October,Xiamen. [32] WATANABE Y,HATTORI K,HANDA M,et al. Effect of ultrasonic shot peening on fatigue strength of high strength steel[C]//Proc. 9th Int. Conf. on Shot Peening, Sept. 16-20,Garmisch-Partenkirchen,Germany,2002:305-310. [33] TOMASZEWSKI H,GODWOD K,DIDUSZKO R,et al. Modification of alumina cermics properities by stressonic shot peening[J]. Materials Science Forum, 2005,490-491:509-514. [34] TOMASZEWSKI H, DOBRZANSKI F S,OSTACHOWSKI P,et al. Shot peening in structural ceramics[J]. Ceramic Materials,2010,62(3):266-271. [35] HE Y Z,WANG D P,WANG Y,et al. Correction of buckling distortion by ultrasonic shot peening treatmedt for 5A06 aluminum alloy welded structure[J]. Transactions of Nonferrous Metals Society of China,2016,6:1531-1537. [36] 王婷,王东坡,刘刚,等. 40Cr超声表面滚压加工纳米化[J]. 机械工程学报,2009,45(5):177-183. WANG Ting,WANG Dongpo,LIU Gang,et al. 40Cr nano-crystallization by ultrasonic surface rolling extrusion processing[J]. Journal of Mechanical Engineering,2009,45(5):177-183. [37] 侯雅丽,吴豪琼,刘传绍. 纵-扭复合振动超声深滚加工试验研究[J]. 兵器材料科学与工程,2015(4):19-22. HOU Yali,WU Haoqiong,LIU Chuanshao. Ultrasonic deep rolling technology with longitudinal-torsional vibration[J]. Ordnance Material Science and Engineering,2015(4):19-22. [38] 田斌,岳文. 超声表面加工和硫氮共渗复合处理对35CrMo钢表面性能的影响[J]. 中国表面工程,2016(1):103-110. TIAN Bin,YUE Wen. Influences of ultrasonic surface processing and nitriding-sulphurizing treatments surface properties of 35CrMo steelon[J]. China Surface Engineering,2016(1):103-110. [39] 张勤俭,王会英,刘月明,等. 30CrMoA车轴材料超声表面挤压强化技术研究[J]. 应用基础与工程科学学报,2015(S1):177-184. ZHANG Qinjian,WANG Huiying,LIU Yueming,et al. Study on ultrasonic surface extrusion technology of 30CrMoA axle material[J]. Journal of Basic Science and Engineering,2015(S1):177-184. [40] WATANABE T,ADACHIH,YANGISAWA A. Brazing of A5056 aluminum alloy with the aid of ultrasonic vibration using Ag filler metal[J]. Quarterly Journal of the Japan Welding Society,2008,26(4):259-263. [41] TORU N,YOSHIAKI M,MASAO F,et al. Corrosion resistance of ultrasonic soldered aluminium joint using Zn-based solder alloy[J]. Welding International,2012,268:573-579. [42] SOMAYEH G H,GU ZHIYONG,TEⅡCHI A. Flux-less direct soldering of aluminum by ultrasonic surface activation[J]. Journal of Materials Processing Tech.,2016,233:135-141. [43] 黄禹,徐中,陈志,等. 塑料超声波焊接加工质量因素分析[J]. 中国包装工业,2016(2):17-18. HUANG Yu,XU Zhong,CHEN Zhi,et al. Analysis of quality factors in ultrasonic welding of plastics[J]. China Packaging Industry,2016(2):17-18. [44] 舒晨,李新和,卜佳南,等. 超声磨粒冲击加工去除模型建立与仿真[J]. 机械科学与技术,2015(9):1360-1364. SHU Chen,LI Xin and,BU Jianan,et al. Removel model establishing and simulation of ultrasonic abrasive impacts[J]. Mechanical Science and Technology for Aerospace Engineering,2015(9):1360-1364. [45] 计时鸣,邱毅,蔡姚杰,等. 软性磨粒流超声强化机理及试验研究[J]. 机械工程学报,2014,51(7):84-93. JI Shiming,QIU Yi,CAI Yaojie,et al. Research on mechanism of ultrasound enhancing and the experiment based on softness abrasive flow[J]. Journal of Mechanical Engineering,2014,51(7):84-93. [46] 曹明让,杨世春,杨胜强.超声电火花复合加工速度工艺试验研究[J]. 新技术新工艺,2007(3):22-27. CAO Mingrang,YANG Shichun,YANG Shengqiang. Study on processing speed of ultrasonic EDM[J]. New Technology & New Process,2007(3):22-27. [47] KREMCR D,LRBRUN J L,FLOSARI 13,et al. Eflccts of ultrasonic vibrations on the performances in EDM[J]. CIRI Annals-Manufacturing Technology,1989,38(1):199-202 [48] LIEW P J,YAN J W,KURIYAGAWA T. Fabrication of deep micro-holes in rcaciion-bonded SiC by ultrasonic cavitation assisted micro-EDM[J]. International Jonrnal of Machine Tools&Manufacture,2014,76:13-20. [49] 缭东辉,韩超,高长水.硬质合金的超声电火花复合加工试验研究[J].电加工与模具,2010(3):18-21. MIAO Donghui,HAN Chao,GAO Changshui. Research on the ultrasonic EDM machining of cemented carbides[J]. Electromachining & Mould,2010(3):18-21. [50] 郑友益,尤奇. 单颗磨粒超声ELID复合磨削试验研究[J]. 工具技术,2015(6):22-24. ZHENG Youyi,YOU Qi. Experimental study on ultrasonic and ELID composite grinding based on single grain[J]. Tool Engineering,2015(6):22-24. [51] 朱永伟,王占和,李红英,等. 电解复合超声频振动微细加工机理与试验研究[J]. 中国机械工程,2008(15):1786-1792. ZHU Yongwei,WANG Zhanhe,LI Hongying,et al. Machining mechanism and test study on micro-machining of ECM combined ultrasonic vibration[J]. China Mechanical Engineering,2008(15):1786-1792. [52] 朱永伟,邵健,苏楠,等. 同步超声振动调制微细放电-电解加工技术[J]. 机械工程学报,2014,50(1):185-192. ZHU Yongwei,SHAO Jian,SU Nan,et al. Research on micro electro-discharged & electrolysis machining technology modulated by synchronizing ultrasonic vibrating[J]. Journal of Mechanical Engineering,2014,50(1):185-192. [53] 高国富,王岩. 磁力研磨加工技术研究进展[J]. 河南理工大学学报,2015(6):813-817. GAO Guofu,WANG Yan. Research progress of magnetic abrasive finishing technology[J]. Journal of Henan Polytechnic University,2015(6):813-817. [54] 朱永伟,王占和,范仲俊,等. 微细超声复合电加工技术与应用[J]. 机械工程学报,2010,46(3):179-186. ZHU Yongwei,WANG Zhanhe,FAN Zhongjun,et al. Ultrosonic combined electrical micro-machining technology and its application[J]. Journal of Mechanical Engineering,2010,46(3):179-186. [55] YUZY,RAJURKAKP,TANDON. A Study of 3D micro-ultrasonic machining[J].Journal of Manufacturing Science and Engineering,2004,126:727-732. [56] KAI E,TOMOYA T,HACHIRO T,et al. Micro ultrasonic machining using multitools[C]//Seventh International Conferenceon Progress of Machining Technology,2004:297-301. [57] 王建春. 超声加工技术研究现状及展望[J]. 机械工程师,2012(4):6-11. WANG Jianchun. Research status and Prospect of ultrasonic machining technology[J]. Mechanical Engineer,2012(4):6-11 [58] 唐勇军,郭钟宁,张永俊. 数控旋转超声加工机床研制及其工艺试验[J]. 电加工与模具,2013(4):46-59. TANG Yongjun,GUO Zhongning,ZHANG Yongjun,et al. Development of CNC rotary ultrasonic machining tool and experimental study on process[J]. Electromachining & Mould,2013(4):46-59. [59] 郑书友,冯平法,徐西鹏. 旋转超声加工技术研究进展[J]. 清华大学学报,2009,49(11):1799-1804. ZHENG Shuyou,FENG Pingfa, XU Xipeng. Development trends of rotary ultrasonic machining technology[J]. Journal of Tsinghua University,2009,49(11):1799-1804. [60] 张月. 超声振动切削在皮质骨切削中的应用[C]//第16届全国特种加工学术会议论文集(下),2015,10月,厦门. ZHANG Yue. Application of ultrasonic vibration cutting in cortical bone cutting[C]//Proceedings of the Sixteenth National Conference on Non-traditional Machining(2),2015,October,Xiamen. [61] 周冲,杨福兵,王斌,等. 超声骨刀在椎管内肿瘤切除术中的应用[J]. 第三军医大学学报,2016(2):200-203. ZHOU Chong,YANG Fubing,WANG Bin,et al. Piezoelectric surgery in intraspinal tumor resection[J]. Journal of Third Military Medical University,2016(2):200-203. [62] 李丹,郭传瑸,刘宇,等. 超声骨刀在上颌死髓劈裂磨牙拔除中的应用[J]. 北京大学学报,2016(4):709-713. LI Dan,GUO Chuanbin,LIU Yu,et al. Applicational evaluation of split tooth extractions of upper molars using piezosurgery[J]. Journal of Peking University,2016(4):709-713. |
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