机械工程学报 ›› 2017, Vol. 53 ›› Issue (19): 33-44.doi: 10.3901/JME.2017.19.033
张园, 康仁科, 刘津廷, 张一鸣, 郑伟帅, 董志刚
收稿日期:
2016-12-23
修回日期:
2017-03-16
出版日期:
2017-10-05
发布日期:
2017-10-05
通讯作者:
董志刚(通信作者),男,1980年出生,博士,副教授,硕士研究生导师。主要研究方向为难加工材料高效加工技术,精密超精密加工技术,E-mail:dongzg@dlut.edu.cn
作者简介:
张园,女,1992年出生,博士研究生。主要研究方向为超声振动辅助钻削技术,E-mail:zyshuaiqi@mail.dlut.edu.cn;康仁科,男,1962年出生,博士,教授,博士研究生导师。主要研究方向为超精密与特种加工技术、难加工材料高效加工技术、计算机辅助设计与制造技术,E-mail:kangrk@dlut.edu.cn;刘津廷,男,1989年出生,博士研究生。主要研究方向为复合材料超声辅助加工技术与装备,E-mail:286449832@qq.com;张一鸣,男,1994年出生。主要研究方向为超声振动辅助钻削技术,E-mail:422733951@qq.com;郑伟帅,男,1992年出生,硕士研究生,主要研究方向为难加工材料高效加工技术,E-mail:247449876@qq.com
基金资助:
ZHANG Yuan, KANG Renke, LIU Jinting, ZHANG Yiming, ZHENG Weishuai, DONG Zhigang
Received:
2016-12-23
Revised:
2017-03-16
Online:
2017-10-05
Published:
2017-10-05
摘要: 麻花钻钻孔是机械加工领域最为常用的孔加工方法。传统麻花钻钻孔加工中,特别是对一些难加工材料进行钻孔加工时,存在轴向力大、表面质量差等诸多问题。超声振动辅助钻削属于振动钻削技术的一种,即在钻孔过程中在麻花钻上施加大于15 kHz的高频振动,钻头的周期性振动改善了切削刃工作状况,可在一定程度上解决难加工材料制孔难题。介绍超声振动辅助钻削技术的分类、技术特点和系统组成的基础上,从动力学研究、振动断屑理论研究、切削力研究、精度及加工质量研究、在新材料上的应用和超声振动钻削装置六个方面论述了超声振动辅助钻削理论和技术的国内外研究进展。基于超声振动辅助钻削技术的发展现状,结合航空航天等领域难加工材料制孔技术的需求,从理论研究、超声振动系统开发完善、新材料工艺研究、专用超声辅助钻削机床开发以及超声振动辅助加工规范标准制定等方面指出了现有研究和应用中存在的问题并对未来发展趋势做以展望。
中图分类号:
张园, 康仁科, 刘津廷, 张一鸣, 郑伟帅, 董志刚. 超声振动辅助钻削技术综述[J]. 机械工程学报, 2017, 53(19): 33-44.
ZHANG Yuan, KANG Renke, LIU Jinting, ZHANG Yiming, ZHENG Weishuai, DONG Zhigang. Review of Ultrasonic Vibration Assisted Drilling[J]. Journal of Mechanical Engineering, 2017, 53(19): 33-44.
[1] 卜泳,许国康,肖庆东. 飞机结构件的自动化精密制孔技术[J]. 航空制造技术,2009(24):61-64. BU Yong,XU Guokang,XIAO Qingdong. Automatic precision drilling technology of aircraft structural part[J]. Chinese Aeronautical Manufacturing Technology,2009(24):61-64. [2] 孙鑫. 航空材料自动化精密制孔工艺研究[D]. 南京:南京航空航天大学,2014. SUN Xin. Research on automatic precision drilling process of aeronautic material[D]. Nanjing:Nanjing University of Aeronautics and Astronautics,2014. [3] 刘勇兵,张明喆,周宏,等. 无涂层高速钢刀具钻削压铸铝合金时的磨损机理图[J]. 摩擦学学报,2000,20(5):326-330. LIU Yongbing,ZHANG Mingjie,ZHOU Hong,et al. Wear mechanism study of uncoated high speed steel twist drill cutting diecast aluminium alloy[J]. Chinese Journal of Tribology,2000,20(5):326-330. [4] 于晓江,曹增强,蒋红宇,等. 碳纤维复合材料与钛合金结构制孔工艺研究[J]. 航空制造技术,2011(3):87-89. YU Xiaojiang,CAO Zengqiang,JIANG Hongyu,et al. Investigation of drilling process for carbon fibre reinforced plastic (CFRP) and titanium sandwich structure[J]. Chinese Aeronautical Manufacturing Technology,2011(3):87-89. [5] 毕秀国,卜繁岭,康健. 钛合金钻削加工及其新发展[J]. 工具技术,2008,42(12):19-22. BI Xiuguo,BU Fanling,KANG Jian. Titanium alloy drilling and new development[J]. Chinese Tool Engineering,2008,42(12):19-22. [6] 温泉. C/E复合材料制孔损伤形成机理与评价方法研究[D]. 大连:大连理工大学,2014. WEN Quan. Study of formation mechanism and evaluation method of C/E composites hole-making damages[D]. Dalian:Dalian University of Technology,2014. [7] LI Z,YANG D,HAO W,et al. A novel technique for micro-hole forming on skull with the assistance of ultrasonic vibration.[J]. Journal of the Mechanical Behavior of Biomedical Materials,2015,57:1-13. [8] 张勤河,张建华,杜如虚,等. 电火花成形加工技术的研究现状和发展趋势[J]. 中国机械工程,2005(17):1586-1592. ZHANG Qinhe,ZHANG Jianhua,DU Ruxu,et al. Present research status and development trends of EDM[J]. China Mechanical Engineering,2005(17):1586-1592. [9] 秦旭达,陈仕茂,刘伟成,等. 螺旋铣孔技术在航空制造装配业中的发展应用[J]. 航空制造技术,2009(6):58-60. QIN Xuda,CHEN Shimao,LIU Weicheng,et al. Development and application of hole helical milling technology in aviation manufacturing assembly industry[J]. Chinese Aeronautical Manufacturing Technology,2009(6):58-60. [10] 肖子英,陈学永. 超声振动钻削技术综述[C]//2009年福建省机械工程学会学术年会,福州,2009. XIAO Ziying,CHEN Xueyong. Review of ultrasonic vibration drilling technology[C]//2009 Annual Meeting of Fujian Mechanical Engineering Society,Fuzhou,2009. [11] XU X X,MO Y L,LIU C S,et al. Drilling force of SiC particle reinforced aluminum-matrix composites with ultrasonic vibration[J]. Key Engineering Materials,2009,416(21):243-247. [12] ZHANG L B,WANG L J,LIU X Y,et al. Mechanical model for predicting thrust and torque in vibration drilling fibre-reinforced composite materials[J]. International Journal of Machine Tools & Manufacture,2001,41(17):641-657. [13] 刘翔,董志国,轧刚,等. 超声振动微孔钻削轴向力研究[J]. 现代制造工程,2015(11):93-98. LIU Xiang,DONG Zhiguo,ZHA Gang,et al. Study on thrust force in ultrasonic assisted micro drilling[J]. Chinese Modern Manufacturing Engineering,2015(11):93-98 [14] 高兴军,邹平. 高温合金振动钻削断屑实验研究及机理分析[J]. 工具技术,2010,44(12):7-9. GAO Xingjun,ZOU Ping. Experiment research and mechanism analysis of breaking chip adopted vibration drilling on high temperature alloy[J]. Chinese Tool Engineering,2010,44(12):7-9. [15] 马利杰,刘贯军,王贵成. 轴向振动钻削的断屑机理研究[J]. 机械设计与制造,2009(2):228-230. MA Lijie,LIU Guanjun,WANG Guicheng. Study on mechanism of breaking chip of axial vibration drilling[J]. Chinese Machinery Design and Manufacture,2009(2):228-230. [16] 张平宽,王慧霖,王贵成. 轴向振动钻削过程及其切屑长度分析[J]. 应用科学学报,2003,21(4):393-396. ZHANG Pingkuan,WANG Huiling,WANG Guicheng. An analysis of the process of axial vibration drilling and chip length[J]. Chinese Journal of Applied Sciences,2003,21(4):393-396. [17] 杨兆军,王立江,王立平. 振动钻削微小孔降低表面粗糙度的研究[J]. 汽车工艺与材料,1996(7):10-12. YANG Zhaojun,WANG Lijiang,WANG Liping. Study on surface roughness decreasing by vibration drilling[J]. Chinese Automobile Technology and Material,1996(7):10-12. [18] 李潜,袁静. 振动钻削对改善深孔加工质量因素的研究[J]. 科技传播,2013(4):211. LI Qian,YUAN Jing. Study on reasons of vibration drilling improving deep hole surface quality[J]. Chinese Science Communication,2013(4):211. [19] PECAT O,BRINKSMEIER E. Tool wear analyses in low frequency vibration assisted drilling of CFRP/Ti6Al4V stack material[J]. Procedia Cirp,2014,14(14):142-147. [20] ADITHAN M. Tool wear studies in ultrasonic drilling[J]. Wear,1974,29(1):81-93. [21] 池龙珠,卢龙,金在权,等. 振幅对钻削钻头寿命的影响[J]. 机械工程师,2000(3):54-55. CHI Longzhu,LU Long,JIN Zaiquan,et al. Amplitude affects duration of vibration drilling drill[J]. Chinese Mechanical Engineer,2000(3):54-55. [22] 马付建. 超声辅助加工系统研发及其在复合材料加工中的应用[D]. 大连:大连理工大学,2013. MA Fujian. The development of ultrasonic assisted machining system and its application in machining of composite[D]. Dalian:Dalian University of Technology,2013. [23] 隈部淳一郎. 精密加工振动切削(基础与应用)[M]. 北京:机械工业出版社,1985. KUMABE J I. Finishing machining and vibration cutting-fundamentals and application[M]. Beijing:China Machine Press,1985. [24] 郑建新,刘传绍,赵波,等. 超声振动钻削中局部共振现象的研究与应用[J]. 工具技术,2003(2):5-8. ZHENG Jianxin,LIU Chuanshao,ZHAO Bo,et al. Research and application of local resonance phenomenon in ultrasonic vibration drilling[J]. Chinese Tool Engineering,2003(2):5-8. [25] PAVLOVSKAIA E,HENDRY D C,WIERCIGROCH M. Modelling of high frequency vibro-impact drilling[J]. International Journal of Mechanical Sciences,2015,91:110-119. [26] 足立胜重. 振動ドリル切削の研究(第1報)[J]. 精密機械,1976,42(12):1133-1138. ADACHI K. Study on vibratory drilling (1st Report)[J]. The Japan Society for Precision Engineering,1976,42(12):1133-1138. [27] 薛万夫,许泽鹏. 振动钻深孔[J]. 机械工艺师,1983(10):2-6. XUE Wanfu,XU Zepeng. Vibration drilling deep hole[J]. Chinese Machinery Manufacturing Engineer,1983(10):2-6. [28] 薛万夫,张日升. 振动钻小孔[J]. 机械工人.冷加工,1983(12):17-20. XUE Wanfu,ZHANG Risheng. Vibration drilling small hole[J]. Machinist Metal Cutting,1983(12):17-20. [29] LIAO Jiean,HU Can,WANG Xufeng,et al. Study on ultrasonic vibration deep microspore drilling bit dynamic state[C]//Fifth International Conference on Intelligent Systems Design and Engineering Applications. IEEE Computer Society,2014:989-992. [30] 张德远,王立江. 振动钻削的局部断屑特性[J]. 应用科学学报,1993,38(4):337-344. ZHANG Deyuan,WANG Lijiang. Investigation of chip in vibration drilling[J]. International Chinese Journal of Machine Tools and Manufacture,1998,38(3):165-176. [31] ZHANG Deyuan,WANG Lijiang. Investigation of chip in vibration drilling[J]. International Journal of Machine Tools and Manufacture,1998,38(3):165-176. [32] 高本河,吴序堂,熊镇芹,等. 振动钻削的切屑尺寸控制研究[J]. 机械工程学报,1999,35(6):102-104. GAO Benhe,WU Xutang,XIONG Zhenqin,et al. Study on chip size control in vibration drilling[J]. Chinese Journal of Mechanical Engineering,1999,35(6):102-104. [33] 高本河,郑力,刘大成,等. 振动钻削的应力型不完全断屑模型研究[C]//第五届海内外青年设计与制造科学会议,大连,2002. GAO Benhe,ZHENG Li,LIU Dacheng,et al. Study on incomplete chipping-break model based on stress pattern in vibration drilling[C]//The Fifth Domestic and Overseas Youth Design and Manufacture Science Conference,Dalian:2002. [34] 高本河,熊镇芹,吴训成,等. 振动钻削中切屑颗粒的运动规律[J]. 农业机械学报,2000(1):108-111. GAO Benhe,XIONG Zhenqin,WU Xuncheng,et al. A study on motion pattern of a cut chip inside the horizontal tube in a vibration drilling[J]. Transactions of the Chinese Society of Agricultural Machinery,2000(1):108-111. [35] 高本河,吴序堂,熊镇芹,等. 振动钻削改善排屑效果机理的研究[J]. 机械科学与技术,2000(2):281-283. GAO Benhe,WU Xuncheng,XIONG Zhenqin,et al. On improving chip removal effect in vibration drilling[J]. Chinese Mechanical Science And Technology,2000(2):281-283. [36] 王立平,杨兆军,王立江. 三区段振动钻削动态轴向力和扭矩的计算机仿真[J]. 工具技术,1999,26(8):29-31. WANG Liping,YANG Zhaojun,WANG Lijiang. Study on three-section dynamic axial force and torque in vibration drilling by simulation[J]. Chinese Tool Engineering,1999,26(8):29-31. [37] ZHANG L B,WANG L J,LIU X Y,et al. Mechanical model for predicting thrust and torque in vibration drilling fibre-reinforced composite materials[J]. International Journal of Machine Tools and Manufacture,2001,41(5):641-657. [38] 王昕. 振动钻削新钻削力模型及定、变参数振动钻削的研究[D]. 长春:吉林大学,2004. WANG Xin. Study on new drilling force model of vibration drilling and vibration drilling with invariable parameter and variable parameter[D]. Changchun:Jilin University,2004. [39] CHANG S S F,BONE G M. Thrust force model for vibration-assisted drilling of aluminum 6061-T6[J]. International Journal of Machine Tools & Manufacture,2009,49(14):1070-1076. [40] 熊烽,李淑珍,杜润生,等. 振动钻削中切削力的实验研究系统[J]. 华中理工大学学报,1994(9):56-60. XIONG Feng,LI Shuzhen,DU Runsheng,et al. An experimental system for studying the cutting force in vibration drilling[J]. Journal of Huazhong University of Science and Technology,1994(9):56-60. [41] 何耀雄,李淑珍,杜润生,等. 振动钻削加工过程监控系统中的扭矩传感器[J]. 华中理工大学学报,1995(9):98-102. HE Yaoxiong,LI Shuzhen,DU Runsheng,et al. Research on the Torque Sensor for a Monitoring System during Vibration Drilling[J]. Journal of Huazhong University of Science and Technology,1995(9):98-102. [42] PUJANA J,RIVERO A,CELAYA A,et al. Analysis of ultrasonic-assisted drilling of Ti6Al4V[J]. International Journal of Machine Tools and Manufacture,2009,49(6):500-508. [43] LI X F,DONG Z G,KANG R K,et al. Comparison of thrust force in ultrasonic assisted drilling and conventional drilling of aluminum alloy[J]. Materials Science Forum,2016,861:38-43. [44] 张德远,王立江,张明. 超声波振动钻削微孔的横刃入钻特性[J]. 科学通报,1991(12):947-950. ZHANG Deyuan,WANG Lijiang,ZHANG Ming. Penetrating characteristic of chisel edge in ultrasonic vibration micro drilling[J]. Chinese Science Bulletin,1991(12):947-950. [45] ZHANG Deyuan,WANG Lijiang,ZHANG Ming. Penetrating characteristic of chisel edge in ultrasonic vibration micro drilling[J]. Chinese Science Bulletin,1992,37(10):865-869. [46] 王立江,邱少波. 振动与毛刺的关联性[J]. 科学通报,1989(8):628-630. WANG Lijiang,QIU Shaobo. Relevance between vibration and burr[J]. Chinese Science Bulletin,1989(8):628-630. [47] CHANG S S F,BONE G M. Burr size reduction in drilling by ultrasonic assistance[J]. Robotics and Computer-Integrated Manufacturing,2005,21(4-5):442-450. [48] CHANG S S F,BONE G M. Burr height model for vibration assisted drilling of aluminum 6061-T6[J]. Precision Engineering-Journal of The International Societies for Precision Engineering and Nanotechnology,2010,34(3):369-375. [49] HOCHENG H,KUO K L,LIN J T. Machinability of zirconia ceramics in ultrasonic drilling[J]. Materials and Manufacturing Processes,1999,14(5):713-724. [50] HOCHENG H,TAI N H,LIU C S. Assessment of ultrasonic drilling of C/SiC composite material[J]. Composites Part A:Applied Science and Manufacturing,2000,31(2):133-142. [51] LIU C S,ZHAO B,GAO G F,et al. Study on ultrasonic vibration drilling of particulate reinforced aluminum matrix composites[J]. Advances in Abrasive Technology VⅢ,2005,291-292:447-452. [52] 许幸新,张晓辉,刘传绍,等. SiC颗粒增强铝基复合材料的超声振动钻削试验研究[J]. 中国机械工程,2010(21):2573-2577. XU Xingxin,ZHANG Xiaohui,LIU Chuanshao,et al. Research on drilling experiments of SiC particle rein forced aluminum-matrix composites with ultrasonic vibration[J]. Chinese Mechanical Engineering,2010(21):2573-2577. [53] XU X X,ZHANG X H,LIU C S,et al. Drilling characteristics of SiC particle reinforced aluminum-matrix composites with ultrasonic vibration[J]. Key Engineering Materials,2010,455(21):302-306. [54] LIAO Y S,CHEN Y C,LIN H M. Feasibility study of the ultrasonic vibration assisted drilling of Inconel superalloy[J]. International Journal of Machine Tools and Manufacture,2007(47)1988-1996. [55] BAGHLANI V,MEHBUDI P,AKBARI J,et al. An optimization technique on ultrasonic and cutting parameters for drilling and deep drilling of nickel-based high-strength Inconel 738LC superalloy with deeper and higher hole quality[J]. The International Journal of Advanced Manufacturing Technology,2016,82(5):877-888. [56] HEISEL U,WALLASCHEK J,EISSELER R,et al. Ultrasonic deep hole drilling in electrolytic copper ECu 57[J]. CIRP Annals-Manufacturing Technology,2008,57(1):53-56. [57] AZARHOUSHANG B,AKBARI J. Ultrasonic-assisted drilling of Inconel 738-LC[J]. International Journal of Machine Tools and Manufacture,2007,47(7-8):1027-1033. [58] BAGHLANI V,MEHBUDI P,AKBARI J,et al. Ultrasonic assisted deep drilling of Inconel 738LC superalloy[J]. Procedia CIRP,2013,6(0):571-576. [59] ISOBE H,HARA K. Improvement of drill life for nickel super alloy by ultrasonic vibration machining with minimum quantity lubrication[J]. Key Engineering Materials,2014,625(625):581-586. [60] MEHBUDI P,BAGHLANI V,AKBARI J,et al. Applying ultrasonic vibration to decrease drilling-induced delamination in GFRP laminates[J]. Procedia Cirp,2013,6(8):577-582. [61] AZGHANDI B V,KADIVAR M A,RAZFAR M R. An experimental study on cutting forces in ultrasonic assisted drilling[J]. Procedia Cirp,2016,46:563-566. [62] GUPTA A,ASCROFT H,BARNES S. Effect of chisel edge in ultrasonic assisted drilling of carbon fibre reinforced plastics (CFRP)[J]. Procedia Cirp,2016,46:619-622. [63] DAHNEL A N,ASCROFT H,BARNES S. The effect of varying cutting speeds on tool wear during conventional and ultrasonic assisted drilling (UAD) of carbon fibre composite (CFC) and titanium alloy stacks[J]. Procedia Cirp,2016,46:420-423. [64] DAHNEL A,GLOGER M,ASCROFT H,et al. Analysis of tool wear and hole quality during ultrasonic assisted drilling (UAD) of carbon fibre composite(CFC)/Titanium alloy(Tl6Al4V) stacks[C]//ASME 2015 International Mechanical Engineering Congress and Exposition,2015. [65] 王闯. 微细孔旋转超声振动钻削机床主轴系统研究[D]. 长春:长春理工大学,2013. WANG Chuang. Spindle system study of micro-hole rotating ultrasonic vibration drilling machining[D]. Changchun:Changchun University of Science and Technology,2013. [66] 刘华明. 低频振动钻小孔的试验研究[J]. 机械工艺师,1988(3):10-11. Liu Huaming. Experimental investigation on micro-hole machining based on low-frequency vibration drilling. Chinese Machinery Manufacturing Engineer,1988(3):10-11. [67] 肖子英. 超声振动钻削系统设计及其试验研究[D]. 福州:福建农林大学,2010. Xiao Ziying. Ultrasonic vibration drilling system design and experimental research[D]. Fuzhou:Fujian Agriculture and Forestry University,2010. [68] 池建昌,田锡天,杨杰,等. 超声振动钻削装置设计与研究[J]. 宇航材料工艺,2012(5):88-91. CHI Jianchang,TIAN Xitan,Yang Jie,et al. Design and research of an ultrasonic transducer drilling device[J]. Chinese Aerospace Materials & Technology,2012(5):88-91. [69] 王天琦,刘战锋. 超声轴向振动钻削加工系统设计[J]. 机械设计与制造,2009(5):173-174. WANG Tianqi,LIU Zhanfeng. Ultrasound axial vibration drilling system design[J]. Chinese Machinery Design & Manufacture,2009(5):173-174. [70] 赵蕾. 超声辅助微细钻削精密振动装置的研究[D]. 太原:太原理工大学,2015. ZHAO Lei. Design if ultrasonic vibration system in ultrasonic vibration assisted micro machining[D]. Taiyuan:Taiyuan University of Technology,2015. [71] 曹树军. 超声骨科钻孔装置:CN104323819A[P]. 2016-02-04. CAO Shujun. A device for ultrasonic assisted drilling bone:CN104323819A[P]. 2016-02-04. [72] LI L,MATHIESON A,LUCAS M. A miniature surgical drill using ultrasonic/sonic frequency vibration[J]. Physics Procedia,2015,70:14-17. [73] 杨克己,吴佳杰. 基于超声振动的显微切割技术[J]. 工程设计学报,2009,16(1):58-62. YANG Keji,WU Jiajie. Study on micro-dissection technique based on ultrasonic vibration[J]. Journal of Mechanical Engineering,2009,16(1):58-62. |
[1] | 冯勇, 周豪杰, 周智远, 贾晓林, 秦育彦, 徐伟伟. 低频扭转振动辅助螺旋铣孔切削力模型研究[J]. 机械工程学报, 2024, 60(5): 390-402. |
[2] | 郑雷, 孙晓晗, 吕冬明, 刘子文, 朱卓志, 董香龙, 韦文东. GFRP旋转超声振动套孔加工仿真及工艺研究[J]. 机械工程学报, 2023, 59(23): 391-400. |
[3] | 兰天, 冯平法, 张建富, 周辉林. 超磁致伸缩换能器涡流损耗及温升抑制研究[J]. 机械工程学报, 2022, 58(21): 243-249. |
[4] | 陈光, 刘见, 戈家影, 秦旭达, 邹云鹤, 任成祖. 基于运动学及力热分析的CFRP超声振动辅助螺旋铣孔质量影响机制[J]. 机械工程学报, 2021, 57(1): 199-209. |
[5] | 张鹏程, 温秋玲, 姜峰, 沈少鑫, 陆静. 纳米孔阵列加工技术研究进展[J]. 机械工程学报, 2020, 56(9): 223-233. |
[6] | 王福吉, 胡海波, 张博宇, 马建伟, 赵猛. 复合材料成型分层缺陷在钻削横刃挤压阶段的扩展行为[J]. 机械工程学报, 2019, 55(11): 197-204. |
[7] | 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. |
[8] | 冯平法, 王健健, 张建富, 吴志军. 硬脆材料旋转超声加工技术的研究现状及展望[J]. 机械工程学报, 2017, 53(19): 3-21. |
[9] | 查慧婷, 冯平法, 张建富. 高体积分数SiCp/Al复合材料旋转超声铣磨加工的试验研究[J]. 机械工程学报, 2017, 53(19): 107-113. |
[10] | 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]. , 2012, 48(7): 49-55. |
[11] | 鲍永杰;高航;马海龙;王奔;温泉. 单向C/E复合材料磨削制孔温度场模型的研究[J]. , 2012, 48(1): 169-176. |
[12] | 张承龙;冯平法;吴志军;郁鼎文. 旋转超声钻削的切削力数学模型及试验研究[J]. , 2011, 47(15): 149-155. |
[13] | 朱永伟;王占和;范仲俊;陶建松;张磊. 微细超声复合电加工技术与应用[J]. , 2010, 46(3): 179-186. |
[14] | 马利杰;王贵成;张春燕;沈春根. 最小量润滑在振动钻削中的应用[J]. , 2009, 45(1): 223-227. |
[15] | 吕明;王时英;轧刚. 超声珩齿弯曲振动变幅器的位移特性[J]. , 2008, 44(7): 106-111. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||