应用激光, 2014, 34 (6): 602, 网络出版: 2015-01-13  

激光加工陶瓷刀具表面微织构的发展现状与前景

The Development Situation and Prospects of Ceramic Tool Ssurface Micro Texture with Laser Processing
作者单位
广东工业大学机电工程学院,广东 广州 510006
摘要
高速切削已经成为21世纪机械制造业的主流发展方向,而高速切削刀具仍然是限制淬硬钢等难加工材料的切削效率提高的关键因素。仿生摩擦学的出现,为刀具表面减摩技术带来了新的研究方向。针对陶瓷刀具、高速切削技术和微织构加工技术的发展现状,提出采用激光加工的方法实现陶瓷刀具表面微织构的加工技术。并分析了淬硬钢等难加工材料的高速切削过程中存在的问题,认为开展短波长激光加工陶瓷刀具表面微织构的研究对于该问题的解决具有重要的意义。
Abstract
High-speed cutting has become the mainstream of development in machinery manufacturing in the 21st century, but high-speed cutting tool remains a key factor in improving cutting efficiency of limiting chilled cast iron and other difficult materials. The appearance of bionic tribology brings new research directions for cutting tool surface friction reduction technology. It describes the current development of ceramic tool, high-speed cutting technology and micro texture processing technology, and puts forward processing technology using the method of laser processing to achieve ceramic tool surface micro texture. And the paper analyses the problems in the process of high-speed cutting hardened steel and other difficult materials, deems that the research of conducting a short-wave length laser reprocessing ceramic cutters surface micro texture for solving this problem is of great significance.
参考文献

[1] 费玉环.Al2O3-TiC-TiN陶瓷刀具的研制及切削性能研究[D].济南: 山东大学,2012.

[2] 袁训亮.Al2O3-TiC-TiN纳米复合陶瓷刀具的研制及切削性能[D].济南: 山东大学,2008.

[3] 邓建新,赵军.数控刀具材料选用手册[M].北京: 机械工业出版,2005.

[4] LU Z J.Development of high-performance Si3N4/TiCnano-composite ceramic tool materials and investigation of their properties [D].Jinan: Shandong University,2005.

[5] VAGNORIUS Z,SORTY K.Effect of high-pressure cooling on life of SiAlON tools in machining of Inconel 718[ J].Int J Advmanuftechnol,2011(54): 83-92.

[6] 周咏辉.Al2O3基纳米复合陶瓷刀具材料的研制及切削性能研究[D].济南: 山东大学,2009.

[7] 郑光明.Sialon-Si3N4梯度纳米复合陶瓷刀具的研制及高速切削性能研究[D].济南: 山东大学,2012.

[8] ZHAO J,YUAN X L,ZHOU Y H.Cutting performance and failure mechanisms of an Al2O3/WC/TiC micro-nano-composite ceramic tool[J].International Journal of Refractory Metals and Hard Materials,2010(28): 330-337.

[9] 吕志杰.高性能Si3N4/TiC纳米复合陶瓷刀具材料的研制与性能研究[D].济南: 山东大学,2005.4.

[10] POORTEMANA M,DESCAMPSA P,CAMBIERA F,et al.Silicon nitride/silicon carbide nano composite obtained by nitridation of SiC: fabrication and high temperature mechanical properties [J].Journal of the European Ceramic Society,2003(23): 2361-2366.

[11] 张荣波,许崇海.陶瓷刀具材料近期研究进展[J].机械工程师,2008(1): 55-58.

[12] BITTERLICH B,BITSCH S,FRIEDERICH K.Sialon based ceramic cutting tools [J].Journal of the European Ceramic Society,2008,(28): 989-994.

[13] HERBERT SCHULZ,EBERHARD ABELE,何宁.高速加工理论与应用[M].北京: 科学出版社,2010.

[14] 丁代存.Si3N4/TiC纳米复合陶瓷刀具材料的研制及其性能研究[D].济南: 山东大学,2005.

[15] 邓强.Sialon结合SiC摩擦材料的制备与性能研究[D].武汉: 武汉理工大学,2007.

[16] NALBANT M,ALTIN A,GOKKAYA H.The effect of cutting speed and cutting tool geometry on machinability properties of nickel base Inconel 718 super alloys [J].Materials and Design,2007(28): 1334-1338.

[17] 邓福铭.我国超硬刀具高速切削技术发展现状及前景[J].硬质合金,2010,27(4): 242-246.

[18] DENG J X,SONG W L,ZHANG H,et al.Friction and wear behaviours of MoS2/Zr coatings against hardened steel [J].Surface Engineering,2008,24(6): 410-415.

[19] DENG J X,SONG W L,ZHANG H,et al.Performance of PVD MoS2/Zr-coated carbide in cutting processes[J].International Journal of Machine Tools and Manufacture,2008,48(14): 1546-1552.

[20] 陈炎,刘宁.金属陶瓷刀具切削性能的研究[J].硬质合金,2008,24(4): 226-231.

[21] 刘炳强.原位生长晶须增韧氧化招陶瓷刀具及切削性能研究[D].济南: 山东大学, 2007: 70-76,93-103.

[22] 王亮.表面微织构刀具切削钛合金的试验研究[D].南京: 南京航空航天大学,2012.

[23] MANABU WAKUDA,YUKIHIKO YAMAUCHI,SHUZO KANZAKI,et al.Effect of surface texturing on friction reduction between ceramic and steel materials under lubricated sliding contact[J].Wear,2003(254): 356-363.

[24] ANDRIY KOVALCHENKO,OYELAYO AJAYI,ALI ERDEMIR,et al.The effect of laser surface texturing on transitions in lubrication regimes during unidirectional sliding contact[J].Tribology International,2005(38): 219-22.

[25] WANG XIAOLEI,KOJI KATO,KOSHI ADACHI,et al.The effect of laser texturing of SiC surface on the critical load for the transition of water lubrication mode from hydrodynamic to mixed[J].Tribology International,2001(34): 703-711.

[26] WANG XIAOLEI,KOJI KATO.Improving the anti-seizure ability of SiC seal in water with RIE texturing[J].Tribology Letters,2003,14(4): 275-280.

[27] WANG XIAOLEI.Loads carrying capacity map for the surface texture design of SiC thrust bearing sliding in water[J].Tribology Internationa,2003(36): 189-197.

[28] 韩中领,汪家道,陈大融.凹坑表面形貌在面接触润滑状态下的减阻研究[J].摩擦学学报,2009,29(1): 10-16.

[29] KAWASEGI N,SUGIMORI H,MORIMOTO H,et al.Development of cutting tools with microscale and nanoscale textures to improve frictional behavior[J].Precision Engineering,2009, 33(3): 248-254.

[30] ENOMOTO T,SUGIHARA T.Improving anti-adhesive properties of cutting tool surfaces by nano-/micro-textures[J].CIRP Annals-Manufacturing Technology,2010(59): 597-600.

[31] LEI SHUYING,SASIKUMAR DEVARAJAN,ZENG HU.A study of micro-pool lubricated cutting tool in machining of mild steel[J].Journal of Materials Processing Technology,2009(209): 1612-1620.

[32] 王文君,梅雪松,王恪典,等.微纳复合织构化刀具的飞秒激光制备方法: 中国.20101012473.4[P].2013-02-27.

[33] 吴泽,邓建新,连云崧,等.微织构自润滑刀具的切削性能研究[J].工具技术,2011(7): 18-22.

[34] ZHENG G M,ZHAO J,SONG X Y,et al.Ultra high speed turning of Inconel 718 with Sialon ceramic tools[J]. Adv Mater Res.,2010(126-128): 653-657.

[35] BITTERLICH B,DITSCH S,FRIEDERICH K.SiAlON based ceramic cutting tools [J].Eur Ceram Soc.,2008(28): 989-994.

[36] ALTIN A,NALBANT M,TASKESEN A.The effects of cutting speed on tool wear and tool life when machining Inconel 718 with ceramic tools[J].Mate Des.,2007(28): 2518-2522.

[37] 陈双坤.仿生耐磨设计的研究现状及展望[J].机械工程师,2012(9): 45-48.

[38] 戚正风。任瑞铭.国内外刀具材料发展现状[J].金属热处理,2008,33(1): 15-20.

[39] 邢佑强,邓建新,等.微纳复合织构自润滑刀具的制备及切削性能[J].航空制造技术,2013(6): 42-46.

华显刚, 魏昕, 谢小柱, 刘泽宇, 洪继伟. 激光加工陶瓷刀具表面微织构的发展现状与前景[J]. 应用激光, 2014, 34(6): 602. Hua Xiangang, Wei Xin, Xie Xiaozhu, Liu Zeyu, Hong Jiwei. The Development Situation and Prospects of Ceramic Tool Ssurface Micro Texture with Laser Processing[J]. APPLIED LASER, 2014, 34(6): 602.

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