Research Status and Development of Biomimetic Laminated Ceramic Cutting Tools
摘 要
仿生叠层是近几年发展起来的陶瓷增强、增韧新技术, 采用该技术制备的仿生叠层陶瓷刀具是模拟自然界中贝壳等生物材料的结构进行设计的。主要评述了Al2O3体系、SiC体系、Si3N4体系等三种仿生叠层陶瓷复合材料的国内外研究现状, 并介绍了仿生叠层陶瓷材料在刀具中的应用以及刀具的性能, 最后指出了当前存在问题和今后的发展趋势。
Abstract
Bionic lamination is a new kind of technology to improve strength and toughness of ceramic in recent years. Bionic laminated ceramic tools prepared by the technology are designed by simitating the structure of biomaterials in nature, such as shell. The status of three kinds of biomimetic laminated ceramic composites of Al2O3 system, SiC system and Si3N4 system at homeland and abroad are viewed, and the application of biomimetic laminated ceramic composites in tools and the tool′s performance also are introduced. At last, it is pointed that the questions at present and development trends in future.
中图分类号 TG729 TG506
所属栏目 综述
基金项目 湖南省科技计划项目(2011FJ3231); 湖南省自然科学基金资助项目(12JJ3054)
收稿日期 2012/9/13
修改稿日期 2012/10/21
网络出版日期
作者单位点击查看
备注陈闻(1986-), 男, 湖南衡阳人, 硕士研究生。
引用该论文: CHEN Wen,ZHOU Hou-ming,DENG Jian-xin,ZHOU Wen. Research Status and Development of Biomimetic Laminated Ceramic Cutting Tools[J]. Materials for mechancial engineering, 2013, 37(9): 1~5
陈闻,周后明,邓建新,周文. 仿生叠层陶瓷刀具的研究现状与发展[J]. 机械工程材料, 2013, 37(9): 1~5
被引情况:
【1】周文,周后明,陈闻, "Al2O3-20%TiB2/Al2O3-20%TiC对称型叠层陶瓷刀具的切削性能",机械工程材料 39, 68-72(2015)
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参考文献
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【34】SCUOR N, LUCCHINI E. Wear mechanisms and residual stresses in alumina-based laminated cutting tools[J].Wear, 2005, 258(9): 1372-1378.
【2】邓建新, 赵军.数控刀具选用手册;M].北京: 机械工业出版社, 2005: 15-23.
【3】CLEGG W J, KENDALL K, ALFORD N M. A simple way to make toughen ceramics[J].Nature, 1990, 347(10): 445-447.
【4】KAPLAN D L. Mollusc shell structures: novel design strategies for synthetic materials[J].Current Opinion in Solid State and Materials Science, 1998, 3(3): 232-236.
【5】AHMAD Z, MARK J E. Biomimetic materials: recent developments in organic-inorganic hybrids[J].Materials Science and Engineering: C, 1998, 6(2/3): 183-196.
【6】ARIAS J L, FERNNDEZ M S. Biomimetic processes through the study of mineralized shells[J].Materials Characterization, 2003, 50(2/3): 189-195.
【7】SIEBER H. Biomimetic synthesis of ceramics and ceramic composites[J].Materials Science and Engineering A, 2005, 412(1/2): 43-47.
【8】KOKUBO T, KIM H-M. Novel bioactive materials with different mechanical properties[J].Biomaterials, 2003, 24(13): 2161-2175.
【9】马培燕, 傅正义.叠层结构材料的研究现状[J].材料科学与工程, 2002, 20(4): 589-593.
【10】PORTU G D, MICELE L, PEZZOTTI G. Laminated ceramic structures from oxide systems[J].Composites Part B: Engineering, 2006, 37(6): 556-567.
【11】TARLAZZI A, RONCARI E, PINASCO P, et al. Tribological behaviour of Al2O3/ZrO2-ZrO2 laminated composites[J].Wear, 2000, 244(1/2): 29-40.
【12】PORTU G D, MICELE L, PRANDSTRALLER D. Abrasive wear in ceramic laminated composites[J].Wear, 2006, 260(9/10): 1104-1111.
【13】TOMASZEWSKI H, WEGLARZ H, WAJLER A. Multilayer ceramic composites with high failure resistance[J].Journal of the European Ceramic Society, 2007, 27(2/3): 1373-1377.
【14】KATSOKI H. Preparation and fracture characteristic of laminated alumina/mullite composite[J].Journal of the Ceramic Society of Japan, 1993, 101(9): 1068-1071.
【15】CHARTIER T, FERRATO M, BAUMARD J F. Supercritical debinding of injection-molded ceramics[J].Journal of the American Ceramic Society, 1995, 78(7): 1787-1792.
【16】BERMEJO R, TORRES Y, SANCHEZ-HERENCIA A J. Residual stresses, strength and toughness of laminates with different layer thickness ratios[J].Acta Materialia, 2006, 54: 4745-4757.
【17】曾宇平, 江东亮, 谭寿洪, 等.层状Al2O3-TiB2复相陶瓷的制备[J].材料导报, 1998, 12(2): 27-30.
【18】张志强, 尚成嘉, 任职涛.氧化铝层状复合陶瓷的断裂机理[J].材料研究学报, 1995, 9(5): 477-480.
【19】ZHANG Yong-li. Affection of Si impregnated behavior to the Si-Al system[J].Materials Science and Engineering, 1994, 12(4): 22-26.
【20】罗永明, 潘伟, 陈建.SiC/W层状复合材料力学性能与显微结构的研究[J].材料导报, 2000, 14(5): 49-51.
【21】ZHANG Jing-xian, HUANG Rong, GU Hui. High toughness in laminated SiC ceramics from aqueous tape casting[J].Scripta Materialia, 2005, 52(5): 381-385.
【22】GUICCIARDI S, NAGLIATI M, MELANDRI C, et al. Effects of residual stresses on the fracture properties of non-oxide laminated composites[J].Journal of the European Ceramic Society, 2007, 27(1): 351-356.
【23】DENG Jian-xin, LIU Li-li, ZHAO Jin-long. Erosion wear of laminated ceramic nozzles[J].International Journal of Refractory Metals & Hard Materials, 2007, 25(3): 263-270.
【24】WANG Chang-an, HUANG Yong, ZAN Qing-feng. Biomimetic structure design-a possible approach to change the brittleness of ceramics in nature[J].Materials Science and Engineering C, 2000, 11(1): 9-12.
【25】OHJI T, HIRAO K. Mechanical performance of multi-lauered silicon nitride[J].Ceramic Engineering & Science Proceedings, 1997, 19(3): 353-360.
【26】陈蓓, 程川.Si3N4/SiC层状结构陶瓷摩擦磨损性能研究[J].材料导报, 2007, 21(5A): 164-166.
【27】郭海, 黄勇.层状氮化硅陶瓷的性能与结构[J].硅酸盐学报, 1997, 25(5): 532-535.
【28】SHIGEGAKI Y J. Processing of a novel multilayered silicon nttride[J].Journal of the American Ceramic, 1996, 79(8): 2197-2200.
【29】KRSTIC Z, KRSTIC V D. Fracture toughness of concentric Si3N4-based laminates[J].Acta Materialia, 2005, 53(2): 289-290.
【30】赵军, 艾兴, 张建华, 等.Al2O3/TiC系梯度功能陶瓷刀具材料的设计[J].机械工程学报, 1998, 34(4): 70-74.
【31】员冬玲, 邓建新, 段振兴. Al2O3/(W, Ti)C+Al2O3/TiC对称型叠层陶瓷的结构设计和力学性能[J].硅酸盐学报, 2008, 36(8): 1148-1152
【32】袁训亮, 赵军, 杨发展, 等.新型Al2O3-TiC-WC纳米复合陶瓷刀具的研制[J].材料工程, 2008(增1): 454-455.
【33】AMATEAU F M, STUTZMAN B. Performance of laminated ceramic composite cutting tools[J].Ceramics International, 1995, 21(2): 311-323.
【34】SCUOR N, LUCCHINI E. Wear mechanisms and residual stresses in alumina-based laminated cutting tools[J].Wear, 2005, 258(9): 1372-1378.
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