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Online since: July 2007
Authors: Wen Bo Han, Guo Feng Wang, D.Z. Wu, C.W. Wang
In this work, Fem simulation and superplastic deep drawing of Al2O3/3Y-TZP
laminated composites are carried out in consideration of the importance of plastic deformation under
tensile stress for engineering applications.
Zan: Material Science and Engineering, Vol. 11 (2000), p. 9-12
Inoue: Ceramic International, Vol. 26 (2000), p. 801-805
Blandin: Mater Science and Engineering , Vol.
Clauss: Journal of the American Ceramic Society, Vol. 80 (1997), p. 2126-2130
Zan: Material Science and Engineering, Vol. 11 (2000), p. 9-12
Inoue: Ceramic International, Vol. 26 (2000), p. 801-805
Blandin: Mater Science and Engineering , Vol.
Clauss: Journal of the American Ceramic Society, Vol. 80 (1997), p. 2126-2130
Online since: November 2010
Authors: Ai Bing Yu, Yan Shi Shi, Yu Guo Wang, Bin Lin
Experimental Investigation on Grinding-induced Surface Damage of Fiber Reinforced Ceramic Matrix Composites
Yanshi Shi1,a, Yuguo Wang1,b, Bin Lin1,c and Aibing Yu2,d
1The State Education Ministry Key Laboratory of Advanced Ceramics and Machining Technology, Tianjin University, Tianjin 300072, P.R.
Currently, although many researchers have conducted many investigations in grinding-induced surface damage of advanced ceramic materials and achieved some results [5-7], the grinding-induced surface damage of ceramic matrix composites has not a complete assessment system.
Xu: Journal of Shanghai Institute of Building Materials, Vol. 4 (1991) No. 3, pp. 295-305.
Rao: International Journal of Machine Tools & Manufacture, Vol. 48 (2008) No. 6, pp. 698–710
Shi: Rare Metal Materials and Engineering, Vol. 37 (2008) No. 1, pp. 821-824.
Currently, although many researchers have conducted many investigations in grinding-induced surface damage of advanced ceramic materials and achieved some results [5-7], the grinding-induced surface damage of ceramic matrix composites has not a complete assessment system.
Xu: Journal of Shanghai Institute of Building Materials, Vol. 4 (1991) No. 3, pp. 295-305.
Rao: International Journal of Machine Tools & Manufacture, Vol. 48 (2008) No. 6, pp. 698–710
Shi: Rare Metal Materials and Engineering, Vol. 37 (2008) No. 1, pp. 821-824.
Online since: September 2011
Authors: X.J. Gu, J.S. Li, W.H. Zhang, Ji Hong Zhu
Li
Engineering Simulation and Aerospace Computing (ESAC),
The Key Laboratory of Contemporary Design and Integrated Manufacturing Technology, Northwestern Polytechnical University, Xi’an, Shaanxi 710072, China
azhangwh@nwpu.edu.cn
Keywords: SL pattern, Lattice structure design, Thermal expansion, Topology optimization
Abstract.
Dickens: Rapid Prototyping Journal Vol. 7 (2001), p. 66 [3] W.L.
Leu: Rapid Prototyping Journal Vol. 5 (1999), p. 12 [4] Y.
Rehmati: Rapid Prototyping Journal Vol. 4 (2009), p. 255 [5] T.
Sun: International Journal for Numerical Methods in Engineering Vol.68 (2006), p. 993
Dickens: Rapid Prototyping Journal Vol. 7 (2001), p. 66 [3] W.L.
Leu: Rapid Prototyping Journal Vol. 5 (1999), p. 12 [4] Y.
Rehmati: Rapid Prototyping Journal Vol. 4 (2009), p. 255 [5] T.
Sun: International Journal for Numerical Methods in Engineering Vol.68 (2006), p. 993
Online since: June 2011
Authors: Erry Yulian Triblas Adesta, Muataz H.F. Al Hazza
Adesta2,b
1Faculty of Engineering – International Islamic University Malaysia- Malaysia
2 Faculty of Engineering – International Islamic University Malaysia- Malaysia
amutaz_hazaa@yahoo.com, beadesta@iiu.edu.my
Keywords: Flank wear, high speed, hard turning, ANN, Regression analysis, tool life.
International Journal of Machine Tools & Manufacture (42) 287–297
International Journal of Machine Tools & Manufacture 45 (2005) 1375–1385 [6] Scheffer C., Kratz H., Heyns P.S., Klocke F., (2003).
International Journal of Machine Tools & Manufacture 43. 973–985.
International Journal Advanced Manufacturing Technology 26: 330–334.
International Journal of Machine Tools & Manufacture (42) 287–297
International Journal of Machine Tools & Manufacture 45 (2005) 1375–1385 [6] Scheffer C., Kratz H., Heyns P.S., Klocke F., (2003).
International Journal of Machine Tools & Manufacture 43. 973–985.
International Journal Advanced Manufacturing Technology 26: 330–334.
Online since: October 2013
Authors: Tadeusz Otko, Grzegorz Struzikiewicz
Mehrotra, Applications of ceramic cutting tools, Key Engineering Materials 138-140 (1997) 1-24
Wanat, Surface finish generated in hard turning of quenched alloy steel parts using conventional and wiper ceramic inserts, International Journal of Machine Tools and Manufacture 46 (2006) 1988-1995
Ueda, Cutting performance of ceramic tools in turning of mild steel, Key Engineering Materials 523-524 (2012) 493-496
Key Engineering Materials 496 (2011) 205-210
Wan, Machinability for turning of 1CR18NI9TI austenitic stainless steel with ceramic tool, Key Engineering Materials 315-316 (2006) 584-587
Wanat, Surface finish generated in hard turning of quenched alloy steel parts using conventional and wiper ceramic inserts, International Journal of Machine Tools and Manufacture 46 (2006) 1988-1995
Ueda, Cutting performance of ceramic tools in turning of mild steel, Key Engineering Materials 523-524 (2012) 493-496
Key Engineering Materials 496 (2011) 205-210
Wan, Machinability for turning of 1CR18NI9TI austenitic stainless steel with ceramic tool, Key Engineering Materials 315-316 (2006) 584-587
Online since: August 2011
Authors: Yong Hong Zhu, Xiao Hong Zhang
Information Fusion Technology And Its Application To Intelligent Control System Of Ceramic Kiln
ZHU Yonghong1, a, ZHANG Xiaohong2,b
1 Dept. of mechanical & electronic engineering, Jingdezhen Ceramic Institute, Jingdezhen, China
2 Jingdezhen First Middle School , Jingdezhen, China
azyh_patrick@163.com, bzhangxiaohong@163.com
Keywords: Ceramic kiln; Information fusion; Multi-sensor; Intelligent control
Abstract.
Introduction In modern ceramic production process, ceramic kiln is still the key equipment.
In the modern engineering application, sensor technology is widely used in robotics, mechatronics, flexible manufacturing system, etc [3,4].
He: Ceramic Kiln Control and Artificial Neural Network, China Ceramics,Vol.36(2000),p33-36 [2] J.
Barshen: Surface profile determination from multi-sensor data using morphological processing, The International Journal of Robotics Research.
Introduction In modern ceramic production process, ceramic kiln is still the key equipment.
In the modern engineering application, sensor technology is widely used in robotics, mechatronics, flexible manufacturing system, etc [3,4].
He: Ceramic Kiln Control and Artificial Neural Network, China Ceramics,Vol.36(2000),p33-36 [2] J.
Barshen: Surface profile determination from multi-sensor data using morphological processing, The International Journal of Robotics Research.
Online since: May 2003
Authors: Th. Klinke, R. Biffar
Journal Citation (to be inserted by the publisher )
Copyright by Trans Tech Publications
The Dependence of Sintering Parameters on the Surface Quality and
Roughness of Ceramic Veneered PFM-Restorations
Th.
The quality of dental ceramic for pfm-restorations like crowns and bridges or ceramic veneers leads on the used parameters while sintering.
A mould was meticulously filled with ceramic powder.
The influence of temperature discrepancy especially on low melting ceramics is scientifically higher then on conventional dental ceramic.
Biffar, Sintering Specifics of Low-Fusing Ceramics for pfm-restorations, Key Engineering Mat, 192-195 (2001), pp. 909-916
The quality of dental ceramic for pfm-restorations like crowns and bridges or ceramic veneers leads on the used parameters while sintering.
A mould was meticulously filled with ceramic powder.
The influence of temperature discrepancy especially on low melting ceramics is scientifically higher then on conventional dental ceramic.
Biffar, Sintering Specifics of Low-Fusing Ceramics for pfm-restorations, Key Engineering Mat, 192-195 (2001), pp. 909-916
Online since: October 2010
Authors: Xing Ai, Jun Zhao, Zhan Qiang Liu, Yang Qiao
Introduction
The development of powder processed nickel-based superalloys for use in gas turbine engines was
one of the major-materials engineering breakthroughs of the early seventies [1].
Bedir: Materials Science and Engineering, Vol.
Zhang: Journal of Iron and Steel Research, International, Vol. 13 (2006) No.5, pp.65-68
Thomas: Materials Science and Engineering, Vol. 402 (2005) No. 1, pp.325-334
Kang: Tool Engineering, Vol. 39 (2005) No.6, pp.14-17.
Bedir: Materials Science and Engineering, Vol.
Zhang: Journal of Iron and Steel Research, International, Vol. 13 (2006) No.5, pp.65-68
Thomas: Materials Science and Engineering, Vol. 402 (2005) No. 1, pp.325-334
Kang: Tool Engineering, Vol. 39 (2005) No.6, pp.14-17.
Online since: July 2011
Authors: Kyong Sop Han, Byung Ha Lee, Yeon Ju Kim
Acknowledgements
This work was supported by Korea Science and Engineering (KOSEF) grant funded by Korean Government (MOST) (No.
Low : Journal of the European Ceramic Society, Vol. 29 (2009), p. 67-75
Korim : Ceramics International Vol. 35 (2009) 1671-75
Nanni : Journal of the European Ceramic Society, Vol.22 (2002), p. 1811-22 [6] L.
Cristina Abello : Chemical Engineering Journal Vol. 158 [2] (2010), p. 225-232 [8] It-Meng Low and Zeya Oo : J.
Low : Journal of the European Ceramic Society, Vol. 29 (2009), p. 67-75
Korim : Ceramics International Vol. 35 (2009) 1671-75
Nanni : Journal of the European Ceramic Society, Vol.22 (2002), p. 1811-22 [6] L.
Cristina Abello : Chemical Engineering Journal Vol. 158 [2] (2010), p. 225-232 [8] It-Meng Low and Zeya Oo : J.
Online since: October 2013
Authors: Jun Zhao, Min Wang
In order to investigate the effects of TiN content on Al2O3/TiN ceramic material (ATN), the ATN ceramic materials were prepared of TiN content in 30%, 40%, 50%, 60% in the condition of hot press sintering.
Introduction Al2O3/TiN (ATN) ceramic tools is one of the earliest developed and widely used ceramic tools [1], the fracture toughness and strength of ATN ceramic are enhanced through the way of the TiN particle dispersion toughening.
(Wuhan University of Technology Press, China 1990) [3] Guo jingkun: Bulletin of the chinese ceramic society. 4(1995), p.18 [4] Jingguo Li, Lian Gao and Jingkun Guo: Journal of the European Ceramic Society, 23(2003), p. 69 [5] Jing Sun, Chuanzhen Huang, Jun Wang and Hanlian Liu: Materials Science and Engineering A 416 (2006), p. 104 [6] Shujie Li, Yuping Li, Paul Babayan Khosrovabadi and B.H.
Kolster: International Journal of Refractory Metals & Hard Materials 16 (1998), p. 119 [7] Zbigniew S.
Rak, Jerzy Czechowski: Journal of the European Ceramic Society 18 (1998) , p. 373
Introduction Al2O3/TiN (ATN) ceramic tools is one of the earliest developed and widely used ceramic tools [1], the fracture toughness and strength of ATN ceramic are enhanced through the way of the TiN particle dispersion toughening.
(Wuhan University of Technology Press, China 1990) [3] Guo jingkun: Bulletin of the chinese ceramic society. 4(1995), p.18 [4] Jingguo Li, Lian Gao and Jingkun Guo: Journal of the European Ceramic Society, 23(2003), p. 69 [5] Jing Sun, Chuanzhen Huang, Jun Wang and Hanlian Liu: Materials Science and Engineering A 416 (2006), p. 104 [6] Shujie Li, Yuping Li, Paul Babayan Khosrovabadi and B.H.
Kolster: International Journal of Refractory Metals & Hard Materials 16 (1998), p. 119 [7] Zbigniew S.
Rak, Jerzy Czechowski: Journal of the European Ceramic Society 18 (1998) , p. 373