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Online since: May 2011
Authors: Wen Juan Yao, Cui Ping Guo, Xin Sheng Huang, Bing Li
A better sound transmission in lower frequencies is obtained by partial ossicular replacement prostheses with hydroxyapatite ceramics, stainless steel and alumina ceramics.
Pereira Leal: International Conference on Computational Bioengineering, Vol. 9 (2005), p. 14 [2] P.
Prendergast: Journal of Biomechanics, Vol. 33 (2000), p. 581 [3] D.
Blayney: Otology & Neurotology, Vol. 24(1) (2003), p. 11 [4] Wenjuan Yao, Wu Li, Xiaoqing Li: Chinese Journal of Theoretical and Applied Mechanics, Vol. 41(2) (2009), p. 216 [5] Wenjuan Yao, Wu Li, Xingsheng Huang, Xiaoqing Li: Journal of Vibration and Shock, Vol. 27(3) (2008), p. 63 [6] Guanping Zhang, Aixia Wu, Yongqi Li, Zhengli Han, Tao Cui: Chinese Journal of Otology,Vol. 5(2) (2007), p. 136 [7] Rong Z.Gan, Tao Cheng, Chenkai Dai, and Fan Yang: Acoustical Society of America, Vol. 126(1) (2009), p. 243 [8] Rong Z.Gan, Bin Feng, Qunli Sun: Annals of Biomedical Engineering, Vol. 32(6) (2004), p. 847 [9] Rong Z.Gan, Qunli Sun, Bin Feng, Mark W.Wood: Medical Engineering & Physics,Vol. 28 (2006), p. 395 [10] Wenjuan Yao, Xiaoqing Li, Wu Li, Xinsheng Huang: Journal of Medical Biomechanics, Vol. 24(2) (2009), p. 163 [11] Wenjuan Yao, Xinsheng Huang, Wu Li, Xiaoqing Li: Journal of Medical Biomechanics, Vol. 25(3) (2010),
p. 175 [12] Wenjuan Yao, Xinsheng Huang, Lijie Fu: International Journal of Nonlinear Sciences and Numerical Simulation, Vol. 9(2) (2008), p. 131 [13] Rong Z.Gan, Brian P.Reeves, Xuelin Wang: Annals of Biomedical Engineering, Vol. 35(12) (2007), p. 2180 [14] Sheng Li, Yingxi Liu, Xiuzhen Sun: Mechanics in Engineering, Vol. 31(2) (2009), p. 60 [15] Information on http://www.matbase.com/material/polymers/engineering/ptfe/properties
Online since: January 2017
Authors: Yan Wei, Hong Zhong Cai, Xiao Hong Qi, Chang Yi Hu, Xu Xiang Zhang, Jun Mei Guo, Xu Zheng
References [1] Qiaoying Tong, Laifei Cheng, Litong Zhang, Microstructure and properties of joints of 2D C/SiC composites, Journal of Materials Engineering. 11(2002) 14-16
Joining of Cf/SiC ceramics to nimonic alloys, Journal of Materials Engineering and Performance. 21(2002) 683-689
Shpargel, Brazing of ceramic-matrix composites to Ti and Hastealloy using Ni-base metallic glass interlayers, Materials Science and Engineering A. 498(2008) 19-30
[12] Bo Chen, Huaping Xiong, Yaoyong Cheng et al, Microstructure and Strength of Cf / SiC Joints with Ag-Cu- T i Brazing Fillers, Journal of Materials Engineering. 10(2010) 27-31
Engineering issues of Iridium/Rhenium rocket engines revisited , 1999 AAIA
Online since: March 2004
Authors: B. Zhang, Zhao Hui Deng, Q.Y. Jin
Zhang1, 2 1 College of Mechanical & Automotive Engineering, Hunan University, Changsha, 410082, China 2 Department of Mechanical Engineering, 191 Auditorium Road, U-139 Storrs Connecticut, 06269-3139, U.S.A.
Grinding mechanisms are discussed for nanostructured ceramic coatings.
Journal Title and Volume Number (to be inserted by the publisher) 275 a.
Journal Title and Volume Number (to be inserted by the publisher) 277 References [1] X.B.
Deng: International Journal of Machine Tools & Manufacture Vol. 42 (2002), p. 1665 [2] S.
Online since: November 2015
Authors: R. Karthikeyan, Vasudevan Chandrasekaran, D. Kanagarajan
International Journal of Advanced Manufacturing Technology DOI 10.1007/s00170-007-1019-7l [2] Luis, C.J.; Puertas, I.; Methodology for developing technological tables used in EDM process of conductive ceramics.
International Journal of Proceedings.
Engineering Manufacture 2008, 222, 10.1243/09544054JEM925 [5] Kansal, H.K.; Sehijpal singh, Kumar, P.; Parametric optimization of powder mixed electrical discharge machining by response surface methodology, Journal of Material Processing Technology 2005, 169, 427-436
International Journal of Refractory Metals and Hard Materials 2013.
(article in press 3) [9] Arun, B.; Kumar,Vivek Babu, Amibilikumar, C.K.; Electro discharge machining of Aluminium alloy (LM6)-5wt%SiCp Composites using copper electrodes, International journal of emerging technology and advanced engineering 2013, 3, 105-108
Online since: November 2016
Authors: Wilson Acchar, Vamberto Monteiro Silva, L.B. Silva
Kelly: Journal of Dental Material Vol. 24 (2007), p. 299
Gorte: Journal of the American Ceramic Society Vol. 86 (3) (2003), p. 395
Kakade: International Journal of Hydrogen Energy Vol. 36 (22) (2011), p. 14956
Hoffman: Journal of the American Ceramic Society Vol. 90 (9) (2007), p. 2830
Bose.: Materials Science and Engineering A Vol. 380 pp. 349-355 [17] U.
Online since: December 2019
Authors: Zdeněk Chlup, Michal Kotoul, Zdeněk Majer, Oldřich Ševeček, Daniel Drdlík, Jiří Hanák
Kotoul: Engineering Mechanics 2017 (2017), p. 862-865 [8] O.
Leguillon: European Journal of Mechanics - A/Solids Vol. 21 (2002), p. 61-72 [10] P.
Mantič: Composites Part B: Engineering Vol. 95 (2016), p. 475-487 [13] A.
Leguillon: International J. of Solids and Structures Vol. 143 (2018), p. 175-182 [14] A.
Leguillon: International J. of Adhesion and Adhesives Vol. 85 (2018), p. 69-76 [15] O.
Online since: October 2010
Authors: Andreas Killinger, Rainer Gadow, Andreas Rempp, Andrei Manzat
Thermal spray coating technologies play a key role in fabricating hard layers based on ceramic, metal - ceramic and further multiphase materials.
Special aspects in manufacturing engineering are addressed with particular importance not only of the influence of spray process parameters on coating properties but also of spray torch kinematic and robot trajectories on hardness, residual stress distributions, dimensional tolerances and porosity distributions will be discussed.
For ceramic materials a further improvement could be achieved by introducing suspension spraying.
Gawne, Computational Model for the Prediction of the Temperature in the Coating during Thermal Spraying, Thermal Spray 2004: Advances in Technology and Application, ASM International, May 10-12, 2004 (Osaka, Japan), ASM International 2004 [11] E.
Voyer, Ed., May 15-18, 2006 (Seattle, USA), ASM International 2006
Online since: July 2011
Authors: Yun Fei Wang, Jun Peng Shao, Jia Liu
Design of Convexity in Rubber Coating Covered on Driving Drum in View of the Ceramic Tile Buffing Machine Junpeng Shao1a,Jia Liu2b, Yunfei Wang3c College of Mechanical and Power Engineering, Harbin University of Science and Technology Harbin Heilongjiang150080, China asjp566@hrbust.edu.cn, bjihejianfang1987@126.com, cwangyunfei1025@163.com Keywords: Ceramic Tile Buffing; Drum Covering-layer; Structure with Convexity; Abstract.
Working Principle The ceramic tile buffing machine is one of the ceramic deep-worked devices in common using.
References [1] Xiuhua Sui, Linjing Xiao, Dejun Miao.Finite Element Analysis on layer structure-covered Convexity driving drum [J], Journal of Bionic Engineering, 2008(5):56-59
[4] G.P.Ostemeyer, M.Muller, Dynamic Interaction of friction and surface topography in Brake System,Tribology International,2006(39):370-380
[5] Haines D W,Wilson W D,Strain energy Density function for Rubber like materials[J],Journal of the Mechnaics and Physics of Solids, 1979 (21):345-340
Online since: December 2014
Authors: Ming Chao Che, Jie Chen
Research Development of Preparation Technology of BaTiO3 Nano-power Ming-chao Che1.a Jie Chen2,b,* 1,2 School. of Material Science and Engineering, Xi’an University of Science and Technology, China a chejunzai@163.com, b chenjie363@163.com * Corresponding author.
Ananta: Ceramics International, Vol. 35 (2009) p.173 [10] R.Wongmaneerung, R.
Wongnawa: Journal of Nanoparticle Research, Vol. 12 (2010) No.8, p,2895 [14] C.Li and B.Xu: Chemical Industry and Engineering, Vol. 26 (2010) No.3, p,273 (In Chinese) [15] L.X.Ma, G.Q.Wang, L.D.Liu and B.Y.Li: Journal of the European Ceramic Societies, Vol. 505 (2010) No.1, p,374 [16] R.J.Li and L.X.Gao: Vol. 65 (2011) No.212, p,374 (In Chinese) [17] Information on http://baike.so.com/doc/6008214.html [18] R.J.Li,W.X.Wei and J.L.Hai: Journal of Alloys and Compounds, Vol. 574 (2013) p,212 [19] W.W.Lee,W.H.Chung,W.S.Huang and W.C.Lin: Journal of the Taiwan Institute of Chemical Engineers, Vol. 44 (2013) No.4, p,660 [20] B.L.Newalkar and K.Sridhar: Materials Research Bulletin, Vol. 36 (2001) No.13-14, p,2347 [21] S.F.Liu, A.I.Robin and K.Sridhar: Materials Letters, Vol. 38 (1999) No.5, p,344 [22] J.Chen, F.Yan and K.P.Luo: Journal of Artificial Crystal, 2013 (In Chinese) [23] K.Sridhar and H.Katsuki: Ceramics International, Vol. 36 (2010) No.3, p,1165 [24] W.W.Wang, L.X.Cao, W.Liu
, G.Su and W.X.Zhang: Ceramics International, Vol. 39 (2013) No.6, p,7127 [25] Y.Zhang, L.Q.Wang and D.F.Xue: Power Technology, Vol. 217 (2012), p,629 [26] Y.M.Li, D.Huang, R.H.Liao and J.S.Wang: Journal of Ceramics, Vol. 29 (2008) No.2, p,164 (In Chinese) [27] C.Ma, C.X.Chai, P.P.Wang and Y.R.Zhou.
Rubira: Ceramics International, Vol. 40 (2014) No.2, p,3603 [34] Information on http://blog.sina.com.cn/s/blog_6765ce720100sonp.html [35] K.D.Kreuer, S.J.Paddison and E.Spohr: Chemical Review, Vol. 104 (2004) p,4637 [36] Y.T.Wu, X.F.Wang, C.L.Yu, E.Y.
Online since: April 2004
Authors: Kikuo Kishimoto, Zi Kun Wang, Feng Jin, Zheng Hua Qian
INTRODUCTION Piezoelectric ceramics can be made into various functional devices, such as sensors, actuators, filters and delay lines etc., which are widely used in electronic technology, mechanical engineering, medical appliance and other modern industrial fields.
Some meaningful properties of the surface waves are revealed and the potential engineering applications of these waves are also indicated.
Fish, Journal of Applied Mechanics, 68 (2001), p.153 6.
Wang, International Journal of Solids and Structures, 38 (2001), p.37 8.
Wang, et al, International Journal of Engineering Science, 39(2001), p.1271
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