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Online since: August 2014
Authors: Wen Hui Li, Sheng Qiang Yang, Xiu Hong Li, Wei Dong Li
Yang: Key Engineering Materials, Vol. 392 (2009), pp. 655
Chen: Key Engineering Materials, Vol. 416 (2009), pp. 332
Yang: Key Engineering Materials, Vol. 416 (2009), pp.127
Li: Key Engineering Materials, Vol. 522 (2012), pp. 264
Yang: Proceedings of the international conference on surface finishing technology and surface engineering (Frontiers of Design and Manufacturing, 2006)
Online since: May 2013
Authors: Jing Wang, Hong Bo Li, Chun Jie Li, Shu Yan Wu
Introduction Barium Titanate ceramic is the most typical ferroelectrics and piezoelectric dielectric ceramics.
Journal of Materials Processing Technology. 195 (2008) 171–177
Ceramics International. 37 (2011) 579–583 [5]Li-Jie Gao, Xiao-Lin Liu, Jing-Qiang Zhang, Song-Quan Wang, Jian-Feng Chen.
Journal of Alloys and Compounds 472 (2009) 441–445 [7] Yan Wenbin, Shi Aihua, Qin Shidong, Li Youji, Zhou Haihong.
RARE METAL MATERIALS AND ENGINEERING. 37(2008) 343-346 [8] Yang Peng fe,i Zhou Jicheng.
Online since: June 2009
Authors: Milad Roushanafshar, Mohammad Ghorbani
Matsuda: Colloids and Surfaces A : Physicochemical and Engineering Aspects, Vol. 321 (2008), p. 233 [12] W.
Nicholson: Journal of American Ceramic Society, Vol. 79 (1996), p. 1987 [15] A.R.
Shaffer: Journal of the Ceramic Society of Japan, Vol. 114 (2006), p. 1 [18] I.
Lewis: Journal of American Ceramic Society, Vol. 83 (2000), p. 2341 [20] X.F.
Li: Ceramics International, Vol. 28 (2002), p. 705 [23] J.H.
Online since: August 2007
Authors: Şaduman Şen, Uğur Şen
Sen 2,b 1 Department of Metallurgical and Materials Engineering, Engineering Faculty, Sakarya University, Sakarya, Turkey 2 Department of Metal Education, Technical Education Faculty, Sakarya University, Sakarya, Turkey a ugursen@sakarya.edu.tr, bsdmnsen@sakarya.edu.tr Keywords: Niobium carbonitride, TRD; diffusion, microstructure, microhardness Abstract.
Lewis: Journal of Material Science 9 (1974), p.349-358 [6] C.
Chen: Ceramics International 31 (2005), p.1031-1039 [7] S.
Iwanaga: Journal of Crystal Growth, 158 (1996), p.79-83 [8] T.
Misawa: Journal of Crystal Growth 52 (1981), p. 597-601 [11] Y.
Online since: January 2013
Authors: Ming Da Song, Ya Fan Zhao
Materials science and engineering C. 25 (2005) 187-193
Key Engineering Materials Vols. 256 (2004)355-358
Materials Engineering. 3(2001) 45-48
Ceramics International. 22(1996) 429-434
Ceramics International. 22 (1996) 429-434.
Online since: April 2019
Authors: Yu Mei Bao, Guo Zhong Chai, Jun Lv
Fracture Properties and Failure Analysis of Zirconia Toughened Hydroxyapatite Bioceramic Coating CHAI Guozhong1,a, BAO Yumei1,b*and LV Jun2,c 1College of Mechanical Engineering, Zhejiang University of Technology, Zhaohui No.6 District, Hangzhou, Zhejiang Province, P.
Ceramics International, 2018, 44:10604-10610 [2] LEI F, KHOR K A, et al.
Journal of the Mechanical Behavior of Biomedical Materials, 2018, 86: 336-344 [4] Omid Fakhraei, Saeed Hesaraki, et al.
Ceramics International, 2016, 42:11201-11208 [5] Anna Vatali, Eleana Kontonasaki, et al.
Engineering Fracture Mechanics, 2014, 134(30):4-16.
Online since: September 2013
Authors: Yeoh Cheow Keat, Pei Leng Teh, Meor Ahmad Faris, Mohd Sobri Idris
Tehd School of Materials Engineering, University Malaysia Perlis, Malaysia ameorfaris88@gmail.com, bckyeoh@unimap.edu.my, csobri@unimap.edu.my, dplteh@unimap.edu.my Keywords: Dielectric properties, barium titanate, solid state, barium carbonate, titanium dioxide, stoichiometry.
Journal of Materials Processing Technology, 2008. 195(1-3): p. 171-177
Journal of Materials Science, 1986. 21: p. 3575-3580
Ceramic Powder Science IV, ed.
Ceramics International, 2006: p. 429-36.
Online since: May 2025
Authors: Erfan Handoko, Mudrik Alaydrus, Sunaryono Sunaryono, Ahmad Taufiq, Wida Agista, S.T. Ulfawanti Intan Subadra, Davin Alana Putra, Nur Ezaan Khamsan
International Journal of Production Economics, 210, 15–26. https://doi.org/10.1016/j.ijpe.2019.01.004 [2] Adebayo, L.
IOP Conference Series: Materials Science and Engineering, 202, 012013. https://doi.org/10.1088/1757-899X/202/1/012013 [4] Xia, R., Yin, Y., Zeng, M., Dong, H., Yang, H., Zeng, X., Tang, W., & Yu, R. (2016).
Materials Science and Engineering: R: Reports, 74(7), 211–232. https://doi.org/10.1016/j.mser.2013.06.001 [37] ZabihiSahebi, A., Koushkbaghi, S., Pishnamazi, M., Askari, A., Khosravi, R., & Irani, M. (2019).
International Journal of Applied Ceramic Technology, 16(5), 2065–2072. https://doi.org/10.1111/ijac.13192 [39] Li, Q., Xue, Q., Zheng, Q., Hao, L., & Gao, X. (2008).
Composites Part B: Engineering, 167, 135–146. https://doi.org/10.1016/j.compositesb.2018.12.012 [46] S.K.
Online since: October 2010
Authors: Yun Huang, Zhi Huang, Jian Qiang Wu
The Analysis of Four-axis Belt Grinding for Marine Propeller Blade Jianqiang Wu1, 2,a, Yun Huang1,2,b and Zhi Huang1,2,c 1College of Mechanical Engineering, Chongqing University, Chongqing, 400044 P.R.China 2Chongqing Engineering Research Center for Material Surface Precision Machining and Whole Set Equipments, Chongqing University, Chongqing, 400044, P.R.China awujianqiang1019@163.com, byunhuang@samhida.com, chz@samhida.com Keywords: Marine propeller blade; Belt grinding; Abrasive belt wear; Processing precision; Material removal rate.
The ceramic abrasive grains is composite of crystal include zirconia and alumina.
Alumina is very hard and tough, therefore the ceramic abrasive grains belt have a longer life expectancy than the other two kinds of belt in many processing situations.
These is caused because of the characteristics of the abrasive, the ceramic abrasive is manufactured by gel method, every abrasive grain is constitute of alumina ceramic composed by many sub-micron grain[9,10].
[4] L.C.Cao and J.Liu: Int J Adv Manuf Technol Vol. 35 (2008), p. 1053-1064 [5] J.W.Park, J.G.Lee and C.S.Jun: International Journal of Precision and Manufacturing Vol. 23 (2009), p. 5-12 [6] Huazheng Zhong and Xiaomin Yang: Abrasives and Grinding Vol. 16 (1991), p. 4-8 (In Chinese) [7] H.Huang, Z.M.Gong and X.Q.Chen: Journal of Materials Processing Technology Vol. 127 (2002), p. 140-145 [8] H.C.Kuo and W.Y.Dzan: Journal of Materials Processing Technology Vol. 124 (2002), p. 389-395 [9] Weilang Wang, Fusheng Pan and Yangjun Chen: Journal of Chongqing University Vol. 29 (2006), p. 91-95 (In Chinese) [10] Yangjun Chen, Yun Huang and Kaixuan Zhu: Journal of Chongqing University Vol. 29 (2006), p. 28-31 (In Chinese )
Online since: August 2016
Authors: Michaela Kritikos Samardziova
In: International Journal Machine Tools & Manufacture 53, 1-14
In: International Journal of Machine Tools & Manufacture 46
In: Journal of Materials Processing Technology 206, 167 – 179
In: Journal of Machine Engineering, Vol. 12, No. 1
In: Mechanics and Mechanical Engineering
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