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Online since: July 2010
Authors: Soo Wohn Lee, Zheng Yi Fu, Koichi Niihara, Bhupendra Joshi, Hyun Hwi Lee, Seung Ho Kim
Lee3,b 1 Department of Metallurgy and Material Engineering, Sunmoon University, Korea, 2 Department of Electronic Material Engineering, Sunmoon University, Asan, Korea. 3 Department of Environment Engineering, Sunmoon University, Asan, Korea. 4 State Key Lab of Advanced Technology for Material Synthesis and Processing, Wuhan University of Technology, China. 5 Nagaoka University of Technology, Nagaoka, Japan.
Acknowledgement This research was supported by the China-Japan-Korea A3 Foresight International Cooperation Key Project.
Niihara, Ceramic Transactions, Vol. 165(2005), p.15
Thevenot, Journal of the European Ceramic Society, Vol. 15 (1995), p.249
Thevenot, Key Engineering Materials, Vol. 89-91 (1994), p.449.
Online since: December 2012
Authors: Zainal A. Ahmad, Mohd Mustafa Al Bakri Abdullah, Mohd Arif Anuar Mohd Salleh, Muhammad Hafiz Hazizi, N.Z. Noriman, Ramani Mayapan
Materials Science and Engineering: A, 2006. 423(1-2): p. 166-169
Materials Science and Engineering: A, 2012(0)
Materials Science and Engineering: R: Reports, 2000. 27(5–6): p. 95-141
Ceramics International, 2009. 35(8): p. 3407-3410
Ceramics International, 2005. 31(6): p. 811-815.
Online since: January 2009
Authors: Xiao Ming Chen, Xiang Nan Li, Wei Lan Hu
A triphasic ceramic-coated porous hydroxyapatite for tissue engineering application.
Journal of the European Ceramic Society 2007; 27: 2401-2406
J Ceramics International 2007; 33: 637-641
J Ceramics International 2005; 31: 641-646
J Materials Science and Engineering A 2008; 474: 128-133
Online since: September 2004
Authors: J.F. Durodola, S. Gerguri, L.J. Fellows, N.A. Fellows, A.R. Hutchinson, T. Dickerson
Dickerson 2 1 Oxford Brookes University, School of Engineering, Oxford, UK 2 The Welding Institute (TWI), Abington, Cambridge, UK a sgerguri@brookes.ac.uk, blfellows@brookes.ac.uk, cjdurodola@brookes.ac.uk, d nafellows@brookes.ac.uk, earhutchinson@brookes.ac.uk Keywords: Metal-to-ceramic joints, Notched ceramic bars, Weibull statistics method, Novozhilov's brittle fracture criterion, POCO EDM 3 graphite, AS800 Silicon Nitride.
The study of notched ceramic bars with high stress gradients can assist with the prediction of failure of metal ceramic joints.
As the criterion has the virtue of being very simple, and the required parameters can be obtained from relatively simple experiments, it may be easily implemented in engineering practice.
[5] Seweryn, A., Brittle fracture criterion for structures with sharp notches, Engineering Fracture Mechanics, 47(5), pp.673-681, 1994
[7] Hertel, D., Fett, T., and Munz, D., Strength predictions of notched alumina specimens, Journal of the European Ceramic Society, 18, pp.329-338, 1998.
Online since: July 2016
Authors: Hong Sheng Wang, Qi Hong Wei, Ying Ying Wang, Qing Li Zhang, Hong Hao Cheng, Chang Tao Shao
Liu, Aluminum Phosphate–mullite Composites for High temperature Radome Applications, International Journal of Applied Ceramic Technology. 6(2009)190-194
Cheng, Effect of CVI Temperature on the microstructure of Nextel 480/SiO2, Science and Engineering of Composites Materials. 10(2003) 403-406
Chen, Mechanical behavior of 2.5D (shallow bend-joint) and 3D orthogonal quartzf/silica composites by silica sol-infiltration-sintering, Materials Science and Engineering A. 532 (2012) 230-235
Rogers, The Mechanical Behavior of Glass and Glass-ceramic matrix Composites, Materials Science and Engineering A. 278(2009)187-194
Huang, Processing and Properties of Unidirectional (SiO2)f/SiO2 Composites, Ceramics International. 33(2007)669-673
Online since: November 2019
Authors: Y. Nagaraj, N. Jagannatha, N. Sathisha
The brittle and non conducting materials such as ceramics, glasses/quartz and oxide single crystals are find increasing applications in advanced micro-engineering products.
Razfar: Journal of Materials Processing Tech, 255 (2018), p. 665–672 [23] Sathisha N, Somashekar S.Hiremath, Shivakumar J: International Journal of Recent advances in Mechanical Engineering.
Vol.3(2014), No.2 [24] Takashi Matsumura, Takenori Ono: Journal of materials processing technology, 200(2008), p.356–363 [25] Muhammad Arif, Mustafizur Rahman, Wong Yoke San,Neha Doshi: International Journal of Advanced Manufacturing Technology, 53(2011), p.1063–1073 [26] Toru Kizakia, Toshihiro Ogasahara, Naohiko Sugita, Mamoru Mitsuishi: Journal of materials processing technology, 214(2014), p. 267– 275 [27] Ravindra D, Ponthapalli S, Patten J: Proceedings of the ASME 2013 International Manufacturing Science and Engineering Conference, USA. 1(2013), p. 1–6 [28] Yusuke Ito, Toru Kizaki, Rin Shinomoto, Masateru Ueki: Journal of Precision Engineering.2016.10.005 (2016) [29] Yusuke Ito,masateru Ueki,YotuKizaki, Naohiko Sugita, Mamoru Mitsuishi: Procedia Manufacturing 7 (2017), p. 240 – 245 [30] Krystian L.Wlodarczyk, Adam Brunton, Phil Rumsby, Duncan P.
Hand: Optics and Lasers in Engineering 78(2016), p.64–74 [31] Jaehwan Kim, Seong Cheol Mun, Hyun-U Ko, Ki-Baek Kim, Mohammad Abu Hasan Khondoker, Lindong Zhai1: International Journal of Precision Engineering and manufacturing Vol. 13, (2012), No. 12, p. 2263-2272 [32] M.S.
Sharma, Pradeep Kumar, Shantanu Das, International Journal of Industrial Engineering and Management Science, Vol. 4, (2014), No. 3 [40] Nitin K.
Online since: August 2018
Authors: Chanchana Thanachayanont, Onuma Santawitee, Helene Debeda, Seeroong Prichanont, Maria Isabel Rua-Taborda, Catherine Elissalde, Jérome Bernard, Angkana Phongphut, Bralee Chayasombat
Printing process might lead to lower cost than ceramic process to open routes for MEMS applications.
For some applications, printing process might lead to lower cost than traditional ceramic process for PZT-MEMS manufacturing, because of no needs for slicing and polishing piezoelectric ceramics prior to electrodes deposition.
Maglione, “Study of screen-printed PZT cantilevers both self-actuated and self-read-out”, International Journal of Applied Ceramic Technology. 11, 311-320 (2014)
Budinger-Pommier; “Printed piezoelectric materials for vibration-based damage detection”, Procedings Engineering /j.proeng. 11.254 (2016)
Li, “Fischer–Tropsch synthesis over a 3D foamed MCF silica support: Toward a more open porous network of cobalt catalysts”, Journal of Catalysis 340, 205-218 (2016).
Online since: March 2004
Authors: Zhan Qiang Liu, Chuan Zhen Huang, B. Fang, Han Lian Liu, Sui Lian Wang, Xing Ai
Ai School of Mechanical Engineering, Shandong University, Jinan, 250061, China Keywords: Ceramic tool materials, Coating ceramic tool, Coated powder, Sol-Gel method, Tool wear Abstract.
This solution was then stirred for 24-48 hours at the Journal Title and Volume Number (to be inserted by the publisher) 21 temperature of 85-95ć to arrive at a stable and transparent alumina or silicon dioxide sol.
The alumina-silicon dioxide layer for the XFTC1 Journal Title and Volume Number (to be inserted by the publisher) 23 and the silicon dioxide layer for the XFTC2 ceramics are much more uniform than the SG4 ceramic made by the conventional direct mixing methods shown in Fig.2c.
The microstructure for the new ceramics is clearly more homogeneous than that of the SG4 ceramic.
Ai: International Journal of Machine Tools & Manufacture Vol. 40(6) (2000), p. 823 [4] C.J.
Online since: October 2008
Authors: Jing Zhe Pan, Ruo Yu Huang
Olevsky: Material Science and Engineering Vol.
Riedel: Journal of the European Ceramic Society Vol 24 (2004), p. 345
Bouvard: International Journal of Mechanical Sciences Vol. 44 (2002), p. 2523
Briscoe: Ceramic International Vol. 23 (1997), p. 521
Yeomans: Journal of American Ceramics Society Vol. 89 (2006), p. 3393
Online since: May 2021
Authors: M.R. Sankar, S.M. Basha, M.M. Basha, Aluri Manoj
Procedia Engineering 2012 Jan 1;36:261-9
World Academy of Science, Engineering and Technology, International Journal of Medical, Health, Biomedical, Bioengineering and Pharmaceutical Engineering 2016; 10.5 : 276-280
Journal of the Korean institute of surface engineering 1993; 26.3: 109-114
International Journal of Surface Science and Engineering 2010 Jan 1;4(4-6):337-59
Journal of Nanotechnology in Engineering and Medicine 2015 Feb 1;6(1):011002
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