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Online since: July 2021
Authors: Huda Jabbar, Enas Muhi, Tahseen Hussien
Ohji: submitted to Journal of Materials Research (2003)
Abd ulhussien: submitted to Engineering and Technology Journal (2017)
Brian: An introduction to materials engineering and science for chemical and materials engineers (John Wiley, Sons 2004)
Adachi: submitted to Journal of Minimum Intervention in Dentistry ( 2008)
Nwankwo: submitted to International Journal of Scientific and Research (2014)
Online since: April 2012
Authors: Mohammad Hafizuddin Haji Jumali, Muhammad Yahaya, Siti Mariam Mohamad, Rozidawati Awang, Mohd Riduan M. Said, Muhammad Mat Salleh
Nagata, Current status and prospects of lead-free piezoelectric ceramics, Journal of the European Ceramic Society. 25 (2005) 2693-2700
Kim, Piezoelectric Ceramic Powder Synthesis of Bismuth Sodium Titanate by Hydrothermal Process, Journal of Ceramic Processing Research 7 (2) (2006) 91-94
Nam, Structure and Electrical Properties of (Na0.5Bi0.5)1-xBaxTiO3 Piezoelectric Ceramics, Journal of European Ceramic Society 28 (2008) 843-849
Liao, Dielectric and ferroelectric properties of Lead- Free Na0.5Bi0.5TiO3 - K0.5Bi0.5TiO3 Ferroelectric ceramics, Ceramic International 31 (2005) 139-142
Song, Effect of A-site substitution on crystal component and dielectric properties in Bi0.5Na0.5TiO3 ceramics, Materials Science and Engineering B 121 (2005) 148-151
Online since: October 2015
Authors: Ján Duplák, Anton Panda, Iveta Pandová, Miroslav Kormoš, Slavko Jurko
Introduction Very important subject for engineering and machining how its subsystem, is the optimization of cutting parameters.
In engineering can be used for experiments a lot of different technological operations.
Panda et al., Accompanying phenomena in the cutting zone machinability during turning of stainless steels, International Journal of Machining and Machinability of Materials 5/4 (2009) 383-400
Duplák, T-vc dependence for cutting ceramic in standard ISO 3685, Manufacturing Engineering 9/4 (2010) 58-62
Hatala et.al, T-Vc Dependence for sintered metal in standard ISO 3685, Technological Engineering 7/2 (2010) 6-9
Online since: August 2015
Authors: Oratai Jongprateep, Tunchanoke Khongnakhon, Jednupong Palomas
Journal of the American Ceramic Society. 83 (2000) 1145-1148
Ceramics International. 28 (2002) 773-777
Ceramics International. 30 (2004) 1719-1723
Journal of the Australian Ceramic Society. 48 (2012) 80-84
Key Engineering Materials. 106 (2014) 193-199
Online since: May 2016
Authors: A.M. Mustafa Al Bakri, Mohammed Binhussain, Che Mohd Ruzaidi Ghazali, Hussin Kamarudin, Nur Ain Jaya, Roszilah Ahmad
Colloids and Surfaces A: Physicochemical and Engineering Aspects 1999. 158: p. 221-234
Minerals Engineering, 2009. 22: p. 1073-1078
Materials Science and Engineering A, 2008. 485: p. 5-13
International Conference on Chemistry and Chemical Process, 2011. 10
Journal of Hazardous Materials, 2008. 154: p. 175-183
Online since: December 2012
Authors: Yu Jun Zhang, Hong Yu Gong, Xiao Jun Liu, Ya Zhen Jiang, Yu Jun Zhao, Ru Bin Wei
Suri, Pressureless sintering of boron carbide, Ceramics International 32, 227–233(2006)
Yamauchi, et al, Mechanical and electrical properties of B 4 C–CrB 2 ceramics fabricated by liquid phase sintering, Ceramic International, 29, 299–304(2003)
[7] H.R.Baharvandi and A.M.Hadian, Pressureless Sintering of TiB2-B4C Ceramic Matrix Composite, Journal of Materials Engineering and Performance, 17, 838–841(2008)
Dariel, A novel approach for the preparation of B4C-based cermets, International Journal of Refractory Metals & Hard Materials 18, 131–135(2000)
Sglavo, et al, Effect of Al addition on pressureless sintering of B 4 C, Ceramics International 35, 831–837 (2009)
Online since: October 2006
Authors: Mitsuo Kido, Rong Guang Wang, Yoshiko Shinhara
Nondestructive Detection of Crack and Delamination of Ceramics Coating on SUS304 Stainless Steel Using ESPI Method Rongguang Wanga, Mitsuo Kidob and Yoshiko Shinharac Department of Mechanical Systems Engineering, Faculty of Technology, Hiroshima Institute of Technology, Saeki-Ku, Hiroshima, 731-5193, Japan a wangrg@cc.it-hiroshima.ac.jp, bkido@cae1.me.it-hiroshima.ac.jp, cshinhara@cc.it-hiroshima.ac.jp Keywords: Nondestructive Detection, Electronic Speckle Pattern Interferometry (ESPI), Ceramics Coating, Crack, Delamination.
Introduction Thermally sprayed ceramics are applied as thermal barrier coatings in high temperature environments because of the low thermal conductivity [1].
There are many reports on the damage behavior of ceramic coatings, however, only few of them are related to the deformation and damage of ceramics coating at high temperature [2,3].
[2] R.Wang and M.Kido: Journal of Nondestructive Evaluation Vol. 21 (2002), p.117
[3] H.Waki, K.Ogura and I.Nishikawa: JSME International Journal, Series A Vol.44 (2001), p.374
Online since: March 2004
Authors: Zhan Qiang Liu, Yi Wan, J.G. Liu
Liu School of Mechanical Engineering, Shandong University, Jinan, 250061, China Keywords: Surface roughness, High speed machining, Face milling, Cast iron, Hardened carbon steel, Ceramic tool, PCBN tool Abstract.
Gyani: International Journal of Advanced Manufacturing Technology Vol. 19 (2002), p. 157 [5] R.C.
Chen: International Journal of Machine Tools & Manufacture Vol. 40 (2000), p. 455 [7] Y.
Yoshio: Precision Engineering Vol. 24 (2000), p. 371 [8] A.J.
Kramer: ASME Transactions, Journal of Engineering for Industry Vol. 109 (1984), p. 87
Online since: November 2014
Authors: Shamsul Baharin Jamaludin, Azmi Rahmat, M.A. Sri Asliza, K. Mohd Zaheruddin, Khairel Rafezi Ahmad
Acknowledgement This work was financially supported by the Universiti Malaysia Perlis short term grant (9001-00343), School of Materials Engineering Universiti Malaysia Perlis, Sustainable Engineering Research Cluster UniMAP and Ministry of Higher Education Malaysia.
Ceramics International, Volume 39, Issue 3, April 2013, Pages 2197-2206
Ceramics International 37 (2011) 2181–2184
Chemical Engineering Journal, Volume 165, Issue 3, 15 December 2010, Pages 827-834, ISSN 1385-8947
Ceramics International 39 (2013) 5485–5493.
Online since: July 2013
Authors: Xu Yang Li, Guang Fa Gao, Yong Chi Li, Rui Yuan Huang
Experiment Closed-cell foamed ceramic composite was provided by The Third Engineer Scientific Research Institute of the Headquarters of the General Staff (Luoyang, China).
Now, for a typical foamed ceramic, we can assume E=4151.867 MPa.
However, no strain-rate dependence was demonstrated for the foamed ceramic composite in the range 50~110s-1.
Fleck, High strain rate compressive behavior of aluminium alloy foams [J], International Journal of Impact Engineering. 24 (2000) 277- 298
Lankford, High strain rate compression of closed-cell aluminium foams [J], Mat erials Science and Engineering A.
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