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Online since: April 2014
Authors: Xiao Wang, Liu Shuan Yang, Biao Jin
Effect of H3BO3 coating on the microwave dielectric properties of BZN ceramics Liu-shuan Yang1,2,a,*,Biao Jin1,b, Xiao Wang1,c 1School of Civil Engineering, Henan University of Urban Construction, Pingdingshan467036, China 2School of Materials Science & Engineering, Henan University of Science & Technology, Luoyang 471003, China aliushuan@hncj.edu.cn, bjinbiao@hncj.edu.cn, cwx407@126.com Keywords: microwave dielectric ceramics, low temperature sintering, dielectric property, liquid coating.
Kim, Low-temperature sintering and microwave dielectric characteristics of Ba2Ti9O20 ceramics, Journal of the European Ceramic Society. 26(2006)2111-2115
Yoshikawa, et al., Effect of glass additions on BaO-TiO2-WO3 microwave ceramics, Journal of the American Ceramic Society. 77(1994)1909-1916
A, ZANETTI, et al., Processing of Bi1.5ZnNb1.5O7 ceramics for LTCC applica- tions:comparison of synthesis and sintering methods, Ceramics International. 35 (2009)2755-2759
Wang, et al., Effect of BiVO4 doping on dielectric properties of (Bi1.5Zn0.5)(Zn0.5Nb1.5)O7 ceramics, Journal of the Chinese Ceramic Society. 33(2005)1453-1456
Online since: June 2011
Authors: Shi Feng Huang, Dong Yu Xu, Chao Ju, Zong Zhen Zhang
Chen: Rare metal materiales and engineering.
Chen :Journal of ceramics.
Zhou: Journal of the chinese ceramics society.
:Journal of functional Materials.
Zhang, Z.P.Yang, X.L.Chao: Ceramics International.
Online since: October 2009
Authors: Robert Vaßen, Detlev Stöver, Maria Ophelia D. Jarligo, Holger Kassner, Alexandra Stuke, Daniel Emil Mack
Stöver: submitted to the Journal of Thermal Spray Technologies (2008) [6] R.
Barbezat and D.Stöver, in: Materials for Advanced Power Engineering, edited by J.
Stöver: in Ceramic Engineering and Science Proceedings, (2001)
Stöver: 31st International Cocoa Beach Conference and Exposition on Advanced Ceramics and Composites, Ceramic Engineering Science Proceeding (2007) [14] H.
Stöver: submitted to the International Journal of Applied Ceramics Technology (2008) [16] H.
Online since: July 2020
Authors: Tomasz Grzegorz Gawel
Pakieła, Atomic layer deposition of TiO2 on to porous biomaterials, Journal of Achievements in Materials and Manufacturing Engineering 75/1 (2015) 5-11
Tille, Three-dimensional printing of porous ceramic scaffolds for bone tissue engineering, Journal of Biomedical Materials Research Part B: Applied Biomaterials 74B/2 (2005) 782-788
Ji, Design for stereolithography, Proceedings of the Institution of Mechanical Engineers, Journal of Mechanical Engineering Science Part C/214.5 (2000) 635-640
Rathod, A review on rapid prototyping as advanced manufacturing technology, International Journal of Pure and Applied Research in Engineering and Technology 3/9 (2015) 310-319
Mazzoli, Selective laser sintering in biomedical engineering, Medical & Biological Engineering & Computing 51/3 (2013) 245-256
Online since: August 2012
Authors: Antonio Pedro Novaes de Oliveira, Jaime Domingos Teixeira, Lourival Boehs, Francielly Roussenq Cesconeto, Manuel Alfredo Pereira, Cristina Siligardi
SINTERING BEHAVIOR OF LZS GLASS-CERAMICS Jaime Domingos Teixeira1,a, Antonio Pedro Novaes de Oliveira1,2,b Lourival Boehs2,c, Francielly Roussenq Cesconeto1,d, Cristina Siligardi3,e, Manuel Alfredo Pereira4,f 1Group of Ceramic and Glass Materials (CERMAT) 2Department of Mechanical Engineering (EMC) Federal University of Santa Catarina (UFSC) Campus Universitário – Trindade, 88040-900 Florianópolis, SC, Brazil 3Department of Materials and Environmental Engineering (DIMA) University of Modena and Reggio Emilia (UNIMORE) Via Vignolese 905, 41100, Modena, MO, Italy 4Federal Institute of Santa Catarina (IFSC) Avenida Mauro Ramos, 950 – Centro, Florianópolis, SC, Brazil ajaime@ifsc.edu.br, bpedronovaes@emc.ufsc.br, cboehs@emc.ufsc.br, dfranciellycesconeto@hotmail.com, ecristina.siligardi@unimore.it, fmalfredo@ifsc.edu.br Keywords: ceramics, glass-ceramics, sintering, crystallization.
Pellacani: Journal of the American Ceramic Society Vol. 79 (4) (1996), p.1092
Leonelli: Journal of the American Ceramic Society Vol. 81 (3) (1998), p. 777
Journal of Materials Science Vol. (36) (2001), p.1
Yan: Ceramics International Vol. 23 (1997), p. 457.
Online since: March 2015
Authors: Xiao Ping Zhou, Ying Ze Fang, Feng Xu
Preparation of nickel-based Al2O3-TiB2 composite ceramic powder Feng Xua, Xiaoping Zhoub and Yingze Fangc Hubei University of Technology College of Mechanical Engineering,  Hubei Provincial Key Laboratory of Green Materials for Light Industry,  Wuhan, Hubei, 430068, China a24092575@qq.com, bzxp_zhn @163.com, c151224823@qq.com Keywords: Mechanical alloying;Nickel-based ceramics;Al2O3-TiB2;Ceramic composites.
Materials engineering[J],2002(9):6-11.
Ceramics International[J],2006,16(5):19-23
Journal of Material Science and Technology[J], 2006,22(2):269-272
[8] Zhuang MA,Peng LIN,Shizhi DONG.Chinese Journal of Nonferrous Metals[J],2010,20(5), 908-913.
Online since: June 2014
Authors: Johnson Kwame Efavi, Abu Yaya, Solomon Adeborna, Julius Fobil
Development and Comparative Analysis of Aluminosilicate Based Ceramic Filters for Ground Water Defluoridation Johnson Kwame Efavia*, Abu Yayaa, SolomonAdebornaa, Julius Fobilb aDepartment of Materials Science and Engineering, University of Ghana, Legon bDepartment of Biological, Environmental and Occupational Health Sciences School of Public Health University of Ghana, Legon *Corresponding Author: Materials Science and Engineering Department, University of Ghana, Legon, Accra-Ghana.
Li, An Excellent Fluoride Sorption Behaviour of Ceramic Adsorbent, Journal of Hazardous Materials, 183, 2010
Guo, Chemical Engineering Journal, 223 (2013) [13] Kerbyson, J.D. and Scherdorf, J.R.H., 1948-1963, Chemical Analysis of Ghana Rocks, Ores and Minerals, Geological Survey Bulletin No. 42
Sillanpaa, Flouride Removal from Water by Adsorption a Review Chemical Engineering Journal 17 (2011) 811-840
Gupta, Performance evaluation of alumina cement granules in removing fluoride from natural water, Chemical Engineering Journal, 36 (2006) 433-487
Online since: June 2016
Authors: Jatinder Kumar, Ravinder Kataria
Mehta, Optimization of process parameters for ultrasonic drilling (USD) of advanced engineering ceramics using Taguchi approach, Engineering Optimization 38(7) (2006) 771–787
Mishra, Taguchi’s optimization of process parameters for production accuracy in ultrasonic drilling of engineering ceramics, Production Engineering Research and Development 3 (2009) 243–253
International Conference on Emerging Trends in Engineering and Technology (2013) 287–292
Tandon, Study of 3D Micro-Ultrasonic Machining, Journal of Manufacturing Science and Engineering 126 (2004) 727–732
Journal of Manufacturing Science and Engineering. 127 (2005) 752–758
Online since: August 2015
Authors: Farazila Binti Yusof, Wan Shun Chu
Journal of manufacturing science and engineering 125.1 (2003): 138-145
Engineering Computations 27.8 (2010): 967-985
Procedia Engineering 97 (2014): 854-863
International Journal of Machine Tools and Manufacture 43.6 (2003): 605-615
International Journal of Mechanics and Applications 2.1 (2012): 1-6.
Online since: April 2023
Authors: Abdelkrim Hazzab, Hammadi Larbi, Souad Hassene Daouadji
Introduction The design and development of advanced ceramics for high performance applications is one of the most challenging tasks in modern engineering [1].
Advanced engineering materials, 16(2014) 729-754
Kavas, Effects of Inorganic Salts on Rheological Properties of Slips,Key Engineering Materials, 264-268 (2004)1609-1612
Tajally,Influence of solid loading on the rheological, porosity distribution, optical and the microstructural properties of YAG transparent ceramic, Ceramics International, 44 (2018) 12098–12105 [10] B.
Piani, Rheological Properties of Alumina Slurries: Effect of Deflocculant Addition, Particulate Science and Technology,25(2007) 375–380 [13] L.Piani,A.Papo, Sodium Tripolyphosphate and Polyphosphate as Dispersing Agents for Alumina Suspensions: Rheological Characterization, Journal of Engineering, 2013 (2013) 1-4 [14] H.
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