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Online since: September 2014
Authors: Yang Liu
Project application in the field of composite materials in badminton YangLiu Nanchang normal university,nanchang jiangxi province china Keywords: Materials.
Badminton racket into the era of composite materials Since badminton racket into the era of composite materials, various materials about badminton racket and creative design emerge in endlessly.
Therefore, now more factory in producing badminton racket with composite materials, to achieve maximum toughness.
Science and Technology Information 2010, (15): 512 - 513.
Fudan academic journal (Social Science Edition), 2008, (4): 8-17.
Online since: May 2012
Authors: Hua Ling, Yun Hui Li, Hua Qiang Han, Hua Fu
Chinese Journal of Geotechnical Engineering, 1994, 16(3): 14-22.
China Civil Engineering Journal, 2000, 33(4): 42-46.
Chinese Journal of Geotechnical Engineering, 2001, 23(4): 431-435.
Advances in Science and Technology of Water Resources, 89-94.
Chinese Journal of Geotechnical Engineering, 2005, 27(4): 412-413.
Online since: October 2013
Authors: Jun Yu Wu, Xu Fang Zhang
Experimental Research on Si-Mn Slag Cementitious Material Xufang Zhang1, a and Junyu Wu2,b 1University of Science and Technology Beijing, Beijing 100083, China 2Beijing Dong-fang-jian-yu Institute of Concrete Science and Technology, Beijing 101119, China azhangxufang_2003@163.com, bjunyuwu@hotmail.com Keywords: cementitions material; Si-Mn slag; circulating fluidization bed slag; activator.
Raw Materials and Experimental Methods Materials.
Preparation of ecolcement with ferromanganese slag, Guangdong Building Materials, 11 (2007) 120-121
Preparation of cementitious materials with ferroalloy slag and its microscopic analysis, Bulletin of the Chinese Ceramic Society, 3 (2007) 537-540
Wu, etc, Hydration mechanism of a cementitious material prepared with Si-Mn slag, International Journal of Minerals, Metallurgy and Materials, 2 (2011) 234-239
Online since: November 2023
Authors: Hannes Jacobs, Andreas H. Foitzik, Andreas Engels, Mike Thomas Hauschultz
Additionally, processing biological, biocompatible, bioinert, or bioresorbable materials with 3D printers has attracted increasing interest in the life science sector.
Summary The primary aim was to develop a low-cost 3D bioprinter that could process multiple biological materials with various viscosities while surpassing the size restrictions of syringe-based extruders.
Journal of Controlled Release, 2020
The Journal of prosthetic dentistry, 2020. 123(6): p. 821-828
[16] Engels, A., et al. 3d Printer Heads for Extrusion of Biologicals Gels. in Materials Science Forum. 2021.
Online since: August 2015
Authors: Małgorzata Osadnik, Marian Czepelak, Adriana Wrona, Katarzyna Bilewska, Małgorzata Kamińska, Grzegorz Moskal, Kinga Czechowska, Marcin Lis, Grzegorz Więcław
Molybdenum is also studied as a metallic component of ceramic materials [4-8].
Technology and research methods The manufacturing technology of the cermet materials can be divided into following stages: the preparation of the mass from raw materials, moulding, drying, and firing.
Kohtoku, Journal of Materials Science 32, 4549 (1997)
Labbe, Journal of Materials Science 32, 3829 (1997)
Zinkle , Journal of Nuclear Materials 366, 369 (2007)
Online since: August 2013
Authors: Xiang Yin Mo, Yi Ding, Xiao San Feng, Cai Rong Kang
The LiFe0.95Bi0.05PO4/C phase exhibited superior cell performance among the materials prepared.
Chemistry of Materials, 17(20) (2005), 5085-5092
Journal of Power Sources, 148(3) (2001), 498-502
Journal of Power Sources, 189(1) (2009), 440-444
Materials Research Bulletin, 42(11) (2007), 1942-1948
Online since: February 2019
Authors: O.A. Dryuchkova, R.A. Bykov, S.V. Mamyachenkov
aolesyal89@mail.ru, bsvmamyachenkov@yandex.ru Keywords: Technogenic raw materials, hydrometallurgy, polymetallic ores, beneficiation, recovery.
The article reviews the need to involve poor raw materials in processing, presents the results of the information search on the processing of technogenic wastes from beneficiation.
The review of processing technologies for poor refractory raw materials was performed.
Mining Journal, 2 (2004) 83-86
Kozlov, Progressive technologies for complex and deep processing of natural and technogenic mineral raw materials: Proceedings of the International Scientific and Technical Conference ‘Combined Processes of Processing of Mineral Raw Materials: Theory and Practice’, St.
Online since: October 2011
Authors: F.N. Oktar, Azade Yelten, Suat Yilmaz
Dahotre, Calcium phosphate coatings for bio-implant applications: materials, performance factors and methodologies, Materials Science and Engineering R. 66 (2009) 1-70
Heimann, Materials science of crystalline bioceramics: a review of basic properties and applications, Chiang Mai University Journal. 1(1) (2002) 23-46
Zarzycki, Past and present of sol-gel science and technology, Journal of Sol-Gel Science and Technology. 8 (1997) 17-22
Teowee, Sol gel science and technology: current state and future prospects, Journal of Sol-Gel Science and Technology. 13 (1998) 153-162
Hench, Sol-gel materials for bioceramic applications, Current Opinion in Solid State & Materials Science. 2(5) (1997) 604-610
Online since: May 2014
Authors: Peng Fei Li, Qing Chi Cai
Analysis of the approaches to determine crack initiation stress of rock materials in compression tests Li Peng-fei1, a, Cai Qing-chi 1,b 1 School of Civil and Environmental Engineering, University of Science and Technology Beijing, Beijing 100083, China; a125459315@qq.com, b295807506@qq.com Keywords: rock mechanics; compression condition; crack initiation stress.
Journal of Geophysical Research, 1966, 71(16): 3939–3953
International Journal of Rock Mechanics and Mining Sciences, 2009, 46(2): 219–228
International Journal of Rock Mechanics and Mining Sciences and Geomechanical Abstracts, 1994, 31(6): 643–659
International Journal of Rock Mechanics and Mining Sciences, 2013, 64: 258–269 [10] NICKSIAR M, MARTIN C D.
Online since: February 2016
Authors: S. Nallusamy
Journal of Innovative Research in Science, Engg. and Tech., Vol. 4(3), (2015), pp. 893-896 [2] Kuldeep Ojha, R.K.
Singh, “MRR improvement in sinking electrical discharge machining: A review”, Journal of Minerals & Materials Characterization & Engineering, Vol. 9(8), (2010), pp. 709-739 [3] N.
Anand et al, “Analysis of the influence of EDM parameters on surface quality, MRR, EWR and microhardness of AISI O2 (1.2842)”, International Journal of Scientific and Engineering Research, Vol. 5(3), (2014), pp. 850-857 [4] Asif Iqbal and Ahsan Ali Khan, “Modeling and analysis of MRR, EWR and surface roughness in EDM milling through response surface methodology”, American Journal of Engineering and Applied Sciences, 2010, 3(4), 611-619 [5] Kapil Banker et al, “Parameter optimization of electro discharge machine of AISI 304 steel by using taguchi method”, International Journal of Application or Innovation in Engineering & Management, Vol. 3(8), (2014), pp. 20-24 [6] Manjinder Singh et al, “Experimental investigation of machining parameters using rotary electrode for EDM of HCHCR D2 steel”, Advances in Materials and Manufacturing Technology, Vol. 4(10), (2015), pp. 83-86 [7] Surender Kumar, Satpal Kundu and Ravinder, “Optimization of process parameter and experimental investigation of
Research and Tech., Vol. 2(12), (2013), pp. 2419-2427 [11] Pushpendra S bharti, Maheshwari and Sharma, “Experimental investigation of in conel 718 during die-sinking electric discharge machining”, International Journal of Engineering Science and Technology, Vol. 2(11), (2010), pp. 6464-6473 [12] Rajesh Choudhary, Kumar and Garg, “Analysis and evaluation of heat effected zones of electrical discharging machining of EN 31 die steel”, Indian Journal of Engineering and Material Sciences, Vol. 17, (2010), pp. 91-98 [13] Boujelbene et al, “Influence of machining parameters on the surface integrity in electrical discharge machining”, Archives of Materials Science and Engg., Vol. 37(2), (2009), pp. 110-116 [14] Ahsan Ali Khan, Mohammad Yeakub Ali and Md.
Mohafizul Haque, “A study of electrode shape configuration on the performance of die sinking EDM”, International Journal of Mechanical and Materials Engineering, Vol. 4(1), (2009), pp. 19-23 [15] Fred L.
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