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Online since: January 2013
Authors: Ping Peng, Jing Chao Chen, Jing Ruan
Molecular dynamics simulations can study the material of atomic motion, mechanical properties, thermal properties, etc, and it had received lots of research in physics, material science, life science and other fields [5,6,7].
Model Molecular dynamics is one computer simulation method which was widely used in materials science.
Electrical Materials,2008,2:35-37
NanoStructured materials, 1998, 0:837-851 [7] Zeng P, Zzjac S, Clapp P C, et al.
Materials Science and Engineering A, 1998, 252: 301-306 [8] Wang Changsong, Wei Defan.
Online since: December 2019
Authors: V.V. Shevelev, L.M. Ozherelkova, I.R. Tishaeva
Materials with cracks.
Shevelev, Brittle-fracture criterion and durability of materials under thermomechanical action, Journal of engineering physics and thermophysics. 81 (2) (2008) 420−427
Shevelev, Fracture criterion and durability of brittle materials under conditions of stationary heat and mass transfer, Journal of engineering physics and thermophysics. 83 (1) (2010) 52−59
Shevelev, Structural-kinetic stochastic model of fracture and durability of brittle materials, Journal of Applied Mechanics and Technical Physics. 52 (4) (2011) 637−643
Inorganic materials series. 3 (10) (1967) 1767−1770
Online since: July 2013
Authors: Yu Feng Dai, Chao Liu, Liang Zhou, Jing Zhang
The traditional antenna is made up of metal or solid dielectric material, seawater is a new type of dielectric material for antenna.
With the development of science and technology, the antenna evolved from wire antenna to surface antenna, and to antenna with various complex functions.
Recently, a new kind of dielectric material is used as the antenna.
Compared with the traditional metal and dielectric antenna, its electrically conductive material is totally different.
Loschialpo, “Imaging of helical surface wave modes in the near field,”Journal of Electromagnetic Waves and Appl., Vol. 17, No. 11, 1593–1604, 2003.
Online since: September 2012
Authors: Jia Zi Shi, Xing Dang, Chuan Zhong Chen
References [1] Bernhard Winzek, Sam Schmitz, Holger Rumpf, Tobias Sterzl, Ralf Hassdorf, Sigurd Thienhaus, Jürgen Feydt, Michael Moske and Eckhard Quandt: Materials Science and Engineering A Vol 378 (2004), p. 40 [2] G.
Altmtas: Journal of Materials Processing Technology Vol. 155-156 (2004), p. 1266 [3] Yanling Ge, Oleg Heczko, Outi Söderberg and Simo-Pekka Hannula: Scripta Materialia Vol. 54 (2006), p. 2155 [4] H.
Wuttig: Journal of Magnetism and Magnetic Materials Vol. 302 (2006), p. 421 [5] Changsheng Li, Jingwen Sun, Guangfei Sun, Guwen Yao and Zixin Chen: Surface and Coatings Technology Vol. 201 (2007), p. 5348 [6] Liu Chao,An Xu,Gao Laixu,Gao Zhiyong,Cai Wei and Zhao Liancheng: Journal of Functional Materials Vol. 37 (2006), p. 367 [7] A.
Chandrasekaran: Journal of Magnetism and Magnetic Materials Vol. 321 (2009), p. 630 [8] I.
Cai: Journal of Magnetism and Magnetic Materials Vol. 320 (2008), p. 63 [13]Igor Dubenko, Mahmud Khan, Arjun Kumar Pathak, Bhoj Raj Gautam, Shane Stadler and Naushad Ali: Journal of Magnetism and Magnetic Materials Vol. 321 (2009), p. 754 [14] Ma Yunqing, Lai Sanli, Yang Shuiyuan, Luo Yu, Wang Cuiping and Liu Xingjun: Transactions of Nonferrous Metals Society of China Vol. 21 (2011), p. 96
Online since: March 2013
Authors: Pawel Baranowski, Jerzy Malachowski, Łukasz Mazurkiewicz, Krzysztof Damaziak
Krawczyk and others, Mechanics of polymer and composite materials, Science (1985)
Forrestal, Dynamic compressive testing of soft materials, Journal of Applied Mechanics, 69 (2002) 214–223
Fassnacht, Material behaviour of polymers under impact loading, International Journal of Impact Engineering, 32 (2006) 725-740
Bekar, High-speed testing and material modelling of unfilled styrene butadiene vulcanizates at impact rates, Journal of Materials Science, 39 (2004) 6885–6899
Parry, A freely expanding ring technique for measuring the tensile properties of polymers, Materials Science Technology, 7 (1996) 746-752
Online since: June 2024
Authors: Cahyo Hadi Wibowo, Fattah Maulana, Dicky Permana Adji Santosa, Yudha Priatama, Sariwulan Nurcholis, Adhe Lingga Dwi
Fig. 2 Three Field Plot Reference-author-keywords With the source menu in the most relevant source unit, we can see that the SAE technical paper is the one that appears the most, 56 times, followed by IOP conference series materials science and engineering in second place with 29 and vehicle system dynamics as many as 25 (Fig. 3).
Fig. 4 Most Locally Cited Table 2 H-index, g-index and m-index Tables Element h_index g_index m_index TC NP PY_start VEHICLE SYSTEM DYNAMICS 16 25 0.696 864 25 2001 JIXIE GONGCHENG XUEBAO/JOURNAL OF MECHANICAL ENGINEERING 9 11 0.600 161 20 2009 JOURNAL OF SOUND AND VIBRATION 8 9 0.364 505 9 2002 PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS, PART F: JOURNAL OF RAIL AND RAPID TRANSIT 8 12 0.615 181 12 2011 INTERNATIONAL JOURNAL OF AUTOMOTIVE TECHNOLOGY 7 7 0.500 121 7 2010 MECHANICAL SYSTEMS AND SIGNAL PROCESSING 7 7 0.875 280 7 2016 PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS, PART D: JOURNAL OF AUTOMOBILE ENGINEERING 7 13 0.318 181 20 2002 SAE TECHNICAL PAPERS 7 9 0.292 154 56 2000 TIEDAO XUEBAO/JOURNAL OF THE CHINA RAILWAY SOCIETY 6 11 0.353 136 16 2007 ZHONGGUO TIEDAO KEXUE/CHINA RAILWAY SCIENCE 6 10 0.300 133 19 2004 Fig. 5 Most Local Impact Fig. 6 Source Dynamics In this author menu, select the most local and relevant citations, author production
Here, we present the countries that will publish their journal production in Table 3.
Next, to see the development of journal writing based on keywords, we can see the development of journal writing by looking at its conceptual structure, where in the picture, the conceptual data on the development of journal writing based on existing keywords will be displayed.
As we know, most scientific journal authors are academics or professionals.
Online since: March 2015
Authors: Xing Fa Ma, Guang Li, Xiao Chun He, Ming Jun Gao, Bo Zhang
ICT1210), and Science Foundation of State Key Lab of Silicon Materials (project No.
Sarkar: Materials Science in Semiconductor Processing Vol.25 (2014), p.34 [42] S.
Kim: Materials Science and Engineering: B Vol.184 (2014), p.72 [44] X.
Wang: Materials Science and Engineering: B Vol.185 (2014), p.7 [49] J.
He, and G Li: Materials Science Forum Vol.688(2011), p. 23 [70] Q.
Online since: August 2007
Authors: Bernd Breidenstein, Berend Denkena, R. Meyer
It was found that the materials AlMgSi1 and AZ91 HP generally can be machined easily.
El-Khabeery: Journal of Materials Processing Technology, vol. 132 (2003), p. 82-89 [16] M.
Wagner: Materials Science and Engineering, vol.
Hermann: Journal of Materials Science, vol. 34 (1999), p. 1243-1252 [20] A.
Maqableh: Journal of Materials Processing Technology, vol. 102 (2000), p. 115-121 [21] H.
Online since: November 2016
Authors: Samvit G. Menon, K.S. Choudhari, C. Santhosh, Suresh Kulkarni
However, materials such as activated carbon are obtained from coal, which is non-renewable while the other catalyst materials are expensive and cannot be easily procured or prepared.
Gu, Synthesis of polyamine flocculants and their potential use in treating dye wastewater, Journal of Hazardous Materials, 152 (2008) 221-227
Fan, Review of the progress in preparing nano TiO2: An important environmental engineering material, Journal of Environmental Sciences, 26 (2014) 2139-2177
Trapalis, Removal of Reactive Red 195 from aqueous solutions by adsorption on the surface of TiO2 nanoparticles, Journal of hazardous materials, 170 (2009) 836-844
Zhao, Adsorption of methyl orange and Cr (VI) on mesoporous TiO2 prepared by hydrothermal method, Journal of hazardous materials, 181 (2010) 204-210
Online since: November 2016
Authors: Nakorn Srisukhumbowornchai, Pakawadee Sirilar, Gernot Klein, Purit Thanakijkasem, Somnuk Sirisoonthorn
Utilization of Pottery Stone as a Replacing Material for Vitreous Ceramic Sanitary Ware Production: A Case Study in Khon Kaen, Thailand Pakawadee Sirilar1,a*, Nakorn Srisukhumbowornchai1,b, Purit Thanakijkasem1,c, Somnuk Sirisoonthorn2,d and Gernot Klein3,e 1Program of Integrated Product Design and Manufacturing, Division of Materials Technology, School of Energy, Environment and Materials, King Mongkut’s University of Technology Thonburi, Bangkok, 10140, Thailand 2National Metal and Materials Technology Center, National Science and Technology Development Agency, Thailand Science Park, Pathumthani, 12120, Thailand 3Department of Materials Engineering (Glass and Ceramic), Faculty of Engineering, University of Applied Sciences Koblenz, Koblenz, 56203, Germany apakawadee.si@mail.kmutt.ac.th, bnakorn.sri@kmutt.ac.th, cpurit.tha@kmutt.ac.th, dsomnuk@mtec.or.th, eklein@fbwgk.fh-koblenz.de *corresponding author Tel.: +66-8159-22334 Keywords: Materials replacement; Firing temperature
Table 1 Chemical composition of raw materials.
Raw materials compositions of all formulations are in table 2.
Table 2 Raw materials composition of ceramic body formulations.
Materials replacement with pottery stone could reduce direct energy cost about 4.45%.
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