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Online since: October 2025
Authors: Dmytro Kolosov, Serhii Onyshchenko, Ivan Belmas, Olena Bilous, Hanna Tantsura
Article methodology is in numerical calculation using CAD and an analytical method used in strength of materials.
Methods Research methodology is in numerical calculation using CAD software and an analytical method used in strength of materials.
The analytical solution is based on principles of mechanics of composite materials with soft and rigid layers.
Strength of Materials, 40(5), 518-524.
Strength of Materials, 38(4), 392-397.
Online since: February 2012
Authors: Liang Jiang Zhao, Ping Xi Yao
When concrete materials fall into the mould box just under the effect of gravity, the materials will overhead and occlude because of the nature of the materials.
So many porous may exist in the materials.
It is obvious that materials exist mass.
Journal of Chang'an University, 2007(1): 1-6
Development Guide to Building Materials,2008(3):50-54
Online since: June 2014
Authors: Jia Nian Xu
Cone bit teeth repeated impact tests show that bit life mainly affected by tooth shape, materials, solid tooth technology.
Setting special materials around the teeth and adjusting the fitting wring will improve the life of cone bit teeth.
On materials, the fatigue life of common cemented carbide teeth is much smaller than that of the composite teeth.
Studies have shown that, optimization the tooth type, materials, solid tooth techniques will help to improve roller cone bit life.
Journal of Chongqing Science and Technology Institute, 2009,11 (4) :16-18, in Chinese.
Online since: August 2011
Authors: Mohd Shahar Sulaiman, N. L. Robert, Y. C. Chan, T. Ghalib, K.A. Sunhaji, M.A.R. Ridzwan, M. Ridhwan, Yupiter H.P. Manurung, E. Haruman, M. Norasiah
In addition, physical properties of materials, chemical composition of materials, geometry and thickness might be the factors that contributed to the deviated results.
This research is financially sponsored by E-Science MOSTI Malaysia Project (Nr: 03-01-01-SF0355).
Maropoulos, Prediction of welding distortion in butt joint of thin plates, Materials and Design, 30 (2009), p. 4126-4135
Wahab, Finite-element prediction of distortion during gas metal arc welding using the shrinkage volume approach, Journal of Materials Processing Technology, 92-93 (1999), p. 405-409
[4] Dean Deng, Hidekazu Murakawa, Prediction of welding distortion and residual stress in a thin plate butt-welded joint, Computational Materials Science, 43 (2008), p. 353-365.
Online since: September 2011
Authors: Motoi Hara, Toshio Narita, Michihisa Fukumoto, Tsuyoshi Yokota
Formation of Ni Aluminide Coating Containing Reactive Elements by Simultaneous Electrodeposition and Cyclic Oxidation Resistance Michihisa Fukumoto1, a, Tsuyoshi Yokota1 , Motoi Hara1,b and Toshio Narita2,c 1Faculty of Engineering and Resource Science, Akita University, Japan 2Center for Advanced Research of Energy Conversion Materials, Hokkaido University, Japan afukumoto@ipc.akita-u.ac.jp, bhara@ipc.akita-u.ac.jp, cnarita@eng.hokudai.ac.jp Keywords: simultaneous electrodeposition, molten salt, zirconium, hafnium, aluminum, cyclic oxidation, nickel aluminide, coating Abstract.
As such a material, we examined a Ni aluminide, and tried to coat this aluminide using an electro-plating technique.  
Hara: Journal of the Society of Materials Engineering for Resources of Japan 16 (2003), p.7-13
Fujimori: Journal of the Surface Finishing Society of Japan 54 (2003), p.798-805
Chuang: Journal of Alloys and Compounds 243(1996), p.126-132
Online since: December 2010
Authors: Hua Yang, Zhen Liu
Study on the Online Ink Testing with CCD Based on Calabro-Mercatucci Model Liu Zhen1,a, Yang Hua2,b 1College of Communication and Art Design; University of Shanghai for Science and Technology, China. 2Jiangsu Provincial Key Lab of Pulp and Paper Science and Technology, Nanjing Forestry University, China.
Experimental materials: long crane 128g/m2, Aegis 157g/m2, long crane 205g/m2 smooth coated paper; Netherlands WanSong yellow, magenta, cyan, black ink.
Fleming: Tappi Journal Vol. 12 (2007), p.27
Acknowledgment This work was supported by Science and Technology Support Project plan In The Science and Technology Commission of Shanghai Municipality: Construction of Digital Printing Online Integrated Management and Service Platform.(09220502700).
Online since: September 2013
Authors: Wang Yong Lv, Can Guo, Hui Qi Wang, Yun Ling
Study on heat distribution of pans * LV Wangyong1, a, GUO Can1,b , WANG Huiqi2,c, LING Yun1 1 College of Mathematics and Software Science,Sichuan Normal University,Chengdu, China 2 College of Mathematics ,Sichuan University,Chengdu, China alvwangy@163.com, b395505133@qq.com, cwhq80925@126.com Corresponding author , E-mail:whq80925@126.com.
Journal of Jiamusi University (Natural Science Edition), 2007, 25(4):555-557
Heat reansfer science[M] Higher Education Press ,2001 [3]Mohamed Ahmed Hussein & Thomas Becker.An Innovative Micro-modelling of simultaneous heat and moisture transfer during bread baking[J].
Two-scale analysis method for predicting heat transfer performance of composite materials with random grain distribution[J] Science in China Ser.A Mathmatics, 2004, 17(101-110).
Online since: January 2016
Authors: Jakrapong Kaewkhao, Mati Horprathum, Chanunthorn Chananonnawathorn, Suparat Tuscharoen, Pitak Eiamchai, Phattharaphong Khamkhom, Sukon Kalasung
Hydrothermal of ZnO Nanorod Arrays on ITO Transparent Conductive Oxide Substrate: Effect of Precursor Concentration Phattharaphong Khamkhoma,1*, Mati Horprathumb,2, Pitak Eiamchaic,2, Chanunthorn Chananonnawathornd,2, Sukon Kalasunge,3, Suparat Tuscharoenf,4, Jakrapong Kaewkhaog,4 1Program of Physics, Faculty of Science, Buriram Rajabhat University, Buriram, 31000, Thailand 2Optical Thin-Film Laboratory, National Electronics and Computer Technology Center, Pathumthani, 12120, Thailand 3Department of Physics, Faculty of Science and Technology, Thammasat University, Pathumthani, 12121, Thailand 4Center of Excellence in Glass Technology and Materials Science (CEGM), Nakhon Pathom Rajabhat University, Nakhon Pathom 73000, Thailand atae_4615394@hotmail.com, bmati.horprathum@nectec.or.th, cpitak.eiamchai@nectec.or.th, dchanunthorn_fon@hotmail.com, esukon.kalasung@gmail.com, ftuscharoen@hotmail.com, gmink110@hotmail.com Keywords: ZnO nanorods,
Acknowledgments This work was supported by Program of Physics, Faculty of Science, Buriram Rajabhat University, Buriram.
Reference [1] Yuanyao Dou, Fang Wu, Caiying Mao, Liang Fang, Shengchun Guo, Miao Zhou, Enhanced photovoltaic performance of ZnO nanorod-based dye-sensitized solar cells by using Ga doped ZnO seed layer, Journal of Alloys and Compounds, Volume 633, 5 June 2015, Pages 408-414 [2] Wei-Xuan Jing, Yan-Yan Cheng, Han Qi, Zhuang-De Jiang, Fan Zhou, Jia-Fan Shi, Kun Gao, Hydrothermal fabrication of ZnO nanorod-based grating patterns with arrays of optical fiber cores as templates, Superlattices and Microstructures, Volume 82, June 2015, Pages 124-135 [3] Nanaji Islavath, Easwaramoorthi Ramasamy, Dibakar Das, Shrikant V.
Online since: August 2014
Authors: Li Guo Wan, De Jun Bian, Sheng Shu Ai, Yan Bo Xiao, Shou Tao Li, Zhi Min Ren
Materials and Methods Experimental equipment.
Acknowledgements This work was financially supported by National Natural Science Foundation of China (51078067), Science and Technology Development Plan Foundation of Jilin Province (20130522074JH,201201134) and Science and Technology Research Project of Education Department of Jilin Province (2014341).
Research of Environmental Sciences.
Journal of Jilin Architectural and Civil Engineering Institute, Vol.24(2) (2007), p29 (In Chinese) [5] Chengqiang Wu, Jincui Yang, Min Yang and Wenzhou Lv.
Online since: December 2012
Authors: Guang Zeng, Hui Juan Yue, Fang Fang Jian, Xi Shi Tai, Hai Xing Liu, Jing Wang
China 2 New Materials & Function Coordination Chemistry Laboratory, Qingdao University of Science and Technology, Qingdao 266042, P.R.China 3 State Key Laboratory of Inorganic Synthesis and Preparative Chemistry, College of Chemistry, Jilin University, Changchun 130012, P.R.
Acknowledgments This study were supported by the Natural Science Foundation of Shandong Province (No.
ZR2010BL025),State Key Laboratory of Inorganic Synthesis and Preparative Chemistry (Jilin University)(No. 2011-13), MOE Key Laboratory of Analytical Chemistry for Life Science (Nanjing University)(No.
KLACLS1002) and the National Science Foundation of China (No. 21171132) References [1] I.
Belyakov Synthesis and crystal structure of potassium bis (malonato) borate Russian Journal of Inorganic Chemistry, 2007, 52(5), 686-690 [2] Je ro me Andrieux, Christelle Goutaudier, Laetitia Laversenne, Erwann Jeanneau and Philippe Miele Synthesis, Characterization, and Crystal Structure of a New Trisodium Triborate, Na3[B3O4(OH)4] Inorg.