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Online since: August 2013
Authors: Fahad Irfan Siddiqui, Syed Baharom Syed Osman, Mohammad Yaakob Behan
Richard, "Electrical resistivity survey in soil science: a review," Soil and Tillage Research, vol. 83, pp. 173-193, 2005
Singh, "Artificial neural network models for predicting electrical resistivity of soils from their thermal resistivity," International Journal of Thermal Sciences, vol. 49, pp. 118-130, 2010
Asci, "Correlation between electrical resistivity and soil-water content: Istanbul and Golcuk," International Journal of Physical Sciences, vol. 4, pp. 362-365, 2009
Karabulut, "Correlation between electrical resistivity and soil-water content based artificial intelligent techniques," International Journal of Physical Sciences, vol. 5, pp. 47-56, 2010
Park, "Sensitivity of leachate and fine contents on electrical resistivity variations of sandy soils," Journal of Hazardous Materials, vol. 84, pp. 147-161, 2001
Online since: June 2014
Authors: Karim bin Deraman, Wan Nurulhuda Wan Shamsuri, Jackie Chen Keng Yik, Ong Wai Kit
RELATIONSHIP BETWEEN PRECURSOR GAS FLOW RATE WITH THE STRUCTURAL AND MORPHOLOGY PROPERTIES OF DIAMOND LIKE CARBON FILMS Ong Wai Kit1, a, Karim Deraman1, b, Wan Nurulhuda Wan Shamsuri1, c and Jackie Chen Keng Yik1, d 1Phosphor Materials Research Group, Department of Physics, Faculty of Science, Universiti Teknologi Malaysia, 81310 UTM Skudai, Johor, Malaysia.
DLC films are amorphous materials with carbon atoms bonded in maily sp2 and sp3 hybridizations [4].
[4] Alfred Grill, Diamond-Like Carbon: State of the Art, Journal of Diamond and Related Materials, 8 (1999) 428-434
Hirose, NEXAFS Characterization Of Nanocrystalline Diamond Thin Films Systhesized With High Methane Concentrations, Journal of Diamond and Related Materials, 16 (2007) 730-734
Hirose, Effects Of Hydrogen Flow Rate On The Growth And Field Electron Emission Characteristics OF Diamond Thin Films Synthesized Through Graphite Etching, Journal of Diamond and Related Materials, 16 (2007) 1623-1627
Online since: November 2010
Authors: Yin Qun Hua, Rui Fang Chen, Guang Ji, Zhen Zhen Sun
China 3School of Material Science and Engineering, Jiangsu University, Zhenjiang 212013, P.R.
The phase transition mechanism of ZnO varistor ceramics induced by laser shock wave is the same as that of the metal materials in principle.
In fact, plastic deformation of metal materials is induced by laser shock wave, but elastic deformation of ceramic materials was induced.
Carlson: Journal of Materials Science, Vol. 20(1985), pp. 3487-3500
Huazhong Univ. of Sci. & Tech,(Nature Science Edition).
Online since: May 2016
Authors: You Dan Guo
The effect of hot forming on the mechanical properties of materials has also attracted the attention of scholars.
Mechanical Properties and Characteristics of hot formed materials.
Hot stamping processing experiments of quenchable boron steel, Materials Science and Technology. 16(2008)172-175 [10] C.
Microstructure and Mechanical Behavior of New Type Multi-layer Metallic Composite Material in Hot Forming, Journal of Materials Engineering. 5(2011)88-92 [12] C.
Grzyb, Boron-treated micro alloyed quenched and tempered plates, their structure and properties, Journal of Materials Processing Technology, 1997 ,64 [17] Y.X.
Online since: September 2013
Authors: Xin Hua Yang, Guo Wei Zeng, Qin Qian
Collop: Construction and Building Materials Vol. 22 (2008), p. 972
Cao: Journal of Materials in Civil Engineering Vol. 21 (2009), p. 135
Du: Construction and Building Materials Vol. 19 (2005), p. 147
Jiang: Journal of Mechanics Vol. 28 (2012), p. 569
Tian: Journal of Mechanics Vol. 27 (2011), p. 521
Online since: March 2010
Authors: Jun Wei Zhao, Xue Wen Chen, Dong Won Jung
Improvement of Hole Flanging Product Forming Process Using Finite Element Simulation Xuewen Chen 1, a, Junwei Zhao 2, b and Jung DongWon 3, c 1, 2 Material Science & Engineering College, Henan University of Science & Technology, 48, Xiyuan Road, Luoyang, 471003, China 3 Department of Mechanical Engineering, Cheju National University, South Korea a Chenxwdavid@163.com, bzhaojunwei869@126.com, cjdwcheju@cheju.ac.kr Keywords: Hole Flanging, Forming, Cold Forging, Finite Element Analysis.
Tanaka: Journal of Materials Processing Technology Vol.98, (2000), p. 196-204
Duncan: International Journal of Mechanical Science Vol.12, (1970), p. 463-477
Iijima: Journal of the Japan Society for Technology of Plasticity Vol.41 (476), (2000), p. 921-925
Travis: Journal of Materials Processing Technology Vol.140, (2003), p 70-75
Online since: September 2019
Authors: Y.A. Bistrova, A. Unt, R.V. Mendagaliev, M.O. Gushchina, E.A. Shirokina
Materials and research methodic This research focuses on investigation of the samples obtained by direct laser deposition.
Clare, In-situ synthesis of titanium aluminides by direct metal deposition,Journal of Materials Processing Technology. 239 (2017) 230-239
Gao, Study on microstructure, mechanical properties and machinability of efficiently additive manufactured AISI 316L stainless steel by high-power direct laser deposition, Journal of Materials Processing Technology. 240 (2017) 12-22
B, Metal Fabrication by Additive Manufacturing Using Laser and Electron Beam Melting Technologies,Journal of Materials Science & Technology. 28 (2012) 1-14
[14] Turichin G.A, Klimova O.G, Babkin K.D, Pevzner Y.B., Effect of thermal and diffusion processes on formation of the structure of weld metal in laser welding of dissimilar materials, Metal science and heat treatment. 55 (2014) 569-574
Online since: November 2012
Authors: Yan Ru Li, Ze Bao Kan, Hai Bo Jiang
The equal projection model and application of short fiber reinforced concrete Yanru Li a, Haibo Jiang b and Zebao Kan c Department of Logistics Command and Engineering, Naval University of Engineering, Tianjin, 300450,China; ayanru_li@126.com, bjianghaibo022@126.com, ckanzebao@163.com Keywords: composite material; fiber reinforced concrete; fiber direction distribution; performance prediction; elastic modulus Abstract.
References [1] T.L Teng; Y.A, Chu, F.A Chang, H.S Chin: Computational Materials, Science, Vol. 31 (3) (2004 -11) ,P. 337-346 [2] J.H Huang: Materials Science and Engineering A, 315 (2001), p. 11-20
[3] A.S Ezeldin, P.N Balaguru: Journal of Materials in civil Engineering, vol.4 (4) (1992), p. 415-429 [4] P.Y.Pawade, A.M.Pande, P.B.NagarnaikK: International Journal of Advanced Engineering Sciences and Technologies, Vol. 7(2), (2011), p. 169 - 177 .
Online since: May 2011
Authors: Chao Hua Zhang, Shan Shan Cheng, Xi Hong Yang, Wan Cui Xie
Materials and methods Chemical.
Rengaraj, Kyeong-Ho Yeon, Seung-Hyeon Moon: Journal of Hazardous Materials Vol. 87(2001), p. 273–287 [11] K.H.
Chu: Journal of Hazardous Materials Vol. 90(2002), p. 77–95 [12] Sandhya Babel, Tonni Agustiono Kurniawan: Journal of Hazardous Materials Vol. 97(2003), p. 219–243 [13] E.
Muniz: Journal of Hazardous Materials Vol. 147(2007), p. 139–147 [19] A.V.
Shahi: Journal of Hazardous Materials Vol. 172(2009), p. 1041-1048
Online since: October 2010
Authors: Yan Liu, Yin Zhe Jin, Ying Sen Li, Cheng Chu Liu, Zhuo Ping Ding, Jia Le Li
Materials and methods Raw materials and chemicals.
Standard protein were purchased from Shengzheng Biological Science and Technology Co., Ltd (Shanghai, China).
Laurens: Journal of Chromatography B, Vol. 804 (2004), p. 345
Journal of Chromatography A, Vol. 17 (1965), P 245
(Science Publications, China 2000)