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Online since: September 2013
Authors: J.X. Xue, L.L. An, Q.P. Sun
Swain: Journal of Materials Science 10(1)(1975)113–122 [3] S.
Waida: Journal of Materials Processing Technology. 48(1-4)(1995) 267–274 [11] Information on http://www.winterthurusa.net [12] C.
Cai: Key Engineering Materials. 259-260(2004) 244–248 [20] Z.B.
Holl: Journal of Materials Processing Technology. 62(4)(1996) 287–293 [25] R.
Takahashi: Journal of Materials Processing Technology. 66(1-3)(1997)18–24 [29] Y.
Online since: February 2014
Authors: Wei Yang, Yi Chi Chen, Xiao Qun Wang, Dong Xiao Han, Li Qun Zhu
Materials and Methods Materials BA, MMA, MAA, and HEMA, were all obtained from Beijing Dongfang Chemical Factory (Beijing, China); MMA and BA were vacuum distilled to eliminate the inhibitor. 2,2,2-trifluoroethyl methacrylate (TFMA) was obtained from Harbin XEOGIA Fluorine-Silicon Chemical Co.
Narita, Journal of Polymer Science Part A: Polymer Chemistry, 42 (2004) 4101-4125
Lee, Surface Science, 532 (2003) 328-333
Qing, Journal of Applied Polymer Science, 119 (2011) 84-92
Wu, Journal of Saudi Chemical Society, (2011) 1-6
Online since: November 2012
Authors: Jin Yu, Yan Yan Cai, Lin Tao Yang, Kang Mu
Non-coaxiality has been recognized as an important feature of grain materials in geotechnical engineering.
Several researchers in Japan have also worked on the behaviour of granular materials using the HCA for a long time, and have achieved prominence.
Yu: International Journal for Numerical and Analytical Methods in Geomechanics. 30: 1-19(2006)
Yu: International Journal for Numerical and Analytical Methods in Geomechanics. 29: 643-661(2005)
Gens: I IUTAM Conference on deformation and failure of granular materials.
Online since: October 2013
Authors: Jie Chen, Zhen Kun Lin, Jun Hui Wu, Hui Ping Si, Kai Yan Lin, Xue Jun Yang
Carbonized materials were formally used as soil amendment material in Japan, and it was a common practice to apply the PA together with biochar.
Soil Science Society of America Journal, 2002, 66(4): 1249-1255
Chinese Journal of Soil Science, 2003,34(4): 349-355(In Chinese)
Soil Science Society of America Journal, 2006, 70(2): 448-453
Soil Science Society of America Journal, 2011, 75(3): 871-879
Online since: May 2017
Authors: Naoshi Ozawa, Shinichi Nishida, Hideto Harada, Yuto Takigawa, Junshi Ichikawa, Hiroto Ohashi, Yuta Kashitani, Ryosuke Okushima, Tomoya Suzuki
Nijhof, Journal of Materials Processing Technology, 229 (2016), 139-148
Kumai, Journal of Materials Processing Technology, 191, 1-3 (2007), 238-241
Kumai, Journal of Materials Processing Technology, 172, 2 (2006), 271-276
Watari, Journal of Materials Processing Technology, 153-154 (2004), 42-47
Suzuki, Journal of Materials Processing Technology, 143-144 (2003), 895-900
Online since: March 2013
Authors: Xu Jun Mi, Bai Qing Xiong, Guo Liang Xie, Qiang Song Wang, Xiang Peng Xiao
Watanabe, Microstructure and mechanical properties of Cu–Ni–Si alloys [J], Materials Science and Engineering A. 483-484 (2008) 117-119
Vincent, Dynamic embrittlement at intermediate temperature in a Cu–Ni–Si alloy [J], Materials Science and Engineering A. 477 (2008) 145-152
Albert, Precipitation processes in Cu-Co-Si alloys [J], Journal of Materials Science. 23 (1988) 4059-4065
Jin, Aging behavior of Cu–Ni–Si alloy, Materials Science and Engineering A. 361 (2003) 93-99
Noble, Precipitate structure in a Cu-Ni-Si alloy, Journal of Materials Science. 29 (1994) 218-226
Online since: November 2014
Authors: Adam Lipski
Japan Society of Materials Science, Elsevier, New York, 1987
Collins, Failure of materials in mechanical design - analysis, prediction, prevention.
Skibicki, Variations Of The Specimen Temperature Depending On The Pattern Of The Multiaxial Load - Preliminary Research, Materials Science Forum, Vol. 726 (2012), pp. 162-168
Boroński, Use of Thermography for the Analysis of Strength Properties of Mini-Specimens, Materials Science Forum, Vol. 726 (2012), pp. 156-161
Risitano, Thermographic methodology for rapid determination of the fatigue limit of materials and mechanical components, International Journal of Fatigue, Vol. 22, No. 1 (2000), pp. 65–73
Online since: February 2011
Authors: Ching Kuo Wang
Analysis and Implementation of Coulomb’s Frictional Material on the Wheeled Platform of Moving Robots Ching-Kuo Wang 111, Gongjung Rd., Jonghe City, Taipei County, TAIWAN, R.O.C.
Figure 1 shows Coulomb’s braking material of the vehicle dynamics.
Acknowledgement Financial supports for this work are provided by the National Science Council, Taiwan, R.O.C., under the contract 99-2221-E-146-007, 98-2622-E-146-001-CC2, and 99-2622-E-002-033-CC2.
Crouch, ‘Newton Law and Integral of Nonholonomic Systems,’ SIAM Journal on Control and Optimization, Vol.36, Iss.6 (1998), p.2020-2039
Journal of the Chinese Institute of Engineers, (JCIE), Vol. 33, No.2(2010), p. 153-161
Online since: March 2020
Authors: Muthia Elma, Amalia Enggar Pratiwi, Aulia Rahma, Erdina Lulu Atika Rampun, Noni Handayani
High concentration of siloxane groups represent the mesoporous or microporous [5, 6] in silica-pectin materials.
This result show similar data saying that the carbon chains produced from pectin (apples) strengthen the hydrostability of the materials.
However, the temperature of calcination may influence the carbon chains bonding in the silica-pectin materials.
Diniz da Costa, Cobalt oxide silica membranes for desalination, Journal of Colloid and Interface Science 368(1) (2012) 70-76
Nenkova, Synthesis and characterization of pectin/SiO2 hybrid materials, Journal of Sol-Gel Science and Technology (2017)
Online since: November 2006
Authors: Norio Kawagoishi, Qing Yuan Wang, Q. Chen, M. Oki
Material and Experimental Procedure The material used was an extruded age-hardened Al alloy 7075-T6 whose chemical composition (wt%) was 0.09Si, 1.47Cu, 0.25Fe, 0.03Mn, 2.56Mg, 0.19Cr, 5.46Zn, Zr+Ti0.03, 0.03Ti and remainder Al.
Nagata, Fatigue & Fracture of Engineering Materials & Structures, Vol.25 (2002), p.735
Tanimura, Journal of the Society of Materials Science, Japan, Vol.47 (1998), p.1053
Waldron, Journal of Materials Science, Vol.6 (1971), p.319
Sayama, Journal of the Society of Materials Science, Japan, Vol.31 (1982), p.383