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Online since: July 2011
Authors: Shu Hua Hu, Fu Ping Liu, Yong Gang Yang
Experimental Materials and Instruments 70 g/m2 offset paper, 80 g/m2 offset paper, 80 g/m2 offset paper, 45 g/m2 newsprint, 48 g/m2 newsprint, marked respectively as sample 1#, 2#, 3#, 4#, 5#; A quick-drying magenta ink;IGT AIC2-5 printability tester, ProGage thickness meter, 4XB-TV Metallographic microscope, WSB-Ⅱbrightness tester.
(In Chinese) [3] Yang L,Fogden A, Pauler N,et al.Studying ink penetration with microscopic and spectroscopic techniques[J].Journal of Imaging Science and Technology,2006,50(4):327-332
[5] Ozaki Y, Bousfield D,Shaler S.Three-dimensional characterization of ink vehicle penetration by laser scanning confocal microscopy[J].Journal of Pulp and Paper Science.2005,31 (1):48-52
[8] Hakola E,Koskinen J,Forsström U.Toner penetration into porous substrates[J].Journal of Imaging Science and Technology,2008,52(4):1-8
[9] Provatas N,Uesaka T.Modelling paper structure and paper-press interactions[J].Journal of Pulp and Paper Science,2003,29 (10):332-340.
Online since: March 2013
Authors: Bin Jiang, X.L. Liu, L. Jiang, Y.J. Yang, M.L. Zheng
Kakemono, Journal of Micromechanics and Micro-engineering, 19 (2009) 75-79
Mativenga, Journal of Manufacturing Science and Engineering, 127(2005) 63 [5] D.W.
Hu, Metallurgical And Materials Transactions A: Physical Metallurgy and Materials Science, 40 (2009) 32-45 [6] K.R.
Yang, Materials Science Forum, 293-298 (2008) 151-156
Park, Key Engineering Materials, 885-888(2007) 103-107.
Online since: July 2013
Authors: Ying An, Kun Ma, Wei Min Yang, Jian Bo Shao, Xue Tao He, Jian Qiang Wang
The phenolic hollow microsphere material is a brittle material.
Synthesis and characterization of hollow phenolic, polymer materials and engineering 4 (2006) 36-39 [3] E.M.Wouterson , F.Y.C.Boey, X.Hu, et al.
Composites science. 1112 (2005) 1840-1846 [7] T.L.
Chinese journal of Aeronautics, 4 (2005) 372-377 [8] W.
Preparation and properties of high damping fly ash/epoxy composites, Functional materials 38 (2007) 764-769 [11] Jianmin Xu, Jiancheng Xu.
Online since: May 2011
Authors: Guo Dong Zheng
The internal forces and the stress of all kinds of materials in the reinforcement section and the deformation of the beam can be calculated
In the calculation the elastic modulus of various materials are: ordinary steel Es= 210GPa = 210 × 103MPa, FRP materials Ecf = 230MPa and the concrete at the initial moment Ec(t0) = 2.55 × 104MPa.The protective layer thickness of the beam is 15mm.
It can be seen that the stress changes of a variety of materials with time are quite different when the initial stress are different greatly.
Journal of Tongji University (Natural Science) .1991,19(1):23-32
Journal of Structural Engineering, 1994, 120(3): 1016-1042.
Online since: August 2013
Authors: Shun Xi Gao, Qing Liang Zhang
Heywood, Size effect in fatigue of plain and notched steel specimens, WEP 65 (1951), 113-124 [5] X-S Wang, X Lu, D-H Wang, Investigation of surface fatigue microcrack growth behavior of cast Mg-Al alloy, Materials Science and Engineering A364 (2004), 11-16 [6] A.
Aspinwall, Surface integrity and fatigue life of turned gamma titainium aluminide, Journal of Materials Processing Technology 72 (1997), 413-420 [7] E.
Fitzpatrick, The onset of tensile stresses in grinding of hardened steels, Material Science and Engineering A367 (2004), 132-142 [14] W.
Kahles, Surface Integrity of Machined Structural Components, air force materials laboratory technical report AFML-TR-70-11, MMP project no. 721-8, Metcut Research Associates Inc, Cincinnati, Ohio, (1970) [15] M.
Ritchie, On the influence of mechanical surface treatments – deep rolling and laser shock peening – on the fatigue behavior of Ti-6Al-4V at ambient and elevated temperatures, Materials Science and Engineering A355 (2003), 216-230
Online since: June 2014
Authors: Zhong Ning Shi, Morigen Gaowa Bao, Zhao Wen Wang, Bing Liang Gao, Xian Wei Hu, Jiang Yu Yu
Materials Letters, 1996, 27(7): 343−347
Materials Science and Engineering A, 2009, 518: 100−107
Journal of Northeastern University: Natural Science, 2006, 27: 513−516.
Journal of Northeastern University :Natural Science, 33.6(2012):866-869
Journal of Northeastern University:Natural Science,2000,21: 63-65.
Online since: January 2013
Authors: Hui Rong, Long Zhi Li, Chun Xiang Qin
Research on Consolidation of Tailings by Microbially Induced Cementation Longzhi Lia, Chunxiang Qinb and Hui Rongc College of Materials Science and Engineering, Southeast University, Nanjing 211189, China alilongzhi1987@126.com, bcxqian@seu.edu.cn, cxiaozhuronghui@126.com Keywords: Aicrobe cementitous materials, Tailings, Consolidation.
Mill tailings are the finely ground, mineral-processing waste materials generated after extraction of minerals, the disposal of which is a major environmental problem for the mining industry [1-2].
Cementation experiments Materials.
Journal of Coal Science and Engineering (China). (2011) 355-359
Science in China Series D: Earth Sciences. (2008) 30-40
Online since: September 2013
Authors: Bondan Tiara Sofyan, Sigma Rizkyardiani
Materials Science and Engineering A, 2010. 527(7): p. 2036-2044
Journal of Materials Science, 2008. 43: p. 7344-7348
Materials Science and Engineering A, 2004. 382(1): p. 351-361
Journal of Materials Science and Technology, 2000. 16(3): p. 319-322
Journal of Materials Science, 1998. 33: p. 3491-3503
Online since: February 2013
Authors: Qing Xue Huang, Xiu Lian Gong, Jian Mei Wang, Hong Jie Li, Chang Jiang Ju
Chinese journal of materials research, 2000, 14(1): 12-16(in Chinese) [2] X.G.
Journal of plasticity engineering, 2008, 15(5): 191-194(in Chinese) [3] H.Y.
Journal of Sichuan university (Engineering science edition), 2011, 43(1): 247-251(in Chinese) [6] Y.G.
Journal of University of Science and Technology Beijing, 2001, 23(6):557-559 [9] J.Z.
Journal of iron and steel research, 1983, 3(2): 296-301(in Chinese) [10] Y.Y.
Online since: December 2014
Authors: Hong Yun Zhao, Wei Wei Wang, Xu Jian Yang, Xiao Qi Ren
Localization on Technologies and Equipments of Hot-Stamping Xujian Yang1,a,*, Weiwei Wang1,b, Hongyun Zhao1,c, Xiaoqi Ren2,d 1School of Materials Science and Engineering, Harbin Institute of Technology, Weihai 264209, China 2Jintai group corporation, Dongying 257335, China ajobyxj@126.com, bhitwww@sina.com, chy_zhao66@163.com, drcxing2012@163.com Keywords: ultra high strength steel, hot stamping, production line, localization Abstract.
Journal of Materials Processing Technology,2006,177: 396-400
The effects of non-isosthermal deformation on martensitic transformation in 22MnB5 steel [J].Materials Science and Engineering,2008,487: 445-455
Journal of Materials Processing Technology,2006,177: 452-455 [5] Bailiang Zhuang, Zhongde Shan.
Journal of Materials processing Technology, 2010, 210:2103-2118