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Online since: October 2013
Authors: Hai Zhou, Wei Qing Huang, Xi Fu Chen, Yu Liang
NP2012201), Basic research research fund of Jiangsu Province Natural Science Fund Project (BK2008197), Key Laboratory for Advanced Technology in Environmental Protection of Jiangsu Province(AE201120), Key Laboratory for Ecological-Environment Materials of Jiangsu Province(EML2012013) and International Science and Technology Cooperation Appointed Special Projects.
Smart Materials and Structures, Vol. 14,934-940 ( 2005) [4] Shi Yunlai,Li Yubao, Zhao Chunsheng.
Journal of Jili University:Science Edition,Vol.40,109 -113(2002) [6] Zhao Hongwei.Basic theory and experimental study on inchworm-type piezoelectric actutor[D].Jilin:Jilin University(2006) [7] Wen Jianming.Study on planar inertia piezoelectric moving mechanism[D].Jilin:Jilin University(2009)
Online since: August 2013
Authors: Ping Ning, Zhi Yuan Ning, Jun Jie Gu, Qing Qing Guan
Partial Oxidation of Phenol in Supercritical Water Zhiyuan Ning1, Qingqing Guan1,a, Ping Ning1 and Junjie Gu1 1Faculty of Environmental Science and Engineering, Kunming University of Science and Technology, Kunming 650500, China aqingqing_guan2000@yahoo.com.cn Keywords: Phenol, Partial oxidation, Supercritical water, Hydrogen.
Materials and methods We purchased phenol (99.5+%) and the standard chemicals from Sigma-Aldrich (USA), other chemicals and materials were purchased from Guangzhou Chemical Reagent Company (Guangzhou, China).
Acknowledgements This work was financially supported by Yunnan Province high-tech talent introduction project (2010CI110) and Science and Technology Major Project of Yunnan Province (No. 2012ZB002).
Journal of Supercritical Fluids Vol. 50(2009), p. 155 [12] S.
Online since: June 2013
Authors: Jian Han, Dan Luo
Majorization of technical treating circle bamboo with ACQ-B Jian Hana , Dan Luob College of Material Science and Technology,Central South University of Forestry and Technology, Changsha 410004, Hunan, China a hanjianwm@163.com, b ldsicau@163.com Keywords: preservative; circle bamboo; technical condition; optimizing Abstract.
Material and methods Material.
Material and Organismen,1995, 29:4,241-253 [3] Wu Kai-yun, Weng Yue-xia.
Wood and Fiber Science,1992,24(2):113-117
Journal of Zhejiang Forestry College 1985,2(2):53-56.
Online since: January 2016
Authors: Reinhard Polak, Christian Katsich
Experimental The hardfacing materials were deposited by a EUTRONIC GAP 3001 DC PPA-device.
These test conditions are also well suited to evaluate the edge stability of sample materials.
Santos, Pulsed current plasma transferred arc hardfacing, Journal of Materials Processing Technology 171 (2006) 167-174
Srivatsavan, Comparative study of hardfacing of valve seat ring using MMAW process, Journal of Materials Processing Technology 207 (2008) 356-362
Li, Effect of carbonitride precipitations on the abrasive wear behaviour of hardfacing alloy, Applied Surface Science 254 (2008) 5023-5027
Online since: November 2013
Authors: Narissara Kulpreechanan, Tanom Bunaprasert, Ratthapol Rangkupan
Introduction Electrospinning is an established method of producing ultrafine continuous nanofibers of polymers and inorganic oxide materials.
Experiment Materials.
Teoh : Materials Science and Engineering C Vol. 27 (2007), p. 325–332 [9] Z.
Zheng : Materials Science and Engineering C Vol. 30 (2010), p. 1014–1021 [10] K.
Rangkupan : Advanced Materials Research Vol. 701 (2013), p. 420-424
Online since: May 2011
Authors: Chun Yang, Ming Ji He, Jian Cai, Yan Sheng Huang, Yi Wu
Acknowledgements Funding for this research project was sponsored by the National Natural Sciences foundation (Project No. 50878087), the Guangdong Province Natural Sciences foundation (Project No. 8151009101000010), the Fundamental Research Funds for the Central Universities (Project No.20092M0230), State Key Laboratory of Subtropical Building Science Project (Project No.X2TJ-C709025z) and the Ministry of Construction (Project No. 2009-k2-36) of China.
Journal of Structural Engineering, 2000, 126(5):605-611 [4] Dooley K.L., Joseph M.
ACI Structural Journal, 2001, 98(6):843-851 [5] Yuan Xianxun, Yi Weijian.
Journal of Chongqing Jianzhu University, 2000, 22(3):64-68(in Chinese) [6] Yang Hong, Wei Feng, Bai Shaoliang, Wang Zhen.
Journal of Building Structures, 2001, 22(6):81-86(in Chinese) [10] Elnashai A, Borzi B, Vlachos S.
Online since: December 2014
Authors: Lian Meng Chen, Yi Yi Zhou, Lin Fu, Bin Wu, Zi Hao Zhang, Xi Guo Ye
Acknowledgements The work was supported by the National Natural Science Foundation of China (Grant No. 51108347, 51108348, 51308080), the Natural Science Foundation of Zhejiang Province (Grant No.
International Journal of Solids and Structures, 30(21):3025-3035(1993)
International Journal of Solids Structures, 22(4): 409-428(1986)
Journal of Building Structures, 25(6), 9-14 (2004)
International Journal of Solids and Structures. 44(9):2773-2782(2007)
Online since: February 2026
Authors: Terence G. Langdon, Yi Huang, Sergei Smirnov, Yuri Shapovalov, Mykhailo Tikhonovsky, Elena Tabachnikova, Yuri Semerenko, Igor Kolodiy, Tetiana Hryhorova, Ivan Kashuba, Tetiana Tykhonovska, Sergii Shumilin
Such a comparison will be useful for further application of these alloys as structural materials in a wide temperature range.
Materials and Methods of Research Coarse-grained nonequiatomic MEA TWIP and MEA TRIP were prepared by arc melting.
Huang, Microstructure and properties of Co-Cr-Fe-Mn-Ni-based high-entropy alloys with Al addition through heat treatments, Journal of Materials Engineering and Performance (2025) 1–14.
Biswas, Micro-mechanisms of shear deformation during high-pressure torsion of equiatomic FeMnNi medium entropy alloy, Journal of Materials Science (2025) 1–27.
Mesbahi, Phase stability, structural properties, electronegativity, mechanical properties, and neutron and gamma-ray attenuation properties of Cantor high-entropy alloys for advanced nuclear applications, Journal of Materials Engineering and Performance 34 (15) (2025) 16214–16229.
Online since: December 2013
Authors: Xiao Dong Zhang
The geometry and material parameters are l=6,h=0.4, E=3.0e10, v=0.2,ρ=2550。
The present study provides a new idea for the solution of crack detection problem in beam-like structures. 6 ACKNOWLEDGMENT This work was financially supported by the China National Program on Key Basic Research Project (2012CB723807), the National Natural Science Foundation of China (51208453 ) and Chongqing Municipal Natural Science Foundation of China (CSTC2010BB6019).
International Journal for Numerical Methods in Engineering.Vol. 46(1999), 131-150
A review of extended/generalized finite element methods for material modeling [J].
Modelling and Simulation in Materials Science and Engineering, Vol.17(2009), p. 043001 [5] Goldberg,D.E..
Online since: September 2007
Authors: Jun De Pan, Ping Ze Zhang, Cai E. Cui, Qiang Miao
Experiments Material preparation.
Luan: Journal of Alloys and Compounds Vol. 336 (2002), p. 113 [2] R.
Zhou: Corrosion Science Vol.42 (2000), pp. 1433-1455 [3] Z.
Wang: Transactions of material research Vol.14 (2000), pp. 449-456 [4] J.
Galun, et al.: Composites Science and Technology Vol. 63 (2003), pp. 771-778 [5] H.