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Online since: September 2014
Authors: Dae Hyun Jeong, Young Il Kwon
Furthermore, social network analysis offers a strong analytical method in the social science field to analyze informal connections between units, whose results can be applied to various fields such as psychology, health, and electronic communications.
Index of Diversity Fig. 1 Aggregated journal-journal citation matrix with citing and cited vectors for each journal, and six possible measures of “interdisciplinarity” Many studies have been conducted regarding convergence index and proposed network index (based on degree centrality), journal index (Shannon Entropy and Gini Index), and recently, Rao-Stirling measures.
Shannon Entropy and Gini Index measure journal citation statistics and citation index with co-occurrence matrix [5].
Typically, a polymer substance manufacturing (C08J-005) field and a conductor or conducting object (H01B-001) field comprising conducting materials had a high betweenness centrality.
Kwon: 2012 Green Technology Knowledge Map-Fuel Cell, Korea Institute of Science and Technology Information (2012), p.1 [2] S.J.
Index of Diversity Fig. 1 Aggregated journal-journal citation matrix with citing and cited vectors for each journal, and six possible measures of “interdisciplinarity” Many studies have been conducted regarding convergence index and proposed network index (based on degree centrality), journal index (Shannon Entropy and Gini Index), and recently, Rao-Stirling measures.
Shannon Entropy and Gini Index measure journal citation statistics and citation index with co-occurrence matrix [5].
Typically, a polymer substance manufacturing (C08J-005) field and a conductor or conducting object (H01B-001) field comprising conducting materials had a high betweenness centrality.
Kwon: 2012 Green Technology Knowledge Map-Fuel Cell, Korea Institute of Science and Technology Information (2012), p.1 [2] S.J.
Online since: February 2011
Authors: Xiao Yan Shen
During those practicable embedded strain gages, fiber Bragg grating (FBG) performs potently, for its small size and low weight, immunity to electromagnetic, easiness to be embedded in smart materials and structures which leads a low damage assessment.
References [1] J.Li, X.F.Yao, Y.H.Liu et al: Composite Part A: Applied Science and Manufacturing, Vol. 40(2009), p. 455-462 [2] A.A.Shevyrev, V.N.Kolosov, S.
Takago et al: Inorganic Materials, Vol. 45(2009), p. 1121-1125 [3] R.J.Davies, S.J.Eichhorn, J.A.Bennett et al: Journal of Materials Science, Vol.43(2008), p. 6724-6733 [4] T.Kosaka, H.Kurimoto, K.Osaka et al: Advanced Composite Materials, Vol.13 (2004), p. 157-170
[5] G.Zhou and L.M.Sim: Optics and Lasers in Engineering, Vol.47(2009),p. 1063-1068 [6] R.Silva-Munoz and R.A.Lopez-Anido: Journal of Advanced Materials, Vol.40 (2008), p. 52-72 [7] E.J.Friebele, C.G.Askins, M.A.Putnam et al: Electronics Letters, Vol.30(1994), p. 1783-1784 [8] E.J.Friebele, C.G.Askins, M.A.Putnam.
In: Proceedings of SPIE, Vol.2721(1996),p. 118-124 [9] V.Dewynter-Marty, P.Ferdinand, E.Bocherens et al: Journal of Intelligent Material Systems and Structures, Vol.9(1999), p.785-787 [10] K.Peters, M.Studer, J.Botsis et al.
References [1] J.Li, X.F.Yao, Y.H.Liu et al: Composite Part A: Applied Science and Manufacturing, Vol. 40(2009), p. 455-462 [2] A.A.Shevyrev, V.N.Kolosov, S.
Takago et al: Inorganic Materials, Vol. 45(2009), p. 1121-1125 [3] R.J.Davies, S.J.Eichhorn, J.A.Bennett et al: Journal of Materials Science, Vol.43(2008), p. 6724-6733 [4] T.Kosaka, H.Kurimoto, K.Osaka et al: Advanced Composite Materials, Vol.13 (2004), p. 157-170
[5] G.Zhou and L.M.Sim: Optics and Lasers in Engineering, Vol.47(2009),p. 1063-1068 [6] R.Silva-Munoz and R.A.Lopez-Anido: Journal of Advanced Materials, Vol.40 (2008), p. 52-72 [7] E.J.Friebele, C.G.Askins, M.A.Putnam et al: Electronics Letters, Vol.30(1994), p. 1783-1784 [8] E.J.Friebele, C.G.Askins, M.A.Putnam.
In: Proceedings of SPIE, Vol.2721(1996),p. 118-124 [9] V.Dewynter-Marty, P.Ferdinand, E.Bocherens et al: Journal of Intelligent Material Systems and Structures, Vol.9(1999), p.785-787 [10] K.Peters, M.Studer, J.Botsis et al.
Online since: November 2012
Authors: Zhi Min Su, Liang Wu, Yi Zhi Yan
In the seismic analysis of arch dams, the interaction between the dam, reservoir water, sediments and foundation should be considered, in the previous analysis, the sediments were simulated as elastic materials, the plastic natures of sediments were considered less, in this article the sediments were simulated as elastic-plastic materials, the finite element models of the arch dams - the elastic-plastic sediments - reservoir - foundation systems were established, the infinite radiation damping of foundation was simulated by the viscoelastic boundary, and the seismic waves were inputted in the forms of equivalent loads from the nodes of artificial boundary.
1.
Acknowledgements This work was financially supported by the National Natural Science Foundation (51169009, 51069003), Yunnan Provincial Natural Science Foundation (KKSA201104045).
Journal of Engineering Mechanics, ASCE, Vol. 112(1986) No.7, p.654
Journal of Engineering Mechanics, ASCE, Vol. 123(1997) No.4, p.302
Journal of Hydrodynamic Engineering, Vol. 37(2006) No.9, p.1063.
Acknowledgements This work was financially supported by the National Natural Science Foundation (51169009, 51069003), Yunnan Provincial Natural Science Foundation (KKSA201104045).
Journal of Engineering Mechanics, ASCE, Vol. 112(1986) No.7, p.654
Journal of Engineering Mechanics, ASCE, Vol. 123(1997) No.4, p.302
Journal of Hydrodynamic Engineering, Vol. 37(2006) No.9, p.1063.
Online since: October 2010
Authors: Zhi Ping Wang, Huai Zhi Wang, Yang Lu
However, thermal spray materials which determine the microstructure of the coating restrict its further development.
At present, various brands and components materials are at home.
Transactions of Materials and Heat Treatment, Vol.6 (2007), p. 104 [7] 《Casting non-ferrous alloy and melting》 Compile a joint compilation[M].
Corrosion Science, Vol. 7 (2005), p. 1738 [9] Savaskan T, Aydin M.
Materials Characterization, Vol. 4 (2004), p. 269 [10]Wei Baoming.
At present, various brands and components materials are at home.
Transactions of Materials and Heat Treatment, Vol.6 (2007), p. 104 [7] 《Casting non-ferrous alloy and melting》 Compile a joint compilation[M].
Corrosion Science, Vol. 7 (2005), p. 1738 [9] Savaskan T, Aydin M.
Materials Characterization, Vol. 4 (2004), p. 269 [10]Wei Baoming.
Online since: May 2010
Authors: Yong Jian Mao, Yi Xia Yan, Han Jun Huang
Huang: Applied Mechanics and Materials
Vols. 20-23 (2010), pp. 1458-1462
[7] M.
Fan: Journal of Tongji University Vol. 29 (2001), pp. 1213-1219 [17] F.L.
Zhu: Journal of Wuhan University of Technology (Transportation Science & Engineering) Vol. 28 (2004), pp. 212-215 [23] K.
Liu: Journal of Wuhan University of Technology (Transportation Science & Engineering) Vol. 33 (2009), pp. 287-290 [37] Y.A.
Singh, in: Proceedings of 39th Annual Technical Meeting of Institute of Environment Science (1993), pp. 267-272 [39] E.C.
Fan: Journal of Tongji University Vol. 29 (2001), pp. 1213-1219 [17] F.L.
Zhu: Journal of Wuhan University of Technology (Transportation Science & Engineering) Vol. 28 (2004), pp. 212-215 [23] K.
Liu: Journal of Wuhan University of Technology (Transportation Science & Engineering) Vol. 33 (2009), pp. 287-290 [37] Y.A.
Singh, in: Proceedings of 39th Annual Technical Meeting of Institute of Environment Science (1993), pp. 267-272 [39] E.C.
Online since: March 2011
Authors: Bo Zhao, C.Y. Zhao, G.F. Gao
For the metal or resin-bonded grinding wheel surface dressed by elliptical ultrasonic vibration, its material removal mechanism may primarily be the removal of bonding ductility and the fine-crushing of abrasive grains; for the metal-bonded grinding wheel surface dressed by ordinary method, its material removal mechanism may primarily be the fracture and break of abrasive grains, secondly be the fracture of bonding agent; and for the resin-bonded grinding wheel surface, its material removal mechanism may mainly be the looseness and shedding of abrasive grains caused by the fracture of bonding agent, secondly be the fracture of abrasive grains.
The material removal mechanism of that dressed by elliptical ultrasonic vibration may mainly be the removal of bonding ductility and the fine-crushing of abrasive grains, while the material removal mechanism of the metal-bonded grinding wheel surface dressed by ordinary method may primarily be the fracture and break of abrasive grains, secondly be the fracture of bonding agent; and for the resin-bonded grinding wheel surface, its material removal mechanism may mainly be the looseness and shedding of abrasive grains caused by the fracture of bonding agent, secondly be the fracture of abrasive grains.
Acknowledgement This work is financially supported by National Natural Science Foundation of China (No. 50975080)and Key Laboratory of Mechanical Engineering of Henan Province.
Tech. (2008), doi:10.1016/j.jmatprotec.2007.12.115 [2] Yan Wang Xiao-jun Zhou De-jin Hu, International Journal of Machine Tools & Manufacture 46 (2006) p333–342 [3] Wang, Xuyue Y.; Kang, R.K.; Xu, W.J.; Wang, L.J.; Guo, International Journal of Manufacturing Technology and Management(2007), v 12, n 1-3, p 246-258 [4] Chen Genyu, Li Lijun, Ma Honglu et al.
,,Chinese Journal of Mechanical Engineering v 41, n 4, April, 2005, p 174-179 [5] S.
The material removal mechanism of that dressed by elliptical ultrasonic vibration may mainly be the removal of bonding ductility and the fine-crushing of abrasive grains, while the material removal mechanism of the metal-bonded grinding wheel surface dressed by ordinary method may primarily be the fracture and break of abrasive grains, secondly be the fracture of bonding agent; and for the resin-bonded grinding wheel surface, its material removal mechanism may mainly be the looseness and shedding of abrasive grains caused by the fracture of bonding agent, secondly be the fracture of abrasive grains.
Acknowledgement This work is financially supported by National Natural Science Foundation of China (No. 50975080)and Key Laboratory of Mechanical Engineering of Henan Province.
Tech. (2008), doi:10.1016/j.jmatprotec.2007.12.115 [2] Yan Wang Xiao-jun Zhou De-jin Hu, International Journal of Machine Tools & Manufacture 46 (2006) p333–342 [3] Wang, Xuyue Y.; Kang, R.K.; Xu, W.J.; Wang, L.J.; Guo, International Journal of Manufacturing Technology and Management(2007), v 12, n 1-3, p 246-258 [4] Chen Genyu, Li Lijun, Ma Honglu et al.
,,Chinese Journal of Mechanical Engineering v 41, n 4, April, 2005, p 174-179 [5] S.
Online since: December 2011
Authors: Ting Zhang, H.G. Li, J.J. Zhao
Introduction
Applications of smart materials, such as piezoelectric materials, magnetostrictive materials, magneto-rheological fluids, electrorheological fluids and shape memory alloys, have been developed increasingly in recent years.
Smart Materials & Structures 15(6): 1846-1857
Journal of Intelligent Material Systems and Structures 19(5): 573-582
Smart Materials & Structures 15(6): 1927-1938
Journal of Thermoplastic Composite Materials 19(3): 293-307.
Smart Materials & Structures 15(6): 1846-1857
Journal of Intelligent Material Systems and Structures 19(5): 573-582
Smart Materials & Structures 15(6): 1927-1938
Journal of Thermoplastic Composite Materials 19(3): 293-307.
Online since: April 2022
Authors: Katsuyuki Kida, Koshiro Mizobe, Ryosuke Murai
Kida, Development of Fracture Surface Etching (FSE) Method around Non-Metallic Inclusion of SUJ2 Steel, Materials Science Forum, ISSN: 1662-9752, Vol. 971, pp 65-69, (2019)
Materials and Product Technology, Vol. 44, Nos. 3/4, (2012)
Materials and product Technology, Vol. 44, nos. 3/4, (2012)
Rozwadowska, Effect of repeated induction heating on fatigue crack propagation in SAE52100 bearing steel, Advanced Materials Research Vols. 217-218, pp. 1266-1271, (2011)
Kida, Observation of Fracture Surface of Induction-Heated JIS SUJ2 Bearing Steel under Rotating Bending Fatigue, Materials Science Forum, ISSN: 1662-9752, Vol. 904, pp. 24-28, (2017)
Materials and Product Technology, Vol. 44, Nos. 3/4, (2012)
Materials and product Technology, Vol. 44, nos. 3/4, (2012)
Rozwadowska, Effect of repeated induction heating on fatigue crack propagation in SAE52100 bearing steel, Advanced Materials Research Vols. 217-218, pp. 1266-1271, (2011)
Kida, Observation of Fracture Surface of Induction-Heated JIS SUJ2 Bearing Steel under Rotating Bending Fatigue, Materials Science Forum, ISSN: 1662-9752, Vol. 904, pp. 24-28, (2017)
Online since: June 2008
Authors: Min Wang, Jia Chen Kang, Xiao Yan Yuan
Poly(L-lactic acid) (PLLA)
and gelatin, which are two common materials in the tissue engineering field, were used for process
development.
Materials and Methods Materials.
Vacanti: Science, Vol. 260 (1993), p. 920 [2] S.
Wang: Journal of Biomedical Materials Research Part A, Vol.83 (2007), p. 868 [5] H.W.
Wang: Key Engineering Materials, Vol.334-335 (2007), p. 1233 Gelatin fibers PLLA fibers Fig.4 Electrospun gelatin nanofibers.
Materials and Methods Materials.
Vacanti: Science, Vol. 260 (1993), p. 920 [2] S.
Wang: Journal of Biomedical Materials Research Part A, Vol.83 (2007), p. 868 [5] H.W.
Wang: Key Engineering Materials, Vol.334-335 (2007), p. 1233 Gelatin fibers PLLA fibers Fig.4 Electrospun gelatin nanofibers.