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Online since: May 2011
Authors: Qian Wu, Shu Hua Gao, Hua Tang
According to the classification and sorting of information and materials, the characteristics of incidents summarized as following [1]:
(1).
Large public buildings have the features of unique molding , complex structure, high design requirements ,new materials, new equipment, new technology and so on [1],so the risk has increased
To identify the exact circumstances of the loss and impact, in order to provide a reliable basis for rehabilitation and reconstruction plan. b) compensation C2, is in emergencies, the government departments should investigate and assess various conditions, personnel performance and materials acquisition.
Journal of Tongji University(Social Science Section), 2008 (8):39-46.
Journal of Engineering Management, 2010.02(In Chinese) [4] Shubai Xu.
Large public buildings have the features of unique molding , complex structure, high design requirements ,new materials, new equipment, new technology and so on [1],so the risk has increased
To identify the exact circumstances of the loss and impact, in order to provide a reliable basis for rehabilitation and reconstruction plan. b) compensation C2, is in emergencies, the government departments should investigate and assess various conditions, personnel performance and materials acquisition.
Journal of Tongji University(Social Science Section), 2008 (8):39-46.
Journal of Engineering Management, 2010.02(In Chinese) [4] Shubai Xu.
Online since: January 2011
Authors: Yang Liu, Jie Li, Zhi Juan Pan
Moreover, it has been widely used as high-performance structural material, multifunctional material, information material, biomedical material, catalyst, and so on [2-7].
Experimental Materials.
Tong: Chinese Journal of Materials Research, Vol.17(2003), p. 444 [3] X.Y.
G.Chen,et al: New chemical materials,Vol.27(1999), p. 22 [6] Y.Yu, Y.
Wang, et al: Journal of Central China Normal University (Natural Sciences), Vol.36(2002), p. 319 [7] K.A.
Experimental Materials.
Tong: Chinese Journal of Materials Research, Vol.17(2003), p. 444 [3] X.Y.
G.Chen,et al: New chemical materials,Vol.27(1999), p. 22 [6] Y.Yu, Y.
Wang, et al: Journal of Central China Normal University (Natural Sciences), Vol.36(2002), p. 319 [7] K.A.
Online since: July 2015
Authors: Ornin Srihakulung, Sureerat Polsilapa, Panyawat Wangyao, Pajaree Srigiofun, Aimamorn Promboopha
Materials and Experimental Procedures.
Wangyao, High Temperature Materials and Processes. 29 (2010) 61-67
Homkrajai, Chiang Mai Journal of Science. 36 (2009) 312-319
Chuankrerkkul, Chiang Mai Journal of Science. 36 (2009) 287-295
Panich, High Temperature Materials and Processes. 27 (2008) 41-49
Wangyao, High Temperature Materials and Processes. 29 (2010) 61-67
Homkrajai, Chiang Mai Journal of Science. 36 (2009) 312-319
Chuankrerkkul, Chiang Mai Journal of Science. 36 (2009) 287-295
Panich, High Temperature Materials and Processes. 27 (2008) 41-49
Online since: April 2014
Authors: Panyawat Wangyao, Tawanrat Eiriyakul, Sureerat Polsilapa, Ornin Srihakulang, Pajaree Srigiofun
Materials and Experimental Procedures.
[2] Asavavisithchai, S., Homkrajai, W., Wangyao, P, High Temperature Materials and Processes, Vol. 29 (2010), p. 61-67
[3] Wangyao, P., Chuankrerkkul, N. , Polsilapa, S., Sopon, P., Homkrajai, W, Chiang Mai Journal of Science, Vol. 36, (2009), p. 312-319
[4] Wangyao, P., Lothongkum, G., Krongtong, V., Homkrajai, W., Chuankrerkkul, N., Chiang Mai Journal of Science, Vol. 36, September 2009, p. 287-295
[6] Wangyao, P., Krongtong, V., Panich, N., Chuankrerkkul, N., Lothongkum, G., High Temperature Materials and Processes, Vol. 26, (2007), p. 151-159
[2] Asavavisithchai, S., Homkrajai, W., Wangyao, P, High Temperature Materials and Processes, Vol. 29 (2010), p. 61-67
[3] Wangyao, P., Chuankrerkkul, N. , Polsilapa, S., Sopon, P., Homkrajai, W, Chiang Mai Journal of Science, Vol. 36, (2009), p. 312-319
[4] Wangyao, P., Lothongkum, G., Krongtong, V., Homkrajai, W., Chuankrerkkul, N., Chiang Mai Journal of Science, Vol. 36, September 2009, p. 287-295
[6] Wangyao, P., Krongtong, V., Panich, N., Chuankrerkkul, N., Lothongkum, G., High Temperature Materials and Processes, Vol. 26, (2007), p. 151-159
Online since: November 2011
Authors: Jin Song Leng, Jian Sun, Yan Yi Xu, Yi Jin Chen, Yan Ju Liu
Box 3011, Centre for Composite Materials, No. 2 YiKuang Street, Science Park of Harbin Institute of Technology (HIT), Harbin 150080, P.R.
All the materials’ recovery rates were above 97% at Tg.
Progress in Materials Science, 98, 174105
Shape-Memory Polymers-A Class of Novel Smart Materials.
‘‘Electroactive Thermoset Shape Memory Polymer Nanocomposite Filled with Nanocarbon Powders,’’ Smart Materials & Structures, 18:074003
All the materials’ recovery rates were above 97% at Tg.
Progress in Materials Science, 98, 174105
Shape-Memory Polymers-A Class of Novel Smart Materials.
‘‘Electroactive Thermoset Shape Memory Polymer Nanocomposite Filled with Nanocarbon Powders,’’ Smart Materials & Structures, 18:074003
Online since: October 2007
Authors: Eric Fleury, Yu Chan Kim, Oh Jib Kwon, Jin Ju Lee, Young-Kook Lee
Gook: Materials Transactions JIM Vol. 36 (1995), p. 1180
Inoue: Journal of Materials Research Vol. 20 (2005), p. 1
Johnson: Progress in Materials Science Vol. 30 (1986), p. 81
Lim: Science and Technology of Advanced Materials Vol. 6 (2005), p. 256
Fleury: Materials Science and Engineering A Vol. 449-451 (2007), p. 169
Inoue: Journal of Materials Research Vol. 20 (2005), p. 1
Johnson: Progress in Materials Science Vol. 30 (1986), p. 81
Lim: Science and Technology of Advanced Materials Vol. 6 (2005), p. 256
Fleury: Materials Science and Engineering A Vol. 449-451 (2007), p. 169
Online since: September 2013
Authors: Hong Ying Gong, Hui Xiao Li, Xiao Bin Su, Si Fan Wang, Yun Long Fu
Studies on the tensile properties and flow performance of the different molecular-weight polycarbonate
Hong-ying Gonga, yun-long,Fub, X.B.Su, H.X.Li, S.F.Wang
College of Materials Engineering, Shanghai University of Engineering Science, Shanghai 201620,china
aemail:ghyyw@163.com,bemail:fuyunlong0715@126.com
Keywords: polycarbonate; molecular-weight; tensile properties; SEM; flow performance
Abstract.
True stress-strain curves are shown in figure 4 what reflected the mechanical characteristics of rod materials in plastic deformation stage.
[5] Qinzhi Fang,T.J.Wang,H.M.Li: International Journal of Fatigue.Vol.30(2008),p.1419
[10] G.Kermouche,J.L.Loubet,J.M.Bergheau: Mechanics of Materials.Vol.40(2008).p,271
[15] Jan Musil,Martin Zatloukal: Chemical Engineering Science.Vol.66(2011).p,4814
True stress-strain curves are shown in figure 4 what reflected the mechanical characteristics of rod materials in plastic deformation stage.
[5] Qinzhi Fang,T.J.Wang,H.M.Li: International Journal of Fatigue.Vol.30(2008),p.1419
[10] G.Kermouche,J.L.Loubet,J.M.Bergheau: Mechanics of Materials.Vol.40(2008).p,271
[15] Jan Musil,Martin Zatloukal: Chemical Engineering Science.Vol.66(2011).p,4814
Online since: November 2005
Authors: Yon Sang Cho, Sung Jae Jun, Heung Sik Park
An AGV is a self-powered
unit for transporting materials between stations without needing to be controlled by an operator.
Acknowledgment This research was supported by the Program for the Training of Graduate Students in Regional Innovation which was conducted by the Ministry of Commerce, Industry and Energy of the Korean Government, and by grant No.R12-2002-058-05001-0 from the Center for Advanced Net Shape Manufacturing and Clean Processes of the Korea Science & Engineering Foundation.
Tanchoco: Material Flow Systems in Manufacturing, Chapman & Hall (1994) [2] Ann Dunkin: Automated Guided Vehicle Systems : An Introduction, Jr. of IE (1994), pp. 47-51, [3] P.K.
Wright: Principles of open-architecture manufacturing, Journal of Manufacturing Systems Vol. 14 No. 3 (1995), pp. 187-202 [5] M.
Hong: A PC-Based Open Robot Control System: PC-ORC, Journal of Control, Automation and System Engineering Vol. 6 No. 5 (2000), pp. 415-425 [7] J.S.
Acknowledgment This research was supported by the Program for the Training of Graduate Students in Regional Innovation which was conducted by the Ministry of Commerce, Industry and Energy of the Korean Government, and by grant No.R12-2002-058-05001-0 from the Center for Advanced Net Shape Manufacturing and Clean Processes of the Korea Science & Engineering Foundation.
Tanchoco: Material Flow Systems in Manufacturing, Chapman & Hall (1994) [2] Ann Dunkin: Automated Guided Vehicle Systems : An Introduction, Jr. of IE (1994), pp. 47-51, [3] P.K.
Wright: Principles of open-architecture manufacturing, Journal of Manufacturing Systems Vol. 14 No. 3 (1995), pp. 187-202 [5] M.
Hong: A PC-Based Open Robot Control System: PC-ORC, Journal of Control, Automation and System Engineering Vol. 6 No. 5 (2000), pp. 415-425 [7] J.S.
Online since: March 2012
Authors: D.J.M. Aguiar, Ronald Lesley Plaut, Angelo Fernando Padilha
Plaut1,c
1Department of Metallurgical and Materials Engineering, University of S.
Davis (Ed.): ASM Specialty Handbook: Stainless Steels, ASM International, Materials Park, Ohio, USA, (1994)
Hull: Welding Journal Vol. 52 (1973), Res.
Espy: Welding Journal Vol. 61 (1982), Res.
Costa: Corrosion (The Journal of Science and Engineering, NACE, Houston, Texas) Vol. 67 (2011), p. 045004-1
Davis (Ed.): ASM Specialty Handbook: Stainless Steels, ASM International, Materials Park, Ohio, USA, (1994)
Hull: Welding Journal Vol. 52 (1973), Res.
Espy: Welding Journal Vol. 61 (1982), Res.
Costa: Corrosion (The Journal of Science and Engineering, NACE, Houston, Texas) Vol. 67 (2011), p. 045004-1
Online since: May 2021
Authors: Mahmoud M. Maghawry, Mohamed K. Elfawakhry, Hoda El-Faramwy, Sabreen A. Abdelwahab
Materials Science and Engineering: A 114 (1989): 51-59
Journal of materials science 24.7 (1989): 2449-2453
Materials Science and Engineering: A 160.2 (1993): 261-270
Materials Science and Engineering: A 508.1-2 (2009): 234-240
Materials Letters 189 (2017): 13-16.
Journal of materials science 24.7 (1989): 2449-2453
Materials Science and Engineering: A 160.2 (1993): 261-270
Materials Science and Engineering: A 508.1-2 (2009): 234-240
Materials Letters 189 (2017): 13-16.