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Online since: September 2013
Authors: Ying Liang Li, Fei Xue Han, Yu Feng Wang, Pu Xuan Yan
Experiment
Materials.
TFE-P copolymer (grade FE2701, product of Shanghai 3F New Material Co., Ltd., Shanghai, China).
European Polymer Journal, Vol. 35(1999):P. 743
[2] John Wiley, Sona.: submitted to Journal of Polymer Science, Vol. 4(1993)
Polymer Materials Science & Engineering Vol. 15(1999), P. 83.
TFE-P copolymer (grade FE2701, product of Shanghai 3F New Material Co., Ltd., Shanghai, China).
European Polymer Journal, Vol. 35(1999):P. 743
[2] John Wiley, Sona.: submitted to Journal of Polymer Science, Vol. 4(1993)
Polymer Materials Science & Engineering Vol. 15(1999), P. 83.
Online since: November 2010
Authors: Yong Jie Liu, Qing Yuan Wang, Sha Gu Chen, Ren Hui Tian
Therefore, the dog-bone-shaped specimen can present the fatigue behavior of materials under the predicted stress level better, in other words, the fatigue testing data obtained by dog-bone-shaped specimens are more reliable.
3 Application in VHCF test of 6063 aluminium alloy
The chemical composition and mechanical properties of 6063 aluminium alloy are presented in Table 1 and Table 2 respectively.
Acknowledgments — Financial support from Chinese National Science Foundation through the contracts of 10925211 and 10772125 is appreciated.
Journal of Sichuan University (Engineering Science Edition), 2002,34(3):6-11
Journal of Sichuan University (Engineering Science Edition), 2008,40(Supp.):155-158
JOURNAL OF MATERIALS SCIENCE,2004(39):365-367.
Acknowledgments — Financial support from Chinese National Science Foundation through the contracts of 10925211 and 10772125 is appreciated.
Journal of Sichuan University (Engineering Science Edition), 2002,34(3):6-11
Journal of Sichuan University (Engineering Science Edition), 2008,40(Supp.):155-158
JOURNAL OF MATERIALS SCIENCE,2004(39):365-367.
Online since: July 2011
Authors: Yan Wang, Guan Yuan Zhao
The dimensions and basic material properties of RPC-filled steel tube specimens are shown in Table 1.
Acknowledgements The research has been funded by the National Natural Science Foundation of China(NSFC) through Grant No. 50778017.
Journal of Earthquake Engineering and Engineering Vibration, Vol. 28 (2008), p 99-107. ( in Chinese) [2] Ehab Ellobody, Ben Young and Dennis Lam: Journal of Construction Steel Research, Vol. 62 (2006), p 706-715
Journal of Fu Zhou Construction, Vol. 3 (2003), p 28-29.( in Chinese) [5] Zhenyu Lin, Yanhai Wu and Zuyan Shen.
Journal of Building Structures, Vol. 26 (2005), p 52-57.( in Chinese) [6] J.
Acknowledgements The research has been funded by the National Natural Science Foundation of China(NSFC) through Grant No. 50778017.
Journal of Earthquake Engineering and Engineering Vibration, Vol. 28 (2008), p 99-107. ( in Chinese) [2] Ehab Ellobody, Ben Young and Dennis Lam: Journal of Construction Steel Research, Vol. 62 (2006), p 706-715
Journal of Fu Zhou Construction, Vol. 3 (2003), p 28-29.( in Chinese) [5] Zhenyu Lin, Yanhai Wu and Zuyan Shen.
Journal of Building Structures, Vol. 26 (2005), p 52-57.( in Chinese) [6] J.
Online since: February 2016
Authors: Si Qin Zhao, San Ti Yi
Experimental Section
Materials and Methods.
Journal of Colloid and Interface Science. 380 (2012) 121-127
China Science (B). 41 (2011) 1699-1705
Journal of Catalysis. 8 (2007) 987-992
Journal of Beijing Science and Technology University. 30 (2008) 32-35
Journal of Colloid and Interface Science. 380 (2012) 121-127
China Science (B). 41 (2011) 1699-1705
Journal of Catalysis. 8 (2007) 987-992
Journal of Beijing Science and Technology University. 30 (2008) 32-35
Online since: December 2014
Preface
2014 3rd International Conference on Mechanical Engineering and Materials (ICMEM 2014) will be
held on November 5-6 2014, Singapore, Singapore.2013 2nd International Conference on Mechanical
Engineering and Materials (ICMEM 2013) has been held on January 27-29, 2013, Sanya, China very
successfully.
ICMEM 2014 will be the most comprehensive conference focused on the various aspects of Mechanical Engineering and Materials.
Our conference provides a chance for academic and industry professionals to discuss recent progress in the area of Mechanical Engineering and Materials.
The goal of this conference is to bring together the researchers from academia and industry as well as practitioners to share ideas, problems and solutions relating to the multifaceted aspects of Mechanical Engineering and Materials.
ICMEM 2014 is co-sponsored by Information Engineering Research Institute, USA and Academic Conference Institute, USA All accepted papers from ICMEM 2014 will also be published on international journal Advanced Materials Research (ISSN:1022-6680),and will be submitted for indexing by the major academic databases, including EI Compendex, Thomson ISI (ISTP) , and other indexing services.
ICMEM 2014 will be the most comprehensive conference focused on the various aspects of Mechanical Engineering and Materials.
Our conference provides a chance for academic and industry professionals to discuss recent progress in the area of Mechanical Engineering and Materials.
The goal of this conference is to bring together the researchers from academia and industry as well as practitioners to share ideas, problems and solutions relating to the multifaceted aspects of Mechanical Engineering and Materials.
ICMEM 2014 is co-sponsored by Information Engineering Research Institute, USA and Academic Conference Institute, USA All accepted papers from ICMEM 2014 will also be published on international journal Advanced Materials Research (ISSN:1022-6680),and will be submitted for indexing by the major academic databases, including EI Compendex, Thomson ISI (ISTP) , and other indexing services.
Online since: July 2020
Authors: Kamal Nain Chopra, Ritu Walia
Walia and Chopra [17] have done a detailed Technical Analysis and Overview of the Application of Artificial Dielectric Materials in Dirac leaky-wave Antennas.
Gu, Journal of Photochemistry and Photobiology A: Chemistry 181(2006) 1-11
Materials, 7(2005)1083-1098
[16] Ritu Walia and Kamal Nain Chopra, Technical Analysis and Overview of the Application of Artificial Dielectric Materials in the form of Photonic crystal cavity with resonance in Dirac leaky-wave Antennas, Spring International Conference on Material Sciences and Technology (MST-S), CHINA, Wuhan University April 22-24, 2019; Materials Science Forum, Trans Tech Publications Ltd., Zurich, SWITZERLAND (In Press 2019)
[17] Ritu Walia and Kamal Nain Chopra, Technical Analysis and Overview of the Application of Artificial Dielectric Materials in the form of Photonic crystal cavity with resonance in Dirac leaky-wave Antennas, Spring International Conference on Material Sciences and Technology (MST-S), CHINA, Wuhan University April 22-24, 2019; Materials for Modern Technologies V ,Materials Science Forum, Trans Tech Publications Ltd., Zurich, SWITZERLAND (2019) 231-237.
Gu, Journal of Photochemistry and Photobiology A: Chemistry 181(2006) 1-11
Materials, 7(2005)1083-1098
[16] Ritu Walia and Kamal Nain Chopra, Technical Analysis and Overview of the Application of Artificial Dielectric Materials in the form of Photonic crystal cavity with resonance in Dirac leaky-wave Antennas, Spring International Conference on Material Sciences and Technology (MST-S), CHINA, Wuhan University April 22-24, 2019; Materials Science Forum, Trans Tech Publications Ltd., Zurich, SWITZERLAND (In Press 2019)
[17] Ritu Walia and Kamal Nain Chopra, Technical Analysis and Overview of the Application of Artificial Dielectric Materials in the form of Photonic crystal cavity with resonance in Dirac leaky-wave Antennas, Spring International Conference on Material Sciences and Technology (MST-S), CHINA, Wuhan University April 22-24, 2019; Materials for Modern Technologies V ,Materials Science Forum, Trans Tech Publications Ltd., Zurich, SWITZERLAND (2019) 231-237.
Online since: October 2013
Authors: Xiang Lie Yi, Kang Bo Wang, Jin Shui Qiu, Bo Yun Liu, Hai Jian Qiu
(2)Data acquisition and control device
Test platform of early fire characteristics was mainly utilized to measure the characteristic parameters of combustible materials.
Journal of University of Science & Technology China, 2006, 36 (1): 93 ~ 95 [2]OKOYA S S.
Heat Transfer and Bubble Formation in Pool boiling: Effect of Basic Surface Modifications for Heat Transfer Enhancement [J], International Journal of Thermal Sciences, 2006, 45:217-236
Journal of combustion science and technology ,2005,11(2):159~162
Journal of combustion science and technology,2010,16(2):160~164
Journal of University of Science & Technology China, 2006, 36 (1): 93 ~ 95 [2]OKOYA S S.
Heat Transfer and Bubble Formation in Pool boiling: Effect of Basic Surface Modifications for Heat Transfer Enhancement [J], International Journal of Thermal Sciences, 2006, 45:217-236
Journal of combustion science and technology ,2005,11(2):159~162
Journal of combustion science and technology,2010,16(2):160~164
Online since: September 2011
Authors: Jin Liang Wu, Yong Xing Zhang, Nian Peng
Since the composition of materials and geotechnical constitutive complexity, coupled with the particularity of seismic random loads in seismic shaking ,cause slope stability under earthquake research has become very complicated.
Fig4 Relation curve of dry density versus water content Calculation result analysis Fig5 El centro seismic,filling materials of type I,large,medium and small earthquake slope factor of safety vs. time curve Fig6 El centro seismic,filling materials of type II,large,medium and small earthquake slope factor of safety vs. time curve Fig7 El centro seismic,filling materials of type III,large,medium and small earthquake slope factor of safety vs. time curve Fig8 El centro seismic,filling materials of type IV,large,medium and small earthquake slope factor of safety vs. time curve AS the same analysis, slope stability safety coefficient can be obtained when the El centro wave was inputted , as shown in table 2: Table 2 Enter El centro seismic, with the dynamic finite element method to calculate the stability of the safety factor summary tables Filling Without seismic damage Safety factor K Safety coefficient reducing rates (%) 0.0g 0.1g 0.2g 0.4g 0.1g 0.2g 0.4g I 1.307
Journal of hydraulic engineering, 1999 (11), 66-71
Deep cover layer of high earth-rock DAMS on the dynamic stability analysis of rock mechanics [J].journal of engineering journal; 2005,24 (12)
Beijing: science press, 2002 [8] ZhaoJianFeng DuXiuLi, HanJiang, LiLiYun.
Fig4 Relation curve of dry density versus water content Calculation result analysis Fig5 El centro seismic,filling materials of type I,large,medium and small earthquake slope factor of safety vs. time curve Fig6 El centro seismic,filling materials of type II,large,medium and small earthquake slope factor of safety vs. time curve Fig7 El centro seismic,filling materials of type III,large,medium and small earthquake slope factor of safety vs. time curve Fig8 El centro seismic,filling materials of type IV,large,medium and small earthquake slope factor of safety vs. time curve AS the same analysis, slope stability safety coefficient can be obtained when the El centro wave was inputted , as shown in table 2: Table 2 Enter El centro seismic, with the dynamic finite element method to calculate the stability of the safety factor summary tables Filling Without seismic damage Safety factor K Safety coefficient reducing rates (%) 0.0g 0.1g 0.2g 0.4g 0.1g 0.2g 0.4g I 1.307
Journal of hydraulic engineering, 1999 (11), 66-71
Deep cover layer of high earth-rock DAMS on the dynamic stability analysis of rock mechanics [J].journal of engineering journal; 2005,24 (12)
Beijing: science press, 2002 [8] ZhaoJianFeng DuXiuLi, HanJiang, LiLiYun.
Online since: July 2014
Authors: Chun Neng Wang, Xi Ying Fan
Acknowledgements
This project was financially supported by Xuzhou City Science and Technology Plan Project (Nos.
Lo: Journal of Materials Processing Technology, Vol. 209(2009) No.7, p.3469
Uzman: Materials & Design, Vol. 28 (2007) No.4, p.1271
Altan: Materials & Design, Vol. 31 (2010) No.1, p.599
Wang: Journal of Materials Processing Technology, Vol. 209 (2009) No.3, p.1302
Lo: Journal of Materials Processing Technology, Vol. 209(2009) No.7, p.3469
Uzman: Materials & Design, Vol. 28 (2007) No.4, p.1271
Altan: Materials & Design, Vol. 31 (2010) No.1, p.599
Wang: Journal of Materials Processing Technology, Vol. 209 (2009) No.3, p.1302
Online since: February 2014
Authors: Jin Gang Jiang, Tian Hua He, Ye Dai, Yong De Zhang
It is made of flexible material.
We assume that the force on each part of the dental arch generator is equally, the material has been selected.
Chinese Journal of Stomatology, Vol.36(2001), p.139-142
Industrial Robot: An Internationnal Journal, Vol.38(2011), p.20-26
Journal of Medical Systems, Vol.35(2011), p.1421-1429
We assume that the force on each part of the dental arch generator is equally, the material has been selected.
Chinese Journal of Stomatology, Vol.36(2001), p.139-142
Industrial Robot: An Internationnal Journal, Vol.38(2011), p.20-26
Journal of Medical Systems, Vol.35(2011), p.1421-1429