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Online since: September 2007
Authors: Akira Todoroki, Yoshinobu Shimamura, Kosuke Takahashi, Atsushi Iwasaki
., 2-12-1, O-okayama, Meguro, Tokyo 152-8552, Japan
2
Dept. of Mechanical Sciences and Engineering, Tokyo Tech., 2-12-1, O-okayama, Meguro,
Tokyo 152-8552, Japan
3
Faculty of Engineering, Shizuoka Univ., 836, ohya, shizuoka-shi, shizuoka-ken 422-8529, Japan
4
Dept. of Mechanical System Engineering, Gunma Univ., 1-5-1, Kiryu, Tenjin-cho 376-8515, Japan
a
ktakahas@ginza.mes.titech.ac.jp, batodorok@ginza.mes.titech.ac.jp,
ctysimam@ipc.shizuoka.ac.jp, diwasaki@me.gunma-u.ac.jp
Keywords: Statistical diagnosis; Response surface; Electrical resistance change method; CFRP;
Damage detection.
Shimamura: Composites Science and Technology.
Todoroki: Key Engineering Materials.
Kobayashi: JSME International Journal, Series A.
Sakai: Smart Materials and Structures.
Shimamura: Composites Science and Technology.
Todoroki: Key Engineering Materials.
Kobayashi: JSME International Journal, Series A.
Sakai: Smart Materials and Structures.
Online since: October 2010
Authors: Chun Jiang Zhao, Jin Zhi Zhang, Lian Yun Jiang, Xiao Kai Yu, Qing Xue Huang
Analysis on Influence of Dynamic Setting AGC Model Parameters on the
Stability of Control System
Chunjiang Zhao1, a
, Lianyun Jiang1, b, Jinzhi Zhang2, c
Qingxue Huang1, d
and Xiaokai Yu1, e
1
College of Materials Science and Engineering, Taiyuan University of Science and Technology,
Taiyuan, Shanxi, 030024, China
2
China Iron & Steel Research Institute Group, Beijing, 100081, China
a
zhaochunjiang2009@126.com, b123jianglianyun@163.com, ctyustzzzx@163.com
d
hqx24@hotmail.com, eyxk0359@163.com
Key words: Theory of mathematical analysis, Dynamic setting AGC, Model parameter, Stability
Abstract.
Yan: Journal of Materials and Metallurgy, Vol.8 (2009), No.3, p.209
Yan: Journal of Materials and Metallurgy, Vol.8 (2009), No.3, p.209
Online since: May 2012
Authors: Hao Zhang, De Si Sun, Hong Bao
Materials and methods
Materials
Lumps of K-feldspar containing K2O 14.81%, taken from Jiaozuo , Henan province, were ground and sieved to six grinding samples with different particle sizes ,that is, -20 mesh, -80 mesh, -100 mesh, -120 mesh, -160 mesh, - 220 mesh; Sintering additives are sodium chloride and calcium chloride, both are technical grade.
Acknowledgements This work was financially supported by the National Natural Science Foundation of Chian Natural Science Foundation (51064011).
Journal of Jishou University, 1996, 17 (2):62-65
Acknowledgements This work was financially supported by the National Natural Science Foundation of Chian Natural Science Foundation (51064011).
Journal of Jishou University, 1996, 17 (2):62-65
Online since: November 2011
Authors: Guo Gang Chen, Ying Jiang, Zheng Xing Chen
Physiological responses of kuerle fragrant pear fruit to different atmospheres in storage
GuoGang Chen1,2,a, Ying Jiang2,b, and ZhengXing Chen*1,c
1 State Key Laboratory of Food Science and Technology, Jiangnan University, Wuxi, 214122, China
2 Food college of Shihezi University, Xinjiang, 832003, China,
a cgg611@163.com, b 715jy@sohu.com, c zxchen@jiangnan.edu.cn
Keywords: Kuerle fragrant pear, Physiology properties, CA, Air Control, Storage conditions.
Materials and methods Plant materials Kuerle fragrant pear fruit (Pyrus serotina Reld) were harvested from in Hongqi horticultural field in Akesu city, Xinjiang province, China, in middle September 2009 and 2010.
C110604) and the projects of industrial science and technology plan (No.
References [1] J.L.Chen, J.H.Wu, Q.Wang et al.: Journal of Agricultural and Food Chemistry Vol. 54(2006), p. 8842–8847
Materials and methods Plant materials Kuerle fragrant pear fruit (Pyrus serotina Reld) were harvested from in Hongqi horticultural field in Akesu city, Xinjiang province, China, in middle September 2009 and 2010.
C110604) and the projects of industrial science and technology plan (No.
References [1] J.L.Chen, J.H.Wu, Q.Wang et al.: Journal of Agricultural and Food Chemistry Vol. 54(2006), p. 8842–8847
Online since: October 2012
Authors: Gui Fen Gong, Ke Yin, Ming Lan
Study of Cushioned Package Assessment Via
Multilevel Grey Evaluation Method
Guifen Gonga, Ke Yinb and Ming Lanc
Shaanxi University of Science & Technology, Xi’an, Shaanxi Province 710021, P.R.
Its mathematical method is statistical method, the system data material less and conditions are not met statistical requirements of the situation, more practical.
Table 1 Assessment model of cushioned packaging solutions aspects factors aspects factors buffer effect X1 shock resistanceX11 economy X3 material costX31 creep resistance X12 processing costX32 vibration resistance X13 logistics cost X33 convenience X2 To use X21 environmental protection X4 material saving X41 To Transport X22 non-pollution X42 To handle X23 Recyclable X43 Assessment procedures.
Wu: System Engineering (Beijing University of Science and Technology Press, Beijing, 2006)
Song: Journal of Zhu zhou Institute of Technology, Vol. 14 (2000) No.6, pp.9-11
Its mathematical method is statistical method, the system data material less and conditions are not met statistical requirements of the situation, more practical.
Table 1 Assessment model of cushioned packaging solutions aspects factors aspects factors buffer effect X1 shock resistanceX11 economy X3 material costX31 creep resistance X12 processing costX32 vibration resistance X13 logistics cost X33 convenience X2 To use X21 environmental protection X4 material saving X41 To Transport X22 non-pollution X42 To handle X23 Recyclable X43 Assessment procedures.
Wu: System Engineering (Beijing University of Science and Technology Press, Beijing, 2006)
Song: Journal of Zhu zhou Institute of Technology, Vol. 14 (2000) No.6, pp.9-11
Online since: August 2011
Authors: Wei Yang, Guo Dong Lu, He Sheng Lv
The friction material is spliced on both sides of the friction-discs, which can be safely assumed as adiathermic rigid discs due to the low thermal conductivity.
can be written as (13) Results and Discussions In this work, material parameters of the steel-disc are listed in Tab.1.
Tab. 1 Material parameters of steel-disc Parameters 45# Steel Modulus of elasticity E [GPa] 209 Poisson's ratio μ 0.27 Density ρ [kg·m-3] 7850 Coefficient of heat conductivity k [w·m-1·K-1] 50 Specific heat c [J·kg-1·K-1] 470 Coefficient of thermal expansion α [10-5K-1] 1.159 Coefficient of kinetic friction between the steel-disc and the friction-disc f 0.1 For symmetrical steel-disc, Fig. 5 depicts that non-dimensional parameter of critical speed gradually increases with wave parameter ma until its value is larger than 3.2.
Acknowledgements The authors was supported in part by the State Key Program of National Natural Science of China (Grant NO. 50735008) and supported by Chongqing City of Special Major Science And Technology Grant NO.CSTC, 2008AC3102.
Zagrodzki: International Journal of Solids and Structures Vol. 46 (2009), p. 2463 [2] K.
can be written as (13) Results and Discussions In this work, material parameters of the steel-disc are listed in Tab.1.
Tab. 1 Material parameters of steel-disc Parameters 45# Steel Modulus of elasticity E [GPa] 209 Poisson's ratio μ 0.27 Density ρ [kg·m-3] 7850 Coefficient of heat conductivity k [w·m-1·K-1] 50 Specific heat c [J·kg-1·K-1] 470 Coefficient of thermal expansion α [10-5K-1] 1.159 Coefficient of kinetic friction between the steel-disc and the friction-disc f 0.1 For symmetrical steel-disc, Fig. 5 depicts that non-dimensional parameter of critical speed gradually increases with wave parameter ma until its value is larger than 3.2.
Acknowledgements The authors was supported in part by the State Key Program of National Natural Science of China (Grant NO. 50735008) and supported by Chongqing City of Special Major Science And Technology Grant NO.CSTC, 2008AC3102.
Zagrodzki: International Journal of Solids and Structures Vol. 46 (2009), p. 2463 [2] K.
Online since: September 2013
Authors: Qiu Ju Sun, Shi Wei Wu, Kun Yuan Wang, Li Dai
Study on the curing reaction and rheological behavior of
Bismaleimide resin
Qiuju Sun1, a, Kunyuan Wang1,b, Shiwei Wu2 , c, Li Dai1, d
1 College of chemistry and life science, Shenyang Normal University, Shenyang 110034, China
2 Experimental Centers, Shenyang Normal Univercity, Shenyang 110034, China
a sqj006@sina.com , b15040228379@163.com, c wsw1975@163.com, d2090li@sohu.com
Keywords: Bismaleimide resin, Curing reaction, Rheological behavior, Reaction kinetics
Abstract.
Introduction Bismaleimide (BMI) resins, as a kind of high-performance materials, have received more and more interest because of their good thermal stability, low water absorption, and good retention of m -echanical properties at high temperatures.
Experimental Details Materials.
Acknowledgements This work was financially supported by the Science and Technology Bureau in Shenyang and Shenyang Normal University.
[9] Zhenhai Liu, Handbook of Analytical Chmuistry, No.8: thermoanalysis, Chemical Industry Press, Beijing, 2000 [10] Yao Lu, Yuexin Duan, Zhiyong Liang, Studies on rheological behaviors of bismaleimide resin system for resin transfer molding, Chinese Journal of Aeronautics,15(2002) 181-185.
Introduction Bismaleimide (BMI) resins, as a kind of high-performance materials, have received more and more interest because of their good thermal stability, low water absorption, and good retention of m -echanical properties at high temperatures.
Experimental Details Materials.
Acknowledgements This work was financially supported by the Science and Technology Bureau in Shenyang and Shenyang Normal University.
[9] Zhenhai Liu, Handbook of Analytical Chmuistry, No.8: thermoanalysis, Chemical Industry Press, Beijing, 2000 [10] Yao Lu, Yuexin Duan, Zhiyong Liang, Studies on rheological behaviors of bismaleimide resin system for resin transfer molding, Chinese Journal of Aeronautics,15(2002) 181-185.
Online since: August 2011
Authors: A. Douayar, Raquel Diaz, P. Prieto, Mohammed Abd-Lefdil
Abd-Lefdil1,b
1 Laboratoire de Physique des Matériaux, Faculté des Sciences, Rabat, Morroco.
2 Departamento de Física Aplicada C-XII, Universidad Autónoma de Madrid, Spain.
Dinia, Journal of Applied Physics 109, (2011) 033708 [7] D.M.
Science 255, 2353 (2008)
Olvera, Materials Letters 60, (2006) 1594
Jimienez-Sandoval and R.Castanedo-Pierez, Solar Energy Materials & Solar Cells 82, (2004) 35
Dinia, Journal of Applied Physics 109, (2011) 033708 [7] D.M.
Science 255, 2353 (2008)
Olvera, Materials Letters 60, (2006) 1594
Jimienez-Sandoval and R.Castanedo-Pierez, Solar Energy Materials & Solar Cells 82, (2004) 35
Online since: June 2014
Authors: Yong Ge Xu, Qiu Cheng Kan
Key Discipline Construction and Special Fund Project of Shannxi Province (E08001).
2. the project of the special fund for Shannxi key philosophy university science and social research base construction(DA08046).
3.
Research program of Key Research Base of Philosophy and Social Science in Shaanxi Province-Study on IPD Model and Lean Construction in Shaanxi Province Industry (13JZ028).
Understanding construction industry experience and attitudes toward integrated project delivery [J].Journal of Construction Engineering and Management, 2010, 136 (8): p. 815-825
Research on the risk assessment of IPD mode based on the fuzzy comprehensive evaluation[C].Applied Mechanics and Materials.
Frontiers of Mechanical Engineering and Materials Engineering II.
Research program of Key Research Base of Philosophy and Social Science in Shaanxi Province-Study on IPD Model and Lean Construction in Shaanxi Province Industry (13JZ028).
Understanding construction industry experience and attitudes toward integrated project delivery [J].Journal of Construction Engineering and Management, 2010, 136 (8): p. 815-825
Research on the risk assessment of IPD mode based on the fuzzy comprehensive evaluation[C].Applied Mechanics and Materials.
Frontiers of Mechanical Engineering and Materials Engineering II.
Online since: August 2014
Authors: Wei Hong Zhang, Zhao Hui Luo, Peng Dong
Project management is going to be a new management mode as a kind of science methods[3,4].
We can conclude from each stage’s work contents, request and purpose of martial equipments maintenance project management: establishing phase is a starting point; planning stage is to plan and prepare; technique preparation of preparing phase is a means, material, supply preparation is guarantee; maintenance phase is to put into practice; ending phase is to summary results.
Reasonable plan maintenance can benefit reasonable arrangement of manpower, material resources and financial power, good preparation before fixing, real-time repair, low repair stop time, low maintenance cost, and low stop work loss.
During the course of military modernization and normalization developments, management, maintenance and fix martial equipments well, establishing these work on the basis of modern science technology management is our concern problems.
Whltty: submitted to International of Journal of Project Management (2005) [3] D.O.
We can conclude from each stage’s work contents, request and purpose of martial equipments maintenance project management: establishing phase is a starting point; planning stage is to plan and prepare; technique preparation of preparing phase is a means, material, supply preparation is guarantee; maintenance phase is to put into practice; ending phase is to summary results.
Reasonable plan maintenance can benefit reasonable arrangement of manpower, material resources and financial power, good preparation before fixing, real-time repair, low repair stop time, low maintenance cost, and low stop work loss.
During the course of military modernization and normalization developments, management, maintenance and fix martial equipments well, establishing these work on the basis of modern science technology management is our concern problems.
Whltty: submitted to International of Journal of Project Management (2005) [3] D.O.