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Online since: January 2013
Authors: Jian Cai, An He, Chun Yang, Qing Jun Chen, Jun Li, Guang Bin Pan
Experimental Study on Bending Behavior of Cold-rolled Deformed Steel Bars Reinforced Concrete Slabs
Chen Qingjun 1,2,a, He An 1,b, Pan Guangbin 1,c,
Cai Jian 1,2,d, Li Jun 3,e and Yang Chun 1,2,f
1School of Civil Engineering and Transportation, South China University of Technology, China
2State Key Laboratory of Subtropical Building Science, Guangzhou, China
3The Architectural Design & Research Institute of Guangdong Province, Guangzhou, China
aqjchen@scut.edu.cn (corresponding author), bheann@sina.com, cpangb5655@126.com, dcvjcai@scut.edu.cn,e653102294@qq.com,fchyang@scut.edu.cn
Keywords: cold-rolled deformed bar, flexural member, minimum reinforcement ratio, experiment
Abstract.
The details of the specimens and the material properties are listed from Table 1~3.
Acknowledgement The Project was supported by Guangdong Provincial Natural Science Foundation of China (Grant No. 9451064101002910) and the Fundamental Research Funds for the Central Universities (Grant No. 2011ZM0112, 2009ZM0230) and was supported by State Key Lab of Subtropical Building Science (No. 2011ZC25, 2011ZC28).
The details of the specimens and the material properties are listed from Table 1~3.
Acknowledgement The Project was supported by Guangdong Provincial Natural Science Foundation of China (Grant No. 9451064101002910) and the Fundamental Research Funds for the Central Universities (Grant No. 2011ZM0112, 2009ZM0230) and was supported by State Key Lab of Subtropical Building Science (No. 2011ZC25, 2011ZC28).
Online since: July 2012
Authors: Juan Chen, Hong Shan, Tao Ma
A Study of Modeling Mobile ad-hoc networks Attacks
Juan Chen 1,a ,Hong Shan2,b ,Tao ma2,a
1Xin Xing Technology Institute, Hefei, China
2Electronic Engineering Institute, Hefei, China
a chenbbm@sina.com, bHshan222@sina.com
Keywords: Mobile ad-hoc networks, attack modeling, attack trees
Abstract.
In contrast a high costs attack would include “Brute-Force” cryptographic key attacks which fall into category 5 (duration: Hundreds of hours and more, costs = 1).
An example of a low probability attack would be the random discovery of cryptographic key material (category 1, probability p=0.1).
In contrast a high costs attack would include “Brute-Force” cryptographic key attacks which fall into category 5 (duration: Hundreds of hours and more, costs = 1).
An example of a low probability attack would be the random discovery of cryptographic key material (category 1, probability p=0.1).
Online since: November 2011
Authors: Can Can Lv, Yu Zhu, Ming Yu Huang, Xu Hong Wang, Hong Jun Ni
Study on Pt-SnO2/C electrode Prepared by different content of Nafion
for new direct ethanol fuel cells
Hongjun Ni1,a, Cancan Lv1,b, Xuhong Wang1,c,Yu Zhu1,d,Mingyu Huang1,e
1School of Mechanical Engineering, Nantong University,
No.9 Seyuan Road, Nantong, Jiangsu 226019, P.R.
Introduction Membrane electrode assembly (MEA) is one of the key components of proton exchange membrane fuel cells (PEMFCs).
The chronoamperometric technique is an effective method to evaluate the electrocatalytic activity and stability of electrode material.
Acknowledgements The authors wish to thank the following project for financial support:(1) Natural Science major basic research projects of Jiangsu Higher Education Institutions (08KJA480001); (2)Applied Research Plan Projects of Nantong City (No.K2009007); Nantong City Key Laboratory of Fuel Cell (No.
Introduction Membrane electrode assembly (MEA) is one of the key components of proton exchange membrane fuel cells (PEMFCs).
The chronoamperometric technique is an effective method to evaluate the electrocatalytic activity and stability of electrode material.
Acknowledgements The authors wish to thank the following project for financial support:(1) Natural Science major basic research projects of Jiangsu Higher Education Institutions (08KJA480001); (2)Applied Research Plan Projects of Nantong City (No.K2009007); Nantong City Key Laboratory of Fuel Cell (No.
Online since: September 2013
Authors: Wei Ting Xu, Hao Fu, Lin Jie Kong, Yang Dong Ou
MOE Key Lab of Disaster Forecast and Control in Engineering,Jinan University, Guangdong 510632, China;
2.Research Center of Engineering Materials and Structural Durability, Jinan University, Guangdong 510632, China;
3.
ACI Materials Journal.1990, 87
Bayasi, Properties of polypropylene fiber reinforced concrete, ACI Materials Journal. 1993, 90
Shah, Plastic shrinkage cracking in concrete materials—Influence of fly ash and fibers, ACI Materials Journal. 2001, 98
ACI-Spec Publ Concr: Materials Science and Engineering, 2002, 206.
ACI Materials Journal.1990, 87
Bayasi, Properties of polypropylene fiber reinforced concrete, ACI Materials Journal. 1993, 90
Shah, Plastic shrinkage cracking in concrete materials—Influence of fly ash and fibers, ACI Materials Journal. 2001, 98
ACI-Spec Publ Concr: Materials Science and Engineering, 2002, 206.
Online since: October 2008
Authors: Ji Xiong Han, Yong Ching Chen, Vijay K. Vasudevan
Vasudevan3,c
1
Imation Corporation, Oakdale, MN, 55128, USA
2Metallurgical Engineering Division, Cummins Inc., Mail Code 50183, Columbus, IN, 47201, USA
3
Department of Chemical & Materials Engineering, University of Cincinnati, OH, 45221-0012, USA
a
jixiong@gmail.com, byong-ching.c.chen@cummins.com, cvijay.vasudevan@uc.edu
Keywords: Nanoscale Al2O3, aluminum matrix composite, microstructure, mechanical properties,
fracture, strengthening mechanisms, electron microscopy
Abstract.
Sandstrom: Key Engineering Materials Vols. 104-107 (1995), pp. 3-36. 4.
Warner, The Science and Design of Engineering Materials (Richard D.
Chan: Materials Chemistry and Physics Vol. 85 (2004), pp. 438-443. 53.
Mortensen: Engineering Fracture Mechanics Vol. 71 (2004), pp. 2385-2406. 56.
Sandstrom: Key Engineering Materials Vols. 104-107 (1995), pp. 3-36. 4.
Warner, The Science and Design of Engineering Materials (Richard D.
Chan: Materials Chemistry and Physics Vol. 85 (2004), pp. 438-443. 53.
Mortensen: Engineering Fracture Mechanics Vol. 71 (2004), pp. 2385-2406. 56.
Online since: April 2022
Authors: Ahmad Abdurrazzaq, Haruna Musa, Umar Sani
Material, Sample and Methods
The materials used in carrying out the research is CAC of BVT fruit shells and the sample for the research was Surface water.
Material and Sample Collection.
Shi, “Arsenic removal from aqueous solutions by adsorption onto iron oxide/activated carbon magnetic composite,” Journal of Environmental Health Science and Engineering, vol. 12, no. 1, 2014, doi: 10.1186/2052-336X-12-58
Deng, “Arsenate adsorption on iron-impregnated ordered mesoporous carbon: Fast kinetics and mass transfer evaluation,” Chemical Engineering Journal, vol. 357, pp. 463–472, Feb. 2019, doi: 10.1016/j.cej.2018.09.074
Hameed, “Insights into the modeling of adsorption isotherm systems,” Chemical Engineering Journal, vol. 156, no. 1. pp. 2–10, Jan. 01, 2010, doi: 10.1016/j.cej.2009.09.013
Material and Sample Collection.
Shi, “Arsenic removal from aqueous solutions by adsorption onto iron oxide/activated carbon magnetic composite,” Journal of Environmental Health Science and Engineering, vol. 12, no. 1, 2014, doi: 10.1186/2052-336X-12-58
Deng, “Arsenate adsorption on iron-impregnated ordered mesoporous carbon: Fast kinetics and mass transfer evaluation,” Chemical Engineering Journal, vol. 357, pp. 463–472, Feb. 2019, doi: 10.1016/j.cej.2018.09.074
Hameed, “Insights into the modeling of adsorption isotherm systems,” Chemical Engineering Journal, vol. 156, no. 1. pp. 2–10, Jan. 01, 2010, doi: 10.1016/j.cej.2009.09.013
Online since: February 2011
Authors: Lei Zhang, Hua Kun Wang, Li Zu
Fluids Engineering Division (Publication) FED.
Fluids Engineering Division (Publication) FED.
Fluids Engineering Division (Publication) FED.
Fluids Engineering Division (Publication) FED.
Hagen: Proceedings of the ASME Design Engineering Technical Conference.
Fluids Engineering Division (Publication) FED.
Fluids Engineering Division (Publication) FED.
Fluids Engineering Division (Publication) FED.
Hagen: Proceedings of the ASME Design Engineering Technical Conference.
Online since: August 2013
Authors: Xiao Zhang, Shao Wen Liu
Relationship between International Roughness Index and Power Spectral Density of Asphalt Pavements in China
LIU Shaowen1, a, ZHANG Xiao1,b
1 Shanxi Transportation Research Institute, Key Laboratory of Highway Construction and Maintenance Technique in Loess Area, Taiyuan, Shanxi 030006, China
ahuangtusys@163.com, bxiaozhang2008@gmail.com
Keywords: International roughness index, power spectral density, relationship, random process theory
Abstract.
References [1] ASTM E867-02, Terminology Relating to Vehicle-Pavement Systems, American Society for Testing and Materials Annual Book of Standards.
Das, ON Pavement Roughness Indices, Journal of the Institution of Engineers,Vol 84, May 2003
American Society for Testing and Materials Annual Book of Standards.
References [1] ASTM E867-02, Terminology Relating to Vehicle-Pavement Systems, American Society for Testing and Materials Annual Book of Standards.
Das, ON Pavement Roughness Indices, Journal of the Institution of Engineers,Vol 84, May 2003
American Society for Testing and Materials Annual Book of Standards.
Online since: May 2009
Authors: Shi Ming Ji, Xian Zhang, Dong Hui Wen, Yang Yu Wang
Experimental and Numerical Modal Analysis of Gearbox Casing
in a Polishing Machinery
Y.Y.Wang
1, a, S.M.Ji
1, b
, D.H.Wen
1, c
, and X.Zhang
1, d
1The MOE Key Laboratory of Mechanical Manufacture and Automation, Zhejiang University of
Technology, Hangzhou, 310032, China
a
hwyy1125i@163.com, bJishiming@sohu.com, c wdh_74@163.com, dxianzh168@126.com
Keywords: Vibrations, modal analysis, Gearbox casing, Modal parameters estimation
Abstract.
The material type of gearbox casing is Aluminum.
Material physical properties are listed followed, the Modulus of Elasticity (E) is 68 Gpa, the density (ρ) is 2.67 kg/m3 and the Poisson's ratio (µ) is 0.35.
J.Lin et al: Journal of Materials Processing Technology, Vol.150 (2004), pp. 170-174
[4] L.Clijmans, H.Ramon, J.D.Baerdemaeker: Transactions of the American Society of Agricultural Engineers, Vol.41 (1998), pp. 5-10
The material type of gearbox casing is Aluminum.
Material physical properties are listed followed, the Modulus of Elasticity (E) is 68 Gpa, the density (ρ) is 2.67 kg/m3 and the Poisson's ratio (µ) is 0.35.
J.Lin et al: Journal of Materials Processing Technology, Vol.150 (2004), pp. 170-174
[4] L.Clijmans, H.Ramon, J.D.Baerdemaeker: Transactions of the American Society of Agricultural Engineers, Vol.41 (1998), pp. 5-10
Online since: December 2012
Authors: V. Jeyalakshmi, R. Mahalakshmy, K.R. Krishnamurthy, B. Viswanathan
Titania catalysts dispersed on meso porous materials-4.4.4
v.
Studies on titania supported on different materials S.
Studies on titania dispersed on meso porous materials S.
Wang, “Optimal design and preparation of titania-supported CoPc using sol-gel for the Photoreduction of CO2”, Chemical Engineering Journal 151 (2009) 134–140
Solcova, “Kinetic study of photo catalytic reduction of CO2 over TiO2” Chemical and Process Engineering, 31 (2010) 395-407 [198] W.
Studies on titania supported on different materials S.
Studies on titania dispersed on meso porous materials S.
Wang, “Optimal design and preparation of titania-supported CoPc using sol-gel for the Photoreduction of CO2”, Chemical Engineering Journal 151 (2009) 134–140
Solcova, “Kinetic study of photo catalytic reduction of CO2 over TiO2” Chemical and Process Engineering, 31 (2010) 395-407 [198] W.