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Online since: July 2021
Preface
The 11th International Conference on Advanced Materials Research (ICAMR 2021), in conjunction with the 5th International Conference on Civil and Building Materials, the 4th International Conference on Advanced Energy Materials, was successfully held during 21-24 January 2021 via a virtual channel. 2020 and 2021 are difficult years in which the pandemic has changed the practical of all global activities, including the organization of conferences.
Krishnamurthy, The National Institute of Engineering, India Zeki Candan, Istanbul University, Turkey Boumerzoug Zakaria, University of Biskra, Algeria Malachy Sumaila, Nigerian Defence Academy, Nigeria Jarrn-Horng Lin, National University of Taiwan, Taiwan Meng-Ting Tsai, National Taiwan University of Science and Technology, Taiwan Jun Wang, Shandong University of Technology, China Taha Tabaza, Al-Zaytoonah University of Jordan, Jordan Sutharsini Ubenthiran, University of Jaffna, Sri Lanka Se-Jin Choi, Wonkwang University, Korea Kwang-Hee Lim, Daegu University, Korea Thitiphan Chimsook, Maejo University, Thailand Ting Teo Ming, Malaysian Nuclear Agency, Malaysia Hideki Yokoi, Shibaura Institute of Technology, Japan Xiaoyan Song, Beijing University of Technology, China Ren-Kae Shiue, National Taiwan University, Taiwan Ahmed H.
Hassanin, Alexandria University, Egypt Zhi Zeng, University of Electronic Science and Technology of China, China Pattareeya Damrongsak, King Mongkut's Institute of Technology Ladkrabang, Thailand Udaya Bhat K., National Institute of Technology Karnataka, India Yeong Sung Suh, Hannam University, Korea Samson Jerold Samuel Chelladurai, Sri Krishna College of Engineering and Technology, India Oscar E.
Krishnamurthy, The National Institute of Engineering, India Zeki Candan, Istanbul University, Turkey Boumerzoug Zakaria, University of Biskra, Algeria Malachy Sumaila, Nigerian Defence Academy, Nigeria Jarrn-Horng Lin, National University of Taiwan, Taiwan Meng-Ting Tsai, National Taiwan University of Science and Technology, Taiwan Jun Wang, Shandong University of Technology, China Taha Tabaza, Al-Zaytoonah University of Jordan, Jordan Sutharsini Ubenthiran, University of Jaffna, Sri Lanka Se-Jin Choi, Wonkwang University, Korea Kwang-Hee Lim, Daegu University, Korea Thitiphan Chimsook, Maejo University, Thailand Ting Teo Ming, Malaysian Nuclear Agency, Malaysia Hideki Yokoi, Shibaura Institute of Technology, Japan Xiaoyan Song, Beijing University of Technology, China Ren-Kae Shiue, National Taiwan University, Taiwan Ahmed H.
Hassanin, Alexandria University, Egypt Zhi Zeng, University of Electronic Science and Technology of China, China Pattareeya Damrongsak, King Mongkut's Institute of Technology Ladkrabang, Thailand Udaya Bhat K., National Institute of Technology Karnataka, India Yeong Sung Suh, Hannam University, Korea Samson Jerold Samuel Chelladurai, Sri Krishna College of Engineering and Technology, India Oscar E.
Online since: October 2022
Authors: Victor Iliev Rizov
Inhomogeneous Beam of Circular Cross-Section with Concentric Lengthwise Cracks: A Fracture Analysis with Considering Viscoplastic Behaviour
Victor Iliev Rizov1, a *
1Department of Technical Mechanics, University of Architecture, Civil Engineering and Geodesy,
1 Chr.
Introduction Using of continuously inhomogeneous (functionally grade) structural materials in various engineering applications is one of the issues that has been intensively investigated in scientific literature in recent decades [1, 2, 3, 4].
Introduction Using of continuously inhomogeneous (functionally grade) structural materials in various engineering applications is one of the issues that has been intensively investigated in scientific literature in recent decades [1, 2, 3, 4].
Online since: February 2012
Authors: Zhen Chen
Theory study for Moving Force Identification
Chen Zhen
School of Civil Engineering and Communication, North China Institute of Water Conservancy and Hydroelectric Power, Zhengzhou, 450000, China
yuchenfish@163.com
Keywords: Theory study, Moving force identification, Pretreatment conjugate gradient method, Pre-treatment matrix
Abstract.
[2] Yu L, Chan T H T: Structural Engineering and Mechanics, Vol. 2 (2002), p. 151
[2] Yu L, Chan T H T: Structural Engineering and Mechanics, Vol. 2 (2002), p. 151
Online since: September 2014
Authors: Jian Shen, Xiao Yun Liu
Design and Implementation of English Electronic Dictionary System for Android
Xiaoyun Liu1, a, Jian Shen2,b
1 School of foreign languages, Jiangxi Science & Technology Normal University, Fenglin Avenue 605#, Nanchang, Jiangxi P.R.China 330013
2 School of Civil Engineering and Architecture, Jiangxi Science & Technology Normal University, Fenglin Avenue 605#, Nanchang, Jiangxi P.R.China 330013
a505132338@qq.com, b894282069@qq.com
Key words: Android, Electronic Dictionary, English learning, Mobile Internet
Abstract: In this paper, based on the Android operating system, an electronic dictionary system on mobile devices is designed.
[3] FanYang, RuiminShen, PengHan, RenTong, ZuweiHu and Xia Wang, Growing interest- oriented learning communities for mobile-learners[J], International Journal of Continuing Engineering Education and Lifelong Learning, Vol.14 No.4/5, pp.422-434 (in Chinese) [4] QiulinHan.
[3] FanYang, RuiminShen, PengHan, RenTong, ZuweiHu and Xia Wang, Growing interest- oriented learning communities for mobile-learners[J], International Journal of Continuing Engineering Education and Lifelong Learning, Vol.14 No.4/5, pp.422-434 (in Chinese) [4] QiulinHan.
Online since: July 2015
Authors: Jing Tian, Zhao Xi Liu, Shi Xing Zhu
[4] Xin Ning,Shi Yan,Feng Wang, Improve Semi-control Algorithm of Magnetorheological Damper[J],Journal of Shenyang Architectural and Civil Engineering Institute, 2004,16(8):465-470
[5] Lily Sui,Gang Wang, Controller Simulation Research of Magnetorheological Damper [J], Journal of Jilin Architectural Engineering Institute,2002,8(4):467-371.
[5] Lily Sui,Gang Wang, Controller Simulation Research of Magnetorheological Damper [J], Journal of Jilin Architectural Engineering Institute,2002,8(4):467-371.
Online since: September 2011
Authors: Jian Jun Yuan, Chuan Liang
Application of Super-high Fastener Steel-pile Scaffold in High Slope Treatment of JINPIN Hydropower Station
Jianjun Yuan 1,2,a, Chuan Liang 3,b
1 Sichuan University, College of Water Resource & Hydropower, Chengdu, 610065
2Chengdu University of Technology, Environment & Civil Engineering Department, Chengdu, 610059
3Sichuan University, College of Water Resource & Hydropower, Chengdu, 610065
ayuanjianjun@cdut.cn, blchester@sohu.com
Keywords: fastener steel pile scaffold, setting up of the bent frame scaffoling, wall connector, special construction
Abstract.
Application of scaffold on high slop treatment engineering.
Application of scaffold on high slop treatment engineering.
Online since: September 2013
Authors: Yan Ping Deng, Shao Hong Xu, Zheng Zhou Wang
Flammability and Mechanical Properties of Toughened
Phenolic Foams Containing Nano MP, Nano MCA, and Their Capsules
Zhengzhou Wang1, 2,a, Shaohong Xu2, Yanping Deng2
1Key Laboratory of Advanced Civil Engineering Materials, Chinese Ministry of Education, Tongji University, Shanghai 200092, China
2School of Materials Science and Engineering, Tongji University, Shanghai 200092, China
a zwang@tongji.edu.cn
Keywords: Phenolic foams, Toughening, Flame retardation, Nano flame retardants, Capsules..
Online since: March 2014
Authors: Ying Wang, Ping Li
Study on Mechanical Properties of Rebar HRB400 after Corrosion
Ping Li a, Ying Wang
Department of Civil Engineering, Luoyang Institute of Science and Technology, Luoyang 471023, China
aeappol@163.com
Key Words: Rebar, Corrosion, Strength, Elongation
Abstract: The corrosion behavior of rebar HRB400 in 1.5 wt.% NaCl solution was studied, and the mechanical properties before and after corrosion were tested.
Nevertheless, with the change of environment and the passage of time, the carbonization of concrete and the inrush of chloride cause the corrosion of rebar, which results in the concrete weakening and thereby continuous engineering accidents.
Nevertheless, with the change of environment and the passage of time, the carbonization of concrete and the inrush of chloride cause the corrosion of rebar, which results in the concrete weakening and thereby continuous engineering accidents.