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Online since: August 2013
Authors: Qian Gu, Cheng Fang Sun
The spayed FRPC widely applied into civil engineering, water project, buildings, road and bridge, and repairing and strengthening various contractures, which obtained engineering success and economic benefit.
After decades of large-scale basic construction, the repair, reconstruction and reinforcement of the existing buildings have become one of the most urgent and important topics civil engineering in China.
Sprayed FRPC has extensive application field, in recent years, its status has been raised in civil engineering, played a positive role in the engineering support, maintenance, repair, reinforcement, and achieved good technical and economic benefits.
Chinese Journal of Civil Engineering, No.8 ( 2000), p. 131-134
Chinese Journal of Materials in Civil Engineering, Vol.12,No.2, (2000), p. 139-146.
Online since: January 2015
Authors: Ludmila Chernenkaya, Olga Krolenko, Marina Petrochenko, Ksenia Strelets
Described testing methodology update the basic education programmes based on the experience of Civil Engineering Institute in St.Petersburg State Polytechnical University.
Petersburg Polytechnic University(SPbPU) with a view to updating the basic education programmes in Civil Engineering Institute(CEI) in the period from 10/06/2014 till 20/08/2014, the audited nine major education programmes.
In order to update the basic education programmes were audited following basic Civil Engineering Institute education programmes in SPbPU: Master degree programmes: 1.
"Сivil Engineering"; 6.
Activities of civil engineering institute to attract foreign students for training in civil engineering programs (2014) Applied Mechanics and Materials, 635–637, pp. 2076–2080 (rus)
Online since: September 2013
Edited by: B. Li, H.M. Zhang
Collection of selected, peer reviewed papers from the 2013 3rd International Symposium on Chemical Engineering and Material Properties (ISCEMP 2013), June 22-24, 2013, Sanya, China.

The 508 papers are grouped as follows:
Chapter 1: Chemical Engineering and Technology, Bio and Medical Chemistry Engineering;
Chapter 2: Material Science, Manufacturing Technology and Civil Engineering;
Chapter 3: Mechanical Engineering and Equipment, Mechatronics, Automation and Control;
Chapter 4: Measurement and Instrumentation, Monitoring, Testing and Detection Technologies, Fault Diagnosis;
Chapter 5: Computation Methods and Algorithms for Modeling, Simulation and Optimization, Data Mining and Data Processing;
Chapter 6: Information Technologies, WEB and Networks Engineering, Information Security, Software Application and Development;
Chapter 7: Power and Energy, Electric and Magnetic Systems, Electronics and Microelectronics, Embedded and Integrated Systems;
Chapter 8: Communication, Signal and Image Processing, Data Acquisition, Identification and Recognation Technologies;
Chapter 9: Information Technologies in Management
Online since: June 2017
Authors: Jiri Koktan, Petr Mynarcik
Experimental Static Load Test of Prestressed Concrete Slab-on-Ground Model Petr Mynarcik1, a *, Jiri Koktan1, b 1Department of Structures, Faculty of Civil Engineering, VSB-Technical University Ostrava, Ludvika Podeste 1875/17, 708 33, Ostrava – Poruba, Czech Republic apetr.mynarcik@vsb.cz, bjiri.koktana.st@vsb.cz Keywords: Slab-on-ground, Prestressed concrete slab, Interaction concrete foundation-subsoil Abstract.
The described experimental static load test is part of a series of experiments focusing on the problematics of concrete constructions in interaction with subsoil and was realized at the Faculty of Civil Engineering, VŠB –Technical University of Ostrava.
Introduction Interaction between concrete structure and subsoil is one of the main research direction at the Faculty of Civil Engineering, VŠB – Technical university of Ostrava [1, 3].
Ostrava, Civil Eng.
Ostrava, Civil Eng.
Online since: August 2012
Authors: Xiao Dong Pan, Bo Qian, Wei Jiang
Later, it expanded into many areas, such as chemical industry, electromechanical, aerospace, economical, ocean, fossil oil, transportation, real estate, civil and other risk research areas, and put into use on engineering fields.
A finite element and calculation example based on the MIDAS/CIVIL Through the MIDAS/CIVIL calculation software ,simulating the actual construction processes of Labajin bridge,we analyse the upper structure 's construction.
Don't Mess with Structural Engineers[C].2009,1259-1269
Journal of Structural Engineering 2010,136(5):1-8
Advances in Engineering Software, 2009,40:1-8
Online since: November 2013
Edited by: He Rui
Collection of Selected, peer reviewed papers from the 2013 2nd International Conference on Mechanics and Control Engineering (ICMCE 2013), September 1-2, 2013, Beijing, China.

The 308 papers are grouped as follows:
Chapter 1: Material Processing and Chemical Engineering;
Chapter 2: Mechanical Engineering;
Chapter 3: Electrical Engineering, Electric Machines and Mechatronics;
Chapter 4: Power System and Energy Engineering, Its Applications;
Chapter 5: Electronics and Integrated Circuits, Embedded Technology and Applications;
Chapter 6: Data and Signal Processing;
Chapter 7: Measurement, Monitoring and Testing Technologies;
Chapter 8: Control Systems;
Chapter 9: Robotics Technologies and Applications;
Chapter 10: Manufacturing and Industrial Engineering, Management Applications;
Chapter 11: Civil Engineering;
Chapter 12: Environmental Engineering;
Chapter 13: Information Technologies and Networks
Online since: November 2013
Authors: Antonín Lokaj, Kristýna Klajmonová
Round Timber Bolted Joints with Mechanical Reinforcement Kristýna Klajmonová 1,a *, Antonín Lokaj 2,b 1 Department of Building Structures, Faculty of Civil Engineering, VŠB-Technical University of Ostrava, Ludvíka Podéště 1875/17, 708 33, Ostrava, Czech Republic, Europe 2 Department of Building Structures, Faculty of Civil Engineering, VŠB-Technical University of Ostrava, Ludvíka Podéště 1875/17, 708 33, Ostrava, Czech Republic, Europe akristyna.klajmonova.st@vsb.cz, bantonin.lokaj@vsb.cz Keywords: Round timber, carrying capacity, bolt, joint, static, reinforcement.
All round timber joints static tests in tension were carried out on pressure machine EU 100 in laboratory of the Faculty of Civil Engineering VŠB-TU Ostrava.
All these tests were performed on laboratory equipment of the Faculty of Civil Engineering at VŠB-TU Ostrava.
J., Schädle, P. (2011) Ductility aspects of reinforced and non-reinforced joints, in: Engineering Structures, Vol. 33, p. 3018-3026
Online since: January 2012
Authors: Shi Lang Xu, Dong Ming Yan, Jin Tao Liu
Compressive strength and microstructure of multi-wall carbon nanotubes reinforced cement composites Jintao Liu1, a,Dongming Yan2,b and Shilang Xu3,c 1Department of Civil Engineering,Dalian University of Technology, Dalian 116024, China 2College of Civil Engineering and Architecture, Zhejiang University, Hangzhou 310058, China 3Corresponding auther, College of Civil Engineering and Architecture, Zhejiang University, Hangzhou 310058, China ajtliu1987@163.com, bdmyan@zju.edu.cn, cslxu@zju.edu.cn Keywords: Multi-wall Carbon Nanotubes, Mechanical Strength, Microstructure, Cement Composites.
Advancement in the study of carbon nanotube has enabled its application in civil engineering as constitutive materials or additives.
SEM scanning was conducted in the Testing Center for Civil and Hydraulic Engineering at Zhejiang University as well.
Mufti, Canadian Society for Civil Engineering, Montreal(1998),p.64-97 [6] S.L.
Li: China Civil Engineering Journal (In Chinese), Vol.41 (2008), p. 72-87
Online since: October 2012
Authors: Ping Dong
Study on the Reform of "Engineering Detection Technology" Lesson of Engineer Management Dong Ping Engineer Management Department, Luoyang Institute of Science and Technology Dpzjx@163.com Key words: Engineering testing technology the reform of education Integrated Skills The Multimedia Abtract.
As the main course of professional engineering supervision, Engineering Detection Technology is a course which equally emphasizes both on the theory and practice.
Understand the basic applications of modern testing technology used in civil engineering quality testing and further strengthen the students' ability to analysis and solving engineering problem independent, training students' independent organization, developing the basic skills in civil engineering test.
Engineering detection technology as a professional skills classes needs to have the theory knowledge of building materials, construction engineering and soil mechanics, training students to have the ability of practice on engineering test.
The People's Traffic Press.2006.09 [5] WangLiFeng .The Civil Engineering Structure Experiment and Test Technology.
Online since: September 2014
Edited by: Li Wang

The 146 papers are grouped as follows:
Chapter 1: Dynamics and Mechanical Engineering, Applied Mechanics,
Chapter 2: Materials Engineering and Processing,
Chapter 3: Mine Engineering, Flow and Ventilation, Thermal Transfer and Effects,
Chapter 4: Power and Electrical Engineering,
Chapter 5: Control Systems, Mechatronics and Robotics,
Chapter 6: Electronics, Embedded and Integrated Circuits, Smart Grid Technologies,
Chapter 7: Measurements, Testing, Tracking, Detection and Monitoring, Evaluation,
Chapter 8: Signal, Noise, Image Processing, Computational Mathematics and Methods,
Chapter 9: Communication, Networks and Information Technologies,
Chapter 10: Product Design, Manufacturing and Industrial Engineering,
Chapter 11: Civil Engineering and Geoengineering,
Chapter 12: Earth Science and Cosmology, Environmental Engineering Keyword: Dynamics and Mechanical Engineering, Applied MechanicsMaterials Engineering and
Processing, Mine Engineering, Flow and Ventilation, Thermal Transfer and Effects, Power and Electrical Engineering, Control Systems, Mechatronics and Robotics, Electronics, Embedded and Integrated Circuits, Smart Grid Technologies, Measurements, Testing, Tracking, Detection and Monitoring, Evaluation, Signal, Noise, Image Processing, Computational Mathematics and Methods
Showing 531 to 540 of 38623 items