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Online since: August 2018
Authors: Wang Nian Zhang, Li Wang, Ni Deng
References [1]  Jan Spišák, Martin Truchlý, Ján Mikula, Vratislav Šindler, Caustic magnesia production in microfluid furnace, Advanced Materials Research. 1119 (2015) 529-532
[2] Burcu Ertuğ, Classification and characteristics of predominant refractories used in metallurgy, Advanced Engineering Forum, 26 (2018) 9-21
[7] Xian Gong Deng, Jun Kai Wang,  Hai Jun Zhang, Jiang Hao Liu and Shao Wei Zhang, Synthesis and characterization of magnesium aluminate spinel porous ceramics by Novel molten salt method,  Key Engineering Materials. 697 (2016) 399- 403
[10] Eing Kuan Kok, Johar Ban juraizah, Li Ngee Ho and Zabar Yahidah, Impact of secondary phases content on the mechanical properties of cordierite, Key Engineering Materials. 723 (2017) 650-655
[13] Wang Zhoufu, XuZiwei, Wang Yutang, Effect of mixed rare earth oxide on structure and properties of magnesium refractory materials, Rare Metal Materials and Engineering. 36 (2007) 374-375
Online since: January 2010
Authors: San Ben Chen, W.Y. Wang, H.B. Ma
Ma 1 1 Authors are with The Lab. of Intelligentized Robotic Welding Technology, School of Material & Engineering, Shanghai Jiao Tong University, Shanghai, 200240, P.
ASME Journal of Manufacturing Science and Engineering.
ASME Journal of Engineering for Industry.
Lecture Notes in Electrical Engineering.
The international journal of advanced manufacturing, 2007, 39(7-8): 669-678
Online since: June 2014
Preface The International Conference on Energy and Environmental Protection provides a forum for accessing to the most up-to-date and authoritative knowledge from both industrial and academic worlds, sharing best practice in this exciting field.
Following the success of the previous two conferences, the third ICEEP2014, held in Xi'an during April 26-28, 2014, was organized in four simultaneous tracks: "Applied Energy Technology", "Advances in Environmental Technologies", "Thermal, Power and Electrical Engineering" and "Resources and Sustainable Development".
Studies presented in this book cover these topics: Development and Use of Solar Energy, Development and Utilization of Biomass Energy, Development and Utilization of Wind Energy, Nuclear Energy Engineering, Other Energies and Its Utilization, Batteries and Energy Storage Technology, Energy-Saving Technology and Energy Conversation, Hydrogen and Fuel Cell, Energy Materials and Technology, Energy Chemical Engineering and Processes, New Energy and Electric Vehicles, Engines and Technologies, Energy Equipments, Building and Construction Technologies, Energy-Saving Buildings, Civil Engineering, etc.
Online since: June 2010
Organizing Institution: Northeastern University, China Co-Organizers: Reliability Branch of Chinese Mechanical Engineering Society (CMES) Liaoning Mechanical Engineering Society (LMES) Co-Sponsors: National Natural Science Foundation of China (NSFC)European Structural Integrity Society (ESIS)Chinese Mechanical Engineering Society (CMES) Honorary Chairs Z.T.
An, Harbin Engineering University, China J.J.
PDR'2010 provided an international forum for academia and design, development and reliability practitioners to report and exchange leading-edge scientific knowledge and industrial experience in these areas.
The conference had a broad remit and focused on the development and reliability of consumer products as well as integrity, reliability and operation of engineering structures and systems.
The conference papers covered topics such as product development methodology, cost engineering for product development, virtual product development techniques and tools, design quality engineering, performance engineering, structural integrity, reliability and safety, optimal design, reliability design, reliability centered maintenance, reliability testing, and reliability methodology in manufacturing.
Online since: July 2018
Authors: Terence G. Langdon, Roberto B. Figueiredo, Pedro Henrique R. Pereira
Langdon2,3,c 1Department of Metallurgical and Materials Engineering, Universidade Federal de Minas Gerais, Belo Horizonte 31270-901, Brazil 2Materials Research Group, Faculty of Engineering and the Environment, University of Southampton, Southampton SO17 1BJ, UK 3Departments of Aerospace and Mechanical Engineering & Materials Science, University of Southern California, Los Angeles, CA 90089-1453, U.S.A.
Langdon, The Requirements for Superplasticity with an Emphasis on Magnesium Alloys, Advanced Engineering Materials 18(1) (2016) 127-131
Langdon, Developing grain refinement and superplasticity in a magnesium alloy processed by high-pressure torsion, Materials Science and Engineering A 488(1-2) (2008) 117-124
Langdon, Record Superplastic Ductility in a Magnesium Alloy Processed by Equal-Channel Angular Pressing, Advanced Engineering Materials 10 (2008) 37-40
Kim, Evolution of microstructure and hardness in AZ31 alloy processed by high pressure torsion, Materials Science and Engineering A 625 (2015) 98-106
Online since: February 2020
Authors: Li Na Yue, Xiao Gang Wang, Li Fang Zheng, Ya Jie Xie, Bao Peng Wu, Jing Ming Zhong
Beryllium has also gained attention as a “strategic, critical” engineering material [1].
China’s first High Flux Engineering Test Reactor uses beryllium as a reflective layer.
The Idaho National Engineering and Environmental Laboratory in the United States has the world’s largest test reactor, the Advanced Test Reactor (ATR), which had continuously used five beryllium neutron reflectors and has started to use its sixth beryllium reflector in 2005.
The application level of beryllium in strategic nuclear energy, advanced fields, and major scientific engineering construction reflects to some extent the comprehensive strength of a country and the level of national defense military technology.
Forum, Beijing: High Education Press, ChangSha, 2013: pp. 97–106
Online since: September 2017
Authors: V.M. Kolokol’tsev, A.S. Tuboltseva, A.S. Savinov
This is especially urgent for such a resource- and energy-intensive branch of industry as the casting production of ferrous and non-ferrous metals, which is the main engineering base for the machine construction industry.
Zhukovsky, Strength of the casting mold, Mechanical engineering, Moscow, 1989
Hojny, Multiscale modelling of mechanical properties of steel deformed in semi-solid state - experimental background, Key Engineering Materials, 643-650
Hojny, Physical simulation of steel deformation in the semi-solid state, Advanced Structured Materials, 47, 85-119
Savinov, The simulation of the carbon steel deformation resistance in the brittle-ness temperature range, Proceedings of XV International scientific conference: New technologies and achievements in metallurgy, material engineering and production engineering, Zajemska, Monika (ed), Czestochowa: Czestochowa university of technology, Faculty of production engineering and materials technology, 2014
Online since: April 2011
Authors: Qiu Xin Yuan, Yin Lei Wang, Jia Chang Xu, Zheng Cha, Tai An Liu
The engineering data include the main supporting parameters (supporting forms, etc.), mining parameters (coal cutting speed, forward length, etc.), organization and management parameters (work forms, types, etc.), and ventilation parameters (air resistance, etc.).
Engineering data Monitoring data Vein data Equipment data Scene data Non-spatial data Spatial data Simulation model database Fig.1.
Therefore, GIS platform needs to achieve the following objectives: (1) advanced architecture, reusability, scalability, easy system update. (2) Having a strong secondary development capability that can quickly build up professional applications systems. (3) Providing conversion middleware and achieving map format transformation with other GIS systems (such as ArcGIS, MapInfo, MapGIS, etc.) or graphics software (e.g.
Schofield: Advanced computer techniques: Development for the minerals industry towards the new millennium, Proc.
Chen: Developments of spatial information-based Digital Mine in China, Journal of Coal Science & Engineering, 2008, (3).
Online since: May 2015
Authors: Vladimir V. Popov, A.V. Sergeev, A.Yu. Istomina
Forum.
Popov, in: Current Trends in Chemical Engineering, edited by J.M.P.Q.
Agren, in: In advances in phase transformation, edited by J.D.
Forum.
Online since: January 2012
Authors: Min Wang
Influences of Geometric Factors on Rolling Force and Moment in Hot Ring Rolling of Large Parts Wang Min Department of Material Engineering, Hubei University of Automotive Technology Shiyan 442002, China sprit418@mail.nwpu.edu.cn Keywords: hot ring rolling, large ring, titanium alloy, rolling force and moment, numerical simulation Abstract.
During the process of hot ring rolling, the driver roll rotates around its stationary axis at a constant speed, the freely mounted idle roll advances at a constant feed rate towards the driver roll.
Wu, “Advances in Control of Unequal Deformation by Locally Loading and Theories Related to Precision Plastic Forming,” Journal of Plasticity Engineering, Vol. 15, 2008, pp. 6-13
Yang, “Numerical Analysis of Force and Power Parameters in Cold Ring Rolling,” Materials Science Forum, Vol. 561-565, 2007, pp. 805-808