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Online since: March 2013
Authors: Chong Liu, Ying Chun Xu, Li Hong Yu
It is widely used in aerospace engineering, semiconductor circuit testing, new nano materials research, analysis science of development of life, etc with its unique advantages of high sensitivity and resolution in producing tiny current signal.
Secondly, the calibration method and calibration device technical specification could not fully meet the calibration needs of the current advanced tiny current source for the limitation of the existing domestic production technology equipment, precision processing technology level and other aspects.
Forum Vol. 83-87 (1992), p. 119 [2] Lai Ping, “Power microwave devices dynamic test system”.
Mishing, in: Diffusion Processes in Advanced Technological Materials, edtied by D.
Online since: November 2013
Authors: Liang Hou, Guang Yu Li
Power Enterprise Performance Management Information System Development and Research Guangyu Li1, a, Liang Hou1,b 1School of Information Engineering Jilin Agricultural Science And Technology College Jilin, China atougao123zhuanyong@126.com, bzstan123@126.com Keywords: power enterprise; performance; management information system Abstract.
The Performance Management Information System Requirements Analysis With China's rapid economic development, domestic enterprises also actively learn from the world's advanced management theory and methods.
This paper reviews the power supply enterprise performance management, analysis of successful implementation of performance management information system of the premise and condition, using the most advanced IT technology developed network performance management information system.
Thus it guides the performance plan of the next period. 4)Learning Corner Learning corner uses news and forums, etc. showcasing the latest theories and methods of performance management and giving employees an exchange of learning space.
Online since: January 2013
Authors: Gui Ling Wang, Ming Lei Ma, Dong Mei Miao, Bao Yu Lian
Structure health monitoring system of a noval steel-free cable stayed bridge Ma Minglei1, a, Wang Guiling1, b, Miao Dongmei1, c and Lian Baoyu1, d 1Technology center of China Eighth Engineering Division, P.R.
China amingleima@gmail.com, bguilingwang@csece.cn, cmdm@csece.cn, albyu@gmail.com Keywords: Civil engineering, FRP, SHM, cable stayed bridge, durability Abstract.
Steel and concrete are the main buiding material of the civil engineering community, but with its easily errosion behaviour and CO2 discharge, it should be substituded with new materials.Fiber reiforcement polymer (FRP) is such a developped material, with its high strength to weight ratio, durability prolongation, hight stiffness to weight ratio and its fatigue resistance behaviour, it is now getting widely used in civil engineering.
In June 2011, China Transportation Ministry developped its engineering durability standard and encourage the Chinese civil engineers to use new non-steel materials into the construction industry [2].
FRP-bridge design method based on the equivalence of complex physical quantities.The Second International Forum on Advances in Structural Engineering, Dalian, 2008.10 [4] Mirmiran A, Shahawy M.
Online since: May 2022
Authors: Abdellah Bourih, Kaouther Bourih, Salah Madani, Wahid Kaddouri, Mohamed Masmoudi
Lotus-type porous materials (LTPMs) are considered as a new category of engineering materials.
Materials Science and Engineering: A 2003, 340(1-2), 258-264. https://doi.org/10.1016/S0921-5093(02)00181-8
Fabrication of lotus-type porous iron and its mechanical properties, Science and Technology of Advanced Materials 2004, 5(1), 201-205. https://doi.org/10.1016/j.stam.2003.11.005 [10] Xie Z.
Rare Metal Materials and Engineering 2014, 43(11), 2609-2613. https://doi.org/10.1016/S1875-5372(15)60011-X [12] Liu X, Li Y, Zhang H, Liu Y, Chen X.
Modelling and Simulation in Materials Science and Engineering, 2001, vol. 9, no 5, p. 371
Online since: December 2014
Authors: Zheng Yi Jiang, Abdulrahman Aljabri, Dong Bin Wei
Iron And Steel Engineering, 1997. 74: p. 30-37
Advanced Material Research, 2010. 97-101: p. 81-84
Key Engineering Materials, 2004. 274-276: p. 715-720
Iron and Steel Engineering, 1987: p. 34-42
Key Engineering Materials, 2010. 443: p. 21-26
Online since: June 2021
Authors: Kumar Prakash, Nilamber Kumar Singh
Singh et al. [2-4] studied the quasi-static and dynamic tensile behaviours of advanced high strength steels (MP800HY and CP800) at different strain rates (0.001-750s-1).
Singh et al. [15] presented the mechanical behaviour of an advanced high strength steel (DP1200) at high strain rates (250-750s-1) under tensile loads.
Gupta, Quasi-static and dynamic tensile behavior of CP800 steel, Mechanics of Advanced Materials and Structures. 21 (2014) 531–537
Gupta, Strain rate sensitivity of die steel under compressive loads, Advanced Materials Research. 585 (2012) 412-416
Gupta, Mechanical behavior of advanced high strength steel at high strain rates, Applied Mechanics and Materials. 82 (2011) 178-183.
Online since: September 2013
Authors: Zhao Fu Du, Guo Feng Ma, Jan Ming Wang, Dong Liang Zhao, De Yuan Lou, Chun Lin He, Ying Ying Bai
Corrosion Resistance of SiCp/ Al Metal Matrix Nanocomposites Chunlin He1,2,a, Yingying Bai1,2, Deyuan Lou1,2, Guofeng Ma1,2, Jianming Wang1,2, Zhaofu Du3, Dongliang Zhao3 1Institute of Surface Engineering, Shenyang University, Shenyang 110044, China 2Liaoning Provincial Key Laboratory of Advanced Materials, Shenyang University, Shenyang 110044, China 3Research Institute of Functional Materials, Central Iron & Steel Research Institute, Beijing 100081, China accllhhe@126.com Keywords: Al, nanocomposite, SiC nanoparticle, Corrosion resistance Abstract.
Introduction The reinforcement of aluminum alloys with SiC particles leads to a new generation of engineering materials with a higher strength to weight ratio, stiffness and modulus.
The instrument used was PARSTATÒ 2273 Advanced Electrochemical System.
Forum Vol. 225 – 227(1996), p.763 [4] Z.
Online since: August 2024
Authors: Won Jae Lee, Jun Hyuck Na, Kap Ryeol Ku, Seung Jun Lee, Jong Hwi Park, Jung Woo Choi, Jung Gyu Kim, Chae Young Lee
4H-SiC Crystal Growth Using Recycled SiC Powder Source Seung Jun Lee1,a, Chae Young Lee1,b, Jung Woo Choi1,c, Jong Hwi Park1,d, Jung Gyu Kim1,e, Kap Ryeol Ku1,f, Jun Hyuck Na2,g, and Won Jae Lee2,h* 1Senic, 17-15, 4sandan 7-ro, Jiksan-eup, Seobuk-gu, Cheonan-si, Chungcheongnam-do, Korea 2Department of Advanced Materials Engineering, Dong-Eui University, 176, Eomgwang-ro, Busanjin-gu, Busan, Korea asjlee@senic.co.kr, bcylee@senic.co.kr, cjwchoi@senic.co.kr, djhpark@senic.co.kr, ejgkim@senic.co.kr, fkrku@senic.co.kr, gmjna21x@naver.com, hleewj@deu.ac.kr Keywords: 4H-SiC Growth, PVT, Recycled powder, Heat treatment Abstract.
Forum Vol. 457-460 (2004), p.115 [2] J.
Eunjin: Key Engineering Materials, Vol. 512-515 (2012), p. 3 [3] K.
Kuo: The International Journal of Advanced Manufacturing echnology, Vol. 78 (2015), p. 73 [4] G.
Online since: August 2024
Authors: Séverin Rouchier, Alexis Drouin, Laetitia Coeurdray, Mael Coche, Sebastien Ledrappier, Thierry Barge, Kassem Alassaad, Valentine Chagneux, Julie Widiez, Christophe Maleville, Walter Schwarzenbach, Sylvain Monnoye, Hugues Mank, Alexandre Moulin, Damien Radisson, Sophie Barbet, Hugo Biard, Sidoine Odoul
Summary We have demonstrated that the SmartSiC™ engineered substrates are a key asset for the SiC power industry, with proven high crystal quality and ultra-low electrical resistivity.
The properties of the p-SiC used are monitored through different characterizations, some of which are disclosed here, enabling Soitec to tailor our engineered substrate performance.
Phys. 54 040103 (2015) [2] Rouchier S, Gaudin G, Widiez J, Allibert F, Rolland E, Vladimirova K, et al. 150 mm SiC Engineered Substrates for High-Voltage Power Devices.
[5] Drouin, A et al, “Application of advanced characterization techniques to SmartSiC™ product for substrate-level device performance optimization”, ICSCRM 2023
Materials Science Forum, vol. 1092, Trans Tech Publications, Ltd., 6 June 2023, pp. 201–207.
Online since: November 2013
The main publication of ModTech2013 International Conference were as follow: International Journal of Materials & Product Technology, Indian Journal of Engineering & Materials Sciences, Materials Science-Poland, International Journal of Modern Manufacturing Technologies and Advanced Materials Research-AMR" by Trans Tech Publications Inc.
Engineering of Manufacturing Processes: Novel Manufacturing Methods; Advances in Nontraditional Manufacturing Processes; Virtual Manufacturing; Advanced Methods and Tools for Computer Integrated Manufacturing; New Industrial Applications; Smart Manufacturing; Energy Efficiency in Manufacturing: President: Prof.
Advances in Composite Materials and Technologies: Advanced Metals, Ceramics and Polymers; Bio-Materials; Recycling of Materials: President: Prof.
Jean Christophe Fauroux, IFMA, French Institute for Advanced Mechanics, France; Vice President: Prof.
Maritime Engineering and Navigation: Maritime Engineering and Technologies, Maritime Transport and Economics, Maritime Education: President: Prof.
Showing 2051 to 2060 of 6074 items