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Online since: December 2014
Authors: Alexandre Antunes Ribeiro, L.C. Pereira, J.C. Garcia de Blas, T.S. Barros, S.S. Carvalho, L.R. Guzela, C. Barbosa, I.C. Abud, M.V. Oliveira, R.M. Balestra
Forum Vol. 32 (2008), p. 29
Xia: Advanced Engineering Materials Vol. 12 (2010), p. 724
Online since: June 2018
Authors: Toshinori Taishi, Koki Suzuki, Koang Yong Hyun, Masaru Takahashi, Naomichi Tsuchimoto
Hyun1,e 1Faculty of Engineering, Shinshu University, Wakasato, Nagano 380-8553, Japan 2Center for Energy and Environmental Science, Shinshu University, Wakasato, Nagano 380-8553, Japan ataishi@shinshu-u.ac.jp, b16w2041j@shinshu-u.ac.jp, c17w2059e@shinshu-u.ac.jp, d17st206j@shinshu-u.ac.jp, ekyhyun@shinshu-u.ac.jp Keywords: SiC bulk crystal, Solution growth, Dipping, Saturation of carbon, Polytype Abstract.
Forum 740–742 (2013) 73–76
Suzuki, Solution growth of SiC crystal from the crucible bottom, Proc. of The 6th International Symposium on Advanced Science and Technology of Sillicon Materials, 2012, pp. 67-70
Online since: June 2014
Authors: Jun Yang, Lan Fen Hu, Yan Zhao, Dan Dan Zhang, Yan Yan Yu
Research on Applied-information Technology in Reformation System of the Physical Examination Mode of School infirmaries Lanfen Hu1,a,Yan Zhao1, a, Dandan Zhang2, a, Yanyan Yu2,b and Jun Yang2, b 1School infirmary, Yunnan University, Kunming, 650091, China 2School of Information Science and Engineering, Yunnan University, Kunming, 650091, China azddynu_1227@163.com, bjunyang@ynu.edu.cn Keywords: Physical examination mode; medical personnel structure; medical resources; information technology.
Years of investment enables school infirmaries have a high level of medical personnel team and many advanced medical equipment, but the intervention of the health insurance makes the number of physical examination people increasingly shrink, coupled with the shortage of financial support, resulting in a waste of medical resources and the powerless and idle medical staff, which will limit the survival and development of school infirmaries [5,6].
Ji: Explore the Service Mode of the Integration of Hospital Medical Centers’ Health Management, Grassroots Medical Forum, Vol. 17 (2013) [10] B.
Online since: October 2020
Authors: Svetlana Khashirova, Albert S. Shabaev, Ruslan A. Shetov, Elina V. Khakyasheva
Experimental The object of the study was a PEEK based on 1,4-dihydroxybenzene and 4,4¢-difluorobenzophenone synthesized at the Center For Advanced Materials And Additive Technologies of Kabardino-Balkar State University named after Kh.
Khashirova, Thermal Stability of Polyetherketones, Materials Science Forum, 935 (2018) 31-35
Sapaev, On Accelerated Testing of Stabilizers for High-Heat-Resistant Polymers, Key Engineering Materials. 816 (2019) 61-66
Online since: April 2012
Authors: David J. Young
YOUNG School of Materials Science & Engineering University of New South Wales, Sydney, NSW, Australia d.young@unsw.edu.au Keywords: solubility products, diffusion paths, discontinuous precipitation, precipitate morphologies and growth kinetics.
The incoherent γ/γD or α/γD interface allows rapid lateral transport of chromium to the advancing Cr23C6 tips.
Forum, 269-372 (2001), p. 93
Ahmed: Materials Science Forum, 369-372 (2001) p. 93
Online since: April 2008
Authors: L.G. Guo, He Yang
Introduction Radial-axial ring rolling has now become one of advanced hot-forming technologies used to manufacture some key ring parts, such as aircraft turbine ring, press vessel ring, some large flanges, bearing ring and gear ring, because of its technical superiorities as a result of its continuous and local plastic deformation characteristic.
Therefore, in this study we first summarize the complicated forming characteristics of radial-axial ring rolling process, and then focus on some key technologies for developing a 3D-FE model of the process, attempting to establish an advanced platform for the research and development of the forming technology and theory of radial-axial ring rolling.
Therefore, the model provides an advanced R&D platform for guiding the design and optimization of radial-axial ring rolling process.
Huang: Hand Book of Mechanical Engineering Materials, Volume I (2006), p. 745 (in Chinese) [6] L.
Forum Vol. 471-472 (2004), p. 760 [7] L.
Online since: May 2022
Authors: S.V. Akhonin, V.Yu. Belous, R.V. Selin
Advanced Engineering Materials, 22(5), 1901258
Advanced Engineering Materials, 21(8), 1801359
In Materials Science Forum (Vol. 618, pp. 165-168).
Materials Science and Engineering: C, 25(3), 304-311
In IOP Conference Series: Materials Science and Engineering (Vol. 582, No. 1, p. 012050).
Online since: September 2018
Authors: H. Thameem Basha, Amandeep Singh, Akshay Arora, R. Sivaraj, Oluwole Daniel Makinde
Singh4, R.Sivaraj5,c* 1,5Department of Mathematics, School of Advanced Sciences, VIT, Vellore, India. 2Faculty of Military Science, Stellenbosch University, Saldanha, South Africa. 3,4School of Mechanical Engineering, VIT, Vellore, India.
In heat transfer analysis, radiation and energy gain or loss significantly important for engineering and industrial processes.
Kundu, The onset of nanofluid flow past a convectively heated shrinking sheet in presence of heat source/sink: A Lie group approach, Applied Thermal Engineering, 103 ( 2016) 38-46
Ganji, Two-component heterogeneous mixed convection of alumina/water nanofluid in microchannels with heat source/sink, Advanced Powder Technology, 27 (2016) 245-254
Sibanda: Natural convection of viscoelastic fluid from a cone embedded in a porous medium with viscous dissipation.Mathematical Problems in Engineering, 2013(2013) 1-11
Online since: July 2017
Authors: Bernhard Wielage, Kristina Roder, Andreas Todt, Daisy Nestler, Guntram Wagner, Natalia Nier
As a result of these advances new areas of application are revealed, for example as wear and tear resistant and chemically inert energy absorbing parts or medical applications [1–3].
References [1] Todt, A.; Trautmann, M.; Nestler, D.; Wagner, G.: New approach to design of ceramic/polymer material compounds, Materials Science and Engineering, IOP Publishing Ltd, Vol. 118, 1, pp. 012015 (2015)
[2] Nestler, D.; Todt, A.; Wielage, B.; Wagner, G.: Fundamental studies and development on an innovative ceramic/polymer material compound, Materials Science Forum, Trans Tech Publications, Switzerland, Vol. 825–826, S. 305–313 (2015)
[4] DIN EN 1389:2004-03, Advanced technical ceramics - Ceramic composites - Physical properties - Determination of density and apparent porosity, (2004)
[5] DIN EN 658-3, Advanced technical ceramics - Mechanical properties of ceramic composites at room temperature - Part 3: Determination of flexural strength, (2002).
Online since: February 2013
Authors: Jun Wei Qiao, Y.F. Wang, R.Q. Wang, S.B. Sang, H.J. Yang, J.Y. Shi
Yang4,** 1College of Materials Science and Engineering, Taiyuan University of Technology, Taiyuan 030024, China 2Research center of Advanced Materials Science and Technology, Taiyuan University of Technology, Taiyuan 030024, China 3MicroNano System Research Center, Taiyuan University of Technology, Taiyuan 030024, China 4Research Institute of Surface Engineering, Taiyuan University of Technology, Taiyuan 030024, China *qiaojunwei@gmail.com, awangyinfeng123@gmail.com, bwangrenquan-123@163.com, cshijuyan@tyut.edu.cn, dsangshengbo@tyut.edu.cn, **yanghuijun@tyut.edu.cn Keywords: High-entropy alloy, Heat treatment, Mechanical properties, Dynamic loading.
Among these advanced materials, high-entropy alloys (HEAs) possess super mechanical performances together with the simple casting, rendering them potential candidates for use as new engineering structural materials.
The room-temperature engineering stress-strain curves are shown in Figure 4.
For actual engineering applications, the attainment of both strength and toughness is a vital requirement for most structural materials [18].
Forum. 688 (2011) 419-425