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Online since: February 2014
Authors: Gil Yong Chung, Edward Sanchez, Yu Yang, Fang Zhen Wu, Balaji Raghothamachar, Bernd Thomas, Jie Zhang, Sha Yan Byrapa, Darren M. Hansen, Stephan G. Mueller, Huan Huan Wang, Mark J. Loboda, Michael Dudley
Loboda2 1Department of Materials Science and Engineering, Stony Brook University, Stony Brook, NY, 11790 2Dow Corning Compound Semiconductor Solutions, Midland, Michigan, 48686 amichael.dudley@stonybrook.edu Keywords: wide band gap semiconductor, epitaxial growth, stacking fault, threading dislocation Abstract.
However, for the finite density of defects that currently remains in the substrate, a key issue is understanding how they propagate into the epilayer since this can present an opportunity to engineer the defect configuration in the epilayer.
Subsequently, when growth is initiated, vicinal steps advance over these exposed step configurations leading to the creation of V-shaped or Y-shape, c/4 stacking faults bounded by c/4 and 3c/4 Frank partial dislocations as shown in Fig. 6(c) for V-shape fault and (f) for Y-shape fault.
Materials Science Forum, 679-680 (2011) 269-272 [6] M.
Online since: February 2012
Authors: Mariano Marcos Bárcena, Jorge Salguero Gómez, Moises Batista, José Miguel Sánchez-Sola, Álvaro Gómez-Parra
Cutting Speed-Feed based Parametric Model for Macro-Geometrical Deviations in the Dry Turning of UNS A92024 Al-Cu Alloys José Miguel Sánchez-Sola1, a, Moisés Batista1,b, Jorge Salguero1,c, Álvaro Gómez1,d and Mariano Marcos1,e 1Dept. of Mechanical Engineering & Industrial Design.
Faculty of Engineering. c/ Chile, 1, E-11002 Cadiz, SPAIN ajosemiguel.sanchez@uca.es, bmoises.batista@uca.es, cjorge.salguero@uca.es, dalvaro.gomez@uca.es and emariano.marcos@uca.es Keywords: UNS A92024, dry turning, straightness, parallelism, circularity Abstract.
Sánchez et al., A Parametric Model for the Straightness Deviation in the Cutting Processes of Aluminum Alloys, Materials Science Forum 526 (2006) 31-36 [5] M.
Marcos et al., SEM and EDS Characterisation of Layering TiOx Growth onto the Cutting Tool Surface in Hard Drilling Processes of Ti-Al-V Alloys, Advances in Materials Science and Engineering (2011), doi:10.1155/2011/414868
Online since: August 2017
Authors: Nawin Viriya-Empikul, Apiluck Eiad-Ua, Promporn Reangchim, Kamonwat Nakason
The Effect of Calcium-Based Salt on Hydrothermal Carbonization of Corncob Promporn Reangchim1, a, Kamonwat Nakason2,b, Nawin Viriya-empikul3,c and Apiluck Eiad-ua1,d * 1College of Nanotechnology, King Mongkut’s Institute of Technology Ladkrabang, Bangkok, 10520 Thailand 2Department of sanitary engineering, Faculty of Public Health, Mahidol University, 420/1,Ratchawithi RD., Ratchathewi, Bangkok, 10400, Thailand 3The Thailand Research Fund (TRF), Phaholyothin Road, Samsan Nai, Phyathai, Bangkok 10400, Thailand aPreangchim@gmail.com, bkamonwat.n@gmail.com, cv.nawin@gmail.com, d*apiluck.ei@kmitl.ac.th Keywords: Calcium-based salts, Hydrothermal-carbonization, Corncob, Hydrochar Abstract.
Characterization of solid product Hydrochar was analyzed for morphology, functional group, cellulose phase and contents of carbon by Scanning Electron Microscopy(S-3400N, Hitachi, Japan), Fourier transform infrared spectroscopy (Thermo Scientific Nicolet 6700 FT-IR Spectrometer, Thermo Scientific, USA), it was performed in the infrared spectra of 4000-400 cm-1 based on the attenuated total reflectance (ATR) method at 64 scans for a resolution of 4 cm-1, X-ray Diffraction (D8-ADVANCE, Bruker, Germany), the XRD spectra was observed from 10 to 80° at a scan rate of 2.4°/ min and elemental analyzer (LECO CHNS628, LECO, USA) respectively.
Baratieri, “Hydrothermal Carbonization of Biomass: Design of a Batch Reactor and Preliminary Experimental Results”, CHEMICAL ENGINEERING TRANSACTIONS, vol.37, pp. 55-60, 2014
[8] Hu, B., Wang, K., Wu, L.H., Yu, S.H., Antonietti, M., Titirici, M.M., Engineering carbon porous materials from the hydrothermal carbonization process of biomass.
Ignjatović, “XRD Analysis of Calcium Phosphate and Biocomposite Calcium Phosphate/Bioresorbable Polymer”, Materials Science Forum, vol.518, pp. 507-512, 2006
Online since: March 2011
Authors: Bai Sheng Wang
Journal of Engineering Mechanics, Vol. 130, No. 1, January 1, 2004.
Journal of Computing in Civil Engineering, ASCE, 7, 130-145
Microcomputers in Civil Engineering, 9, 83-96
Journal of Process Mechanical Engineering, IMechE, 209, 117-123
T. (2000), “Structural damage localization using probabilistic neural network,” Proceedings of the International Conference on Advanced Problems in Vibration Theory and Applications, June 19-22, 2000, Xi'an, China, 271-277.
Online since: July 2020
Authors: Zhang Ying, Chowdhury Satyajit
Study on Rheological Properties of Silica Sol in Sisal Fibber Reinforced Investment Casting Zhang Ying1,a*, Chowdhury Satyajit2,b 1Inner Mongolia University of Technology, School of Materials Science & Engineering, 010050, China 2Univ Petr & Energy Studies, Dehra Dun, India a16826033@163.com, bChowdhury@hotmail.com Keywords: Rheological properties; silica sol; sisal fiber; reinforced investment casting Abstract.
Silicon sol casting with high dimensional accuracy, good surface quality and other advantages, is a widely used less advanced technology without cutting, using silica sol casting method can save a lot of machine equipment and processing time, but also greatly saves metal materials.
Materials Science Forum,7 (2016),18-28
Journal of Advanced Microscopy Research, 11(1)(2016),42-49
Key Engineering Materials, 634(2015),421-432
Online since: December 2010
Authors: Ying Zhu, Xue Liu, Jia Jing, Yong Dang Xie
Since the 80s of the 20th century, fast development of materials science and processing technology, electronic technology, internet applications, computer-aided design applications, as well as aesthetic and artistic knowledge and taste of the advances in automotive design have been more and more reflected.
Following chart sets the Chevrolet Camaro Bumblebee cool appearance with excellent performance and advanced technology (Figure 1). 
[4] Lu Fu and Liming Fu: Packaging Engineering Vol. 11(2007), p.148,in Chinese
[7] Ziqiang Wang and Yuning Zhu:Proceedings of the chinese industrial forum 2007(Chinese Art College Publishing House, Zhejiang 2007),in Chinese
Online since: May 2014
Authors: Gerardo Antonio Rosas Trejo, J. Luis López-Miranda, M.A. Espinosa-Medina, Rodrigo Alonso Esparza Muñoz, J.R. Romero-Romero
The relatively advanced storage methods such as high-pressure gas or liquid cannot fulfill future storage goals [3].
Rosas, DSC-TGA hydrogen evaluation during mechanical milling of AlFe intermetallic, Materials Science Forum 755 (2013) 105-110
Liu, Recent advances in ordered intermetallics, Materials Chemistry and Physics 42 (1995) 77-86
Chia-Ying, Hydrogen generation from Aluminum and aluminum alloys powder, Procedia Engineering 36 (2012) 105-113
Online since: February 2018
Authors: Bei Ming Zhao, Miao Hu, Jun Zhu, Zhen Yu Han, Hou Qing Sun, Yu Ling Ji
Ning Shen [10] and his team analyzed the microstructural changes in the two-step aging process of 6082 aluminum alloy by DSC analysis and SEM analysis, It is found that the first stage aging in a short time can advance the exothermic peak of the β'' strengthening phase, which is favorable for the second stage aging to reach the peak state in a shorter time.
As can be seen from the DSC analysis [13], the first stage aging can cause the exothermic peak of the precipitated β'' strengthening phase to be advanced, which is beneficial to the second stage aging to reach the peak of the strength in a shorter time, thus shortening the overall aging time.
Journal of Achievements in Materials & Manufacturing Engineering. 32.2 (2009)
Materials Science Forum. (2015) 131-134
Online since: May 2012
Authors: Fu Lian Yan, Guang Ming Chang, Feng Yan Qin, Hai Yu Ge
Highway engineering slope ecological protection is to keep the ecological balance, therefore it has the engineering protection and other protection type irreplaceable role and status.
It will be sure to promote highway engineering slope ecological protection[4].
Slope ecological protection technology mechanism Ecological slope protection technology is based on the ecological engineering, engineering mechanics, hydraulics, botanical subjects etc. basic principles, using active vegetation material, combined with other engineering materials in the slope with ecological function protection system construction.
Through ecological engineering, self organization, self supporting and self repair function to achieve the slope erosion resistance, resistance to sliding and ecological restoration, so as to reduce water and soil loss, ecological diversity and ecological balance and environment beautification purposes.
(In Chinese) [3] Xiao Bo Xiong, Guo Qing Gui, Qi Hua Zhao.Materials Science Forum, Vol.620-622, p.749,2009 [4] Chaohe Chen, Yong Huang and Guangfan Li.Advanced Materials Research,Vol.243-249, p.4106 [5] Tan Wei, Zhirong Jia.
Online since: May 2020
Authors: E.N. Pashkov, A.V. Krainov, E.N. Kramshonkov
Kong, International Journal of Impact Engineering, 76, 232 (2015) [17] Y.Y.
Chen, International Journal of Impact Engineering, 36, 651 (2009) [18] T.T.
Wadley, International Journal of Impact Engineering, 38, 837 (2011) [22] T.
Marghitu, International Journal of Impact Engineering, 86, 307 (2015) [25] M.
Zaera, International Journal of Impact Engineering, 35, 133 (2008) [29] G.