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Online since: September 2015
Authors: Jun Huat Tang, A.M. Busrah, M.Z.C. Wanik
., El-Saadany, D.
M., et al. (2007).
[5] Kein Huat Chua et al., “Mitigation of Voltage Unbalance in Low Voltage Distribution Network with High Level of Photovoltaic System,” Energy Procedia, vol. 12, pp. 495-501, 2011 [6] Tenaga Nasional Berhad, 2005.
Online since: August 2015
Authors: Siti Amely Jumaat, Ismail Musirin
Acha, et al., FACTS: Modelling and Simulation in Power Networks.West Sussex, U.K. : Wiley, , 2005
Lu, et al., "Optimal Location of FACTS Devices by A Bacterial Swarming LAgorithm for Reactive Power Planning " in 2007 IEEE Congress on Evolutionary Computation (CEC 2007) 2007, pp. 2344 - 2349
El-Sharkawi, Modern Heuristic Optimization Techniques: Institute of Electrical and Electronics Engineers, 2008.
Online since: July 2022
Authors: Carlo Bruni, Tommaso Mancia, Daniele Ciccarelli, Massimiliano Pieralisi, Luciano Greco
Characterization of Surface and Bulk Features of SLM Parts Carlo Bruni1,a*, Daniele Ciccarelli1,b, Tommaso Mancia1,c, Massimiliano Pieralisi1,d and Luciano Greco1,e 1Università Politecnica delle Marche, DIISM, via Brecce Bianche 3, Ancona, 60131, Italy a*c.bruni@univpm.it, bd.ciccarelli@staff.univpm.it, ct.mancia@staff.univpm.it, dm.pieralisi@staff.univpm.it, el.greco@pm.univpm.it Keywords: Additive manufacturing, SLM, Complex geometry, Prototyping, surface roughness, microstructure.
Mao, T-H Kwok et al., Adaptive slicing based on efficient profile analysis, Computer Aided Design. 107 (2019) 89-101
Zaefferer et al., Quantitative multiscale correlative microstructure analysis of additive manufacturing of stainless steel 316L processed by selective laser melting. 160 (2020) 110074
Online since: November 2007
Authors: K.K. Choi, S.Y. Kim, D.W. Kim, S.H. Park
On the other hand, Cheong et al reported that 2-step self-etching adhesives compared to 1- step self-etching adhesives did not have the incompatibility of chemical/dual-cured composites due to intermediate bonding layer [12].
Middleton, ML Jones: Am J Ortho Dent Orthop Vol. 119(2001), p. 43-53 [5] O. el-Mowafy, MH Rubo: Int J Prosthod Vol. 13(2000), p. 425-31 [6] JA Platt: Comp Cont Edue Dent Vol. 20(1999), p. 1173-8 [7] B.
Vijay, et al : Oper Dent Vol. 28(2003), p. 215-35 [8] RM Carvalho, TA Pegoraro, FR Tay, LF Pegoraro, DH Pashley: J Dent Vol. 32(2004), p. 55-65 [9] C.
Online since: October 2018
Authors: Larisa A. Makrovets, Olga V. Samoilova
The data on the phase diagram of Cu–O system are generalized by Clavaguera-Mora et al. [12], according to this data, for the temperature of 1100 °С the oxygen solubility in the copper melt comprises 0.64 % wt; for 1200 °С – about 1.66 % wt; for 1300 °С – about 3.10 % wt.
Hao et al. [15] present a calculation diagram of the Cu–Na system, according to which this system has a stratification of the molten metal of the monotectic equilibrium temperature of 1084.3 °С.
Chursin, E.L.
Online since: August 2009
Authors: Guang Ying Zhang, Chun Hu Li, Wei Zhu, Jian Zhang, Ying Fei Hou
The metal elements content and organic element components in pyrolysis residue were quantitatively analyzed by using ICP-MS and German EL Ⅲ CHONS Elemental Analyzer, respectively.
Al, Fe, Cu, Mn, V in pyrolysis residue are main components which are also active components of flue gas desulfurization[4-7], and alkali metal, such as Mg, Ca, K, could improve alkaline and adsorptive capability for SO2 adsorbent material.
Table 3 Contents of main elements in oily sludge component Na Mg Al Ca Fe K V Cu mass fraction(%) 2.122 2.208 0.542 4.156 5.610 0.150 0.034 0.083 component Mn Zn Ba C H N S O mass fraction(%) 0.321 0.032 0.156 11.89 0.344 0.607 0.69 11.12 The specific surface area and pore structure of adsorbent material after pyrolysis are measured, and the results are presented in Table 4.
Online since: April 2010
Authors: Francisco A. Corpas-Iglesias, Lourdes Martínez Cartas, Nicolás Pérez Cruz, Cotes Teresa Palomino, Carmen Martínez-García
Corpas Iglesias (3) Lourdes Martínez Cartas (4), Nicolás Pérez Cruz (5) (1), (2), (3), (4) and (5) Chemical environmental and materials engineering, EPS Linares, University of Jaén, Alfonso X el Sabio, 28, 23700 Linares, Jaén, Spain.
Chemical composition of clay Material SiO 2 (%) Al 2 O 3 (%) Fe 2 O 3 (%) MnO (%) MgO (%) CaO (%) Na 2 O (%) K 2 O (%) TiO 2 (%) P 2 O 5 Zr (ppm) LoI (%) Clay 55.82 12.13 4.83 0.03 1.49 9.21 0.49 2.78 0.83 0.12 279.3 10.5 Table 2.
Given the content of calcium carbonate, calcium oxide is the reactive leading to the formation of anorthite: ((Al2Si2O8) C), wollastonite (Ca [SiO3]) and gelenita (Ca2 Al (AlSi7)) [6].
Online since: May 2012
Authors: Xue Dong Ren, Jia Li Dong, Ying Wang, Jun Sheng Hu
Health, Vol.40 (2005), p1 [5] Zhao Jinglian, Zhong Faguo, Zhao Liang, et al.
El Samranid, J.
Environmental Science and Technology, Vol. 25 (l) (2002), p11 [19] Hu Junsheng,Li Yue,Ren Xuedong, et al.
Online since: October 2006
Authors: E. Palcevskis, R. Svinka, V. Svinka, G. Bula, T. Juettner
Gas permeability was measured and calculated acording Darcy's law.Characteristics Kaolin (Zettlitz 1A) Alumina (RT) ZrO2 (Treibach) Al paste (Schlenk VP 11144) Density [g/cm 3] 2,62 3,8 5,6 2,7 d50 particle size [microns] 3,5 50 3,6 15 Specific surface [m 2/g] 16 60 - Loss on Ignition [wt%] 13,3 0,6 - SiO2 [wt%] 46,8 0,02 0,01 Al2O3 [wt%] 36,8 min. 98,0 0,005 Fe2O3 [wt%] 1,05 0,02 0,005 TiO2 [wt%] 0,25 0,01 - CaO [wt%] 0,45 - - MgO [wt%] 0,30 - - Na2O [wt%] 0,03 0,25 - K2O [wt%] 1,10 0,05 - Kaolinit [wt%] 90 - ZrO2 99,9 Quartz [wt%] 2 - - Micaceous minerals [wt%] 8 - - α-alumina [wt%] -2 5- Table 1.
[6] S.Vallar, D.Houivet, I.El Fallah, D.Kervadec and I-M.
Online since: December 2019
Authors: Devi Rianti, Anita Yuliati, Yuliana Merlindika, Elly Munadziroh, Aditya Ari, Mahardhika P. El Fadhlallah, Dwi M. Ariani, Nadia Kartikasari
Mechanical Strength and Porosity of Carbonate Apatite-Chitosan-Gelatine Scaffold in Various Ratio as a Biomaterial Candidate in Tissue Engineering Anita Yuliati1,a*, Yuliana Merlindika1,b, Elly Munadziroh1,c, Aditya Ari M.D.1,d, Mahardhika El Fadhlallah P.1,e, Devi Rianti1,f, Dwi Ariani M.1,g, Nadia Kartikasari1,h 1Universitas Airlangga, Faculty of Dental Medicine, Jl.
[6] Park J-Y, Yang C, Jung I-H, Lim H-C, Lee J-S, Jung U-W, et al.
[18] Matsuura A, Kubo T, Doi K, Hayashi K, Morita K, Yokota R, et al.
[22] Ge J, Guo L, Wang S, Zhang Y, Cai T, Zhao RCH, et al.
[23] Woodard JR, Hilldore AJ, Lan SK, Park CJ, Morgan AW, Eurell JAC, et al.
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