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Online since: September 2017
Authors: T.Yu. Chernysheva, V.I. Starikov, E. Knauss
., Hamzaoui H.El., Capoen B., Bouazaoui M., Ausset P., Boulet C., and Hartmann J-M.
[14] Townes C.H., Schawlow A.L.
Online since: January 2010
Authors: Keiji Ueda, Shinichi Suzuki, Shinji Mitao, Nobuo Shikanai, Takayuki Ito
Table 2 Chemical compositions of newly developed steel plates (mass%) C Si Mn P S Others Ceq PCM 0.06 0.18 1.98 0.011 0.002 Cu, Ni, Cr, Nb, V, Ti 0.54 0.24 Ceq=C+Si/24+Mn/6+Ni/40+Cr/5+Mo/4+V/14 PCM=C+Si/30+Mn/20+Cu/20+Ni/60+Cr/20+Mo/15+V/10+5B Table 3 Mechanical properties of developed steel plates T (mm) YS (MPa) TS (MPa) El (%) YR (%) vE0oC (J) 12 688 923 23 75 188 25 703 912 33 77 216 40 665 852 36 78 199 Target >650 >780 >16 <80 >70 Tensile test: Full thickness (JIS No.5)-transverse Charpy test: 1/4t-transverse 500 600 700 800 900 1000 0 5 10 15 20 25 Volume fraction of M-A (%) YS,TS (MPa) 60 70 80 90 0 5 10 15 20 25 Volume fraction of M-A (%) YR (%) 0 50 100 150 200 250 vEo ( J) 500 600 700 800 900 1000 0 5 10 15 20 25 Volume fraction of M-A (%) YS,TS (MPa) 60 70 80 90 0 5 10 15 20 25 Volume fraction of M-A (%) YR (%) 0 50 100 150 200 250 vEo ( J) 0 200 400 600 800 1000 0 2
Cryderman, et al, Steel Strengthning Mechanism, Zurich, Climax Molybdenum, 1969, p 17-44 [11] M.
Online since: October 2006
Authors: G. Klaus, W. Nick, Heinz Werner Neumüller
References [1] Superconducting Generator Design, prepared by Westinghouse Electric Corporation for EPRI, Report EPRI EL-577, Project RP429, November 1977
Yamaguchi, et al, " 70 MW Class Super-conducting Generator Test", IEEE Transactions on Applied Superconductivity, Vol. 9, No.2, June 1999, page 1209-1212 [3] S.
Online since: November 2018
Authors: Hermann Kloberdanz, Lena C. Altherr, Peter F. Pelz, Nicolas Brötz, Felix Geßner, Andreas Schmitt, Tristan Gally, Ingo Dietrich, Philipp Leise, Pia D. Schlemmer
., Thoma et al. [10] use it to investigate systems with “generic capabilities that enable complex systems to withstand, survive and adapt to disruptions with the help of solutions from the engineering science”.
El Ghaoui and A.
Online since: October 2016
Authors: Jörg Franke, Jupiter Bakakeu, Bruno Kleinert, Dietmar Fey, Markus Michl, Franziska Schäfer
Charbel El Kaed, Y.
Rossi et al, “Interoperability issues among smart home technological frameworks,” in 2014 IEEE/ASME 10th International Conference on Mechatronic and Embedded Systems and Applications (MESA), pp. 1–7
Online since: September 2016
Authors: Carmen Andrade, Wilfrido Martínez Molina, Eric Ivan Moreno, Andres Torres-Acosta, Jose Trinidad Pérez-Quiroz, Miguel Martínez-Madrid, Elia Alonso-Guzmán, Pedro Castro-Borges, Juan Genescá-Llongueras, Benjamin Valdez-Salas, Luis Eduardo Ariza-Aguilar, Miguel Baltazar, Demetrio Nieves, Facundo Almeraya-Calderón, Citlali Gaona-Tiburcio, Tezozomoc Pérez-López, Esteban López-Vázquez, Jorge Rodriguez, Nuria Rebolledo, Oladis Troconis-Rincón
México. 2Instituto Mexicano del Transporte, Sanfandila, Querétaro, Km 12+000, Carretera Estatal No. 431 "El Colorado Galindo"/ Parque Tecnológico San Fandila/ Mpio.
[3] Troconis, O, et al.
Online since: February 2024
Authors: M. Asif Memon, Abid Memon, G. Shaikh, Adebowale Martins Obalalu
Abbott et al., “Observation of Gravitational Waves from a Binary Black Hole Merger,” Physical Review Letters, vol. 116, no. 6, Article ID 061102, 2016
[38] Rehman, Khalil Ur, Wasfi Shatanawi, Mostafa Zahri, El-Sayed M.
Online since: June 2022
Authors: Yuriy Sharkeev, Natalya Saprykina, Egor Ibragimov, Alexandr Saprykin, Margarita Khimich, Alexey Saprykin
El Mehtedi, et al.
Online since: June 2021
Authors: Unopa Matebesi, Nonofo M.J. Ditshego
Matebesi, et al., [2] MOSFETs and TFTs are devices with active regions measured in microns whereas FinFETs active regions are measured in nano-meter.
ni.fermi calculates nie (intrinsic carrier concentration) using Fermi-Dirac statistics. hcte.el Parameters enable the energy transport model for electrons only, bqp.ngamma=$gamma The BQP.NGAMMA and BQP.PGAMMA allow you to set the γ parameter for electrons and holes respectively.
Online since: September 2008
Authors: Lorenz Singheiser, W.Joe Quadakkers, J. Zurek, Gerald H. Meier, E. Essuman, Michael Hänsel
Quadakkersf,1 1 Forschungszentrum Jülich, IEF-2, 52428 Jülich, Germany 2 University of Pittsburgh, Pittsburgh, PA, USA a e.essuman@fz-juelich.de, bghmeier@engr.pitt.edu, cj.zurek@fz-juelich.de, d m.haensel@fz-juelich.de, el.singheiser@fz-juelich.de, fj.quadakkers@fz-juelich.de, Keywords: Fe-Cr alloys, chromia, water vapor, hydrogen, breakaway, internal oxidation Abstract.
Table.1 Chemical composition of the tested materials in weight percent Alloy Composition (wt %) Fe Cr N C O Al P S Fe-10Cr Bal. 10.1 0.0008 0.004 0.0051 - <0.01 0.002 Fe-20Cr Bal. 19.5 0.0008 0.008 0.0041 0.06 <0.01 0.002 The oxidized specimens were prepared in cross-section using conventional metallographic techniques and analysed by light optical microscopy, scanning electron microscopy (SEM) with energy dispersive X-ray analysis (EDX), and Laser Raman Spectroscopy (LRS).
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