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Online since: January 2010
Authors: Sybrand van der Zwaag, D.D. Risanti, Jiang Hua Chen, M. Yin
Risanti2,b, JiangHua Chen1,c
and S. van der Zwaag3,d
1 College of Materials Science and Engineering, Hunan University, Yuelu Hill Changsha city
410082, Hunan, China
2 Materials Innovation Institute, Mekelweg 2, 2628CD Delft, The Netherlands
3 Fundamentals of Advanced Materials Group, Faculty of Aerospace Engineering, Delft University
of Technology, Kluyverweg 1, 2629HS Delft, The Netherlands
a
email: ymj83612@163.com, bemail: d.d.risanti@tudelft.nl, cemail: jhchen123@hnu.cn, demail:
s.vanderzwaag@tudelft.nl
Keywords: Al-Cu-Mg alloys, ageing, secondary precipitation, thermoelectric power.
Forum, Vols. 396-402 (2002) p.783
Forum, Vols. 396-402 (2002) p.783
Online since: December 2012
Authors: Yannick Le Maoult, Gerard Bernhart, Jean Paul Arcens
a)
b)
c)
d)
Figure 3 : Energy consumption calculation illustration a) Resistive configuration b) ISIR-SPF configuration c) double radiative cavity d) ComsolÒ simulation results
Resistive heating consumption analysis is based on industrial forming processes and on the classical engineering calculation used in industry [8] for such kind of furnaces (fig 3a).
Nazaret in : Superplastic Forming of Advanced Metallic Materials : Methods and Applications,. edited by Gillo Giuliano, chapter 3, Woodhead Publishing in Materials (2011), ISBN 978-1-84569-753-2 [2] A Jocelyn , Key Engineering Materials, 433, (2010) [3] G.
Cutard, Mat Science Forum, 551-552, 37-42(2007), [7] F.
Nazaret in : Superplastic Forming of Advanced Metallic Materials : Methods and Applications,. edited by Gillo Giuliano, chapter 3, Woodhead Publishing in Materials (2011), ISBN 978-1-84569-753-2 [2] A Jocelyn , Key Engineering Materials, 433, (2010) [3] G.
Cutard, Mat Science Forum, 551-552, 37-42(2007), [7] F.
Online since: December 2012
Authors: A. Killinger, R. Gadow
Plasma sprayed oxide ceramic coatings based on alumina, titania, zirconia and chromia are widely used for many application in mechanical engineering like printing and paper, textile machines etc..
Gitzhofer, Suspension Plasma Spraying for the Preparation of Perovskite Powders and Coatings, Proceedings of 1st United Thermal Spray Conference - Thermal Spray: A United Forum for Scientific and Technological Advances (1997), p 349-352. [5] M.
Boulos, SOFC/CeO2 Doped Electrolyte Deposition Using Suspension Plasma Spraying, in: Proceedings of 1st International Thermal Spray Conference - Thermal Spray: Surface Engineering via Applied Research 1 (2000), p 929-934. [6] F.
Thiele, Photocatalytic properties of coatings sprayed from TiOx and Tin−2Cr2O2n−1 powders by APS and VPS, Thermal Spray Solutions: Advanced in Technology and Application, Osaka 2004, Japan, Pub.
Manzat, Advanced ceramic tribological layers by thermal spray routes, Advances in Science and Technology, Vol. 66, 2010, p 106-119. [14] ThyssenKrupp VDM, Crofer® 22 H, Preliminary Material Data Sheet No. 4050, June 2008 Edition. [15] N.
Gitzhofer, Suspension Plasma Spraying for the Preparation of Perovskite Powders and Coatings, Proceedings of 1st United Thermal Spray Conference - Thermal Spray: A United Forum for Scientific and Technological Advances (1997), p 349-352. [5] M.
Boulos, SOFC/CeO2 Doped Electrolyte Deposition Using Suspension Plasma Spraying, in: Proceedings of 1st International Thermal Spray Conference - Thermal Spray: Surface Engineering via Applied Research 1 (2000), p 929-934. [6] F.
Thiele, Photocatalytic properties of coatings sprayed from TiOx and Tin−2Cr2O2n−1 powders by APS and VPS, Thermal Spray Solutions: Advanced in Technology and Application, Osaka 2004, Japan, Pub.
Manzat, Advanced ceramic tribological layers by thermal spray routes, Advances in Science and Technology, Vol. 66, 2010, p 106-119. [14] ThyssenKrupp VDM, Crofer® 22 H, Preliminary Material Data Sheet No. 4050, June 2008 Edition. [15] N.
Online since: February 2007
Authors: Z.L. Simon, László Mihály Vas
Vasb
Department of Polymer Engineering, Budapest University of Technology and Economics
H-1111, Budapest, Mőegyetem rkp. 3., Hungary
a
simon@pt.bme.hu, bvas@pt.bme.hu
Keywords: woven glass reinforced composite, three point bending test, span-to-thickness ratio,
bending modulus
Abstract.
Introduction Designing with composite materials has always been a big challenge to the engineers.
Materials Science Forum 473474 (2005), p. 59 [2] T.
Advanced Composites Letters 10 (2001), p. 257 [12] S.
Introduction Designing with composite materials has always been a big challenge to the engineers.
Materials Science Forum 473474 (2005), p. 59 [2] T.
Advanced Composites Letters 10 (2001), p. 257 [12] S.
Online since: June 2009
Authors: Feng Shou Gu, Andrew Ball, Salem Al-Arbi, Lu Yang Guan, Abdelhamid Naid
Naid
1,e
1
School of Computing and Engineering, University of Huddersfield,
a
S.Al-Arbi@hud.ac.uk, bf.gu@hud.ac.uk, cl.guan@hud.ac.uk, da.ball@hud.ac.uk,
e
a.naid@hud.ac.uk
Keywords: Gearbox, attenuation, interference, spectrum analysis, time synchronous averaging.
To develop more effective and robust diagnosis features from remote measurements with more advanced data analysis is the future work of this subject.
Proceedings of the Institute of Mechanical Engineers.
Smith, A multidisciplinary research approach to Rotorcraft health and usage monitoring, American Helicopter Society 52nd Annual Forum, (1996), p. 1732 [5] L.
To develop more effective and robust diagnosis features from remote measurements with more advanced data analysis is the future work of this subject.
Proceedings of the Institute of Mechanical Engineers.
Smith, A multidisciplinary research approach to Rotorcraft health and usage monitoring, American Helicopter Society 52nd Annual Forum, (1996), p. 1732 [5] L.
Online since: September 2021
Authors: Christelle Habis, Jean Zaraket, Michel Aillerie
The interesting properties, among others, are its direct and wide band gap, large exciton binding energy, strong sensitivity of surface conductivity to the presence of adsorbed species, high thermal conductivity, abundance in nature, large area deposition and the possibility of band gap engineering.
Yin, “Electrochemical Deposition and Properties Research of ZnO Thin Films,” Advanced Materials Research 669 (2013) 72–78. doi: 10.4028/www.scientific.net/AMR.669.72
Wei, “Effect of the ZnO Buffer Layer Thickness on AZO Film Properties,” Advanced Materials Research 562–564 (2012) 81–84.
Martins, “Oxide Semiconductor Thin-Film Transistors: A Review of Recent Advances,” Advanced Materials 24 (2012) 2945–2986. doi: https://doi.org/10.1002/adma.201103228
Lippens, “Advanced indium tin oxide ceramic sputtering targets (rotary and planar) for transparent conductive nanosized films,” Advances in Applied Ceramics 112 (2013) 243–256. doi: 10.1179/1743676112Y.0000000066
Yin, “Electrochemical Deposition and Properties Research of ZnO Thin Films,” Advanced Materials Research 669 (2013) 72–78. doi: 10.4028/www.scientific.net/AMR.669.72
Wei, “Effect of the ZnO Buffer Layer Thickness on AZO Film Properties,” Advanced Materials Research 562–564 (2012) 81–84.
Martins, “Oxide Semiconductor Thin-Film Transistors: A Review of Recent Advances,” Advanced Materials 24 (2012) 2945–2986. doi: https://doi.org/10.1002/adma.201103228
Lippens, “Advanced indium tin oxide ceramic sputtering targets (rotary and planar) for transparent conductive nanosized films,” Advances in Applied Ceramics 112 (2013) 243–256. doi: 10.1179/1743676112Y.0000000066
Online since: March 2011
Authors: Stephen E. Saddow, Christopher L. Frewin, Camilla Coletti, N. Schettini, E. Weeber, A. Oliveros, M. Jarosezski
Single-crystal Silicon Carbide: A Biocompatible and Hemocompatible Semiconductor for Advanced Biomedical Applications
S.
Jarosezski 3), 6) 1) Electrical Engineering Department, USF, Tampa, FL, USA 2) Dept.
Of Molecular Pharmacology and Physiology, USF, Tampa, FL, USA 3) Florida Center of Excellence BITT, USF, Tampa, FL 33620, USA 4) Max Planck Institute for Solid State Res., Heisenbergstr. 1, 70569 Stuttgart, DE 5) Dept. of Electrical and Electronics Engr., Univ. del Norte, Barranquilla, CO 6) Dept. of Chemical and Biomedical Engineering, USF, Tampa, FL, USA Corresponding author: saddow@ieee.org Abstract Crystalline silicon carbide (SiC) and silicon (Si) biocompatibility was evaluated in vitro by directly culturing three skin and connective tissue cell lines, two immortalized neural cell lines, and platelet-rich plasma (PRP) on these semiconducting substrates.
Blood Platelets A significant factor that impacts the ability to engineer and implement man-made biomedical devices into the cardiovascular system is the thrombogenic response that these devices normally initiate.
Saddow, Materials Science Forum 615-617, 589-592 (2009)
Jarosezski 3), 6) 1) Electrical Engineering Department, USF, Tampa, FL, USA 2) Dept.
Of Molecular Pharmacology and Physiology, USF, Tampa, FL, USA 3) Florida Center of Excellence BITT, USF, Tampa, FL 33620, USA 4) Max Planck Institute for Solid State Res., Heisenbergstr. 1, 70569 Stuttgart, DE 5) Dept. of Electrical and Electronics Engr., Univ. del Norte, Barranquilla, CO 6) Dept. of Chemical and Biomedical Engineering, USF, Tampa, FL, USA Corresponding author: saddow@ieee.org Abstract Crystalline silicon carbide (SiC) and silicon (Si) biocompatibility was evaluated in vitro by directly culturing three skin and connective tissue cell lines, two immortalized neural cell lines, and platelet-rich plasma (PRP) on these semiconducting substrates.
Blood Platelets A significant factor that impacts the ability to engineer and implement man-made biomedical devices into the cardiovascular system is the thrombogenic response that these devices normally initiate.
Saddow, Materials Science Forum 615-617, 589-592 (2009)
Online since: June 2025
Authors: William Baya Mwaro, Mahlatse Ramaesele Mphahlele, Mark Walker
Enhancement of Diffusion Coefficients in Ti-Mo Alloy by the Spark Plasma Sintering/Field Assisted Sintering Technology
William Baya Mwaro1,2,a*, Mahlatse Ramaesele Mphahlele1,b
and Mark Walker1c
1Department of Mechanical Engineering, Durban University of Technology, 4001,
Durban, South Africa
2School of Mines and Engineering, Taita Taveta University, P.O Box 635 - (80300) Voi, Kenya.
Guillon, Tooling in Spark Plasma Sintering Technology: Design, Optimization, and Application, Advanced Engineering Materials. 26(5) (2024) 2301391
Burbelko, diffusion model of binary systems controlled by chemical potential gradient, Journal of Casting & Materials Engineering. 6(2) (2022)
Wang, Elucidating the Multi‐Scale Temperature Evolution and Densification Mechanisms of Amorphous Powders During Spark Plasma Sintering: Experiments and Modeling, Advanced Engineering Materials. 25(5) (2023) 2200557
Wang, Novel experimental strategy towards temperature inhomogeneity during spark plasma sintering of metallic glasses, Advanced Powder Materials. 2(3)(2023)100109 [42] W.
Guillon, Tooling in Spark Plasma Sintering Technology: Design, Optimization, and Application, Advanced Engineering Materials. 26(5) (2024) 2301391
Burbelko, diffusion model of binary systems controlled by chemical potential gradient, Journal of Casting & Materials Engineering. 6(2) (2022)
Wang, Elucidating the Multi‐Scale Temperature Evolution and Densification Mechanisms of Amorphous Powders During Spark Plasma Sintering: Experiments and Modeling, Advanced Engineering Materials. 25(5) (2023) 2200557
Wang, Novel experimental strategy towards temperature inhomogeneity during spark plasma sintering of metallic glasses, Advanced Powder Materials. 2(3)(2023)100109 [42] W.
Online since: July 2022
Authors: Antonio Squillace, Antonio Caraviello, Andrea El Hassanin, Fabio Scherillo, Antonello Astarita, Domenico Borrelli, Francesco Napolitano, Emanuele Manco, Carmela Trimarco
Laser-Powder Bed Fusion of Inconel 718 Alloy: Effect of the Contour Strategy on Surface Quality and Sub-Surface Density
Andrea El Hassanin1,a*, Francesco Napolitano1,b, Carmela Trimarco1,c, Emanuele Manco1,d, Fabio Scherillo1,e, Domenico Borrelli2,f,
Antonio Caraviello2,g, Antonino Squillace1,h and Antonello Astarita1,i
1Dept. of Chemical, Materials and Production Engineering, University of Naples “Federico II”, Piazzale Vincenzo Tecchio 80, 80125, Naples, Italy
2Sòphia High Tech, Via Romani 228, 80048, Naples, Italy
a*andrea.elhassanin@unina.it, bfrancesco.napolitano4@unina.it, ccar.trimarco@studenti.unina.it, demanuele.manco@unina.it, efabio.scherillo@unina.it, fdomenico.borrelli@sophiahightech.com, gantonio.caraviello@sophiahightech.com, hsquillac@unina.it, iantonello.astarita@unina.it
Keywords: Laser-Powder Bed Fusion, Inconel 718, surface roughness, density.
In this context, Laser-Powder Bed Fusion (L-PBF) is one of the leading metal AM technologies that allows the production of complex parts with high quality starting from metal powders, along with Electron Beam-Powder Bed Fusion (E-PBF) and Laser Engineered Net Shaping (LENS®) [2].
Uhmer, P.Carlone, Advanced robotics and additive manufacturing of composites: towards a new era in Industry 4.0, Mater.
Forum Res.
In this context, Laser-Powder Bed Fusion (L-PBF) is one of the leading metal AM technologies that allows the production of complex parts with high quality starting from metal powders, along with Electron Beam-Powder Bed Fusion (E-PBF) and Laser Engineered Net Shaping (LENS®) [2].
Uhmer, P.Carlone, Advanced robotics and additive manufacturing of composites: towards a new era in Industry 4.0, Mater.
Forum Res.