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Online since: September 2012
Authors: Katsuyuki Kida, Koshiro Mizobe, Takashi Honda, Hitonobu Koike, Edson Costa Santos, Takuya Shibukawa
Zhou: Engineering Failure Analysis, Vol. 17 (2010), pp. 1517-1525 [8] R.
Yamamoto: Materials Science Forum, Vols. 561-565 (2007), pp. 2345-2348 [15] C.
Rozwadowska: Advanced Material Research, Vols. 217-218 (2011), pp. 1266-1271, DOI: 10.4028/www.scientific.net/AMR.217-218.1266 [17] E.
Hashimoto: Advanced Material Research, Vols. 217-218 (2011), pp. 982-987, DOI: 10.4028/www.scientific.net/AMR.217-218.982 [18] K.
Shibukawa: Advanced Material Research, Vols. 457-458 (2012), pp. 1025-1031, DOI: 10.4028/www.scientific.net/ AMR.457-458.1025
Online since: October 2010
Authors: Hui Qin Gao, Xin Qi Yu, Pei Ying Peng, Jia Hui Yu
Numerical Analysis on Tribological Properties of Mechanical Seals with a Laser-Textured Face Xinqi Yu1,a, Peiying Peng1,b, Huiqin Gao1,c Jiahui Yu2,d 1School of Mechanical and Electronic Engineering, Hebei University of Science and Technology, Shijiazhuang 050018, PR China 2School of Foreign Language and Literature, Shandong University, Jinan 250100, PR China ayxqyxq0016@163.com, bpengpeiy@163.com, cghq1105@126.com, djiahuiyu2008@163.com Keywords: mechanical seals, laser-textured, micro-pore, friction torque, finite difference method Abstract.
Lai: Lubrication Engineering Vol. 50(8)(1994), p. 625 [2] H.
Matsushima: Lubrication Engineering Vol. 40(9) (1984), p.533 [3] X.Q.
Wang: Materials Science Forum Vol. 532 (9)(2006), p. 463 [4] X.Q.
Gao: Advanced Materials Research Vols. 97-101(2010), p.4505 [5] P.R.
Online since: January 2007
Authors: Hayao Imamura, Hirotaka Fujimori, Yoshihisa Sakata, Asuka Kozu, Ki Young Kim, Kazunori Oshiro, Setsuo Yamamoto
Photocatalytic Performance of Barium-doped Strontium Tantalate Asuka Kozu 1, Hirotaka Fujimori1, a , Kiyoung Kim 1 , Kazunori Oshiro1 Setsuo Yamamoto1, b, Yoshihisa Sakata2, c and Hayao Imamura2, d 1 Applied Medical Engineering Science, Graduate School of Medicine, Yamaguchi University, 2-16-1 Tokiwadai, Ube, Yamaguchi 755-8611 Japan 2 Department of Advanced Materials Science and Engineering, Faculty of Engineering, Yamaguchi University, 2-16-1 Tokiwadai, Ube, Yamaguchi 755-8611 Japan a fujimori@yamaguchi-u.ac.jp, byamamoto@yamaguchi-u.ac.jp c yoshi-sa@yamaguchi-u.ac.jp, dhi-khm@yamaguchi-u.ac.jp Keywords: photocatalyst, tantalate, perovskite Abstract.
Forum, Vol. 321-324 (2000) p. 198
Online since: June 2010
Authors: Kenji Higashi, Tokuteru Uesugi, Yorinobu Takigawa, Isao Matsui
Curtin: Materials Science and Engineering A 412 (2005) 316
Higashi: Materials Science Forum 561-565 (2007) 1375
Higashi: Advanced Materials Research 26-28 (2007) 691
Jiang: Materials Science and Engineering A 487 (2008) 410
Chokshi: Materials Science and Engineering A 503 (2009) 86.
Online since: September 2013
Authors: Pavol Zubko, Miloš Matvija, Martin Fujda
Jönsson, Materials Science Forum 396-402 (2002) 399-404
Sha, et al., Materials Science and Engineering A 304-306 (2001) 612-616
Kuijpers, et al., Materials Science and Engineering A 394 (2005) 9-19
Banhart, Advanced Engineering Materials 12 (7) (2010) 559-571
Online since: October 2007
Authors: Laure Bourgeois, Chad W. Sinclair, Christopher R. Hutchinson, Julien da Costa Teixeira
Hutchinson1,d 1 ARC Centre of Excellence for Design in Light Metals, Department of Materials Engineering, Monash University, Clayton, 3800, VIC, Australia 2 Monash Centre for Electron Microscopy, Monash University, Clayton, 3800, VIC, Australia 3 Department of Materials Engineering, University of British Columbia, Vancouver, BC, Canada a julien.teixeira@eng.monash.edu.au, blaure.bourgeois@eng.monash.edu.au, cchad.sinclair@ubc.ca, dchristopher.hutchinson@eng.monash.edu.au Keywords: work hardening, aluminum alloys, back stress, ageing.
Introduction In the design of precipitation strengthened aluminum alloys, for a wide range of engineering applications, there is a need to obtain microstructures exhibiting good combinations of both yield strength and uniform elongation.
JDC also gratefully acknowledges the award of a travel grant from the Australian Research Network for Advanced Materials (ARNAM) for the work performed at the University of British Columbia (UBC).
Forum Vol. 519-521 (2006) pp. 913-918
Online since: January 2012
Authors: Francis Abraham, Joshua Walker, Zhanwen Chen
Chena, Francis Abrahamb and Joshua Walkerc Department of Mechanical Engineering, AUT University, NZ azhan.chen@aut.ac.nz, bfabraham@aut.ac.nz, cpdy8886@aut.ac.nz Keywords: Material flow, Si particles, segregation, fracture path.
Engineering stress and strain curves of both non-FS and FS samples after T6 heat treatment are shown in Fig. 5.
Fig. 5 Engineering stress-strain curves of a non-FS and an FS samples.
Forum Vols. 618-619 (2009), p. 361
Forum.
Online since: November 2011
Authors: Kenji Matsuda, Yasuhiro Uetani, Susumu Ikeno, Masayoshi Dohi, Nanako Mori
Ikeno, : Journal of Japan Foundry Engineering Society Vol. 70, 1998, p.641 – 647
Ikeno : Proceedings of the fourth Pacific Rim Conference on Advanced Materials and Processing (PRICM-4), 2001, p.2371 – 2374
Ikeno, : Materials Science Forum, Vols. 42-432, 2003, p.507 – 512
Ikeno, : Journal of Japan Foundry Engineering Society Vol. 77, 2005, p.246 – 252
Kim : Materials Science and Engineering A 402, 2005, 170 – 176
Online since: April 2012
Authors: S. Rex, V.P. Ginkin, D. Voss, A.V. Kartavykh, S. Ganina, Ulrike Hecht
Introduction Ti-46Al-8Nb (at.%) intermetallic alloy developed within the pan-European IMPRESS project is both lightweight and creep resistant to high temperatures (~ 800oC), so being one of advanced materials for turbines of aircraft engines [1, 2].
Microstructure engineering of specimens inoculated with boron grain refiner.
Engineering A Vol. 413–414 (2005), p.583 [2] Information on http://ec.europa.eu/research/industrial_technologies/pdf/the-executive-summary-of-impress-project_en.pdf [3] D.
Forum Vol. 649 (2010), p.17 [7] I.
Forum Vol. 649 (2010), p. 223 [10] A.
Online since: May 2020
Authors: D.O. Pustovoytov, Dmitriy Konstantinov, Boris Zaritskiy
Nürnberger, Structural evolution of thin lamellar cementite during cold drawing of eutectoid steels, Procedia Engineering. 81 (2014) 694-699
Kustra, The multi-scale FEM simulation of the drawing processes of high carbon steel, Journal of Achievements in Materials and Manufacturing Engineering, 23 (2007) 71-74
Kuziak, Computer Simulation of Transformation during TRIP Steel Rod Drawing, Key Engineering Materials, 716 (2016) 620-631
Xie, Deformation of cementite in cold drawn pearlitic steel wire, Materials Science and Engineering A, 608 (2014) 11-15
Fang, Effect of Reserved Texture on Mechanical Properties of Cold Drawn Pearlitic Steel Wire, Advanced Materials Research, 936 (2014) 1948-1952