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Online since: June 2013
Authors: Patricia Krawczak, Carla Isabel Martins, Vania M. Oliveira, Eric Lafranche
Bos, The potential of flax fibres as reinforcement for composite materials, Phd Thesis, Eindhoven :Technische Universiteit Eindhoven, 2004
Anderson, Modeling elastic properties of short flax fiber-reinforced composites by orientation averaging, Computation Materials science, 50, 595-599, (2010)
Bader, On the re-inforcement of thermoplastics by imperfectly aligned discontinuous fibres, Journal of Material Science, 7, 1315-1321, (1972)
[23] Thomason J.L.: The influence of fibre properties on the properties of glass-fibre-reinforced polyamide 66, Journal of Composite Materials, 34, 2, 158-172 (2000)
Bos, The Potential of Flax Fibres as Reinforcement for Composite Materials, Phd Thesis, University Press Facilities, Eindhoven, the Netherlands, (2004)
Online since: April 2014
Authors: Jüri Majak, Jaan Kers, Hendrik Herranen, Robert Talalaev, Jürgo S. Preden, Martin Eerme, Henri Lend, Georg Allikas
SAW device consists of two materials: metallic cap and quartz wafer on to which the filter circuit is etched.
The factor of safety distribution among the various materials is shown figure 1.
The source of the stress concentration is the stiffness and Poisson ratio mismatches of different materials in the specimens.
References [1] Warkentin DJ, Crawley EF, Embedded, Proceedings of AIAA 32nd Conference on Structures, Structural Dynamics and Materials 1991, Baltimore, USA, p.1322 [2] Kim KS, Breslauer M, Springer GS, Journal of Reinforced Plastics and Composites, Vol 11 (1992), p. 949 [3] Sirkis JS, Singh H, Dasgupta A, Chang CC, Proceedings of the ADPA/AIAA/ASME/SPIE Conf. on Active Materials and Adaptive Structures 1992, Alexandria, USA, p. 563
Mechanics of Composite Materials, 45(6), (2009), p. 631 [10] Pohlak, Meelis; Küttner, Rein; Majak, Jϋri, Rapid Prototyping Journal, 11(5), (2005) p. 304
Online since: December 2011
Authors: Zhan Ji Wei, Dong Xu Li, Rui Xu
Huang: Journal of Spacecraft and Rocket Vol. 42 (2005), p. 654 [5] Y.M.
Zheng: Key Engineering Materials Vol. 353-358 (2007), p. 571 [6] Y.H.
Tang: Chinese Journal of Mechanical Engineering Vol. 35 (1999), p. 11 [8] D.W.
Tan: Journal of Ordance Engineering College Vol. 17 (2005), p. 64 [9] H.R.
Jiang, A.M Ulanov: Modeling and Simulation in Material Science and Engineering Vol. 13 (2005), p. 609
Online since: June 2011
Authors: Roberto Martínez-Sánchez, Ivanovich Estrada-Guel, J. Martin Herrera-Ramírez, Mario Miki-Yoshida, J. I. Barajas-Villaruel, R. Pérez-Bustamante, F. Pérez-Bustamante, Patricia Amézaga-Madrid
Materials and methods CNTs were produced by chemical vapor deposition technique and the 2024 aluminum alloy was prepared from elemental powders.
Shinozaki, Materials Science and Engineering A Vol. 495 (2008), p. 282–287
Li, Materials Science and Engineering A Vol. 444 (2007), p. 138
Zhang, Materials Characterization Vol. 55 (2008), p. 211
Martínez-Sánchez, Materials Science and Engineering A Vol. 502 (2009), p. 159
Online since: April 2014
Authors: Xue Yu Xiong, Li Jun Wang, Rong Jun Xue, Sen Zhang
Typically, such concretes will have a low water-cementing materials ratio of 0.20 to 0.45.
Materials and Structures. 1995, 28(6): 357-365
Materials and Structures. 1995, 28(7): 415-430
Materials and Structures. 1995, 28(8): 488-495
ACI Materials Journal. 2001, 98(2): 159-167
Online since: October 2006
Authors: Hsueh I Chen, Jyh Chen Chen
The shear rates ( maxγ& ) were selected to be 179.5, 359.1 and 598.4 (1/s), and the solid fraction for the tested material is 0.38.
Kool: Materials Science and Engineering Vol. 183A(1994), p.247 [5] W.M.
Mehrabian: Journal of Materials Science Vol. 11(1976), p.1393 [7] D.
Regazzoni: Journal of materials science Vol. 25(1990), p.1184 [9] A.R.A.
Chang: Journal of the Chinese Society of Mechanical Engineers Vol. 24(2003), p.385 [12] S.
Online since: October 2011
Authors: Su Ju Hao, Wu Feng Jiang, Yun Han Ling
Acknowledgements Financial support for this work from the National Natural Science Foundation of China (Grant no. 10776017), Province Natural Science Foundation of Hebei (Grant no.
E2006000355), Science and Technology Ministry of Hebei Province(Grant no. 07215108) and Science and Technology Ministry of Tangshan (Grant no. 04360101B-5) are gratefully acknowledged.
Journal of Hazardous Materials, 2007, Vol. 143(1-2) (2007), p. 57 [6] Peng Lai, Huazhang Zhao, Chao Wang, etal.
Chinese Journal of Environment Engineering.
Journal of Lanzhou Jiaotong University(Natural Sciences), Vol. 23(1) (2004), p. 61.
Online since: March 2020
Authors: M.T. Abou El-Khair, Essam Ahmed, Atef Daoud, Fatma Firouz, Ahmed Lotfy
Gokhale, Foaming experiments on LM25 alloy reinforced with SiC particulates, Materials Science and Engineering A, vol. 527 pp. 6082–6090, 2010 [5] K.
Gokhale, Effect of SiC particle content on foaming and mechanical properties of remelted and diluted A356/SiC composite, Materials Science and Engineering A, vol. 598, pp. 343–349, 2014 [7] J.
Ziyuan, Effect of ceramic particles on cell size and wall thickness of aluminum foam, Materials Science and Engineering A, vol. 361, pp. 45–49, 2003 [10] A.
Nakamura, Fabrication method for closed-cell aluminum foam with improved sound absorption ability, Procedia Materials Science, vol. 4, pp. 9 – 14, 2014 [11] P.
Wu, Effects of reinforcement oxidation on the mechanical properties of SiC particulate reinforced aluminum composites, Materials Science and Engineering A, vol.252, pp.188–198, 1998 [13] Z.
Online since: March 2011
Authors: Etienne Patoor, Denis Bouscaud, Raphaël Pesci, Sophie Berveiller
Fig. 1: The principle of the Kossel microdiffraction inside a SEM Several materials have already been tested with this technique: copper, nickel and titanium alloys, steels and germanium.
Maes: Journal of Applied Physics, Vol. 82 (1999), p. 6477 [2] N.
Patel: Materials Science and Engineering A399 (2005), p. 92 [3] S.
Patoor: Materials Science Forum Vol. 490-491 (2005), p. 159 [5] K.
Waché: Journal of Applied Crystallography 3 (1970), p. 466 [7] D.
Online since: March 2016
Authors: Qing Li, Jin Xia Song, Wei Peng Ren, Qiang Huang, Xin Guang Guan, Hao Chen
Tian, Study on Microstructure and Properties of K465 Alloy, Journal of Northeastern University (Natural Science). 29(2008) 1126-1129
Hu, Morphological evolution of MC carbide in K465 superalloy, Journal of Materials Science. 41 (2006) 6476-6478
Hu, Relative stability of carbides and their effects on the properties of K465 superalloy, Materials Science and Engineering A. 429(2006) 341-347
Li, Melt treatment Time on Microstructure and Mechanical Properties of As-cast Ni-based Superalloy K465, Journal of Aeronautical Materials. 25(2005) 1-4
Hu, Morphological evolution of γ’ phase in K465 superalloy during prolonged aging, Materials Science and Engineering A. 457(2007) 148-155.