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Online since: June 2015
Authors: Shamsul Baharin Jamaludin, Noorazimah Ab Llah, Zuraidawani Che Daud
Ceramics International 39(2013)183-195
Materials Science and Engineering A 578(2013)160-166
Journal of Biomimetic, Biomaterials &Tissue Engineering 12(2011), 1-25
Materials Science and Engineering C 29(2009)1959-1964
Materials Science and Engineering B 176(2011)1644-1652
Online since: November 2013
Authors: Sorin Ilie, Adrian Miuţescu, Mircea Stoianovici, Gabriela Mitran
The proposed technology has been applied for a quantity of 10 kg of used automotive catalysts of ceramic monolithic type, at the end of the recovery process and selective separation, resulting the following recovery efficiencies: 95 % for Platinum, 95 % for Palladium and 92 % for Rhodium.
These important requirements for automotive engineering can only be achieved through appropriate use of advanced materials and technologies.
Hydrometallurgical Technology of Solid-Liquid Extraction Generally, a multifunctional catalytic converter (3-way catalyst) mounted on an automobile consists of the following components [3]: - monolithic ceramic support (cordieritic ceramic 2Al2O3 x 2MgO x 5SiO2), impregnated through a secondary support (g-Al2O3) with a catalytic active phase, consisting of precious metals (Pt, Pd, Rh); - elastic material made of rolled ceramic fiber, which protect mechanically and thermally the monolithic support; - protective metal housing, made of ferritic stainless steel sheet.
Due to continued growth of the exigencies imposed by the international standards of environmental protection, the use of catalytic converters on automobiles became compulsory, the cars industry being nowadays the largest consumer of precious metals (Pt, Pd, Rh) from all fields.
Zahran, Hydrometallurgical recovery of nano-palladium from spent catalyst, The Open Mineral Processing Journal, 2 (2009) 31-36
Online since: March 2008
Authors: Han Gong Wang, Liu Ying Wang, Gu Liu, Shao Chun Hua
Thus, such defects are due to the intrinsic characteristics of ceramics.
Journal of Materials Engineering, Vol.12(2004), p.47 [2] C.J Li, B Sun.
Singapore: ASM International, p.727(2001) [5] J.R Fincke, W.D Swank, D.C Haggard.
Quebec: ASM International, p.9 (2000) [6] G.
Seattle: ASM International (CD-ROM) [7] M.
Online since: May 2011
Authors: Xing Guo Wang, Yao Zhi Wang
Kavitha: Materials Science and Engineering: C.
Drinkwater: NDT & E International.
Mclntyre: The Journal of the Acoustical Society of America.
Chang: Material for Mechanical Engineering, Vol. 31 (2007) , p. 62
Hua: Journal of Zhe Jiang University (Engineering Science).
Online since: September 2016
Authors: Mohannad Naeem Houshi
Jain, VK, Sidpara, A, Sankar, MR & Das, M 2011, ‘Nano-finishing techniques: a review’, Journal of Mechanical Engineering Science, vol.226, pp.327-346
Judal, KB & Yadava, V 2013, ‘Electrochemical magnetic abrasive machining of AISI304Stainless Steel tubes, International Journal of Precision Engineering and Manufacturing, vol. 14, no. 1, pp. 37-43
Engineering Manufacture, vol.225, pp.853-864
Sidpara, AM & Jain, VK2012 b, ‘Nanofinishing of freeform surfaces of prosthetic knee joint implant’, Journal of Engineering Manufacture, vol.226, no.11, pp.1833-1846
Yamaguchi, H & Shinmura, T 2004, ‘Internal finishing process for alumina ceramic components by a magnetic field assisted finishing process’, Precision Engineering, vol.28,no.2,pp. 135-142
Online since: May 2021
Authors: Valeria V. Strokova, Alexandr L. Popov, A.E. Mestnikov
Jernovskiy, The structure formation of the cellular concrete with nanostructured modifier, Key Engineering Materials, 729 (2017) 99-103
Bezdrodnykh, Study of mineral components influence on foam system properties, IOP Conference Series: Materials Science and Engineering, (2018) 12-21 [4] V.S.
Krivenkova, Technogenic sand as activator of cement hardening, Proceedings of the international conference actual issues of mechanical engineering, 133 (2017) 19–24
Pirieva, Effective composite binders, Proceedings of the international conference actual issues of mechanical engineering, 133 (2017) 42–47
Botsman, Efficiency of Composite Binders with Antifreezing Agents, IOP Conference Series: Materials Science and Engineering, 262(1) (2017) 12-29
Online since: December 2013
Authors: Jakub Wieczorek, Jerzy Myalski, Adam Płachta
Technological process of making the composite suspension of ceramic particles in aluminum alloy can be divided into three stages.
Myalski, Formation of the layer structure in Al – ceramic particle composites, Science and Engineering of Composite Materials 7/4 (1998) 287-291
Śleziona, Preliminary analysis of aluminum matrix compositions for composites reinforcement with carbon fibers, Steel Research International 83 (2012) 981-987
Dolata, M Dyzia, Aspects of fabrication aluminium matrix heterophase composites by suspension method, IOP Conference Series, Materials Science and Engineering 35/1 (2012) 012020
Udaykumar, Particle-solidification front dynamics using a fully coupled approach, part II, Journal of Crystal Growth 252 (2003) 467-479.
Online since: June 2014
Authors: Wan Li Ma, Feng He Tao, Chang Zhi Jia, Jian Chun Yang
Even some technologies has reached advanced international level.
The technology which can directly manufacture metal parts is Laser Engineering Net Shaping(LENS), Selective Laser Melting(SLM) and Electron Beam Melting.
Additive manufacturing of wet-spun polymeric scaffolds for bone tissue engineering[J].
Journal of Materials Processing Technology,2007:627–630
International Journal of Machine Tools & Manufacture,1998(38):1257-1287
Online since: March 2010
Authors: Min Hao Zhu, Zhen Bing Cai, Xiu Zhou Lin, J.F. Zheng, Jin Fang Peng
Ashitkov: Ceramics International Vol. 24 (1998), p. 1 [7] P.I.
Tong: Materials Science & Engineering: A (Structural Materials: Properties, Microstructure and Processing) Vol. 476 (2008), p.78 [11] G.
Jin: Journal of Alloys and Compounds.
Liu: Key Engineering Materials Vol. 315-316 (2006), p.259 [14] W.B.
Ceramics International Vol. 11 (1985), p. 137 [23] J.Q.
Online since: August 2014
Authors: Xin Huang, Yuan Gao, Ming Jie Lin, Zheng Guo Wang, Rong Lei Sun
Precision Engineering, 2008, 32(3): 182–185
Precision Engineering, 1997, 20(1): 33–45
Engineering Fracture Mechanics, 2013, 97: 80-91
Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2008, 222(6): 653–664
Precision Engineering, 2008, 32(3): 153–172
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