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Online since: December 2012
Authors: Ming Yu Li, Qing Xuan Zeng, Li Na Wang
We would obtain superior materials as long as controlling nanoparticle properties including size, shape and crystal structure in the sub-100 nm range[2].
Experiments Materials Copper sulfate, phosphoric acid, sodium hexametaphoshpate, and ethanol were obtained from Beijing Chemical Works, while sodium hypophosphite and diethylene glycol (DEG) were products of Tianjin Guanfu Fine Chemical Research Institude.
Marimuthu: Materials Letters Vol. 61 (2007), p.4711-4716
[7] Junjun Lv, Mingyu Li and Qingxuan Zeng: Advanced Material Research Vol. 308-310 (2011) p. 715-721
[9] Limin Qi, Jiming Ma, Julin Shen: Journal of Colloid and Interface Science Vol. 186 (1997) p. 498-500.
Online since: September 2017
Authors: Said Mechachti, Djamel Miroud, Hichem Farh, Mosbah Zidani, Lahcene Mebarki
The temperature cycle imposed on the parts during their presence in the furnace involves changes in the microstructure of the constituent material as well as its composition.
The microstructure developed during sintering determines the physical and mechanical properties of the material [7, 8]. 3.
The total porosity in the sintered materials depends on their density, according to formula (2), [7].
Zhou, h.t mab, l.wang, x.w. li, Growth of subscale on Fe-20Ni binary alloy in the presence of magnetic field Corrosion Science, 2013
Skorodzievski, Structure and Properties of Nanostructured Vacuum-Deposited Foils of Invar Fe–(35–38 wt %) Ni Alloys, Journal of Materials Science & Technology 31, 1079–1086, 2015.
Online since: December 2011
Authors: Wei Long Liu, Shu Huei Hsieh, Wen Jauh Chen
Manufacture and characterization of TiO2 nanowires by CVD Wei-Long Liu1, a, Shu-Huei Hsieh1,b, and Wen-Jauh Chen2,c 1 Department of Materials Science and Engineering, National Formosa University. 64, Wunhua Road, Huwei, Yunlin, Taiwan, 632 2 Graduate School of Materials Science, National Yunlin University of Science and Technology, 123 University Road, Section 3, Douliou, Yunlin, Taiwan, 64002 awlliu@nfu.edu.tw, bshhsieh@nfu.edu.tw, cchenwjau@yuntech.edu.tw Keywords: Titania nanowire, chemical vapor deposition (CVD), catalysis, Co metal, Ti substrate.
Titania is chiefly applied as a raw material for white pigment.
Gu, Journal of Inorganic Materials, 23 (2008) 1236
Online since: July 2014
Authors: M. Krishnan, A. Murugesan, T.R. Chinnusamy, T. Karthikeyan
The material handling system constraint is not considered in this approach due to the analytical process simplification [22].
[3] Maccarthy.B.L. and Liu, J., “A new classification scheme for flexible manufacturing systems”, International Journal of Production Research, 31(2), 299-309, 1993
[17] Gonzalo Mejía and Carlos Montoya, “A Petri Net based algorithm for minimizing total tardiness in flexible manufacturing systems”, DOI 10.1007/s10479-007-0258-1, © Springer Science & Business Media, LLC, 2007
[20] Proth.J.M, Sauer.N, “Scheduling of piecewise constant product flows: a Petri net approach”, European Journal Operation Research 106 (1):45–56, 1998
[24] Tiente Hsu et al., “Cyclic scheduling for F.M.S.: Modelling and evolutionary solving approach”, European Journal of Operational Research 191 464–484, 2008
Online since: June 2013
Authors: Ugis Cabulis, Mikelis Kirpluks, Maria Kurańska, Aleksander Prociak
PUR materials are made using reaction between isocyanate and hydroxyl groups.
Lupranat® M 50 was used as isocyanate (NCO) component for all PUR materials.
That is why it is possible to compare this rigid PUR foam with newly developed NOP materials.
(Bio-Based Polyurethane Materials) References [1] M.
Kurańska, Synthesis of polyurethanes under involving renewable raw materials.
Online since: August 2013
Authors: Yi Hong Ou, Hai Bing Qian, Dong Wang, Ying Wu, Jian Jun Liang, Yang Du
Flaws Simulation of Cave Depot in the Process of Explosion Ou Yihong1, Qian Haibing1, Wangdong1, Wu Ying2, Liang Jianjun1, Du Yang1 1 Logistic Engineering University of PLA,Chongqing, China 2 the science and technology institute Chongqing, Chongqing, China e-mail: oyh1219@163.com Keywords: Flaw; Numerical simulation; Cave depot Abstract: This paper adopts the program Ansys and its secondary exploit platform tools to construct three-dimensional model to simulate the destroy process of cave depot.
Material behavior: elastic modulus E: 2.55E11, Poisson's ratio ν: 0.25 density ρ: 2500 kg/m3, compressive strength: 16 E6Pa, tensile strength: 5 E6Pa.
Acknowledge This work was supported by the Natural Science Foundation of Chongqing.
(No CSTC,2012jjA900015, CSTC,2012jjA90008,CSTC,2010cA0005)and Nature Natural Science Foundation(No51276195).
[2] Liu Da-ren, Hou Xiang-lin, Gao Yue-yang, Numerical Analysis and Imitation of Response on Construction Flaws Damage of Simply Supported Beam, Journal of Shenyang Architectural and Civil Engineering Institute 2006.3, pp188-189
Online since: May 2012
Authors: Yong Ju Hu, Sen Bin Yu, Xin Sheng He, Si Wei Yang, Xi Wen Chen
In addition, artificial command will consume manpower and material resources, at the same time it threatens the safety of the command staff.
Acknowledgements The research work is supported by the funding project of Zhejiang Normal University thirteenth period the student extracurricular activity in science and technology project No385.
[2] Microcomputer application technology (Xian University of Electronic Science and Technology Press, china 2004).
[3] M.D Jiao, L Ma and B.Q Fan: Journal of University of Shanghai for Science and Technology, (2003) No2, pp.25-28.
Online since: July 2014
Authors: Ming Xin Song, Rui Wu
Impact Velocity Analysis of Capacitive RF-MEMS Switch Rui Wu1, Mingxin Song1,a 1 College of Applied Science, Harbin University of Science and Technology, Harbin 150080, China asongmingxin@126.com Keywords: RF-MEMS Switch; Impact Velocity Abstract.
Fig.2 The relationship between bias voltage and the impact velocity (2) The influence of different types of bias voltage It is adopted that beam material is Al, beam length and width, beam thickness and dielectric layer thickness equal to 300μm, 30μm, 0.8μm and 0.2μm respectively.
Acknowledgement This work is supported by Science and Technology Research Project of Education Department of Heilongjiang Province (Grant No. 12511076).
Journal of Vibration and Acoustics, Transactions of the ASME.
Online since: April 2008
Authors: A.I. Priven, O.V. Mazurin
The Interglad database contains data on somewhat less than 300,000 glasses and other materials.
Thus it is fortunate that in Interglad one can find properties of not only glasses but also of a considerable number of materials containing crystalline phases.
Property prediction It seems obvious that every good material property database should include the ways of predicting properties of materials that have not yet been studied.
We are sure that the only realistic way of counteracting to this deadly (for the future of glass science) tendency is an active use of global glass property databases by editors and referees of scientific journals, as well as by glass community in the whole.
Fluegel: Evaluation of their most probable values of physical properties of materials and automated procedure of expertise of experimental data about properties of materials.
Online since: April 2021
Authors: Anatoliy G. Illarionov, A.A. Popov, Stella V. Grib
Introduction Alloys based on the orthorhombic titanium aluminide Ti2AlNb (O-alloys) are of interest for the use in following: as materials in aircraft engines operating at higher temperatures compared to industrial titanium alloys based on the α- and β-solid solutions [1-3]; materials with higher fire safety [4]; materials for welded products [5]; as matrices for heat-resistant composites [6].
Umarova, Structure and properties of semifinished sheet products made of an intermetallic refractory alloy based on Ti2AlNb, Materials Science. 51(6) (2016) 821-826
Ning, Effects of annealing on microstructure and deformation uniformity of Ti-22Al-24Nb-0,5Mo laser welded joints, Materials & Desig. 130 (2017) 166-174
Banerjee, The intermetallic Ti2AlNb, Progress in Materials Science. 42(1-4) (1997) 135-158
Servant, On the B2-O phase transformation in Ti-Al-Nb alloys, Materials Science and Engineering, A. 346 (2003) 19-28