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Online since: December 2012
Authors: Rameshwar Rao, K. Venkateswara Rao, C. Shilpa Chakra
Venkateswara Raoa, Centre for Nano Science and Technology, Institute of Science and Technology, Jawaharlal Nehru Technological University- Hyderabad, Hyderabad-86, Andhra Pradesh, India.
Introduction Nanotechnology is the most sought after area of research in modern materials science.
Material and Method Plant material and preparation of the Extract.
Applications of such eco-friendly nano-particles for bactericidal, wound healing and other medical and electronic applications, confirms this method potentially exciting for the large-scale synthesis of other inorganic materials (nano-materials).
HandBook of Nanostructural Materials and Nanotechnology Academic Press New York 1-5.(2000) [3] C.
Online since: May 2013
Authors: Zhi Hui Sun, Gui Wen Yu, Jin Long Zhang, Li Li Zhao
Japan patent puts forward a kind of new equipment, can be in the same coating indoor plating two different coating materials, and between the first sputtering area with second sputtering area install temperature control device , strengthen the base material of cooling.
Srba T[10] With branched polyester and polyethylene glycol acrylate as raw materials synthesis a new kind of hyperbranched polyurethane acrylate and found that this kind of hyperbranched polyurethane acrylate has high reaction activity, good mechanical properties and solvent resistance.
In daily life and science and technology play a role in the increasingly significant, more and more get the welcome of people.
Acknowledgments The subject originates from Natural Science Foundation of Heilongjiang Province.
China Academic Journal Electronic Publishing House
Online since: June 2021
Authors: Zhao Ran Zheng, Kang Yuan
Pomeroy, Coatings for gas turbine materials and long term stability issues.
Materials & Design, 2005. 26(3). 223-231 [3] W.
Materials Science Forum 461-464, 899-906
Journal of Materials Science, 2009. 44(7). 1687-1703
Nijdam, On the high-temperature oxidation of MCrAlY coatings. 45 International Journal of Materials Research, 2009. 100(10). 1318-1330.
Online since: May 2020
Authors: A.S. Kolomatsky, M.V. Marushko, L.A. Suleymanova
Seifman, Production of silicate brick and silicate cellular materials, Stroyizdat, Moscow, 1990
Marushko, Theoretical basis of formation highly organized porous structure of aerated concrete, Materials Science Forum. 945 (2019) 309-317
Prokhorov, Specialized gas-forming agents of Gazobeto brands, Building materials. 8 (2015) 12-14
Sciences, Belgorod, 1997
Lotov, Technology of materials based on silicate disperse systems, TPU, Tomsk, 2006
Online since: September 2014
Authors: Thanabalan Murugesan, Chong Fai Kait, Tazien Rashid
Ø The research gap is the recycle of nanoparticle materials because of adsorption, agglomeration, and viscous effects of the reaction mixture.
However, present techniques are deficient for working with these materials because of their anisotropy and small size.
Cheng, Hydrolysis of lignocellulosic materials for ethanol production: a review.
Microporous and Mesoporous Materials, 2007. 104(1–3): p. 129-136
Critical Reviews in Solid State and Material Sciences, 2011. 36(3): p. 148-173.
Online since: August 2004
Authors: Chul Hee Jo, Jae Hwan Kim
Gamota and Filisko have studied dynamic shear stress response of ER materials to sinusoidal strains at various frequency ranges (below 100 Hz) [2].
In the pre-yield region, ER fluid behaves like a linear viscoelastic material while it does like a nonlinear viscoelastic material in the yield region and a plastic material in the post-yield region.
Filisko :Dynamic Mechanical Studies of Electro-rheological Materials: Moderate Frequencies (Journal of Rheology, 35, pp.399-425, 1991)
Bica: Physical Properties of Magnetic Fluids and Nanoparticles from Magnetic and Magneto-rheological Measurements (Journal of Collioid and Interface Science, 231, pp.247-254, 2000)
Yeo: Viscoelastic properties of MR fluids (Smart Materials and Structures, 8, pp.460-468, 1999).
Online since: February 2012
Authors: Anne Marie Habraken, Laurent Duchêne, Ricardo J. Alves de Sousa, Carlos Felipe Guzmán, José Ilídio Velosa de Sena, Amine Ben Bettaieb
Material parameters.
Table 2: Material parameters for the simulation.
Acknowledgements The authors acknowledge the Interuniversity Attraction Poles Program (Belgian State) Belgian Science Policy (Contract P6/24).
Allwood, The Mechanics of Incremental Sheet Forming, Journal of Materials Processing Technology, 209 (2009), 1158-1174
Habraken, Material Data Identification to Model the Single Point Incremental Forming Process, International Journal of Material Forming, 3 (2010), 979-982
Online since: March 2020
Authors: Khaled M. Ibrahim, Ibrahim Lotfy, Mahmoud Abdel-Latif, Ramadan N. Elshaer
Wang, Effect of Laser Shock Peening on Residual Stress, Microstructure and Hot Corrosion Behavior of Damage-Tolerant TC21 Titanium Alloy, Journal of Materials Engineering and Performance, vol. 27, (2018), pp. 4703-4713
Liu, Evaluation of microstructure and tensile properties during the three-stage heat treatment of TA19 titanium alloy, Materials Science & Engineering A, vol. 716, (2018), pp. 157-164
Sun, Characterization of deformation in primary α phase and crack initiation and propagation of TC21 alloy using in-situ SEM experiments, Materials Science & Engineering A, vol. 725, (2018), pp. 33-42
Zeng, Crack initiation and mechanical properties of TC21 titanium alloy with equiaxed microstructure, Materials Science & Engineering A, vol. 586, (2013), pp. 215-222
Pengsheng, Effect of heat treatment on the microstructure development of TC21 alloy, Rare Metal Materials and Engineering, vol. 46(8), (2017), pp. 2087-2091
Online since: August 2013
Authors: Nik Normunira Mat Hassan, S. Nurulsaidatulsyida, Siti Rahmah Mohid, Anika Zafiah M. Rus
Polyurethane foam is most versatile polymeric and lightweight material used in applications such as insulation material, cushioning, and automotive part and energy absorption materials.
Fig. 3 shows the ability of the green polymer foam with H2O loading to act as sound absorbing materials in the frequency range 100-6300Hz.
Indonesian Journal of Material Science, pp 32-36.
Part 2; Thermal Degradation and Materials Properties, Prog React Kinetic and Mechanism, Science Reviews, Vol.34 (2009), pp.1-43 [11] Noorazah Zolkarnaian and Mohtar Yusof: Quality of Some Fatty acids Produced in Malaysia, Malaysia Palm Oil Board (MPOB), Palm Oil Development 47 (2007)
Arenas:Recent Trends in Porous Sound-Absorbing Materials.
Online since: June 2010
Authors: Li Ran Yue, Hong Chen, Yong Bo Lin
. ZHAO Tao1,a , XU Jing-li1,b , CHEN Hong 1,2,c , LI Yong-feng1,2,d 1Chemical School, Shanghai University of Engineering Science, Shanghai 201620, China 2 College of Chemistry and Chemical Engineering, Shanghai University Engineering and Science,Shanghai, 201620,China a zhaotao82@gmail.com, b xujingli@hotmail.com, c leecer@gmail.com, d dr_lyf@163.com Keywords: biohydrogen production, Biohydrogenbacterium R3 sp.nov., phosphate buffer solution(PBS) Abstract: As a kind of clean energy with great potential, hydrogen energy has been a hotspot worldwide.
Nourishment is the beginning of the activity of life, it supplies the essential material basis of all living things[2] .
Materials and Methods Microbes in Tests and Batch Tests The hydrogen production bacteria in this experience Biohydrogenbacterium R3 sp.nov. was isolated from a continuous flow, high-rate acidogenic reactor with ethanol-type fermentation[3] .
Reference [1] Mei-Ling Chong, Vikineswary Sabaratnam, Yoshihito Shirai, Mohd Ali Hassan, Biohydrogen production from biomass and industrial wastes by dark fermentation, International Journal of Hydrogen Energy,2009(34):3277~3287
[4] LIN Ming, REN Nan-qi, MA Xi-ping, WANG Ai-jie, MA Fang, WANG Xiang-jing, Selection and improvement of culture for hydrogen producing bacteria, Journal of Harbin Institute of Technology, 2003,35(4): 398~402