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Online since: April 2015
Authors: Ismail Hanafi, M.F. Omar, N.Z. Noriman, S.T. Sam, Z. Norhafizah
Waste rubber powders blending with polymeric materials provide an improvement to the rubber quality.
EXPERIMENTAL Materials and Preparation of Blends Materials used in this study were ethylene propylene diene monomer, recycled acrylonitrile-butadiene rubber (NBRr) – a recycled product obtained from examination waste glove with a different ranges of sizes (S1: 250-500µm, S2: 3-10cm), tetramethylthiuram disulfide (TMTD), zinc oxide, stearic acid, Sulphur and processing oil.
Ismail: Journal of Applied Polymer Science Vol. 124 (2012), p. 19-27
George: Journal of Applied Polymer Sciences Vol. 49 (1993), p. 549-557
Rashid: Journal of Applied Polymer Science Vol.126 (2012), p. 56-63
Online since: January 2022
Authors: Mei Zhen Gao, Su Bin Jiang, Yi Qiao, Zhen Xing Zhu, Dong He, Teng Fei Yu, Feng Liu
Heteroatoms-doped ultrathin carbon materials hold great promise for electrochemical energy application.
Template methods have been developed to get carbon-based materials.
Microporous and Mesoporous Materials 300,110178 doi:10.1016/j.micromeso.2020.110178 (2020)
Journal of Electronic Materials 48, 3050-3058, doi:10.1007/s11664-019-07075-z (2019)
Journal of Materials Science 55, 7417-7431, doi:10.1007/s10853-020-04515-8 (2020)
Online since: July 2015
Authors: Oliver Lott, Alwin Nagel, Maren Klement
Journal of Refractory Metals and Hard Materials 41 (2013) 60-65
Bolt, Interface reactions between silicon carbide and interlayers in silicon carbide-copper metal-matrix composites, Journal of Nuclear Materials 363 (2007) 197-201
Marín, Wettting of silicon carbide by copper alloys, Journal of Materials Science 38 (2003) 4047-4054
Louis, Reactivity and thermal behaviour of Cu-Si/SiC composites: effects of SiC oxidation, Materials Science and Technology 68 (2006) 1464-1468
Vasilos, Fabrication of CuSiC metal matrix composites, Journal of Material Science 41 (2006) 485-504
Online since: April 2021
Authors: Hao Ran Zheng
Materials Review, 2018
Advanced Materials, 2017, 29(36):1701169
Advanced Materials, 2017, 29(10):1605531
Journal of Functional Materials, 2006, 37(7):1142-1145
Advanced Energy Materials, 2013, 4(5):-
Online since: July 2011
Authors: Ming Zhou, Yong Zhang, Fei Hu Zhang, Xing Wang
Fig.3 shows that there are less materials removal at the center of the processing region for both cases and the deepest point locates at the annulus area with a certain distance from the center.
Pantano: Journal of Physical Chemistry B Vol. 106 (2002): pp: 12231-12238
Zhang: Key Engineering Materials Vol. 404 (2009), pp: 143-148
Zhang: Advanced Materials Research Vol. 53-54(2008), pp: 363-368
Zhang: Journal of Micromechanics and Microengineering Vol. 19 (2009), pp: 1-6.
Online since: July 2011
Authors: Zhi Jie Liang, Qing Zhang, Ling Dong Meng
:Marine Sciences, 2005(10):23~26
[4] X.Y.Zhang, Y.L.Du, L.Q.Zheng: Materials Protection, 1998(1):3~6
[5] B.Liu, K.X.Guo: Journal of Changsha University of Electric Power (Natural Science), 1998(3):296~301
[6] B.Liu: Materials for Mechanical Engineering, 2001(9):18~21
[8] K.W.Gao, W.Y.Chu: Chinese Journal of Material Research, 1999(4):337~342.
Online since: June 2022
Authors: Mohammed Hamza Al-Maamori, Rola Abdul Al Khader Abbas
[10] Guoqiang Li, Anqi Wang, "Cold, warm, and hot programming of shape memory polymers ", Journal of Polymer Science Physics, 54, (2016): 1319-1339
Tiller,"Shape memory natural rubber", Journal of Polymer Science Part B: Polymer Physics, 54(14), (2016): 1381-1388
Materials Research Express, 5(8), (2018): 1-19
Darmawan, "Mechanical properties and curing characteristics of shape memory natural rubber", IOP Conference Series: Materials Science and Engineering, 541 (2019): 012012(1-6)
Tomassetti, "Energy Splitting Theorems for Materials with Memory", Journal of Elasticity, 101,(2010): 59–67
Online since: May 2021
Authors: Marwan Brouche, Chawki Lahoud, Christy Lahoud, Salam Eid
From the above, the objective of our project is to introduce phase change materials into one of the main components of building materials used in Lebanon, namely the cement plaster.
Construction and Building Materials, 122, 637-648
Phase change materials and energy efficiency of buildings: A review of knowledge.
Journal of Energy Storage, 27, 101083
The Electricity Journal, 33(5), 106764
Online since: December 2011
Authors: Liang Hsign Chou, Maw Tien Lee
Amount of studies have showed that waste plastics can be used as a part of construction materials.
Many studies focused on using waste plastics as civil materials [1-3].
In many previous studies, PE was grafted with polar materials to enhance its hydrophilicity [4-8].
Garbassi, Wettability and antistatic behavior of surface-grafted polypropylene, Journal of colloid and interface science, 149 (1992), p. 290-294
Han, AFM study of the morphologic change of HDPE surface photografted with glycidyl methacrylate, Journal of colloid and interface science, 333 (2009), p. 171-179.
Online since: March 2013
Authors: Duangduen Atong, Chiravoot Pechyen, Khanthima Hemra, Athiwat Sirimuangjinda
Pechyen1,3,d,* 1Department of Packaging and Materials Technology, Faculty of Agro-Industry, Kasetsart University, Bangkok 10900, Thailand 2National Metal and Materials Technology Center, 114 Thailand Science Park, Pathumthani 12120, Thailand 3Center for Advanced Studies in Agriculture and Food, Ku Institute for Advanced Studies, Kasetsart University, Bangkok 10900, Thailand (CASAF, NUR-KU, Thailand) aathiwat.si@hotmail.com, bkhanthh@mtec.or.th, cduangdua@mtec.or.th , dchiravoot.p@ku.ac.th Keywords: Activated carbon, Scrap tire, Potassium hydroxide, Sodium hydroxide Abstract.
The carbon source is found in a variety of materials, such as peanut shells [1], coconut husks [2], or physic nut [3].
The major components of raw materials are volatile matter and fixed carbon.
With the increase of impregnation ratio, the reaction rate between the activator of NaOH and carbonized materials becomes faster.
Hameed, Preparation of activated carbon from coconut husk: Optimization study on removal of 2,4,6-trichlorophenol using response surface methodology, Journal of Hazardous Materials. 153 (2008) 709–717
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