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Online since: December 2019
Authors: Violetta Bratoshevskaya, Vladimir N. Mirsoyanov
Kozhukhova, Effect of previously slacked lime on properties of autoclave composite binders, World Applied Sciences Journal. 24 (11) (2013) 1519-1524 [10] A.
Volodchenko, Development of the composition of heat-insulating materials for autoclaved hardening based on clay raw materials, Bulletin of BSTU named after V.G.
Volodchenko, Aluminosilicate raw materials for the production of autoclave finishing materials, Bulletin of BSTU named after V.G.
Netsvet, Cellular composites with ambient and autoclaved type of hardening with application of nanostructured binder, IOP Conference Series: Materials Science and Engineering. 96 (2015) (1)
Baskakov, On the issue of improving the quality of domestically produced building mortars, Research Journal of Applied Sciences. 9 (12) (2014) 1202-1205
Online since: July 2010
Authors: Grégory Guisbiers
Gardea-Torresdey Journal of Vacuum Science & Technology B Vol. 19 (2001) p. 1091
Zhao Applied Physics A: Materials Science & Processing Vol. 78 (2004) p. 703
Jiang Materials Science & Engineering B Vol. 131 (2006) p. 191
Ohring: Materials science of thin films deposition and structure (Academic Press, New York 2002)
Lu Materials Science & Engineering A Vol. 286 (2000) p. 188
Online since: June 2014
Authors: Dieter Horwatitsch, Jonas Müller, Helmut Kilian, Martin Brandecker, Arne Wahlen
Those two materials are alternated at the setup of the stacks.
After cutting and grinding the material flow is determined by the difference in contrast of the two materials.
Due to the fact that in this method different materials are used to allow visualization of the material flow a deviation of the temperature or stress field occurs representing inadequate differences between simulation and experiment.
After partial combined extrusion of the two halves and removal from the container, splitting the deformed billet again reveals the deformed grid showing material flow without the disturbance from using different materials.
Bay, Friction Stress and Normal Stress in Bulk Metal-Forming Processes, Journal of Mechanical Working Technology 14 (1987), pp. 203-223.
Online since: August 2016
Authors: Rathinam Kumutha, Kanagarajan Vijai, P. Rajeswaran
Initially the properties of geopolymeric binder prepared using the source materials such as Fly ash and Ground Granulated Blast Furnace Slag (GGBS) without conventional cement have been investigated.
Ferrocement has superior advantages over other roofing materials and could well play a major role in housing construction in developing countries.
Experimental Program Materials Used.
Ghosh, Performance of Fly ash Based Geopolymer Mortars in Sulphate Solution, Journal of Engineering Science and Technology Review, 3(1) (2010) 36-40
Nagan, Flexural Behaviour of Trough Shaped Ferrocement Panels, International Journal of Innovative Research in Science and Technology, 3(2014) 14010-14016
Online since: June 2017
Authors: Ming Zhang Lan, Bin Feng Xiang, Wei Fang Hou, Xiao Ying Wang, Xu Dong Zhao
The effects of triethanolamine on the compressive strength and setting time of fly ash cementitious materials, slag cementitious materials, and limestone cementitious materials were investigated.
Materials and Test Method Materials.
Fig. 3 X-ray diffraction of cementitious materials with different age Acknowledgements The financial helps of the National Basic Research Program of China (“973” Program) of China (Project No. 2012CB720403), the National Natural Science Foundation of China (Project No. 51504013) and Beijing Natural Science Foundation (Project No.2154044) are gratefully acknowledged.
TEA have a setting retarding effect for fly ash cementitious materials, slag cementitious materials and limestone cementitious materials.
Journal of Tongji university. 2004, 32(4): 494-498
Online since: November 2010
Authors: Tian Duo Li, Peng Fei Yang, Jun Ying Li
Experimental Materials.
Penczek: Progress in Polymer Science Vol. (24)1999, p. 1409 [7] J.
Webser: Science Vol. 251(1991), p. 887 [11] H.
Li: Polymer Materials Science and Engieering Vol. 26 (2010), p. 15 [19] E.
Verbanee: Journal of Polymer Science Vol. 44(1960), p. 303 [21] G.
Online since: September 2014
Authors: Jun Wang, Zhong Wei Zhang, Peng Yao, Yong Wang, Hong Tao Zhu, Chuan Zhen Huang
It is widely applied to corrosion resistance materials, high temperature resistance materials and wear resistance materials, etc.
In general the removal of brittle materials is achieved through the formation, propagation and nucleation of micro-cracks produced by particle impacts.
Che: International Journal of Machine tools & Manufacture 49 (2009) 569-578
Momber: Experimental thermal and fluid science. 2001, 25: 31- 41
Hashish: Journal of Engineering Materials and Technology, ASME. 1989, 111: 221-228
Online since: January 2021
Authors: Rachmawati Rachmawati, Midrathul Rahmawati
Materials and Methods Materials.
Haron, Graft copolymerization of methyl acrylate onto sago starch using ceric ammonium nitrate as an initiator, Journal of Applied Polymer Science 76 (2000) 516-523
Kawashima, Adsorption of bile acid by chitosan salts prepared with cinnamic acid and analogue compounds, Journal of Biomaterials Science, Polymer Edition 17 (2006) 781-789
Sen, A novel biodegradable cinnamic acid grafted carboxymethyl cellulose based flocculant for water treatment, Materials Science Forum 875 (2016) 156-166
Picchioni, Polymeric surfactants for enhanced oil recovery: A review, Journal of Petroleum Science and Engineering 145 (2016) 723-733
Online since: June 2019
Authors: Shu Yi Wei, Shi Jin Liu, Li Long Zhang, Hai Sheng Zhang, Guan Nan Du, Kai Nan Zhang, Rong Fan, Li Xin Guo, Ning Nan Zhang, Yi Fei Ma, Xiu Xia Zhang, Yuan-ze Ma
Journal of hunan university, 2008,8 (8): 55-58
The integration of nanoscale porous silicon light emitters: materials science, properties, and integration with electronic circuitry [J].
Journal of Luminescence. 2009, 80(1-4): 53–64
Material Science & Processing, Appl.A, [J].2004:(2): 279-292
Journal of functional materials and devices,[J].2002.8(3):293-296 [10] Hong, M.H., Park, C.S., Seo, W.S., Lim, Y.S., Lee, J.K. and Park, H.H. (2013) Thermoelectric properties of Al-doped mesoporous ZnO thin films.
Online since: February 2011
Authors: Mohd Khairol A. Arifin, Shamsuddin Sulaiman, B.T. Hang Tuah Baharudin, Mohd Sayuti, S. Suraya, Gholamreza Esmaeilian
Burdeff: Journal Materials Science 35 (2000) p. 3327–3335
Silva: Journal materials and Design, 30 (2009) p. 1575-1580
Pai: Journal of Materials Processing Technology 146 (2004) p. 338–348
Vives: J.Materials Science and Engineering (1993) p. 169-172
McCartney: Materials Science and Engineering A216 (1996) p. 47-60