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Online since: August 2021
Authors: Yuri M. Kosichenko, Aleksandr Yu. Garbuz, Oleg A. Baev
Relevance
Along with conventional roll materials, torch-welded waterproofing can be used for the protection of concrete surfaces from the destructive effect of corrosive groundwater and the prevention of capillary moisture penetration.
These materials are used on horizontal and vertical surfaces of hydraulic facilities, they have high structural characteristics, increased adhesion to concrete, and resistance to ultraviolet radiation.
Theoretical Part Like the other materials, liquid rubber has certain advantages and disad-vantages, given in Table 2.
Series: Technical Sciences. 2 (2007) 93-97
Geo-composite materials with preset properties and their application in hydraulic engineering construction, Solid State Phenomena. 284 (2018) 970-974.
These materials are used on horizontal and vertical surfaces of hydraulic facilities, they have high structural characteristics, increased adhesion to concrete, and resistance to ultraviolet radiation.
Theoretical Part Like the other materials, liquid rubber has certain advantages and disad-vantages, given in Table 2.
Series: Technical Sciences. 2 (2007) 93-97
Geo-composite materials with preset properties and their application in hydraulic engineering construction, Solid State Phenomena. 284 (2018) 970-974.
Online since: July 2015
Authors: Mohammed Rafiq Abdul Kadir, Dwi Gustiono Riban, Norsamsiah Muhamad Wahab, Dedy Hermawan Bagus Wicaksono, Syazwani Abdul Jamil, Fadzilah Adibah Abdul Majid
Usually these plates are made from non-biodegradable materials such as polystyrene or polyethylene.
They have been using substrate materials such as glass [7, 8] polystyrene [2] and paper [9] for cell culture.
Experimental White plain cotton cloth fabrics (Mirota Batik, Surabaya, Indonesia) were used as raw materials in this experiment.
Yu, Cell culture on MEMS platforms: A review, International journal of molecular sciences. 10 (2009) 5411-5441,
Groth, Studies on the biocompatibility of materials: Fibroblast reorganization of substratum-bound fibronectin on surfaces varying in wettability, Journal of Biomedical Materials Research. 30 (1996) 385-391,
They have been using substrate materials such as glass [7, 8] polystyrene [2] and paper [9] for cell culture.
Experimental White plain cotton cloth fabrics (Mirota Batik, Surabaya, Indonesia) were used as raw materials in this experiment.
Yu, Cell culture on MEMS platforms: A review, International journal of molecular sciences. 10 (2009) 5411-5441,
Groth, Studies on the biocompatibility of materials: Fibroblast reorganization of substratum-bound fibronectin on surfaces varying in wettability, Journal of Biomedical Materials Research. 30 (1996) 385-391,
Online since: April 2012
Authors: Jaafar Mohd Hilmi, Mohamed Nor Sabirin, Rosiyah Yahya, Norlida Kamarulzaman
In this paper, layered LiMn0.3Co0.3Ni0.3Fe0.1O2 were prepared using sol-gel method with CH3COOLi·2H2O, (CH3CO2)2Mn·4H2O, (CH3CO2)2Co·4H2O, (CH3CO2)2Ni·4H2O and Fe (NO3)3·9H2O as starting materials.
Journal of Nanoparticle Research 6 (2004) 533 – 538
Liu, Synthesis and electrochemical performance of doped LiCoO2 materials, Journal of Power Sources 174 (2007) 828 – 832
Mumm, The Effects of C-Rate on the Discharge Capacities of LiNi1-yMyO2 (M=Ni, Ga, Al and/or Ti) Cathodes, Electronic Materials Letters 4(4) (2008) 151 – 155
Kim, Synthesis of cathode material LiNi1-yCoyO2 by a simplified combustion method, Journal of Applied Electrochemistry 35 (2005) 1073 – 1080
Journal of Nanoparticle Research 6 (2004) 533 – 538
Liu, Synthesis and electrochemical performance of doped LiCoO2 materials, Journal of Power Sources 174 (2007) 828 – 832
Mumm, The Effects of C-Rate on the Discharge Capacities of LiNi1-yMyO2 (M=Ni, Ga, Al and/or Ti) Cathodes, Electronic Materials Letters 4(4) (2008) 151 – 155
Kim, Synthesis of cathode material LiNi1-yCoyO2 by a simplified combustion method, Journal of Applied Electrochemistry 35 (2005) 1073 – 1080
Online since: June 2017
Authors: Krit Sutjarittangtham, Wilaiwan Leenakul, Thanawat Kytae, Theerapol Thurakitseree
The reagent grade metal oxide powders BaCO3 (98.5%), TiO2 (99%) and SrCO3 (99.9%) were used for starting materials.
All of starting materials were purchased from Sigma-Aldrich and Aldrich, USA.
Starting materials, BaCO3, SrCO3, and TiO2 were mixed and ball-milled in ethanol for 24 h using zirconia grinding media.
Acknowledgments The authors would like to thank Physics Program, Faculty of Science and Technology, Pibulsongkram Rajabhat University, Division of Industrial Materials Science, Faculty of Science and Technology, Rajamangala University of Technology Phra Nakhon and the National Research University Project under Thailand’s Office of the High Education Commission.
Zhang, Low temperature synthesis of Ba0.70Sr0.30TiO3 powders by the molten-salt method, Materials Chemistry and Physics. 106 (2007) 164-167
All of starting materials were purchased from Sigma-Aldrich and Aldrich, USA.
Starting materials, BaCO3, SrCO3, and TiO2 were mixed and ball-milled in ethanol for 24 h using zirconia grinding media.
Acknowledgments The authors would like to thank Physics Program, Faculty of Science and Technology, Pibulsongkram Rajabhat University, Division of Industrial Materials Science, Faculty of Science and Technology, Rajamangala University of Technology Phra Nakhon and the National Research University Project under Thailand’s Office of the High Education Commission.
Zhang, Low temperature synthesis of Ba0.70Sr0.30TiO3 powders by the molten-salt method, Materials Chemistry and Physics. 106 (2007) 164-167
Online since: September 2009
Authors: Ina Reiche, Céline Chadefaux
Collins: Journal of Archaeological
Science Vol. 32 (2005) p157
Collins: Journal of Archaeological Science Vol. 30 (2003) p1393
Collins: Journal of Archaeological Science Vol. 32 (2005) p105
Cain: Journal of Archaeological Science Vol. 34 (2007) p1902
Ge: Materials Science and Engineering Vol.
Collins: Journal of Archaeological Science Vol. 30 (2003) p1393
Collins: Journal of Archaeological Science Vol. 32 (2005) p105
Cain: Journal of Archaeological Science Vol. 34 (2007) p1902
Ge: Materials Science and Engineering Vol.
Online since: October 2013
Authors: Ming Li Liu, Chun Feng Li, Yan Long Liu, Guo Zhi Han
Diatomite is a kind of non-metallic minerals, have properties as the filler, such as good stability, acid resistance, heat resistance, small density, small bulk density, absorption, dispersion and wear resistance [5], In recent years, it was applied widely in acoustic materials, building materials, coatings, insulation materials and other industries [6-8].
Acknowledgements Key Laboratory fund project of wood material science and Engineering of Jilin Province-Research on diatomite modified PP wood plastic composites.
Wood plastic composites: current trends in materials and processing [J].
Properties of heat-insulating materials [J].
Composites Science and Technology, 2004, 64: 693-700 [14] S.Y.
Acknowledgements Key Laboratory fund project of wood material science and Engineering of Jilin Province-Research on diatomite modified PP wood plastic composites.
Wood plastic composites: current trends in materials and processing [J].
Properties of heat-insulating materials [J].
Composites Science and Technology, 2004, 64: 693-700 [14] S.Y.
Online since: July 2021
Authors: Zaid K. Alkaabi
This innovation is utilized with relationship to hardware, optics, biomedical and sciences of materials.
Materials and Method The ZnO nanoparticles were prepared by biological method which is easy and safety method.
The Journal of Physical Chemistry B 108.26 (2004): 8773-8777
Journal of applied physics 99.2 (2006): 024303
Advanced Functional Materials 14.10 (2004): 943-956
Materials and Method The ZnO nanoparticles were prepared by biological method which is easy and safety method.
The Journal of Physical Chemistry B 108.26 (2004): 8773-8777
Journal of applied physics 99.2 (2006): 024303
Advanced Functional Materials 14.10 (2004): 943-956
Online since: November 2012
Authors: Xin Chen, Gong Pei Pang, Hui Ping Lv, Xiang Zhang, Ming Hui Feng
Raw materials of firework: aluminum powder and sulfur powder (industrial product), igniting wire, firework paper tube (outer diameter 10mm, inner diameter 8mm, height 25mm, bottom layer).
The materials are provided by Hua An Reagents of Firework Science and Technology Limited Company in Liuyang, Hunan Province.
Journal of Thermal Analysis and Calorimetry, 2001, 65(2):323-334
Chinese Journal of Energetic Materials, 2011,19(6) :646-649 [3] Shiro shimada.
Chinese Journal of Energetic Materials, 2007,15(1):29-32 [6] QIAN Xinming, DENG Nan, WEI Sifan.
The materials are provided by Hua An Reagents of Firework Science and Technology Limited Company in Liuyang, Hunan Province.
Journal of Thermal Analysis and Calorimetry, 2001, 65(2):323-334
Chinese Journal of Energetic Materials, 2011,19(6) :646-649 [3] Shiro shimada.
Chinese Journal of Energetic Materials, 2007,15(1):29-32 [6] QIAN Xinming, DENG Nan, WEI Sifan.
Online since: February 2011
Authors: Zuhailawati Hussain, Siti Zalifah Md Rasib
Suryanarayana, Chapter 4, Mechanical Alloying, Pergamon Materials Series Volume 2, Pergamon, 1999, pp. 49-85
Hu: Materials Letters 28(1996) 129-132
Sueyoshi: Journal of Materials Processing Technology 138(2003) 41-46
Jamaludin: Journal of Materials Engineering and Performance 18(2009) 1258-1263
Marashi: Materials Science and Engineering: A 492(2008) 134-140
Hu: Materials Letters 28(1996) 129-132
Sueyoshi: Journal of Materials Processing Technology 138(2003) 41-46
Jamaludin: Journal of Materials Engineering and Performance 18(2009) 1258-1263
Marashi: Materials Science and Engineering: A 492(2008) 134-140
Online since: June 2011
Authors: Xi Peng Xu, Guo Qin Huang
Xu: Key Engineering Materials, Vol. 250 (2003) pp.209-214
[2] X.P.
Xu: Chinese Journal of Mechanical Engineering Vol. 39(9) (2003) pp.17-22 [3] Y.
Xu: Key Engineering Materials Vol.250 (2003) pp.187-193 [5] X.P.
Malkin: Transactions of the ASME: Journal of Manufacturing Science and Engineering Vol.123 (1) (2001) pp.13-22
Denkena and etal: Key Engineering Materials, Vol.250, (2003) pp.21-32
Xu: Chinese Journal of Mechanical Engineering Vol. 39(9) (2003) pp.17-22 [3] Y.
Xu: Key Engineering Materials Vol.250 (2003) pp.187-193 [5] X.P.
Malkin: Transactions of the ASME: Journal of Manufacturing Science and Engineering Vol.123 (1) (2001) pp.13-22
Denkena and etal: Key Engineering Materials, Vol.250, (2003) pp.21-32