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Online since: November 2014
Authors: Dariusz Boroński, Maciej Kotyk
Investigation of material properties of layered Al-Ti material with the use of microspecimens
KOTYK Maciej1,a *, BOROŃSKI Dariusz1, b
1 University of Technology and Life Sciences, Faculty of Mechanical Engineering, al. prof.
Such behavior of the microspecimen containing both materials can be caused by a definite difference in plastic and fatigue properties of both materials.
Materials and Design 35 (2012) 5-16
Evolution of ideas, Journal of Materials Processing Technology, (2012) 4-9
Materials Science Forum, vol. 726, (2012) 51-54.
Such behavior of the microspecimen containing both materials can be caused by a definite difference in plastic and fatigue properties of both materials.
Materials and Design 35 (2012) 5-16
Evolution of ideas, Journal of Materials Processing Technology, (2012) 4-9
Materials Science Forum, vol. 726, (2012) 51-54.
Online since: June 2017
Authors: Kittisakchai Naemchanthara, Weeranuch Kaewwiset, Pichet Limsuwan, Nisakorn Nuamsrinuan
Acknowledgements
The author thanks the Division of Science, Faculty of Science and Technology, Rajamangala University of Technology Phranakhon (RMUTP).
Ho, “Hydroxyapatite Synthesized from Oyster Shell Powders by Ball Milling and Heat treatment”, Materials Characterization. 62 (2011) 1180-1187 [3] E.
Moura, Development of Bio-Based Foams Prepared from Pbat/Pla Reinforced with Bio-Calcium Carbonate Compatibilized by Electron-Beam Radiation, in: John Wiley & Sons (Eds), Characterization of Minerals, Metals and Materials 2016, Springer International Publishing, Switzerland, 2016, pp. 637-644 [4] Y.
Naemchanthara, “Temperature Effect on Calcium Phosphate Synthesized from Chicken Eggshells and Ammonium Phosphate”, Journal of Applied Sciences, 10 (2010) 3337-3342
[9] Mohammad R.P. and Fozia Z.H., “Aqueous Chemical Route Synthesis and the Effect of Calcination Temperature on the Structural and Optical Properties of ZnO Nanoparticles”, Journal of Materials Research and Technology, 3 (2014) 363-369 [10] S.S.
Ho, “Hydroxyapatite Synthesized from Oyster Shell Powders by Ball Milling and Heat treatment”, Materials Characterization. 62 (2011) 1180-1187 [3] E.
Moura, Development of Bio-Based Foams Prepared from Pbat/Pla Reinforced with Bio-Calcium Carbonate Compatibilized by Electron-Beam Radiation, in: John Wiley & Sons (Eds), Characterization of Minerals, Metals and Materials 2016, Springer International Publishing, Switzerland, 2016, pp. 637-644 [4] Y.
Naemchanthara, “Temperature Effect on Calcium Phosphate Synthesized from Chicken Eggshells and Ammonium Phosphate”, Journal of Applied Sciences, 10 (2010) 3337-3342
[9] Mohammad R.P. and Fozia Z.H., “Aqueous Chemical Route Synthesis and the Effect of Calcination Temperature on the Structural and Optical Properties of ZnO Nanoparticles”, Journal of Materials Research and Technology, 3 (2014) 363-369 [10] S.S.
Online since: December 2014
Authors: Wen Feng Xu, Xiao Ling Liao, Kui Li, Cheng Li Liao, Fu Hang Xiong
These materials have important applications in a variety of different industrial fields[1-8].
Liu: Journal of Sol-Gel Science and Technology, Vol. 50 (2009) No.3, p.267
Wu: Materials Science and Engineering, Vol. 133 (2006) No.1-3, p.200
Yada: Optical Materials, Vol. 31 (2009) No.8, p.1200
Kim: Optical Materials, Vol. 28 (2006) No.6-7, p.626.
Liu: Journal of Sol-Gel Science and Technology, Vol. 50 (2009) No.3, p.267
Wu: Materials Science and Engineering, Vol. 133 (2006) No.1-3, p.200
Yada: Optical Materials, Vol. 31 (2009) No.8, p.1200
Kim: Optical Materials, Vol. 28 (2006) No.6-7, p.626.
Online since: August 2021
Authors: Victor Koledov, Peter Lega, Svetlana von Gratowski, Zoya Kosakowskiya, Andrey Orlov, Monica A. Cotta
Bottom-up strategy of materials fabrication: a new trend in nanotechnology of soft materials.
Advanced Materials, 2003, 15.
Materials today, 9(10), 18-27
Journal of cluster science, 17(4), 529-540
Smart materials and structures, 21(5), 052001
Advanced Materials, 2003, 15.
Materials today, 9(10), 18-27
Journal of cluster science, 17(4), 529-540
Smart materials and structures, 21(5), 052001
Online since: December 2004
Authors: L.L. Sun, K.J. Song
Materials Science Forum Vols. *** (2004) pp.312-316
online at http://scientific.net
2004 Trans Tech Publications, Switzerland
Optimal Control of Active Ambulance Stretcher Suspension
L.L.
The effectiveness of the proposed analytical approach is examined in a practical ambulance Materials Science Forum Vols. *** 313 stretcher control system.
Then the frequency responses of the vertical displacements of sprung Controller Fig.1 Model schematic of 2-dimensional control system Advances in Materials Manufacturing Science and Technology 314 masses, namely 21,zz can be obtained.
Fig.3 shows power spectral density of Materials Science Forum Vols. *** 315 angular acceleration of the stretcher.
Advances in Materials Manufacturing Science and Technology 316 References [1] R.
The effectiveness of the proposed analytical approach is examined in a practical ambulance Materials Science Forum Vols. *** 313 stretcher control system.
Then the frequency responses of the vertical displacements of sprung Controller Fig.1 Model schematic of 2-dimensional control system Advances in Materials Manufacturing Science and Technology 314 masses, namely 21,zz can be obtained.
Fig.3 shows power spectral density of Materials Science Forum Vols. *** 315 angular acceleration of the stretcher.
Advances in Materials Manufacturing Science and Technology 316 References [1] R.
Online since: May 2016
Authors: Christèle Combes, Christian Rey, Christophe Drouet, Sophie Cazalbou, Stephanie Sarda, David Grossin
Biomimetic apatite-based biomaterials: on the critical impact of synthesis and post-synthesis parameters, Journal of Materials Science-Materials in Medicine 23 (2012) 2593-2606
Surface enrichment of biomimetic apatites with biologically-active ions Mg2+ and Sr2+: A preamble to the activation of bone repair materials, Materials Science and Engineering C 28 (2008) 1544-1550
Basic fibroblast growth factor adsorption and release properties of calcium phosphate, Journal of Biomedical Materials Research 41 (1998) 405-411
Enzyme-functionalized biomimetic apatites: concept and perspectives in view of innovative medical approaches, Journal of Materials Science-Materials in Medicine 25 (2014) 595-606
Adsorption on apatitic calcium phosphates for drug delivery: interaction with bisphosphonate molecules, Journal of Materials Science-Materials in Medicine 25 (2014) 2373-2381
Surface enrichment of biomimetic apatites with biologically-active ions Mg2+ and Sr2+: A preamble to the activation of bone repair materials, Materials Science and Engineering C 28 (2008) 1544-1550
Basic fibroblast growth factor adsorption and release properties of calcium phosphate, Journal of Biomedical Materials Research 41 (1998) 405-411
Enzyme-functionalized biomimetic apatites: concept and perspectives in view of innovative medical approaches, Journal of Materials Science-Materials in Medicine 25 (2014) 595-606
Adsorption on apatitic calcium phosphates for drug delivery: interaction with bisphosphonate molecules, Journal of Materials Science-Materials in Medicine 25 (2014) 2373-2381
Online since: March 2015
Authors: Quan Lyu, Hao Yu Wen, Zheng Hua Tang, Qi Hu, Bo Cheng
Cao and H.Dong: Materials Characterization Vol. 59(2008), p. 717
[4] YucelBirol: Materials Science& Engineering A 559(2013), p. 394
McKenzie and R.O’Donnell: Journal of Materials Processing Technology Vol. 200(2008), p. 441
[6] Junshan Hua, Yongjie Zhang and Cunyou Wu: Journal of Materials Processing Technology Vol. 211(2011), p.463
Valiev: Materials Science and Engineering A 343(2003), p.43.
[4] YucelBirol: Materials Science& Engineering A 559(2013), p. 394
McKenzie and R.O’Donnell: Journal of Materials Processing Technology Vol. 200(2008), p. 441
[6] Junshan Hua, Yongjie Zhang and Cunyou Wu: Journal of Materials Processing Technology Vol. 211(2011), p.463
Valiev: Materials Science and Engineering A 343(2003), p.43.
Online since: July 2011
Authors: Wei Guo Yang, Xing Po Li
Shape Finding Analysis of Membrane Structures based on real material property
Weiguo Yang a, Xingpo Li b
School of Civil Engineering & Architecture,Beijing Jiaotong University,Beijing 100044,China
aE-mail: wg_yang@263.net, b09121586@bjtu.edu.cn
Keywords: membrane structure; shape finding; nonlinear; real material properties
Abstract.
In order to obtain a real shape of membrane structure, a new shape finding method was developed based on real material property.
The real cable and membrane material properties in table 3 were input and the prestress loads were then applied.
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (50808011).
Beijing: Publishing House of Construction Material Industry, 2002,385-391(in Chinese) [7] T.S.
In order to obtain a real shape of membrane structure, a new shape finding method was developed based on real material property.
The real cable and membrane material properties in table 3 were input and the prestress loads were then applied.
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (50808011).
Beijing: Publishing House of Construction Material Industry, 2002,385-391(in Chinese) [7] T.S.
Online since: August 2019
Authors: Suchart Siengchin, N. Rajini, K. Mayandi, R. Mahesh Kumar
Materials and Experimental Methods Used
Materials: Polytetrafluroethylene powder particles (PTFE) were used for reinforcement in this work.
Vikrant, Deshpande, Thermal Properties of Acrylonitrile Butadiene Styrene Composites, Indian Journal of Advances in Chemical Science. 1 (2016) 279-282
Raja, Bollampally, Thermal conductivity, elastic modulus and coefficient of thermal expansion of polymer composites filled with ceramic particles for electronic packaging, Journal of Applied Polymer Science. 74 (1999) 396-403
[4] Anton Panda, Kostiantyn Dyadyura, Jan Valícek, Marta Harnicarova, JozefZajac, Vladimir Modrak, Iveta Pandova, Peter Vrabel, Ema Novakova-Marcincinova, Zdenek Pavelek, Manufacturing Technology of Composite Materials-Principles of Modification of Polymer Composite Materials Technology based on Polytetrafluroethylene, Materials. 10 (2017)377-383
Kim, Bio-based PCM/ carbon-Nano materials composites with enhanced thermal conductivity, Solar Energy Materials. 120 (2014) 549-554
Vikrant, Deshpande, Thermal Properties of Acrylonitrile Butadiene Styrene Composites, Indian Journal of Advances in Chemical Science. 1 (2016) 279-282
Raja, Bollampally, Thermal conductivity, elastic modulus and coefficient of thermal expansion of polymer composites filled with ceramic particles for electronic packaging, Journal of Applied Polymer Science. 74 (1999) 396-403
[4] Anton Panda, Kostiantyn Dyadyura, Jan Valícek, Marta Harnicarova, JozefZajac, Vladimir Modrak, Iveta Pandova, Peter Vrabel, Ema Novakova-Marcincinova, Zdenek Pavelek, Manufacturing Technology of Composite Materials-Principles of Modification of Polymer Composite Materials Technology based on Polytetrafluroethylene, Materials. 10 (2017)377-383
Kim, Bio-based PCM/ carbon-Nano materials composites with enhanced thermal conductivity, Solar Energy Materials. 120 (2014) 549-554
Online since: April 2011
Authors: Yong Lv, Si Rong Zhu, Xi Fang, Zhuo Qiu Li
Reference
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[5] Keiji Ogi,, Yoshihiro Takao: Composites Science and Technology, Vol.65 (2005), p. 231
[8] Han Baoguo, Guan Xinchun, OuJinping: Materials Science &Technology, Vol.14(2006) No.1, p.1
[9] Zheng Lixia, Song Xianhui, Li Zhuoqiu: Journal of Wuhan University of Technology(Transportation Science&Engineering), Vol.28(2004) No.4, p.533.