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Online since: November 2013
Authors: Xiao Jun Ma, Dong Na Li
Thus, looking for new food packaging sterilization materials has become the focus of packaging material research.
No secondary pollution is produced in the process, which can be ideal composite materials for food packaging sterilization.
Experimental Materials.
[3] Xiaojun Ma, Guangjie Zhao: Journal of Applied Polymer Science, Vol. 121(2011), p. 3525-3530
[6] Pouilleau J., Devilliers D., Groult H., Marcus P: Journal of Materials Science, Vol. 32 (1997), p. 5645-5651
No secondary pollution is produced in the process, which can be ideal composite materials for food packaging sterilization.
Experimental Materials.
[3] Xiaojun Ma, Guangjie Zhao: Journal of Applied Polymer Science, Vol. 121(2011), p. 3525-3530
[6] Pouilleau J., Devilliers D., Groult H., Marcus P: Journal of Materials Science, Vol. 32 (1997), p. 5645-5651
Online since: November 2012
Authors: Francicso Gomez Cuevas, Juan Manuel Montes Martos, Eduardo Sánchez Caballero, J. Cintas, M. Herrera-García
Baluc, Journal of Nuclear Materials 386-388 (2009) 426-429
Journal of Refractory Metals & Hard Materials 27 (2009) 696-700
Schoenung, Materials Science and Engineering A 493 (2008) 207-214
Lavernia, Progress in Materials Science 51 (2006) 1-60
Herrera, Journal of Materials Science 40 (2005) 3911-3915.
Journal of Refractory Metals & Hard Materials 27 (2009) 696-700
Schoenung, Materials Science and Engineering A 493 (2008) 207-214
Lavernia, Progress in Materials Science 51 (2006) 1-60
Herrera, Journal of Materials Science 40 (2005) 3911-3915.
Online since: July 2020
Authors: Yuli Yetri, Dian Juliadmi, Djong Hon Tjong, Menkher Manjas, Jon Affi, Gunawarman Gunawarman, Fuad Ramadhan, Hidayatul Fajri, Nuzul Ficky Nuswantoro
Series: Materials Science and Engineering. 432 (2018) 1-7
Gogia, Ti-based biomaterials -the ultimate choice for orthopedic implants- a review, Progress in Materials Science. 54 (2009) 397–425
Wu, The influences of plasma spraying parameters on the characteristics of hydroxyapatite coatings: a quantitative study, Journal of Materials Science: Materials in Medicine. 6 (1995) 249–257
Liu, A review on fundamentals and applications of electrophoretic deposition (EPD), Progress in Materials Science. 52 (2007) 1–61
Sorrell, Precipitation of hydroxyapatite nanoparticles: Effects of precipitation method on electrophoretic deposition, Journal Of Materials Science: Materials in Medicine. 16 (2005) 319– 324
Gogia, Ti-based biomaterials -the ultimate choice for orthopedic implants- a review, Progress in Materials Science. 54 (2009) 397–425
Wu, The influences of plasma spraying parameters on the characteristics of hydroxyapatite coatings: a quantitative study, Journal of Materials Science: Materials in Medicine. 6 (1995) 249–257
Liu, A review on fundamentals and applications of electrophoretic deposition (EPD), Progress in Materials Science. 52 (2007) 1–61
Sorrell, Precipitation of hydroxyapatite nanoparticles: Effects of precipitation method on electrophoretic deposition, Journal Of Materials Science: Materials in Medicine. 16 (2005) 319– 324
Online since: May 2013
Authors: Lian Guan Shen, Yang Hu, Yue Liang Ji, Jian Zhou, Mu Jun Li, Tian Yi Shi
On a variety of factors of power, insulating materials, shielding layers, an optimal proposal is revealed.
The materials used in the furnace model include stainless steel, tungsten carbide, tungsten and silica aerogel [3-4].
Typical materials for thermal shielding layers include molybdenum, aluminum and stainless steel [5-7].
Monteix, Modelling of infrared heating of thermoplastic sheet used in thermoforming process, Journal of Materials Processing Technology 143-144(2003) 225-231
Davis, Tool materials, ASM International Handbook Committee, 1995, pp. 36-59
The materials used in the furnace model include stainless steel, tungsten carbide, tungsten and silica aerogel [3-4].
Typical materials for thermal shielding layers include molybdenum, aluminum and stainless steel [5-7].
Monteix, Modelling of infrared heating of thermoplastic sheet used in thermoforming process, Journal of Materials Processing Technology 143-144(2003) 225-231
Davis, Tool materials, ASM International Handbook Committee, 1995, pp. 36-59
Online since: August 2009
Authors: Chia Lung Chang, Yu Hua Lin
The corresponding variables of function are the mechanical constants of
the materials.
De Wilde, A mixed numerical/experimental technique for the nondestructive identification of the stiffness properties of fiber reinforced composite materials, Journal of NDT&E International 30 (2) (1997) 85-91
Pedersen, Optimisation method applied to identification of materials parameters, in: H.A.
Pagnotta, Determining material properties in anisotropic plates using genetic algorithms and vibration test data, International Journal of Mechanics and Materials in Design 1 (2004) 199-211
[19] Marco Alfano , Leonardo Pagnotta , Determining the elastic constants of isotropic materials by modal vibration testing of rectangular thin plates , Journal of Sound and Vibration(2006) 426-439
De Wilde, A mixed numerical/experimental technique for the nondestructive identification of the stiffness properties of fiber reinforced composite materials, Journal of NDT&E International 30 (2) (1997) 85-91
Pedersen, Optimisation method applied to identification of materials parameters, in: H.A.
Pagnotta, Determining material properties in anisotropic plates using genetic algorithms and vibration test data, International Journal of Mechanics and Materials in Design 1 (2004) 199-211
[19] Marco Alfano , Leonardo Pagnotta , Determining the elastic constants of isotropic materials by modal vibration testing of rectangular thin plates , Journal of Sound and Vibration(2006) 426-439
Online since: November 2011
Authors: Tirumalai S. Srivatsan, Manoj Gupta, C. Godbole, Muralidharan Paramsothy
Lavernia: Progress in Materials Science: An International Review Journal, Vol. 39, No. 4/5 (1995), pp. 317-409.
5.
Gupta: Materials Science and Engineering A , Vol. 466 (2007), pp. 32–37. 16.
Gupta: Journal of Materials Science ,Vol. 46 (2011), pp. 4588-4597. 17.
Cheng: Materials Science Technology, Vol. 15 (1999), pp. 1139-1146. 24.
Srivatsan: Journal of Recent Research Developments in Materials Science and Engineering, ISBN: 81-7895-057-X, pp. 119-136, 2002. 28.
Gupta: Materials Science and Engineering A , Vol. 466 (2007), pp. 32–37. 16.
Gupta: Journal of Materials Science ,Vol. 46 (2011), pp. 4588-4597. 17.
Cheng: Materials Science Technology, Vol. 15 (1999), pp. 1139-1146. 24.
Srivatsan: Journal of Recent Research Developments in Materials Science and Engineering, ISBN: 81-7895-057-X, pp. 119-136, 2002. 28.
Online since: February 2011
Authors: Xiao Feng Chen, Bo Yuan, Cai Lin, Qun Feng Liu
Journal of Biomedical Materials Research Part a, Vol. 67A, (2003), p. 531
[6].
Journal of Polymer Science Part B-Polymer Physics, Vol. 43, (2005), p. 3205 [12].
Journal of Biomedical Materials Research, Vol. 60, (2002), p. 613 [15].
Journal of the Mechanical Behavior of Biomedical Materials, Vol. 1, 2008, p. 326 [16].
Cox: The Elasticity and Strength of Paper and Other Fibrous Materials.
Journal of Polymer Science Part B-Polymer Physics, Vol. 43, (2005), p. 3205 [12].
Journal of Biomedical Materials Research, Vol. 60, (2002), p. 613 [15].
Journal of the Mechanical Behavior of Biomedical Materials, Vol. 1, 2008, p. 326 [16].
Cox: The Elasticity and Strength of Paper and Other Fibrous Materials.
Online since: October 2011
Authors: You Xi Lin, Cheng Hui Gao, Zhi Hua Chen
Friction materials used in the automobile brakes can be classified into non-asbestos organic (NAO),semi-metallic and ceramic types.
The main problem in the development of brake material is what the materials are and how much they are mixed.
With the development of computer science especially artificial intelligent technologies some progress have been made in the fields of material processing and design.
Qi and H.M.Han:Journal of Materials Processing Technology,Vol.151(2004),p.126
[7] J.R.Cho and S.W.Shin:Composites Part A: Applied Science and Manufacturing, Vol.35(2004),p.585
The main problem in the development of brake material is what the materials are and how much they are mixed.
With the development of computer science especially artificial intelligent technologies some progress have been made in the fields of material processing and design.
Qi and H.M.Han:Journal of Materials Processing Technology,Vol.151(2004),p.126
[7] J.R.Cho and S.W.Shin:Composites Part A: Applied Science and Manufacturing, Vol.35(2004),p.585
Online since: June 2019
Authors: Zhi Biao Hu, Li Mei Wu, Jiao Hao Wu, Yun Long Zhou
Preparation and Electrochemical Performance of Mn3O4/GR Composites Electrode Material in Supercapacitors
Yun-Long Zhou1,3,a, Zhi-Biao Hu1,b*,Li-Mei Wu1,c,Jiao-Hao Wu2,d
1College of Chemistry and Materials Science, Longyan University, Longyan Fujian, China, 364000
2Department of Materials and Energy Engineering, MingDao University, Taiwan, China, 000500
3Fujian Provincial Key Laboratory of Clean Energy Materials, Longyan Fujian, China, 364000
aemail:446141346@qq.com, bemail:zhibiaohu@163.com, cemail:524521200@qq.com, demail:zyl953026@163.com
Keywords: supercapacitor; Mn3O4; graphene; electrochemical performance
Abstract: Using hydrated manganese sulfate and general type graphene (GR) as raw materials, Mn3O4/GR composite has been successfully prepared by the liquid phase chemical co-precipitation method at room temperature.
Acknowledgements This research was funded by Science and Technology Key Project of Fujian Province (2014H0038) and Industry-University-Research Cooperation program of Fujian Province (2015H61010066) and Materials Science and Engineering Key Subjectsof Fujian Province.
Chinese Journal of Applied Chemistry, 2006, 23(4): 456-458
Journal of Physical Chemistry, 2009, 113(42): 18259-18263
Science, et al.
Acknowledgements This research was funded by Science and Technology Key Project of Fujian Province (2014H0038) and Industry-University-Research Cooperation program of Fujian Province (2015H61010066) and Materials Science and Engineering Key Subjectsof Fujian Province.
Chinese Journal of Applied Chemistry, 2006, 23(4): 456-458
Journal of Physical Chemistry, 2009, 113(42): 18259-18263
Science, et al.
Online since: October 2018
Authors: T.D. Polshina, Olga Yu. Makovskaya, V.V. Egorov
Alumina, quartz, and crystalline sulfur are considered as carrier materials.
It is known ion exchange resins [10] and different inorganic materials [11] are used as carriers.
Okauea, Adsorption kinetics of silicic acid on akaganeite, Journal of Colloid and Interface Science, 399 (2013) 87-91
Popovic, Thermal decomposition of β-FeOOH, Materials Letters, 58 (2004) 444-448
Qu, Preparation and evaluation of Zr-β-FeOOH for efficient arsenic removal, Journal of Environmental Sciences, 25 (2013) 815-822
It is known ion exchange resins [10] and different inorganic materials [11] are used as carriers.
Okauea, Adsorption kinetics of silicic acid on akaganeite, Journal of Colloid and Interface Science, 399 (2013) 87-91
Popovic, Thermal decomposition of β-FeOOH, Materials Letters, 58 (2004) 444-448
Qu, Preparation and evaluation of Zr-β-FeOOH for efficient arsenic removal, Journal of Environmental Sciences, 25 (2013) 815-822