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Online since: December 2010
Authors: Mohd Subhi Nur Hawadah, Zuhailawati Hussain, Radzali Othman
Composite materials with copper matrix and ceramic particle reinforcements provide basis for producing relatively high hardness and electrical conductivity materials.
Jia, Journal of Materials Processing Technology Vol. 209 (2009), p. 871-875
Liu, Materials Letters Vol. 52 (2002), p. 448-452
Wong, Materials Research Bulletin Vol. 35 (2000), p. 1555-1561
Courtney, Journal of Materials Research Vol. 14 (1999), p. 4274-4284
Online since: July 2017
Authors: Ion Bogdan Codorean, Florin Diaconu, Eduard Cernat, Stefania Tanase, Dragos Popescu, Alexandru Cirlan, Stefan Mitulescu
Due to the mentioned imperfections of both synthetic and natural materials, it has been proposed a scaffold biopolymer, the silk fibrous protein [28] or fibrous artificial hydrogels [29].
Hydrogel materials used in cartilage tissue engineering have been rarely tested in meniscus engineering.
Materials and methods Between January 2013 and August 2014, 10 patients underwent arthroscopic meniscal scaffold replacement, using Actifit®.
M., Meniscus repair and regeneration: review on current methods and research potential, European Cells and Materials, 26 (2013) 150-170
[7] Dodds J.A., Arnoczky S.P., Basic Science – Meniscus, in: Johnson, D.
Online since: October 2011
Authors: J.W. Kim, H.H. Chong, T.G. Park, M.H. Kim, S.S. Jeong, C.H. Park
The piezoelectric ceramic used here is PZT 4 and the materials of the elastic body are brass, copper and SUS 304.
As a result of analysis depending on change in the material, the order of resonance frequency was determined according to the speed of sound, which has relation to Young’s modulus and density. [9] In case of SUS304, which has the highest resonance frequency among three materials, the highest output voltage was also shown because of high Young’s modulus.
Analysis of the output voltage depending on the applied Frequency When the materials of the elastic body were changed, the output voltage of generator using SUS304 was higher than the other generators because of high Young’s modulus.
Gonzalez, Antonio Rubio and Francesc Moll, " Human Powered Piezoelectric Batteries to Supply Power to Wearable Electronic Devices", International Journal of the Society of Materials Engineering for Resource, p. 7, 2001
Jun, "Design and Fabrication of Piezoelectric Generator using Piezoelectric ceramics", Journal of the Korean Institute of Electrical and Electronic Material Engineers, Vol. 9, pp.315-316, 2008 [4] J.
Online since: April 2013
Authors: Maisarah Mohamed Bazin, Norhayati Ahmad, Yuzo Nakamura, Hiroki Kamibayasi
bDepartment of Nanostructured and Advanced Materials, Kagoshima University, 1-21-40 Korimoto, Kagoshima, 890-0065 JAPAN.
Abstract: The fabrication of low cost ceramic membranes for microfiltration were studied by using a natural materials (shirasu balloon) which are produced from glassy volcanic materials.
Fine shirasu balloons are produce from glassy volcanic materials called shirasu.
Larbot and S.Cerneaux, New Clay-Alumina Porous Capillary Supports for Filtration Appication, Journal of Membrane Science, 2010
Matsuura, Mechanical and Pore Characteristic of Zeolite Composite Membranes, Journal of Materials Chemistry, 1999, 9, 783-788.
Online since: July 2013
Authors: Manoj Kumar Mitra, Jui Chakraborty, Manjusha Chakraborty, Swapankumar Ghosh
Popa, In vitro and in vivo behavior of ketoprofen intercalated into layered double hydroxides, Journal of Materials Science-Materials in Medicine 21 (2010) 3009-3018
Kalinichev, Molecular models and simulations of layered materials, Journal of Materials Chemistry 19 (2009) 2470-2481
Stamires, Synthesis of the 3R(2) polytype of a hydrotalcite-like mineral, Journal of Materials Chemistry 12 (2002) 153-155
Tagaya, Preparation and intercalation reactions of Zn-Sn LDH and Zn-Al-Sn LDH, Journal of Porous Materials 10 (2003) 83-91
Ghosh, Mg-Al layered double hydroxide-methotrexate nanohybrid drug delivery system: Evaluation of efficacy, Materials Science & Engineering C-Materials for Biological Applications 33 (2013) 2168-2174
Online since: August 2022
Authors: R.S. Santos, Vital Araújo Barbosa de Oliveira, Thayze Rodrigues Bezerra Pessoa, Pierre Correa Martins, Anderson Melchiades Vasconcelos da Silva, Antonio Gilson Barbosa de Lima, Morgana Vasconcellos Araújo, Adriano S. Cabral, Marcia R. Luiz, Alanna C. Sousa
The optimization of the ceramic materials production process is basically aimed at improving the design and energy performance of industrial equipment [5 – 10], as well as the internal arrangement of ceramic materials in kilns [11] and ovens [12-14].
Fussl, A multitechnique, quantitative characterization of the pore space of fired bricks made of five clayey raw materials used in European brick industry, Applied Clay Science, 214 (2021) 1-16
Juleff, Computational simulation of air flows through a Sri Lankan wind-driven furnace, Journal of Archaeological Science, 32 (2005) 753-766
Materials, 12 (2019) 2-22
Construction and Building Materials 264 (2020) 1-13
Online since: September 2024
Authors: Bohdan Tsymbal, Zoia Sazanishvili, Anton Klymenko, Ilia Verner
The increased adhesion ability of meta-aramid coatings to copper substrates was found in comparison with other metals and alloys used as structural materials.
The increased adhesion ability of meta-aramid coatings to copper substrates was found in comparison with other metals and alloys used as structural materials.
Fedoryachenko, Analysis of the effect of mechanical oscillations generated during welding on the structure of ductile constituent of products made of steel 10G2FB, Materials Science Forum. 1038 (2021) 40-48 pp
Wang, The Journal of Adhesion. 82 (2006) 731
The deformable and strength characteristics of nanocomposites improving Materials Science Forum, 1038 MSF, pp. 144–153.
Online since: September 2011
Authors: Wu Yi Chen, Y. L. Zhang
Finite Element Simulations of Machining Forces Experimental Design, Materials and Method.
Dewes: Journal of Materials Processing Technology Vol. 150 (2004), p. 116 [4] B.
Attia: Machining Science and Technology: An International Journal Vol. 14 (2010), p. 149 [5] B.
Tounsi: Journal of Manufacturing Science and Engineering Vol. 132 (2010), p. 051008 [6] L.H.
Tounsi: Journal of Manufacturing Science and Engineering Vol. 132 (2010), p. 051009 [8] B.
Online since: January 2012
Authors: Han Zhu, Hong Mei Guo
At present, more than 90 percent of highway asphalt pavement adopted semi-rigid materials as base and subbase, and cement stabilized crushed stones base is the most widely used in our highway construction.
The material parameters of pavement structure layer are listed in table 1.
So, it is very necessary to study the effect of the base’s material parameters on surface deflection and tension stress of base bottom.
Acknowledgement This work has been supported by Chinese National Science Foundation (51078261).
References [1] Hongchang Wang, Xiaoming Huang and Zhi Fu: Journal of traffic and transportation engineering Vol. 5 (2005), p.38 (In Chinese) [2] Peng Zhang, Qingfu Li and Chengkui Huang: Journal of traffic and transportation engineering Vol. 8 (2008), p.30 (In Chinese) [3] Honghui Yang, Janxun Wang and Pei-wen Hao:Journal of Chang’an University(Natural Science Edition) Vol. 26 (2006), p.14 (In Chinese) [4] Qingfu Li, Peng Zhang and Jie Shen:Journal of Building Materials Vol. 11 (2008), p.365 (In Chinese) [5] Yingjun Jiang, Hang Xue and Hui Xue: Journal of Chang’an University(Natural Science Edition) Vol. 26 (2006), p.6 (In Chinese) [6] Feng Qin, Huiming Bao: Construction Technology Vol. 36 (2007), p.92 (In Chinese) [7] Ronghui Zhang, Yan Wang and Zhenghui Lei:Subgrade Engineering Vol. 1 (2008), p.57 (In Chinese) [8] Feng Qin: New Building Materials Vol. 12 (2009), p.32 (In Chinese) [9] Feng Qin, Shengjian Yang and Hongxin Lu: Railway Standard Design Vol. 5 (2010), p.25 (In Chinese
Online since: May 2015
Authors: Xiao Ju Gao, Cong Zhang, Ya Wei Zhou, Jian Wu Cao, Dong Ming Yan, Fa Zeng Qu, Xiao Ming Mu, Meng Wang, Guo Bin Li, Da Jiang Zhang, Guo Jiang Wang
Science and Technology on Thermostructural Composite Materials Laboratory, Northwestern Polytechnical University, Xi’an 710072, China; 2.
Yantai Jinli New Materials Co., Ltd; 4.
Journal Of Materials Research. 29 (2014) 1500-12
Chemistry of Materials, 2000, 12(1): 19-21
Materials science forum, 2007, 554: 197-200