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Online since: December 2023
Authors: Srikrishna Bhaskar Rao, K. Venkadeshwaran, Y. Naidu Shivaprasad
Materials Science and Engineering: A, 380(1-2), 20-29. https://doi.org/10.1016/j.msea.2004.01.056
[32] Chiu, K.
Journal of materials science, 46(10), 3405-3414. https://doi.org/10.1007/s10853-010-5229-2 [46] C.J.
Journal of Materials Research, 30(5), 717. https://doi.org/10.1557/jmr.2015.28 [50] Xu, G.
Journal of materials science, 43(5), 1546-1551. https://doi.org/10.1007/s10853-007-2350-y [70] Tao, X.
Journal of Materials Processing Technology, 289, 116949. https://doi.org/10.1016/j.wear.2021.08.027.
Journal of materials science, 46(10), 3405-3414. https://doi.org/10.1007/s10853-010-5229-2 [46] C.J.
Journal of Materials Research, 30(5), 717. https://doi.org/10.1557/jmr.2015.28 [50] Xu, G.
Journal of materials science, 43(5), 1546-1551. https://doi.org/10.1007/s10853-007-2350-y [70] Tao, X.
Journal of Materials Processing Technology, 289, 116949. https://doi.org/10.1016/j.wear.2021.08.027.
Online since: November 2010
Authors: Seiichiro Sakata, Fumihiro Ashida
The stochastic characteristics of the homogenized elastic property will take an influence of the
microscopic uncertainty in a material property or geometry of component materials, therefore the
stochastic homogenization analysis will be important for reliability evaluation of a composite
structure.
Since a microscopic stress distribution in a composite material will be complex and also take an influence of a random variation in material properties or geometry of component materials, a stochastic microscopic stress analysis will be also important.
In the Monte-Carlo simulation process, the observed characteristic displacement and the observed macroscopic strain tensor are computed for each observed value of elastic properties of component materials.
Elastic properties of the component materials are listed in table 1.
Zako: Journal of Solid Mechanics and Materials Engineering, Vol.2 (2008), pp.70-81
Since a microscopic stress distribution in a composite material will be complex and also take an influence of a random variation in material properties or geometry of component materials, a stochastic microscopic stress analysis will be also important.
In the Monte-Carlo simulation process, the observed characteristic displacement and the observed macroscopic strain tensor are computed for each observed value of elastic properties of component materials.
Elastic properties of the component materials are listed in table 1.
Zako: Journal of Solid Mechanics and Materials Engineering, Vol.2 (2008), pp.70-81
Online since: June 2015
Authors: B. Vijaya Ramnath, C. Elanchezhian, R. Kaosik, K. Santhosh Kumar, V.M. Manickavasagam, A. Santhosh Shankar, R. Sundarrajan, S. Vickneshwaran
Abstract
Advancement in Science and technology over the past decade has made the human society to venture into using hybrid materials for variety of applications.
Natural fiber composite materials are one among those new emerging engineering materials.
In general composite materials are increasing widely.
Fibermatrix adhesion and its relationship to compositemechanical properties, Journal of Material Science 1993;28:569–610
Influence of fiber orientation and thickness on tensile properties of laminated polymer composites, International Journal Pure Applied Science and Technology 2012;9(1):61–8
Natural fiber composite materials are one among those new emerging engineering materials.
In general composite materials are increasing widely.
Fibermatrix adhesion and its relationship to compositemechanical properties, Journal of Material Science 1993;28:569–610
Influence of fiber orientation and thickness on tensile properties of laminated polymer composites, International Journal Pure Applied Science and Technology 2012;9(1):61–8
Online since: October 2013
Authors: Mao Fang Huang, Zong Qiang Zeng, Chun Liang Yang, Kai Dian Wang, Zhi Xiong Liang, Xian Zhou Xiao
The protein content of dry rubber materials produced by Micro-cut Tapping with Gas-stimulation is 16.7% higher than control group.
Thermo gravimetric analysis of raw rubber materials of natural rubber.
Chinese Journal of Tropical Agriculture,2010,30(8):59-62.
Chinese Journal of Tropical Agriculture, 2010, 30(8):42-45.
Chinese Journal of Tropical Agriculture,1986,7(2):25.
Thermo gravimetric analysis of raw rubber materials of natural rubber.
Chinese Journal of Tropical Agriculture,2010,30(8):59-62.
Chinese Journal of Tropical Agriculture, 2010, 30(8):42-45.
Chinese Journal of Tropical Agriculture,1986,7(2):25.
Online since: August 2017
Authors: Peter Šugár, Jana Šugárová, Miroslav Sahul, Martin Frnčík
Laser Beam Milling of Alumina Ceramics - The Impact on Material Removal Efficiency and Machined Surface Morphology
Peter ŠUGÁR1,a*, Martin FRNČÍK1,b, Jana ŠUGÁROVÁ1,c, Miroslav SAHUL1,d
1Institute of Production Technologies, Faculty of Materials Science and Technology,
Slovak University of Technology, J.
Samant, Laser machining of advanced materials, CRC Press, Leiden, 2011
Chmelickova, Laser Micromachining of Glass, Silicon, and Ceramics, Advances in Materials Science and Engineering, 2015, 6 pp
Journal of Material Processing Technology. 209 (2009), pp. 2008 – 2014
Journal of Applied Ceramic Technology, (2014), pp. 1 – 14
Samant, Laser machining of advanced materials, CRC Press, Leiden, 2011
Chmelickova, Laser Micromachining of Glass, Silicon, and Ceramics, Advances in Materials Science and Engineering, 2015, 6 pp
Journal of Material Processing Technology. 209 (2009), pp. 2008 – 2014
Journal of Applied Ceramic Technology, (2014), pp. 1 – 14
Online since: January 2013
Authors: Qi Dong Liu, Ya Li Wang, Su Ping Cui, Yun Feng Zhang, Hong Xia Guo
Journal of Catalysis. 155 (1995) 117-130
Journal of Molecular Catalysis A: Chemical. 208 (2004) 257-265
Environmental Science. 01 (2004) 7-13
Journal of Catalysis. 221 (2004) 421-431
Chinese Journal of Catalysis. 10 (2006) 843-848
Journal of Molecular Catalysis A: Chemical. 208 (2004) 257-265
Environmental Science. 01 (2004) 7-13
Journal of Catalysis. 221 (2004) 421-431
Chinese Journal of Catalysis. 10 (2006) 843-848
Online since: January 2014
Authors: Li Jun Zhu, Kai Wen Tian, Jie Zhao, Wen Lu Shi, Min Ming Zou, Xiang Hai Ye, Hong Gang Shi
Compressive-shear behavior and self-sharpening of bulk metallic glasses and their composite materials[j].
Rare Metal Materials and Engineering, 2011, 40(2): 426-427.
Materials Letters, 2002, 57:173-177
International Journal of Impact Engineering. 2000, 24: 435-444 [6] WANG Zhi-hua, CHEN Guang, JIANG Fei.
Ordnance Material Science an Engineering, 2003, 26(1):29-31.
Rare Metal Materials and Engineering, 2011, 40(2): 426-427.
Materials Letters, 2002, 57:173-177
International Journal of Impact Engineering. 2000, 24: 435-444 [6] WANG Zhi-hua, CHEN Guang, JIANG Fei.
Ordnance Material Science an Engineering, 2003, 26(1):29-31.
Online since: March 2013
Authors: Bin Liu, Yan Wen, Hai Long Yue
This calculation and evaluation method of heat transfer in porous medium and the material properties have more engineering application value.
2.
This shows that the heat penetration depth of the bottom material is larger than the top material.
Acknowledgments This work is supported by the National Science Foundation of China [No.51076135].
References [1] Peichao L,Xiangyan K, Detang L:Journal of Hydrodynamics(A) Vol.18 (2003),p.419 [2] Zenghe X,Xiaohe X, Lianshan S:Chinese Journal of Applied Mechanics Vol.16(1999),p,46 [3]D.
Belaadi:Heat and Technology Vol.23(2005),p,61 [4] Tao Z, Yong Y, Heng Z, Xiaodong S:Journal of Luoyang Institute of Technology Vol.20(1999),p,62 [5] Mo Y, Fang Z:Journal of Engineering Thermophysics Vol.29(2008),p,1199 [6] Shaofang Z, Zeliang Y:Energy-saving Vol.8(1997),p,14 [7] Dianrong G, Xiaoming W,in:Engineering Fluid Mechanicse,edtied by Machine Press, BJ(1999),p,76 [8]Kong Xiangyan,in:Seepage Mechanics,edtied by University of Science and Technology of China Press, BJ(1999),p,18
This shows that the heat penetration depth of the bottom material is larger than the top material.
Acknowledgments This work is supported by the National Science Foundation of China [No.51076135].
References [1] Peichao L,Xiangyan K, Detang L:Journal of Hydrodynamics(A) Vol.18 (2003),p.419 [2] Zenghe X,Xiaohe X, Lianshan S:Chinese Journal of Applied Mechanics Vol.16(1999),p,46 [3]D.
Belaadi:Heat and Technology Vol.23(2005),p,61 [4] Tao Z, Yong Y, Heng Z, Xiaodong S:Journal of Luoyang Institute of Technology Vol.20(1999),p,62 [5] Mo Y, Fang Z:Journal of Engineering Thermophysics Vol.29(2008),p,1199 [6] Shaofang Z, Zeliang Y:Energy-saving Vol.8(1997),p,14 [7] Dianrong G, Xiaoming W,in:Engineering Fluid Mechanicse,edtied by Machine Press, BJ(1999),p,76 [8]Kong Xiangyan,in:Seepage Mechanics,edtied by University of Science and Technology of China Press, BJ(1999),p,18
Online since: July 2014
Authors: Ning Zhang, Hong Min Kan, Xiao Yang Wang, Su Juan Yang
Progress in electrodeposition of composite materials
KAN Hongmin 1, a, ZHANG Ning 1, WANG Xiaoyang1 and YANG Sujuan2
1 Key Laboratory of Advanced Materials Technology of Liaoning, Shenyang University, Shenyang City, Liaoning Province, 110044, China
2 Sichuan Changzheng Machinery Factory, Chengdu City, Sichuan Province, 610100, China
aemail:kanhongmin2002@163.com
Keywords: Composite materials; Electrodeposition; particles content in the coating
Abstract: Electrochemical or electro co-deposition techniques have been used to deposit particles in metallic matrices to prepare composite coatings.
It has been found that when the grain size reduces to the values smaller than 100 nm, the hardness and yield strength increases approximately five to ten times with respect to microcrystalline materials [11].
Science, Vol.305(2004) p. 623
Journal of Alloys and Compounds, Vol.489(2010) p. 650 [19] M.
Journal of Alloys and Compounds, Vol.490 (2010) p. 431
It has been found that when the grain size reduces to the values smaller than 100 nm, the hardness and yield strength increases approximately five to ten times with respect to microcrystalline materials [11].
Science, Vol.305(2004) p. 623
Journal of Alloys and Compounds, Vol.489(2010) p. 650 [19] M.
Journal of Alloys and Compounds, Vol.490 (2010) p. 431
Online since: July 2011
Authors: X. Soldani, C. Santiuste, J.A. Loya, María Henar Miguélez
Numerical modeling of post-processing of composite materials
X.
Learning results include not only general knowledge about this family of materials.
Also the numerical modeling of composite behavior could be applied to new anisotropic materials in the future.
Barbero, Introduction to composite materials design (Taylor & Francis, USA 2010)
Miguélez, Process Definition as a Basic Teaching Tool in the EHEA, Materials Science Forum, 625 (2009) 61-6 [8] M.H.
Learning results include not only general knowledge about this family of materials.
Also the numerical modeling of composite behavior could be applied to new anisotropic materials in the future.
Barbero, Introduction to composite materials design (Taylor & Francis, USA 2010)
Miguélez, Process Definition as a Basic Teaching Tool in the EHEA, Materials Science Forum, 625 (2009) 61-6 [8] M.H.