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Online since: February 2014
Authors: Azwar Manaf, Maykel Manawan, Bambang Soegijono, Asep Yudi
Pullar, „Hexagonal ferrites: A review of the synthesis, properties and applications of hexaferrite ceramics,“ Progress in Materials Science, 57 (2012) 1191–1334
Johal, „Magnetic properties and microstructure of Ba-ferrite powders prepared by ball milling,“ Journal of Magnetism and Magnetic Materials, 223 (2001) 55-62
Chen, „High coercivity in mechanically alloyed BaFe10Al2O19,“ Journal of Magnetism and Magnetic Materials, 219 (2000) 206-212
Lechevallier, „Synthesis and magnetic properties of La-substituted M-type Sr hexaferrites,“ Journal of Magnetism and Magnetic Materials, 321 (2009) 4045-4051
Grössinger, „Correlation between the inhomogeneity and the magnetic anisotropy in polycrystalline ferromagnetic materials,“ Journal of Magnetism and Magnetic Materials, 28 (1982) 137–142
Johal, „Magnetic properties and microstructure of Ba-ferrite powders prepared by ball milling,“ Journal of Magnetism and Magnetic Materials, 223 (2001) 55-62
Chen, „High coercivity in mechanically alloyed BaFe10Al2O19,“ Journal of Magnetism and Magnetic Materials, 219 (2000) 206-212
Lechevallier, „Synthesis and magnetic properties of La-substituted M-type Sr hexaferrites,“ Journal of Magnetism and Magnetic Materials, 321 (2009) 4045-4051
Grössinger, „Correlation between the inhomogeneity and the magnetic anisotropy in polycrystalline ferromagnetic materials,“ Journal of Magnetism and Magnetic Materials, 28 (1982) 137–142
Online since: June 2013
Authors: Joaquim Pinho-da-Cruz, Elisabete Ferreira, António Andrade-Campos
Introduction
The characterization of materials is having an increasing attention due to manufacturing of new materials
and computational analysis software.
Traditionally, to characterize the mechanical properties of the materials, standard uniaxial tests are used, however different materials may have similar properties.
This presented methodology has been validated for materials with anisotropic behaviour [3] and extrapolated for hyperelastic materials with isotropic behaviour using the Neo-Hookean model.
Progress in Natural Science, 19(4):501-509, 2009
European journal of operational research, 93(3):490-510, 1996
Traditionally, to characterize the mechanical properties of the materials, standard uniaxial tests are used, however different materials may have similar properties.
This presented methodology has been validated for materials with anisotropic behaviour [3] and extrapolated for hyperelastic materials with isotropic behaviour using the Neo-Hookean model.
Progress in Natural Science, 19(4):501-509, 2009
European journal of operational research, 93(3):490-510, 1996
Online since: June 2011
Authors: Zone Ching Lin, Jia Rong Ye
Acknowledgements
The authors thank National Science Council (grant number NSC-96-2221-E-011-106-MY3) supporting this research.
7.
Moon, “A study on microcutting for the configuration of tools using molecular dynamics,” Journal of Materials Processing Technology , Vol.59, No.4, pp. 309-314(1995)
Hu, “A study on mechanism of nano-cutting single crystal silicon,” Journal of Materials Processing Technology, Vol.184, No.1-3, pp. 407-410(2007)
Wu, “Nanometric cutting of copper: A molecular dynamics study,” Computational Materials Science, Vol.37, No.4, pp.434-441(2006)
Tan, “Study of Nanoindentation Using FEM Atomic Model,” Journal of Tribology, v 126, pp. 767-774(2004)
Moon, “A study on microcutting for the configuration of tools using molecular dynamics,” Journal of Materials Processing Technology , Vol.59, No.4, pp. 309-314(1995)
Hu, “A study on mechanism of nano-cutting single crystal silicon,” Journal of Materials Processing Technology, Vol.184, No.1-3, pp. 407-410(2007)
Wu, “Nanometric cutting of copper: A molecular dynamics study,” Computational Materials Science, Vol.37, No.4, pp.434-441(2006)
Tan, “Study of Nanoindentation Using FEM Atomic Model,” Journal of Tribology, v 126, pp. 767-774(2004)
Online since: April 2015
Authors: Chang Ling Zhu, Yue Chen, Jian Liu
The materials match is a ring with radius 50mm and the material
is 35CrMo that was disposed in accordance with the requirement of high carbon chromium bearing stainless steel technology(the subzero treatment temperature is bellow 55°C and thermal insulation time is not less than 1 hour).
This is because the polymer composite materials absorb the water molecules and other moisture in the environment,, which become lubrication medium, turning dry friction into friction with lubrication medium.
Journal of Reinforced Plastics and Composites, 2010, 29(14): 2184-2191
Journal Of Materials Science,1933:28. 5397-5413
Chinese Journal Of Mechanical Engineering,2009,22(6):918-924
This is because the polymer composite materials absorb the water molecules and other moisture in the environment,, which become lubrication medium, turning dry friction into friction with lubrication medium.
Journal of Reinforced Plastics and Composites, 2010, 29(14): 2184-2191
Journal Of Materials Science,1933:28. 5397-5413
Chinese Journal Of Mechanical Engineering,2009,22(6):918-924
Online since: August 2010
Authors: Ke Gao Liu, Bin Xu, Ya Liu
The Morphology and Phases of Ni-Se Powders Prepared by
Hydrothermal Method
LIU Kegaoa∗ LIU Ya
b, XU Binc*
chool of Materials Science and Engineering, Shandong
Jianzhu University, Jinan 250101,China
a
liukg163@163.com, bliuyaseven@163.com, c
xubin@sdjzu.edu.cn
Keywords: Semiconductor materials, Nickel Selenides, Hydrothermal co-reduction, hollow spheres.
Li, Y.T Qian: Materials Research Bulletin 35 (2000), p.459-464 [3] X.H Liu, N.
Yi, et al: Materials Science and Engineering B 140 (2007), p.38-43 [4] M.Zh.
Wang: Functional Materials of China, 2000,31(2), p.116-123 [9] H.M.
Das, et al: Materials Letters 60 (2006) p.2582-2585 [12] X.H.
Li, Y.T Qian: Materials Research Bulletin 35 (2000), p.459-464 [3] X.H Liu, N.
Yi, et al: Materials Science and Engineering B 140 (2007), p.38-43 [4] M.Zh.
Wang: Functional Materials of China, 2000,31(2), p.116-123 [9] H.M.
Das, et al: Materials Letters 60 (2006) p.2582-2585 [12] X.H.
Experimental Investigation on Mechanical Properties of Hemp-Banana-Glass Fiber Reinforced Composites
Online since: June 2015
Authors: M. Ramesh, C. Deepa, G. Sasikala, R. Bhoopathi
Experimental
Materials.
Journal of Applied Polymer Science 96 (2005) 1699–1709
Journal of Material Science 20 (1985) 4015–4020
Materials and Design 32 (2011) 4658–4663
Hybrid effects on tensile properties of hybrid short-glass fiber and carbon-fiber-reinforced PP composites, Journal of Material Science, 36(5) (2001) 1243–1251
Journal of Applied Polymer Science 96 (2005) 1699–1709
Journal of Material Science 20 (1985) 4015–4020
Materials and Design 32 (2011) 4658–4663
Hybrid effects on tensile properties of hybrid short-glass fiber and carbon-fiber-reinforced PP composites, Journal of Material Science, 36(5) (2001) 1243–1251
Online since: January 2013
Authors: Xiao Jin Yu
Solution of Slope of a Frame Based on Simple Support Beam Coming from Method of Changing to Rigidity by Step Combined with Conversion Method
Xiaojin Yu
College of Civil Engineering and Architecture
East China Jiaotong University
Nanchang,Jiangxi, China
email: yuxj_59@163.com
Keywords: method of changing to rigidity by step; Conversion Method; internal force; deformation; displacement
Abstract: The rigidity-step-change method is set up by Mechanics of Materials.
Journal of Jiangxi University of Science and Technology, Vol. 28-6(2007), p.50~52.
Journal of Jiangxi University of Science and Technology, Vol. 29-4(2008), p.36~38.
Qing Liu (translator), in: Structural Mechanics of Basic Structure, Science Press, Beijing (2009).
[15] Wenxuan Gou, in: Mechanics of materials(II), Science Press, Beijing (2010), p.39.
Journal of Jiangxi University of Science and Technology, Vol. 28-6(2007), p.50~52.
Journal of Jiangxi University of Science and Technology, Vol. 29-4(2008), p.36~38.
Qing Liu (translator), in: Structural Mechanics of Basic Structure, Science Press, Beijing (2009).
[15] Wenxuan Gou, in: Mechanics of materials(II), Science Press, Beijing (2010), p.39.
Online since: January 2013
Authors: Lin Li, Jin Yang, Xiu Qing Qian, Hai Xia Zhang, Zhi Cheng Liu
In conclusions, this study does not support that the complex anisotropic materials are simplified to orthotropic materials.
For simplicity, the object of our study is limited to plane materials.
Choice of mechanical constants of orthotropic material According to (2), we gave two sets of (Table 1), i.e., for given two different anisotropic materials.
Conclusions This study does not support that the complex anisotropic materials are simplified to orthotropic materials.
Kowalczyk: Journal of Biomechanics Vol. 36 (2003) ,p. 961 [4] W.Alexandre, N.Salah: Mechanics Research Communications Vol.31(2004),p. 617 [5] P.Augat, T.Link, T.F.
For simplicity, the object of our study is limited to plane materials.
Choice of mechanical constants of orthotropic material According to (2), we gave two sets of (Table 1), i.e., for given two different anisotropic materials.
Conclusions This study does not support that the complex anisotropic materials are simplified to orthotropic materials.
Kowalczyk: Journal of Biomechanics Vol. 36 (2003) ,p. 961 [4] W.Alexandre, N.Salah: Mechanics Research Communications Vol.31(2004),p. 617 [5] P.Augat, T.Link, T.F.
Online since: February 2007
Authors: He Zhuo Miao, Long Hao Qi, Wei Pan, Qiang Xu, Jing Dong Wang, Kazutaka Mori, Taiji Torigoe
However,
there are two major disadvantages on YSZ materials.
Novel Ceramic Materials for TBCs YSZ-MxO.
Diot: Journal of Materials Science Vol.30 (1995), pp.938
Maloney: Thermal barrier coating systems and materials (U.S.
Maloney: Thermal barrier coating systems and materials (U.S.
Novel Ceramic Materials for TBCs YSZ-MxO.
Diot: Journal of Materials Science Vol.30 (1995), pp.938
Maloney: Thermal barrier coating systems and materials (U.S.
Maloney: Thermal barrier coating systems and materials (U.S.