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Online since: March 2014
Authors: Masao Sakane, Takamoto Itoh, Hideyuki Kanayama, Masahiro Sakabe, Shu Li Liu, Takahiro Morishita, Norio Takeda
Kuwabara, Journal of the Society of Materials Science, Japan, Vol.36, No.403 (1987), pp.376-382
Socie, Transaction of the American Society of Mechanical Engineers, Journal of Engineering Materials and Technology, Vol.113, No.1 (1991), pp.23-30
Ameyama, Journal of the Society of Materials Science, Japan, Vol.41, No.468 (1992), pp.1361-1367
Socie, Transaction of the American Society of Mechanical Engineers, Journal of Engineering Materials and Technology; Vol.117, No.7 (1995), pp.285-292
Ozaki, Journal of the Society of Materials Science, Japan, Vol. 60, No. 2, (2011), pp. 88-93
Socie, Transaction of the American Society of Mechanical Engineers, Journal of Engineering Materials and Technology, Vol.113, No.1 (1991), pp.23-30
Ameyama, Journal of the Society of Materials Science, Japan, Vol.41, No.468 (1992), pp.1361-1367
Socie, Transaction of the American Society of Mechanical Engineers, Journal of Engineering Materials and Technology; Vol.117, No.7 (1995), pp.285-292
Ozaki, Journal of the Society of Materials Science, Japan, Vol. 60, No. 2, (2011), pp. 88-93
Online since: August 2014
Authors: Wen Gang Wu, Ying Jun Chen, Qing Hua Chen, Yi Bin He, Miao Gang Su
Journal of Materials Processing Technology, 2010, 210(15): pp.2103-2118
Journal of Materials Processing Technology, 2011, 211(8): pp.1441-1447
CIRP Journal of Manufacturing Science and Technology, 2011, 4(2): pp.189-199
Journal of Computational and Theoretical Nanoscience, 2012, 9(9): pp.1309-1314
Applied Mechanics and Materials, 2014, 446: pp.279-283
Journal of Materials Processing Technology, 2011, 211(8): pp.1441-1447
CIRP Journal of Manufacturing Science and Technology, 2011, 4(2): pp.189-199
Journal of Computational and Theoretical Nanoscience, 2012, 9(9): pp.1309-1314
Applied Mechanics and Materials, 2014, 446: pp.279-283
Online since: February 2012
Authors: Ya Jun Wang, Wo Hua Zhang
These facts discovered materials of the zones calculated foregoing are vulnerable to yield and fracture due to generalized-damage-field’s development.
Safety Science, 49(2), 2011. 298–305
Journal of Zhejiang University (Engineering Science), 41(1), 2007. 52–56
Water Science and Engineering, 1(4), 2008. 36–46
Journal of Zhejiang University (Engineering Science), 43(4), 2009.743–749,776.
Safety Science, 49(2), 2011. 298–305
Journal of Zhejiang University (Engineering Science), 41(1), 2007. 52–56
Water Science and Engineering, 1(4), 2008. 36–46
Journal of Zhejiang University (Engineering Science), 43(4), 2009.743–749,776.
Online since: October 2012
Authors: Dyi Cheng Chen, Fung Ling Nian, Jiun Ru Shiu, Wen Hsuan Ku
Movahhedy, Die design for the radial forging process using 3D FEM, Journal of Materials Processing Technology, 182 (2007) 534-539
Lu, Experimental study on process of precision forging of an aluminum-alloy rotor, Journal of Materials Processing Technology, 170 (2005) 412-415
Hsu, The influence of die shape on the flow deformation of extrusion forging, Journal of Materials Processing Technology, 124 (2002) 67-76
Moon, Process analysis of multistage forging by using finite element method, Journal of Materials Processing Technology, 187-188 (2007) 586-590
Petzov, Microstructure evolution during metal forming processes, Computational Materials Science, 28 (2003) 563–573
Lu, Experimental study on process of precision forging of an aluminum-alloy rotor, Journal of Materials Processing Technology, 170 (2005) 412-415
Hsu, The influence of die shape on the flow deformation of extrusion forging, Journal of Materials Processing Technology, 124 (2002) 67-76
Moon, Process analysis of multistage forging by using finite element method, Journal of Materials Processing Technology, 187-188 (2007) 586-590
Petzov, Microstructure evolution during metal forming processes, Computational Materials Science, 28 (2003) 563–573
Online since: March 2021
Authors: Nur Izyan Wan Azelee, Aizi Nor Mazila Ramli, Rohaida Che Man, Aimi Wahidah Aminan, Sharifah Zafierah Syed Badrulzaman
Materials and Methods
Procurement of feathers.
Cleaning Method by Keratinase Enzyme for Improving Quality Edible Bird Nest, Journal of Life Science Biomedicine. 4 (2014) 416-420
Keratins extracted from Merino wool and Brown Alpaca fibres: Thermal, mechanical and biological properties of PLLA based biocomposites, Materials Science and Engineering C. 47 (2015) 394–406
Fabrication and characterization of chicken feather keratin/polysaccharides blended polymer coated nonwoven dressing materials for wound healing applications, Materials Science & Engineering. 92 (2017) 1-7
Characterization of dehydrated keratin protein extracted from chicken feather, Materials Science and Engineering. 702 (2019) 1-8
Cleaning Method by Keratinase Enzyme for Improving Quality Edible Bird Nest, Journal of Life Science Biomedicine. 4 (2014) 416-420
Keratins extracted from Merino wool and Brown Alpaca fibres: Thermal, mechanical and biological properties of PLLA based biocomposites, Materials Science and Engineering C. 47 (2015) 394–406
Fabrication and characterization of chicken feather keratin/polysaccharides blended polymer coated nonwoven dressing materials for wound healing applications, Materials Science & Engineering. 92 (2017) 1-7
Characterization of dehydrated keratin protein extracted from chicken feather, Materials Science and Engineering. 702 (2019) 1-8
Online since: September 2006
Authors: Fionn P.E. Dunne, Alexander M. Korsunsky, Daniele Dini
As previously reported [15, 16], neutron diffraction provides an excellent tool for
non-destructive characterization of lattice strains in polycrystalline materials.
Leclercq, et al., Computational Materials Science, 25 (2002), p. 73. 4.
Anand, International Journal of Plasticity, 19 (2003), p. 1843. 12.
Tong, International Journal of Plasticity, 20 (2004), p. 523. 15.
Lorentzen, et al., Materials Science and Engineering A, 259 (1999), p. 17. 16.
Leclercq, et al., Computational Materials Science, 25 (2002), p. 73. 4.
Anand, International Journal of Plasticity, 19 (2003), p. 1843. 12.
Tong, International Journal of Plasticity, 20 (2004), p. 523. 15.
Lorentzen, et al., Materials Science and Engineering A, 259 (1999), p. 17. 16.
Online since: October 2013
Authors: Bin Lin, Yan Wang, Shao Lei Wang, Xiao Yan Cao
Different from the machining of traditional metallic materials, it has been reported that the strong anisotropy and inhomogeneity of FRCMC causes many specific problems in machining, such as fiber pullout, matrix craze, interfacial debonding and fiber fracture, etc.
Zhang: Journal of Materials Processing Technology Vol.152 (2004), p. 333 [2] Wang, D.H., Ramulu, M., Arola, D: International Journal of Machine Tools and Manufacture Vol.35 (1995), p. 1623 [3] X.M.
Chen,etal: Key Engineering Materials Vol.196 (2001), p.43 [5] L.C.
Wang,: Machining Science and Technology Vol.5 (2001), p.293 [6] N.S.
Zhang: Journal of Materials Processing Technology Vol.140 (2003), p.152 [7] Cao Xiaoyan, Lin Bin, Zhang Xiaofeng: Applied Surface Science Vol.270 (2013), p.503
Zhang: Journal of Materials Processing Technology Vol.152 (2004), p. 333 [2] Wang, D.H., Ramulu, M., Arola, D: International Journal of Machine Tools and Manufacture Vol.35 (1995), p. 1623 [3] X.M.
Chen,etal: Key Engineering Materials Vol.196 (2001), p.43 [5] L.C.
Wang,: Machining Science and Technology Vol.5 (2001), p.293 [6] N.S.
Zhang: Journal of Materials Processing Technology Vol.140 (2003), p.152 [7] Cao Xiaoyan, Lin Bin, Zhang Xiaofeng: Applied Surface Science Vol.270 (2013), p.503
Online since: January 2022
Authors: Gofaone Mogosetso, Caspar Lebekwe, Nonofo M.J. Ditshego
Properties of Ge such as high carrier mobility, compatibility with Si and adaptability with highk
materials makes it comparable to silicon.
Fig. 2 shows the structure of the Ge FinFET including the materials used and the electron density of each region.
Schwierz, "Mosfet scaling: Impact of twodimensional channel materials," in 2016 13th IEEE International Conference on Solid-State and Integrated Circuit Technology (ICSICT), pp. 466-469, 2016
Ikeda, "Seebeck coefficient of ge-on-insulator layers fabricated by direct wafer bonding process," Advanced Materials Research, vol. 1117, pp. 94-97, 05 2015
Soin, "Optimization of 7 nm strained germanium finfet design parameters using taguchi method and pareto analysis of variance," ECS Journal of Solid State Science and Technology, vol. 7, pp.
Fig. 2 shows the structure of the Ge FinFET including the materials used and the electron density of each region.
Schwierz, "Mosfet scaling: Impact of twodimensional channel materials," in 2016 13th IEEE International Conference on Solid-State and Integrated Circuit Technology (ICSICT), pp. 466-469, 2016
Ikeda, "Seebeck coefficient of ge-on-insulator layers fabricated by direct wafer bonding process," Advanced Materials Research, vol. 1117, pp. 94-97, 05 2015
Soin, "Optimization of 7 nm strained germanium finfet design parameters using taguchi method and pareto analysis of variance," ECS Journal of Solid State Science and Technology, vol. 7, pp.
Online since: October 2011
Authors: Jia Peng He, Jian Li
Choosing the phase change materials, which the phase transition temperature is 29℃ and the latent heat is 188 kJ/kg.
Phase change materials stores the cheap electricalheatenergy, and releases during daytime, So as to realize energy conservation and economy .
When phase change materials storing hot, rate of Storing hot is.
When phase change materials heating, rate of heating is.
Journal of Tsinghua University(Science and Technology) [5] Lu Yao Qing.
Phase change materials stores the cheap electricalheatenergy, and releases during daytime, So as to realize energy conservation and economy .
When phase change materials storing hot, rate of Storing hot is.
When phase change materials heating, rate of heating is.
Journal of Tsinghua University(Science and Technology) [5] Lu Yao Qing.
Online since: March 2018
Authors: Dong Won Jung, Hamed Deilami Azodi, Roya Darabi
The bi-layer materials have been used widely during past decades due to their specific characteristics like lighter weight, more corrosion resistance, and insulation features in comparison with mono-layers which consisting them.
Kuczynski: Limit strains in the processes of stretch forming sheet metal, International Journal of Mechanical Sciences, Vol. 9(1967), No. 9, pp. 609-620
Piehler: Deformation of sandwich sheet materials in uniaxial tension, Metallurgical Transactions A, Vol. 10 (1979.), No. 1, pp. 85-96
R Piehler: Formability of sandwich sheet materials in plane strain compression and rolling, Metallurgical Transactions A, Vol. 10 (1979), No. 1, pp. 97-107
Z Gronstajski, Z.Zimniak: The effect of changing of heterogeneity with strain on the forming limit diagram, Journal of Materials Processing Technology, Vol. 34 (1992), pp 457-464
Kuczynski: Limit strains in the processes of stretch forming sheet metal, International Journal of Mechanical Sciences, Vol. 9(1967), No. 9, pp. 609-620
Piehler: Deformation of sandwich sheet materials in uniaxial tension, Metallurgical Transactions A, Vol. 10 (1979.), No. 1, pp. 85-96
R Piehler: Formability of sandwich sheet materials in plane strain compression and rolling, Metallurgical Transactions A, Vol. 10 (1979), No. 1, pp. 97-107
Z Gronstajski, Z.Zimniak: The effect of changing of heterogeneity with strain on the forming limit diagram, Journal of Materials Processing Technology, Vol. 34 (1992), pp 457-464