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Online since: June 2010
Authors: Li Yang Xie, Wen Qiang Lin, Feng Lu
Evidently, the uncertainty in fatigue life involved in Eq.6 only arises from material property.
The giga-cycle fatigue of high strength materials usually originates from interior, differing from normal fatigue originating on surface.
Xie: International Journal of Fatigue, Vol. 29 (2007), p. 245
Torgeir: International Journal of Fatigue, Vol. 29 (2007), p. 444
Lemaire: International Journal of Fatigue, Vol. 29 (2007), p. 1359
The giga-cycle fatigue of high strength materials usually originates from interior, differing from normal fatigue originating on surface.
Xie: International Journal of Fatigue, Vol. 29 (2007), p. 245
Torgeir: International Journal of Fatigue, Vol. 29 (2007), p. 444
Lemaire: International Journal of Fatigue, Vol. 29 (2007), p. 1359
Online since: October 2012
Authors: Le Zhou, Sheng Li Tang, Xiao Long Dang, Zhang Wu
All kinds of material mechanical parameters are shown in Table 2.
Chinese Journal of Rock Mechanics and Engineering, 2006, 25(2): 117-123.
Chinese Journal of Rock Mechanics and Engineering, 2006, 25(2): 284-288.
Journal of University of Science and Technology Beijing, 2004, 26(3): 240-243.
Journal of Railway Engineering Society, 2009, (2): 1353-1362.
Chinese Journal of Rock Mechanics and Engineering, 2006, 25(2): 117-123.
Chinese Journal of Rock Mechanics and Engineering, 2006, 25(2): 284-288.
Journal of University of Science and Technology Beijing, 2004, 26(3): 240-243.
Journal of Railway Engineering Society, 2009, (2): 1353-1362.
Online since: December 2003
Authors: S. Hansen, Ivana McCarthy, Lars Lidgren, C.L. Camiré, S. Jegou Saint-Jean
Christopher.Camire@ort.lu.se
2
Department of Materials Chemistry, LTH, Box 124, 221-00, Lund, Sweden.
The materials were mixed vigorously in a mortar and pestle for 15 minutes and then placed in a platinum crucible for heat treatment.
Journal of the American Ceramic Society , Vol 82, (1999), p. 2808- 2812
Journal of Materials Science-Materials in Medicine: Vol 6, (1995), p. 272-278
Journal of Biomedical Materials Research , Vol 32, (1996), p. 367-374
The materials were mixed vigorously in a mortar and pestle for 15 minutes and then placed in a platinum crucible for heat treatment.
Journal of the American Ceramic Society , Vol 82, (1999), p. 2808- 2812
Journal of Materials Science-Materials in Medicine: Vol 6, (1995), p. 272-278
Journal of Biomedical Materials Research , Vol 32, (1996), p. 367-374
Online since: October 2010
Authors: Yuan Bin Zhang, Huai Xue Li, Kai Zhang
Investigation of the Laser Melting Deposited TiAl Intermetallic Alloy on Titanium Alloy
Yuanbin Zhang1,a, Huaixue Li2,b, Kai Zhang1,c
1 Department of Materials Science and Engineering, Shandong Jianzhu University, Jinan city 250101, Shandong province, P.R.
Ceramic/alloy and intermetallic composite materials were widely investigated as the laser clad layer for titanium alloys [4-8]. γ-TiAl intermetallic alloy is a kind of potential high temperature structural material for the fields of aeronautics & astronautics, automobile industries.
Metallographic specimens were prepared from the deposited materials using standard practices, and were etched in a mixed solution of 300ml H2O, 100ml HNO3 and 100ml HF.
Trivedi: Materials Science and Engineering A, Vol. 367 (2004), pp.225-233
Liu: Materials Science and Engineering A, Vol. 338A (2002), pp.126-132
Ceramic/alloy and intermetallic composite materials were widely investigated as the laser clad layer for titanium alloys [4-8]. γ-TiAl intermetallic alloy is a kind of potential high temperature structural material for the fields of aeronautics & astronautics, automobile industries.
Metallographic specimens were prepared from the deposited materials using standard practices, and were etched in a mixed solution of 300ml H2O, 100ml HNO3 and 100ml HF.
Trivedi: Materials Science and Engineering A, Vol. 367 (2004), pp.225-233
Liu: Materials Science and Engineering A, Vol. 338A (2002), pp.126-132
Online since: September 2022
Authors: Razali Mohd Hasmizam, Alina Irwana Muhamad A'srai
Applied Surface Science, 334, 151–156
Luminescence Studies on the europium doped strontium metasilicate phosphor prepared by solid state reaction method Journal of Science : Advanced Materials and Devices Luminescence studies on the europium doped strontium metasilicate phosphor prepared by s.
Journal of Science: Advanced Materials and Devices, 2(1), 59–68
IOP Conference Series: Materials Science and Engineering, 440(1), 1-7
Materials Chemistry and Physics, 276, 125305
Luminescence Studies on the europium doped strontium metasilicate phosphor prepared by solid state reaction method Journal of Science : Advanced Materials and Devices Luminescence studies on the europium doped strontium metasilicate phosphor prepared by s.
Journal of Science: Advanced Materials and Devices, 2(1), 59–68
IOP Conference Series: Materials Science and Engineering, 440(1), 1-7
Materials Chemistry and Physics, 276, 125305
Online since: August 2014
Authors: Yun Shi, Yan Dong Tang, Xin Liao, Chun Ping Liu
Flury, Heterogeneous flow and solute transport in an unsaturated stony soil monolith, Soil Science Society of America Journal, 59(1995)14-21
Day, Fitting solute breakthrough equations to data using two adjustable parameters,Soil Science Society of America Journal. 41(1977) 39-41
Naor, Estimating transport parameters in soils by a maximum likelihood approach, Soil Science Society of America Journal. 51(1987)870-875
Sposito, Field calibration and validation of solute transport models for the unsaturated zone, Soil Science Society of America Journal. 49(1985) 1331 – 1341
Richie, Elimination of time assignment bias in estimates of dispersion coefficient, Soil Science Society of America Journal. 51 (1987)302-304
Day, Fitting solute breakthrough equations to data using two adjustable parameters,Soil Science Society of America Journal. 41(1977) 39-41
Naor, Estimating transport parameters in soils by a maximum likelihood approach, Soil Science Society of America Journal. 51(1987)870-875
Sposito, Field calibration and validation of solute transport models for the unsaturated zone, Soil Science Society of America Journal. 49(1985) 1331 – 1341
Richie, Elimination of time assignment bias in estimates of dispersion coefficient, Soil Science Society of America Journal. 51 (1987)302-304
Online since: January 2013
Authors: Meng Le Sun, Yan Xin Yang
The allyl thiourea and CdCl2•5H2O were used as raw materials for the synthesis of dendritic CdS nanostructures for the first time.
As an important II–VI semiconductor with a bandgap of 2.52 eV at room temperature, CdS is one of the most important electronic and optoelectronic materials, with prominent applications in nonlinear optical devices, flat panel displays, light emitting diodes, laser, transistors and so on[1-7].
He et al synthesized dendritic CdS via hydrothermal method using thiourea and Cd(NO3)2·4H2O as raw materials[17].
Conclusion Dendritic CdS nanostructures were successfully synthesized by hydrothermal method with AT and CdCl2·5H2O as raw materials.
Xu: Chinese Journal of Inorganic Chemistry, Vol. 24 (2008), p. 1434 [17] D.
As an important II–VI semiconductor with a bandgap of 2.52 eV at room temperature, CdS is one of the most important electronic and optoelectronic materials, with prominent applications in nonlinear optical devices, flat panel displays, light emitting diodes, laser, transistors and so on[1-7].
He et al synthesized dendritic CdS via hydrothermal method using thiourea and Cd(NO3)2·4H2O as raw materials[17].
Conclusion Dendritic CdS nanostructures were successfully synthesized by hydrothermal method with AT and CdCl2·5H2O as raw materials.
Xu: Chinese Journal of Inorganic Chemistry, Vol. 24 (2008), p. 1434 [17] D.
Online since: May 2012
Authors: Yang Chen, Xiao Hua Yin, Xing Zheng Xiong, Yun Liu, Xiao Hui Huang, Xiao Xue Wang
Peng: Journal of Chongqing Forestry Science and Technology, Vol. 79 (2007) NO. 2, p.58-60.
Tan: Journal of Chongqing Forestry Science and Technology, Vol. 75 (2006) NO. 2, p: 48-50.
Tan: Journal of Chongqing Forestry Science and Technology, Vol. 77 (2006) NO.4, p: 47-50.
Wei: Modern Agricultural Sciences and Technology, (2008) NO.16.
He: Chinese Journal of Animal Science, Vol. 38 (2002) NO. 1, p: 58.
Tan: Journal of Chongqing Forestry Science and Technology, Vol. 75 (2006) NO. 2, p: 48-50.
Tan: Journal of Chongqing Forestry Science and Technology, Vol. 77 (2006) NO.4, p: 47-50.
Wei: Modern Agricultural Sciences and Technology, (2008) NO.16.
He: Chinese Journal of Animal Science, Vol. 38 (2002) NO. 1, p: 58.
Online since: November 2013
Authors: Maurizio Vedani, Ausonio Tuissi, Paola Bassani, Carlo Alberto Biffi, Riccardo Casati
Van Humbeeck, Advanced Engineering Materials 3 (2001)
[3] G.S.
Koval, Materials Science and Engineering A 378 (2004) [5] S.H.
Harris, Journal of Materials Sccience Letters 20 (2001) [7] C.A.
Tuissi, Materials Science Forum 738-739 (2013) [8] A.
Jiang, Journal of Alloys and Compounds 468 (2009) [12] F.
Koval, Materials Science and Engineering A 378 (2004) [5] S.H.
Harris, Journal of Materials Sccience Letters 20 (2001) [7] C.A.
Tuissi, Materials Science Forum 738-739 (2013) [8] A.
Jiang, Journal of Alloys and Compounds 468 (2009) [12] F.
Online since: August 2005
Authors: Yong Bo Wu, M. Kato, Tsunemoto Kuriyagawa, Mitsuyoshi Nomura
Umino, etc.: Journal of JSPE, (in Japanese), Vol.52, No.1 (1986), p.107
Kumabe: Journal of JSPE, (in Japanese), Vol. 27, No.6 (1961), p. 369
Tanaka, etc.: Journal of JSPE, (in Japanese), Vol.29, No.3 (1963), p.232
Wu, etc.: Journal of JSAT, (in Japanese), Vol.47, No.10 (2003), p.550
Wu, etc.: Materials Science Forum, Vols. 471-472 (2004), pp.101-106.
Kumabe: Journal of JSPE, (in Japanese), Vol. 27, No.6 (1961), p. 369
Tanaka, etc.: Journal of JSPE, (in Japanese), Vol.29, No.3 (1963), p.232
Wu, etc.: Journal of JSAT, (in Japanese), Vol.47, No.10 (2003), p.550
Wu, etc.: Materials Science Forum, Vols. 471-472 (2004), pp.101-106.