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Online since: June 2017
Authors: Zhi Feng Zhang, Wei Min Mao, Jun Xu, Hao Zhang, Zhen Lin Zhang
Experiments
Materials.
Włosiński, The production and application of metal matrix composite materials, Journal of Materials Processing Technology. 106 (2000) 58-67
Ma, Microstructural and mechanical characteristics of in situ metal matrix composites, Materials Science and Engineering: R: Reports. 29 (2000) 49-113
Hashmi, Particle distribution in cast metal matrix composites—Part I, Journal of Materials Processing Technology. 123 (2002) 251-257
Rohatgi, Preparation and properties of cast aluminium-ceramic particle composites, Journal of Materials Science. 16 (1981) 983-993
Włosiński, The production and application of metal matrix composite materials, Journal of Materials Processing Technology. 106 (2000) 58-67
Ma, Microstructural and mechanical characteristics of in situ metal matrix composites, Materials Science and Engineering: R: Reports. 29 (2000) 49-113
Hashmi, Particle distribution in cast metal matrix composites—Part I, Journal of Materials Processing Technology. 123 (2002) 251-257
Rohatgi, Preparation and properties of cast aluminium-ceramic particle composites, Journal of Materials Science. 16 (1981) 983-993
Online since: June 2008
Authors: L.N. Sun, Cong Han, Shi Jian Yuan
Hartl: Journal of Materials Processing Technology Vol. 71(1997), p.174
[3] K.
Wang: Journal of Materials Processing Technology Vol. 151(2004), p.203 [7] S.J.
Wang: Journal of Material Science & Technology Vol. 19(2003), p.35 [8] K.
Trana: Journal of Materials Processing Technology Vol. 127(2002), p.401 [12] K.
HAN: Journal of Aeronautical materials Vol. 26 (2006), p.46
Wang: Journal of Materials Processing Technology Vol. 151(2004), p.203 [7] S.J.
Wang: Journal of Material Science & Technology Vol. 19(2003), p.35 [8] K.
Trana: Journal of Materials Processing Technology Vol. 127(2002), p.401 [12] K.
HAN: Journal of Aeronautical materials Vol. 26 (2006), p.46
Online since: November 2011
Authors: Wen Quan Cui, Ying Hua Liang, Yan Fei Liu, Jin Shan Hu
It suggests that the main composition is the KNb3O8 and there is still some KNbO3 remaining, meanwhile, some materials have begun to convert to the K4Nb6O17.
The XRD pattern of the sample calcined at 1100℃ shows the strong diffraction peaks of K5.75Nb10.85O30, indicating that the most materials transformed into the K5.75Nb10.85O30.
Osterloh: Chemistry of Materials.
Justin Youngblood: Chemistry of Materials.
In Chinese [15] Haiping Cui, Jun Yan and Minghui Ye: Materials Science and Technology.
The XRD pattern of the sample calcined at 1100℃ shows the strong diffraction peaks of K5.75Nb10.85O30, indicating that the most materials transformed into the K5.75Nb10.85O30.
Osterloh: Chemistry of Materials.
Justin Youngblood: Chemistry of Materials.
In Chinese [15] Haiping Cui, Jun Yan and Minghui Ye: Materials Science and Technology.
Online since: January 2013
Authors: Gou Sheng Liu, Yue Long Liu
Introduction
Ammonium polyphosphate (APP) is a typical flame retardant for many synthetic polymers and cellulosic materials [1-4].
Experimental Methods Materials:Diammonium hydrogen phosphate (DAP) and urea were supplied by Sinopharm Chemical Reagent Co.
Journal of Applied Polymer Science.
Journal of American Chemical Society, Vol. 91,(1969),p. 62
Journal of Agriculture Food Chemistry, Vol. 27,(1979), p. 612
Experimental Methods Materials:Diammonium hydrogen phosphate (DAP) and urea were supplied by Sinopharm Chemical Reagent Co.
Journal of Applied Polymer Science.
Journal of American Chemical Society, Vol. 91,(1969),p. 62
Journal of Agriculture Food Chemistry, Vol. 27,(1979), p. 612
Online since: October 2011
Authors: Rui Duan
Aerogel is a highly porous material.
It has the best thermal insulation properties in all solid-state materials.
Journal of Non- crystalline Solids, vol.219, p.356-362, January 1992
“Transparent silica aerogels for window insulation”.Solar Energy Materials, vol.7, p.393, April 1983
Journal of Non-Crystalline Solids, vol.350, p.351-357, 2004
It has the best thermal insulation properties in all solid-state materials.
Journal of Non- crystalline Solids, vol.219, p.356-362, January 1992
“Transparent silica aerogels for window insulation”.Solar Energy Materials, vol.7, p.393, April 1983
Journal of Non-Crystalline Solids, vol.350, p.351-357, 2004
Online since: September 2021
Authors: Vu Ngoc Pi, Tran Ngoc Giang, Nguyen Hong Linh, Le Xuan Hung, Dinh Ngoc Nguyen, Quoc Hoang Tran
Materials Science Forum, 2020. 977: p. 12-17
Materials Science Forum, 2020. 977: p. 18-26
Materials Science Forum, 2019. 950: p. 24-31
Materials Science Forum, 2020. 977: p. 3-11
Series: Materials Science and Engineering 635, 2019
Materials Science Forum, 2020. 977: p. 18-26
Materials Science Forum, 2019. 950: p. 24-31
Materials Science Forum, 2020. 977: p. 3-11
Series: Materials Science and Engineering 635, 2019
Online since: December 2012
Authors: Subhash Chandra Panja, Sunil Hansda, Simul Banerjee, Haradhan Soren
The delamination is a major problem associated with the drilling of fiber reinforced composite materials.
Journal of material science.
Journal of material processing Technology.
Journal of Material Processing Technology.
Journal of Material Processing Technology.
Journal of material science.
Journal of material processing Technology.
Journal of Material Processing Technology.
Journal of Material Processing Technology.
Online since: February 2011
Authors: Yun Liang Li, Yi Qiu Tan, Yang Jian Ou
Materials and experimental methods
Materials.
Journal of Railway Science and Engineering.Vol,6(2009), p1(In Chinese) [6] Qiang Wang, Peiyu Yan, A Ruhan.
Journal of Building materials.Vol,12(2009), p519(In Chinese) [7] Hun Song, Jeongyun Do, Yangseob Soh.
Construction and Building Materials.
Construction and Building Materials.
Journal of Railway Science and Engineering.Vol,6(2009), p1(In Chinese) [6] Qiang Wang, Peiyu Yan, A Ruhan.
Journal of Building materials.Vol,12(2009), p519(In Chinese) [7] Hun Song, Jeongyun Do, Yangseob Soh.
Construction and Building Materials.
Construction and Building Materials.
Online since: May 2014
Authors: Jesper Henri Hattel, Gaetano S. Palazzo, Pierpaolo Carlone, Mads Rostgaard Sonne
Qi, Thermal and thermo-mechanical modeling of friction stir welding of aluminum alloy 6061-T6, Journal of Materials Processing and Manufacturing Science 7 (1998), 215–233
Simar, B. de Meester, The effect of hardening laws and thermal softening on modeling residual stresses in FSW of aluminum alloy 2024-T3, Journal of Materials Processing Technology 213 (2013) 477– 486 [9] Schmidt, H., Hattel, J., 2008.
Pardoen, Integrated modeling of friction stir welding of 6xxx series Al alloys: process, microstructure and properties, Progress in Materials Science 57 (2012), 95–183
Withers, Global mechanical tensioning for the management of residual stresses in welds, Materials Science and Engineering A A489 (2008), 351–362
Prime, Cross-sectional mapping of residual stresses by measuring the surface contour after a cut, Journal of Engineering Materials and Technology 123 (2001),162–168
Simar, B. de Meester, The effect of hardening laws and thermal softening on modeling residual stresses in FSW of aluminum alloy 2024-T3, Journal of Materials Processing Technology 213 (2013) 477– 486 [9] Schmidt, H., Hattel, J., 2008.
Pardoen, Integrated modeling of friction stir welding of 6xxx series Al alloys: process, microstructure and properties, Progress in Materials Science 57 (2012), 95–183
Withers, Global mechanical tensioning for the management of residual stresses in welds, Materials Science and Engineering A A489 (2008), 351–362
Prime, Cross-sectional mapping of residual stresses by measuring the surface contour after a cut, Journal of Engineering Materials and Technology 123 (2001),162–168
Online since: February 2015
Authors: Mohamad Hidayat Jamal, Mehdi Ghomesi, Peiman Roushenas, Reza Nasrollahpour, Zulhilmi Ismail
Turbidity currents are the main sedimentation mechanism in dam reservoir and can unload or even resuspend bed materials [2].
The head height increases with slope, because the body velocity increases and materials move more rapidly into the head [6].
The key role of bed materials in self-reinforcing mechanism of the head was discussed in [2].
It means that the gravity current erosion of bed materials is more than its deposition onto the bed.
The suspended materials increase the density and thus the speed of the current.
The head height increases with slope, because the body velocity increases and materials move more rapidly into the head [6].
The key role of bed materials in self-reinforcing mechanism of the head was discussed in [2].
It means that the gravity current erosion of bed materials is more than its deposition onto the bed.
The suspended materials increase the density and thus the speed of the current.