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Online since: January 2019
Authors: Yu Li, Zhao Zhong Yang, Xiao Gang Li, Zi jia Liao, Jun Ya Xiong
For brittle materials such as proppant, when its stress is up to tensile stress limit, the material will be broken.
Journal of Natural Gas Science & Engineering, 2016, 33: 70-80
Mechanical Testing of Glass Hollow Microspheres[M]// Advances in Materials Characterization.
Journal of Southwest University of Science and Technology, 2018, 33(1): 8-12 (in Chinese)
[9]Gao H, Zheng Y R, Feng X T .EXPLORATION ON YIELD AND FAILURE OF MATERIALS [J].
Journal of Natural Gas Science & Engineering, 2016, 33: 70-80
Mechanical Testing of Glass Hollow Microspheres[M]// Advances in Materials Characterization.
Journal of Southwest University of Science and Technology, 2018, 33(1): 8-12 (in Chinese)
[9]Gao H, Zheng Y R, Feng X T .EXPLORATION ON YIELD AND FAILURE OF MATERIALS [J].
Online since: March 2013
Authors: Xu Jun Mi, Bai Qing Xiong, Guo Liang Xie, Qiang Song Wang, Xiang Peng Xiao
Watanabe, Microstructure and mechanical properties of Cu–Ni–Si alloys [J], Materials Science and Engineering A. 483-484 (2008) 117-119
Vincent, Dynamic embrittlement at intermediate temperature in a Cu–Ni–Si alloy [J], Materials Science and Engineering A. 477 (2008) 145-152
Albert, Precipitation processes in Cu-Co-Si alloys [J], Journal of Materials Science. 23 (1988) 4059-4065
Jin, Aging behavior of Cu–Ni–Si alloy, Materials Science and Engineering A. 361 (2003) 93-99
Noble, Precipitate structure in a Cu-Ni-Si alloy, Journal of Materials Science. 29 (1994) 218-226
Vincent, Dynamic embrittlement at intermediate temperature in a Cu–Ni–Si alloy [J], Materials Science and Engineering A. 477 (2008) 145-152
Albert, Precipitation processes in Cu-Co-Si alloys [J], Journal of Materials Science. 23 (1988) 4059-4065
Jin, Aging behavior of Cu–Ni–Si alloy, Materials Science and Engineering A. 361 (2003) 93-99
Noble, Precipitate structure in a Cu-Ni-Si alloy, Journal of Materials Science. 29 (1994) 218-226
Online since: March 2023
Authors: V.V. Kamesh, D. Raviteja, Sandip Kunar
Because composite materials have various advantages over other materials, this is often the reason for this.
Journal of Applied compound Science, 105(2007) 390-397
Berthelot, Damping analysis of orthotropic composites with interleaved elastic layers: modeling, Journal of Composite Materials, 40(2006)1889-909
Tobi, et al., New Approach of Dynamic Vibration absorbent material made of Natural Fibres Composite, ARPN Journal of Engineering and Applied Sciences, 11 (2016)2308-2313
Asnani, Vibration and Damping Analysis of Fibre Reinforced Composite Material Plates, Journal of Composite Materials, 20(1) (1986)2–18
Journal of Applied compound Science, 105(2007) 390-397
Berthelot, Damping analysis of orthotropic composites with interleaved elastic layers: modeling, Journal of Composite Materials, 40(2006)1889-909
Tobi, et al., New Approach of Dynamic Vibration absorbent material made of Natural Fibres Composite, ARPN Journal of Engineering and Applied Sciences, 11 (2016)2308-2313
Asnani, Vibration and Damping Analysis of Fibre Reinforced Composite Material Plates, Journal of Composite Materials, 20(1) (1986)2–18
Online since: December 2014
Authors: Wen Hui Ma, Hai Yang Xue, Guo Qiang Lv, Xi Yang, Dao Tong Chen, Shao Yuan Li
These two favored materials are expected to obtain by the electromagnetic directional solidification of hypereutectic Al-Si melts.
The effective output of these two favored materials depends on the high segregation efficiency of the hypereutectic Al-Si melts.
Wei, Latest Progress in Purifying Metallurgical Grade Silicon into Solar Grade Silicon by Oxidation Refining, Chinese Journal of Vacuum Science and Technology, 1 (2010) 008
Morita, Control of Si Crystal Growth during Solidification of Si-Al Melt, Materials Transactions, 51 (2010) 1227-1230
Zhou, Refinement of primary Si in hypereutectic Al–Si alloy by electromagnetic stirring, Journal of Materials Processing Technology, 189 (2007) 13-18
The effective output of these two favored materials depends on the high segregation efficiency of the hypereutectic Al-Si melts.
Wei, Latest Progress in Purifying Metallurgical Grade Silicon into Solar Grade Silicon by Oxidation Refining, Chinese Journal of Vacuum Science and Technology, 1 (2010) 008
Morita, Control of Si Crystal Growth during Solidification of Si-Al Melt, Materials Transactions, 51 (2010) 1227-1230
Zhou, Refinement of primary Si in hypereutectic Al–Si alloy by electromagnetic stirring, Journal of Materials Processing Technology, 189 (2007) 13-18
Online since: December 2022
Authors: Toshiki Hirogaki, Wei Wu, Eiichhi Aoyama, Hiroyoshi Sota, Marina Yamamoto
Therefore, replacements with biodegradable materials are necessary.
Therefore, replacements with biodegradable materials are necessary.
[4] Heinrich M.F Planck, Micro and Nano Fibers in Biomedical Application, Sen’ I Gakkaishi (Journal of Fiber Science and Technology), Vol. 63, No. 11, (2007), p 376-379, (in Japanese)
[13] Tadahiro Ushijima, Water Stress and Drought Tolerance of Plants, Journal of Japanese Society of Turfgrass Science, Vol. 8, No. 2, (1979), p 97-104, (in Japanese)
[14] Wei Wu, Toshiki Hirogaki, Eiichi Aoyama, Morihiko Ikegaya and Hiroyoshi Sota, Investigation of Oil Adsorption Performance of Polypropylene Nanofiber Nonwoven Fabric, Journal of Engineering Materials and Technology, Vol. 141, No. 2, (2019), p 021004-021008.
Therefore, replacements with biodegradable materials are necessary.
[4] Heinrich M.F Planck, Micro and Nano Fibers in Biomedical Application, Sen’ I Gakkaishi (Journal of Fiber Science and Technology), Vol. 63, No. 11, (2007), p 376-379, (in Japanese)
[13] Tadahiro Ushijima, Water Stress and Drought Tolerance of Plants, Journal of Japanese Society of Turfgrass Science, Vol. 8, No. 2, (1979), p 97-104, (in Japanese)
[14] Wei Wu, Toshiki Hirogaki, Eiichi Aoyama, Morihiko Ikegaya and Hiroyoshi Sota, Investigation of Oil Adsorption Performance of Polypropylene Nanofiber Nonwoven Fabric, Journal of Engineering Materials and Technology, Vol. 141, No. 2, (2019), p 021004-021008.
Online since: October 2020
Authors: Nina V. Smirnova, Nikita Faddeev, Victor Klushin
The BPs are typically made from conductive metallic, carbon and polymeric materials [4].
Various bio-based carbohydrates - fructose, glucose, sucrose, starch, cellulose, etc. can be used as raw materials for the production of HMF [13].
Solid humins we used as raw materials for active carbon preparation [14].
Karб Bipolar plate materials for proton exchange membrane fuel cell application, Recent Patents on Materials Science. 8 (2015) 15-45
Silbey (Eds.), Conjugated polymers: the novel science and technology of highly conducting and nonlinear optically active materials.
Various bio-based carbohydrates - fructose, glucose, sucrose, starch, cellulose, etc. can be used as raw materials for the production of HMF [13].
Solid humins we used as raw materials for active carbon preparation [14].
Karб Bipolar plate materials for proton exchange membrane fuel cell application, Recent Patents on Materials Science. 8 (2015) 15-45
Silbey (Eds.), Conjugated polymers: the novel science and technology of highly conducting and nonlinear optically active materials.
Online since: August 2013
Authors: Ramesh Singh, W.D. Teng, C.Y. Tan, Sutharsini Ubenthiran
Photoluminescence (PL) of a material gives information on the behavior of electrons and holes in the material because the PL occurs when the photo induced electron and holes recombines.
Jin, Martensitic transformation in zirconia containing ceramics and its applications, Current Opinion in Solid State and Materials Science, 9(6) (2005) 313-318
Lawson, Environmental degradation of zirconia ceramics, Journal of the European Ceramic Society, 15 (1995) 485-502
Llopis, Photoluminescence decay and time-resolved spectroscopy of cubic yttria-stabilized zirconia, Applied Physics A: Materials Science & Processing, 59 (1994) 569-574
Llopis, Photoluminescence-spectra study of yttria-stabilized zirconia, Applied Physics A: Materials Science & Processing, 57 (1993) 225-228
Jin, Martensitic transformation in zirconia containing ceramics and its applications, Current Opinion in Solid State and Materials Science, 9(6) (2005) 313-318
Lawson, Environmental degradation of zirconia ceramics, Journal of the European Ceramic Society, 15 (1995) 485-502
Llopis, Photoluminescence decay and time-resolved spectroscopy of cubic yttria-stabilized zirconia, Applied Physics A: Materials Science & Processing, 59 (1994) 569-574
Llopis, Photoluminescence-spectra study of yttria-stabilized zirconia, Applied Physics A: Materials Science & Processing, 57 (1993) 225-228
Online since: November 2013
Authors: Raj Das, Nathaniel James Burbery
Macromolecular Materials and Engineering. 298(1) (2013). 9-32
Journal of Materials Chemistry. 15(7) (2005). 735-738
Journal of Materials Processing Technology. 167(2–3) (2005). 283-293
Journal of Applied Polymer Science. 102(2) (2006). 1023-1029
Advanced Materials. 15(22) (2003). 1929-1932
Journal of Materials Chemistry. 15(7) (2005). 735-738
Journal of Materials Processing Technology. 167(2–3) (2005). 283-293
Journal of Applied Polymer Science. 102(2) (2006). 1023-1029
Advanced Materials. 15(22) (2003). 1929-1932
Online since: July 2015
Authors: Majid Al-Maharbi, Ramanathan Arunachalam, Yahya Al Kiyumi, Elyas Aal-Thani, Mohammed Al Mafraji
Hashmi: Journal of Materials Processing Technology Vol. 92-93 (1999), p 1-7
Sahin: Materials and Design Vol. 24 (2003), p. 671–679
Beygi: Materials Science and Engineering A, Vol. 528 (2011), p. 8765– 8771
Looney: Journal of Materials Processing Technology Vol. 166 (2004), p. 430–439
Venkatagalapathy: Journal of Surface Engineered Materials and Advanced Technology Vol. 2 (2012), p.11-15
Sahin: Materials and Design Vol. 24 (2003), p. 671–679
Beygi: Materials Science and Engineering A, Vol. 528 (2011), p. 8765– 8771
Looney: Journal of Materials Processing Technology Vol. 166 (2004), p. 430–439
Venkatagalapathy: Journal of Surface Engineered Materials and Advanced Technology Vol. 2 (2012), p.11-15
Online since: September 2005
Authors: Keith J. Bowman, Alexander H. King, William F. Shelley, Jacob L. Jones, Ben J. Iverson, Hsin Yu Li, Elliott B. Slamovich, Thomas S. Key
Department of Energy, Division of
Materials Sciences and Division of Chemical Sciences, under Contract No.
Koumoto: Materials Science and Eng.
[21] Thomas Stallings Key, "Phases and Ferroelectric Texture in PMN-PZT," Master of Science in Materials Science Engineering, Purdue University, August 2004
Noheda: Current Opinion in Solid State and Materials Science, Vol. 6 (2002) p. 27
Pandey: Journal of Applied Physics, Vol. 92 p. 3266
Koumoto: Materials Science and Eng.
[21] Thomas Stallings Key, "Phases and Ferroelectric Texture in PMN-PZT," Master of Science in Materials Science Engineering, Purdue University, August 2004
Noheda: Current Opinion in Solid State and Materials Science, Vol. 6 (2002) p. 27
Pandey: Journal of Applied Physics, Vol. 92 p. 3266