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Online since: June 2014
Authors: Robert A. Shanks, Farzad Mohaddes, Saniyat Islam, Li Jing Wang, Rajiv Padhye
Low temperature latent heat thermal energy storage: Heat storage materials.
Solar Heat Storage: Latent Heat Materials, Vol.
Solar heat storage: latent heat materials: CRC Press; 1986
Phase change materials for smart textiles – An overview.
Results of thermal analysis for investigation of salt hydrates as latent heat-storage materials.
Solar Heat Storage: Latent Heat Materials, Vol.
Solar heat storage: latent heat materials: CRC Press; 1986
Phase change materials for smart textiles – An overview.
Results of thermal analysis for investigation of salt hydrates as latent heat-storage materials.
Online since: October 2023
Authors: Yuliana Hapon, Maryna Chyrkina, Maksym Kustov, Yuliia Mykhailovska
,Physical modelling of changes in the energy impact on a worker taking into account high-temperature radiation, Journal of Achievements in Materials and Manufacturing Engineering, 1/91 (2018) 27–33
Vambol, Substantiation of the choice of the cutter material and method of its hardening, working under the action of friction and cyclic loading, Archives of Materials Science and Engineering, 2/94 (2018) 49–54
Kalugin, O.Savchenko, Studying the Effect of Fuel Elements Structural Materials Corrosion on their Operating Life, Materials Science Forum Submitted, 1038 (2021) 108-115
Kaczorowski, Shadow corrosion: Experiments and modeling, Journal of Nuclear Materials. 523 (2019) 310–319
Romanova, Multistage Corrosion of Fuel Element Materials in Nuclear Reactors.Solid State Phenomena, 334 (2022) 63–69
Vambol, Substantiation of the choice of the cutter material and method of its hardening, working under the action of friction and cyclic loading, Archives of Materials Science and Engineering, 2/94 (2018) 49–54
Kalugin, O.Savchenko, Studying the Effect of Fuel Elements Structural Materials Corrosion on their Operating Life, Materials Science Forum Submitted, 1038 (2021) 108-115
Kaczorowski, Shadow corrosion: Experiments and modeling, Journal of Nuclear Materials. 523 (2019) 310–319
Romanova, Multistage Corrosion of Fuel Element Materials in Nuclear Reactors.Solid State Phenomena, 334 (2022) 63–69
Characterization of α/β-TCP Based Injectable Calcium Phosphate Cement as a Potential Bone Substitute
Online since: November 2012
Authors: Joop G.C. Wolke, John A. Jansen, Sander C.G. Leeuwenburgh, Kemal Sariibrahimoglu
Journal of Materials Science: Materials in Medicine, 6 (1995) 653-657
Journal of Biomedical Materials Research A, 88 (2008) 43-52
Materials Letters, 48 (2001) 162-167
Journal of Biomedical Materials Research Part A, 100A (2012) 712-719
Kokubo, Bioceramics and their clinical applications, Boca Raton, FL (33487): Woodhead Publishing in Materials and CRC Press LLC. 2008
Journal of Biomedical Materials Research A, 88 (2008) 43-52
Materials Letters, 48 (2001) 162-167
Journal of Biomedical Materials Research Part A, 100A (2012) 712-719
Kokubo, Bioceramics and their clinical applications, Boca Raton, FL (33487): Woodhead Publishing in Materials and CRC Press LLC. 2008
Online since: September 2025
Authors: Oleg Kononchuk, Nikolay Cherkashin, Maëlle Le Cunff, François Rieutord, Didier Landru
Alternative conductive materials like silicon, titanium, and tungsten are being considered as viable options for bonding.
In conclusion, wafer-to-wafer bonding was successfully achieved with all the three interface materials.
Energetics, Journal of Applied Physics, 60 (1986) 247-254
El-Raghy, Structure of Ti3SiC2, Materials Science Forum, 321, (2000) 889-892
Yashima, Crystal structure of (NaCl)-type transition metal monocarbides MC (M=V, Ti, Nb, Ta, Hf, Zr), a neutron powder diffraction study, Materials Science and Engineering B, 148(1), (2008) 69-72.
In conclusion, wafer-to-wafer bonding was successfully achieved with all the three interface materials.
Energetics, Journal of Applied Physics, 60 (1986) 247-254
El-Raghy, Structure of Ti3SiC2, Materials Science Forum, 321, (2000) 889-892
Yashima, Crystal structure of (NaCl)-type transition metal monocarbides MC (M=V, Ti, Nb, Ta, Hf, Zr), a neutron powder diffraction study, Materials Science and Engineering B, 148(1), (2008) 69-72.
Online since: June 2013
Authors: S.T. Tu, L.P. Cai, H.C. Zhang, X.Y. Hu, J.H. Jia
There are thermal insulation materials between the device and the specimen.
International Journal of Pressure Vessel and Piping. 1982, 10(1): 11-30
Life assessment for metallic materials with the use of the strain criterion for low-cycle fatigue.
International Journal of Fatigue, 2009, 31(10): 1579-1587
Journal of pressure vessel technology, 2011, 133:041601
International Journal of Pressure Vessel and Piping. 1982, 10(1): 11-30
Life assessment for metallic materials with the use of the strain criterion for low-cycle fatigue.
International Journal of Fatigue, 2009, 31(10): 1579-1587
Journal of pressure vessel technology, 2011, 133:041601
Online since: July 2011
Authors: Wei Guo Yang, Xing Po Li
Shape Finding Analysis of Membrane Structures based on real material property
Weiguo Yang a, Xingpo Li b
School of Civil Engineering & Architecture,Beijing Jiaotong University,Beijing 100044,China
aE-mail: wg_yang@263.net, b09121586@bjtu.edu.cn
Keywords: membrane structure; shape finding; nonlinear; real material properties
Abstract.
In order to obtain a real shape of membrane structure, a new shape finding method was developed based on real material property.
The real cable and membrane material properties in table 3 were input and the prestress loads were then applied.
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (50808011).
Beijing: Publishing House of Construction Material Industry, 2002,385-391(in Chinese) [7] T.S.
In order to obtain a real shape of membrane structure, a new shape finding method was developed based on real material property.
The real cable and membrane material properties in table 3 were input and the prestress loads were then applied.
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (50808011).
Beijing: Publishing House of Construction Material Industry, 2002,385-391(in Chinese) [7] T.S.
Online since: September 2014
Authors: Qian Bai, Bao Yu Wang, Jian Guo Lin, Yuan Ming Huo
Acknowledgemen
This project is supported by National Natural Science Foundation of China (Grant No. 51375042), Science and technology major projects (Grant No. 2009ZX04014-074), Specialized research fund by the doctoral program of Institutions of higher learning in the ministry of education (Grant No. 20120006110017) and Modern transportation metal materials and processing technology Beijing lab.
Chaboche, Mechanics of solid materials, Cambridge university press, 1994
Shercliff, Microstructural modelling in metals processing, Progress in materials science, 47 (2002) 163-282
Serajzadeh, Microstructural evolution on streamlines during hot strip rolling using internal state variables, Journal of Materials Processing Technology, 209 (2009) 1717-1728
Lin, A study on formulation of objective functions for determining material models, International Journal of Mechanical Sciences, 50(2008) 193-204.
Chaboche, Mechanics of solid materials, Cambridge university press, 1994
Shercliff, Microstructural modelling in metals processing, Progress in materials science, 47 (2002) 163-282
Serajzadeh, Microstructural evolution on streamlines during hot strip rolling using internal state variables, Journal of Materials Processing Technology, 209 (2009) 1717-1728
Lin, A study on formulation of objective functions for determining material models, International Journal of Mechanical Sciences, 50(2008) 193-204.
Online since: August 2012
Authors: Cibele Melo Halmenschlager, Carlos Pérez Bergmann, Roberto Neagu, Célia de Fraga Malfatti, Matias de Angelis Korb
Introduction
A few materials, among high-performance materials, present the potential applications based on zirconium oxide materials (ZrO2).
Chan: Journal of Materials Science Vol. 39 (2004), p.4405
Schonman: Journal of Materials Synthesis and Processing Vol. 4 (3) (1996), p. 189
Rong: Current Opinion in Solid State & Materials Science Vol. 9 (2005), p. 287
Ghosh: Journal of Fuel Cell Science and Technology Vol.7, p. 021007-2 [18] X.
Chan: Journal of Materials Science Vol. 39 (2004), p.4405
Schonman: Journal of Materials Synthesis and Processing Vol. 4 (3) (1996), p. 189
Rong: Current Opinion in Solid State & Materials Science Vol. 9 (2005), p. 287
Ghosh: Journal of Fuel Cell Science and Technology Vol.7, p. 021007-2 [18] X.
Online since: February 2014
Authors: Wei Jian Nong, Ke Xian Li, Kelin Huang, Xiao Peng Chen, Jie Zhen Liang, Lin Lin Wang, Zhang Fa Tong, Rui Wu, Qing Ruo Xie, Yan Hua Jia
Isomerization rosin and ethanolamine were used as raw materials, 95% ethanol as recrystallization solvent, the effects of reaction temperature, reaction time, agitating velocity, ultrasound intensity and recrystallization times on the purity and yield of abietic acid were investigated.
Fig. 1 The chemical structure of abietic acid Materials and methods Materials.
Acknowledgements The authors gratefully acknowledge financial support for this research from the National Natural Science Foundation of China (20976031, 3106012), the Natural Science Foundation of Guangxi Autonomous Region (2011 GXNSFD018011, 2013GXNSFAA019050, 2013GXNSFBA019037), scientific and technological project of Guangxi (1099060-2) and Key Laboratory of Petrochemical Resource Processing and Process Intensification Technology (2012Z02).
Larsen, et al., Potential ambergris odorants from abietic acid, Australian Journal of Chemistry. 43(1990)21-46
Agudelo, et al., Synthesis and biological evaluation of abietic acid derivatives, European Journal of Medicinal Chemistry. 44(2009)2468-2472
Fig. 1 The chemical structure of abietic acid Materials and methods Materials.
Acknowledgements The authors gratefully acknowledge financial support for this research from the National Natural Science Foundation of China (20976031, 3106012), the Natural Science Foundation of Guangxi Autonomous Region (2011 GXNSFD018011, 2013GXNSFAA019050, 2013GXNSFBA019037), scientific and technological project of Guangxi (1099060-2) and Key Laboratory of Petrochemical Resource Processing and Process Intensification Technology (2012Z02).
Larsen, et al., Potential ambergris odorants from abietic acid, Australian Journal of Chemistry. 43(1990)21-46
Agudelo, et al., Synthesis and biological evaluation of abietic acid derivatives, European Journal of Medicinal Chemistry. 44(2009)2468-2472