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Online since: January 2015
Authors: Anita Avišāne, Guntis Springis, Janis Rudzitis, Maris Kumermanis, Jevgenijs Semjonovs, Armands Leitans
The offered model is based on the application of the theories of several branches of sciences.
In turn, tσ is calculated using the following coherence [2]: , (7) where σ–1 – limit to material durability.
Wearing can take place according to the following scheme: under a cyclic loading of peak tops, considering the imperfection of the material, a slit is formed under the surface layers of the material.
Goodmen, The stress field created by a circular sliding contact, Journal of Applied Mechanics, 1966, 125–131
Avisane, Researches on three dimension roughness height of rough surface, Latvian Journal of Physics and Technical Sciences (4) 2013
In turn, tσ is calculated using the following coherence [2]: , (7) where σ–1 – limit to material durability.
Wearing can take place according to the following scheme: under a cyclic loading of peak tops, considering the imperfection of the material, a slit is formed under the surface layers of the material.
Goodmen, The stress field created by a circular sliding contact, Journal of Applied Mechanics, 1966, 125–131
Avisane, Researches on three dimension roughness height of rough surface, Latvian Journal of Physics and Technical Sciences (4) 2013
Online since: June 2013
Authors: Shu Kui Li, Ying Chun Wang, Abdul Rehman Niazi, Zhi Yu Hu, Usman Zahid
Acknowledgements
This work was supported in part by the National Key Laboratory of Science and Technology on Materials under Shock and Impact under funding No. 9140A13060110BQ03
References
[1] Łukas Ciupiński, D.
Heat sink Materials processing by Pulse plasma Sintering.
Advanced Materials Research, 59, 120-124 [2] C.
Revolutionary New Thermal Management Materials.
[J] Diamond and Related Materials.
Heat sink Materials processing by Pulse plasma Sintering.
Advanced Materials Research, 59, 120-124 [2] C.
Revolutionary New Thermal Management Materials.
[J] Diamond and Related Materials.
Online since: March 2012
Authors: Timothy R. Palmer, Cullen R. Buie
Several recent studies and reports1-3 listed materials as a top priority research area to enable commercial fusion power.
Corni et al.5 provide a comprehensive review of the uses of electrophoretic deposition through 2008, covering applications in thick coatings and thin films, porous materials, functionally graded materials, composites, and nanostructured surfaces.
DOE, Office of Fusion Energy Sciences: Bethesda, MD, 2009
Journal of Nuclear Materials, 2009, 390-391, 1026-1028
Journal of Materials Science, 2002, 37, 4145-4153
Corni et al.5 provide a comprehensive review of the uses of electrophoretic deposition through 2008, covering applications in thick coatings and thin films, porous materials, functionally graded materials, composites, and nanostructured surfaces.
DOE, Office of Fusion Energy Sciences: Bethesda, MD, 2009
Journal of Nuclear Materials, 2009, 390-391, 1026-1028
Journal of Materials Science, 2002, 37, 4145-4153
Online since: December 2012
Authors: Paul L. Blackwell, Hector Basoalto
The conventional consensus has it that the magnitude of the strain rate sensitivity observed in superplastic materials is linked with grain boundary sliding.
For materials to be superplastic i.e. to exhibit high elongations (>200%) in tension, m values of 0.5 or above are generally required.
Ti-2007 Science and Technology.
Brooks and Di Martino, I., Multi-Scale Microstructure Modelling for Nickel-Based Superalloys, Journal Materials Science and Technology, Vol. 25, 2, pp221-227 (2009)
[14] Dyson, B.F., Microstructure based creep constitutive model for precipitate strengthened alloys: theory and application, Materials Science and Technology, Vol 25, 2, pp213-220 (2009)
For materials to be superplastic i.e. to exhibit high elongations (>200%) in tension, m values of 0.5 or above are generally required.
Ti-2007 Science and Technology.
Brooks and Di Martino, I., Multi-Scale Microstructure Modelling for Nickel-Based Superalloys, Journal Materials Science and Technology, Vol. 25, 2, pp221-227 (2009)
[14] Dyson, B.F., Microstructure based creep constitutive model for precipitate strengthened alloys: theory and application, Materials Science and Technology, Vol 25, 2, pp213-220 (2009)
Online since: July 2011
Authors: Jun Wang, Bao Guo Ma, Yuan Yuan Wu, Wen Yang
Preparation of energy storage ceramsite manufactured
from East Lake sludge
Baoguo Ma1, Jun Wang1,a, Yuanyuan Wu2,b, Wen Yang2
1Key Laboratory for Silicate Materials Science Engineering of Ministry of Education, Wuhan University of Technology, Wuhan, Hubei, 430070, China
2China Construction Ready-mixed Concrete Co.
One of the combination methods is incorporating PCM in porous building materials, which are suitable matrix materials for PCM.
Materials and Impregnation Phase Change Materials Considering the material properties and economy benefit, paraffin was chosen as a energy storage material which has good chemical stability, wide melting range (0-90℃), no phase separation and so on to be incorporated into light aggregate.
Journal of Chemical Physics 111, 9058-9067
Journal of Tongji University 32, 1163–1167.
One of the combination methods is incorporating PCM in porous building materials, which are suitable matrix materials for PCM.
Materials and Impregnation Phase Change Materials Considering the material properties and economy benefit, paraffin was chosen as a energy storage material which has good chemical stability, wide melting range (0-90℃), no phase separation and so on to be incorporated into light aggregate.
Journal of Chemical Physics 111, 9058-9067
Journal of Tongji University 32, 1163–1167.
Online since: January 2013
Authors: Beom Soo Kang, Tae Wan Ku, Pan Liu
And the last author would like to acknowledge the partial support by the NRF grant funded by the Korea Government, Ministry of Education, Science and Technology (NRF-2012R1A5A1048294).
Ku: International Journal of Advanced Manufacture Technology, Vol. 49 (2010), pp.925-940
Ku: International Journal of Advanced Manufacture Technology, Vol. 53 (2009), pp.131-143
Kang: Journal of Materials Processing Technology, Vol. 130-131 (2002), pp.128-134
Kang: Journal of Materials Processing Technology, Vol. 153-154 (2004), pp.778-884
Ku: International Journal of Advanced Manufacture Technology, Vol. 49 (2010), pp.925-940
Ku: International Journal of Advanced Manufacture Technology, Vol. 53 (2009), pp.131-143
Kang: Journal of Materials Processing Technology, Vol. 130-131 (2002), pp.128-134
Kang: Journal of Materials Processing Technology, Vol. 153-154 (2004), pp.778-884
Online since: March 2015
Authors: Xian Zheng Gong, Yu Liu, Zhen Guo Peng, Chen Li, Xiao Liu
Life Cycle Inventory of Gangue as Alternative Raw Materials
Zhenguo Peng1, a, Xianzheng Gong1, b*, Yu Liu1, c, Chen Li1, d and Xiao Liu1, e
1School of Materials Science and Engineering, Centre of China National Material Life Cycle Assessment (CNMLCA), Beijing University of Technology, Beijing, 100124, China
azhenguopeng@emails.bjut.edu.cn, bgongxianzheng@bjut.edu.cn, cliuyu@bjut.edu.cn, dlichen1102@emails.bjut.edu.cn, e18610446646@163.com
Keywords: Coal mining, Gangue, Environmental impact, Life cycle.
As building materials, coal gangue shows good performance and environmental economic and social benefits.
Science 337, 702 (2012)
Journal of Cleaner Production, 72 (2014) 204-211
Research and Application of Environment Impact Analysis Model for Land Use in Materials Producion.
As building materials, coal gangue shows good performance and environmental economic and social benefits.
Science 337, 702 (2012)
Journal of Cleaner Production, 72 (2014) 204-211
Research and Application of Environment Impact Analysis Model for Land Use in Materials Producion.
Online since: July 2013
Authors: Anish Roy, Vaibhav A. Phadnis, Farrukh Makhdum, Vadim V. Silberschmidt
Several studies [2, 3, 5-8, 13] demonstrated that the inherent problem in conventional drilling (CD) of composite materials is delamination.
Several researchers studied [3, 5, 7] the mechanism of such damage in composite materials.
An ultrasonic softening effect, which was observed in tensile tests of materials [14], may also contribute to force reductions.
It had been widely reported [11, 16] that under the influence of ultrasonic vibrations, a brittle-to-ductile transition is observed to occur in materials.
Journal of Applied Mechanics, 1980, 47:329-334
Several researchers studied [3, 5, 7] the mechanism of such damage in composite materials.
An ultrasonic softening effect, which was observed in tensile tests of materials [14], may also contribute to force reductions.
It had been widely reported [11, 16] that under the influence of ultrasonic vibrations, a brittle-to-ductile transition is observed to occur in materials.
Journal of Applied Mechanics, 1980, 47:329-334
Online since: October 2014
Authors: Mariana Nikolaevna Kapusta, Vadim Kobzev, Viktoriya V. Nelyubova
Presented article is of interest to specialists in the field of building materials.
In building materials science energy-saving problems are also finding solutions.
Currently available methods for optimizing grinding technologies adapted to nonstop grinding materials.
Nelubova, in: Prospects of Application of Zero-Cement Binders of a Nonhydration Hardening Type, World Applied Sciences Journal 25 (1) (2013)
Zhernovskii, in: Building composites with application of nanostructured binder based on raw materials of different genetic type, #2 of Building materials (2013)
In building materials science energy-saving problems are also finding solutions.
Currently available methods for optimizing grinding technologies adapted to nonstop grinding materials.
Nelubova, in: Prospects of Application of Zero-Cement Binders of a Nonhydration Hardening Type, World Applied Sciences Journal 25 (1) (2013)
Zhernovskii, in: Building composites with application of nanostructured binder based on raw materials of different genetic type, #2 of Building materials (2013)
Online since: May 2023
Authors: Wei Wei, Jia Jun, Lei Chen
Laboratory study of lost circulation materials for use in both oil-based and water-based drilling muds[J].
Materials (Basel, Switzerland), 2019, 12(12):103-108
Petroleum Science, 2008, 5(4): 326-333
Applied Clay Science, 2017, 138: 12-16
Journal of Bio-based Materials and Bioenergy. 2019, 13(6), 778-783.
Materials (Basel, Switzerland), 2019, 12(12):103-108
Petroleum Science, 2008, 5(4): 326-333
Applied Clay Science, 2017, 138: 12-16
Journal of Bio-based Materials and Bioenergy. 2019, 13(6), 778-783.