Sort by:
Publication Type:
Open access:
Publication Date:
Periodicals:
Search results
Online since: July 2014
Authors: Zbyšek Pavlík, Robert Černý, Jan Kočí
Introduction
Moisture diffusivity is a crucial parameter for description of moisture transport in building materials.
Determination of the Liquid Water Diffusivity from Transient Moisture Transfer Experiments, Journal of Thermal Envelope & Building Science, vol. 27(4), 2004, pp. 277-305
Černý, Application of Genetic Algorithm for Determination of Water Vapor Diffusion Parameters of Building Materials, Journal of Building Physics, vol. 35 (3), 20102, pp. 238-250 [11] Z.
Černý, A Boltzmann Transformation Method for Investigation of Water Vapor Transport in Building Materials.
Journal of Building Physics, vol. 35, 2012, pp. 213-223
Determination of the Liquid Water Diffusivity from Transient Moisture Transfer Experiments, Journal of Thermal Envelope & Building Science, vol. 27(4), 2004, pp. 277-305
Černý, Application of Genetic Algorithm for Determination of Water Vapor Diffusion Parameters of Building Materials, Journal of Building Physics, vol. 35 (3), 20102, pp. 238-250 [11] Z.
Černý, A Boltzmann Transformation Method for Investigation of Water Vapor Transport in Building Materials.
Journal of Building Physics, vol. 35, 2012, pp. 213-223
Online since: October 2008
Authors: Jin Sheng Liang, Na Wang, Yan Ding, Fei Wang, Qing Guo Tang
Preparation and Properties of Thermal Insulation Putty for
Exterior Wall Containing Sepiolite Composite Materials
WANG Fei a
, LIANG Jinsheng﹡b , TANG Qingguoc, DING Yan, Wang Na
Institute of Power Source & Ecomaterials Science, Hebei University of Technology
300130 Tianjin, China
a
wangfei36777@163.com,﹡b liangjinsheng@hebut.edu.cn, cqingguo_tang@163.com
Keywords: composite materials; sepiolite; dodecanol; physical adsorption; putty for exterior wall
Abstract: The composite materials for self-operating temperature were prepared by sepiolite and
dodecanol as materials.
Apply Clay Science, 2002, 20(6): 273- 282
Apply Clay Science, 1999, 15(3-4): 367-380
Microporous Materials, 1995, 5(3): 135-142
International Journal of Environmental Analytical Chemistry, 2004, 84(1-3): 133-141
Apply Clay Science, 2002, 20(6): 273- 282
Apply Clay Science, 1999, 15(3-4): 367-380
Microporous Materials, 1995, 5(3): 135-142
International Journal of Environmental Analytical Chemistry, 2004, 84(1-3): 133-141
Online since: November 2025
Authors: Yuliana Hapon, Vitalii Nuianzin, Olena Danyk, Oleksandr Kireev
Journal of Fire Sciences. 38 (2019) 53–74
Functional Materials. 25/4 (2018) 774–779
Materials Science Forum. 1006 (2020) 62–69
Eastern-European Journal of Enterprise Technologies. 6 (10) (2020) 28–35
Key Engineering Materials. 954 (2023) 177–184
Functional Materials. 25/4 (2018) 774–779
Materials Science Forum. 1006 (2020) 62–69
Eastern-European Journal of Enterprise Technologies. 6 (10) (2020) 28–35
Key Engineering Materials. 954 (2023) 177–184
Online since: February 2019
Authors: P. Khavanov, Alexandr Fomin, M.I. Kozhukhova
This material is effectively used for different types of binders and construction materials [2–6], including autoclave materials [7–11].
World Applied Sciences Journal. 29 (12) (2014) 1600–1604
World Appliance Sciences Journal. 24 (11) (2013) 1519–1524
World Applied Sciences Journal. 25 (12) (2013) 1758–1762
Construction and Building Materials. 158 (2018) 132–140
World Applied Sciences Journal. 29 (12) (2014) 1600–1604
World Appliance Sciences Journal. 24 (11) (2013) 1519–1524
World Applied Sciences Journal. 25 (12) (2013) 1758–1762
Construction and Building Materials. 158 (2018) 132–140
Online since: January 2013
Authors: Chen Jiang, Yu Lun Chi, Hao Lin Li, Yun Fei Mai
This estimation of the time constant can be used to analyze the properties of mechanical materials of the workpiece with the same grinding conditions.
Therefore, the properties of mechanical materials of workpieces, such as the siffness and other properties related to the grinding force coefficient, can be estimated through the time constant, when the workpieces with different materials are machined through the same grinder machine and the same grinding conditions, such as the grinder machine stiffness, the wheel stiffness, the wheel speed and workpiece speed.
For the different materials, the rigidity of workpiece becomes better with the decreasing of the time constant.
Dong: Research on a Large Depth-todiameter Ratio Ultra-Precision Aspheric Griding System, Journal of Materials Processing Technology, Vol.129, (2002), p. 91-95
Landers: Machining process monitoring and control: The State-of-the-Art, Journal of Manufacturing Science and Engineering, Vol.126, (2004), p. 297-310
Therefore, the properties of mechanical materials of workpieces, such as the siffness and other properties related to the grinding force coefficient, can be estimated through the time constant, when the workpieces with different materials are machined through the same grinder machine and the same grinding conditions, such as the grinder machine stiffness, the wheel stiffness, the wheel speed and workpiece speed.
For the different materials, the rigidity of workpiece becomes better with the decreasing of the time constant.
Dong: Research on a Large Depth-todiameter Ratio Ultra-Precision Aspheric Griding System, Journal of Materials Processing Technology, Vol.129, (2002), p. 91-95
Landers: Machining process monitoring and control: The State-of-the-Art, Journal of Manufacturing Science and Engineering, Vol.126, (2004), p. 297-310
Online since: August 2013
Authors: Xiao Yan Lin, Xue Gang Luo, Chao Le Yun
Mechanical properties of a novel kind of biomass cellular material prepared from forage grass
Chaole Yun1,2,a, Xuegang Luo1,2,b,*, Xiaoyan Lin2,c
1 School of Life Science and Engineering, Southwest University of Science and Technology, Mianyang 621010, China
2 Engineering Research Center of Biomass Materials, Ministry of Education, China
a yunchaole1987@163.com, b lxg@swust.edu.cn, c lxy20100205@163.com
Keywords: Forage grass; Seed germination experiment; Mechanical properties; Biomass cellular material;
Abstract: In this paper, a kind of new biomass cellular material was prepared by the growth of forage grass such as annual ryegrass, tall fescue, and trefoil in the molding container.
Materials with a cellular structure are widespread in nature and include wood, cork, plant parenchyma and trabecular bone.
Experimental materials and methods Materials.
Gibson: Journal of Biomechanics.
Vol. 38 (2005), p. 377-399 [4] Zuodong Yin, Zelin Pan, Cai Wang, et: Polymer materials science and Engineering.
Materials with a cellular structure are widespread in nature and include wood, cork, plant parenchyma and trabecular bone.
Experimental materials and methods Materials.
Gibson: Journal of Biomechanics.
Vol. 38 (2005), p. 377-399 [4] Zuodong Yin, Zelin Pan, Cai Wang, et: Polymer materials science and Engineering.
Online since: February 2016
Authors: Jun Kono, Yutaka Goto, York Ostermeyer, Rolf Frischknecht, Holger Wallbaum
Harnisch: Environmental Science and Pollution Research 13 (2006) 350-358
Carlo: The International Journal of Life Cycle Assessment 15 (2010) 14
Achard: Journal of Sol-Gel Science and Technology 63 (2012) 25
Postlethwaite: The International Journal of Life Cycle Assessment 9 (2004) 14
Leskinen: Journal of Cleaner Production 29-30 (2012) 238-245
Carlo: The International Journal of Life Cycle Assessment 15 (2010) 14
Achard: Journal of Sol-Gel Science and Technology 63 (2012) 25
Postlethwaite: The International Journal of Life Cycle Assessment 9 (2004) 14
Leskinen: Journal of Cleaner Production 29-30 (2012) 238-245
Online since: November 2010
Authors: Luboš Náhlík, Pavel Hutař, Zdeněk Knésl, Lucie Šestáková
Knésl: Computational Materials Science 45 (2009), p. 653-657
[4] P.
Knésl: Computational Materials Science 39 (2007), p. 214-218 [6] K.Y.
Hutař: Computational Materials Science 46 (2009), p. 614-620 [8] L.
Hutař: Materials Science Forum, Vols. 567-568 (2008), p. 225228 [9] K.H.
Tuan: Materials Science and Engineering A 393 (2005), p. 133-139 [11] B.N.
Knésl: Computational Materials Science 39 (2007), p. 214-218 [6] K.Y.
Hutař: Computational Materials Science 46 (2009), p. 614-620 [8] L.
Hutař: Materials Science Forum, Vols. 567-568 (2008), p. 225228 [9] K.H.
Tuan: Materials Science and Engineering A 393 (2005), p. 133-139 [11] B.N.
Online since: February 2014
Authors: Yang Tao Xu, Tian Dong Xia, Wan Ping Wang, Gui Lan Zhang, Bao Lin Jia
In recent years, the use of carbon materials improve the thermal conductivity and prepare high-performance composite materials for thermal storage become a research hotspot.
Solar Energy Materials,1990,21(1): 51-60
International Journal of Thermal Sciences, 2008,47(12):1676-1687
High temperature thermal stability of molten salts materials[J].
Effect of graphitization degree on the mechanical properties of C/C composites[J].Journal of Central South University of Technology (Natural Science),.2001,32(3):289-293
Solar Energy Materials,1990,21(1): 51-60
International Journal of Thermal Sciences, 2008,47(12):1676-1687
High temperature thermal stability of molten salts materials[J].
Effect of graphitization degree on the mechanical properties of C/C composites[J].Journal of Central South University of Technology (Natural Science),.2001,32(3):289-293
Online since: September 2013
Authors: Shih Hung Tai, Ching I Lin, Chun Yao Hsu
References
[1] Hascalık, U.Caydas, A comparative study of surface integrity of Ti–6Al–4V alloy machined by EDM and AECG, Journal of Materials Processing Technology 190 (2007) 173-180
Yamazaki, Y.Akutsu, Afundamental study on Ti–6Al–4V’s thermal and electricalproperties and their relation to EDM productivity, Journal of materials processing technology 202 (2008) 583-589
Cakır, Examination of machining parameters on surfaceroughness in EDM of tool steel, Journal of Materials Processing Technology 191 (2007) 141-144
Tarng, Optimization of turning operations with multiple performance characteristics, Journal of Materials Processing Technology 95 (1999) 90-96
Chang, Optimization of the WEDM process of particle-reinforced material with multiple performance characteristics using grey relational analysis, Journal of Materials Processing Technology 180 (2006) 96-101
Yamazaki, Y.Akutsu, Afundamental study on Ti–6Al–4V’s thermal and electricalproperties and their relation to EDM productivity, Journal of materials processing technology 202 (2008) 583-589
Cakır, Examination of machining parameters on surfaceroughness in EDM of tool steel, Journal of Materials Processing Technology 191 (2007) 141-144
Tarng, Optimization of turning operations with multiple performance characteristics, Journal of Materials Processing Technology 95 (1999) 90-96
Chang, Optimization of the WEDM process of particle-reinforced material with multiple performance characteristics using grey relational analysis, Journal of Materials Processing Technology 180 (2006) 96-101