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Online since: February 2013
Authors: Feng Luo, Yu Jie Jin, Li Guang Xiao
By incorporation of fly ash into MOC cement, an energy saving and environmentally friendly repair material can be formed for industrial applications.
Material Material.The magnesia used in preparation of magnesium oxychloride cement was provided by two methods.
Table1 Materials of mortar strength test Dosage of fly ash (%) Magnesia(g) Fly ash(g) Sand(g) MgCl2 solution(ml) 0 540 0 1350 300 5 513 27 1350 300 10 486 54 1350 300 20 432 108 1350 300 30 378 162 1350 300 Results and discussion Influence of fly ash on the strength of magnesium oxychloride cement.The compressive strength and flexural strength of magnesium oxychloride cement at different dosage of fly ash and at different cure time was shown in Table 2.
JOURNAL OF WUHAN UNIVERSITY OF TECHNOLOGY- MATERIALS SCIENCE EDITION. vol 25(4):721-724 , In Chinese
Magnesium oxychloride cement concrete .BULLETIN OF MATERIALS SCIENCE.vol 30(3): 239-246
Material Material.The magnesia used in preparation of magnesium oxychloride cement was provided by two methods.
Table1 Materials of mortar strength test Dosage of fly ash (%) Magnesia(g) Fly ash(g) Sand(g) MgCl2 solution(ml) 0 540 0 1350 300 5 513 27 1350 300 10 486 54 1350 300 20 432 108 1350 300 30 378 162 1350 300 Results and discussion Influence of fly ash on the strength of magnesium oxychloride cement.The compressive strength and flexural strength of magnesium oxychloride cement at different dosage of fly ash and at different cure time was shown in Table 2.
JOURNAL OF WUHAN UNIVERSITY OF TECHNOLOGY- MATERIALS SCIENCE EDITION. vol 25(4):721-724 , In Chinese
Magnesium oxychloride cement concrete .BULLETIN OF MATERIALS SCIENCE.vol 30(3): 239-246
Online since: January 2012
Authors: En Gang Wang, Ji Cheng He, An Yuan Deng, Guo Feng Zhan, En Jiang
Nuclear Reactor Materials Handbook.
International Journal of Cast Metals Research, 2009, 22(1-4): 143-146
Materials Science and Engineering, 2002, A327: 133
Rare Metal Materials and Engineering, 2006, 35(4): 669
Rare Metal Materials and Engineering, 2006, 35(7): 1126
International Journal of Cast Metals Research, 2009, 22(1-4): 143-146
Materials Science and Engineering, 2002, A327: 133
Rare Metal Materials and Engineering, 2006, 35(4): 669
Rare Metal Materials and Engineering, 2006, 35(7): 1126
Online since: February 2014
Authors: Tian Wen Pang, Wei Qiang Sun, Long Luo, Jie Feng Pang, Sheng Yong Xu, Gang Li
It also offers valuable insight for further experiments with artificial materials at the nanoscale, and experiments in live animals.
Interestingly, the inner space and outer space of the tube can be flexibly filled with air, pure water, an ionic solution, or an organic solution, and the resulting transmission efficiency is a function of the combination of these different materials, as well as the thickness of the dielectric tube.
The result is a solid evidence for verifying the theory on softmaterial waveguide at the macro-scales, and offers insight for further experiments with artificial materials at the nanoscale, and experiments in live animals.
Science and Engineering beyond Moore’s Law [J].
Journal of Applied Physics, 2013 113 113708.
Interestingly, the inner space and outer space of the tube can be flexibly filled with air, pure water, an ionic solution, or an organic solution, and the resulting transmission efficiency is a function of the combination of these different materials, as well as the thickness of the dielectric tube.
The result is a solid evidence for verifying the theory on softmaterial waveguide at the macro-scales, and offers insight for further experiments with artificial materials at the nanoscale, and experiments in live animals.
Science and Engineering beyond Moore’s Law [J].
Journal of Applied Physics, 2013 113 113708.
Online since: March 2012
Authors: Shen Chun Wu, Chuo Jeng Huang, Jhih Huang Gao
Effect of Filling Powder Volume Rate in Wick Manufactured for Loop Heat Pipes
Shen-Chun Wu 1, a, Chuo-Jeng Huang 2,b and Jhih-Huang Gao 3,c
1 Department of Aviation Mechanical Engineering, China University of Science and Technology, Taipei, Taiwan.
2 School of Defense Science, Chung Cheng Institute of Technology, National Defense University, Taoyuan, Taiwan.
3 Department of Mechanical, Energy and Aerospace Engineering, Chung Cheng Institute of Technology, National Defense University, Taoyuan, Taiwan.
Theoretical calculations reveal that the effect of the operating temperature on the wick material is unconcerned.
Ku, Thermal Operational Characteristics of a Small-Loop Heat Pipe, Journal of Thermophysics and Heat Transfer.
Bonjour, Parametric Analysis of Loop Heat Pipe Operation: A Literature Review, International Journal of Thermal Sciences, Vol. 46(7), (2007), p. 621-636
Chen: submitted to Journal of Applied Thermal Engineering (2011)
Theoretical calculations reveal that the effect of the operating temperature on the wick material is unconcerned.
Ku, Thermal Operational Characteristics of a Small-Loop Heat Pipe, Journal of Thermophysics and Heat Transfer.
Bonjour, Parametric Analysis of Loop Heat Pipe Operation: A Literature Review, International Journal of Thermal Sciences, Vol. 46(7), (2007), p. 621-636
Chen: submitted to Journal of Applied Thermal Engineering (2011)
Online since: July 2012
Authors: Jian Feng Xu, Ling Long, Hui Ren Hu, Yan Bo
Experimental
Materials.
The main materials were styrene (St), butyl acrylate(BA), methyl methacrylate(MMA), acetic acid, ammonium persulfate(APS), γ-amino propyl triethoxy silane(KH550), γ-(2,3-epoxypropoxy)-Propytrimethoxysilane(KH560) and γ-Methacryloxypropyl trimethoxy silane(KH570):AP.
Japan Tappi Journal, 2001, 55(2):1-7 [6] Kurihara, Takanori.
Japan Tappi Journal, 2003, 57(8): 49-56 [7] Jianfeng Xu, Huiren Hu.
Journal of Applied Polymer Science, 2012, (1): 611-616 [8] Warson H, Finch C A.
The main materials were styrene (St), butyl acrylate(BA), methyl methacrylate(MMA), acetic acid, ammonium persulfate(APS), γ-amino propyl triethoxy silane(KH550), γ-(2,3-epoxypropoxy)-Propytrimethoxysilane(KH560) and γ-Methacryloxypropyl trimethoxy silane(KH570):AP.
Japan Tappi Journal, 2001, 55(2):1-7 [6] Kurihara, Takanori.
Japan Tappi Journal, 2003, 57(8): 49-56 [7] Jianfeng Xu, Huiren Hu.
Journal of Applied Polymer Science, 2012, (1): 611-616 [8] Warson H, Finch C A.
Online since: January 2022
Authors: Nor Azillah Fatimah Othman, Sarala Selambakkannu, Tuan Amran Tuan Abdullah
Experimental
Materials.
At low pH the binding side on functionalized grafted materials are likely to be protonated resulting in poor metal binding levels.
Materials Today: Proceedings, 29 (2020) 207-211
Journal of Hazardous Materials, 158 (2008) 300-307
Journal of applied polymer science, 99 (2006) 2888-2897
At low pH the binding side on functionalized grafted materials are likely to be protonated resulting in poor metal binding levels.
Materials Today: Proceedings, 29 (2020) 207-211
Journal of Hazardous Materials, 158 (2008) 300-307
Journal of applied polymer science, 99 (2006) 2888-2897
Online since: October 2011
Authors: Lian Jing Niu, Zhi Long Liu, Mao Yu Zheng, Fang Wang
Fig.5 Extracting heat of different type of soil Fig.6 Extracting heat of different materials of heat exchanger
Fig. 6 is the comparison of daily extracting heat of different material of heat exchanger.
Three materials of U-tube heat exchanger are selected.
It is helpful for the GSHP system running efficiently. 3) Different materials (HDPE, PB and PE) of U-tube have analyzed by numerical simulation method.
Daily extracting heat in the winter is the biggest among the three materials.
Inalli, A finite element model of solar heating system with underground storage, International Journal of Thermal Science, Vol. 47(2008), p.1639-1646 [3] H.
Three materials of U-tube heat exchanger are selected.
It is helpful for the GSHP system running efficiently. 3) Different materials (HDPE, PB and PE) of U-tube have analyzed by numerical simulation method.
Daily extracting heat in the winter is the biggest among the three materials.
Inalli, A finite element model of solar heating system with underground storage, International Journal of Thermal Science, Vol. 47(2008), p.1639-1646 [3] H.
Online since: July 2011
Authors: Chun Fu Gao, Bin Wang, Xin Sheng He, Zhi Yong Luo
To solve these problems, a material removal model whose removal rate model can change with the profile of the workpiece is proposed in this paper.
In that way, the material removal in finishing area is homogeneous and the simply trajectory planning can get better surface quality when continuous finishing.
Conclusions In this paper, a material removal model is proposed.
Acknowledgment This research was financially supported by the National Natural Science Foundation of China (No. 51075371), Scientific Research Foundation Dr. of Zhejiang Normal University, and Youth Fund of Zhejiang Normal University (KJ20100018).
Wang: Journal of Hunan University (Natural Sciences), Vol. 37 (2010) No.1, pp.45-48.
In that way, the material removal in finishing area is homogeneous and the simply trajectory planning can get better surface quality when continuous finishing.
Conclusions In this paper, a material removal model is proposed.
Acknowledgment This research was financially supported by the National Natural Science Foundation of China (No. 51075371), Scientific Research Foundation Dr. of Zhejiang Normal University, and Youth Fund of Zhejiang Normal University (KJ20100018).
Wang: Journal of Hunan University (Natural Sciences), Vol. 37 (2010) No.1, pp.45-48.
Online since: December 2024
Authors: Iuliana Duma, Alin Constantin Murariu, Radu Nicolae Popescu
Among engineering materials, carbon steel takes the lead, constituting around 85% of the global annual steel production.
Through welding, materials undergo localized alterations in their chemical composition, microstructure, and mechanical characteristics [14, 15].
Microscopic appearance of the longitudinal welded joint (100×): a) base material; b) weld Fig. 6.
References [1] * * * The Different Materials Used In: Natural Gas Pipelines, https://www.lng2019.com/the-different-materials-used-in-natural-gas-pipelines/, 2019 [2] Tumber S.: Pipe systems and materials: Design considerations, https://www.csemag.com/articles/pipe-systems-and-materials-design-considerations/, 2019 [3] Sotoodeh K.: A Practical Guide to Piping and Valves for the Oil and Gas Industry, Gulf Professional Publishing, ISBN 978-0-12-823796-0, DOI: https://doi.org/10.1016/C2020-0-00637-7, 2021 [4] * * * Material selection of pressure piping, https://www.epowermetals.com/material-selection-of-pressure-piping.html, 2021 [5] Barbara C., Pietrucha-Urbanik K., Urbanik M.: Analysis of the gas network failure and failure prediction using the Monte Carlo simulation method.
Khoshnaw: Chapter 1 - An introduction to welding of metallic materials, In: Welding of Metallic Materials, Elsevier, pp. 1-35, 2023, https://doi.org/10.1016/B978-0-323-90552-7.00002-X [19] Gasea, F., Dekam E.: Pressure Transient in pipe Networks; Simulation and Analysis, Journal of Engineering Research 14, (2010).
Through welding, materials undergo localized alterations in their chemical composition, microstructure, and mechanical characteristics [14, 15].
Microscopic appearance of the longitudinal welded joint (100×): a) base material; b) weld Fig. 6.
References [1] * * * The Different Materials Used In: Natural Gas Pipelines, https://www.lng2019.com/the-different-materials-used-in-natural-gas-pipelines/, 2019 [2] Tumber S.: Pipe systems and materials: Design considerations, https://www.csemag.com/articles/pipe-systems-and-materials-design-considerations/, 2019 [3] Sotoodeh K.: A Practical Guide to Piping and Valves for the Oil and Gas Industry, Gulf Professional Publishing, ISBN 978-0-12-823796-0, DOI: https://doi.org/10.1016/C2020-0-00637-7, 2021 [4] * * * Material selection of pressure piping, https://www.epowermetals.com/material-selection-of-pressure-piping.html, 2021 [5] Barbara C., Pietrucha-Urbanik K., Urbanik M.: Analysis of the gas network failure and failure prediction using the Monte Carlo simulation method.
Khoshnaw: Chapter 1 - An introduction to welding of metallic materials, In: Welding of Metallic Materials, Elsevier, pp. 1-35, 2023, https://doi.org/10.1016/B978-0-323-90552-7.00002-X [19] Gasea, F., Dekam E.: Pressure Transient in pipe Networks; Simulation and Analysis, Journal of Engineering Research 14, (2010).
Online since: April 2019
Authors: Abdelkader Mebrouki, João Castro-Gomes, Tourkia Guerzou
Materials and Methods
Materials
Materials used in this investigation include cement, natural aggregates, recycled aggregates, sand plasticizer and water.
All of the materials used were produced locally in Algeria.
Journal of Materials in Civil Engineering, volume 21, number 10, pp. 601-611 (2009) [10] S.M.
Journal of Hazardous materials (2008) [20] V.
Advanced Materials Research (2013) [22] A.
All of the materials used were produced locally in Algeria.
Journal of Materials in Civil Engineering, volume 21, number 10, pp. 601-611 (2009) [10] S.M.
Journal of Hazardous materials (2008) [20] V.
Advanced Materials Research (2013) [22] A.