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Online since: March 2011
Authors: Shao Jie Liu, Lin Lin Fu, Qian Li, Hao Li, Feng Qing Zhao
For this method, the calcium oxide and calcium sulfate in the modification desulfurized ash are used to replace the lime, gypsum and other materials.
So the application of this desulfurization ash in building materials has certain restrictions.
We aim to partially oxidize the calcium sulfite in the semi-dry desulfurization ash, and make full use of calcium oxide and calcium sulfate in it to replace the lime, gypsum and other materials.
The mixed materials were pressed to bricks at 20 MPa.
Tashimo, et al, Chemical Engineering Science, Vol.55(2000), p. 643 [7] Zhang Fan, Wang Hongmei, Lin Jun, Chinese Journal of Environmental Engineering,Vol.2(2004), p. 31(In Chinese) [8] Yang Liuchun, Jiangxi Energy, Vol. 3(2005), p. 24(In Chinese) [9] Yang Xinya, Zhang Liying, Liu Hongbo, Coal Ash China, Vol.4(2006), p. 10(In Chinese) [10] Guo Bin, Bian Jingfeng, Ren Ailing, Environmental Pollution & Control, Vol.7(2009), p. 1(In Chinese)
So the application of this desulfurization ash in building materials has certain restrictions.
We aim to partially oxidize the calcium sulfite in the semi-dry desulfurization ash, and make full use of calcium oxide and calcium sulfate in it to replace the lime, gypsum and other materials.
The mixed materials were pressed to bricks at 20 MPa.
Tashimo, et al, Chemical Engineering Science, Vol.55(2000), p. 643 [7] Zhang Fan, Wang Hongmei, Lin Jun, Chinese Journal of Environmental Engineering,Vol.2(2004), p. 31(In Chinese) [8] Yang Liuchun, Jiangxi Energy, Vol. 3(2005), p. 24(In Chinese) [9] Yang Xinya, Zhang Liying, Liu Hongbo, Coal Ash China, Vol.4(2006), p. 10(In Chinese) [10] Guo Bin, Bian Jingfeng, Ren Ailing, Environmental Pollution & Control, Vol.7(2009), p. 1(In Chinese)
Online since: November 2013
Authors: Yuan Jing Deng, Jun Chao Yu, Kai Quan Xia, Lin Yang
Introduction
Aluminum conductor steel reinforced (ACSR) overhead lines are the main conductive materials of high voltage electrical transmission lines worldwide.
Among all the influencing factors, both the relative humidity of atmosphere and the content of corrosion materials critically contribute to transmission lines atmosphere corrosion, the higher the values are, the more severe the corrosion will be.
Johnson, et al: Corrosion, Vol. 43 (1987), p. 719 [2] Jiankun Zhang, Guohong Chen, Jiaqing Wang, et al: Corrosion and Protection, Vol. 31 (2010), p. 581 [3] Jiankun Zhang, Guohong Chen, Jiaqing Wang, et al: The Chinese Journal of Nonferrous Metals, Vol. 21 (2011), p. 411 [4] Xiuyu Liu, Shuai Miao, Chengwei Zhan, et al: Materials Protection, Vol. 43 (2010), p. 53
[5] Desheng Han, Di Li: Journal of Chinese Society for Corrosion and Protection, Vol. 27(2007), p. 134 [6] S.
Townsend: Corrosion Science, Vol. 41 (1999), p. 1687 [7] M.
Among all the influencing factors, both the relative humidity of atmosphere and the content of corrosion materials critically contribute to transmission lines atmosphere corrosion, the higher the values are, the more severe the corrosion will be.
Johnson, et al: Corrosion, Vol. 43 (1987), p. 719 [2] Jiankun Zhang, Guohong Chen, Jiaqing Wang, et al: Corrosion and Protection, Vol. 31 (2010), p. 581 [3] Jiankun Zhang, Guohong Chen, Jiaqing Wang, et al: The Chinese Journal of Nonferrous Metals, Vol. 21 (2011), p. 411 [4] Xiuyu Liu, Shuai Miao, Chengwei Zhan, et al: Materials Protection, Vol. 43 (2010), p. 53
[5] Desheng Han, Di Li: Journal of Chinese Society for Corrosion and Protection, Vol. 27(2007), p. 134 [6] S.
Townsend: Corrosion Science, Vol. 41 (1999), p. 1687 [7] M.
Online since: July 2015
Authors: Mohd Zainizan Sahdan, M.S Alias, Jais Lias, Nafarizal Nayan, Mohd Firdaus Abdul Malek
In this paper, nano-TiO2 powder which was synthesized from local tin mining waste has been used as the starting material.
Luís, et al., "Influence of calcination parameters on the TiO2 photocatalytic properties," Materials Chemistry and Physics, vol. 125, pp. 20-25, 2011
Patil, et al., "Structural, electrical and optical properties of TiO2 doped WO3 thin films," Applied Surface Science, vol. 252, pp. 1643-1650, 2005
Melhem, et al., "Direct photocurrent generation from nitrogen doped TiO2 electrodes in solid-state dye-sensitized solar cells: Towards optically-active metal oxides for photovoltaic applications," Solar Energy Materials and Solar Cells
Hashim, "Sol-gel Synthesis of TiO2 Thin Films from In-house Nano-TiO2 Powder," presented at the Advances in Materials Physics and Chemistry Supplement: 2012 world Congress on Engineering and Technology, Beijing, China, 2012.
Luís, et al., "Influence of calcination parameters on the TiO2 photocatalytic properties," Materials Chemistry and Physics, vol. 125, pp. 20-25, 2011
Patil, et al., "Structural, electrical and optical properties of TiO2 doped WO3 thin films," Applied Surface Science, vol. 252, pp. 1643-1650, 2005
Melhem, et al., "Direct photocurrent generation from nitrogen doped TiO2 electrodes in solid-state dye-sensitized solar cells: Towards optically-active metal oxides for photovoltaic applications," Solar Energy Materials and Solar Cells
Hashim, "Sol-gel Synthesis of TiO2 Thin Films from In-house Nano-TiO2 Powder," presented at the Advances in Materials Physics and Chemistry Supplement: 2012 world Congress on Engineering and Technology, Beijing, China, 2012.
Online since: September 2012
Authors: Akihiko Kubo, Jun’ichi Tamaki, A.M.M. Sharif Ullah, M.A.K. Chowdhury
Tamaki: Development of solid-type diamond rotary dresser utilizing CVD diamond disc-application to low-speed dresser, Key Engineering Materials, Vol. 329 (2007), p.187
Ullah: Effect of wheel arrangement on ground surface topography in Horizontal-Axis-Type rotary surface grinding, Advanced Materials Research, Vol.126-128 (2010), p.579
Saadat: Analysis of the disc dressing effects on grinding performance—Part 1: Simulation of the disc dressed wheel surface, Machining Science and Technology, Vol.12 (2008), p.183
Furukawa: Dressing performance of prismatic monocrystaline diamond dresser, JSPE Journal, Vol. 60(6) (1994), p.803 (in Japanese)
Mindek: Virtual truing and dressing of grinding wheel, Key Engineering Materials, Vol. 389-390 (2009), p.362.
Ullah: Effect of wheel arrangement on ground surface topography in Horizontal-Axis-Type rotary surface grinding, Advanced Materials Research, Vol.126-128 (2010), p.579
Saadat: Analysis of the disc dressing effects on grinding performance—Part 1: Simulation of the disc dressed wheel surface, Machining Science and Technology, Vol.12 (2008), p.183
Furukawa: Dressing performance of prismatic monocrystaline diamond dresser, JSPE Journal, Vol. 60(6) (1994), p.803 (in Japanese)
Mindek: Virtual truing and dressing of grinding wheel, Key Engineering Materials, Vol. 389-390 (2009), p.362.
Online since: December 2010
Authors: Bin Xu, Ning Xu, Xiang Zeng, Zhou Jiang, Jun Ming Chen
As early as the beginning of last century, it was discovered that strain rate has obvious effect on the concrete material [1].
In this paper, the rebar was considered as an elastoplastic material.
Materials and Structures 1991, 24:425-450 [3] Malvar LJ, Ross CA: Review of strain rate effects for concrete in tension [J].
ACI Materials Journal 1998, 95 (6): 735-739 [4] Comité Euro-International du Béton: CEB-FIP Model Code 1990 [S], Redwood Books, Trow-bridge, Wiltshire, UK, 1993 [5] Xu B.
Journal of Structural Engineering, 1987, vol. 113: 663–672.
In this paper, the rebar was considered as an elastoplastic material.
Materials and Structures 1991, 24:425-450 [3] Malvar LJ, Ross CA: Review of strain rate effects for concrete in tension [J].
ACI Materials Journal 1998, 95 (6): 735-739 [4] Comité Euro-International du Béton: CEB-FIP Model Code 1990 [S], Redwood Books, Trow-bridge, Wiltshire, UK, 1993 [5] Xu B.
Journal of Structural Engineering, 1987, vol. 113: 663–672.
Online since: October 2011
Authors: Hui Min Li, Yun Xiang Hu, Yun Xiu Sai, Wei Tian
Introduction
Rural infrastructure is the material basis of people’s ordinary life in village.
Social Impact (S1): Human Development Index (S11), Engel's Coefficient (S12), Surplus Labor Transfer Rate (S13), Safety Benefit (S14), Improvement Rate of Farmers’ Quality in Science and Technology (S15) Farmers’ Annual Average Income (S16) Social Adaptation (S2): Co-Adaptability (S21), Social Risk Level (S22) (3)Environmental Impact (C) Environmental impact on projects is evaluated from three aspects as Ecological Impact (C1), Environment Protection Measures (C2) and Energy Saving & Emission Reduction (C3).
Environment Protection Measures (C2): Waste Gas Treatment Rate (C21), Waste Water Discharge Standards-reaching Rate (C22), Solid Waste Standards-reaching Rate (C23), Life Waste Harmless treatment rate (C24), Water Resources Reuse Rate (C25), Environmental Materials Utilization Rate (C26), Old Buildings and Materials Utilization Rate (C27).
Energy Saving & Emission Reduction (C3): Energy Consumption Rate (C31), Energy-Saving Equipments and Measures Utilization Rate (C32), Renewable Energy Utilization Rate (C33), Energy-Saving Materials Utilization Rate (C34), Pollutant Emission Reduce Amount (C36)
Bowen: Journal of Construction Management and Economics Vol.15(1997),p.223 [2] Lin Gan, Liyin Shen, Hongyua Fu: China Civil Engineering Journal Vol. 42(2009),p. 133(in Chinese) [3] Rui Li: Agricultural Technology Economic Vol.2(2003), p. 5 (in Chinese) [4] Shijie Jiang, Liyin Shen: Transactions of the CSAE Vol.26(2010), p. 1 (in Chinese) [5] Tongtong Wang: Proceedings of International Conference on Technology of Architecture and Structure (2010), p. 412 [6] Qiyue Cheng: Systems Engineering-Theory &Practice Vol.30(2010), p.1225 (in Chinese) [7] Ruijin Liao, Feilong Huang: High Voltage Engineering Vol.30(2010), p.1225 (in Chinese) [8] Tingrong Sun, Qiang Huang: Transactions of the CSAE Vol.22(2006) , p.70 (in Chinese)
Social Impact (S1): Human Development Index (S11), Engel's Coefficient (S12), Surplus Labor Transfer Rate (S13), Safety Benefit (S14), Improvement Rate of Farmers’ Quality in Science and Technology (S15) Farmers’ Annual Average Income (S16) Social Adaptation (S2): Co-Adaptability (S21), Social Risk Level (S22) (3)Environmental Impact (C) Environmental impact on projects is evaluated from three aspects as Ecological Impact (C1), Environment Protection Measures (C2) and Energy Saving & Emission Reduction (C3).
Environment Protection Measures (C2): Waste Gas Treatment Rate (C21), Waste Water Discharge Standards-reaching Rate (C22), Solid Waste Standards-reaching Rate (C23), Life Waste Harmless treatment rate (C24), Water Resources Reuse Rate (C25), Environmental Materials Utilization Rate (C26), Old Buildings and Materials Utilization Rate (C27).
Energy Saving & Emission Reduction (C3): Energy Consumption Rate (C31), Energy-Saving Equipments and Measures Utilization Rate (C32), Renewable Energy Utilization Rate (C33), Energy-Saving Materials Utilization Rate (C34), Pollutant Emission Reduce Amount (C36)
Bowen: Journal of Construction Management and Economics Vol.15(1997),p.223 [2] Lin Gan, Liyin Shen, Hongyua Fu: China Civil Engineering Journal Vol. 42(2009),p. 133(in Chinese) [3] Rui Li: Agricultural Technology Economic Vol.2(2003), p. 5 (in Chinese) [4] Shijie Jiang, Liyin Shen: Transactions of the CSAE Vol.26(2010), p. 1 (in Chinese) [5] Tongtong Wang: Proceedings of International Conference on Technology of Architecture and Structure (2010), p. 412 [6] Qiyue Cheng: Systems Engineering-Theory &Practice Vol.30(2010), p.1225 (in Chinese) [7] Ruijin Liao, Feilong Huang: High Voltage Engineering Vol.30(2010), p.1225 (in Chinese) [8] Tingrong Sun, Qiang Huang: Transactions of the CSAE Vol.22(2006) , p.70 (in Chinese)
Online since: February 2022
Authors: Sergey M. Belskiy, Ivan I. Shopin
Shkarin, Mathematical model for evaluating the actual form of the profile’s contour of the hot-rolled strip’s cross section, Journal of Chemical Technology and Metallurgy. 56(1) (2020) 214-220
Gilormini, Advanced Methods in Materials Processing Defects 45, Elsevier Science, 1997
Simonov, Formation of surface properties of VT18u titanium alloy by laser pulse treatment, Materials Today: Proceedings. 19(5) (2019) 2051-2055
Ushakov, How a crack and the defect material in its neighborhood affect the radiation strength of transparent materials, Journal of Optical Technology. 75(2) (2008) 128-131
Gilormini, Advanced Methods in Materials Processing Defects 45, Elsevier Science, 1997
Simonov, Formation of surface properties of VT18u titanium alloy by laser pulse treatment, Materials Today: Proceedings. 19(5) (2019) 2051-2055
Ushakov, How a crack and the defect material in its neighborhood affect the radiation strength of transparent materials, Journal of Optical Technology. 75(2) (2008) 128-131
Online since: May 2007
Authors: Jian Shen, Yong Heng ShangGuan, Xiao Dong Yan
Introduction
Modeling of materials processes has been one of significant attractive research fields on materials
science and technology in recent years, whilst modeling of flow stress and microstructure evolution of
advanced materials during thermomechanical processes, which is necessary in the prediction of
as-deformed microstructure and in optimization and controlling of the accordingly potential
mechanical properties of the products, is receiving considerable attention for its essential significance
in industrial applications.
Materials and Experiments The Al-Zn-Mg alloy used in this study is an extruded bar with a diameter of 15mm after light annealing, supplied by Northeast Light Alloy Co., LTD, China.
Journal of Metals Vol. 9(1987), p.28 [5] J.
Gottstein: Materials Science Forum Vol. 426-432 (2003), p.3843 [8] J.
Krauss, ASM Materials Science Seminar (American Society for Metals, 1982), p.185
Materials and Experiments The Al-Zn-Mg alloy used in this study is an extruded bar with a diameter of 15mm after light annealing, supplied by Northeast Light Alloy Co., LTD, China.
Journal of Metals Vol. 9(1987), p.28 [5] J.
Gottstein: Materials Science Forum Vol. 426-432 (2003), p.3843 [8] J.
Krauss, ASM Materials Science Seminar (American Society for Metals, 1982), p.185
Online since: December 2013
Authors: Ming Yi Deng, Jun Lin Su, Liang Chun Pu, Gang Xie
Due to the Nano-silica materials have the commercial applicability and can meet the special requirements of reservoir.
Journal of Petroleum Science and Engineering,1996,14:221-230
Journal of Petroleum technology,1970,22(10): 1309-1316
Journal of petroleum technology, 1984, 36(6): 975-981
Journal of Petroleum Technology,1976,28(6): 719-727
Journal of Petroleum Science and Engineering,1996,14:221-230
Journal of Petroleum technology,1970,22(10): 1309-1316
Journal of petroleum technology, 1984, 36(6): 975-981
Journal of Petroleum Technology,1976,28(6): 719-727
Online since: December 2012
Authors: Hua Zhang, Zhi Gang Zhou
Precipitation Characteristics of Crystallization Fouling on Metal Surface from 0.5mmol/l CaCO3 Solution at 35˚C
Zhigang ZHOU, Hua ZHANG
School of Energy and Power Engineering, University of Shanghai for Science and Technology, Shanghai, 200093, PRC
Email: zhouzg@usst.edu.cn
Key words- crystallization fouling; CaCO3; polymorphism; coupon test
Abstract.
The characteristics of CaCO3 fouling growing on common heat exchanger materials which are brass, copper, stainless steel304 and316(ss304 and ss316) are studied by static reaction method, and the growth mechanisms of CaCO3 crystallization fouling are further studied.
Journal of Power Engineering, 2009, 29(11):1023-1026 [2] Xu Zhiming, Wen Xiaoqiang and Zheng Jiaoli.
CIESC Journal, 2009, 60(8):1938-1943 [12] Wang J., Shen Z.W., Shen Z.Q.
Journal of Thermal Science, 2001, 10(2):153-158
The characteristics of CaCO3 fouling growing on common heat exchanger materials which are brass, copper, stainless steel304 and316(ss304 and ss316) are studied by static reaction method, and the growth mechanisms of CaCO3 crystallization fouling are further studied.
Journal of Power Engineering, 2009, 29(11):1023-1026 [2] Xu Zhiming, Wen Xiaoqiang and Zheng Jiaoli.
CIESC Journal, 2009, 60(8):1938-1943 [12] Wang J., Shen Z.W., Shen Z.Q.
Journal of Thermal Science, 2001, 10(2):153-158