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Online since: September 2013
Authors: Jian Yao, Shan Wu
Analysis of the application potential of climate adaptive window materials
Shan Wu, Jian Yao*
Faculty of Architectural, Civil Engineering and Environment, Ningbo University, Ningbo, China
email: yaojian@nbu.edu.cn
Keywords: Climate adaptive window materials; building energy; numerical analysis.
This paper gives the numerical analysis method for heat transfer through climate adaptive window materials.
Using the weather data in a typical city in hot summer and cold winter zone, an analysis of the application potential of climate adaptive window materials is given.
Yuan, “Study on Residential Buildings with Energy Saving by 65% in Ningbo,” Journal of Ningbo University (Natural science & engineering edition).vol. 23, pp. 84-87, 2010
[8] Zhou Y. and Zhou D., “Effect of Envelop Insulation for Indoor Thermal Environment in Summer: Tests and Analysis,” Journal of Ningbo University(Natural Science & Engineering Edition), vol. 26, pp. 100-102, 2013.
This paper gives the numerical analysis method for heat transfer through climate adaptive window materials.
Using the weather data in a typical city in hot summer and cold winter zone, an analysis of the application potential of climate adaptive window materials is given.
Yuan, “Study on Residential Buildings with Energy Saving by 65% in Ningbo,” Journal of Ningbo University (Natural science & engineering edition).vol. 23, pp. 84-87, 2010
[8] Zhou Y. and Zhou D., “Effect of Envelop Insulation for Indoor Thermal Environment in Summer: Tests and Analysis,” Journal of Ningbo University(Natural Science & Engineering Edition), vol. 26, pp. 100-102, 2013.
Online since: March 2023
Authors: M. S. Liew, Wesam Salah Alaloul, Salem O. Baarimah, Muhammad Ali Musarat, Aiman A. Bin Mokaizh, Abdullah O. Baarimah
Besides, it can be seen that “Construction and Building Materials” have the highest total citations (461) and average citations (57.6), indicating that this journal was prominent and productive in the field of KFRC in construction materials.
Citations “Advances in Environmental Biology” 190 5 61 12.2 0.4 “Arpn Journal of Engineering and Applied Sciences” 258 6 56 9.3 0.5 “Bioresources” 471 9 244 27.1 1.5 “Construction and Building Materials” 286 8 461 57.6 1.9 “Fibers and Polymers” 267 7 64 9.1 0.6 “Industrial Crops and Products” 212 5 125 25.0 1.5 “International Journal of Integrated Engineering” 242 5 39 7.8 0.5 “Journal of Mechanical Engineering” 203 6 18 3.0 0.3 “Journal of Natural Fibers” 214 7 106 15.1 2.9 “Journal of Reinforced Plastics And Composites” 245 5 98 19.6 1.2 Jurnal Teknologi “Advances” 282 8 35 4.4 0.2 “Materials Research Express” 168 6 117 19.5 1.2 “Polymer Composites” 565 13 234 18.0 1.2 “ Polymers” 531 12 99 8.3 1.3 “ Polymers and Polymer Composites” 106 5 43 8.6 0.8 Countries Network Analysis.
Ahmad, Materials (Basel). 15, 4362 (2022)
Saeed, Materials (Basel). 15, 3046 (2022)
Alabduljabbar, Materials (Basel). 15, 5639 (2022)
Citations “Advances in Environmental Biology” 190 5 61 12.2 0.4 “Arpn Journal of Engineering and Applied Sciences” 258 6 56 9.3 0.5 “Bioresources” 471 9 244 27.1 1.5 “Construction and Building Materials” 286 8 461 57.6 1.9 “Fibers and Polymers” 267 7 64 9.1 0.6 “Industrial Crops and Products” 212 5 125 25.0 1.5 “International Journal of Integrated Engineering” 242 5 39 7.8 0.5 “Journal of Mechanical Engineering” 203 6 18 3.0 0.3 “Journal of Natural Fibers” 214 7 106 15.1 2.9 “Journal of Reinforced Plastics And Composites” 245 5 98 19.6 1.2 Jurnal Teknologi “Advances” 282 8 35 4.4 0.2 “Materials Research Express” 168 6 117 19.5 1.2 “Polymer Composites” 565 13 234 18.0 1.2 “ Polymers” 531 12 99 8.3 1.3 “ Polymers and Polymer Composites” 106 5 43 8.6 0.8 Countries Network Analysis.
Ahmad, Materials (Basel). 15, 4362 (2022)
Saeed, Materials (Basel). 15, 3046 (2022)
Alabduljabbar, Materials (Basel). 15, 5639 (2022)
Online since: September 2013
Authors: B. Kareem
The conventional method of mixing materials led to 50 % surplus and shortage of materials in the process as compared with the new scheme.
Major Raw Materials for Cement Production The major raw materials that were required for cement production are enumerated as follows.
Marin-Garcia, A new formulation technique to model materials and operations planning: The generic materials and operations planning (GMOP) problem European Journal of Industrial Engineering 7 (2013) 119-147
Azimi, Scheduling a project to minimize costs of material requirements World Academy of Science, Engineering and Technology 78 (2011) 134-137.
Chang, M Fang, Study on the model for the requirement planning of well-drilling materials Journal of Xi'an Shiyou University, Natural Sciences Edition 25 (2010) 96-98
Major Raw Materials for Cement Production The major raw materials that were required for cement production are enumerated as follows.
Marin-Garcia, A new formulation technique to model materials and operations planning: The generic materials and operations planning (GMOP) problem European Journal of Industrial Engineering 7 (2013) 119-147
Azimi, Scheduling a project to minimize costs of material requirements World Academy of Science, Engineering and Technology 78 (2011) 134-137.
Chang, M Fang, Study on the model for the requirement planning of well-drilling materials Journal of Xi'an Shiyou University, Natural Sciences Edition 25 (2010) 96-98
Online since: July 2011
Authors: Jie Qiong Li, Li Jun Wang, Hong Jing Wang
Materials Science and Engineering A, 2001, 304–306: 1083–1086
[2] H.
Journal of Magnetism and Magnetic Materials, 2006, 304: 187–191 [3] J.
Journal of Magnetism and Magnetic Materials, 2002, 242–245: 84–89 [4] T.
Procedia Earth and Planetary Science, 2009, 1: 1357–1361 [5] A.
Nanocrystalline soft magnetic Fe-M-B (M = Zr, Hf, Nb) alloys and their applications, Materials Science and Engineering A, 1997, 226-228: 594-602
Journal of Magnetism and Magnetic Materials, 2006, 304: 187–191 [3] J.
Journal of Magnetism and Magnetic Materials, 2002, 242–245: 84–89 [4] T.
Procedia Earth and Planetary Science, 2009, 1: 1357–1361 [5] A.
Nanocrystalline soft magnetic Fe-M-B (M = Zr, Hf, Nb) alloys and their applications, Materials Science and Engineering A, 1997, 226-228: 594-602
Online since: June 2012
Authors: Guang Yin Wang
Investigation Progress on Microelectronic Materials:Carbon
Nanotube and Graphene
GuangYin Wang
Department of Chemistry, Dezhou University, Dezhou 253023, China
Email: wgy_sddz@163.com
Keywords: Microelectronic materials; Carbon nanotube; graphene
Abstract: In this paper, the structures and electrical properties of carbon nanotube and graphene were introduced, which have advantage in making microelectronic materials.
Besides, graphene may be used to make composite material, cell, super capacitance, hydrogen storage material, field emission material and ultra sensitive sensor. 1.4.
References [1] Ming Tian: Semiconductor Technology Vol. 30 (2005), p.5-7 [2] R.M.Westervelt : Science Vol. 320 (2008), p. 324-325 [3] Su Xunwen.
Journal of Nanjing Institute of Industry Technology Vol. 5 (2005), p. 88-91 [4] Jiao L Y,Zhang L,Wang X R: Nature Vol. 458 (2009), p. 877-880 [5] Zhao Zhiwei,Zhang Chongcai: Journal of Sichuan University of Science and Technology Vol. 23 (2004), p. 243-245 [6] Huang Guirong, Chen Jian: Carbon Techniques Vol. 28 (2009), p. 35-39 [7] Ang Zheng,Shi Yi,Gu Shulin: Research & Progress of Solid State Electronics Vol. 22(2002), p. 131-136 [8] Chen Z,Tong L M,Wu Z Y: Applied Physics Letters Vol. 92(2008), p. 103116-103119 [9] Kosynkin D.
L.and Sinitskii A: Nature Vol. 458 (2009), p. 872-876 [10] Li X L,Zhang L and Wang X R: Journal of the American Chemical Society Vol. 129 (2007), p. 4890-4891
Besides, graphene may be used to make composite material, cell, super capacitance, hydrogen storage material, field emission material and ultra sensitive sensor. 1.4.
References [1] Ming Tian: Semiconductor Technology Vol. 30 (2005), p.5-7 [2] R.M.Westervelt : Science Vol. 320 (2008), p. 324-325 [3] Su Xunwen.
Journal of Nanjing Institute of Industry Technology Vol. 5 (2005), p. 88-91 [4] Jiao L Y,Zhang L,Wang X R: Nature Vol. 458 (2009), p. 877-880 [5] Zhao Zhiwei,Zhang Chongcai: Journal of Sichuan University of Science and Technology Vol. 23 (2004), p. 243-245 [6] Huang Guirong, Chen Jian: Carbon Techniques Vol. 28 (2009), p. 35-39 [7] Ang Zheng,Shi Yi,Gu Shulin: Research & Progress of Solid State Electronics Vol. 22(2002), p. 131-136 [8] Chen Z,Tong L M,Wu Z Y: Applied Physics Letters Vol. 92(2008), p. 103116-103119 [9] Kosynkin D.
L.and Sinitskii A: Nature Vol. 458 (2009), p. 872-876 [10] Li X L,Zhang L and Wang X R: Journal of the American Chemical Society Vol. 129 (2007), p. 4890-4891
Online since: June 2013
Authors: Chang Quan He
Table 1 lists most of the current application phase change building materials [4].
In China , by adding phase change material to the matrix we got insulation materials that could be used for building envelope.
By the addition of phase change materials heat storage properties of materials are improved,and the thermal stability of the material is also improved, and does not affect the strength, durability and other properties of materials. [5] The advantages and disadvantages of phase change materials Composite technology of phase change materials mainly includes:(1)put thePCM package ( including container packaging, microcapsule encapsulation ) into building materials;(2) permeate PCM into porous matrix by immersion ( such as gypsum wallboard, concrete etc. ); (3)the PCM is directly mixed with building materials; (4) add the organic PCM to the building materials after emulsion.
Phase change materials as a new building insulation materials, has great advantages compared with sensible heat insulation materials, but it also has some problems, mainly includes[7]:(1) Type of phase change material is not available; (2)Preparation process of phase change building materials is not perfect, in order to prevent leakage.Considing with evaporation of phase change when used, they should be packaged, but package technology of phase change materials at present is still not perfect, this is also important problem of the phase change materials; (3)The high cost of the phase change materials when used.
[2] Liguang Xiao,Shuo Feng: Journal of Jilin Institute of Architecture & Civil Engineering,Vol.29 No.2(Apr.2012), p.35 [3] Yubin Zhou: Master's Degree Dissertation of Chongqing University, (Nov.2007), p.23 [4] Qidong Wang: Journal of Beijing Technology and Business University, (2005), p.5 [5] Leijing Su etc.: Energy Storage Science and Technology,Vol.1 No.2(Nov. 2012), p.113-114 [6] Yijian Wang:Chemical Building Material, (2009), p.25-27 [7] Guocai Zhang,Zhe Xu,Yuanfa Chen: Energy Science and Technology, (2012),p.74-81 [8] C.Murise, P.W.Egolf, D.Vuarnoz, P.Haas: International Journal of Refrigeration, (2010), p.1670-1675
In China , by adding phase change material to the matrix we got insulation materials that could be used for building envelope.
By the addition of phase change materials heat storage properties of materials are improved,and the thermal stability of the material is also improved, and does not affect the strength, durability and other properties of materials. [5] The advantages and disadvantages of phase change materials Composite technology of phase change materials mainly includes:(1)put thePCM package ( including container packaging, microcapsule encapsulation ) into building materials;(2) permeate PCM into porous matrix by immersion ( such as gypsum wallboard, concrete etc. ); (3)the PCM is directly mixed with building materials; (4) add the organic PCM to the building materials after emulsion.
Phase change materials as a new building insulation materials, has great advantages compared with sensible heat insulation materials, but it also has some problems, mainly includes[7]:(1) Type of phase change material is not available; (2)Preparation process of phase change building materials is not perfect, in order to prevent leakage.Considing with evaporation of phase change when used, they should be packaged, but package technology of phase change materials at present is still not perfect, this is also important problem of the phase change materials; (3)The high cost of the phase change materials when used.
[2] Liguang Xiao,Shuo Feng: Journal of Jilin Institute of Architecture & Civil Engineering,Vol.29 No.2(Apr.2012), p.35 [3] Yubin Zhou: Master's Degree Dissertation of Chongqing University, (Nov.2007), p.23 [4] Qidong Wang: Journal of Beijing Technology and Business University, (2005), p.5 [5] Leijing Su etc.: Energy Storage Science and Technology,Vol.1 No.2(Nov. 2012), p.113-114 [6] Yijian Wang:Chemical Building Material, (2009), p.25-27 [7] Guocai Zhang,Zhe Xu,Yuanfa Chen: Energy Science and Technology, (2012),p.74-81 [8] C.Murise, P.W.Egolf, D.Vuarnoz, P.Haas: International Journal of Refrigeration, (2010), p.1670-1675
Online since: July 2011
Authors: Evgeniy Golovin, Vjacheslav I. Mali, Ivan A. Bataev, Anatoliy A. Bataev, Vladimir Burov, Aleksandr Smirnov, Elena A. Prikhodko
In experiments carried out in the current research number of cycles to failure of multilayer materials was higher than those for bulk materials.
Introduction The increase of the structural materials' mechanical properties is one of the classical problems of materials science.
Materials and methods Low carbon steel was used as a material for research.
Tomoshige: Journal of materials processing technology Vol. 195 (2008), pp. 232-240 [3] H.H.
Zimmerly: Journal of Materials Science 33 (1998) pp. 5327 – 5338 [5] I.
Introduction The increase of the structural materials' mechanical properties is one of the classical problems of materials science.
Materials and methods Low carbon steel was used as a material for research.
Tomoshige: Journal of materials processing technology Vol. 195 (2008), pp. 232-240 [3] H.H.
Zimmerly: Journal of Materials Science 33 (1998) pp. 5327 – 5338 [5] I.
Online since: July 2020
Authors: Hui Ru Ye, Xian Yue Dong, Min Xu, Xin Cheng, Jin Gui Dai, Jie Zhang
Lanthanide luminescence for functional materials and bio-sciences[J].
Journal of Jinan University(Science and Technology), 2005, 19(2): 113-119
Journal of Yanan University(Natural Science Edition), 2013, 32(4): 37-40
Journal of Applied Polymer Science, 2010, 25(3): 359-368
Journal of Applied polymer Science. 1980, 25(12): 2007-2017.
Journal of Jinan University(Science and Technology), 2005, 19(2): 113-119
Journal of Yanan University(Natural Science Edition), 2013, 32(4): 37-40
Journal of Applied Polymer Science, 2010, 25(3): 359-368
Journal of Applied polymer Science. 1980, 25(12): 2007-2017.
Online since: December 2004
Authors: Jian Feng Li, Pei Qi Ge, W. Gao, J.F. Meng
Materials Science Forum Vols. *** (2004) pp.192-195
online at http://scientific.net
Ó 2004 Trans Tech Publications, Switzerland
Removal Mechanism in Wire-sawing of Hard-brittle Material
J.F.
Materials Science Forum Vols. *** 193 Through microindentation techniques, T.
Materials Science Forum Vols. *** 195 Experiments and Discussions Wire-sawing experiments were conducted on a endless wire-saw machine.
Yoshikawa: Journal of Materials Processing Technology Vol. 132(2003), p. 353 [4] S.
Scattergood: Journal of Engineering for Industry Vol.113(1991), p. 184 Fig.4 SEM picture of chips in wire-sawing(2000x) Fig.3 SEM picture of granite in wire-sawing(10x) Advances in Materials Manufacturing Science and Technology 196 [6] J.X.
Materials Science Forum Vols. *** 193 Through microindentation techniques, T.
Materials Science Forum Vols. *** 195 Experiments and Discussions Wire-sawing experiments were conducted on a endless wire-saw machine.
Yoshikawa: Journal of Materials Processing Technology Vol. 132(2003), p. 353 [4] S.
Scattergood: Journal of Engineering for Industry Vol.113(1991), p. 184 Fig.4 SEM picture of chips in wire-sawing(2000x) Fig.3 SEM picture of granite in wire-sawing(10x) Advances in Materials Manufacturing Science and Technology 196 [6] J.X.
Online since: August 2013
Authors: Li Guang Xiao, Shi Ting Zhang, Shuo Feng, Gang Liu
A study of the effect of modified materials on the performance of thermal insulation mortar with cinders and phase change materials
Liguang XIAO1,a, Shuo FENG 1,b, Gang LIU1,c, Shting ZHANG 1,d
1School of Materials Science and Engineering, Jilin Institute of Architecture and Civil Engineering, Changchun,130118,China
axlg627@163.com, b874919997@qq.com, c841299833@qq.com , dting0923@yahoo.cn
Key words: Phase change materials; cinder; energy savings and thermal insulation; mortar
Abstract: The thermal insulation mortar with cinders and phase change materials which is made from expanded perlites adsorbing composite phase change material, cinders and vitrified small ball as lightweight aggregate has the characteristics of both energy storage and thermal insulation.
The energy storage density of phase change materials is 5~14 times as much as sensible heat storage materials with the same volume[4].
Experiment Procedure Raw materials and properties. (1) P.O 42.5 ordinary Portland cement (2) fly ash, most of which are spherical vitreous bodies.
Adsorption of phase change materials.
References [1] Liguang Xiao: Journal of wuhan University of Technology-Mater.Sci.Ed.Vol.26(2011), p.491 [2] Liguang Xiao: Journal of Jilin Institute of Architecture and Civil Engineering Vol.29(2012), p.35 [3] Conrad Voelker, Oliver Kornadt: Energy and BuildingsVol.40(2008), p.937 [4] Sharma A,Tyagi V V,Chen C R: Renewable Sustainable Energy Rev.
The energy storage density of phase change materials is 5~14 times as much as sensible heat storage materials with the same volume[4].
Experiment Procedure Raw materials and properties. (1) P.O 42.5 ordinary Portland cement (2) fly ash, most of which are spherical vitreous bodies.
Adsorption of phase change materials.
References [1] Liguang Xiao: Journal of wuhan University of Technology-Mater.Sci.Ed.Vol.26(2011), p.491 [2] Liguang Xiao: Journal of Jilin Institute of Architecture and Civil Engineering Vol.29(2012), p.35 [3] Conrad Voelker, Oliver Kornadt: Energy and BuildingsVol.40(2008), p.937 [4] Sharma A,Tyagi V V,Chen C R: Renewable Sustainable Energy Rev.