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Online since: February 2011
Authors: Gao Yang Zhao, Li Yuan, Ying Wang
College of Materials Science and Engineering, Xi’an University of Technology, Shaanxi 710048, China
2.
College of Materials Science and Engineering, Shaanxi University of Science and Technology, Shaanxi 710021, China awangying@sust.edu.cn, bzhaogy@xaut.edu.cn, cwytzhi@126.com Keywords: Yttrium Oxide; Hydrothermal Synthesis; Morphology; Crystalline Phase Abstract.
Kim, Y.S.Song:Materials Science and Engineering A, Vol. 289(2000),p. 1 [11] M.
Yasui: Journal of Materials Science vol. 43(2008)1214 [16]P.F.
Frost: Journal of Colloid and Interface Science vol.326 (2008), p.289 [18] T.X.Cai, Y.W.Zeng and W.Zhang: Journal of Power Sources vol.195 (2010) p. 1308
College of Materials Science and Engineering, Shaanxi University of Science and Technology, Shaanxi 710021, China awangying@sust.edu.cn, bzhaogy@xaut.edu.cn, cwytzhi@126.com Keywords: Yttrium Oxide; Hydrothermal Synthesis; Morphology; Crystalline Phase Abstract.
Kim, Y.S.Song:Materials Science and Engineering A, Vol. 289(2000),p. 1 [11] M.
Yasui: Journal of Materials Science vol. 43(2008)1214 [16]P.F.
Frost: Journal of Colloid and Interface Science vol.326 (2008), p.289 [18] T.X.Cai, Y.W.Zeng and W.Zhang: Journal of Power Sources vol.195 (2010) p. 1308
Online since: February 2011
Authors: Xiao Feng Chen, Qun Feng Liu, Cai Lin, Bo Yuan
It has been pointed out that the size effects of elasticity may be caused by the non-local influence between discrete structures of the materials[11,12].
Yang et al. further simplified Fleck and Hutchinson’s formulation, and introduce a linear elastic model for isotropic materials[18].
For homogeneous, centrosymmetric, isotropic materials, the strain energy density takes the following form[14] (1) in which, and are Lame’s constants and , and are constants in the HSGE model (see Toupin[13] and Mindlin[14] ).
E5090890) and Natural Science Foundation of ZheJiang (Y407241) for this project are greatly acknowledged.
Cohen: Journal of Polymer Science Part B-Polymer Physics Vol. 44, (2006), p. 1482 [11].
Yang et al. further simplified Fleck and Hutchinson’s formulation, and introduce a linear elastic model for isotropic materials[18].
For homogeneous, centrosymmetric, isotropic materials, the strain energy density takes the following form[14] (1) in which, and are Lame’s constants and , and are constants in the HSGE model (see Toupin[13] and Mindlin[14] ).
E5090890) and Natural Science Foundation of ZheJiang (Y407241) for this project are greatly acknowledged.
Cohen: Journal of Polymer Science Part B-Polymer Physics Vol. 44, (2006), p. 1482 [11].
Online since: February 2013
Authors: Di Tang, Hong Wei Zheng, Hui Bin Wu, Liu Yang, Jin Xing Jiang
(a)
(b)
Fig.6 Micro morphology of rapid propagation area (S=600MPa, N=2.22×105)
(a) plastic fracture area (b) brittle fracture area
Why the rapid propagation area appeared.The ability of materials to resist crack propagation called fracture toughness represented by KΙc, which is a constant for materials.
Journal of Constructional Steel Reseach, Vol.58(2002), p.3~20
Journal of Structural Division,Vol.108(1982), p.3~88
Materials Science and Engineering, Vol.
Materials Science and Engineering, Vol.
Journal of Constructional Steel Reseach, Vol.58(2002), p.3~20
Journal of Structural Division,Vol.108(1982), p.3~88
Materials Science and Engineering, Vol.
Materials Science and Engineering, Vol.
Online since: May 2013
Authors: Aeslina binti Abdul Kadir, Noor Amira Sarani
Preparation of raw materials clay, CBs and water.
Mohajerani, Recycling Cigarette Butts In Light-Weight Fired Clay Bricks: Journal of Construction Materials.
Gomze, Improvement of Insulation Properties of Conventional Brick Products: Materials Sciences, 589 (2008), p. 1-6
Zanarini, Thermal Conductivity of Clay Bricks: Journal of Materials in Civil Engineering, 16 (1) (2004)
[27] Ghazi, Al-Marahleh, Production of light weight ceramics teils from local materials: American Journal of Applied Sciences 2 (4) (2005), p. 778-783.
Mohajerani, Recycling Cigarette Butts In Light-Weight Fired Clay Bricks: Journal of Construction Materials.
Gomze, Improvement of Insulation Properties of Conventional Brick Products: Materials Sciences, 589 (2008), p. 1-6
Zanarini, Thermal Conductivity of Clay Bricks: Journal of Materials in Civil Engineering, 16 (1) (2004)
[27] Ghazi, Al-Marahleh, Production of light weight ceramics teils from local materials: American Journal of Applied Sciences 2 (4) (2005), p. 778-783.
Online since: May 2015
Authors: Jie Lin, Jian Yan Wang, Hang Guo, Yu Ling Wu
It is found that the optimal proportion of SnO2 to graphene is 8:1 (wt%) for the electrospun composite materials.
Most commercial lithium-ion batteries use graphitic materials as anode material.
Zhang, Journal of Materials Chemistry A, 2 (2014) 10211-10217
Novoselov, Nature Materials, 6 (2007) 183-191
Hyeon, Advanced Functional Materials, 15 (2005) 1845-1850
Most commercial lithium-ion batteries use graphitic materials as anode material.
Zhang, Journal of Materials Chemistry A, 2 (2014) 10211-10217
Novoselov, Nature Materials, 6 (2007) 183-191
Hyeon, Advanced Functional Materials, 15 (2005) 1845-1850
Online since: May 2012
Authors: Ming Fang Tang, Zhen Jing Yang, Shu Kui Zheng
In addition models of thermal conductivity for porous materials mostly only take a single solid component into consideration [8].
This study chooses clay, peat soil, mushroom planting soil (discarded), sand and expanded perlite as solid materials of the planting soil, all of which are commonly used in green roof.
Additionally when different materials mix, the smaller size granule would filled pore of other materials, increasing the contact area of solid particles, and finally lead to the growth of ETC.
Acknowledgements This research was supported by National Natural Science Foundation of China (Project No. 50978261) and Science Research Foundation of Xihua University (Project No.
References [1] Ministry of Construction, PRC: Technical specification for planted roof(JGJ 155-2007) (China Building Materials Press,2007) (In Chinese) [2] Mingfang Tang, Zhenjing Yang and Kaili Zheng: Journal of Chongqing Univ.Vol.30(5) (2007), p.1(In Chinese) [3] Jagjiwanram and Ramvir Singh: Applied Thermal Engineering.Vol.24 (2004),p. 2727 [4] C.
This study chooses clay, peat soil, mushroom planting soil (discarded), sand and expanded perlite as solid materials of the planting soil, all of which are commonly used in green roof.
Additionally when different materials mix, the smaller size granule would filled pore of other materials, increasing the contact area of solid particles, and finally lead to the growth of ETC.
Acknowledgements This research was supported by National Natural Science Foundation of China (Project No. 50978261) and Science Research Foundation of Xihua University (Project No.
References [1] Ministry of Construction, PRC: Technical specification for planted roof(JGJ 155-2007) (China Building Materials Press,2007) (In Chinese) [2] Mingfang Tang, Zhenjing Yang and Kaili Zheng: Journal of Chongqing Univ.Vol.30(5) (2007), p.1(In Chinese) [3] Jagjiwanram and Ramvir Singh: Applied Thermal Engineering.Vol.24 (2004),p. 2727 [4] C.
Online since: July 2022
Authors: Roberta Della Gatta, Alessia Serena Perna, Antonio Viscusi, Luigi Carrino
Materials and Methods
Cold Spray Depositions.
He, A Review of 3D Printing Technologies for Soft Polymer Materials, Advanced Functional Materials. 30 (2020) 2000187. https://doi.org/https://doi.org/10.1002/adfm.202000187
Lees, Recent Development in Thermoplastic Composites: A Review of Matrix Systems and Processing Methods, Journal of Thermoplastic Composite Materials. 1 (1988) 277–296. https://doi.org/10.1177/089270578800100305
Mitchell, Machine learning: Trends, perspectives, and prospects, Science. (2015). https://doi.org/10.1126/science.aaa8415
Rondinelli, Theory-Guided Machine Learning in Materials Science, Frontiers in Materials. 3 (2016) 28. https://doi.org/10.3389/fmats.2016.00028
He, A Review of 3D Printing Technologies for Soft Polymer Materials, Advanced Functional Materials. 30 (2020) 2000187. https://doi.org/https://doi.org/10.1002/adfm.202000187
Lees, Recent Development in Thermoplastic Composites: A Review of Matrix Systems and Processing Methods, Journal of Thermoplastic Composite Materials. 1 (1988) 277–296. https://doi.org/10.1177/089270578800100305
Mitchell, Machine learning: Trends, perspectives, and prospects, Science. (2015). https://doi.org/10.1126/science.aaa8415
Rondinelli, Theory-Guided Machine Learning in Materials Science, Frontiers in Materials. 3 (2016) 28. https://doi.org/10.3389/fmats.2016.00028
Online since: January 2019
Authors: Eleni Pavlidou, Maria Stefanidou, Aspasia Karozou
Earthen materials have been used in construction for centuries.
Materials and Techniques Specimen preparation.
Mechanical properties of the materials.
Berge, The ecology of building materials., second ed., Architectural Press, Elsevier Science, 2009
Vamshykrishna, The Future of Civil Engineering with the Influence and Impact of Nanotechnology on Properties of Materials, Procedia Materials Science 10 (2015) 111 – 115 [36] R.S.C.
Materials and Techniques Specimen preparation.
Mechanical properties of the materials.
Berge, The ecology of building materials., second ed., Architectural Press, Elsevier Science, 2009
Vamshykrishna, The Future of Civil Engineering with the Influence and Impact of Nanotechnology on Properties of Materials, Procedia Materials Science 10 (2015) 111 – 115 [36] R.S.C.
Online since: May 2011
Authors: Bin Cheng, Jian Ping Liu
The productive forces development and science's and technology's progress, brought the transformation of life style, the modern function demand has brought the new challenge for national style, the architect faced with the choice in a dilemma.
In the Li County non-material cultural center design, We widely collect the local landscape material, and compare variously from the construction physique, the landscape intention, the building decoration, the construction material quality and so on, has completed the architectural design, and enriched the local landscape.
Figure.4 The Perspective drawing of Li County non-material center Conclusions Along with the high-speed development in whole world integration process and science and technology ,and the Western landscape culture's invasion, the traditional landscape culture, particularly the local landscape culture survives in the crevice. after studying the Qiang national minority settlement local landscape image characteristic, Taking the non-material cultural center design as an example ,This article proposed some new mentality and new method for the Qiang national minority architectural design, molded one kind of local landscape with fusion and development.
Architectural Journal, 2000, (4): p45-48
Architectural Journal, 2000(11) : P22-25
In the Li County non-material cultural center design, We widely collect the local landscape material, and compare variously from the construction physique, the landscape intention, the building decoration, the construction material quality and so on, has completed the architectural design, and enriched the local landscape.
Figure.4 The Perspective drawing of Li County non-material center Conclusions Along with the high-speed development in whole world integration process and science and technology ,and the Western landscape culture's invasion, the traditional landscape culture, particularly the local landscape culture survives in the crevice. after studying the Qiang national minority settlement local landscape image characteristic, Taking the non-material cultural center design as an example ,This article proposed some new mentality and new method for the Qiang national minority architectural design, molded one kind of local landscape with fusion and development.
Architectural Journal, 2000, (4): p45-48
Architectural Journal, 2000(11) : P22-25
Online since: December 2023
Authors: Roberto Montanari, Alessandra Varone, Annalisa Pola, Alessandra Fava, Marialaura Tocci, Chiara de Crescenzo, Alessandra Palombi, Marcello Cabibbo
Springer Series in Materials Science, Springer Verlag, Berlin Heidelberg, 2007.
Materials Science & Engineering A 521-522 (2009) 102-105. http://dx.doi.org/10.1016/j.msea.2008.09.107
European Journal of Materials 3 (2023). https://doi.org/10.1080/26889277.2023.2208159
Materials Science Forum 706-709 (2012) 835-840. https://doi.org/10.4028/www.scientific.net/MSF.706-709.835
Materials Science & Engineering 442(1) (2006) 543–546. https://doi.org/ 10.1016/j.msea.2006.02.210
Materials Science & Engineering A 521-522 (2009) 102-105. http://dx.doi.org/10.1016/j.msea.2008.09.107
European Journal of Materials 3 (2023). https://doi.org/10.1080/26889277.2023.2208159
Materials Science Forum 706-709 (2012) 835-840. https://doi.org/10.4028/www.scientific.net/MSF.706-709.835
Materials Science & Engineering 442(1) (2006) 543–546. https://doi.org/ 10.1016/j.msea.2006.02.210