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Online since: January 2019
Authors: Amara Carvajal-Perez
Colloid and materials science for the conservation of cultural heritage: cleaning, consolidation, and deacidification.
Journal of colloid and interface science, 392, 42-49
Materials Characterization, 61(2), 168-184
New frontiers in materials science for art conservation: responsive gels and beyond.
Materials & Design, 114, 364-372
Journal of colloid and interface science, 392, 42-49
Materials Characterization, 61(2), 168-184
New frontiers in materials science for art conservation: responsive gels and beyond.
Materials & Design, 114, 364-372
Online since: May 2014
Authors: Dariusz Łukowiec, Anna Danuta Dobrzańska-Danikiewicz, Mirosława Pawlyta
Introduction
Nanocomposites have involved into one of the most interested materials in the research world.
The exact imaging of the materials examined was possible by applying an HAADF detector (Z contrast).
Compton, Metal Nanoparticles and Related Materials Supported on Carbon Nanotubes, Methods and Applications 2/2 (2006) 182-193
Prato, Decoration carbon nanotubes with metal or semiconductor nanoparticles, Journal of Materials Chemistry 17 (2007) 2679-2694
Dobrzańska-Danikiewicz, Characterisation of carbon nanotubes decorated with platinum nanoparticles, Journal of Achievements in Materials and Manufacturing Engineering 53/2 (2012) 67-75
The exact imaging of the materials examined was possible by applying an HAADF detector (Z contrast).
Compton, Metal Nanoparticles and Related Materials Supported on Carbon Nanotubes, Methods and Applications 2/2 (2006) 182-193
Prato, Decoration carbon nanotubes with metal or semiconductor nanoparticles, Journal of Materials Chemistry 17 (2007) 2679-2694
Dobrzańska-Danikiewicz, Characterisation of carbon nanotubes decorated with platinum nanoparticles, Journal of Achievements in Materials and Manufacturing Engineering 53/2 (2012) 67-75
Online since: June 2011
Authors: Jiang Ming Jia, Yan Mei Liu, Yun Hui Li
The supply for key materials are normally much more variable than that of the products to which they belong, since the key material supply depends on customer configuration choices, supplier sourcing arrangements, technological changes, the availability of substitutes, and so on.
Acknowledgment The work is supported by Science Foundation of Zhejiang Sci-Tech University(ZSTU)under Grant No. 0803815-Y.
International Journal of Production Economics Vol. 70(2001), p. 163-174 [3] E.S.
Journal of Forecasting Vol. 4(1985), p. 1-28 [4] R.G.
Journal of Business and Economic Statistics Vol. 25(2008), p. 78-89
Acknowledgment The work is supported by Science Foundation of Zhejiang Sci-Tech University(ZSTU)under Grant No. 0803815-Y.
International Journal of Production Economics Vol. 70(2001), p. 163-174 [3] E.S.
Journal of Forecasting Vol. 4(1985), p. 1-28 [4] R.G.
Journal of Business and Economic Statistics Vol. 25(2008), p. 78-89
Online since: February 2014
Authors: Yu Qiu, Jing Qiu
The application of green material in modern architecture
Qiu Yu1,a Qiu Jing2,b
1School of Art & Design of Wuhan Institute of Technology, Hubei, China
2School of Architecture & Urban planning of Huazhong University of Science & Technology, China
a37650565@qq.com,b344518527@qq.com
Keywords: green materials modern architecture sustainable development
Abstract: The concept and the application of green material start from the modern times.
In green materials, thermal insulation materials also have incomparable advantages compared with traditional materials.
Social Science Journal of Shanxi Institution of High Education.
Science and technology innovation herald.
Green Materials and Materials Greening.
In green materials, thermal insulation materials also have incomparable advantages compared with traditional materials.
Social Science Journal of Shanxi Institution of High Education.
Science and technology innovation herald.
Green Materials and Materials Greening.
Online since: January 2012
Authors: Gang Xue, Sai Fei Wang, Chao Yue Zhao, Ran Yu
The results indicated that thermal performance of materials can be adjusted with the chemical composition of materials, and when the mass percentage of carbon nanotubes is 10%, the fractional of 26.77% of energy saving efficiency can be achieved.
1.
Table1 List of the mass ratio of raw materials in the mineral composite materials Reagents Weight percent(%) tourmaline 20 Fe2O3 53.6 MnO2 10 Co2O3 3.2 CeO2 13.2 Table 2 List of the mass of the mineral composite materials and CNTs No.
Liang, et al.: Advanced Materials Research, Vol. 58 (2009), p. 47 [4] W.W.
Liang: Journal of Functional Materials, Vol. 35(2004), p. 2579 [6] D.B.
Science, 1997, 278(5335): 100~103 [8] Dresselhaus M S: Nanotechnology, New tricks with nanotubes.
Table1 List of the mass ratio of raw materials in the mineral composite materials Reagents Weight percent(%) tourmaline 20 Fe2O3 53.6 MnO2 10 Co2O3 3.2 CeO2 13.2 Table 2 List of the mass of the mineral composite materials and CNTs No.
Liang, et al.: Advanced Materials Research, Vol. 58 (2009), p. 47 [4] W.W.
Liang: Journal of Functional Materials, Vol. 35(2004), p. 2579 [6] D.B.
Science, 1997, 278(5335): 100~103 [8] Dresselhaus M S: Nanotechnology, New tricks with nanotubes.
Online since: October 2014
Authors: Fang Huang, Bao Long Jiao, Dong Dong Wang
Influence of sodium hydroxide on the properties of FGD gypsum- slag composite materials
Fang Huang1,a, Baolong Jiao1,b, Dongdong Wang1,c
1College of materials and metallurgy, Guizhou University, Guiyang, Guizhou, China
ahfcy_215@163.com, b 254969739@qq.com, c1126948743@qq.com
Keywords: FGD gypsum; Slag; Composite materials
Abstract.
Raw Materials and Test Methods Raw Materials.
The main components of raw materials are shown in Table 1.
Kostic-Pulek: Journal of Physics and Chemistry of Solids Vol. 68 (2007), p.1121-1125.
[3] Huang Sunkai , Yu Xinhao: New Building Materials, (2005), p. 27-28.
Raw Materials and Test Methods Raw Materials.
The main components of raw materials are shown in Table 1.
Kostic-Pulek: Journal of Physics and Chemistry of Solids Vol. 68 (2007), p.1121-1125.
[3] Huang Sunkai , Yu Xinhao: New Building Materials, (2005), p. 27-28.
Online since: May 2011
Authors: Yuan Lin An, Wen Jian Wu, Zhi Ming Liu, Gan Wang
Journal of Materials Science Vol.32 (1997), p.2693
[4] S.
Journal of Materials Science Vol.27 (1992), p. 4598
Journal of Materials Science Vol.40 (2005), p.5249 [8] B.L.Zhou.
Journal of Materials Science Vol. 29 (1994), p.5990
Materials Science and Engineering C (2000), p.9.
Journal of Materials Science Vol.27 (1992), p. 4598
Journal of Materials Science Vol.40 (2005), p.5249 [8] B.L.Zhou.
Journal of Materials Science Vol. 29 (1994), p.5990
Materials Science and Engineering C (2000), p.9.
Online since: June 2025
Authors: Attila Debreceni, Sándor Bodzás
However, this method is enabled by many affordable materials and machines, making it optimal for cheap and fast prototyping [1, 7].
One of the most important differences between SLS and FDM or SLA is the ability of SLS to use metallic and non-metallic materials as the base material.
In addition to these, the properties of the materials used also play a prominent role.
Liu, “Rapid prototyping of continuous carbon fiber reinforced polylactic acid composites by 3D printing,” Journal of Materials Processing Technology, vol. 238, pp. 218-225, 2016/12/01/, 2016
Patterson, “Perspective on 3D printing of separation membranes and comparison to related unconventional fabrication techniques,” Journal of Membrane Science, vol. 523, pp. 596-613, 2017
One of the most important differences between SLS and FDM or SLA is the ability of SLS to use metallic and non-metallic materials as the base material.
In addition to these, the properties of the materials used also play a prominent role.
Liu, “Rapid prototyping of continuous carbon fiber reinforced polylactic acid composites by 3D printing,” Journal of Materials Processing Technology, vol. 238, pp. 218-225, 2016/12/01/, 2016
Patterson, “Perspective on 3D printing of separation membranes and comparison to related unconventional fabrication techniques,” Journal of Membrane Science, vol. 523, pp. 596-613, 2017
Study on Mine Materials with Exploring for Future Development Direction of Resources Crisis on Mines
Online since: August 2013
Authors: Yu Xue Bao
Study on mine materials with exploring for future development direction of resources crisis on mines
YuXue Bao
(Liaoning Geology Engineering Vocational College, Dandong 118008, china)
Keywords: mine materials, resources crisis, mining enterprise, development direction
Abstract :The resources crisis mines is a necessary stage of mining enterprise development, the mine materials with exploring for future development direction of resources crisis on mines concerning the rise and fall of the country, The scientific analysis and beneficial exploration for future development direction of the resources crisis mines, which can provide reference for the future development of resources crisis mines.
1.
According to the international market price of mineral resources and the mine materials [3], Mining enterprises scientifically formulated with industrial index of the enterprise, dynamic production quality control of mine.
Second, According to the rules of market economy, mining enterprises control cost of the mine production and the mine materials.
Chinese should formulate relevant policies to encourage enterprises to speed up development, to looking for all kinds of mineral resources substitute and ease the resource crisis pressure, because of the great amount metal and the mine materials consumption [3]. 4.6 Go out of the country with its own advantages, explore the surrounding countries, mineral resources and the mine materials market In response to the grim situation of mineral resources in China, on one hand, we should strive to develop and make use of domestic resources, on the other hand also to seize the opportunity, make use of their own advantages to develop the international market, to explore the mine materials and mineral resources in the countries and regions rich.
Journal of architecture [J]. china.
According to the international market price of mineral resources and the mine materials [3], Mining enterprises scientifically formulated with industrial index of the enterprise, dynamic production quality control of mine.
Second, According to the rules of market economy, mining enterprises control cost of the mine production and the mine materials.
Chinese should formulate relevant policies to encourage enterprises to speed up development, to looking for all kinds of mineral resources substitute and ease the resource crisis pressure, because of the great amount metal and the mine materials consumption [3]. 4.6 Go out of the country with its own advantages, explore the surrounding countries, mineral resources and the mine materials market In response to the grim situation of mineral resources in China, on one hand, we should strive to develop and make use of domestic resources, on the other hand also to seize the opportunity, make use of their own advantages to develop the international market, to explore the mine materials and mineral resources in the countries and regions rich.
Journal of architecture [J]. china.