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Online since: April 2015
Authors: Dong Hui Yang, Hui Wang, Wei Ping Chen, Zhong Yun Hu, Jian Qing Chen, Jing Hua Jiang, Aibin Ma
Experiments
Raw materials.
Banhart, Manufacture, characterization and application of cellular metals and metal foams, Progress in Materials Science. 46(6) (2001) 559-632
Jo, et al., Optimisation of process variables for manufacturing aluminium foam materials using aluminium scrap, Materials Science and Technology. 21(4) (2005) 495-499
Dunand, Mechanical properties of a density-graded replicated aluminum foam, Materials Science and Engineering: A. 489(1) (2008) 439-443
Journal of Materials Science. 47(1) (2012) 455-464
Banhart, Manufacture, characterization and application of cellular metals and metal foams, Progress in Materials Science. 46(6) (2001) 559-632
Jo, et al., Optimisation of process variables for manufacturing aluminium foam materials using aluminium scrap, Materials Science and Technology. 21(4) (2005) 495-499
Dunand, Mechanical properties of a density-graded replicated aluminum foam, Materials Science and Engineering: A. 489(1) (2008) 439-443
Journal of Materials Science. 47(1) (2012) 455-464
Online since: December 2025
Authors: Stanislav Sidnei, Ihor Nozhko, Vasyl Rotar, Mykola Grygorian
Mathematical modeling of fire-proof efficiency of coatings based on silicate composition, Materials Science Forum, 1006 MSF, 70–75.
Materials Science Forum, 968 MSF, 361–367.
Materials Science Forum, 1006 MSF, 107–116.
Materials Science and Engineering, 527(26) (2010) 6980‒6986.
[19] Luca Gambirasio, EgidioRizzi,An enhanced Johnson–Cook strength model for splitting strain rate and temperature effects on lower yield stress and plastic flow,Computational Materials Science, 113 (2016) 231‒265.
Materials Science Forum, 968 MSF, 361–367.
Materials Science Forum, 1006 MSF, 107–116.
Materials Science and Engineering, 527(26) (2010) 6980‒6986.
[19] Luca Gambirasio, EgidioRizzi,An enhanced Johnson–Cook strength model for splitting strain rate and temperature effects on lower yield stress and plastic flow,Computational Materials Science, 113 (2016) 231‒265.
Online since: August 2013
Authors: M.Sh. Nikhamkin, Leonid Voronov, Irina Semenova, Olga Lubchik
Both materials are used for the aircraft engine fan blades manufacture.
The Foreign Object Damage Project of the PRDA V HCF Materials and Life Methods Program.
Mechanics of Materials 37 (2005) 447–457
International Journal of Impact Engineering, 35 (2008), p. 487–498
Chinese Journal of Aeronautics 21(2008), р. 328-334
The Foreign Object Damage Project of the PRDA V HCF Materials and Life Methods Program.
Mechanics of Materials 37 (2005) 447–457
International Journal of Impact Engineering, 35 (2008), p. 487–498
Chinese Journal of Aeronautics 21(2008), р. 328-334
Online since: May 2012
Authors: Si Qing Liu, Bao Xu Song, Min Zhang, Wan Ping Wang
Current Situation and Outlook on Biological Treatment of Wastewater
in Metallic Mine
Siqing Liu1,a, Baoxu Song 1,*, Min Zhang1,b,Wanping Wang1,c
1 Department of Mineral Processing Engineering, Kunming University of Science and Technology, Kunming 650093, China
a690880140@qq.com, *Corresponding author: 647647@163.com, b282179895@qq.com, c578607690@qq.com
Keywords: Mining industry; Wastewater; Biological treatment
Abstract: Wastewater in mining and concentration operations is of high acidity, and contains a vast array of heavy metal ions, and some organic compounds.
Biosorption can be defined as the removal of metal or metalloid species, compounds and particulates from solution by biological material [9].
[5] Johnson and Hallberg: submitted to Reviews in Environmental Science and Biotechnology (2002) [6] Volesky, Bohumil in: Biosorption of Heavy Metals.
Florida (1990) [7] Velásquez, Lina, Dussan, Jenny: submitted to Journal of Hazardous Materials (2009)
[9] GaddGM: submitted to New Phytologist (1993) [10] Diaz E, in: Microbial biodegradation: Genomics and Molecular Biology, Caister Academic, Norfolk, UK (2008) [11] Baojun Wang, Huifang Yang: submitted to Journal of Chongqing Environmental Science (1996) (in Chinese) [12] Pin Wang, Fude Li: submitted to Journal of Environmental Science (1994) [13] Candy M p: submitted to Journal of Foreign Metal Mine (2000) (in Chinese) [14] Sergey Kalyuzhnyi, Claudia de Leon Fragoso, Jesug Rodriguez Martinez: Proc. 8th International Conf. on Anaerobic Digestion, 3, Sendai, Japan (1997) [15] Aoyu Tian, Jichun Chen: submitted to Journal of Environmental Technology (2003) (in Chinese)
Biosorption can be defined as the removal of metal or metalloid species, compounds and particulates from solution by biological material [9].
[5] Johnson and Hallberg: submitted to Reviews in Environmental Science and Biotechnology (2002) [6] Volesky, Bohumil in: Biosorption of Heavy Metals.
Florida (1990) [7] Velásquez, Lina, Dussan, Jenny: submitted to Journal of Hazardous Materials (2009)
[9] GaddGM: submitted to New Phytologist (1993) [10] Diaz E, in: Microbial biodegradation: Genomics and Molecular Biology, Caister Academic, Norfolk, UK (2008) [11] Baojun Wang, Huifang Yang: submitted to Journal of Chongqing Environmental Science (1996) (in Chinese) [12] Pin Wang, Fude Li: submitted to Journal of Environmental Science (1994) [13] Candy M p: submitted to Journal of Foreign Metal Mine (2000) (in Chinese) [14] Sergey Kalyuzhnyi, Claudia de Leon Fragoso, Jesug Rodriguez Martinez: Proc. 8th International Conf. on Anaerobic Digestion, 3, Sendai, Japan (1997) [15] Aoyu Tian, Jichun Chen: submitted to Journal of Environmental Technology (2003) (in Chinese)
Online since: August 2014
Authors: Guo Zhu Kuang, Shan Peng Song, Yan Feng Li, Fu Tao Qin, Zhi Jia Yu
Development of new material based on bionics has aroused researchers’interests in recent years.
Introduction Development of new material based on bionics has aroused researchers’interests in recent years.
This paper is supported by the National Natural Science Foundation of China ( 51376030).
Reference [1] L.Jiang, Super-hydrophobic nanoscale interface material, Science technology. 23 (2005) 4-8
Journal of Chemical Engineering of Chinese Universities (China), 2008, 22(1), 6-10
Introduction Development of new material based on bionics has aroused researchers’interests in recent years.
This paper is supported by the National Natural Science Foundation of China ( 51376030).
Reference [1] L.Jiang, Super-hydrophobic nanoscale interface material, Science technology. 23 (2005) 4-8
Journal of Chemical Engineering of Chinese Universities (China), 2008, 22(1), 6-10
Online since: October 2024
Authors: Saprizal Hadisaputra, Niko Prasetyo
Journal of Hazardous Materials 2016, 304, 134–149. https://doi.org/10.1016/j.jhazmat.2015.10.040
Journal of Energetic Materials 2018, 36 (2), 169–178. https://doi.org/10.1080/07370652.2017.1334720
Journal of Energetic Materials 2021, 39 (1), 85–99. https://doi.org/10.1080/07370652.2020.1762798
Electrochemical Synthesis of High-Nitrogen Materials and Energetic Materials.
Journal of Hazardous Materials 2020, 398, 122910. https://doi.org/10.1016/ j.jhazmat.2020.122910
Journal of Energetic Materials 2018, 36 (2), 169–178. https://doi.org/10.1080/07370652.2017.1334720
Journal of Energetic Materials 2021, 39 (1), 85–99. https://doi.org/10.1080/07370652.2020.1762798
Electrochemical Synthesis of High-Nitrogen Materials and Energetic Materials.
Journal of Hazardous Materials 2020, 398, 122910. https://doi.org/10.1016/ j.jhazmat.2020.122910
Online since: December 2013
Authors: Chih Ming Chen, Huey Ling Chang, Cheng Ho Chen
Composites are composed primarily of reinforcement and matrix materials.
Reinforcement materials are divided into two classes of glass fibers and carbon fibers, and the matrix materials are primarily thermoplastic and thermosetting resins.
Composite materials are widely used in this area.
Experimental Materials.
Gorga: Journal of Composite Materials, Vol.40 (2006), p.1511
Reinforcement materials are divided into two classes of glass fibers and carbon fibers, and the matrix materials are primarily thermoplastic and thermosetting resins.
Composite materials are widely used in this area.
Experimental Materials.
Gorga: Journal of Composite Materials, Vol.40 (2006), p.1511
Online since: January 2012
Authors: Lian Xiang Ma, Yuan Zheng Tang, Man Ding, Yan He
The EMD method is based on the linear response theory, using the Einstein or Green-Kubo formula to calculate thermal conductivity of bulk materials.
Many groups have studied the thermal conductivity of SiO2 materials by molecular dynamics simulations.
The molecular structures of amorphous and crystalline SiO2, which are built from SiO4 tetrahedron by Materials Studio program [9], are shown in figure 1.
Shintani, Computational Materials Science, 39 (2007) 334 [8] Information on http://lammps.sandia.gov [9] Information on http://accelrys.com/products/materials-studio/ [10] J.R.
Maruyama, International Journal of Thermal Sciences, 44 (2005) 547
Many groups have studied the thermal conductivity of SiO2 materials by molecular dynamics simulations.
The molecular structures of amorphous and crystalline SiO2, which are built from SiO4 tetrahedron by Materials Studio program [9], are shown in figure 1.
Shintani, Computational Materials Science, 39 (2007) 334 [8] Information on http://lammps.sandia.gov [9] Information on http://accelrys.com/products/materials-studio/ [10] J.R.
Maruyama, International Journal of Thermal Sciences, 44 (2005) 547
Online since: August 2013
Authors: Dong Ping Qiao, Xiao Juan Liu, Hao Li
The production process is an important part of manufacturing enterprise activities, beginning in the order received, through the manufacturing of raw materials and purchased part, ending at finished products warehouse.
In the production cycle, material flow is formed among different departments and ultimately rough and raw materials are converted into qualified products.
Industrial Engineering Journal, Vol. 13 (2010), p. 95-100 [3] Oliver Schönherr, Oliver Rose.
Journal of System Simulation,vol. 18 (2006),p. 1483-1488 [7] S.
Steiner, A practical guide to SysML: the systems modeling language, Elsevier Science (2008).
In the production cycle, material flow is formed among different departments and ultimately rough and raw materials are converted into qualified products.
Industrial Engineering Journal, Vol. 13 (2010), p. 95-100 [3] Oliver Schönherr, Oliver Rose.
Journal of System Simulation,vol. 18 (2006),p. 1483-1488 [7] S.
Steiner, A practical guide to SysML: the systems modeling language, Elsevier Science (2008).
Online since: August 2014
Authors: Nair Gomesh, M. Irwanto, N. Mariun, Y. M. Irwan, M. R. Mamat, U. Hashim, Syafinar Ramli
Natural dyes are also abundant, easily extracted and safe materials [7].
El-Ghamri, “PlantSeeds-Based Dye-Sensitized Solar Cells”, Materials Sciences and Applications, 2013, 4, 516-520 [11] H.
Ndamitso,” Photoelectric Characterization of Dye Sensitized Solar Cells Using Natural Dye from Pawpaw Leaf and Flame Tree Flower as Sensitizers”, Materials Science and Applications 3 (2012) 281-286
Sharma, “Dye-sensitized solar cell based on Rose Bengal dye and nanocrystalline “, Solar Energy Materials & Solar Cells 92 (2008) 909-913
Tennakone, “Shiso leaf pigments for dye-sensitized solid-state solar cell”, Solar Energy Materials & Solar Cells 90 (2006) 1220-1226
El-Ghamri, “PlantSeeds-Based Dye-Sensitized Solar Cells”, Materials Sciences and Applications, 2013, 4, 516-520 [11] H.
Ndamitso,” Photoelectric Characterization of Dye Sensitized Solar Cells Using Natural Dye from Pawpaw Leaf and Flame Tree Flower as Sensitizers”, Materials Science and Applications 3 (2012) 281-286
Sharma, “Dye-sensitized solar cell based on Rose Bengal dye and nanocrystalline “, Solar Energy Materials & Solar Cells 92 (2008) 909-913
Tennakone, “Shiso leaf pigments for dye-sensitized solid-state solar cell”, Solar Energy Materials & Solar Cells 90 (2006) 1220-1226