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Online since: May 2009
Authors: Ju Long Yuan, De Sheng Chen, X.H. He, K.F. Tang, Fan Yang, Jia Jie Chen
Acknowledgements
This research is supported by the National Science Foundation (50375147, 50535040).
Gerlicka et al.: International Journal of Machine & Manufacture, [2] Vol. 46(2006), pp.151-169
Lv et al.: Key Engineering Materials, Vol. 304-305(2006), pp. 300-304
[7] J.L.Yuan, L.N.Chen, P.Zhao et al.: Key Engineering Materials, Vol. 259(2004), pp. 195-200
[8] B.H.Lv, J.L.Yuan,Y.X.Yao et al.: Key Engineering Material, Vol.304-305(2006),pp. 403-407.
Gerlicka et al.: International Journal of Machine & Manufacture, [2] Vol. 46(2006), pp.151-169
Lv et al.: Key Engineering Materials, Vol. 304-305(2006), pp. 300-304
[7] J.L.Yuan, L.N.Chen, P.Zhao et al.: Key Engineering Materials, Vol. 259(2004), pp. 195-200
[8] B.H.Lv, J.L.Yuan,Y.X.Yao et al.: Key Engineering Material, Vol.304-305(2006),pp. 403-407.
Online since: August 2009
Authors: Long Wu Chen, Jian Chun Zhu, Li Hua Gan, Ming Xian Liu, Zi Jie Xu, Zhi Xian Hao, Da Zhang Zhu
In this process,
inorganic semiconductor photoelectric materials used in solar cells have attracted more and more
attention due to its low cost and simple preparation method.
Experimental Method Materials.
Izumi: Journal of Neuroscience Methods Vol. 128 (2003), p. 1 [2] S.
Shah: Materials Letters Vol. 60 (2006), p. 3541 [3] V.
Geier: Science Vol. 310 (2005), p. 462 [10] B.
Experimental Method Materials.
Izumi: Journal of Neuroscience Methods Vol. 128 (2003), p. 1 [2] S.
Shah: Materials Letters Vol. 60 (2006), p. 3541 [3] V.
Geier: Science Vol. 310 (2005), p. 462 [10] B.
Online since: June 2012
Authors: Jian Hong Shen, Yue Hui Wang
Study of Nb-Zn-Mn Co-doped Ba(Ti,Zr)O3 Ceramics
Wang Yuehui 1, a, Shen Jianhong2, b
1 Department of Chemistry and Biology, University of Electronic Science and Technology of China Zhongshan Institute, Zhong Shan,528402, China
2 School of Materials Science and Engineering, Henan University of Technology, Zhengzhou 450001
awangzsedu@126.com, b sjhhnedu@126.com
Keywords: Barium titanate zirconium; Nb-Zn-Mn co-doped; Microstructure; Dielectric property.
On the other hand, the distortion of the perovskite lattice can strengthen the structure fluctuation of the materials, which may account for the diffusion phase transition characteristics of doped BZT ceramics. 4.
Materials Chemistry and Physics, Vol. 72 (2002), p. 346 [3] H.
Journal of Alloys and Compounds.
Materials Chemistry and Physics 51 (1997), 35 [7] T.
On the other hand, the distortion of the perovskite lattice can strengthen the structure fluctuation of the materials, which may account for the diffusion phase transition characteristics of doped BZT ceramics. 4.
Materials Chemistry and Physics, Vol. 72 (2002), p. 346 [3] H.
Journal of Alloys and Compounds.
Materials Chemistry and Physics 51 (1997), 35 [7] T.
Online since: September 2013
Authors: Vahid Rezazadeh, Salar Salahi, Ali Hosseinzadeh, Atabak Iranizad, Amir Safari
Journal of Materials Processing Technology, 2010. 210(4): p. 603-609
Materials Science and Engineering: R: Reports, 2005. 50(1–2): p. 1-78
Applied Mechanics and Materials. 2013;302:371-6
Applied Mechanics and Materials. 2013;302:365-70
Materials & Design. 2009;30:2211-21
Materials Science and Engineering: R: Reports, 2005. 50(1–2): p. 1-78
Applied Mechanics and Materials. 2013;302:371-6
Applied Mechanics and Materials. 2013;302:365-70
Materials & Design. 2009;30:2211-21
Online since: June 2023
Authors: Nikolay Petkov, Totka Bakalova, Michal Krafka, Hristo Bahchedzhiev, Ladislav Lemberk
However, the progress in both machining techniques and the materials to be machined has led to the development of multilayered coatings and, recently, to super-hard superlattice structures [13 - 15].
Fig. 1 Schematic representation of the deposition process Polished discs (Ø 20 mm × 5 mm thick) of EN ISO HS 6-5-2 tool steel, with a surface roughness Ra of 0.01µm and hardened to 64 – 65 HRC are used as the substrate materials.
The formation of these microparticles is due to the used technology for evaporation of cathode materials (Cr and Ti) - physical vapor deposition by electric arc [12, 35 -37].
Louda, Influence of Coating Deposition Parameters on the Mechanical and Tribological Properties of TiCN Coatings, Journal of Nano Research 49 (2017) 98-107
Lai, Effect of substrate surface roughness on the characteristics of CrN hard film, Materials Chemistry and Physics 43 (1996) 266 - 273
Fig. 1 Schematic representation of the deposition process Polished discs (Ø 20 mm × 5 mm thick) of EN ISO HS 6-5-2 tool steel, with a surface roughness Ra of 0.01µm and hardened to 64 – 65 HRC are used as the substrate materials.
The formation of these microparticles is due to the used technology for evaporation of cathode materials (Cr and Ti) - physical vapor deposition by electric arc [12, 35 -37].
Louda, Influence of Coating Deposition Parameters on the Mechanical and Tribological Properties of TiCN Coatings, Journal of Nano Research 49 (2017) 98-107
Lai, Effect of substrate surface roughness on the characteristics of CrN hard film, Materials Chemistry and Physics 43 (1996) 266 - 273
Online since: July 2014
Authors: Xiao Long, Qing Zhu, Xiao Yi Wang, Jin Hong Shi
(3) The suspended solid content also fluctuated greatly, and some materials in the water caused bad performance in the coagulation of the lime treatment and high turbidity of the product water (sometimes higher than that of the feed water, and this case occurred in every season).
Generally, the solid materials on the diaphragms are visible, and in a few cases, the diaphragms are pierced by suspended solid particles, which shows that suspended solids, colloids, and other SDI-related materials are not effectively removed from the reclaimed water after the lime treatment and high-efficiency filtering.
In particular, when the content of the suspended materials is high, the product water flux of HERO drops significantly.
After the adjustment was performed, sufficient concentrated water flux is guaranteed, and the deposition rate of the contaminants on the membrane surface is effectively lowered (especially when high suspended material content resulting from the fluctuations of the reclaimed water occurred).
[3] Liu, F.N., Zhang, G.L., Meng, Q., Zhang, H.Z., Performance of nanofiltration and reverse osmosis membranes in metal effluent treatment, Chinese Journal of Chemical Engineering, 2008, 16(3), 441-445 [4] Jehad Abbadi, Rinad Saleh, Sameh Nusseibeh, Muhannad Qurie, Mustafa Khamis, Rafik Karaman, Laura Scrano and Sabino Aurelio Bufo, Microbial Removal from Secondary Treated Wastewater Using a Hybrid System of Ultrafiltration and Reverse Osmosis, Journal of Environmental Science and Engineering,2012, A 1, 853-869 [5] Yi, L.L., Jiao, W.T., Chen, X.N., Chen, W.P., An overview of reclaimed water reuse in China, Journal of Environmental Sciences, 2011,23(10), 1585-1593
Generally, the solid materials on the diaphragms are visible, and in a few cases, the diaphragms are pierced by suspended solid particles, which shows that suspended solids, colloids, and other SDI-related materials are not effectively removed from the reclaimed water after the lime treatment and high-efficiency filtering.
In particular, when the content of the suspended materials is high, the product water flux of HERO drops significantly.
After the adjustment was performed, sufficient concentrated water flux is guaranteed, and the deposition rate of the contaminants on the membrane surface is effectively lowered (especially when high suspended material content resulting from the fluctuations of the reclaimed water occurred).
[3] Liu, F.N., Zhang, G.L., Meng, Q., Zhang, H.Z., Performance of nanofiltration and reverse osmosis membranes in metal effluent treatment, Chinese Journal of Chemical Engineering, 2008, 16(3), 441-445 [4] Jehad Abbadi, Rinad Saleh, Sameh Nusseibeh, Muhannad Qurie, Mustafa Khamis, Rafik Karaman, Laura Scrano and Sabino Aurelio Bufo, Microbial Removal from Secondary Treated Wastewater Using a Hybrid System of Ultrafiltration and Reverse Osmosis, Journal of Environmental Science and Engineering,2012, A 1, 853-869 [5] Yi, L.L., Jiao, W.T., Chen, X.N., Chen, W.P., An overview of reclaimed water reuse in China, Journal of Environmental Sciences, 2011,23(10), 1585-1593
Online since: June 2017
Authors: Martin Krejsa, Jiri Protivinsky, Monika Kubzova
Briefly, the model of a vertical boiler was made of polymethyl methacrylate PMMA material.
Krejsa, Material Study of a Short Seismic Link in a Dissipative Structure of a Vertical Industrial Boiler, Applied Mechanics and Materials. 623 (2014) 10-17.
Also available from: http://www.sciencedirect.com/science/journal/00401951/218/1
Kormanikova, Dynamic Time-History Response of Cylindrical Tank Considering Fluid - Structure Interaction Due to Earthquake, Applied Mechanics and Materials. 617 (2014) 66-69, DOI: 10.4028/www.scientific.net/AMM.617.66
Major, Modeling of Wave Propagation in the ADINA Software for Simple Elastic Structures, Advanced Materials Research. 1020 (2014) 171-176, DOI: 10.4028/ www.scientific.net/AMR.1020.171
Krejsa, Material Study of a Short Seismic Link in a Dissipative Structure of a Vertical Industrial Boiler, Applied Mechanics and Materials. 623 (2014) 10-17.
Also available from: http://www.sciencedirect.com/science/journal/00401951/218/1
Kormanikova, Dynamic Time-History Response of Cylindrical Tank Considering Fluid - Structure Interaction Due to Earthquake, Applied Mechanics and Materials. 617 (2014) 66-69, DOI: 10.4028/www.scientific.net/AMM.617.66
Major, Modeling of Wave Propagation in the ADINA Software for Simple Elastic Structures, Advanced Materials Research. 1020 (2014) 171-176, DOI: 10.4028/ www.scientific.net/AMR.1020.171
Online since: November 2025
Authors: Jana Sobotová, Ludmila Džuberová
Materials Science and Engineering: A. 2019, č. 764. https://doi.org/10.1016/j.msea.2019.138210
Journal of Materials Research and Technology. 2022, č. 21, s. 1141-1176.
Materials Science and Engineering: A. 2023, č. 882. https://doi.org/https://doi.org/10.1016/j.msea.2023.145486
Materials Science and Engineering: A. 2021, č. 818. https://doi.org/https://doi.org/10.1016/j.msea.2021.141371
Materials Science and Engineering: A. 2024, č. 895.
Journal of Materials Research and Technology. 2022, č. 21, s. 1141-1176.
Materials Science and Engineering: A. 2023, č. 882. https://doi.org/https://doi.org/10.1016/j.msea.2023.145486
Materials Science and Engineering: A. 2021, č. 818. https://doi.org/https://doi.org/10.1016/j.msea.2021.141371
Materials Science and Engineering: A. 2024, č. 895.
Online since: January 2022
Authors: Khairul Anuar Shariff, Nur Zulaikha Zaidi, Nur Raihan Ridzwan, Ahmed Hafedh Mohammed Mohammed
Materials and Methods
Preparation of acidic calcium phosphate solution.
Material Science Engineering C 75 (2017) 1411-1419
Key Engineering Materials, 696 (2016) 27-31
Materials Science Forum, 1010 (2020) 549-554
Key Engineering Materials, 829 (2019) 23-27
Material Science Engineering C 75 (2017) 1411-1419
Key Engineering Materials, 696 (2016) 27-31
Materials Science Forum, 1010 (2020) 549-554
Key Engineering Materials, 829 (2019) 23-27
Online since: May 2004
Authors: Maria V. Nikolić, Nebojsa Labus
INTRODUCTION
Alumina is one of the most widely used and investigated modern ceramic materials [1-4].
Diffusion in solid materials depends on the lattice configuration and atomic mass.
Acknowledgement This research was performed within the project No. 1832 entitled Synthesis of functional materials from the synthesis-structure-properties-application relationship, financed by the Ministry for Science, Technology and Development of the Republic of Serbia.
Soc., 55 (1972) 144-145 [2] Tsang-Tse Fang, Jyh-Tzong Shiue, Fuh-Shan Shiau, On the Evaluation of the Activation Energy of Sintering, Materials Chemistry and Physics, in press [3] J.
Ristic, Change of Activated Volume During Sintering, in Powder Metallurgy and Related High Temperature Materials, Oxford Press, New Delhi, 1985; p. 71 [11] M.
Diffusion in solid materials depends on the lattice configuration and atomic mass.
Acknowledgement This research was performed within the project No. 1832 entitled Synthesis of functional materials from the synthesis-structure-properties-application relationship, financed by the Ministry for Science, Technology and Development of the Republic of Serbia.
Soc., 55 (1972) 144-145 [2] Tsang-Tse Fang, Jyh-Tzong Shiue, Fuh-Shan Shiau, On the Evaluation of the Activation Energy of Sintering, Materials Chemistry and Physics, in press [3] J.
Ristic, Change of Activated Volume During Sintering, in Powder Metallurgy and Related High Temperature Materials, Oxford Press, New Delhi, 1985; p. 71 [11] M.