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Online since: December 2011
Authors: Da Kao Yan, Rui Zhu Zhang, Jie Yang, Wan Shan Su, Zhi Meng Guo
The synroc materials are obtained by the method of self-propagating high-temperature synthesis (SHS)[5-7].
Raw material.
The chemical stability of the materials obtained was determined by the rate of the Sr,Ti and Cr ions leaching form the samples into the distilled water at 90℃.
The microstructures of the strontium titanate -based materials obtained by the reaction are shown in Figs.4 .It shows that the Strontium titanate phase is seen to be irregular gray tetragons (Fig4a ).
Commbustion synthesis of oxide materials for nuclear waste immobilization[J].Bull.
Raw material.
The chemical stability of the materials obtained was determined by the rate of the Sr,Ti and Cr ions leaching form the samples into the distilled water at 90℃.
The microstructures of the strontium titanate -based materials obtained by the reaction are shown in Figs.4 .It shows that the Strontium titanate phase is seen to be irregular gray tetragons (Fig4a ).
Commbustion synthesis of oxide materials for nuclear waste immobilization[J].Bull.
Online since: November 2011
Authors: Wei Jia Guo, Shao Jie Chen, Hai Long Wang, Xi Zhen Sun, Jun Wei Shi
[2] Changhong Li, Xinli Zhang, Zuoqiang Yao: Journal of University of Science and Technology Beijing.Vol.32(2010), p.158-163, in Chinese
[3] Yongjie Yang, Jun Chu, Dongzhi Xun: Journal of China Coal Society.
Montesi, Teng-fong Wong: Mechanics of Materials.Vol.25(1997),p. 199-214 [7] J.
[9] Jinan Wang, Suping Peng, Zhaoping Meng: Journal of University of Science and Technology Beijing.Vol.32( 2001),p.489-491, in Chinese
Chinese Journal of Geotechnical Engineering.
[3] Yongjie Yang, Jun Chu, Dongzhi Xun: Journal of China Coal Society.
Montesi, Teng-fong Wong: Mechanics of Materials.Vol.25(1997),p. 199-214 [7] J.
[9] Jinan Wang, Suping Peng, Zhaoping Meng: Journal of University of Science and Technology Beijing.Vol.32( 2001),p.489-491, in Chinese
Chinese Journal of Geotechnical Engineering.
Online since: July 2013
Authors: Atsushi Nakahira, Masato Tsujiguchi, Tadashi Kobashi, Junji Kanbara, Yasuhiko Utsumi, Nobuaki Kakimori
Now, the recycling technologies have highly developed, and the recovered waste materials can be back to its original materials or other materials.
And new materials and products have developed by studies of recycling technologies.
Therefore it is used as water clarification materials, soil conditioners and so on.
So zeolite A is expected to utilized as eco-friendly materials.
Yamashita, Journals of Materials Chemistry, A novel conversion Process for waste slag: Syhthesis of a hydrotalcite-like compound and zeolite from blast furnace slag and evaluation of adsoption properties, Journal of Materials Chemistry. 20 (2010) 5052-5062
And new materials and products have developed by studies of recycling technologies.
Therefore it is used as water clarification materials, soil conditioners and so on.
So zeolite A is expected to utilized as eco-friendly materials.
Yamashita, Journals of Materials Chemistry, A novel conversion Process for waste slag: Syhthesis of a hydrotalcite-like compound and zeolite from blast furnace slag and evaluation of adsoption properties, Journal of Materials Chemistry. 20 (2010) 5052-5062
Online since: August 2019
Authors: Pravin R. Lokhande, G. Deenadayalan, Sethuraman Balaguru
Diogo Montalvao et al. [19] used finite element method for analysis of cyclic performance Ni-Ti rotary files made up of different materials.
Diogo Montalvao, A study on the influence of Ni-Ti M-Wire in the flexural fatigue life of endodontic rotary files by using finite element analysis, Materials Science and Engineering, 40 (2014) 452-57
Leroy, A.M.F., An analytical mechanical model to describe the response of Ni Ti rotary endodontic files in a curved root canal, Materials Science and Engineering. 32 (2012) 1594-600
Montalvao D, Shengwen Q, A study on the influence of Ni–Ti M-Wire in the flexural fatigue life of endodontic rotary files by using FEA, Materials Science and Engg. 40 (2014 ) 172-79
Moinzadeh, A.T., Zerbst, Porosity distribution in root canals filled with gutta percha and calcium silicate cement, Dental Materials. 31 (2015 ) 1100-08.
Diogo Montalvao, A study on the influence of Ni-Ti M-Wire in the flexural fatigue life of endodontic rotary files by using finite element analysis, Materials Science and Engineering, 40 (2014) 452-57
Leroy, A.M.F., An analytical mechanical model to describe the response of Ni Ti rotary endodontic files in a curved root canal, Materials Science and Engineering. 32 (2012) 1594-600
Montalvao D, Shengwen Q, A study on the influence of Ni–Ti M-Wire in the flexural fatigue life of endodontic rotary files by using FEA, Materials Science and Engg. 40 (2014 ) 172-79
Moinzadeh, A.T., Zerbst, Porosity distribution in root canals filled with gutta percha and calcium silicate cement, Dental Materials. 31 (2015 ) 1100-08.
Online since: December 2011
Authors: Ming Quan Ye, Ai Jun Han, Zhu Bo Liu, Chen Wang
Experimental section
Reagents and materials.
Davar: Journal of Sol-Gel Science and Technology Vol. 52 (2009) , p.321–327 [12] K.
Joerg: Journal of the European Ceramic Society Vol. 27 (2007), p. 951–958 [13] Marcos Zayat and David Levy: Journal of Sol-Gel Science and Technology Vol. 25(2002), p.201–206 [14] M.
Chemlal: Materials Research Bulletin Vol. 35(2000),p.2515-2523 [16] M. lade, H.
Han: Dyes and Pigments Vol. 75 (2007), p. 766-769 [18] Zhizhan Chen, Erwei Shi, Wenjun Li, Yanqing Zheng, Jiyong Zhuang, Bing Xiao, Lianan Tang: Materials Science and Engineering B Vol. 107 (2004), p. 217–223 [19] R.E.
Davar: Journal of Sol-Gel Science and Technology Vol. 52 (2009) , p.321–327 [12] K.
Joerg: Journal of the European Ceramic Society Vol. 27 (2007), p. 951–958 [13] Marcos Zayat and David Levy: Journal of Sol-Gel Science and Technology Vol. 25(2002), p.201–206 [14] M.
Chemlal: Materials Research Bulletin Vol. 35(2000),p.2515-2523 [16] M. lade, H.
Han: Dyes and Pigments Vol. 75 (2007), p. 766-769 [18] Zhizhan Chen, Erwei Shi, Wenjun Li, Yanqing Zheng, Jiyong Zhuang, Bing Xiao, Lianan Tang: Materials Science and Engineering B Vol. 107 (2004), p. 217–223 [19] R.E.
Online since: June 2017
Authors: S.A. Naumov, V.Y. Sokolov, S.V. Mitrofanov, A.V. Sadchikov
., Building 10/3, Flat 81
ateploosu@mail.ru, bnaum0909@rambler.ru, clyohantron@mail.ru, dmitser2002@mail.ru
Keywords biogas burner, biogas combustion, ceramic gas burner, composite materials
Abstract.
At present widespread technology using ceramic materials [3-7].
Ceramic injection molding technology improves uniform distribution of the materials.
Different materials have different coefficients of thermal expansion which results in mechanical deformation of mounting points.
Yarkovich, Development of New Technologies For The Production of Composite Materials and Products by Methods of Power Metallurgy in the Institute of Power Metallurgy NAS of Belorussia, Mechanics of Machines, Mechanisms and Materials. 2 (23) (2013) 89-94.
At present widespread technology using ceramic materials [3-7].
Ceramic injection molding technology improves uniform distribution of the materials.
Different materials have different coefficients of thermal expansion which results in mechanical deformation of mounting points.
Yarkovich, Development of New Technologies For The Production of Composite Materials and Products by Methods of Power Metallurgy in the Institute of Power Metallurgy NAS of Belorussia, Mechanics of Machines, Mechanisms and Materials. 2 (23) (2013) 89-94.
Online since: October 2014
Authors: Shu Liang Zang, Guo Bi Li, Peng Cheng, Shi Dong Wang, Qiang Wang
Synthesis and Preparation of Desulfurization concerned Naphthenic Acid Type Ionic Liquid
Qiang Wang1, Li Guobi2, Peng Cheng3,
Shidong Wang1, and Shu-liang Zang1,a*
1 School of Chemistry and Materials Science, Liaoning Shihua University, Fushun 113001, China
2 College of Chemistry and Chemical Engineering, Ocean University of China, Qingdao 266100, China
3 Key Laboratory of Rare and Scattered Elements, College of Chemistry, Liaoning University, Shenyang 110036, China
armonline@126.com
Keywords: Snaphthenic Acid, Corrosion, Imidazole, Ionic Liquid, Synthesis
Abstract.
Wu: Journal of oil (oil processing) Vol. 25 (2009), p. 731—735
[8] X.Li,X.Zhang,Q.Yuan: Journal of petroleum university (natural science edition) Vol. 28 (2004), p. 99—112
Qi: Journal of process engineering Vol. 4 (2004), p. 401—406
Ren: Journal of process engineering Vol.3 (2003), p. 218—221
Wu: Journal of oil (oil processing) Vol. 25 (2009), p. 731—735
[8] X.Li,X.Zhang,Q.Yuan: Journal of petroleum university (natural science edition) Vol. 28 (2004), p. 99—112
Qi: Journal of process engineering Vol. 4 (2004), p. 401—406
Ren: Journal of process engineering Vol.3 (2003), p. 218—221
Online since: April 2021
Authors: Hui Chen, Moritz Kruse, Jonas Lehmann, Noomane Ben Khalifa
Korolkov, The effect of surface engineering treatments on the fatigue behavior of 2024-T351 aluminum alloy, Journal of materials Engineering and performance, vol. 16, no. 1, 2007, pp. 30–34
Ritchie, On the influence of mechanical surface treatments—deep rolling and laser shock peening—on the fatigue behavior of Ti–6Al–4V at ambient and elevated temperatures, Materials Science and Engineering: A, vol. 355, 1-2, 2003, pp. 216–230
Altenberger, Comparison of the fatigue behavior and residual stress stability of laser-shock peened and deep rolled austenitic stainless steel AISI 304 in the temperature range 25–600 C, Materials Science and Engineering: A, vol. 465, 1-2, 2007, pp. 176–182
Tekkaya, New incremental methods for springback compensation by stress superposition, International Journal of Material Forming, vol. 2, no. 1, 2009, p. 817
Reyes, Ball-burnishing effect on deep residual stress on AISI 1038 and AA2017-T4, Materials and Manufacturing Processes, vol. 32, no. 11, 2017, pp. 1279–1289
Ritchie, On the influence of mechanical surface treatments—deep rolling and laser shock peening—on the fatigue behavior of Ti–6Al–4V at ambient and elevated temperatures, Materials Science and Engineering: A, vol. 355, 1-2, 2003, pp. 216–230
Altenberger, Comparison of the fatigue behavior and residual stress stability of laser-shock peened and deep rolled austenitic stainless steel AISI 304 in the temperature range 25–600 C, Materials Science and Engineering: A, vol. 465, 1-2, 2007, pp. 176–182
Tekkaya, New incremental methods for springback compensation by stress superposition, International Journal of Material Forming, vol. 2, no. 1, 2009, p. 817
Reyes, Ball-burnishing effect on deep residual stress on AISI 1038 and AA2017-T4, Materials and Manufacturing Processes, vol. 32, no. 11, 2017, pp. 1279–1289
Online since: October 2010
Authors: Ju Long Yuan, Bing Hai Lv, Hong Wei Fan, Q.F. Deng, W.F. Yao
It can be met the requirement of high precision machining for
advanced ceramic materials, hard and brittle machining materials.
It can improve uniformity and precision machining, reduce damage and cost for structural ceramics, optical glass, hard and brittle machining materials and so on.
In addition, Z is a kind of polishing materials, it would be have a good polishing effect and to improve the surface quality.
It can meet the requirements of high uniformity, low damage, low-cost, high precision machining for advanced ceramic materials, hard and brittle machining materials and so on.
Acknowledgements This work is supported by the National Natural Science Foundation of China (50705028).
It can improve uniformity and precision machining, reduce damage and cost for structural ceramics, optical glass, hard and brittle machining materials and so on.
In addition, Z is a kind of polishing materials, it would be have a good polishing effect and to improve the surface quality.
It can meet the requirements of high uniformity, low damage, low-cost, high precision machining for advanced ceramic materials, hard and brittle machining materials and so on.
Acknowledgements This work is supported by the National Natural Science Foundation of China (50705028).
Online since: May 2018
Authors: Shuo Li, Qiang Hu, Li Min Wang, Bin Zhang, Shao Ming Zhang, Jing Guo Zhang, He Dai
Electrocatalytic Properties of Nickel Foam-Based Ni-Mo, Ni +Mo and Ni+Mo/Ni-Mo Electrodes for Hydrogen Evolution Reaction
Jingguo Zhang1,2,a, Shaoming Zhang2,b, Shuo Li1,2,c*, He Dai1,2,d, Qiang Hu1,2,e, Bin Zhang1,2,f and Limin Wang1,2,g
1GRIPM Advanced Materials Co.
Acknowledgments This study was financially supported by the Program of International S&T Cooperation of China (No.2014DFR51130), the Science and Technology Planning Project of Beijing (No.Z161100001116080) and the Science and Technology Major Project of Beijing (No.Z171100002017014).
Zhang, Recent progress in alkaline water electrolysis for hydrogen production and applications, Progress in Energy and Combustion Science 36 (2010) 307-326
Janik-Czachor, Hydrogen evolution on hot and cold consolidated Ni-Mo alloys produced by mechanical alloying, Materials Science & Engineering A 300 (2001) 105-112
Guo, Electrodeposition of amorphous Ni-Mo alloy, Chinese Journal of Plationg and Finishing 16 (1994) 9-12
Acknowledgments This study was financially supported by the Program of International S&T Cooperation of China (No.2014DFR51130), the Science and Technology Planning Project of Beijing (No.Z161100001116080) and the Science and Technology Major Project of Beijing (No.Z171100002017014).
Zhang, Recent progress in alkaline water electrolysis for hydrogen production and applications, Progress in Energy and Combustion Science 36 (2010) 307-326
Janik-Czachor, Hydrogen evolution on hot and cold consolidated Ni-Mo alloys produced by mechanical alloying, Materials Science & Engineering A 300 (2001) 105-112
Guo, Electrodeposition of amorphous Ni-Mo alloy, Chinese Journal of Plationg and Finishing 16 (1994) 9-12