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Online since: November 2016
Authors: Nelcy D.S. Mohallem, Juliana B. da Silva, Cristiana P. Rezende
Since the past decade, ZnO nanoparticles have achieved a prominent position when used in ceramics and catalysts, due to their photoluminescent and photocatalytic properties with application in degradation of organic compounds.
[2] International Zinc Association: Zinc Oxide Applications, Belgica, 2011
Engineer Journal Vol. 144 (2008), p. 509
[2] International Zinc Association: Zinc Oxide Applications, Belgica, 2011
Engineer Journal Vol. 144 (2008), p. 509
Online since: November 2011
Authors: Bin Liang, Pu Yu Yao, Ning Zhang, Xing Yu Cui
Now a variety of hollow structure of materials have been prepared, these materials are ceramic materials (silicate carbide, nitrides, etc.), metal, magnetic materials and semiconductor materials (sulfur compounds, titanium dioxide, etc.), metal oxide, etc.
Moreover, in reaction engineering, the cavity of the magnetic granule with hollow micro/nanostructures are used as a small reactor cavity, so the chemical reaction is astricted in a small area.
Hu, “Enhanced room temperature hydrogen storage capacity of hollow nitrogen-containing carbon,” International journal of hydrogen energy, vol. 35, Nov. 2009, pp. 210-216, doi:10.1016/j.ijhydene.2009.10.042
Liu, “Adsorption and magnetic removal of neutral red dye from aqueous solution using Fe3O4 hollow nanospheres,” Journal of Hazardous Materials, vol. 181, Jun. 2010, pp. 1039–1050. doi:10.1016/j.jhazmat. 2010.05.019
Zhang, “Study on Low Density and Heat-resistant Ablative Coating,” CHINESE JOURNAL OF AERONAUTICS, vol. 18, Nov. 2005, pp. 372-377. doi:100029361 (2005) 0420372206
Moreover, in reaction engineering, the cavity of the magnetic granule with hollow micro/nanostructures are used as a small reactor cavity, so the chemical reaction is astricted in a small area.
Hu, “Enhanced room temperature hydrogen storage capacity of hollow nitrogen-containing carbon,” International journal of hydrogen energy, vol. 35, Nov. 2009, pp. 210-216, doi:10.1016/j.ijhydene.2009.10.042
Liu, “Adsorption and magnetic removal of neutral red dye from aqueous solution using Fe3O4 hollow nanospheres,” Journal of Hazardous Materials, vol. 181, Jun. 2010, pp. 1039–1050. doi:10.1016/j.jhazmat. 2010.05.019
Zhang, “Study on Low Density and Heat-resistant Ablative Coating,” CHINESE JOURNAL OF AERONAUTICS, vol. 18, Nov. 2005, pp. 372-377. doi:100029361 (2005) 0420372206
Online since: April 2014
Authors: Xu Zheng, Jin Fang Chen, Xiao Cai Yu, Dong Dong Hu, Xiao Jie Jin
Journal of Hazardous Materials. 164 (2009) 32-38
Ceramics International. 40 (2012) 429-435
Colloids and Surfaces A: Physicochemical and Engineering Aspects. 405 (2012) 1-5 [8] B.
Journal of Alloys and Compounds. 481(2009) 819-825
Journal of Alloys and Compounds. 508(2010) 587-591
Ceramics International. 40 (2012) 429-435
Colloids and Surfaces A: Physicochemical and Engineering Aspects. 405 (2012) 1-5 [8] B.
Journal of Alloys and Compounds. 481(2009) 819-825
Journal of Alloys and Compounds. 508(2010) 587-591
Online since: July 2011
Authors: Gürol Önal, Ilhan Asiltürk, Levent Çelik, Eyüb Canli
Regression Modeling of Surface Roughness in Grinding
İlhan ASİLTÜRK1, a, Levent ÇELİK1, Eyüb CANLI1, b, Gürol ÖNAL2, c
1 Selçuk University, Technical Education Faculty, Campus, 42075 Konya, TURKEY
2 Selçuk University, Engineering Faculty, Campus, 42075 Konya, TURKEY
aiasilturk@selcuk.edu.tr, becanli@selcuk.edu.tr, cgonal@selcuk.edu.tr
Key words: CNC grinding, surface roughness, regression modeling, grinding parameters
Abstract.
Koppal: Process Monitoring İn High Efficiency Deep Grinding- HEDG (General Engineering Research Institute, Liverpool John Moores University, United Kingdom 2007) [5] H.
Technical Education Faculty Machine Journal, Vol 198 (2000), p. 1-10 [9] H.
Rowe: International Journal of Machine Tools and Manufacture, Vol 36 (8) (1996), p. 871–882 [11] X.
Zhao: Journal Applied Mechanics and Materials, Vol 44 (2010), p. 47 [12] M.
Koppal: Process Monitoring İn High Efficiency Deep Grinding- HEDG (General Engineering Research Institute, Liverpool John Moores University, United Kingdom 2007) [5] H.
Technical Education Faculty Machine Journal, Vol 198 (2000), p. 1-10 [9] H.
Rowe: International Journal of Machine Tools and Manufacture, Vol 36 (8) (1996), p. 871–882 [11] X.
Zhao: Journal Applied Mechanics and Materials, Vol 44 (2010), p. 47 [12] M.
Online since: September 2020
Authors: Singh Amares, Bandar Tchari
Bandar2
1Faculty of Engineering and Built Environment, SEGi University, 47810 Petaling Jaya, Selangor
aamaressinghgill@segi.edu.my
Keywords: Solder; Sn-Bi, Sn-Bi+TiO2 nanoparticles; Shear strength, Vickers hardness
Abstract.
References [1] Yun, Z, Mordechay, S, Milan, P (2011), “Tin and Tin Alloys for Lead‐Free Solder - Modern Electroplating, pp. 139-204 [2] Chidambaram, V., Hattel, J. and Hald, J. (2011), “High-temperature lead-free solder alternatives”, Microelectronic Engineering, pp. 981-989
Kitazima, Pb-free solder of Sn±58Bi improved with Ag, in: Proceedings of the 9th International Microelectronics Conference, 24±26 April 1996, Omiya, Japan, pp. 252± 255
Journal of Materials Science: Materials in Electronics, 26(6), 3629-3637
Journal of Electronic Materials, 45(11), 5800-5810
References [1] Yun, Z, Mordechay, S, Milan, P (2011), “Tin and Tin Alloys for Lead‐Free Solder - Modern Electroplating, pp. 139-204 [2] Chidambaram, V., Hattel, J. and Hald, J. (2011), “High-temperature lead-free solder alternatives”, Microelectronic Engineering, pp. 981-989
Kitazima, Pb-free solder of Sn±58Bi improved with Ag, in: Proceedings of the 9th International Microelectronics Conference, 24±26 April 1996, Omiya, Japan, pp. 252± 255
Journal of Materials Science: Materials in Electronics, 26(6), 3629-3637
Journal of Electronic Materials, 45(11), 5800-5810
Online since: January 2022
Authors: Madhusudan Saranathan, S. Tamil Selvi, Pa Hari Krishna Achuthan, R. Abhishek, Adhitya Ravi
Abhishek3,d and Adhitya Ravi2,e
1Associate Professor, Department of Electrical and Electronics Engineering, Sri Sivasubramaniya Nadar College of Engineering, Chennai, India
2Department of Electrical and Electronics Engineering, Sri Sivasubramaniya Nadar College of Engineering, Chennai, India
3Department of Chemical Engineering, Sri Sivasubramaniya Nadar College of Engineering, Chennai, India
atamilselvis@ssn.edu.in, bmadhusudan183001048@eee.ssn.edu.in, chari183001031@eee.ssn.edu.in, dabi375644@gmail.com, eadhitya183001005@eee.ssn.edu.in.
The electrical insulation performance of polymer concrete can reach two times of the ceramic.
We would also like to acknowledge Shree Abirami Engineering Works for imparting us with all the knowledge about the oil tests and providing us the instruments for conducting the same.
C, “Experimental Evaluation on Dielectric and Thermal Characteristics of Nano Filter Added Transformer oil”, 2012 International Conference on High Voltage Engineering and Application, Shangai, China
Ser. 1706 012056 [10] Jaspreet Singh Maan, Sanjeev Singh, “Transformer Failure Analysis: Reasons and methods”, International Journal of Engineering Research and Technology, 2016, ISSN:2278-0181 [11] M Gunasekaran, “Specialized Polymer Concrete Composite Material for in-situ cleansing/improvement of Transformer oil”, CIRED2001, 18-21 June 2001, Conference Publication No. 482 [12] Hui Li et al., “Development staus and application polymer concrete”, International forum on Energy, Environment and sustainable development 2016
The electrical insulation performance of polymer concrete can reach two times of the ceramic.
We would also like to acknowledge Shree Abirami Engineering Works for imparting us with all the knowledge about the oil tests and providing us the instruments for conducting the same.
C, “Experimental Evaluation on Dielectric and Thermal Characteristics of Nano Filter Added Transformer oil”, 2012 International Conference on High Voltage Engineering and Application, Shangai, China
Ser. 1706 012056 [10] Jaspreet Singh Maan, Sanjeev Singh, “Transformer Failure Analysis: Reasons and methods”, International Journal of Engineering Research and Technology, 2016, ISSN:2278-0181 [11] M Gunasekaran, “Specialized Polymer Concrete Composite Material for in-situ cleansing/improvement of Transformer oil”, CIRED2001, 18-21 June 2001, Conference Publication No. 482 [12] Hui Li et al., “Development staus and application polymer concrete”, International forum on Energy, Environment and sustainable development 2016
Online since: February 2023
Authors: Shamo Tapdiqov, Maharat Huseynov, Fariz Ahmad, Sevda Kazimova
Advances in geopolymer materials: A comprehensive review, Journal of Traffic and Transportation Engineering (English Edition), Vol. 8, Issue 3, 2021, p.283-314
Ceramics International, 44 (14), (2018), p.16103-16118
Ghoghare, Review paper on multifunctional use of nano silica in concrete, International Journal of Engineering Science and Computing, 7 (4) (2017) 10780–10782
Al-Jalode, Ternary Alkali Aluminosilicate Cement Based on Rice Husk Ash, Slag and Coal Fly Ash, Journal of Building Engineering, 19 (2018) 36-41
Hatzignatiou, Rheological evaluation of a sodium silicate gel system for water management in mature, naturally-fractured oilfields, Journal of Petroleum Scinece and Engineering, 138 (2016) 218-233
Ceramics International, 44 (14), (2018), p.16103-16118
Ghoghare, Review paper on multifunctional use of nano silica in concrete, International Journal of Engineering Science and Computing, 7 (4) (2017) 10780–10782
Al-Jalode, Ternary Alkali Aluminosilicate Cement Based on Rice Husk Ash, Slag and Coal Fly Ash, Journal of Building Engineering, 19 (2018) 36-41
Hatzignatiou, Rheological evaluation of a sodium silicate gel system for water management in mature, naturally-fractured oilfields, Journal of Petroleum Scinece and Engineering, 138 (2016) 218-233
Online since: February 2012
Authors: Liu Zhao, Zhi Hong Ma, Li Gang Pan, Ping Han, Ji Hua Wang, Dong Wang
China
3 College of Food Science and Nutritional Engineering, China Agricultural University, Beijing 100083, P.
(in Chinese) [3] Nicoletta Sinelli, Lorenzo Cerretani, Valentina Di Egidio, Alessandra Bendini and Ernestina Casiraghi: Food Research International, 2010, 43: 369 – 375
(in Chinese) [7] Zhenfen Yu, Jingfan Sun, Yumin Bao, Li Zhang and Shan Sheng: Chinese Journal of Spectroscopy Laboratory, 2010, 27(6): 2545 – 2547.
Cuq: Journal of Cereal Science, 2008, 48: 678 – 685
[12] Cecilia Shiroma and Luis Rodriguez-Saona: Journal of Food Composition and Analysis, 2009, 22: 596 – 605.
(in Chinese) [3] Nicoletta Sinelli, Lorenzo Cerretani, Valentina Di Egidio, Alessandra Bendini and Ernestina Casiraghi: Food Research International, 2010, 43: 369 – 375
(in Chinese) [7] Zhenfen Yu, Jingfan Sun, Yumin Bao, Li Zhang and Shan Sheng: Chinese Journal of Spectroscopy Laboratory, 2010, 27(6): 2545 – 2547.
Cuq: Journal of Cereal Science, 2008, 48: 678 – 685
[12] Cecilia Shiroma and Luis Rodriguez-Saona: Journal of Food Composition and Analysis, 2009, 22: 596 – 605.
Online since: February 2011
Authors: Can Feng Zhou, Xiang Dong Jiao, Long Xue, Jia Qing Chen, Xiao Ming Fang
Around the non-consumable tungsten electrode with a diameter of 3.2 mm, there is a ceramic shroud through which higher argon is passed to create an inert atmosphere to protect the electrode from high atmospheric contamination.
Acknowledgements The authors would like to thank current and former sponsors of the Underwater Hyperbaric Welding Research programmers: Ministry of Science and Technology of the People’s Republic of China, National Natural Science Foundation of China, and Offshore Oil Engineering Co., Ltd..
[3]Woodward NJ, Yapp D, and Blackman S (2004), “Diverless Underwater GMA Welding for Pipeline Repair Using a Fillet Welding Sleeve,” ASME 5th (2004) International Pipeline Conference (IPC), Calgary , Alberta, Canada, Vol.2, pp 1475-1484
“Weld Metal Mechanical Properties in Hyperbaric GTAW of X70 Pipeline,” International Journal of Offshore and Polar Engineering, Vol. 16, No. 3, pp233-240
Acknowledgements The authors would like to thank current and former sponsors of the Underwater Hyperbaric Welding Research programmers: Ministry of Science and Technology of the People’s Republic of China, National Natural Science Foundation of China, and Offshore Oil Engineering Co., Ltd..
[3]Woodward NJ, Yapp D, and Blackman S (2004), “Diverless Underwater GMA Welding for Pipeline Repair Using a Fillet Welding Sleeve,” ASME 5th (2004) International Pipeline Conference (IPC), Calgary , Alberta, Canada, Vol.2, pp 1475-1484
“Weld Metal Mechanical Properties in Hyperbaric GTAW of X70 Pipeline,” International Journal of Offshore and Polar Engineering, Vol. 16, No. 3, pp233-240
Online since: January 2009
Authors: Shiuh Jer Huang, Chun Ming Chiu, M.C. Huang
Huang3, c
1
National Taiwan University of Science and Technology, Department of Mechanical Engineering,
No. 43, Keelung Road, Sec. 4, Taipei, Taiwan 106
2
National Taipei University of Technology, Dept. of Vehicle Engineering,
No. 1, Chung-Shiao E.
Lischinsky: Adaptive Friction Compensation with Partially Known Dynamic Friction Model, International Journal of Adaptive Control and Signal Processing, Vol. 11, pp. 65-80, 1997
[5] Haichang Gu and Gangbing Song: Adaptive Robust Sliding-mode Control of a Flexible Beam with PZT Sensor and Actuator, Proceeding of the IEEE International Symposium on Intelligent Control, pp. 78-83, Sept. 2004
[7] Rong-Jong Wai, Faa-Jeng Lin, Rou-Yong Duan, Kuan-Yun Hsieh and Jeng-Dao Lee: Robust Fuzzy -eural -etwork Control for Linear Ceramic Motor Drive via Backstepping Design Technique, IEEE Trans.
Lischinsky: Adaptive Friction Compensation with Partially Known Dynamic Friction Model, International Journal of Adaptive Control and Signal Processing, Vol. 11, pp. 65-80, 1997
[5] Haichang Gu and Gangbing Song: Adaptive Robust Sliding-mode Control of a Flexible Beam with PZT Sensor and Actuator, Proceeding of the IEEE International Symposium on Intelligent Control, pp. 78-83, Sept. 2004
[7] Rong-Jong Wai, Faa-Jeng Lin, Rou-Yong Duan, Kuan-Yun Hsieh and Jeng-Dao Lee: Robust Fuzzy -eural -etwork Control for Linear Ceramic Motor Drive via Backstepping Design Technique, IEEE Trans.