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Online since: June 2018
Authors: P. Shreenivasa Rao, P.V.J. Mohan Rao, Y. Srinivasa Rao
Shreenivasa Rao1,a*, P.V.J Mohan Rao2, Y.Srinivasa Rao3 1Department of Mechanical Engineering, Avanthi’s St.
Theressa Institute of engineering and technology, Garividi, India. 2Department of Marine Engineering, Andhra University (AU), Visakhapatnam, India. 3Department of Mechanical Engineering, Avanthi’s St.
Turning is a mostly used metal removal process in the engineering industry that involves generation of high temperature and cutting forces.
Liang, Modelling of cutting temperature in near-dry machining, Journal of Manufacturing Science and Engineering 128(2006) 416-424
Jianhua, Self-lubrication of sintered ceramic tools with CaF2 additions in dry cutting, International Journal of Machine Tools and Manufacture (2005) 1-7
Online since: November 2017
Authors: Besim Ben-Nissan, Wolfgang H. Müller, Innocent Jacob Macha
Materials Science and Engineering: C. 29 (2009) 1959-64
Advanced Engineering Materials. 13 (2011) 93-9
Journal of tissue engineering and regenerative medicine. 11 (2017) 1723-31
International journal of pharmaceutics. 364 (2008) 328-43
Industrial & Engineering Chemistry Research. 53 (2014) 15374-82.
Online since: January 2017
Authors: Qing Song Ma, Kuan Hong Zeng, Xiao Lv, Zhong Quan Li, Song Lin Liang
Liu: Journal of Ceramics Vol. 32 (2011) No.4, p. 615-620 (In Chinese) [3] M.O.
James: Journal of Materials Science Vol. 32 (1997), p. 3361-3368 [5] J.
Hu: Rare Metal Materials and Engineering Vol. 33 (2004) No.S3, p. 111-114 (In Chinese) [8] K.W.
Liu: Ceramics International Vol. 40 (2014) No.5, p. 7203-7212 [11] S.L.
Dai: Rare Metal Materials and Engineering to be published [14] H.
Online since: March 2012
Authors: Niyomwas Sutham, Pajaree Kerdkool
Effect of CaF2 in Precursors on Steel Pipe Lined Fe-Al Intermetallic-TiB2-Al2O3 Composite Coating by Centrifugal-SHS Process Pajaree Kerdkool1,3,a and Sutham Niyomwas2,3,b 1Department of Mining and Materials Engineering 2Department of Mechanical Engineering 3Ceramic and Composite Materials Engineering Research Group (CMERG), Materials Engineering Research Center (MERC), Faculty of Engineering, Prince of Songkla University, Hat Yai, Songkhla, 90112 Thailand apaipai060@gmail.com, bsutham.n@psu.ac.th Keywords: Centrifugal-SHS, Composite pipe, Ceramic-lined pipe, Fe-Al intermetallic-TiB2-Al2O3 composite.
Acknowledgements The authors are pleased to acknowledge the financial support for this research from Ceramic and Composite Materials Engineering Research Group (CMERG), Faculty of Engineering, Prince of Songkla University (PSU).
Munir: Materials science and Engineering A Vol. 456, (2007), p. 332 [3] Y.F.
Yang: Materials Science and Engineering A Vol. 460-461, (2007), p. 130 [4] Z.D.
Niyomwas: International Journal of Self-Propagating High-Temperature Synthesis Vol. 19(2), (2010), p. 152 [6] W.
Online since: April 2015
Authors: Fatih Sevim, Adem Kara, Oguz Aksakal, Fatih Demir, Hayrettin Eroglu
Synthesis and Characterization of Nanofibres of 2zno·3B2O3·5H2O Ceramic Composite Using the Sol-Gel Processing and the Electrospinning Techniques Fatih Sevima*, Adem Karab, Oguz Aksakalb, Fatih Demira and Hayrettin Erogluc a,Atatürk University, Faculty of Engineering, Department of Chemical Engineering, 25240, Erzurum, Turkey bAtatürk University, Graduate School of Natural and Applied Sciences, Department of Nano-science and Nano-engineering, 25240 Erzurum, Turkey c,Atatürk University, Faculty of Engineering, Department of Biomedical Engineering, 25240, Erzurum, Turkey *Corresponding author Keywords: Nanofibers, Zinc borate composite, Sol-gel processing, Electrospinning.
Recently, the sol–gel method has been combined with the electrospinning technique to produce ultrafine polymer/ceramic nanofibers.
Electrospinning is a simple and inexpensive method for generating ultrafine fibers of various types of materials including polymer, polymer/ ceramic composites and ceramic fibers.
Sevimli, Structure Investigations of NiO/Al2O3/B2O3/SiO2 Composite Based on PVA Using Sol-Gel Processing and the Electrospinning Technique, Asian Journal of Chemistry; Vol. 26, No. 8 (2014) 2293-2295
Kulkarni, Nanocrystalline yttria stabilized zirconia by metal–PVA complexation, Ceramics International 36 (2010) 561–566
Online since: December 2012
Authors: Hong Gang Hao, Wen Shuai Hu, Hai Yan Tian, Yi Ren
A Dual-band LTCC Antenna with Cross Circuitous Structure Hong-gang Hao 1, Wen-shuai Hu 2 ,Hai-yan Tian3 , Yi Ren4 (1,2,3,4School of Optical and Electronic Engineering, Chongqing University of Posts and Telecommunications, China) 1haohg@cqupt.edu.cn, 2huiwenshuai666@126.com, 3kyz_0824@163.com 4renyi@cqupt.edu.cn Keywords: Low-temperature Co-fired Ceramic, Circuitous Patch, Miniaturization, Dual-band.
A compact dual-band antenna for ISM (2.45GHz) or WiMAX (3.15GHz) applications by low-temperature co-fired ceramic (LTCC) technology is presented in this paper.
Tentzeis and Joy Laskar, “Design of Compact Stacked-Patch Antennas in LTCC Multilayer Packaging Modules for Wireless Applications,” IEEE Transactions on Advenced Packaing, vol.27, NO.4,2004 [3] Shinho Yoon, Chulwoo Park, Minsu Kim, Kyungwon Kim, and Youngoo Yang, “Multi-band Internal Antenna for Mobile Phones Using a High Dielectric Material,” Proceedings of Asia-Pacific Microwave Conference 2010, pp.219-222, 7-10 Dec.2010 [4] S.P.Gonga, J.R.Qua, Y.X.Hua, Q.Y.Fua and D.X.Zhou, “Design of Triple-band LTCC Antenna Using Meander Line Structure for Mobile Handsets,” IEEE 2010 International Conference on Microwave and Millimeter Wave Technology, pp.370-372,2010 [5] Hai-yan Tian, Xiao-lin Lee.
Zhou, "Design of Triple-band LTCC Antenna Using Meander Line Structure for Mobile Handsets," IEEE 2010 International Conference on Microwave and Millimeter Wave Technology, pp.370-372, 2010 [7] Wen-Hsi Lee, Chi-Yi Su and Yi-Sen Chen, "A Study on Bandwidth Enhancement of 900/1800 Dual Band LTCC Chip Antenna by Using Equivalent Circuit Analysis," International Journal of RF and Microwave Computer-Aided Engineering, Vol.19, No.1, pp.120-127, January 2009 [8] S.P.Gong, J.R.Qu, Y.X.Hu, “Design of Triple-band LTCC Antenna Using Meander Line Structure for Mobile Handsets”, IEEE ICMMT 2010 Proceedings.
Online since: October 2011
Authors: Chun Guang Wang, Hong Chao Liu, De Min Yang, Cong Chen
The above units only developed prototypes for double pulse motor.But because the negative quality of PSD was so heavy that,it was difficult for engineering applications.
Among them,the 41st Institute has an outstanding research results and the conditions for engineering applications.
Review of multi-pulse solid rocket motor[J].Aerodynamic Missile Journal,1993,(01)
Journal of Propulsion Technology,1989,(04)
Design and experimental study on ceramic clapboard of pulse motor [J].Journal of Solid Rocket Technology,2010,(03).
Online since: April 2015
Authors: Aleksandr A. Dyakonov, Irina V. Shmidt
Different parts can be subject to repair: shafts, shafts bearing journals, cases bearing journals, covers, gear boxes covers, etc.
Digital pictures of the metallopolymers surface Material Digital picture Material Digital picture Belzona 1321 Devcon Ceramic L Diamant Ceramic FL Leo- Ceramic Table 2.
Metallopolymer type Filler particles average size 1 Belzona 1321 9 2 Devcon Ceramic L 6 3 Diamant Ceramic FL 13.5 4 Leo-Ceramic 5.5 Conclusions Microcutting mechanics and dispersed structure of metallopolymers analysis allows to conclude that metallopolymers microcutting mechanism differs from the one, typical for metals.
Shin Modeling of machining of composite materials: A review, International Journal of Machine Tools and Manufacture. 57 (2012), 102-121
D`yakonov Improvement of grinding speeds by assessing the machinability of materials, Russian Engineering Research. 32 (7-8) (2012), 604-607.
Online since: December 2013
Authors: Jun Wang, Chuan Zhen Huang, Wei Yi Li, Hong Tao Zhu
Wang, Abrasive Waterjet Machining of Engineering Materials, Trans Tech Publications, Uetikon-Zuerich, Switzerland, 2003
Geskin, State of the art of research and development in abrasive waterjet machining, Journal of Manufacturing Science and Engineering, Vol. 119 (1997), pp. 776-785
Hashish, Turning with abrasive waterjets - A first investigation, Journal of Engineering for Industry, Vol. 109 (4) (1987), pp. 281-290
Ansari, A Study on Turning with Abrasive Waterjets, Mechanical Engineering, Ph.D.
Wang, Predictive depth of jet penetration models for abrasive waterjet cutting of alumina ceramics, International Journal of Mechanical Sciences, Vol. 49 (3) (2007), pp. 306-316
Online since: June 2012
Authors: Peng Yun Song, Yang Ding
Journal of the European Ceramic Socitey, 27 (2007)831–836
Mechanical engineering materials, 2001, 25 (5):9-11.
Chinese Journalof Mechanical Engineering (3):81-84.
[27] Deng JX, Zhang H, Wu Z, Liu AH.International Journal of Refractory Metals and Hard Materials,2011
Lubrication Engineering,2005 (3):46-48.
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