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Online since: February 2006
Authors: Qi Lin Deng, K.K. Sun, G.C. Zhou, Jian Li Song, An Ning Xie
They can be used to machine very hard materials such as sintering alloy, CBN, optical glass, engineering ceramic and so on.
Scattergood: International Journal of Machine Tools & Manufacture, Vol.42 (2002), pp.1355-1362
[2] Hans Kurt To¨ nshoff, Thomas Friemuth: Precision Engineering, Vol.24 (2000), pp.58-61
Rahman: International Journal of Machine Tools & Manufacture, Vol.42 (2002), pp.935-943
Incropera: Transactions ASME Journal of Manufac-turing Science and Engineering, Vol.123 (2001), pp.639-646.
Online since: May 2009
Authors: Wan Li Xiong, Ju Long Yuan, Xue Bing Yang, Zhi Quan Hou
The procedures can be taken as a real time analytical tool for parametric study and preliminary engineering design of water-lubricated hybrid journal bearings.
Feng et al[5] have designed a water-lubricated hybrid bearing compensated with ceramic porous restrictor.
The aim of the present work is to provide an analytic tool for parametric study and preliminary engineering design of water-lubricated hybrid bearings for ultra-precision machine tool spindles.
Shitara: Tribology International,Vol. 31(1998), pp. 331-338
Engineering Tribology,Vol. 218(2004), pp.135-146
Online since: January 2015
Authors: Krzysztof Kubiak, Stanisław Roskosz, Jacek Nawrocki
Two identical ceramic shells with cored and solid blade airfoils were prepared (Fig. 2).
Ceramic shell Fig. 3.
Fintová, Casting defects and high temperature fatigue life of IN 713LC superalloy, International Journal of Fatigue 41 (2012) 47-51
Kianicova, Assessment of performance capability of turbine blades with protective coatings after overheating events, Engineering Failure Analysis 17 (2010) 1389-1396
Cygan, Influence of silicon carbide chills on solidification process and shrinkage porosity of castings made of nickel based superalloys, International Journal of Cast Metals Research (2013)
Online since: January 2020
Authors: Almaz Kozhonov, Anvar Samsaliev, Yulia I. Toporkova
The ceramic tube is installed coaxially to an area of electromagnetic impact.
For rotation of the ceramic pipe, an electric motor 15 is provided with a belt drive 16, and a regulator 17 for controlling the angle of inclination of the ceramic pipe.
Kingman, Recent Developments in Microwave Processing of Minerals, International Materials Reviews. 1 (2006) 1-12
Greenwood, Recent Developments in Microwave-Assisted Comminution, International Journal of Mineral Processing. 1-4 (2004) 71-83
A Review, Minerals Engineering. 11 (1998) 1081-1087.
Online since: March 2004
Authors: Cheng Zu Ren, S.W. Zhao, Z.Y. Wu, W.D. Jin, Xin Min Jin
Xu: The Theory and Application of Electrolytic Machining (National Defence Engineering Publishing, China 2001).
Kumar, et al: International Journal of Machine Tools & Manufacture Vol. 42 (2002), p. 935 [4] H.
Bandyopadhyay: Journal of Materials Processing Technology Vol. 57 (1996), p. 272 [5] H.
Ohmori: Journal of Materials Processing Technology Vol. 62 (1996), p. 315 [7] C.H.
Yu, et al: Chinese Mechanical Engineering Vol. 9 (1998), p. 70 (in Chinese) [8] S.G.
Online since: July 2022
Authors: Katsuyuki Kida, Takahiro Matsueda, Tomoya Matsui, Soji Matsubayashi, Ryota Hayashi
Duckworth, “Mixed-Mode Fracture of Ceramics in Diametral Compression”, Journal of American Ceramics Society, Vol. 69, No. 6, pp. 437-443, (1986)
Tohgo, “Fatigue Crack Initiation and Growth under Mixed Mode Loading in Aluminum Alloys 2017-T3 and 7075-T6”, Engineering Fracture Mechanics, Vol. 28, No. 5/6, pp. 721-732, (1987)
Maeda, “A new testing method to obtain mode II crack growth characteristics of hard materials”, Fatigue and Fracture of Engineering Materials and Structures, Vol. 27, No. 3, pp. 203-211, (2004)
Pavlou, “Mixed-mode I and II fatigue crack growth retardation due to overload: An experimental study”, International Journal of Fatigue, Vol. 129, pp. 1-14, (2019)
Yamakawa, “Static and fatigue strength of pre-cracked silicon nitride balls under pressure load”, International journal of Fatigue, Vol. 27, pp. 165-175, (2005)
Online since: August 2015
Authors: K. Rajkumar, P. Saravanamuthukumar, S. Javed Syed Ibrahim, Lakshmanan Poovazhgan, S. Santosh
Abrasive Assisted Electrochemical Machining of Al-B4C Nanocomposite K Rajkumar 1,a*, L Poovazhagan 2,b, P Saravanamuthukumar 3,c, S Javed Syed Ibrahim 4,d,S Santosh 5,e 1,2Associate Professor, Department of Mechanical Engineering, SSN College of Engineering Kalavakkam-603 110, Tamil Nadu, India 3,4,5PG Scholar, Department of Mechanical Engineering, SSN College of Engineering Kalavakkam-603 110, Tamil Nadu, India arajkumark@ssn.edu.in, bpoovazhaganl@ssn.edu.in, csaravana33mech@gmail.com, djavedsibrahim@gmail.com, esanth.2591@gmail.com Keywords: Nano-Boron carbide, electrochemical machining, Response Surface Methodology Abstract.
Moreover, the ceramic-particle reinforcements present in these materials significantly increase their wear resistance.
In his study, Al metal matrix reinforced by (20 vol%) 150 µm B4C ceramic particles recorded a hardness of 21(HRB) [10].
[6] Yong yang, Xiaochun Li et al., Ultrasonic cavitation based manufacturing of bulk Al matrix nanocomposites, Journal of Manufacturing Science and Engineering, 129 (2007) 497-501, [7] Yong yang, X.Li, An experimental determination of optimum processing parameters for Al/SiC metal matrix composites made using ultrasonic consolidation, Journal of Engineering materials and technology, 129 (2007) 538-549
[8] G.Cao, H.Konishi, X.Li, Recent developments on ultrasonic cavitations based solidification processing of bulk magnesium nanocomposites, International journal of metal casting (2008) 57-68
Online since: March 2011
Authors: Da Zhi Wu, Zhen Ying Zhang
Li, in: Environ Geol Engineering. 57(2009), p. 1911-1923 [3] X.
Guo, in: Journal of Geotechnical Engineering 20(5) (1998), p. 1-6 [4] S.
Eid et al, in: Journal of Geotechnical and Geo-environmental Engineering ASCE. 126(5) (2000), p. 397-407 [6] T.
Stark et al, in: Journal of Geotechnical and Geo-environmental Engineering ASCE. 127(9) (2000), p. 812-815 [7] M.
Jessberger et al, in: 5th International Landfill Symposium, Sardinia, Italy (1995), p. 731-743 [12] Z.
Online since: April 2013
Authors: Kok Fong Lim, Muchtar Andanastuti, Chou Yong Tan, Rusnah Mustaffa
Progress in biomedical engineering ; 4, ed.
Wright, The Science and Engineering of Materials2006: Cengage Learning
Materials Science and Engineering: C, 2002. 20(1-2): p. 187-193
Ceramics International, 2007. 33(6): p. 987-991
Ceramics International, 2011. 37(3): p. 935-942.
Online since: January 2013
Authors: Zhi Gang Yang, Meng Jie, Yan Liu, Hai Feng Xie
Design and experiment of fatigue testing apparatus driven by piezoelectric bimorph JIE Meng 1, 2,a, XIE Hai-feng 1,b, LIU Yan 1,3,c and YANG Zhi-gang 1,d 1 Mechanical Science and Engineering College, Jilin University, Changchun, China 2 College of Apparatusry and Electricity Engineering, Jilin Institute of Chemical Technology, Jilin, China 3School of Mechanical Engineering, Northeast Dianli University,Jilin,China ajiemeng1980@126.com, bxhf821@126.com, c lyjlict@163.com, dyzg@jlu.edu.cn Keywords: piezoelectric bimorph; high frequency; small and hard brittle components; fatigue testing apparatus Abstract.
Symposium of Japan ceramics academic conference, vol.109(2008), p.456-463
International Journal of Fatigue, vol.26(2004), p.477-486
[8] Kohji Minoshima, Yoshihiro Maekawa, Kenjiro Komai:International Journal of Fatigue, vol.22(2000),p.757-765
[13] Chung-Youb Kim, Ji-Ho Song, Do-Young Lee:International Journal of Fatigue,vol.31(2009), p.736-742
Showing 1791 to 1800 of 7310 items