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Online since: February 2009
Authors: Min Wang, Li Gang Zhao, Dun Wen Zuo, Yu Li Sun
The Analysis on The Stability of Diamond Wire Saw Cutting Process tor The Silicon Zhao Ligang1,a, Zuo Dunwen1 , Sun Yuli1 and Wang Min1 1 College of Mechanical and Electrical Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing, 210016, China a cease@nuaa.edu.cn Keywords: Silicon wafers, Diamond wire saw, Material removal rate Abstract.
Hwnag simulated the single abrasive cutting the ceramic at a certain angle.
References [1] Jakubowski, A , Lukasiak, L and Jurczak, M: Proceedings of the SPIE-The International Society for Optical Engineering, Vol.3975(2000), pt.1-2,p.297-302 [2] Lin Bin, Lin Bin and Yu Siyuan: Diamond & Abrasives Engineering, Vol.127 (2002), p. 44-45 [3] Shi Xingkuan, Teng Sen and Li Yaqin: Aviation Precision Manufacturing Technology, Vol.32(1996.04),p.10-13 [4] Xu Ke wei, Zhu Xun sheng and Zhao Bo et al: Journal of Shanghai Jiaotong University,Vol.35(2001.12),p.1838-1841 [5] Huo Fengwei: Study on the Mechanism of Ductile Mode Grinding of Silicon Wafers(Ph.D., Dalian University Of Technology, China 2006), p
[6] P.S.Pizani and R.Jasinevieuis:Journal of Materials Seienee Letters.Vol.18(1999), p.1185-1187 [7] Wang Jiugen and Rymuza Z:Tribology.Vol.21(2001.6), p.488-490 [8] Chen Minjun, Dong shen and Li Dan: Aviation precision manufacturing technology.Vol.36(2000.2), p.8-11 [9] Luo Xichun, Liang Yingchun and Dong shen: Aviation precision manufacturing technology.Vol.36(2000.3), p.21-24 [10] M.Huerta and S.Malkin:Ameriean Soeiety of Meehanieal Engineers.
Online since: September 2021
Authors: Ojo Sunday Issac Fayomi, Khadijah Tolulope Dauda, Kunle Michael Oluwasegun, Mojisola Olubunmi Nkiko
Acknowledgement The authors appreciate gracefully the financial support of Covenant University and Surface Engineering Research Laboratory, Department of Mechanical Engineering, Covenant University for equipment usage References [1] O.
Journal of Engineering Science and Technology, 7(4), (2012) 517–518
F.Ashby, Engineering Materials 1: An introduction to properties, applications and design.
Ceramics International, 35(8), (2009) 3407–3410
International Journal of Scientific and Engineering Research, 8(4), (2013) 12-18
Online since: October 2013
Authors: Andrzej Romanski, Wiktoria Ratuszek, Janusz Konstanty
Introduction Over the past years cobalt has been the most valued matrix metal in professional sintered diamond tools, such as saw blades, wire saws, core drills and grinding wheels used for cutting, drilling and shaping natural stone, concrete and ceramics.
Konstanty: Powder Metallurgy 56 (2013), p. 3 [3] Anon.: Marmomacchine International 18 (1997), p. 156 [4] I.E.
Stephenson, D Tyrala: Diamond Tooling Journal 3 (2011), p. 26 [6] D.
Fundal: Proc. 12th International Plansee Seminar ‘89, Wear Resistant Materials, Vol.2, Austria, (1989), p. 481 [10] E.
Allain et al.: Materials Science and Engineering A 387-389 (2004), p. 158
Online since: June 2013
Authors: Bernhard Sonderegger, Hassan Zamani, Christof Sommitsch, Jan Patrick Hermani
Along these practical efforts, a thermo-mechanical process model for the laser assisted machining of high strength metallic and ceramic materials has been set up, saving time consuming and expensive testing periods.
Wang, Titanium alloys and their machinability—a review, Journal of Materials Processing Technology, 68 (1997), 262–274
Zorev, Inter-relationship between shear processes occurring along tool face and shear plane in metal cutting, International Research in Production Engineering, 1963, 42-49
Girot, A New Material Model for 2D Numerical Simulation of Serrated Chip Formation when Machining Titanium Alloy Ti–6Al–4V, International Journal of Machine Tools & Manufacture,48 (2008), 275–288
Özel, Modified material constitutive models for serrated chip formation simulations and experimental validation in machining of titanium alloy Ti6Al4V, International Journal of Machine Tools and Manufacture 50 (2010), 943-960
Online since: January 2011
Authors: Mariyam Jameelah Ghazali, Shahrum Abdullah, S.E. Mat Kamal
Abdullah Department of Mechanical and Materials Engineering, Faculty of Engineering and Built Environments, University Kebangsaan Malaysia, 43600 UKM Bangi, Selangor, Malaysia.
Parrish: Mechanical Engineer’s Book, 11th ed.
Benko: Plasma Spraying of Metallic and Ceramics Materials (John Wiley & Sons Publication 1991)
Gadow: Journal of Surface & Coatings Technology.
Yumoto: ASM International, USA (2003).
Online since: May 2011
Authors: Guo Sheng Lu, Xun Wang, Xiao Lan Chen
Acknowledgement The financial support of the Aeismatic Engineering Technology Key Laboratory Open Foundation of Sichuan Province,China(project nmbers SKZ200902).
Journal of Rock Mechanics and Engineering. 2008, 28(1).
Journal of the American Ceramic Society. 2006, 89(8): 2571-2576 [5] Li Liyun, XU Fengguang, XIE Heping, et al.
International Conference on Fracture and Damage Mechanics; 2006, Harbin (CN) [6] Radaj D., Zhang S.
Engineering Fracture Mechanics. 1993, 44(5): 691-704
Online since: October 2014
Authors: Nur Mohamed Dhansay, Robert Tait, Thorsten Becker
Ti-6Al-4V is the most widely used of the titanium alloys and has replaced heavier, less serviceable and less cost effective materials and is the best all round performance for many engineering applications [4,5].
A quantitative relationship is required whereby the structural integrity of engineering systems may be assessed on its “fitness for purpose”.
Laoui, “Rapid manufacturing of metal components by laser forming,” International Journal of Machine Tools and Manufacture, vol. 46, no. 12–13, pp. 1459–1468, Oct. 2006
Maier, “On the mechanical behaviour of titanium alloy TiAl6V4 manufactured by selective laser melting: Fatigue resistance and crack growth performance,” International Journal of Fatigue, vol. 48, pp. 300–307, Mar. 2013
Sas, “Analysis of Fracture Toughness and Crack Propagation of Ti-6Al-4V produced by Selective Laser Melting,” Advanced Engineering Materials, vol. 13, 2011.
Online since: May 2016
Authors: Roszilah Ahmad, Lee Chia Wai
Effect of Chromium (II, III) Oxide and Cobalt Oxide on the Colour and Fineness of Cement Lee Chia Wai1, a and Roszilah Hamid1,b 1Department of Civil and Structural Engineering, Faculty of Engineering and Built Environment, Universiti Kebangsaan Malaysia, 43600, UKM Bangi, Selangor DE, Malaysia broszilahhamid@gmail.com, aroszilah@ukm.edu.my Keywords: white cement, coloured pigments, chromium (I, II) oxide, cobalt oxide, specific surface area, Blaine permeability.
So: Color expression characteristics and physical properties of colored mortar using ground granulated blast furnace slag and White Portland Cement, KSCE Journal of Civil Engineering, Volume 18, Issue 4 (2014), p. 1125-1132 [2] A.
Zerbino: Effect of pigments on the rheological properties of mortars for self-compacting concrete in 5th International RILEM Symposium on Self-Compacting Concrete, edited by G.
Lee: The Influence of Firing Conditions on the Color Properties of Pr-ZrSiO4 Pigments Synthesized Using Rice Husk Ash, Journal of the Korean Ceramic Society, Vol. 46, No. 4 (2009), p. 397-404 ecifications and methods of test [7] BS EN 12878:2014 Pigments for the colouring of building materials based on cement and/or lime
Online since: September 2011
Authors: Nouari Saheb, Abdullah Khalil, Abbas Hakeem
Müller, “Densification behaviour of pure molybdenum powder by spark plasma sintering,” International Journal of Refractory Metals and Hard Materials, vol. 28, Jul. 2010, pp. 550-557
Meng, “Rapid synthesis of Ti alloy with B addition by spark plasma sintering,” Materials Science and Engineering A, vol. 390, Jan. 2005, pp. 344-349
Lee, “Microstructure and mechanical properties of Cu-based bulk amorphous alloy billets fabricated by spark plasma sintering,” Materials Science and Engineering A, vol. 406, Oct. 2005, pp. 293-299
Gao, “Rapid sintering of nanocrystalline ZrO2(3Y) by spark plasma sintering,” Journal of the European Ceramic Society, vol. 20, Dec. 2000, pp. 2441-2445
Kim, “Superplastic gas pressure forming of fine-grained AZ61 magnesium alloy sheet,” Materials Science and Engineering A, vol. 372, May. 2004, pp. 15-20
Online since: October 2011
Authors: Konstantinos M. Paraskevopoulos, George Theodorou, Subramaniam Yugeswaran, Ourania Menti Goudouri, Nikolaos Kantiranis, Akira Kobayashi, Lambrini Papadopoulou
Optimisation of Plasma Sprayed Hydroxyapatite Coatings [2] Amit Kumar Nayak: International Journal of ChemTech Research CODEN( USA): IJCRGG ISSN : 0974-4290 Vol.2, No.2, (2010) pp 903-907, [3] T.
Paraskevopoulos, Mahmoud Rouabhia: Materials Science and Engineering C 29 (2009) p1759–1764 [5]Weng W, Baptista JL.
Journal of the American Ceramic Society Vol. 82, Issue 1, (1999), p27–32 [6] Bang-Yen Chou, Edward Chang: Surface and Coatings Technology 153 (2002) p84–92 [7].
Muller, Lenka Muller, Daniel Caillard, Egle Conforto: Journal of Crystal Growth 304 (2007) p464–471 [9] J.M.E.
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