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Online since: December 2013
Authors: Muhammad Hussain Ismail, Nor Hafiez Mohamad Nor, N. Muhamad, M.A. Taib, Nur Atikah Abu Kasim
The support of the Advanced Manufacturing Technology Excellent Centre (AMTEx), Faculty of Mechanical Engineering is also gratefully acknowledged.
References [1] German, R.M., and Bose, A., Injection Molding of Metal and Ceramic.
Rahman and Murtadhahadi, Rheological Behavior Of SS316L Gas Atomized Powder In Bimodal Particle Size Distribution In A Composite Binder System, International Journal of Mechanical and Materials Engineering (IJMME), 3 (2008) 108-114
Amin, Khairur Rijal Jamaludin, and Norhamidi Muhamad, Rheological properties of SS316L MIM feedstock prepared with different particle sizes and powder loadings, Journal - The Institution of Engineers, Malaysia, 71 (2009) 74-86
Bagheri, Analysis of the rheological behavior and stability of 316L stainless steel-TiC powder injection molding feedstock, Materials Science and Engineering, 407 (2005) 105-113
References [1] German, R.M., and Bose, A., Injection Molding of Metal and Ceramic.
Rahman and Murtadhahadi, Rheological Behavior Of SS316L Gas Atomized Powder In Bimodal Particle Size Distribution In A Composite Binder System, International Journal of Mechanical and Materials Engineering (IJMME), 3 (2008) 108-114
Amin, Khairur Rijal Jamaludin, and Norhamidi Muhamad, Rheological properties of SS316L MIM feedstock prepared with different particle sizes and powder loadings, Journal - The Institution of Engineers, Malaysia, 71 (2009) 74-86
Bagheri, Analysis of the rheological behavior and stability of 316L stainless steel-TiC powder injection molding feedstock, Materials Science and Engineering, 407 (2005) 105-113
Online since: February 2017
Authors: György Czél, Mate Zattler
Set Point Based Material Selection Method in Case of Recycled Polypropylene Application
Gyorgy Czel1, a, Mate Zattler1, b
1Institute of Ceramic and Polymer Engineering, Miskolc University,
HU 3515 Miskolc-Egyetemvaros, Hungary
afemczel@uni-miskolc.hu, bzattler.mate@gmail.com
Keywords: technology set point, injection moulding, capillary rheometry, round capillary die, flow curve repeatability, recycled PP application.
Grizzuti: Effects of degree of recycling on the rheology and processability of thermoplastic polymers, Journal of Polymer Engineering 2003.
Acierno: Rheologycal and mechanical properties of recycled polypropylene, Polymer engineering and Science 1999 Volume 39, Issue 4. pp. 749-755
Iovenitti, Correlation of rheological and mechanical properties for blends of recycled HDPE and virgin polyolefins, Journal of Applied Polymer Scineces, 2001.
Luchetta: Determination of robust condition for injection moulding of recycled polypropylene, International journal of Material Forming 2008 Volume1. pp. 691-694 [8] www.hasco.com/gb/content/view/products_product_variants/16965
Grizzuti: Effects of degree of recycling on the rheology and processability of thermoplastic polymers, Journal of Polymer Engineering 2003.
Acierno: Rheologycal and mechanical properties of recycled polypropylene, Polymer engineering and Science 1999 Volume 39, Issue 4. pp. 749-755
Iovenitti, Correlation of rheological and mechanical properties for blends of recycled HDPE and virgin polyolefins, Journal of Applied Polymer Scineces, 2001.
Luchetta: Determination of robust condition for injection moulding of recycled polypropylene, International journal of Material Forming 2008 Volume1. pp. 691-694 [8] www.hasco.com/gb/content/view/products_product_variants/16965
Online since: December 2022
Authors: D. Prabhakaran, B.S. Raju, B. Somasundar, N. Jegadeeswaran
Study on Solid Particle Erosion Studies of Stellite-6 HVOF Coating on Titanium Alloy
Prabhakaran D.1.a, Jegadeeswaran N.2,b*, Somasundaram B.3,c
Raju B.S.4,d
1Research scholar, School of Mechanical Engineering, REVA University,
Bangalore, Karnataka, India
2Professor, School of Mechanical Engineering, REVA University, Bangalore, Karnataka, India
3Associate Professor, School of Mechanical Engineering, REVA University,
Bangalore, Karnataka, India
ahitharth59@gmail.com, bnjagadeeswaran@reva.edu.in ,csomasundarb@reva.edu.in, draju_bs@reva.edu.in
Keywords: Erosion, HVOF, Silica, Titanium alloy, Stellite-6 etc.,
Abstract.
Surface engineering of these components helps in protecting the components against above said environments.
Journal of Hydrogen Energy, 32 (2007) 3610-3621
Journal of Materials Processing Technology, 159 (3) (2005) 347-355
Solid particle erosion of high technology ceramics (Si3N4, glass bonded Al2O3 and MgF2).W.F.Adler (ed.), Erosion: Prevention and Useful Applications, ASTM STP 664, Philadelphia, (1978) 101-122. [11] Gulden, M.E.
Surface engineering of these components helps in protecting the components against above said environments.
Journal of Hydrogen Energy, 32 (2007) 3610-3621
Journal of Materials Processing Technology, 159 (3) (2005) 347-355
Solid particle erosion of high technology ceramics (Si3N4, glass bonded Al2O3 and MgF2).W.F.Adler (ed.), Erosion: Prevention and Useful Applications, ASTM STP 664, Philadelphia, (1978) 101-122. [11] Gulden, M.E.
Online since: June 2010
Authors: Julie M. Schoenung, Ka Ka Ma
Gell, Materials Science and Engineering A
342 (2003) 120-130
Levi, Journal of the European Ceramic Society 28 (2008) 1405-1419
Alexander, Materials Science and Engineering A 245 (1998) 201-211
Schoenung, Materials Science and Engineering: A 425 (2006) 94-106
Schoenung, Materials Science and Engineering: A 493 (2008) 207-214
Levi, Journal of the European Ceramic Society 28 (2008) 1405-1419
Alexander, Materials Science and Engineering A 245 (1998) 201-211
Schoenung, Materials Science and Engineering: A 425 (2006) 94-106
Schoenung, Materials Science and Engineering: A 493 (2008) 207-214
Online since: August 2013
Authors: Yuan Yu, Jia Xiang Liu
Chemical Engineering and Processing. 2005(44): 279-285
Journal of Rare Earths. 2010, 28 (04): 622-626
International Journal of Pharmaceutics. 2006, 310(1-2):72-80
Minerals Engineering. 2008, 21: 598-604
Journal of Chemical Industry and Engineering. 2011, 5: 1264-1268
Journal of Rare Earths. 2010, 28 (04): 622-626
International Journal of Pharmaceutics. 2006, 310(1-2):72-80
Minerals Engineering. 2008, 21: 598-604
Journal of Chemical Industry and Engineering. 2011, 5: 1264-1268
Online since: July 2020
Authors: Laxman B. Abhang, M. Hameedullah, Mohd Iqbal
Iqbal2,b* and Hameedullah M.3,c
1Mechanical Engineering Dept.
Loni, SPPU, PUNE, India 2Mechanical and Industrial Engineering, Faculty of Engineering, Universitas Syiah Kuala, Banda Aceh, Indonesia 3Mechanical Engineering Dept.
[6] L B Abhang, M Hameedullah, Chip-tool interface temperature prediction model for turning process, International Journal of Emngineering Science and Technology 2(4), (2010), pp. 382-393 [7] D.
Hameedullah, Power prediction model for Turning En-31 steel Using Response surface methodology, Journal of Engineering Science and Technology Review, 3 (1), (2010), pp. 116-122 [11] Patel, J., & Maniya, K. (2015).
Arabian Journal for Science and Engineering. (2017), pp. 1-7
Loni, SPPU, PUNE, India 2Mechanical and Industrial Engineering, Faculty of Engineering, Universitas Syiah Kuala, Banda Aceh, Indonesia 3Mechanical Engineering Dept.
[6] L B Abhang, M Hameedullah, Chip-tool interface temperature prediction model for turning process, International Journal of Emngineering Science and Technology 2(4), (2010), pp. 382-393 [7] D.
Hameedullah, Power prediction model for Turning En-31 steel Using Response surface methodology, Journal of Engineering Science and Technology Review, 3 (1), (2010), pp. 116-122 [11] Patel, J., & Maniya, K. (2015).
Arabian Journal for Science and Engineering. (2017), pp. 1-7
Online since: April 2022
Authors: Peng Tao Qi, Ming Wang, Liang Du, Xue Ming Zhang, Hong Ling Bao
Ceramics International, 2021, 47(5): 5870-5895
Journal of Energy Chemistry, 2021, 56(38): 383-390
Chemical Engineering Journal, 2021, 420(02):746-755
Journal of Inorganic Materials. 2018, 33(05): 475-482
ACS Sustainable Chemistry & Engineering, 2018, 7(1): 916-924
Journal of Energy Chemistry, 2021, 56(38): 383-390
Chemical Engineering Journal, 2021, 420(02):746-755
Journal of Inorganic Materials. 2018, 33(05): 475-482
ACS Sustainable Chemistry & Engineering, 2018, 7(1): 916-924
Online since: November 2012
Authors: Wen Feng Ding, Jiu Hua Xu, Cheng Jie Song, Zhen Zhen Chen
Grinding performance of metal-bonded cBN wheels with regular pores
Cheng-jie Song, Wen-feng Ding*, Jiu-hua Xu, Zhen-zhen Chen
College of Mechanical and Electrical Engineering, Nanjing University of Aeronautics
and Astronautics, Nanjing, 210016, P.R.
International Journal of Machine Tools and Manufacture, Vol. 41(2), (2001), p. 193
Japan Society for Precision Engineering, Vol. 26(1), (1992), p. 27
Key Engineering Materials, Vol. 359-360, (2008), p. 48
Journal of Manufacturing Science and Engineering, Vol. 123, (2001), p. 13
International Journal of Machine Tools and Manufacture, Vol. 41(2), (2001), p. 193
Japan Society for Precision Engineering, Vol. 26(1), (1992), p. 27
Key Engineering Materials, Vol. 359-360, (2008), p. 48
Journal of Manufacturing Science and Engineering, Vol. 123, (2001), p. 13
Online since: August 2011
Authors: M. Reza Razfar, Bijan Vakili Azghandi
An Experimental Study on the Effects of Ultrasonic Assisted Drilling on Chip Characteristics and Tool Life
Vakili Azghandi, Bijan1, a, Razfar, Mohammad Reza1, b
1School of Mechanical Engineering, Amirkabir University of Technology, Hafez St., Tehran, Iran
avakili.bijan@gmail.com, brazfar@aut.ac.ir
Keywords: Conventional drilling; Ultrasonic assisted drilling; Chip segmentation, Tool life, Crater wear, Flank wear
Abstract.
Stoll: Ultrasonic application in drilling (Journal of Materials Processing Technology 149 (2004) 633-639) [5] M.
Lin: Feasibility study of the ultrasonic vibration assisted drilling of Inconel superalloy (International Journal of Machine Tools & Manufacture 47 (2007) 1988-1996)
Akbari: Ultrasonic-assisted drilling of Inconel 738-LC (International Journal of Machine Tools & Manufacture 47 (2007) 1027-1033)
Krishnamurthy: The effect of vibratory drilling on hole quality in polymeric composites (International Journal of Machine Tools & Manufacture 46 (2006) 252–259)
Stoll: Ultrasonic application in drilling (Journal of Materials Processing Technology 149 (2004) 633-639) [5] M.
Lin: Feasibility study of the ultrasonic vibration assisted drilling of Inconel superalloy (International Journal of Machine Tools & Manufacture 47 (2007) 1988-1996)
Akbari: Ultrasonic-assisted drilling of Inconel 738-LC (International Journal of Machine Tools & Manufacture 47 (2007) 1027-1033)
Krishnamurthy: The effect of vibratory drilling on hole quality in polymeric composites (International Journal of Machine Tools & Manufacture 46 (2006) 252–259)
Online since: April 2013
Authors: Jian Wei Hoon, Kah Yoong Chan, Zi Neng Ng, Teck Yong Tou
Transparent Ultraviolet Sensors Based on Magnetron Sputtered ZnO Thin Films
JIAN-WEI HOONa, KAH-YOONG CHANb*, ZI-NENG NGc and TECK-YONG TOUd
Centre for Advanced Devices and Systems, Faculty of Engineering, Multimedia University, Persiaran Multimedia, 63100 Cyberjaya, Selangor, Malaysia
ajwhoon85@gmail.com, bkychan@mmu.edu.my, czineng25@gmail.com, dtytou@mmu.edu.my
*Corresponding author
Keywords: ZnO films, magnetron sputtering, UV sensor, photocurrent response
Abstract.
Experimental The ZnO films were deposited using the magnetron sputtering deposition system (Penta Vacuum, E303A), with a circular 50.8 mm diameter ZnO ceramic target of 99.995-% purity purchased from Kurt J.
Saim, "Zinc oxide microrods prepared by sol-gel immerse technique," Microelectronics International, vol. 27, pp. 166-169, 2010
Teck-Yong, "Direct current magnetron sputter-deposited ZnO thin films," in Photonics (ICP), 2010 International Conference, 2010, pp. 1-3
Rogalski, "Semiconductor ultraviolet detectors," Journal of Applied Physics, vol. 79, pp. 7433-7473, 1996
Experimental The ZnO films were deposited using the magnetron sputtering deposition system (Penta Vacuum, E303A), with a circular 50.8 mm diameter ZnO ceramic target of 99.995-% purity purchased from Kurt J.
Saim, "Zinc oxide microrods prepared by sol-gel immerse technique," Microelectronics International, vol. 27, pp. 166-169, 2010
Teck-Yong, "Direct current magnetron sputter-deposited ZnO thin films," in Photonics (ICP), 2010 International Conference, 2010, pp. 1-3
Rogalski, "Semiconductor ultraviolet detectors," Journal of Applied Physics, vol. 79, pp. 7433-7473, 1996