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Online since: December 2013
Authors: Mohamad Hafiz Mamat, Aadila Aziz, Mohamad Rusop, Ruziana Mohamed, Zuraida Khusaimi, Nurul Afaah Abdullah
Rusop2,f
1Faculty of Applied Sciences, Universiti Teknologi MARA Pahang, Jengka, Pahang, Malaysia
2Faculty of Applied Sciences, Universiti Teknologi MARA, Shah Alam, Selangor, Malaysia
3Nano-SciTech Centre, Institute of Science, Universiti Teknologi MARA, Shah Alam, Selangor, Malaysia.
4NANO-ElecTronic Centre, Faculty of Electrical Engineering, Universiti Teknologi MARA, 40450 Shah Alam, Selangor, Malaysia
aruzianamohd@pahang.uitm.edu.my (corresponding author), bZurai142@salam.uitm.edu.my, cafaahabdullah@yahoo.com, daadilaazizali@gmail.com, ehafiz_030@yahoo.com,fnanouitm@gmail.com
[received: 4.7.2013, accepted: 3.9.2013]
Keywords: Mg-doped ZnO, Solution-immersion method, Structural properties, Optical properties.
Ceramics International 37 (2011) 555-560
Journal of Alloys and Compounds 500 (2010) 138-143
International 38 (2012) 4201-4208.
Ceramics International 37 (2011) 555-560
Journal of Alloys and Compounds 500 (2010) 138-143
International 38 (2012) 4201-4208.
Online since: October 2014
Authors: Robert Tait, Thorsten Becker, Nur Mohamed Dhansay
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.
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: November 2016
Authors: Ryotaro Tokoro, Yuji Ichikawa, Kazuhiro Ogawa
Introduction
Cold spraying is a particle deposition process with which a range of materials including metals, ceramics, and polymers can be deposited on a substrate [1-6].
Miura, Microtexture and Electrical and Mechanical Properties of the Cold-Sprayed Copper Deposit, ASME 2013 International Technical Conference and Exhibition on Packaging and Integration of Electronic and Photonic Microsystems. 1 (2013) V001T07A007
INSS JOURNAL. 17 (2010) 172-77
Ogawa, Study on Micro-Scale Strength and Structural Evaluation for Bonding Interface of Solid State Bonded Materials, Proceedings of The Japan Society of Mechanical Engineers M&M 2015 Conference. (2015) OS1210-319.
Miura, Microtexture and Electrical and Mechanical Properties of the Cold-Sprayed Copper Deposit, ASME 2013 International Technical Conference and Exhibition on Packaging and Integration of Electronic and Photonic Microsystems. 1 (2013) V001T07A007
INSS JOURNAL. 17 (2010) 172-77
Ogawa, Study on Micro-Scale Strength and Structural Evaluation for Bonding Interface of Solid State Bonded Materials, Proceedings of The Japan Society of Mechanical Engineers M&M 2015 Conference. (2015) OS1210-319.
Online since: December 2014
Authors: Telma Ramos, J. Sousa-Coutinho, Ana Matos
Strength, ASR and chloride penetration of mortar with granite waste powder
MATOS Ana M.1,a, RAMOS Telma2, b and SOUSA-COUTINHO J.3,c
1 Researcher at LEMC, Department of Civil Engineering, Faculty of Engineering of University of Porto, Portugal
2 Researcher at LABEST, Department of Civil Engineering, Faculty of Engineering of University of Porto, Portugal
3 Associated Professor, Researcher at LABEST, Department of Civil Engineering, Faculty of Engineering of University of Porto, Portugal
aanamatos@fe.up.pt, btelmajr@fe.up.pt, cjcouti@fe.up.pt
Keywords: Granite waste, supplementary cementing materials, mortar, durability, sustainability.
Indian Journal of Science and Technology.
ARPN Journal of Engineering and Applied Sciences.
[12] National Institute of Engineering Technology and Innovation, I.P: http://rop.ineti.pt/rop/FormProduto.php?
United States: ASTM International; 2011
Indian Journal of Science and Technology.
ARPN Journal of Engineering and Applied Sciences.
[12] National Institute of Engineering Technology and Innovation, I.P: http://rop.ineti.pt/rop/FormProduto.php?
United States: ASTM International; 2011
Online since: January 2013
Authors: Guang Yuan Zhao, Wei Zong, Yang Chang
The instrument was standardized each time with a white ceramic plate (L*=80.55, a*=81.26, b*=79.72).
Food Research International, 1999,32:609-619
Journal of Food Science, 1986, 51(1): 184-187,192
Journal of the Science of Food and Agricultur, 1978, 29, 788-279
Journal of Anhui Agri Sci.2005, 33(4):632-633
Food Research International, 1999,32:609-619
Journal of Food Science, 1986, 51(1): 184-187,192
Journal of the Science of Food and Agricultur, 1978, 29, 788-279
Journal of Anhui Agri Sci.2005, 33(4):632-633
Online since: November 2013
Authors: Mohamad Rusop, Azlinda Ab Aziz, Saifollah Abdullah, Mohd Husairi Fadzilah Suhaimi, Kevin Alvin Eswar
Husairi 1,2, b , Azlinda Ab Aziz1,2,c,
Mohamad Rusop1,3,d, Saifollah Abdullah1,2,e
1NANO-SciTech Centre (NST), Institute of Science, Universiti Teknologi MARA (UiTM), 40450 Shah Alam, Selangor, Malaysia
2Faculty of Applied Sciences, Universiti Teknologi MARA (UiTM), 40450 Shah Alam, Selangor, Malaysia
3NANO-Electronic Centre (NET), Faculty of Electrical Engineering, Universiti Teknologi MARA (UiTM), 40450 Shah Alam, Selangor, Malaysia
akevinalvin86@gmail.com, bmhusairifadzilah@yahoo.com, cazlindazz@gmail.com@salam.uitm.edu.my, esaifollah@salam.uitm.edu.my
Keywords: Sol-gel immersion; electrochemical etching; porous silicon; nano-flower; nano-spherical; Zn2+ concentrations
Abstract.
[2] Wang Z.L., Zinc oxide nanostructures: growth, properties and applications, Journal of Physics: Condensed Matter 16 (2004) R829-R858
[7] Kayahan E., White light luminescence from annealed thin ZnO deposited porous silicon, Journal of Luminescence 130 (2010).1295-1299
-M., Effects of sulfidation on the optoelectronic properties of hydrothermally synthesized ZnO nanowires, Ceramics International 38 (2012) 3869-3873
[17] Min S.K., Kwang G.Y., Jae-Young L., Soaram K., Giwoong N., Do Y.K., Sung-O K., Dong-Yul L., Jin S.K., and Jong S.K., Nanocrystalline ZnO Thin Films Grown on Porous Silicon by Sol-gel Method and Effects of Post-annealing, Journal of the Korean Physical Society 59 (2011) 346.
[2] Wang Z.L., Zinc oxide nanostructures: growth, properties and applications, Journal of Physics: Condensed Matter 16 (2004) R829-R858
[7] Kayahan E., White light luminescence from annealed thin ZnO deposited porous silicon, Journal of Luminescence 130 (2010).1295-1299
-M., Effects of sulfidation on the optoelectronic properties of hydrothermally synthesized ZnO nanowires, Ceramics International 38 (2012) 3869-3873
[17] Min S.K., Kwang G.Y., Jae-Young L., Soaram K., Giwoong N., Do Y.K., Sung-O K., Dong-Yul L., Jin S.K., and Jong S.K., Nanocrystalline ZnO Thin Films Grown on Porous Silicon by Sol-gel Method and Effects of Post-annealing, Journal of the Korean Physical Society 59 (2011) 346.
Online since: October 2013
Authors: Ning He, Liang Li, Rong Bian, Zhen Yu Shi, Qi Wu
Experimental study on precision milling of high volume fraction SiCP/Al composites with PCD end mills
WU Qi1, a, LI Liang1, b, BIAN Rong1, c, SHI Zhenyu2, d and HE Ning1,e
1College of Mechanical & Electrical Engineering, Nanjing University of Aero. & Astro., China
2School of Mechanical Engineering, Shandong University, China
aalen@nuaa.edu.cn, bliliang@nuaa.edu.cn, cbianrong@nuaa.edu.cn, dzhenyushi@qq.com, edrnhe@nuaa.edu.cn
Keywords: Milling; SiCP/Al; Surface roughness; Tool wear
Abstract.
However, the final conversion of these composites into engineering products is always associated with machining, either by turning or by milling.
Occhionero et al: Proceedings for International Conference on High Density Packaging and MCM's, (1999)
Xiong et al: The Chinese Journal of Nonferrous metal, Vol. 16 No. 11 (2006), p.1913 [3] R.
Bhattacharayya: Journal of Materials Processiing Technology, Vol.140 (2003), p.711
However, the final conversion of these composites into engineering products is always associated with machining, either by turning or by milling.
Occhionero et al: Proceedings for International Conference on High Density Packaging and MCM's, (1999)
Xiong et al: The Chinese Journal of Nonferrous metal, Vol. 16 No. 11 (2006), p.1913 [3] R.
Bhattacharayya: Journal of Materials Processiing Technology, Vol.140 (2003), p.711
Online since: December 2024
Authors: Ana Cristina Vasile, Mircea Liviu Negrut, Ion Aurel Perianu, Aurelian Gruin, Bogdan Bolborea, Cornelia Baeră, Alexandra Marina Barbu
In IOP Conference Series: Materials Science and Engineering 877(1) (2020) 012028
[33] A.S.
B Ishaq, Self-compacting geopolymer concrete with spend garnet as sand replacement, Journal of Building Engineering 15 (2018) 85-94 [41] H.L.
Mohamed, Performance of spent garnet as a sand replacement in high-strength concrete exposed to high temperature, Journal of Structural Fire Engineering 10(4) (2019) [46] N.R.
Ponnada, Performance of spent garnet sand and used foundry sand as fine aggregate in concrete, World Journal of Engineering (2021) [47] N.H.A.S.
Mazlan, Properties of Mortar Incorporating Spent Garnet as Fine Aggregates Replacement, International Journal of Integrated Engineering 12(9) (2020) 96-102 [48] K.
B Ishaq, Self-compacting geopolymer concrete with spend garnet as sand replacement, Journal of Building Engineering 15 (2018) 85-94 [41] H.L.
Mohamed, Performance of spent garnet as a sand replacement in high-strength concrete exposed to high temperature, Journal of Structural Fire Engineering 10(4) (2019) [46] N.R.
Ponnada, Performance of spent garnet sand and used foundry sand as fine aggregate in concrete, World Journal of Engineering (2021) [47] N.H.A.S.
Mazlan, Properties of Mortar Incorporating Spent Garnet as Fine Aggregates Replacement, International Journal of Integrated Engineering 12(9) (2020) 96-102 [48] K.
Online since: October 2011
Authors: Jie Huang, K. Memarzadeh, M. Vargas, J. Fan, R.P. Allaker
Nano Metallic-Oxides as Antimicrobials for Implant Coatings
K.Memarzadeh1,2,a, M.Vargas1,b, J.Huang2,c,J.Fan2,e, R.P.Allaker1,d
1Institute of Dentistry, Barts and the London School of Medicine and Dentistry, London, UK
2Dept of Mechanical Engineering, University College London, London, UK
ak.memarzadeh@qmul.ac.uk, bm.a.vargas-reus@qmul.ac.uk, cjie.huang@ucl.ac.uk, dR.P.Allaker@qmul.ac.uk, ejian.fan@ucl.ac.uk
Keywords: Nanoparticles, Antimicrobial, Zinc Oxide, Tungsten Oxide, Metal Oxides.
[3] Soballe, K., et al., A review of ceramic coatings for implant fixation.
Journal of biomedical materials research.
Journal of materials science.
International journal of nanomedicine, 2008. 3(4): p. 533-45.
[3] Soballe, K., et al., A review of ceramic coatings for implant fixation.
Journal of biomedical materials research.
Journal of materials science.
International journal of nanomedicine, 2008. 3(4): p. 533-45.
Online since: December 2007
Authors: Kei Lin Kuo
A Study of Glass Milling Using Rotary Ultrasonic Machining
Kei-Lin Kuo
Department of Vehicle Engineering, National Taipei University of Technology,
Taipei, Taiwan 106, R.O.C
klkuo@ntut.edu.tw
Keywords: Rotary ultrasonic machining, Surface roughness, Brittle material
Abstract.
Enomoto, "Sliding Fracture of soda-lime glass in liquid environmental," Journal of Materials Sciences, Vol. 16, 1981, p.3365
Haselkorn, "Rotary Ultrasonic machining for face milling of ceramics," International Journal of Machine Tools and Manufacture, Vol. 35, No. 7, 1995, p.1033
Xu, "Analysis of the rotary ultrasonic machining mechanism," Journal of Materials Processing Technology, Vol. 129, 2002, p.182.
Enomoto, "Sliding Fracture of soda-lime glass in liquid environmental," Journal of Materials Sciences, Vol. 16, 1981, p.3365
Haselkorn, "Rotary Ultrasonic machining for face milling of ceramics," International Journal of Machine Tools and Manufacture, Vol. 35, No. 7, 1995, p.1033
Xu, "Analysis of the rotary ultrasonic machining mechanism," Journal of Materials Processing Technology, Vol. 129, 2002, p.182.