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Online since: February 2006
Authors: Leszek Adam Dobrzański, Tomasz Tański, Lubomír Čížek
Dobrzański1, b, L.Čížek2, c
1
Silesian University of Technology, Institute of Engineering Materials and Biomaterials,
Konarskiego St. 18a, 44-100 Gliwice, Poland
2
VSB - Technical University of Ostrava, Faculty of Metallurgy and Materials Engineering
17 listopadu 15, 708 33 Ostrava.
Čížek: Modeling of mechanical properties magnesium alloy, 12 th Scientific International Conference on Achievements in Mechanical and Materials Engineering AMME' 2003, Gliwice - Zakopane, 2003, p. 293-296 [8] Dobrzański L.A., Tański T., Čížek L: Influence of modification with chemical elements on structure of magnesium casting alloys, 13 th Scientific International Conferences "Achievements in Mechanical and Materials Engineering AMME', 2005", Gliwice - Wisła 2005, p. 199-202 [9] A.
Dudek: Foundry engineering - Science and Practice, Publishers Institute of Foundry engineering, Cracow, 2004, p. 18-21 [10] A.
Sęk-Sas: Foundry engineering XXI c.
Directions of metallurgy development and Ligot alloys casting, Publishers Institute of Foundry engineering, Cracow, 2002 [11] Friedrich H., Schumann S.: Research for a "new age of magnesium" in the automotive industry, Journal of Materials Processing Technology, 117 (2001), pp. 276-281.
Čížek: Modeling of mechanical properties magnesium alloy, 12 th Scientific International Conference on Achievements in Mechanical and Materials Engineering AMME' 2003, Gliwice - Zakopane, 2003, p. 293-296 [8] Dobrzański L.A., Tański T., Čížek L: Influence of modification with chemical elements on structure of magnesium casting alloys, 13 th Scientific International Conferences "Achievements in Mechanical and Materials Engineering AMME', 2005", Gliwice - Wisła 2005, p. 199-202 [9] A.
Dudek: Foundry engineering - Science and Practice, Publishers Institute of Foundry engineering, Cracow, 2004, p. 18-21 [10] A.
Sęk-Sas: Foundry engineering XXI c.
Directions of metallurgy development and Ligot alloys casting, Publishers Institute of Foundry engineering, Cracow, 2002 [11] Friedrich H., Schumann S.: Research for a "new age of magnesium" in the automotive industry, Journal of Materials Processing Technology, 117 (2001), pp. 276-281.
Online since: May 2016
Authors: A.M. Mustafa Al Bakri, Aeslina Abdul Kadir, Mohd Ruzaini Abd Jalil
Properties of Steel Mill Sludge Waste Incorporated In Fired Clay Brick
Aeslina Abd Kadir1,2,a, Mohd Ruzaini Abd Jalil1,b
& Mohd Mustafa Al Bakri Abdullah3,2,c
1Department of Environmental Engineering and Water Resources, Universiti Tun Hussein Onn Malaysia (UTHM), 86400 Parit Raja, Batu Pahat Johor, Malaysia
2Center of Excellence Geopolymer and Green Technology (CEGeoGTech), School of Materials Engineering, Universiti Malaysia Perlis (UniMAP), Perlis, Malaysia
3Faculty of Engineering Technology (FETech), Universiti Malaysia Perlis (UniMAP), Perlis, Malaysia
aaeslina@uthm.edu.my, bmohdruzainiabdjalil@gmail.com, cmustafa_albakri@unimap.edu.my
Keywords: steel mill sludge waste, fired clay brick, compressive strength
Abstract.
Many attempts have been made to incorporate different types of sludge waste into brick such as marble sludge, stone sludge, water treatment sludge, sewage sludge, desalination sludge, textile laundry sludge, ceramic sludge and steel mill sludge.
From all the results obtained, all the tested bricks are comply with the standard BS 3921;1985 between 7 N/mm² to 100 N/mm² but not satisfied to be classified as engineering brick.
The authors would like to thank the Faculty of Civil and Environmental Engineering, UTHM for this study.
International Journal of Integrated Engineering.
Many attempts have been made to incorporate different types of sludge waste into brick such as marble sludge, stone sludge, water treatment sludge, sewage sludge, desalination sludge, textile laundry sludge, ceramic sludge and steel mill sludge.
From all the results obtained, all the tested bricks are comply with the standard BS 3921;1985 between 7 N/mm² to 100 N/mm² but not satisfied to be classified as engineering brick.
The authors would like to thank the Faculty of Civil and Environmental Engineering, UTHM for this study.
International Journal of Integrated Engineering.
Online since: May 2011
Authors: Fan Xiao, Fei Gao, Wei Li, Zhi Xian Zhang
Preparation of Alginate/Silica composite beads with in vitro apatite-forming ability
Fan Xiao1, a, Fei Gao1,b, Zhixian Zhang1,c, Wei Li 1,d
1Institute of Material and Surface Engineering, Zhejiang University of Technology, Hangzhou, Zhejiang, 310014, China
axiaofan@zjut.edu.cn, bgsofeitianqi@163.com, czhixianzhang123@126.com, dliwei200506228@163.com
Keywords: Water glass, Silica, composite beads, apatite, biomedical, monetite.
Aina et al., Chemical Engineering Journal, Vol. 137(2008), P. 30-37 [3] S.
Do uglas et al., Biomaterials, Vol. 25(2004), P. 4615-4626 [5] Y.M Xu, C.Y Zhan, L.H Fan, L Wang et al., International Journal of Pharmaceutics, Vol. 336,(2007), P. 329-337 [6] G.
Pizzorusso et al., Medical Engineering & Physics, Vol. 30(2008),P. 848-855 [7] M.H.
,Ceramic Transactions,Vol.164(2005),P. 119-128
Aina et al., Chemical Engineering Journal, Vol. 137(2008), P. 30-37 [3] S.
Do uglas et al., Biomaterials, Vol. 25(2004), P. 4615-4626 [5] Y.M Xu, C.Y Zhan, L.H Fan, L Wang et al., International Journal of Pharmaceutics, Vol. 336,(2007), P. 329-337 [6] G.
Pizzorusso et al., Medical Engineering & Physics, Vol. 30(2008),P. 848-855 [7] M.H.
,Ceramic Transactions,Vol.164(2005),P. 119-128
Online since: March 2018
Authors: Marvin U. Herrera, Armida Gillado, Ava Mari Jonea Leonor
Ma, Ceramics International 43 (2017) pp. 9559–9563
Prodigalidad and M.U.Herrera, Key Engineering Materials 705 (2016) pp. 385-389
Gorospe and M.U.Herrera, Journal of Physics: Conf.
Thambidurai, Journal of Environmental Chemical Engineering 4 (2016) pp. 1332–1347
Benlhachemi, Journal of Environmental Chemical Engineering 4 (2016) pp. 3096–3105 [19] V.
Prodigalidad and M.U.Herrera, Key Engineering Materials 705 (2016) pp. 385-389
Gorospe and M.U.Herrera, Journal of Physics: Conf.
Thambidurai, Journal of Environmental Chemical Engineering 4 (2016) pp. 1332–1347
Benlhachemi, Journal of Environmental Chemical Engineering 4 (2016) pp. 3096–3105 [19] V.
Online since: December 2012
Authors: M.A. Megat Johari, Syed Fuad Saiyid Hashim, Nurdeen M. Altwair, A.M. Zeyad
ZEYAD1, 4, d
1School of Civil Engineering, Universiti Sains Malaysia, 14300 Nibong Tebal, Pulau Pinang, Malaysia
2Civil Engineering Department, Faculty of Engineering, Al-Merghab University, Al-Khums, Libya
3School of Materials and Mineral Resources Engineering, Universiti Sains Malaysia, 14300 Nibong Tebal, Pulau Pinang, Malaysia
4Department of Civil Engineering, University of Sciences and Technology, Sana'a, Yemen
aemad105907@yahoo.com, bcemamj@eng.usm.my, cmrsyfuad@eng.usm.my, dzeyad_eng@yahoo.com
Keywords: Engineered cementitious composite, palm oil fuel ash, compressive strength, flexural properties, tensile properties
Abstract.
The partial replacement of Portland cement with POFA can lower the production costs and improve the engineering properties and durability of concrete.
Li, Concrete construction engineering handbook, CRC Press, Boca Raton 2007
Journal of the American Ceramic Society, Vol. 78 (12) 1995, p. 3369-3375
Hashim, International Journal of Civil & Environmental Engineering, Vol. 11 (5) 2011, p. 100-107
The partial replacement of Portland cement with POFA can lower the production costs and improve the engineering properties and durability of concrete.
Li, Concrete construction engineering handbook, CRC Press, Boca Raton 2007
Journal of the American Ceramic Society, Vol. 78 (12) 1995, p. 3369-3375
Hashim, International Journal of Civil & Environmental Engineering, Vol. 11 (5) 2011, p. 100-107
Mechanical Properties of TiO2-Kaolin FGM Produced by Progressive Lamination Method for NOx Reduction
Online since: August 2005
Authors: Yoshiyuki Uchida, Yoshihisa Uchida, Shuntaro Higa, Niichi Hayashi
The FGMs offer a wide range of applications in many fields of engineering, such as
mechanical engineering (engines, turbines, tools, erosion and heat resistant sealing etc.), electrical
engineering (heat emitting plates, sensors, magnetic shields etc.), nuclear technology (ultra high
temperature plasma containers for nuclear fusion etc.), chemical processes (erosion resistant materials
for chemical plants etc.) and biotechnology (artificial bones and teeth etc.).
Azuma and M.Shirato: Journal of Fluid Machinery Vol. 25 (1997), p. 198
Touchard: Journal of Electrostatics Vol. 40 & 41(1997), p. 741
Uchida: Journal of Ecotechnology Research Vol. 8 (2002), p. 140
Uchida: Proceedings of the 20th International Japan-Korea Seminar on Ceramics (2003), p. 169
Azuma and M.Shirato: Journal of Fluid Machinery Vol. 25 (1997), p. 198
Touchard: Journal of Electrostatics Vol. 40 & 41(1997), p. 741
Uchida: Journal of Ecotechnology Research Vol. 8 (2002), p. 140
Uchida: Proceedings of the 20th International Japan-Korea Seminar on Ceramics (2003), p. 169
Online since: August 2015
Authors: Srikanth Prabhu, M. Vimalesh, K.S. Vijay Sekar
Machinability Studies in Drilling of Inconel 718 Super alloy
Vimalesh M1, a *, Srikanth Prabhu2, b and Vijay Sekar K.S3, c
1,2Student Researchers, Department of Mechanical Engineering, SSN College of Engineering, Chennai, India
3Associate Professor, Department of Mechanical Engineering, SSN College of Engineering, Chennai, India
avimaleshm94@gmail.com, bsrikanthprabhu1993@gmail.com, cvijaysekarks@ssn.edu.in
Keywords: Inconel 718, Drilling, Super alloy, Cutting Force, Torque, Chip Morphology
Abstract
Inconel 718, a Nickel based super alloy is widely used for aerospace applications mainly due to its high temperature resistance and high strength to weight ratio.
Introduction Inconel 718, a high strength, corrosion resistant, age hardenable super alloy of Nickel is widely used in the field of aerospace engineering.
Zhang et al. [2] investigated the wear mechanism of ceramic cutting tools during the dry turning of Inconel 718 and found that notch wear and flank wear were the main failure modes.
Umbrello, Investigation of surface integrity in dry machining of Inconel 718, International Journal of Advanced Manufacturing Technology, 69 (2013) 2183-2190
Liao, Study on wear mechanisms in drilling of Inconel 718 superalloy, Journal of Materials Processing Technology, 140 (2003) 269-273.
Introduction Inconel 718, a high strength, corrosion resistant, age hardenable super alloy of Nickel is widely used in the field of aerospace engineering.
Zhang et al. [2] investigated the wear mechanism of ceramic cutting tools during the dry turning of Inconel 718 and found that notch wear and flank wear were the main failure modes.
Umbrello, Investigation of surface integrity in dry machining of Inconel 718, International Journal of Advanced Manufacturing Technology, 69 (2013) 2183-2190
Liao, Study on wear mechanisms in drilling of Inconel 718 superalloy, Journal of Materials Processing Technology, 140 (2003) 269-273.
Online since: February 2019
Authors: Stanislav V. Naumov, Arseny O. Artemov, Kirill I. Belousov
Key Engineering Materials, № 743 (2017) 406-410
Key Engineering Materials, № 743 (2017) 401-405
Lyashko et al., Study of the properties of glasses after plasma treatment, International Journal of Applied and Fundamental Research, №12 (2010) 102-104
Kulkov, Mechanical Properties Research of Corundum Ceramics at Change of Porosity and the Crystallites Sizes, Journal of Siberian Federal University.
Engineering & Technologies, №1 (2011 4) 113-120 [23] D.
Key Engineering Materials, № 743 (2017) 401-405
Lyashko et al., Study of the properties of glasses after plasma treatment, International Journal of Applied and Fundamental Research, №12 (2010) 102-104
Kulkov, Mechanical Properties Research of Corundum Ceramics at Change of Porosity and the Crystallites Sizes, Journal of Siberian Federal University.
Engineering & Technologies, №1 (2011 4) 113-120 [23] D.
Online since: February 2011
Authors: Amin Firouzi, Shafreeza Sobri, Fakhru'l Razi Ahmadun, Faizah Mohd Yasin
Ahmadun1, d
1Department of Chemical and Environmental Engineering, Faculty of Engineering, University Putra Malaysia 43400, Malaysia
afirouzi.amin@gmail.com (corresponding author), beeza@eng.upm.edu.my, cfmy@eng.upm.edu.my, dfakhrul@eng.upm.edu.my
Keywords: Carbon nanotubes, Chemical vapor deposition, Electrical resistance, Gas exposure, Quartz substrate.
Synthesis of CNTs was carried out in a ceramic tube reactor (40 mm ID and 100 cm length) placed in a double-stage horizontal furnace.
The first stage of the furnace was a heating tape wrapped around the first quartile of the ceramic tube.
[8] Qin, L.C.: CVD synthesis of carbon nanotubes, Journal of Materials Science Letters Vol. 16(1997), p. 457-459
Grimes: A wireless, passive carbon nanotube-based gas sensor, IEEE Sensors Journal Vol. 2(2002), p. 82-88
Synthesis of CNTs was carried out in a ceramic tube reactor (40 mm ID and 100 cm length) placed in a double-stage horizontal furnace.
The first stage of the furnace was a heating tape wrapped around the first quartile of the ceramic tube.
[8] Qin, L.C.: CVD synthesis of carbon nanotubes, Journal of Materials Science Letters Vol. 16(1997), p. 457-459
Grimes: A wireless, passive carbon nanotube-based gas sensor, IEEE Sensors Journal Vol. 2(2002), p. 82-88
Online since: August 2014
Authors: Keisuke Hara, Hiromi Isobe, Atsushi Asahi
.: Ultrasonic superposition vibration cutting of ceramics, Precision Engineering, 11-2, pp.71-77(1989)
Hara, et. al.: Ultrasonically Assisted Grinding for Mirror Surface Finishing of Dies with Electroplated Diamond Tools, International Journal of Precision Engineering and Manufacturing, 8-2, pp.38-43 (2007)
Isobe, et. al.: Investigation for high speed ultrasonic cutting of aluminum alloy, Key Engineering Materials, 516, pp.367-372 (2012) [6] J.
Rivero, et. al.: Analysis of ultrasonic-assisted drilling of Ti6Al4V, International Journal of Machine Tools and Manufacture, 49-6 pp.500-508 (2009)
Hara : Effect of Ultrasonic Vibration Drilling on Cutting Stress Distribution , 14th International Conference on Precision Engineering (2012) 191-196
Hara, et. al.: Ultrasonically Assisted Grinding for Mirror Surface Finishing of Dies with Electroplated Diamond Tools, International Journal of Precision Engineering and Manufacturing, 8-2, pp.38-43 (2007)
Isobe, et. al.: Investigation for high speed ultrasonic cutting of aluminum alloy, Key Engineering Materials, 516, pp.367-372 (2012) [6] J.
Rivero, et. al.: Analysis of ultrasonic-assisted drilling of Ti6Al4V, International Journal of Machine Tools and Manufacture, 49-6 pp.500-508 (2009)
Hara : Effect of Ultrasonic Vibration Drilling on Cutting Stress Distribution , 14th International Conference on Precision Engineering (2012) 191-196