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Online since: July 2023
Authors: Ganta Suresh, T. Vinod Kumar, Eriki Ananda Kumar
International Research Journal of Modernization in Engineering Technology and Science, 4(5), 4611-4614
Design and Development of a Cooling System for A Vaccine Container by using Vortex Tube Refrigeration, International Journal of Engineering Research & Technology. 11(7) 169-177 [5] AR Babu., Amba Prasad Rao., Hari Prasad T., Erik Ananda Kumar., 2013.
Journal of Procedia Engineering. 90 (2). p.135 – 270 [7] Morihama, M.A.&.S.R., 2011.Electroless Ni-P Coatings: Preparation and Evaluation of Fracture Toughness and Scratch Hardness.
Journal of Procedia Engineering. 28 (4). p. 369-378
[8] Sahoo, M., 2010.Wear Performance Optimization of Electroless Ni-B Coating Using Taguchi Design of Experiments, Journal of Procedia Engineering. 80 (2).p.190 – 270.
Online since: March 2025
Authors: Yassin Fouad, Necar Merah, Amjad Shaarawi
Employing Scanning Electron Microscopy, the research highlights the influence of ceramic microfillers on the wear characteristics.
The drill pipe tool joint (Fig. 1(c, d)) is built of carbon steel and coated with three separate protective layers, the uppermost one consisting of Kevlar Ceramic epoxy composite.
This combination of adhesive and abrasive wear in the samples is consistent with findings by Abenojar et al. [13] in composites containing ceramic nano and microparticles.
Lian, “Tribological properties of three-dimensional braided carbon/Kevlar/epoxy hybrid composites under dry and lubricated conditions,” Materials Science and Engineering: A, vol. 452–453, pp. 202–209, Apr. 2007, doi: 10.1016/J.MSEA.2006.11.090
Kumar, “Studies On Wear and hardness Properties of Kevlar/E-Glass/Epoxy with SiC Reinforced Polymer Matrix Composites,” International Advanced Research Journal in Science, Engineering and Technology, vol. 8, 2021, doi: 10.17148/IARJSET.2021.81213
Online since: September 2013
Authors: Mohd Arif Anuar Mohd Salleh, Kazuhiro Nogita, Stuart Mcdonald
Gupta, Journal of Materials Engineering and Performance2010, 19, 335-341
Kangooie, Materials Science & Engineering A2011, 528, 3967-3972
Kamat, Materials Science & Engineering A2011, 529, 257-264
Arifin, Materials Science & Engineering A2012, 1-5
Chen, Materials Science and Engineering A2012, 545, 194– 200.
Online since: September 2014
Authors: Keita Shimada, Masayoshi Mizutani, Tunemoto Kuriyagawa, Jing Si Wang
The most common use of USM is obtaining straight holes and different 3D complex parts on hard and brittle materials like ceramics and glass.
The most suitable materials for USM are hard and brittle materials, such as glass and ceramics.
Kuriyagawa, Material removal in ultrasonic machining using smoothed particle hydrodynamics, International Journal of Automation Technology, Vol. 7, No. 6, 2013, pp. 614-620
Reddy, A study on the influence of workpiece properties in ultrasonic machining, International Journal of Machine Tools and Manufacture, Vol. 33, No. 3, 1993, pp. 495-505
Kuriyagawa, Fabrication of high-aspect ratio micro holes on hard brittle materials – Study on electrorheological fluid-assisted micro ultrasonic machining, Key Engineering Materials, Vol. 389-390, 2009, pp. 264-270
Online since: July 2007
Authors: Taylan Altan, Yingyot Aue-u-Ian, Serhat Kaya
Insulation Sheet (0.036 in) Lower die shoe Tank Wall Water Cooling Plate CERAMIC Insulation Press Bed Catch Basin Lower die Fluid tank Insulation FOAM Glass Insulation Catch basin MICA Insulation Sheet (0.036 in) Lower die shoe Tank Wall Water Cooling Plate CERAMIC Insulation Press Bed Catch Basin Lower die MICA Insulation Sheet (0.036 in) Lower die shoe Tank Wall Water Cooling Plate CERAMIC Insulation Press Bed Catch Basin Lower die Fluid tank Insulation FOAM Glass Insulation Catch basin MICA Insulation Sheet (0.036 in) Lower die shoe Tank Wall Water Cooling Plate CERAMIC Insulation Press Bed Catch Basin Lower die MICA Insulation Sheet (0.036 in) Lower die shoe Tank Wall Water Cooling Plate CERAMIC Insulation Press Bed Catch Basin Lower die Fluid tank Fig.2: Schematic of warm tube hydroforming system (including the insulators) Fig.2 illustrates the schematic of the die
Elevated temperature hydraulic bulge tests for Mg AZ31-O alloy sheets were conducted using a test apparatus that was available at the Institute for Production Engineering and Forming Machines, (PtU) of Technische Unversitaet Darmstadt.
The axial feed was introduced to improve the forming behavior (i.e. reduce thinning) at 230°C. 4) A warm forming tool designed and manufactured by Aida Engineering Ltd. was used in a servo motor driven press.
Authors greatly acknowledge the support of NSF, Aida Engineering Ltd, Japan and Aida-America Corp., Dayton, Ohio.
Kloepsch: Determination of Flow Stress of Magnesium AZ31-O Sheet At Elevated Temperatures Using the Hydraulic Bulge Test, (2006) (in review-Special Issue of International Journal of Machine Tools and Manufacture)
Online since: August 2018
Authors: Hua Zhi Gu, Ao Huang, Qiong Luo, Mei Jie Zhang
References [1] M Gao, Y Wang, Li Fan, Research progress in calcium catalytic action during coal gasification, Chemical Industry & Engineering Progress. 9 (2015) [2] A.
[3] Ding Chen, Ao Huang, Huazhi Gu, et al, Corrosion of Al2O3–Cr2O3 refractory lining for high-temperature solid waste incinerator, Ceramics International. 41 (2015) 14748–14753
Zhu, et al, Refractory failure in entrained-flow gasifier: Vision-based macrostructure investigation in a bench-scale OMB gasifier, Applied Energy. 205 (2017) [7] Markus Carlborg, Fredrik Weiland, Charlie Ma, et al, Exposure of refractory materials during high-temperature gasification of a woody biomass and peat mixture woody biomass and peat mixture, Journal of the European Ceramic Society. 38 (2018) 777–787
Duan, et al, Anti-alkali corrosion properties of different refractory raw materials, Journal of Wuhan University of Science and Technology. 37 (2014) 428-431
Sang, et al, Lightweight design of bauxite-SiC composite refractories as the lining of rotary cement kiln using alternative fuels, Ceramics International. 43 (2017) 11048–11057.
Online since: June 2014
Authors: Jun Wang, Qi Kun Yang
References: [1] Mattias Elfwing, Susanne Norgren: International Journal of Refractory Metals & Hard Materials , Vol. 23 (2005), p. 242
Borrell: Ceramics International, Vol. 37(2011) , p.1139
[6] Shi Xiaoliang, Shao Gangqin, Duan Xinglong, Lin Huahuang, Yuan Runzhang: Journal of the Chinese ceramic society, Vol.32(2004) , p.1511
[7] Li Ning, Qiu Youxu, Zhang Wei, Wen Yuhua, Zhang Yong, Zhou Yonggui: Rare metal materials and engineering, Vol.36(2007) , p.1763
Journal of Refractory Metals and Hard Materials, Vol.31(2012) , p.266
Online since: November 2012
Authors: András Suplicz, József Gábor Kovács
These fillers are mainly graphite, carbon black, and carbon fibers, ceramic or metal particles.
Dang, Thermal Conductivity and Mechanical Properties of Aluminum Nitride Filled Linear Low-Density Polyethylene Composites, Polymer Engineering and Science. 49 (2009) 1030-1034
Pfefferkorn, Electrically Conductive Thermoplastic/Metal Hybrid Materials for Direct Manufacturing of Electronic Components, Polymer Engineering and Science. 49 (2009) 1511-1524
Kovács, Shrinkage Alteration Induced by Segregation of Glass Beads in Injection Molded PA6: Experimental Analysis and Modeling, Polymer Engineering and Science. 51 (2011) 2517-2525
Solymossy, Effect of Glass Bead Content and Diameter on Shrinkage and Warpage of Injection-Molded PA6, Polymer Engineering and Science. 11 (2009) 2218-2224.
Online since: January 2020
Authors: Vitaliy N. Gilman, Ayrat I. Faskhutdinov, Igor P. Balabanov
Davletshina Single-Turn Worm Mills for Conical Round-Tooth Gears, Russian Engineering Research, Vol. 37, 9 (2017) 812-813
Russian Engineering Research, Volume 37, Issue 11, November 2017, pp 969-973
Series: Materials Science and Engineering 134 (2016) 012042
Safarov, Research of characteristics of wearproof coating for cutting tools/INTERFINISH-SERIA 2014: International Conference on Surface Engineering for Research аnd Industrial Applications. 2014. p. 62
International Journal of Engineering and Technology(UAE) 7(4) (2018) pp. 71-73
Online since: August 2016
Authors: Peng Cao, Muhammad Dilawer Hayat
Development of PEG/PMMA based binders for Ti - Metal Injection Moulding Muhammad Dilawer Hayat1, a and Peng Cao1, b* 1Department of Chemical and Materials Engineering, University of Auckland, Private Bag 92019, Auckland 1142, New Zealand amhay097@aucklanduni.ac.nz, b, *p.cao@auckland.ac.nz Keywords: Metal injection moulding, titanium, PEG/PMMA binder system, Surfactant, Void.
Acknowledgments We acknowledge financial support from the Ministry of Business, Innovation and Employment (MBIE) of New Zealand, and the Singapore Institute of Manufacturing Engineering (SIMTech), Grant No.
Lin, Effects of stearic acid on the injection molding of alumina, Journal of American Ceramic Society 78 (1995) 2746-52
Edirisinghe, The effect of processing additives on the properties of a ceramic-polymer formulation, Ceramics International 17(1991) 89-96
Cao, Suitability of PEG/PMMA-based metal injection moulding feedstock: An experimental study, The International Journal of Advanced Manufacturing Technology 80 (2015) 1665-1671
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