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Online since: November 2014
Authors: Adam Lipski
Determination of fatigue limit by Locati method using S-N curve determined by means of thermographic method LIPSKI Adam The University of Technology and Life Sciences in Bydgoszcz, Faculty of Mechanical Engineering, Al.
Test Description Test station: The tests were performed in the Department Laboratory for Research on Materials and Structures (certified by the Polish Centre for Accreditation – PCA AB 372) of the Faculty of Mechanical Engineering at the University of Technology and Life Sciences in Bydgoszcz, using a reversed bending fatigue testing machine (with rotational frequency 77 Hz).
The following software was installed in the PC computer: – VirtualCAM allowing two-way communication between PC and the thermographic camera via USB 2.0 interface; – CIRRUS Front End, which was the user interface used to control the CEDIP camera; and, – ALTAIR allowing downloading, storage and advanced processing of thermographic images.
Lipski, Impact Of The Strain Rate During Tension Test On 46Cr1 Steel Temperature Change, Key Engineering Materials, Vol. 598 (2014), pp. 133-140
Boroński, Use of Thermography for the Analysis of Strength Properties of Mini-Specimens, Materials Science Forum, Vol. 726 (2012), pp. 156-161
Online since: July 2020
Authors: Abdul Halim Shaari, Norlaily Mohd Saiden, Hasfalina Che Man, Raba'ah Syahidah Azis, Idza Riati Ibrahim, Ismayadi Ismail, A.N. Nur Asyikin, Syazana Sulaiman, Nurul Ayuni Azuan
Removal of Copper Ions from Aqueous Solution Using Waste Mill Scales Nur Asyikin A.N1,3*, Rabaah Syahidah Azis1,2, Syazana Sulaiman2, Nurul Ayuni Azuan2, Abdul Halim Shaari2, Hasfalina Che Man4, Ismayadi Ismail1, Idza Riati Ibrahim1, Norlaily Mohd Saiden1,2 1Material Synthesis and Characterization Laboratory (MSCL), Institute of Advanced Technology (ITMA), Universiti Putra Malaysia, 43400 Serdang Selangor 2Departments of Physics, Faculty of Science, Universiti Putra Malaysia, 43400 Serdang Selangor. 3Center of Foundation Studies, Cawangan Selangor, Universiti Teknologi MARA 4Department of Biological and Agricultural Engineering, Faculty of Engineering, Universiti Putra Malaysia, 43400 Serdang, Selangor, Malaysia rabaah@upm.edu.my; asyikin2750@uim.edu.my Keywords: waste mill scales, milling time, iron oxides, Cu ions, removal efficiency (RE).
The waste mill scales were conventionally ball milled using a Pascal Engineering mechanical milling for 24, 48 and 72 h.
References [1] Kalpakl, Y., Removal of Cu (II) from aqueous solutions using magnetite: A kinetic, equilibrium study, Advances in Environmental Research, 4 (2015) 119-133
In Key Engineering Materials Trans Tech Publications (2008) 380, 229-255 [5] Parkinson, G.
Materials Science Forum, 846 (2015) 403-409
Online since: December 2019
Authors: Sergey Saiyan, Alexander Paushkin
Saiyan, Numerical study of the applicability of the Saint-Venant principle, RSP 2017 – XXVI R-S-P Seminar 2017 Theoretical Foundation of Civil Engineering, Warsaw, Poland, August 21-25, 2017 Volume 11 [2] A.
Series: Materials Science and Engineering 365 (2018) 042026 [3] S.
Advances in Intelligent Systems and Computing. 692 (2017) 885-893
Advances in Intelligent Systems and Computing. 692 (2017) 902-907
Avakov, Some features of temperature field definition in axisymmetric problems, in: 2017 International Conference on Industrial Engineering, Applications and Manufacturing (ICIEAM), IEEE, 2017, pp. 1-5
Online since: October 2010
Authors: Olivério Moreira Macedo Silva, Maria do Carmo de Andrade Nono, José Vitor C. Souza, M.V. Ribeiro, João Paulo Barros Machado, G.V. Martins
Advanced ceramic materials constitute a mature technology with a very broad base of current and potential applications and a growing list of material compositions.
Silva: Materials Science Forum Vol. 591/593 (2008), p. 565
[14] J.V.C.Souza, et al.: 7 th International Conference on Advanced Manufacturing Systems and Technology, Udine June, 2005.
Sajgalik, Editors, Engineering Ceramics‘96; Higher Reliability Trough Processing, Kluwer Academic, The Netherland (1997), pp. 169–177
Hampshire, Editor, Non-Oxide Technical and Engineering Ceramics, (Elsevier, London 1986), p. 83–96.
Online since: April 2021
Authors: Wiendartun Wiendartun, Risdiana Risdiana, Waslaluddin Waslaluddin, Soni Setiadji, Anisa Tri Rahayu
Here, we report the scale-up of silicone oil synthesis using re-engineering to produce silicone oil of the same target quality as a laboratory scale, with a target viscosity is in between 1000 - 5000 mPa.s.
Formulation, processing and scalability engineering and processing are carried out to overcome minimal or no impact on the final target of the scale-up synthesis process with the same results as a laboratory scale.
Processing and engineering, by increasing the reactor volume, doubled, set the reaction time twice as well, and kept the rotational speed of the magnetic stirrer rods and the reaction temperature fixed.
Meanwhile, purification engineering was done by changing the evaporation time from 6 hours to 8 - 12 hours, and keeping the ratio of chloroform and milli-q-water to the PDMS gel to 1 to 1.
Constable, Synthetic Polymers as Materials for Artificial Vitreous Body: Review and Recent Advances, J.
Online since: May 2020
Authors: Vitaliy Ivanov, Nataliia A. Makarenko, Marina V. Ahieieva, Elena Lavrova
Investigating the influence of the power supply type upon the properties of the weld joints under manual arc welding (2014) Advanced Materials Research, 1040, pp. 837-844 [3] Il’yaschenko, D.P., Chinakhov, D.A., Makarov, S.V., Danilov, V.I., Galinsky, A.A. and Verkhoturov, E.V.
Engineering Solid Mechanics 8 (2020). doi: 10.5267 /j.esm.2019.8.006
Modification In Weld Overlay for Productivity and Corrosion Resistance (2015) IJSTE - International Journal of Science Technology & Engineering, 2(2), 2349-784X
Electro Slag Strip Cladding Process // International Journal of Modern Engineering Research (IJMER). 2014.
Study of the electro slag strip cladding process & effect of its parameters on welding // International Journal of Advance Engineering and Research Development. 2016.
Online since: July 2020
Authors: Kamal Nain Chopra, Ritu Walia
Figure courtesy https://www.tf.uni-kiel.de/matwis/amat/iss/kap_7/advanced/a7_1_1.html.
Yang, Microelectronic Engineering 77(2005)382- 388
Jelinek, Laser processing of advanced bioceramics.
[7] https://www.tf.uni-kiel.de/matwis/amat/iss/kap_7/advanced/a7_1_1.html
[16] Ritu Walia and Kamal Nain Chopra, Technical Analysis and Overview of the Application of Artificial Dielectric Materials in the form of Photonic crystal cavity with resonance in Dirac leaky-wave Antennas, Spring International Conference on Material Sciences and Technology (MST-S), CHINA, Wuhan University April 22-24, 2019; Materials Science Forum, Trans Tech Publications Ltd., Zurich, SWITZERLAND (In Press 2019)
Online since: August 2012
Authors: Peter Hodgson, Yun Cang Li, Cui'e Wen, Yu Wang
Preparation of Titanium/Strontia Composite by Powder Metallurgy for Biomedical Application Yu Wang1,a, Cuie Wen2,b, Peter Hodgson1,c, and Yuncang Li1,d 1Institute for Frontier Materials, Deakin University, Waurn Ponds, Victoria 3217, Australia 2 Faculty of Engineering and Industrial Sciences, Swinburne University of Technology, Hawthorn, Victoria, 3122, Australia a qs@deakin.edu.au, b cwen@swin.edu.au, c peter.hodgson@deakin.edu.au, d yuncang.li@deakin.edu.au (corresponding author) Keywords: Powder metallurgy, Titanium - based composite, Strontia.
Abstract: In this study, a Titanium (Ti) / Strontia (SrO) composite was prepared using powder metallurgy, with the aim of obtaining advanced Ti-based composites for use as bone implant materials.
Therefore, Ti composites with SrO content is expected to have a better biocompatibility and advanced mechanical properties e.g. high hardness and strength, and reasonable elastic modulus for application as bone implant materials.
Forum., 654-656 (2010) 815-818
Online since: June 2008
Authors: Elena Tresso, Jose Brito Correia, Kotaro Hanada, Vanessa Livramento, Nobumitsu Shohoji, Kazunori Yamamoto, Tomitsugu Taguchi, Eiji Osawa
Tresso 2,d , K.Yamamoto 3,e , T.Taguchi 3,f, K.Hanada 4,g , and E.Ōsawa 5,h 1 -INETI -Instituto Nacional de Engenharia, Tecnologia e Inovação, Estrada do Paço do Lumiar, 22, 1649-038 Lisboa, Portugal 2 -Dipartimento di Fisica, Politecnico di Torino, cso Duca degli Abruzzi 24, 10129 Torino, Italy 3 -JAEA - Japan Atomic Energy Agency, Nuclear Science Research Institute, Quantum Beam Science Directorate, Tokai-mura, 319-1195 Ibaraki, Japan 4 -AIST-Advanced Industrial Science and Technology, Advanced Manufacturing Research Institute, Low-formability-materials Processing Group, Tsukuba, 305-8564 Ibaraki, Japan 5 -NanoCarbon Research Institute, Room No. 12, AREC, Shinshu University, Faculty of Textile Science and Technology, 386-8567 Ueda-shi Tokida 3-15-1, Nagano, Japan.
Copper has widespread use as engineering material, because of its structural and functional properties, notably high thermal and electrical conductivity.
Forum Vol. 514-516 (2006), p. 707
Online since: May 2014
Authors: Feng Kui Cui, Ya Fei Xie, Xiao Dan Dong, Li Min Hou
Simulation analysis of metal flow in high-speed cold roll-beating Cui Feng-kui 1, a, Xie Ya-fei 1, b, Dong Xiao-dan 1, c, Hou Li-min 1 , d Electromechanical Engineering College, Henan University of Science& Technology, Luoyang 471003, China acuifk2008@163.com, bxieyafei0914@163.com, c15138757409@163.com, dhoulimin1111@126.com Keywords: High-speed cold roll-beating; Flow law; Simulation; Analysis Abstract.
Spline cold rolling precision forming technology is a sophisticated, efficient, green and near net shape advanced manufacturing technology [1].
Forum Vol. 83-87 (1992), p. 119 [2] M.A.
Mishing, in: Diffusion Processes in Advanced Technological Materials, edtied by D.