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Online since: October 2014
Authors: Danielle Ucha Rocha, Lorena Batista Caliman, Douglas Gouvêa
Introduction Cr-doped SnO2 nanoparticles have been studied due to two main applications: catalyst materials [1-3] and ceramic pigments [4-8].
Azelee, Evolution of microstructure during the thermal activation of chromium-promoted tin(IV) oxide catalysts: An FT-IR, FT-Raman, XRD, TEM, and XANES/EXAFS study, Chemistry of Materials 11 (4) (1999) 896-909
Monros, Study of Cr-SnO2 ceramic pigment and of Ti/Sn ratio on formation and coloration of these materials, Journal of the European Ceramic Society 27 (1) (2007) 215-221
Yang, XPS investigation of segregation of sb in SnO2 powders, Journal of Wuhan University of Technology-Materials Science Edition 23 (1) (2008) 95-99
Nowotny, INTERFACE DEFECT CHEMISTRY OF OXIDE CERAMIC MATERIALS - UNRESOLVED PROBLEMS, Solid State Ionics 49 (1991) 119-128
Online since: May 2014
Authors: Sheng Dun Zhao, Ren Feng Zhao, Yong Qiang Zhao, Fan Xu, Xiao Lan Han
It has been successfully used to connect the aluminum alloy, galvanized sheet or nonferrous materials.
In all of these regions, the materials flowing directions were revealed, and then the parts of the materials also were prolonged and compressed.
Data for maximum shearing loads are classified on the rolling orientations of the materials and press join orientations, taking into account all the material combinations.
“Prediction of forming limit diagrams based on shear failure criterion,” International Journal of Solids and Structures, vol.47(2010) [4] S.Hao, W.Brocks, “The Gurson-Tvergaard-Needleman-Model for rate and temperature-dependent materials with isotropic and kinematic hardening,” Computational Mechanics, vol.20(1997), p34-40,
ASME Journal of Engineering Material Technology, vol. 99( 1977), p.2-51 [9] Tvergaard V.
Online since: November 2016
Authors: Jian Zhao, Xiang Xiao, Cheng Liu, Wei Li
Materials and Methods The materials used for the current study was 7xxx series aluminum ingot.
Robson, Microstructural evolution in aluminium alloy 7050 during processing, Materials Science and Engineering A. 382 (2004) 112-121
Zheng, High-pressure homogenization treatment of Al-Zn-Mg-Cu aluminum alloy, Journal of Material Science.43 (2008) 1583-1586
Solberg, Effect of homogenization and alloying elements on recrystallization resistance of Al-Zr-Mn alloys, Materials Science and Engineering A. 444 (2007) 284-290
Prangnell, Modelling Al3Zr dispersoid precipitation in multicomponent aluminium alloys, Materials Science and Engineering A. 352 (2003) 240-250.
Online since: July 2013
Authors: N.G. Kolbasnikov, Evgenii V. Chernikov, Yuriy A. Bezobrazov, Anton A. Naumov
MaxStrain MCU realizes 2-D forging process to receive ultrafine or nanostructure in metallic materials.
Such non-classical steels processing modes allow us to receive materials with not typical mechanical properties.
Rudskoy: Ultrafine and nanoscale grain structure receiving using hot and warm deformation (Science and technical journal of SPbSPU #2, St.
Naumov: High Strength Dual-Phase Steel Structure Evolution During Hot Rolling (Materials Science & Technology 2012 Conference & Exhibition (MS&T’12), Thermal and Thermomechanical Processing Session, Pittsburgh, PA, USA 2012) [6] Y.A.
Naumov: High Strength Dual-Phase Steel Structure Evolution During Hot Rolling (Materials of 6th international science and application conference "Innovative technologies for metalurgy and mechanical industry", Ekaterinburg 2012) [7] G.A.
Online since: October 2015
Preface Starting with 1999, the International Conference on Materials Science and Engineering - BraMat (Brasov Materials), organized every odd year in Brasov at Transilvania University, is one of the main important scientific events in the field of Materials Science and Engineering, from Romania and Europe.
BraMat International Conference 2015 was organized by "Transilvania" University of Brasov - Faculty of Materials Science and Engineering in cooperation with Academy of Technical Sciences from Romania, the Foundry Technical Association of Romania, the Association for Heat Treatment and Surface Engineering and the Romanian Welding Society.
The conference's contributions have been presented, oral or poster, in the frame of the traditional sections of the conference, as follows: Equipment and Technologies in Materials Engineering, Materials Science, Heat Treatment and Surface Engineering, Advanced Welding EcoTechnologies and Safety, Modelling and Simulation in Materials Engineering.
Out of all papers, 69 authors have chosen to publish their contributions in Advanced Materials Research journal edited by Trans Tech Publications.
Conference Steering Committee Daniel MUNTEANU, Conference Chairman Vicerector of Transilvania University of Brasov, ROMANIA Andreas ANAYIOTOS Vicerector of Cyprus University of Technology, Limassol, CYPRUS Luis CUNHA Minho University, Braga, PORTUGAL Teodor MACHEDON-PISU Dean of Materials Science and Engineering Faculty, Transilvania University of Brasov, ROMANIA Cornel SAMOILĂ Academy of Technical Sciences of Romania Transilvania University of Brasov, ROMANIA Sefik SUZER Bilkent University, Ankara,TURKEY Doru M.
Online since: February 2019
Authors: Almaz B. Kuandykov, Alexey V. Bogomolov, A. Zhakupov
Tugumov, Comparative structural strength research of hardened carbon steel and hot-rolled alloy steel, «IOP Conference Series: Materials Science and Engineering», 142 (2016) 1-8
Maltseva, Influence structure on stress aging of low-alloyed steel, Deformation and rupture of materials, 8 (2014) 9-15
Chandravathi, Effect of isothermal heat treatment on microstructure and mechanical properties of reduced activation ferritic martensitic steel, Journal of Nuclear Materials. 435 (2013) 128-136
Tanigawa, Irradiation effects on precipitation and its impact on the mechanical properties of reducedactivation ferritic/martensitic steels, Journal of Nuclear Materials. 367-370 (2007) 42-47
Fernandez, Grain boundary microchemistry and metallurgical characterization of Eurofer’97 after simulated service conditions, Journal of Nuclear Materials. 329-333 (2004) 274-277
Online since: February 2012
Authors: Zi Tian Fan, Rong Ma, Xuan Pu Dong, Xiao Qing Xiong, Shu Qun Chen
Experimental In our study, the materials of as-cast Mg-3%Ni-x%Cu alloys were prepared by high-purity pure Mg (99.9%, mass fraction), Mg-80%Ni and Mg-30%Cu master alloys.
Lavernia: Journal of Materials Science Vol. 28, (1993), p. 2395 [3] K.
Nishiyama: Materials Technology Vol. 1 (1994), p. 1 [5] D.Q.
Yang: Material Science and Engineering A, Vol. 494 (2008), p. 139 [6] Magnesium Technology, edited by H.E.
Lücke: Journal of Applied Physics, Vol. 27 (1956), p. 583, p. 789
Online since: February 2014
Authors: Heru Susanto, Bhagus Alfiyan
Nowadays fly ash is well known as suplementary cementing materials (SCMs) that contributes to the properties of the hardened concrete because of its pozzolanic activity [4].
Experimental Materials.
The materials used in this paper are divided into several functions.
Singh, Impact of Fly Ash Incorporation in Soil Systems, Journal of Agriculture, Ecosystems, and Environment, 136 (2010) 16-27
Piskin, Characterization of Fly Ash and Its Effects on The Compressive Strength Properties of Portland Cement, Indian Journal of Engineering and Materials Sciences, 15 (2008) 433-440
Online since: September 2013
Authors: Ying Feng Zhang, Jun Qiang Wang, Teng Yang
George Huang, professor of the University of Hong Kong, has implemented RFID technologies to capture the real-time information of workers, machines and materials of fixed-position and assembly line [6,7].
Then attach the operators and production materials with RFID tags and equip each area with RFID readers to track the manufacturing information.
The RAOGS is use to provide the operators with operation details and instructions of the assembly process, which could reduce the frequency of quality problems caused by improper operation or wrong installation of materials.
The ROSoTQ is use to make a quick optimization to the exception occurred during assembly such as the lack of raw materials, changing in delivery date, new task inserting, etc.
George: RFID-based Smart Kanbans for Just-in-time Manufacturing, International Journal of Materials and Product Technology, Vol. 33(2008), p. 170–184
Online since: July 2007
Authors: Janina Adamus
Journal of Materials Processing Technology 80-81 (1998), p. 121-125 [5] R.
Journal of Materials Processing Technology, 125-126 (2002), p. 206-212 [8] A.M.
Journal of Materials Processing Technology 103 (2000), p. 44-50 [9] N.
Journal of Materials Processing Technology 139 (2003), p. 64-70 [10] S.S.
Journal of Materials Processing Technology 162-163 (2005), p. 524-529 [11] R.