Search Options

Sort by:

Sort search results by

Publication Type:

Publication Type filter

Open access:

Publication Date:

Periodicals:

Periodicals filter

Search results

Online since: June 2020
Authors: Ahmed O. Mosleh, Anton D. Kotov, Anastasia V. Mikhaylovskaya, Svetlana V. Medvedeva
Mikhaylovskaya1 1Department of Physical Metallurgy of Non-Ferrous Metals, National University of Science and Technology “MISiS”, Leninsky Prospekt, 4, Moscow 119049, Russia; 2Shoubra Faculty of Engineering, Benha University, Shoubra St. 108, Shoubra, 11629, Cairo, Egypt.
A 708 469–77 [10] Padmanabhan K A, Prabu S B, Mulyukov R R, Nazarov A and Imayev R M 2018 Superplasticity (Springer, Berlin, Heidelberg) [11] Giuliano G 2011 Superplastic forming of advanced metallic materials (Woodhead Publishing Limited) [12] Meng M, Fan X G, Guo L G and Zhan M 2018 Achieving fine-grained equiaxed alpha via thermo-mechanical loading under off-equilibrium state in two-phase Ti-alloys J.
Forum 551–552 387–92 [31] Guo W, Jia Q, Li R and Li W 2017 The Superplastic Deformation Behavior and Phase Evolution of Ti-6Al-4V Alloy at Constant Tensile Velocity High Temp.
Forum 385 DDF 137–43 [33] Alabort E, Kontis P, Barba D, Dragnevski K and Reed R C 2016 On the mechanisms of superplasticity in Ti-6Al-4V Acta Mater. 105 449–63 [34] Giuliano G 2008 Constitutive equation for superplastic Ti-6Al-4V alloy Mater.
Forum 385 45–52 [40] Mosleh A O, Mikhaylovskaya A V, Kotov A D, Sitkina M, Mestre-Rinn P and Kwame J S 2019 Superplastic deformation behavior of ultra-fine-grained Ti-1V-4Al-3Mo alloy: constitutive modeling and processing map Mater.
Online since: January 2021
Authors: Roberto Montanari, Andrea Di Schino, Giuseppe Napoli, Claudio Testani, Orlando di Pietro, Giulia Stornelli, Luciano Pilloni
Pilloni, Effect of thermo-mechanical parameters on the mechanical properties of Eurofer97 steel for nuclear applications, Open Engineering 8 (2018) 349-353
[9] Michael Gorley, Eberhard Diegele, Sergei Dudarev, Gerald Pintsuk, Materials engineering and design for fusion—Towards DEMO design criteria, Fusion Engineering and Design 136 (2018) 298–303
Surrey, Influence of a 1.5 T magnetic field on the tensile properties of Eurofer-97 steel, Fusion Engineering and Design 141 (2019) 68-72
Zinkle, Advanced materials for fusion technology, Fusion Engineering and Design 74 (2005) 31–40
Dietz, Present development status of EUROFER and ODS-EUROFER for application in blanket concepts, Fusion Engineering and Design 75–79 (2005) 989–996
Online since: February 2013
Authors: Tao Wang, Zhang Long Zhao, Hong Zhen Guo, Ze Kun Yao, Yong Zhang, Shu Hong Fu
Microstructural Evolutions of a High Temperature Titanium Alloy Processed by Thermal Mechanical Treatments Tao Wang1, a, Hongzhen Guo2, b , Zekun Yao2, c, Zhanglong Zhao2, d, Shuhong Fu1, e and Yong Zhang1, f 1Science and Technology on Advanced High Temperature Structural Materials Laboratory, Beijing Institute of Aeronautical Materials, Beijing 100095, PR China 2School of Material Science and Engineering, Northwestern Polytechnical University, Xi’an 710072, PR China awangtao8206@163.com, bhzguo@nwpu.edu.cn, cyzekun@nwpu.edu.cn, dzhaozhanglong000@sohu.com, efshdora@163.com, fbiamzhang@163.com Keywords: TG6 titanium alloy, Thermal mechanical treatment, Microstructure, Deformation mechanism.
Titanium alloys are more difficult to process in comparison to other engineering materials such as aluminum and steels due to their complicated transformation[2].
Yao, Influence of processing parameters on microstructure and tensile properties of TG6 titanium alloy, Materials Science and Engineering A. 528 (2010) 736-744
Nie, The high temperature deformation behavior and microstructure of TC21 titanium alloy, Materials Science and Engineering A. 527 (2010) 5360-5367
Khorev, Alloying and heat treatment of high-strength structural titanium β alloys, Russian Engineering Research. 30(2010) 781-788
Online since: August 2019
Authors: P. Nageswara Rao, D. Venkateswarlu, Muralimohan Cheepu, Narayanan Srinivasan, S. Senthil Kumaran
Srinivasan3,e 1Department of Mechatronics Engineering, Kyungsung University, Busan 48434, Republic of Korea 2Department of Mechanical Engineering, Marri Laxman Reddy Institute of Technology and Management, Telangana 500043, India 3Department of Manufacturing Engineering, School of Mechanical Engineering, Vellore Institute of Technology, Tamil Nadu 632014, India Email: amuralicheepu@gmail.com, *bdevuri.venky@gmail.com, cpnagva@gmail.com, dsenthilkumaran.s@vit.ac.in, esrinivasan.narayanan@vit.ac.in Keywords: Optimization, Laser welding, Titanium alloy, Mechanical properties, Bead geometry, Welding parameters, Fusion zone.
The mathematical model was advanced based on the equation formed by second order regression equation.
Forum. 710 (2012) 620-625
Seshabhattar (Eds.), Techno-Societal 2016, International Conference on Advanced Technologies for Societal Applications, ICATSA 2016, Springer, Cham, 2018, pp.709-717.
(eds) Advanced Materials.
Online since: June 2017
Authors: Qing Shan Yang, Zu Jian Yu, Wen Jun Liu
Chino, Materials Science and Engineering: A, 538 (2012) 281-287
Pan, Materials Science and Engineering: A, 590 (2014) 440-447
Pan, Materials Science and Engineering: A, 612 (2014) 187-191
Saito, Materials Science and Engineering: A, 488 (2008) 214-220
Carter, Journal of Materials Engineering and Performance, 16 (2007) 321-326.
Online since: April 2020
Authors: Quoc Tuan Nguyen, Nguyen Hong Hai, Le Minh Duc
Formation of Heterostructure with Appearance of a-Al Phase in Hyper-and Eutectic Al-Si Alloys by Solidification at High Rate Hong Hai Nguyen1,a*, Quoc Tuan Nguyen2,b, Minh Duc Le3,c 1School of Materials Science and Engineering, Hanoi University of Science and Technology, Hanoi, Vietnam 2Faculty of Mechanical Engineering, Hanoi University of Industry, Hanoi, Vietnam 3Department of Materials Science and Engineering, Le Quy Don University, Hanoi, Vietnam a*hai.nguyenhong@hust.edu.vn, btuannq@haui.edu.vn, cminhduclek52@gmail.com Keywords: aluminum alloy, hetero-structure, primary a-Al, primary silicon, eutectics Abstract.
Dwivedi: Materials Science and Engineering A, Vol. 408, 2005, Issues 1-2, p. 274-280, https://doi.org/10.1016/j.msea.2005.08.013 [2] M.
Okumiya, Semisolid Casting of Hypereutectic Al-Si-Cu Alloy with Sono-solidified Slurry, Key Engineering Materials, Vols 622-623, Switzerland, 2014, pp 804-810. doi: 10.4028/www.scientific.net/ KEM.622-623.804 [11] S.
Lenik, Change of Aluninum Alloys Structure by Sono-Solidification, Archives of Foundry Engineering, Vol 13, 4/2013, pp 39-42. doi: 10.2478/afe-2013-0078 [12] Junwen Zhao, Shusen Wu, Ping An, and Youwu Mao: Materials Science Forum, Vols. 141-143, 2008, p. 767-771, doi: 10.4028/www.scientific.net/SSP.141-143.767 [13] K.
Microstructural Evolution of A380 Aluminum Alloy Produced by Gas Induced Semi-Solid Technique (GISS), Advances in Materials and Processing Technologies, Vol. 1, 2015, Issue. 1-2, p. 155-163.
Online since: October 2006
Authors: M. Ossowski, T. Wierzchon
Ossowski 1b 1Faculty of Materials Science and Engineering.
The rapid progress in engineering enhances the demands set on materials requiring better mechanical properties, resistance to frictional wear, resistance to corrosion and erosion etc.
These demands can be satisfied by e.g. applying various surface engineering techniques which permit modifying the microstructure, phase and chemical composition of the surface layers of the treated parts.
Forum., Vols. 475-479 (2005), p.3887, [10] G.
Czyrska-Filemonowicz: Proc. 2 nd International Conference Heat Treatment and Surface Engineering in Automotive Applications, , Riva del Garda , Italy (2005), CD-rom
Online since: October 2014
Authors: Xiao Chu Wang, Zhen Huang, Jun Wei Wang, Wei Li
According to statistics, about 70% of the reproduction rubber powder was used for construction engineering in the United States.
Most of the applications of rubber concrete in engineering were used for road paving roads, airports, stadiums and so on.
The Second International Forum on Advances in structural engineering Proceedings, 2008:647-651
Sub grade Engineering, 2012, 3:24-27
Engineering Mechanical, 2000:901-905
Online since: August 2012
Authors: Jin Kui Xiong, Wei Yuan, Ju Dong Liu, Song Wei Huang
Liu: China Mechanical Engineering, Vol. 15 (2004) No. 17, pp.1573-1576.
Wang: Materials Science Forum, Vol. 532-533(2006), pp.584-587
Zhang: Key Engineering Materials, Vol. 443 (2010), pp. 388-393
Zhuang: Advanced Materials Research, Vol. 102-104(2010), pp.733- 737
Zhuang: Key Engineering Materials, Vol. 455(2011), pp.580-584.
Online since: November 2015
Authors: Valery V. Kuzin, Predrag Dašić, Mike Portnoy, Sergey Fedorov
There are several publications investigating different behaviors of Si3N4 ceramics in engineering [4-8].
Lawrence, Surface characterization and compositional evaluation of a fibre laser processed silicon nitride (Si3N4) engineering ceramic, Lasers in Engineering 20 (5-6) (2010) 359-380
Lawrence, Investigation of temperature distribution during CO2 laser and fibre laser processing of a Si3N4 engineering ceramic by means of a computational and experimental approach, Lasers in Engineering 27 (3-4) (2014) 135-160
Kern, Chapter 2.06 - Advanced manufacturing of hard ceramics, in: Comprehensive Hard Materials, Vol. 2: Ceramics, Elsevier, Oxford, 2014, pp. 207-230
Lawrence, The influence of brightness during laser surface treatment of Si3N4 engineering ceramics, Optics and Lasers in Engineering 50 (12) (2012) 1746-1751