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Online since: October 2014
Authors: Pavel Topala, Vladislav Rusnac, Dorin Guzgan
A series of papers [3, 4, 8] study the geometry of craters formed on the surfaces of pieces made ​​of different conductive materials after the application of DEI.
The phase structure and analysis of their material requires supplementary studies.
Chisinau, Electronic Material Processing, No. 6, 1990, pp. 17-18
Internet Journal of Engineering and Technology, 2011, Vol. 2, no. 2, issue 1. http://www.i-jet.eu/journal-ijet/c-p-ijet 112.pdf [6] Topala, P.; Guzgan, D.; Rusnac, V.
[13] Ginzel Jens, Behrens Arno, Wulfsberg Jens Peter: Technology Development for EDM using Statistical Analysis of Arc Information, Journal of Materials Processing Technology, 10 Iunie 2004, pp. 232-237, 14-th International Symposium on Electromachining.
Online since: December 2009
Authors: Xian Zhong Mo, Yu Xiang Zhong, Chun Qun Liang, Shu Juan Yu
Gratifying that the some progress has been achieved in the development of biodegradable products based on agricultural materials [2,3].
One of the most studied and promising raw materials for the production of biodegradable plastics is considered to the starch.
The fiber component decreased the mass loss of glycerol; therefore, the thermal stability of TPS materials was improved.
Construction materials based upon biologically renewable resources-from components to finished parts.
Journal of Applied Polymer Science, Vol.76(2000),p. 2080 [12] X.F.
Online since: May 2007
Authors: Tie Yong Zuo, B.L. Li, W. Wang, T.N. Jin, H. Huang, H.M. Li, Jing Xia Zou, Zuo-Ren Nie
Fu, .Xu, J.Yang, J.Zhou, T, Zuo, Materials Science Forum 1-3 (2002) Vol.
Tnstitute of Materials Engineering Australasia(2004)197
Rapidly Solidified Materials.
ASM International, Materials Park (2000) [17] T.
ASM International, Materials Park (1990)88-189
Online since: September 2013
Authors: Chang Qing Wang
In this study, the effect of bond-slip is neglected, and only the concrete material model and the reinforcing steel material model are required.
Journal of Tongji University, 40 (12), (2012), p. 52-58
Journal of Structural Engineering, ASCE, 116 (ST10), (1990), p. 2780-2800
Journal of the Structural Division, ASCE, 97(ST7), (1971)
ACI Journal, 79 (1), (1982), p. 13-27
Online since: March 2017
Authors: Maurizio Vedani, Libor Pantělejev, Ehsan Mostaed, Roman Štěpánek
Ebert, Magnesium: Properties – applications – potential, Materials Science and Engineering A 302 (2001) 37-45
Higashi, Review: Processing and mechanical properties of fine-grained magnesium alloys, Journal of Materials Science 34 (1999) 2255-2262
Kunz, Microstructure and mechanical properties of ultrafine-grained magnesium AZ91 alloy, Materials Science Forum 782 (2014) 384-389
Reed, Superplastic behaviour of AZ91 magnesium alloy processed by high pressure torsion, Materials Science and Engineering A 637 (2015) 1-11
Al Samman, Texture development in pure Mg and Mg alloy AZ31, Materials Science Forum 495–497 (2005) 623-632. 
Online since: October 2012
Authors: Guo Fu Li, Teng Fei Fang, Ming Teng He, Xiang Bo Ma
Luo: Applied Mechanics and Materials, Vol. 37- 38 (2010), pp. 1540-1543
Li: Journal of University of Shanghai for Science and Technology, Vol. 31(2009) No. 1, pp. 77-79
Tang: Journal of Huazhong University of Science and Technology, Vol. 33(2006) No. 10, pp. 89-92
Liu: Chinese Journal of Mechanical Engineering, Vol. 45 (2009) No. 10, pp. 111-117
Prickett: International Journal of machine Tools & Manufacture, Vol.46(2006) No.10, pp. 1045-1052
Online since: March 2012
Authors: Yong Zhen Zhang, San Ming Du, Fei Zhao
Friction and wear behavior of copper-graphite composite material in high-speed sliding with current Du Sanming a, * , Zhao Feib , Zhang Yongzhen c 1,2,3 College of Material Science and Engineering, Henan University of Science and Technology, Luoyang 471003, China a, *dsming@mail.haust.edu.cn, bfeizhao@mail.haust.edu.cn, cyzzhang@mail.haust.edu.cn Keywords: Friction, Wear, High-speed, Current, Wear mechanism Abstract: In the present study, the friction and wear behaviors of copper-graphite composite against GCr15 steel in high-speed sliding with current were investigated.
The disc specimen was 180mm in diameter, and the material was GCr15 steel.
The composite material can melt locally, which results in severe arc ablation [5].
Journal of Transport Geography 16 (2008) 268–277
Ren, et al., Wear behavior of Cu-Ag-Cr alloy wire under electrical sliding, Materials Science and Engineering A ,398 (2005) 262-267
Online since: December 2013
Authors: Juraj Žilinský, Peter Juráš
Wind-driven rain research is of importance in a number of research areas including earth sciences, meteorology and building science.
Moisture accumulation in porous materials can lead to water penetration, frost damage, moisture induced salt migration, discoloration by efflorescence, structural cracking due to thermal and moisture gradients, increased thermal lost due to the thermal conductivity, esthetics etc.
Material properties are summarized in Tab. 3.
Table 3 Material properties of selected materials used in the simulated wall structures CEM.
In Journal of Thermal Enviroment & Building science, vol. 25 – July 2001 [7] JURÁŠ, P. – KAJABA, P. – ŽILINSKÝ, J.: Potreba a využitie klimatických referenčných rokov stavebníctve.
Online since: October 2010
Authors: Li Xiu Zhang, Song Hua Li, Yu Hou Wu
Apart from optimizing lubrication, the application of new materials is an interesting alternative to increase the boundary speed and life-span of roller bearings for machine-tool spindles.
Recent progress in ultra hard abrasives has resulted in the adoption of high wheel speeds to the fixed abrasive grinding process, which exhibits outstanding characteristics for hard as well as tough materials and even for thin, fragile components.
Tu: International Journal of Machine Tools & Manufacture, Vol. 39 (1999), pp.1345-1366
Wu: Key Engineering Materials, Vol. 359-360 (2008), pp.108-111
Wu: Applied Mechanics and Materials, 2010.
Online since: March 2025
Authors: Jonny Singla, Jagtar Singh, Ranbir Singh Rooprai, Vikrant Singh
Methodology Materials.
Journal of Materials Research and Technology, 27, 5910-5923
Materials Science and Engineering: A, 881, 145333
Materials Science and Engineering: A, 798, 140092
Materials Letters, 136043.