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Online since: December 2014
Authors: Marián Bujna, Marian Kučera, Marcela Korenková, Peter Haas
HLINKU 2, 949 76 NITRA, SLOVAK REPUBLIC 3INSTITUTE OF MANAGEMENT AND INFORMATION TECHNOLOGIES, FACULTY OF NATURAL SCIENCES, CONSTANTINE THE PHILOSOPHER UNIVERSITY IN NITRA, TR.
Material and Methods The device Tribotestor M'06 (Fig. 1) was used for tribological experimental tests.
The journal bearing is fixed in the testing head.
Plantohyd 46 S is compatible with materials that are usually used in hydraulic systems.
Valíček et al., Shadow method for the evaluation of surface created by hydroabrasive dividing of materials, Research in Agricultural Engineering, 57(special iss.) (2011) S69–S73
Online since: July 2016
Authors: Krittee Eidhed, Papatsorn Singhatham
Such related data was collected from journals that appeared in 1) the database of Thailand Journal Citation Index Centre (TCI), 2) Web of Science database (WoS) and 3) RMUTP Research Journal.
The method of the study was under the principles of Institute for Scientific Information (ISI), Thai Journal Citation Index Centre (TCI) [1] and Web of Science Database (WoS) [2].
Materials and Methods 2.1 The research processes were as follows: a.
In total the number of items was 417. 2.3 Survey data of research published and cited in international journals from the list in Web of Science Database (WoS) [2]. 2.4 Assess the validity of data by considering the quality of research articles in terms of the following criteria: a.
[2] Thomson Reuters, 2013, Web of Science, Retrieved December 1, 2013, Information on http://wokinfo.com
Online since: February 2016
Authors: A.V. Blagin, M.L. Lunina, A.G. Kozaeva
Principles of Controlled Exposure in Semiconductor Materials Science of Low-Dimensional Systems Blagin A.V.a, Lunina M.L.b and Kozaeva A.G.c 1Platov South-Russian State Polytechnic University (NPI), St.
The article discusses the principles of controlled technological influence the knowledge of which allows a researcher to effectively plan pilot studies in materials science and technologies of electronic equipment.
Blagin, Gradient MultiComponent Liquid-Phase Crystallization of Semiconductor Materials, SKNC VS.
Seredin, Substructure Formed in Gallium Arsenide under Gradient LPE, Materials XI Intern.
Lunina, Kinetics of Crystallization of Bismuth Heterosystems Al-In-Sb-Bi and Ga-As-P-Bi, Journal of Russian Academy of Sciences. inorganic materials. 44(12) (2008) 1430-1433
Online since: January 2026
Authors: Jairo Flórez Páez, Yina Paola Ortega, Dagoberto Lozano Rivera
Oda, «Optimization Procedure for the Material Composition Of Composite Structures.,» Journal of Biomedical Materials Research - Parte A, 67(4),, p. 1360–1366, 1918; 2003
Davim, «Composite materials: A bibliometric analysis,» AIMS Materials Science, vol. 11, 09 12 2024
Zhang, «Smart composites for environmental remediation a review.,» Materials Science and Engineering, 2021
Wegst, «Bioinspired structural materials.,» Nature Materials, 2015
Meyers, «Biological materials: Structure and mechanical properties.,» Progress in Materials Science
Online since: September 2015
Authors: Yoshinobu Shimamura, Takashi Matsumura, Akira Ueno, Yuki Nakamura, Noriyasu Oguma, Kenji Okada, Akiyoshi Sakaida, Tatsuo Sakai, Koushu Hanaki, Kazutaka Mukoyama
In such a circumstance, the Society of Materials Science, Japan (JSMS) had organized a joint project of Committees on Fatigue and Reliability Engineering in the JSMS to collect a number of fatigue test data of metallic materials.
[2] JSMS, Database on Fatigue Strength of Metallic Materials, The Society of Materials Science, Japan, Kyoto (1996)
Sakai et al., Databook on Fatigue Strength of Metallic Materials, The Society of Materials Science, Japan and Elsevier B.
Sakaida et al., Statistical estimation of S-N curves for structural carbon steels using their static mechanical properties, Journal of Materials Science, Japan, Vol.64, (2015) in Press
Sakai, Review and prospects for current studies on very high cycle fatigue of metallic materials for machine structural use", Journal of Solid Mechanics and Materials Engineering, Vol.3, No.3, (2009), 425-439
Online since: September 2013
Authors: Jian Wen Wei, Yi Qiao Wu, Dun Qiu Wang
Gascón: Journal of Hazardous Materials.Vol.163(2009), p.213-221
Basly: Journal of Hazardous Materials.Vol.171(2009), p.1001-1008
Vo: Journal of Materials Science.Vol.45(2010), p.2952-2957
Jiang: Journal of Hazardous Materials.Vol.192(2011), p.277-283
Djaoued: Journal of Hazardous Materials.Vol.183(2010), p.554-564
Online since: November 2019
Edited by: S.R. Jayaram, Lingappa M. Shashank, Y. M. Shashidhara, M.S. Srinath
This volume of the journal contains papers which were presented at the International Conference on Green Trends in Mechanical Engineering Sciences (ICGTMES) that was held on October 3-5, 2018, Karnataka, India.
The focus of the conference was to open a new paradigm to deliberate on eco-friendly and robust design, use of materials with less environmental impact, use of fewer materials, optimal utilization of resources during manufacturing processes.
We hope that the presented papers will be interesting and useful for many specialists in the field of mechanical engineering and materials science.
Online since: September 2015
Authors: Muhammad Kashif Khan, Qingyuan Wang
Initially, the papers from “fatigue” have been searched in the domain of Materials Science, Materials Engineering, Physics and Mechanics published in the period of 1995 to 2014.
It can be seen that majority of these papers were published in research journal titled “Fatigue and Fracture of Engineering Materials and Structures”.
The remaining 32% of the top 50 VHCF papers were published in Materials Science and Engineering A, Scripta Materilia, Acta Materialia etc.
It was found that VHCF papers were published in two major journals of fatigue named as “International Journal of Fatigue” and “Fatigue and Fracture of Engineering Materials and Structures”.
Bathias, There is no infinite fatigue life in metallic materials.
Online since: September 2014
Authors: Jian Rong Chen, Yan Peng Shi, Meng Lu Wu, Shun Xian Zhong
Journal of hazardous materials, 2012, 205: 229-235
Arabian Journal for Science and Engineering, 2014: 1-7
Journal of colloid and interface science, 2011, 359(1): 24-29
Journal of hazardous materials, 2012, 215: 272-279
Journal of hazardous materials, 2011, 192(3): 1515-1524
Online since: May 2011
Authors: Li Wang, Da Hu Rui, Jian Hui Yang
Phenomena of Multicale Fracture of Brittle Materials and Its application to Teaching in Strength Theory WANG Li , RUI Dahu , YANG Jianhui Department of Civil Engineering of Henan Polytechnic University , Jiaozuo, 454000 , China E-mail:wlcjwh@163.com Key words:multi-scale mechanics; strength of materials; brittle materials; numerical simulation Abstract:Multi-scale science is the challenge and opportunity of science in the 21th century, and turbulence of liquid and fracture of solid will be the classical problems of multi-scale mechanics.
Bazant and Chen [2] pointed out that the theorist of material mechanics seldom considered the scaling of structural failure and size effect of materials.
So, to resolve the puzzle, we have to turn to multi-scale science. 2 Material Scale Division Now we discuss the division of hierarchy and scale of material structure.
In recent years, because of its optimistic prospects, micro-machinery is becoming the hot research topics in the fields of biology, medicine, optics, mechanics, materials science, aeronautics and astronautics, mechanical engineering and electronics [4].
Two Important Scientific Problems in Engineering Structures——Distributed Damages and Scale Effect [J].Journal of South China University of Technology (Natural Science), 2002,30(11):11~14 [8]Bazant ZP ,Xiang Y.