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Online since: September 2020
Authors: Wei Wei He, Min Hao, Hui Qu Li, Liang Wang, Jun Zhou Chen
Enhanced mechanical properties in ultrafine grained 7075 Al alloy, Journal of Materials Research, 20(2)(2011) 288-291
Casting properties of the high-strength AlZnMgCuNiSi alloys, Journal of Materials Research, 18 (3) (2003) 635-641
Lightweight materials for aircraft applications, Materials Characterization, 35 (1) (1995) 41-46
Recent development in aluminum alloys for aero-space applications, Materials Science & Engineering A, 280 (1) (2000) 102-107
Recent development in aluminum alloys for the automotive industry, Materials Science & Engineering A, 280 (1) (2000) 37-49
Online since: March 2016
Authors: Wen Jun Ye, Rui Liu, Yang Yu, Cheng Lin Li, Ye Shao, Song Xiao Hui, Xiao Yun Song
Introduction Biomedical metallic materials have been used as the replacement materials of hard human tissues for many years due to their high strength, good toughness and machinability [1].
Experimental Materials and Fabricating Process.
The powders with particle sizes between 106 and 150μm were chosen as raw materials.
Godlinski, Highly porous titanium scaffolds for orthopaedic applications, Journal of Biomedical Materials Research B, Applied Biomaterials. 95(2010) 53-61
Gauthier, Bulk and porous metastable beta Ti-Nb-Zr (Ta) alloys for biomedical applications, Materials Science and Engineering C. 31(2011) 643-651
Online since: December 2024
Authors: Dmytro Kolosov, Serhii Onyshchenko, Hanna Tantsura, Ivan Belmas, Olena Bilous, Kateryna Antonova
Mechanical characteristics of composite materials with cables of a circular cross-section, which are placed in the same plane, are researched in the article [2].
Mechanics of Composite Materials, 17(1), 115-119
Analysis of Strength Factors of Steel Cord Conveyor Belt Splices Based on the FEM Advances in Materials Science and Engineering Volume 2019 ID 6926413 DOI:10.1155/2019/6926413 [20] Frankl S M, Pletz M, Wondracek A, and Schuecker C. (2022).
IOP Conference Series: Earth and Environmental Science. 1348. 012085.
Innovations in science and education: challenges of our tame.
Online since: May 2020
Authors: Sergei Gladkovsky, Vladimir P. Volkov, Denis Rinatovich Salikhyanov, Yurij A. Avraamov, Valeriya E. Veselova
As a result, the flow curves of the materials were defined.
Krishnan, Effects of Aging on the Microstructure of 17-4 PH Stainless Steel, Materials Science and Engineering A. 104 (1988) 181-189
Effect of hot isostatic pressing on the microstructure of K417G cast turbine discs, Materials Science Forum. 816 (2015) 557-561
The metallurgy and processing science of metal additive manufacturing, International Materials Reviews. 61:5 (2016) 315-360
Felstead, Selective laser melting of a stainless steel and hydroxyapatite composite for load-bearing implant development, Journal of Materials Processing Technology. 209 (2009) 5793-5801
Online since: February 2014
Authors: Chun Ying Yuan, Yang Zhao, Qing Man Cui, Shuo Yang
Materials and Methods Experimental Materials.
Acknowledgements This work was financially supported by the Science Foundation of Tanggu District (Project No.2010XN08-05).
Allelopathic growth in hibition of selected phytoplankton species by submerged macrophytes.Journal of Phycology,2002,38:862-871
Marine Environmental Science, 2010,29(4):496-499
European Journal of Phycology,2005,40(1):31-37
Online since: May 2020
Authors: Martin Sahul, Erika Hodúlová, Beáta Šimeková, Ingrid Kovaříková
Experimental Materials and Methods Commercially pure or low-alloy nickel was used as the base material, that are useful in several fields, notably chemical processing and electronics.
The experimental materials Nickel 201 in 100x50x2 mm was used.
In Comprehensive Materials Processing; Elsevier Ltd., 2014; Vol. 6, pp 151–179
Karppi, “The application of electron beam welding for the joining of dissimilar metals: an overview,” Journal of Materials Processing Technology, vol. 59, no. 3, pp. 257–267, May 1996
Bonollo: Investigation of electron-beam welding in wrought Inconel 706—experimental and numerical analysis, In: Materials Science and Engineering A 392 (2005) 94–105 [10] Y.
Online since: November 2012
Authors: Yu Ying Jiang, Lie Hang Gong, Hai Tao Wang, Cong Cong Gong, Xin Lin Xu
The definition of abrasive wear is that the wear caused by the lost materials due to the interaction of various of materials or protruding objects and the surface of another materials [2].
Thought plenty of experiments, a Russian scholar [2] concluded that wear rate of materials were almost the same when abrasives hardness were much higher than that of materials.
While abrasive particles hardness approach to materials, wear rate decreased sharply.
Journal of Mechanical Strength, 6 (2005) 860-863
Journal of PLA University of Science and Technology, 6(2006)275-279
Online since: January 2019
Authors: Plato Kapranos
Thixoforming of Aluminum A201- Expectations and Fulfilment Plato Kapranos Department of Materials Science & Engineering, the University of Sheffield, Sir Robert Hadfield Building, Mappin Street, Sheffield, S1 3JD, U.K.
[9] DH Kirkwood, P Kapranos, KP Young, M Suery & HV Atkinson,”Semi-Solid Metal Processing“, Springer Series in Materials Science, 124, ISBN 978-3-642-00706-4, January 2010
“Multi-step induction heating regimes for thixoforming 7075 aluminum alloy”, Materials Science and Technology, Vol. 20, April 2004, pp. 490-496
“Microstructural Evolution and tensile properties of thixoformed high performance aluminum alloys”, J. of Materials Science & Engineering A, 361, 2003, pp 213-224
“Effect of heat treatment on properties of thixoformed high performance 2014 and 201 aluminium alloys”, Journal of Materials Science, 39 (2004), pp 99–105
Online since: January 2012
Authors: Siti Rabeah Othman, Norhazilan Md Noor, Kar Sing Lim, Nordin Yahaya, Arman Abdullah
Journal Hazard Materials.
Journal of Applied Sciences. 2(8): 466-469
Journal Hazard Materials.
Engineering Behaviour of Soil Materials on the Corrosion of Mild Steel.
Applied Clay Science. 42.
Online since: February 2006
Authors: Yan Hui Wang, Jian Bing Zang, X.H. Qi, Jing Lu, Yun Gang Yuan
Yuan 1,2,e 1 Key Laboratory of Metastable Materials Science & Technology, Hebei, Yanshan University, Qinhuangdao, 066004, China 2 College of Materials Science & Engineering, Yanshan University, Qinhuangdao, 066004, China a chyclzjb@sohu.com, blujing26@sohu.com, cchyclwyh@sohu.com, d diamond@88mail.ysu.edu.cn, eyuanyg@88mail.ysu.edu.cn Keywords: Nanocrystalline diamond, TiC, Coating, Atomic layer deposition (ALD) Abstract.
Davydov: Diamond and Related Materials, Vol.8 (1999), pp.2140-2147
Rai: Diamond and Related Materials, Vol.5 (1996), pp.1159-1165
Zhang: International Journal of Refractory Metals & Hard Materials, Vol. 22 (2004), pp.111-115
Zheng: Key Engineering Materials, Vol.250 (2003), pp.78-82. 50 nm 50 nm
Showing 27631 to 27640 of 97196 items