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Online since: April 2015
Authors: Wuttichai Phae-Ngam, Arthit Sansomboon, Taswal Kumpeerapun, Voravit Kosalathip
Shirakawa: Materials Science in Semiconductor Processing, Vol. 10 (2007), p. 128
Narayandass: Materials Science in Semiconductor Processing, Vol. 10 (2007), p. 128
Suh: Materials Science in Semiconductor Processing, Vol. 3 (2000), p. 201
Xu:Materials Science in Semiconductor Processing, Vol. 13 (2010), p. 360
Eilers: Materials Letters, Vol. 62 (2008), p. 967
Online since: December 2010
Authors: Norhamidi Muhamad, Sufizar Ahmad, Mohd Halim Irwan Ibrahim, Mohd Ruzi Harun, Nor Hafiez Mohamad Nor
Khor, “Production of Metal Matrix Composite Part by Powder Injection Molding”, Journal of Materials Processing Technology, Vol. 108, (2001) p. 398-407
Journal of Materials Processing Technology, Vol. 71, (1997), p. 337-342
Materials Science and Engineering A, Vol. 311, (2001), p. 74-82
Chiang Mai Journal of Science,Vol. 36, 3, (2009), p. 349-358
Krajnik: Robust Design of Flank Milling Parameters Based On Grey-Taguchi Method, Journal of Materials Processing Technology, Vol.191, (2007), p. 400–403
Online since: January 2013
Authors: Gou Sheng Liu, Yue Long Liu
Experimental Methods Materials: PP (homopolymer, melt-flow rate=2.3g/10min) was supplied as pellets by Sinopec Shanghai Petrochemical Co., Ltd., China.
This is due to the degradation of carbonaceous materials, as well as the sublimation of phosphorus oxide.
Journal of Applied Polymer Science. 102(2006), p. 5988
Journal of Applied Polymer Science. 94(2004), p. 2131
Journal of American Chemical Society, Vol. 91,(1969),p. 62
Online since: September 2016
Authors: Kai Kun Wang, Jin Long Fu, Xiao Wei Li, Yu Wei Wang
Lecomte-Beckers, Extrusion tests of 7075 aluminium alloy at high solid fraction, International Journal of Materials Forming, 2008: s1019-s1022
Wang, et al., Microstructure evolution of an ECAE-formed ZK60-RE magnesium alloy in the semi-solid state, Materials Science and Engineering A, 2009(506): 8-15
Coarsening of equiaxed microstructure in the semisolid state of aluminum 7075 alloy through SIMA processing, Journal of Materials Science, 2012, 47: 3544-3553
Ketabchi, A Kalaki, Microstructure evolution of semi-solid 7075 aluminum alloy during reheating process, Journal of Materials Engineering and Performance, 2011, 20(7): 1256-1263
Cantor, Microstructure evolution in semi-solid AA7034, Journal of Materials Science, 43(2008):1292-1304.
Online since: August 2024
Authors: Serhii Mazurchuk, Oleksandra Horbachova, Nataliia Buiskykh, Vasyl Lomaha
Both methods of modification provide non-toxic, environmentally safe materials that are alternatives to tropical hardwoods.
Mazurchuk, Establishment of regularities of the influence of polymeric shell on wood biodegradation, Ukrainian Journal of Forest and Wood Science. 12(4) 2021 50–63
Burud, Modelling of weathering, Performance of Bio-based Building Materials. (2017) 502–510
Hill, The water vapour sorption behaviour of acetylated birch wood: How acetylation affects the sorption isotherm and accessible hydroxyl content, Journal of Materials Science. 49(5) (2014)
Šernek, Wood modification – A brief overview of the technology, Materials Science. (2007) 1–9
Online since: February 2014
Authors: Ying Xiang Jiang, Yong Zhu Yang, Li Li Zhao, Miao Zhang, Yang Wei Li
Experiment Materials and instrument Materials: lanthanum chloride (AR), copper chloride (AR), sodium hydroxide (AR) and potassium dihydrogen phosphate.
Journal of Anhui agr.i Sci.
Wenpo.Journal of Environmental Sciences, Vol.22(2010),p.507-511
Chemical Engineering Journal.
Journal of Hazardous Materials.
Online since: April 2024
Authors: Narinder Singh, Jehangeer Raza, Francesco Colangelo, Ilenia Farina
In the literature various waste materials (eco-sustainable material) with good mechanical properties can effectively be used as alternative to the traditional materials, which is a step towards sustainability [4].
Materials and Methods Design of Artificial Lightweight Aggregates.
Journal of Cleaner Production, 2020. 276: p. 124316
[14] Colangelo, F., et al., Innovative Materials in Italy for Eco-Friendly and Sustainable Buildings.
Materials (Basel), 2021. 14(8): p. 2048
Online since: July 2015
Authors: Robert Černý, Igor Medveď, Jaromír Žumár, Iñigo Antepara
Soluble salts may cause deterioration of porous materials, such as rocks and masonry materials, which leads to its surface degradation and structural damage.
They are the most frequently selected materials.
Charola, Salts in the deterioration of porous materials: An overview, Journal of the American Institute for Conservation 39(3) (2000) pp. 327-343
Terheiden, Diffusive and convective salt transport in building materials depending on pore solution concentration and moisture content, Journal of Building Physics 31(3) (2008) pp. 199-211
Rörig-Dalgaard, Further developments of a poultice for electrochemical desalination of porous building materials: minimization of side effects, Materials and Structures (2014) Article in press
Online since: June 2020
Authors: Abdelouahed Tounsi, Seyyed Amirhosein Hosseini, Farshad Khosravi
Computational Materials Science, 46 (2009), 854-859
Computational Materials Science, 47 (2009), 409-417
Computational Materials Science, 50 (2011), 2112-2123
Materials & design, 49 (2013), 894-904
Computational Materials Science, 41 (2008), 561-569
Online since: September 2022
Authors: Mohamed Abdel Hady Gepreel, Sengo Kobayashi, Nour Mahmoud Eldabah
Van der Biest, Mechanical properties of Ti-6Al-4V specimens produced by shaped metal deposition, Science and technology of advanced materials, 10 (2009)
[4] Min, X., et al., Microstructure, tensile deformation mode and crevice corrosion resistance in Ti–10Mo–xFe alloys, Materials Science and Engineering: A, 527 (2010) 5499-5506
Rack, Titanium alloys in total joint replacement - a materials science perspective, Biomaterials, 19 (1998) 1621-1639
Ji, et al., Influence of Nb addition on microstructural evolution and compression mechanical properties of Ti-Zr alloys, Journal of Materials Science & Technology, 69 (2021) 7-14
Bertrand, et al., Synthesis and characterization of a new superelastic Ti–25Ta–25Nb biomedical alloy, Journal of the mechanical behavior of biomedical materials, 3 (2010) 559-564