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Online since: May 2020
Authors: Martin Sahul, Beáta Šimeková, Ingrid Kovaříková, Erika Hodúlová, Jozef Bárta, Pavel Kovačócy
Welding of materials that have a large amount of residual cold work can result in cracking in the weld metal (WM) and/or HAZ.
In Comprehensive Materials Processing; Elsevier Ltd., 2014; Vol. 6, pp 151–179
Sarin Sundar: Microstructure and tensile properties of Inconel 718 pulsed Nd-YAG laser welds, Journal of Materials Processing Technology 167 (2005) 73–82 [5] J.K.
Kang: Microstructures and mechanical properties of Inconel 718 welds by CO2 laser welding, Journal of materials processing technology 201 (2008) 515–520 [6] W.
Li: Liquation cracking in fiber laser welded joints of inconel 617, Journal of Materials Processing Technology 226 (2015) 214–220 [7] S.
Online since: March 2020
Authors: Agus Geter Edy Sutjipto, Ali Shaitir, Aw Fong Ling, Ari Legowo
It is also widely used as additive for many other materials.
Takata, The use of SEM to investigate the effect of an elect beam on the optically-visible flashover tree of CaO added MgO ceramic, Journal of Materials Science 42(15), pp. 6036-6040, 2007
Ismail, Materials Today: Proceedings, 5, 3193–3201, 2018
Adesta, Fabrication of CuSiC Composite by Powder Metallurgy Route, Advanced Materials Research, 264-265, pp 748-753, 2011
Apelian, Particulate Processing (Powder Metallurgy), Encyclopedia of Materials: Science and Technology, 6761-6768, 2001.
Online since: June 2020
Authors: Kirk Benedict Beau T. Damian, Kyla Athena C. Bermundo, Yannis Belle L. Macatol, Gericho Piolo C. Marino, Ruth R. Aquino
., Intramuros, Manila, 1002, Philippines 2School of Chemical, Biological, and Materials Engineering and Sciences, Mapúa University, 658 Muralla St., Intramuros, Manila, 1002, Philippines 3Center for Nanomaterials and Membrane Research, Mapúa University, 658 Muralla St., Intramuros, Manila 1002, Philippines akirkdamian45@gmail.com, bkacbermundo@mymail.mapua.edu.ph, cyblmacatol@mymail.mapua.edu.ph, dgpcmarino@mymail.mapua.edu.ph, erraquino@mapua.edu.ph Keywords: composite membranes, starch, non-solvent induced phase separation, polycaprolactone, arrowroot Abstract.
This proves that the extracted arrowroot material was indeed pure starch.
International Journal of Polymer Science, 2017
Journal of Applied Polymer Science, 132(16). doi:10.1002/app.41808 [5] Surendra Babu, A., & Parimalavalli, R. (2014).
American Journal of Chemical Engineering, 3(2-1)
Online since: June 2025
Authors: Abla Krouma, Zubair Imam Syed
The materials' properties are presented in Table 3.
V Bendale, “Dynamic Behaviour of Frame Structure Subjected To Blast Loadings,” International Advanced Research Journal in Science, Engineering and Technology ISO, vol. 3297, no. 8, 2007
Student, “Effect of Blast on G+4 RCC Frame Structure,” International Journal of Emerging Technology and Advanced Engineering, 2008
Journal of Science, Engineering and Technology Research, vol. 5, no. 5, pp. 1328–1334, 2016
Ramsay, “Blast Loading and Blast Effects on Structures – An Overview,” Electronic journal of structural engineering, no. 1, 2007
Online since: February 2019
Authors: Yu.F. Zuev, A.O. Makarova, O.S. Zueva
One of approachs to improve their properties is the usage of carbon nanotubes, which provide good electrical conductivity and can significantly improve the characteristics of materials.
Introduction In recent years the research attention has been attracted to "smart" materials which react reversibly on minor changes in the composition and in the external environment.
The perspective materials for creating advanced hydrogels are the mixtures of gelatin with polysaccharides [9-14], in particular, with κ-carrageenan [11-16].
Materials Gelatin Type-B from bovine skin 225 Bloom produced by Sigma-Aldrich was used to prepare hydrogels.
Boccaccini, Fabrication of Alginate-Gelatin Crosslinked Hydrogel Microcapsules and Evaluation of the Microstructure and Physico-Chemical Properties, Journal of Materials Chemistry B 2 (2014) 1470
Online since: August 2013
Authors: Andrzej Nowotnik, Ekaterina Rzyankina, Nawaz Mahomed, Dariusz Szeliga
Nowotnik2,d 1Department of Mechanical Engineering, Faculty of Engineering, Cape Peninsula University of Technology, Bellville, 7535 Cape Town, South Africa 2Department of Materials Science, Faculty of Mechanical Engineering and Aeronautics, Rzeszów University of Technology, 2 Wincentego Pola Str., 35-959, Rzeszów, Poland arzyankinae@cput.ac.za, bdszeliga@prz.edu.pl, cmahomedn@cput.ac.za, dnowotnik@prz.edu.pl Keywords: Single crystal, Nickel-based superalloys, CMSX-4, Bridgman Process.
Acknowledgments This research was funded by the Department of Science and Technology (South Africa) under its Technology Localisation Plan, and was supported by the Laboratory for Aerospace Materials at Rzeszow University of Technology (Poland).
SUPERALLOYS II: High Temperature Materials for Aerospace and Industrial Power, John Wiley &Sons, 1987
Evolution of Grain Selection in Spiral Selector during Directional Solidification of Nickel-bases Superalloys, Journal of Materials Science and Technology, 27(2) 2011, 118-126
Turbine blades of the single crystal nickel-based CMSX-6 superalloy, Journal of Achievements in Materials and Manufacturing Engineering, 32 (1) 2009, 66-69
Online since: June 2012
Authors: Saadah Abdul Rahman, Wan Haliza Abd Majid, Vengadesh Periasamy, Seyedeh Maryam Banihashemian, Nadia Mahmoudy Khatir
Experimental results clearly highlight the behavior of the DNA strands similar to semiconductor materials.
Introduction The study of the electronic behavior of organic compounds has led to important research on characterization of the electronic properties of biological materials.
Methods and materials DNA molecules from Boesenbergia rotunda belonging to ginger family were extracted in Institute of Biological Science (ISB), University of Malaya.
Substrate used for etching was a p-type Si wafer (orientation <100>) of diameter (150.0 ± 0.1) mm, thickness (675 ± 25) µm and a resistivity of 1 to 10 Ω-cm bought from MEMC Electronic Materials.
Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures Vol. 15 (1997), p. 793 [7] Kasumov, A.Y., et al., Proximity-induced superconductivity in DNA.
Online since: November 2012
Authors: Hiroki Iwasa, Shigehiko Sakamoto
Furthermore, compressed air supply is very helpful to cut CFRP materials for reducing heat source. 1.
Cutting heat may, however, cause damage to CFRP composite materials, because a mechanical strength property of CFRP is reduced when cutting temperature exceeds glass transition temperature of epoxy resin [5-7].
Dege, 2008, Helical milling of CFRP–titanium layer compounds, CIRP Journal of Manufacturing Science and Technology 1 (2008) 64-69 [3] S.Sakamoto, and others, 2008, High precision drilling of CFRP plates by method of helical cutting (in Japanese), Mechanical Engineering Congress of JSME, Yokohama
[4] S.Sakamoto, and others, 2010, Effect of tool shape on precision hole-cutting of laminated composite materials, Proceedings of the euspen International Conference, Delft
Zhang, A study on the grindability of multidirectional carbon fiber-reinforced plastics,Journal of Materials Processing Technology 140 (2003) 152-156 [6] Dirk Herzog, Peter Jaechke, Oliver Meier, Heinz Haferkamp.
Online since: October 2014
Authors: Tao Fang Jia, Yan Fei Jiang, Hua Wu Liu
Both water insulation materials can reduce the water absorption, but mineral glass powder is more powerful.
Materials and Methods The particle size of mineral glass powder was less than 5um.
Figure 2 The variation of water absorption rate of composite materials with different content reinforcement Conclusion Basalt fiber and mineral glass, as water insulation materials, can improve the water absorption of engineered wood composite panels.
Shanghai Building Materials, (2002) [2] Qingwen Wang, Weihong Wang.
J Fujian Forestry University,23 (3): 284-287(2003) [5] P I Morris, P Cooper, Forest Product Journal,48(1):86-88(1998) [6] J Lin, T Hu, Heilongjiang Science and Technology Information, 20: 30-35(2009)
Online since: January 2021
Authors: Sri Wuryanti, Tina Mulya Gantina, Indriyani Indriyani
Materials Today: Proceedings, 2019. 18: p. 4738–4744
International Journal of Thermal Sciences, 2018. 129: p. 504-531
Journal of Mechanical Science and Technology, 2018. 32 (8): p. 3975–3982
Journal of Dispersion Science and Technology, 2014. 35(5): p. 677–684
Journal of Mechanical Science and Technology, 2017. 31(7): p. 3317–3328