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Online since: February 2020
Authors: Dong Won Jung, Mohanraj Murugesan
So, in this work, to predict the materials deformation behavior at high strain rates and deformation temperatures, an ANN model was adopted and the obtained results are discussed in detail for the better understanding of the proposed model.
2.
References [1] Changqing Huang, Xiaodong Jia, Zhiwu Zhang, Modified Back Propagation Artificial Neural Network Model Based on Genetic Algorithm to Predict the Flow Behavior of 5754 Aluminum Alloy, Materials, 11, 855, 2018
[4] Mohanraj Murugesan, Dong Won Jung, Johnson Cook Material and Failure Model Parameters Estimation of AISI-1045 Medium Carbon Steel for Metal Forming Applications, Materials, 12, 609, 2019
[7] Yanchun Zhu, Weidong Zeng, Yu Sun, Fei Feng, Yigang Zhou, Artificial neural network approach to predict the flow stress in the isothermal compression of as-cast TC21 titanium alloy, Computational Materials Science 50 (2011) 1785–1790
[8] Guoliang Ji, Fuguo Li, Qinghua Li, Huiqu Li, Zhi Li, comparative study on Arrhenius-type constitutive model and artificial neural network model to predict high-temperature deformation behavior in Aermet100 steel, Materials Science and Engineering A 528 (2011) 4774–4782.
References [1] Changqing Huang, Xiaodong Jia, Zhiwu Zhang, Modified Back Propagation Artificial Neural Network Model Based on Genetic Algorithm to Predict the Flow Behavior of 5754 Aluminum Alloy, Materials, 11, 855, 2018
[4] Mohanraj Murugesan, Dong Won Jung, Johnson Cook Material and Failure Model Parameters Estimation of AISI-1045 Medium Carbon Steel for Metal Forming Applications, Materials, 12, 609, 2019
[7] Yanchun Zhu, Weidong Zeng, Yu Sun, Fei Feng, Yigang Zhou, Artificial neural network approach to predict the flow stress in the isothermal compression of as-cast TC21 titanium alloy, Computational Materials Science 50 (2011) 1785–1790
[8] Guoliang Ji, Fuguo Li, Qinghua Li, Huiqu Li, Zhi Li, comparative study on Arrhenius-type constitutive model and artificial neural network model to predict high-temperature deformation behavior in Aermet100 steel, Materials Science and Engineering A 528 (2011) 4774–4782.
Online since: September 2013
Authors: Ze Bao Lang, Zhong Wei Yin, Jin Liang Shi, Feng Zhao
The result revealed that Ti3Al based alloy prepared by powder metallurgy can replace nickel based alloy to be a candidate materials for high temperature structures.
%Nb, Materials Science Engineering A. 192/193 (1995) 597-603
Hu, The characteristic and crystallinic morphology of a Ti3Al-based powder prepared by gas atomizing, Chinese journal of materials research. 9(1993) 228-232
Zhang, Study on the powder properties of Ti3Al based alloys by rapid solidification, Rare metal materials and engineering. 21(1992) 40-44
Banerjee, The effect of heat treatment and niobium content on the room temperature tensile properties and microstructure of Ti3Al-Nb alloys, Materials Science and Engineering A. 159(1992) 73 -86.
%Nb, Materials Science Engineering A. 192/193 (1995) 597-603
Hu, The characteristic and crystallinic morphology of a Ti3Al-based powder prepared by gas atomizing, Chinese journal of materials research. 9(1993) 228-232
Zhang, Study on the powder properties of Ti3Al based alloys by rapid solidification, Rare metal materials and engineering. 21(1992) 40-44
Banerjee, The effect of heat treatment and niobium content on the room temperature tensile properties and microstructure of Ti3Al-Nb alloys, Materials Science and Engineering A. 159(1992) 73 -86.
Online since: June 2019
Authors: Jaroslav Halvonik, Lucia Majtánová
Important parameters of the materials and results of the tests for numerical analysis are introduced in Tab. 2.
Fig. 4: Casting slabs and concrete samples for material properties.
Fig. 5 Left: Concrete samples to obtain material properties.
Acknowledgement This work was supported by the Scientific Grant Agency of the Ministry of Education, Science, Research and Sport of the Slovak Republic and the Slovak Academy of Sciences No. 1/0810/16 and by the Slovak Research and Development Agency under Contract No.
Polak, Effect of Openings on Punching Shear Strength of Reinforced Concrete Slabs - Finite Element Investigation, ACI Structural Journal/September-October 2017 [5] A.
Fig. 4: Casting slabs and concrete samples for material properties.
Fig. 5 Left: Concrete samples to obtain material properties.
Acknowledgement This work was supported by the Scientific Grant Agency of the Ministry of Education, Science, Research and Sport of the Slovak Republic and the Slovak Academy of Sciences No. 1/0810/16 and by the Slovak Research and Development Agency under Contract No.
Polak, Effect of Openings on Punching Shear Strength of Reinforced Concrete Slabs - Finite Element Investigation, ACI Structural Journal/September-October 2017 [5] A.
Online since: October 2012
Authors: Ya Nan Li, Jian Wei Lin, Ming Chu, Hong Huang, Yan Li Zou, Da Qiang Yin
Materials and Methods:
Materials.
Gessa, Alberto Alberti, Annalisa Martucci; Journal of Hazardous Materials,Vol.178 pp.218-225, ( 2010) [3] Wan-Ru C., Ching-Hua H, Chemosphere,Vol.79 779-785,( 2010) [4] Jin K., Hui-juan L., Yu-Ming Z., Jiu-hui Q., J.
Paul C., Journal of Colloid and Interface Science, Vol.344 pp.17–125,(2010) [5] Ying Wana,b, Yanyu Ba, Qixing Zhou, Vol.80 pp.807-812 (2010) [6] A.A.
Journal of Hazardous materials(2011) [8] B.H.
Cetisli, Journal of Colloid and Interface Science, Vol.286 pp.43-52, (2005)
Gessa, Alberto Alberti, Annalisa Martucci; Journal of Hazardous Materials,Vol.178 pp.218-225, ( 2010) [3] Wan-Ru C., Ching-Hua H, Chemosphere,Vol.79 779-785,( 2010) [4] Jin K., Hui-juan L., Yu-Ming Z., Jiu-hui Q., J.
Paul C., Journal of Colloid and Interface Science, Vol.344 pp.17–125,(2010) [5] Ying Wana,b, Yanyu Ba, Qixing Zhou, Vol.80 pp.807-812 (2010) [6] A.A.
Journal of Hazardous materials(2011) [8] B.H.
Cetisli, Journal of Colloid and Interface Science, Vol.286 pp.43-52, (2005)
Online since: January 2012
Authors: Ludmila Kučerová, Bohuslav Mašek, Hana Jirková
Tests were carried out using material-technological modelling on the FORTECH thermomechanical simulator and on real material samples.
The project is subsidised from specific resources of the Czech Science Foundation.
Influence of different initial microstructure on the process of spheroidization in cold forging, Materials and Design, Vol. 29 (2008) 251-256
Accelerated spheroidization of hypoeutectoid steel by the decomposition of supercooled austenite, Journal of Materials Science, Vol. 21 (1986) 3339-3344
Spheroidization of Medium-Carbon Steels, Journal of Materials Engineering and Performance, Vol. 6, No. 1 (1997) 69-72
The project is subsidised from specific resources of the Czech Science Foundation.
Influence of different initial microstructure on the process of spheroidization in cold forging, Materials and Design, Vol. 29 (2008) 251-256
Accelerated spheroidization of hypoeutectoid steel by the decomposition of supercooled austenite, Journal of Materials Science, Vol. 21 (1986) 3339-3344
Spheroidization of Medium-Carbon Steels, Journal of Materials Engineering and Performance, Vol. 6, No. 1 (1997) 69-72
Online since: May 2022
Authors: Dennis Bublitz, Andreas Thalhamer, Johannes Schwöller, David Faron, David Colin, Klaus Drechsler
Composites Science and Technology 2018;168:448–59
Journal of Composite Materials 2015;49(4):387–402
Composites Science and Technology 1997;57(1):23–33
Journal of Composite Materials 2011;45(7):815–29
Composite materials handbook.
Journal of Composite Materials 2015;49(4):387–402
Composites Science and Technology 1997;57(1):23–33
Journal of Composite Materials 2011;45(7):815–29
Composite materials handbook.
Online since: July 2012
Authors: Guang Xian Zhang, Wei Hu, Feng Xiu Zhang, Ming Lu, Hui Zheng
Aromatic polyamides are high performance materials, having outstanding thermal and mechanical properties.
Experimental Materials and instruments 2,5-Dimetyl-1,4-phenyldiamine (DPA) were purchased from Tianjin Sanhuan Chemical Co.
Progress in Polymer Science, 2010, 35: 623–686
European Polymer Journal, 2003, 39: 281–289
European Polymer Journal, 2009,45: 230–236
Experimental Materials and instruments 2,5-Dimetyl-1,4-phenyldiamine (DPA) were purchased from Tianjin Sanhuan Chemical Co.
Progress in Polymer Science, 2010, 35: 623–686
European Polymer Journal, 2003, 39: 281–289
European Polymer Journal, 2009,45: 230–236
Online since: January 2016
Authors: Mohd Zahid Abdul Malek, Zuhana Ahmad Zubir, Mat Tamizi Zainuddin, Noor Zalikha Mohamed Islam, Hendrik Kosslick, Shamsul Azrolsani Abdul Aziz Nazri, Shahrul Nizam Md Salleh, Mohd Syaifurizwan Abdul Aziz, Mohamed Izat Mohd Ezwan
The low degradation efficiencies in single and codoped TiO2 can be best explained by looking into the formation of crystal phases structures for both bare and metal-modified TiO2 materials.
Li, Synthesis and characterization of copper ions surface-doped titanium dioxide nanotubes, Materials Research Bulletin. 43 (2008) 1971–1981
Mohamed, An overview on the photocatalytic activity of nano-doped-TiO2 in the degradation of organic pollutant, Materials Science. 2011 (2011) 1-18
Bahnemann, Tailored titanium dioxide nanomaterials: anatase nanoparticles and brookite nanorods as highly active photocatalyst, Chemistry of Materials. 22 (2010) 2050-2060
Restrepo, Study of the bandgap of synthesized titanium dioxide nanoparticules using the sol-gel method and a hydrothermal treatment, The Open Materials Science Journal. 4 (2010) 9-14
Li, Synthesis and characterization of copper ions surface-doped titanium dioxide nanotubes, Materials Research Bulletin. 43 (2008) 1971–1981
Mohamed, An overview on the photocatalytic activity of nano-doped-TiO2 in the degradation of organic pollutant, Materials Science. 2011 (2011) 1-18
Bahnemann, Tailored titanium dioxide nanomaterials: anatase nanoparticles and brookite nanorods as highly active photocatalyst, Chemistry of Materials. 22 (2010) 2050-2060
Restrepo, Study of the bandgap of synthesized titanium dioxide nanoparticules using the sol-gel method and a hydrothermal treatment, The Open Materials Science Journal. 4 (2010) 9-14
Online since: December 2009
Authors: Syed H. Masood, Kadhim Alamara
Masood
a and Kadhim Alamara
Faculty of Engineering and Industrial Sciences
Swinburne University of Technology
Hawthorn, Melbourne, Australia 3122
a
email: smasood@swin.edu.au
Keywords: Rapid Prototype, Tissue Engineering, Scaffold Design, FDM
Abstract.
Hutmacher [9] has discussed a number of fabrication technologies that can be applied to process biodegradable and bioresorbable materials into 3D polymeric scaffolds of high porosity and surface area and discussed the design and processing of synthetic polymeric scaffolds by combining both scaffold design and fabrication capabilities.
Part 1: Investigation and Classification, International Journal of Advanced Manufacturing Technology, Vol 21 (2003), 291-301
International Journal of Advanced Manufacturing Technology, Vol 19 (2002), 217-223
Rapid Prototyping Journal, Vol 11(4) (2005), 249-259
Hutmacher [9] has discussed a number of fabrication technologies that can be applied to process biodegradable and bioresorbable materials into 3D polymeric scaffolds of high porosity and surface area and discussed the design and processing of synthetic polymeric scaffolds by combining both scaffold design and fabrication capabilities.
Part 1: Investigation and Classification, International Journal of Advanced Manufacturing Technology, Vol 21 (2003), 291-301
International Journal of Advanced Manufacturing Technology, Vol 19 (2002), 217-223
Rapid Prototyping Journal, Vol 11(4) (2005), 249-259
Online since: December 2012
Authors: Xiao Ying Zhang, Jian Tao Niu, Qi Lei Tian
Materials and methods
Experiment materials.
The ordinary pure wool fabrics and mulberry silk fabrics brought from the market are selected as the experiment materials.
Tang: Journal of Textile Research.
Park, Y Kang: Journal of Applied Polymer Science.
Vol. 44 (2003), p. 3945 [4] Bendit, E.G: Textile Research Journal.
The ordinary pure wool fabrics and mulberry silk fabrics brought from the market are selected as the experiment materials.
Tang: Journal of Textile Research.
Park, Y Kang: Journal of Applied Polymer Science.
Vol. 44 (2003), p. 3945 [4] Bendit, E.G: Textile Research Journal.