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Online since: July 2013
Edited by: Akii Okonigbon Akaehomen Ibhadode
This periodical edition includes peer-reviewed papers based on results of scientific research and engineering solutions in different areas of modern engineering science.
Keywords:
Materials Science, Materials, Mechanics, Civil Engineering, Electrical Engineering, Cumputer Science, Environmental Engineering
Keywords:
Materials Science, Materials, Mechanics, Civil Engineering, Electrical Engineering, Cumputer Science, Environmental Engineering
Online since: February 2026
Authors: Ahmed Abdulrazzaq Khalaf, Hussein Togun
Materials with high latent heat, called phase change materials (PCMs), play a key role here [5].
Phase Change Materials (PCM) The core of any LHTES system is PCM.
[11] Saeed, R.M.R., Thermal characterization of phase change materials for thermal energy storage. 2016: Missouri University of Science and Technology
Andrzejczyk, A review of phase change materials and heat enhancement methodologies.
International Journal of Thermal Sciences, 2025. 214: p. 109884
Phase Change Materials (PCM) The core of any LHTES system is PCM.
[11] Saeed, R.M.R., Thermal characterization of phase change materials for thermal energy storage. 2016: Missouri University of Science and Technology
Andrzejczyk, A review of phase change materials and heat enhancement methodologies.
International Journal of Thermal Sciences, 2025. 214: p. 109884
Online since: November 2015
Authors: Andy Vanaerschot, David Moens, Dirk Vandepitte, Stepan Lomov
Variability in composite materials properties
Andy Vanaerschot1,a , Stepan Lomov2,b , David Moens1,c
and Dirk Vandepitte1,d∗
1KU Leuven
Dept. of Mechanical Engineering, Kasteelpark Arenberg 41 - box 2449 - Belgium
2KU Leuven
Dept. of Materials Engineering, Kasteelpark Arenberg 44 - box 2450 - Belgium
aandy.vanaerschot@kuleuven.be, bstepan.lomov@mtm.kuleuven.be, cdavid.moens@kuleuven.be,
ddirk.vandepitte@kuleuven.be
Keywords: composite materials, anisotropic properties, orthotropic properties, material identification,
variability, correlation length
Abstract.
Composite materials are created as a quite complex architecture which includes a fibre reinforcement structure and matrix material.
Introduction Composite materials are available for several decades already.
The many families of composite materials have just one thing in common: they have some kind of fibre reinforcement and some kind of matrix material to hold the fibre reinforcement in place.
Pellissetti, The need for linking micromechanics of materials with stochastic finite elements: a challenge for materials science, Computational Materials Science, 41, 1, 27-37 (2007) [10] H.
Composite materials are created as a quite complex architecture which includes a fibre reinforcement structure and matrix material.
Introduction Composite materials are available for several decades already.
The many families of composite materials have just one thing in common: they have some kind of fibre reinforcement and some kind of matrix material to hold the fibre reinforcement in place.
Pellissetti, The need for linking micromechanics of materials with stochastic finite elements: a challenge for materials science, Computational Materials Science, 41, 1, 27-37 (2007) [10] H.
Online since: January 2012
Authors: Jun Yang
This has much to do with the properties of the roof materials and the way of roofing construction.
It is the important resource of new antibacterial materials in biology [2].
Colloids in seaweed increase the wholeness of the roof The French materials experts, P.
Russian Journal of Marine Biology, 2007, Vol. 33, No. 3, p204–206
Journal of Materials Science,2007,43,(13),p4805-4857
It is the important resource of new antibacterial materials in biology [2].
Colloids in seaweed increase the wholeness of the roof The French materials experts, P.
Russian Journal of Marine Biology, 2007, Vol. 33, No. 3, p204–206
Journal of Materials Science,2007,43,(13),p4805-4857
Online since: October 2006
Authors: Greg Hilmas, Jeremy Watts
Materials have also been designed using a hard wear resistant material as the
cellular phase and a more ductile material as the cell boundary phase.
Halloran: Materials Science and Engineering, A.
of Refractory Metals and Hard Materials.
J. of Refractory Metals and Hard Materials.
Hilmas: Journal of Materials Science.
Halloran: Materials Science and Engineering, A.
of Refractory Metals and Hard Materials.
J. of Refractory Metals and Hard Materials.
Hilmas: Journal of Materials Science.
Online since: May 2011
Edited by: Akii Okonigbon Akaehomen Ibhadode
This periodical edition includes peer-reviewed papers based on results of scientific research and engineering solutions in different areas of modern engineering science.
Keywords:
Materials Science, Materials, Mechanics, Civil Engineering, Electrical Engineering, Cumputer Science, Environmental Engineering
Keywords:
Materials Science, Materials, Mechanics, Civil Engineering, Electrical Engineering, Cumputer Science, Environmental Engineering
Online since: August 2014
Authors: Mazlan Mohamed, A.M. Mustafa Al Bakri, Razak Wahab, A.K. Zulhisyam, M.R. Mohd Sukhairi, M.H.M. Amini, A. Mohammad Amizi
Comparison between Thermal Interface Materials Made of Nano Carbon Tube (NCT) with Gad Pad 2500 in term of Junction Temperature by using CFD Software, FluentTM
M.
MATERIALS AND METHODS Two types of thermal interface material have been used in order to simulate the temperature contour by using CFD software, FLUENTTM.
Sulaiman, “The Comparison Between Thermal Pad Made of Nano-Silver and Silicon ElastomerUsing Computational Fluid Dynamic (CFD) Software, FLUENT,” Australian Journal of Basic and Applied Sciences, vol. 7, no. 5, pp. 196–204, 2013
Sarizam, “Three Dimensional Analysis of Thermal Pad made of Nanomaterial , Nano-Silver with differences of Thickness by Using CFD Software , FLUENT,” Australian Journal of Basic and Applied Sciences, vol. 7, no. 5, pp. 220–229, 2013
Bakir Azman, “Thermal Management of Electronic Components by Using Computational Fluid Dynamic (CFD) Software, FLUENTTM in Several Material Applications (Epoxy, Composite Material & Nanosilver),” Advanced Materials Research, vol. 795, pp. 141–147, Sep. 2013.
MATERIALS AND METHODS Two types of thermal interface material have been used in order to simulate the temperature contour by using CFD software, FLUENTTM.
Sulaiman, “The Comparison Between Thermal Pad Made of Nano-Silver and Silicon ElastomerUsing Computational Fluid Dynamic (CFD) Software, FLUENT,” Australian Journal of Basic and Applied Sciences, vol. 7, no. 5, pp. 196–204, 2013
Sarizam, “Three Dimensional Analysis of Thermal Pad made of Nanomaterial , Nano-Silver with differences of Thickness by Using CFD Software , FLUENT,” Australian Journal of Basic and Applied Sciences, vol. 7, no. 5, pp. 220–229, 2013
Bakir Azman, “Thermal Management of Electronic Components by Using Computational Fluid Dynamic (CFD) Software, FLUENTTM in Several Material Applications (Epoxy, Composite Material & Nanosilver),” Advanced Materials Research, vol. 795, pp. 141–147, Sep. 2013.
Online since: August 2012
Authors: Bora Derin, Seval Genc
Journal of Magnetism and Magnetic Materials, 252 (2002) 10-12
Materials Science and Engineering B, 98 (2003) 89-93
Journal of Materials Research, 14(7) 1999
Journal of Magnetism and Magnetic Materials, 282 (2004) 170-173 [32] K.
Ginder, The Materials Science of Field Responsive Fluids.
Materials Science and Engineering B, 98 (2003) 89-93
Journal of Materials Research, 14(7) 1999
Journal of Magnetism and Magnetic Materials, 282 (2004) 170-173 [32] K.
Ginder, The Materials Science of Field Responsive Fluids.
Online since: January 2022
Authors: José Alberto Guzmán-Torres
Currently, methodologies such as Data Science and ML have shown
incredible potential in the designing of some special materials [8].
International Journal of Data Science and Analytics, 6(3):167-175, 2018
In IOP Conference Series: Materials Science and Engineering, volume 1150, page 012019.
ACI Materials Journal, 113(6), 2016
Journal of Materials in Civil Engineering, 28(10):04016092, 2016
International Journal of Data Science and Analytics, 6(3):167-175, 2018
In IOP Conference Series: Materials Science and Engineering, volume 1150, page 012019.
ACI Materials Journal, 113(6), 2016
Journal of Materials in Civil Engineering, 28(10):04016092, 2016
Online since: April 2016
Authors: Xing Xiang Zhang, Ning Xin Zhang, Xiao Yu Yuan, Ji Wen Zong, Wei Li, Yuan Kai Zhang
Photoinduced Microencapsulation of microcapsules containing n-octadecane with P(APUA) and P(AMA) Shell
Ning-xin Zhang, Xiao-yu Yuan, Ji-wen Zong, Wei Lia,b, Yuan-kai Zhang
and Xing-xiang Zhang
State Key Laboratory of Hollow Fiber Membrane Materials and Processes, School of Material Science and Engineering, Tianjin Polytechnic University, Tianjin 300387, China
ahiweilee@gmail.com, bhiliwei@139.com
Keywords: UV, Microcapsule, Phase change material, Composite materials, Microstructure
Abstract.
Yu: Journal of Material Science, Vol. 44 (2009), p.5877 [5] J.F.
Wang and Li Ren: Journal of Applied Polymer Science, Vol. 97 (2005) , p.1755 [6] M.A.
Tang: Solar Energy Materials and Solar Cells, Vol. 94 (2010) , p.1643 [12] G.H.
Stubbs: Journal of Colloid and Interface Science, Vol. 266 (2003) , p.282
Yu: Journal of Material Science, Vol. 44 (2009), p.5877 [5] J.F.
Wang and Li Ren: Journal of Applied Polymer Science, Vol. 97 (2005) , p.1755 [6] M.A.
Tang: Solar Energy Materials and Solar Cells, Vol. 94 (2010) , p.1643 [12] G.H.
Stubbs: Journal of Colloid and Interface Science, Vol. 266 (2003) , p.282