Numerical study of thermal effect in silicone rubber filled with carbonyl iron powder under microwave radiation
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Y. Li | D. H. Wang | Z. P. Jiang | B. Xu | X. T. Ma | F. Wang
[1] Khosro Mabhouti,et al. Measurement of Electric and Magnetic Properties of ZnO Nanoparticles in the X-Band Using Nicolson–Ross–Weir Analysis , 2020, Journal of Electronic Materials.
[2] Z. Abbas,et al. Recent advances in the development OF Fe3O4-BASED microwave absorbing materials , 2020 .
[3] F. Aslani,et al. A review on recent advancement of electromagnetic interference shielding novel metallic materials and processes , 2019, Composites Part B: Engineering.
[4] N. Tai,et al. Carbon materials and their composites for electromagnetic interference shielding effectiveness in X-band , 2019, Carbon.
[5] A. Long,et al. Electromagnetic shielding effectiveness of carbon fibre reinforced composites , 2019, Composites Part B: Engineering.
[6] Z. Yao,et al. Epoxy resin addition on the microstructure, thermal stability and microwave absorption properties of core-shell carbonyl iron@epoxy composites , 2019, Journal of Magnetism and Magnetic Materials.
[7] A. Stankiewicz,et al. Numerical analysis of microwave heating cavity: Combining electromagnetic energy, heat transfer and fluid dynamics for a NaY zeolite fixed-bed , 2019, Applied Thermal Engineering.
[8] Z. Qi,et al. Preparation of rGO/PVA/CIP composites and their microwave absorption properties , 2019, Journal of Magnetism and Magnetic Materials.
[9] Suyog Jhavar,et al. Parametric review of microwave-based materials processing and its applications , 2019, Journal of Materials Research and Technology.
[10] Ki Hyeon Kim,et al. Microwave absorption properties of graphene oxide capsulated carbonyl iron particles , 2019, Applied Surface Science.
[11] P. Nelson,et al. Fully-coupled simulations of thermally-induced cracking in pegmatite due to microwave irradiation , 2019, Journal of Rock Mechanics and Geotechnical Engineering.
[12] Andrew Gibson,et al. X-band microwave characterisation and analysis of carbon fibre-reinforced polymer composites , 2019, Composite Structures.
[13] Zhanhu Guo,et al. Overview of carbon nanostructures and nanocomposites for electromagnetic wave shielding , 2018, Carbon.
[14] S. Sankaran,et al. Recent advances in electromagnetic interference shielding properties of metal and carbon filler reinforced flexible polymer composites: A review , 2018, Composites Part A: Applied Science and Manufacturing.
[15] Kai Liu,et al. Characterization and analysis of the thermal damages of aramid/epoxy composite laminates induced by the dielectric heating effect of microwaves , 2018, Composite Structures.
[16] Zhanhu Guo,et al. Enhanced Electromagnetic Wave Absorption of Three-Dimensional Porous Fe3O4/C Composite Flowers , 2018, ACS Sustainable Chemistry & Engineering.
[17] V. Barsukov,et al. Composite Carbon-Polymer Materials for Electromagnetic Radiation Shielding , 2018 .
[18] G. Ji,et al. Dielectric polarization in electromagnetic wave absorption: Review and perspective , 2017 .
[19] E. Olevsky,et al. Fully coupled electromagnetic-thermal-mechanical comparative simulation of direct vs hybrid microwave sintering of 3Y-ZrO2 , 2017, 2011.14008.
[20] Liming Yuan,et al. A wide frequency absorbing material added CIPs using the fuse deposition modeling , 2017 .
[21] P. Stamenov,et al. The structural, magnetic and microwave properties of spherical and flake shaped carbonyl iron particles as thin multilayer microwave absorbers , 2017 .
[22] F. Luo,et al. Greatly enhanced microwave absorption properties of highly oriented flake carbonyl iron/epoxy resin composites under applied magnetic field , 2017, Journal of Materials Science.
[23] Jia‐Horng Lin,et al. Crystallization, mechanical, and electromagnetic properties of conductive polypropylene/SEBS composites , 2016, Journal of Polymer Research.
[24] Nanya Li,et al. A temperature distribution prediction model of carbon fiber reinforced composites during microwave cure , 2016 .
[25] Karin Ackermann,et al. Modern Antenna Design , 2016 .
[26] Guo-zhang Wu,et al. The synthesis of three-dimensional (3D) polydopamine-functioned carbonyl iron powder@polypyrrole (CIP@PPy) aerogel composites for excellent microwave absorption , 2015 .
[27] W. Feng,et al. Impact of silica-coating on the microwave absorption properties of carbonyl iron powder , 2015 .
[28] Haiyan Zhang,et al. Preparation and microwave shielding property of silver-coated carbonyl iron powder , 2015 .
[29] Lionel Estel,et al. About using microwave irradiation in competitive adsorption processes , 2013 .
[30] K. Naskar,et al. Conductive carbon black-filled ethylene acrylic elastomer vulcanizates: physico-mechanical, thermal, and electrical properties , 2012, Journal of Materials Science.
[31] Dikshitulu K. Kalluri,et al. Electromagnetic Waves, Materials, and Computation with MATLAB® , 2011 .
[32] W. Liang,et al. Microwave properties of high-aspect-ratio carbonyl iron/epoxy absorbers , 2011 .
[33] Z. Zhang,et al. Theoretical study of the interface effect on the electromagnetic wave absorbing characteristics , 2010 .
[34] Guofang Li,et al. Electromagnetic properties of carbonyl iron and their microwave absorbing characterization as filler in silicone rubber , 2010 .
[35] S. Greenfield,et al. The Dynamics of Thermal Expansion in Single Crystal Beryllium from Nanosecond X-Ray Irradiation , 2009 .
[36] F. Luo,et al. Microwave-absorbing and mechanical properties of carbonyl-iron/epoxy-silicone resin coatings , 2009 .
[37] Y. Mai,et al. Effects of particle size, particle/matrix interface adhesion and particle loading on mechanical properties of particulate–polymer composites , 2008 .
[38] Thomas A. Milligan,et al. Modern Antenna Design: Milligan/Modern Antenna Design , 2005 .
[39] Jun Ding,et al. Particle size influence to the microwave properties of iron based magnetic particulate composites , 2005 .
[40] N. K. Agrawal,et al. Characterization of M-type barium hexagonal ferrite-based wide band microwave absorber , 2004 .
[41] Joonmo Ahn,et al. Microwave absorbing properties of carbon black/silicone rubber blend , 2002 .
[42] D. Chung. Electromagnetic interference shielding effectiveness of carbon materials , 2001 .
[43] T. C. Choy. Effective medium theory : principles and applications , 1999 .
[44] Claus Müller,et al. Foundations of the mathematical theory of electromagnetic waves , 1969 .