Improving thermal and mechanical properties of the alumina filled silicone rubber composite by incorporating carbon nanotubes
Tài liệu tham khảo
Frogley, 2003, Mechanical properties of carbon nanoparticle-reinforced elastomers[J], Composites Science & Technology, 63, 1647, 10.1016/S0266-3538(03)00066-6
Moniruzzaman, 2006, Polymer nanocomposites containingcarbon nanotubes[J], Macrmolecules, 39, 5194, 10.1021/ma060733p
Kumlutaş, 2003, Thermal conductivity of particle filled polyethylene composite materials[J], Composites Science & Technology, 63, 113, 10.1016/S0266-3538(02)00194-X
Mu, 2010, Thermal conductivity of silicone rubber filled with ZnO[J], Polymer Composites, 28, 125, 10.1002/pc.20276
Kim, 2008, Thermal stability and ablation properties of silicone rubber composites[J], Journal of Applied Polymer Science, 110, 1263, 10.1002/app.28633
Kim, 2011, Effect of incorporation of carbon fiber and silicon carbide powder into silicone rubber on the ablation and mechanical properties of the silicone rubber-based ablation material[J], Journal of Applied Polymer Science, 120, 831, 10.1002/app.33139
Fan, 2011, Research and application development of thermal conductivity polymer composites[J], Engineering Plastics Application, 39, 101
Wang, 2013, Adhesion enhancement for liquid silicone rubber and different surface by organosilane and Pt catalyst at room temperature[J], Bulletin of Materials Science, 36, 1013, 10.1007/s12034-013-0575-8
Kang, 2004, Preparation and characteristics of liquid silicone rubber nanocomposite containing ultrafine magnesium ferrite powder[J], Journal of Inorganic & Organometallic Polymers, 14, 73, 10.1023/B:JOIP.0000016755.53313.24
Simon, 2008, Nanoclay reinforcement of liquid silicone rubber[J], Journal of Inorganic & Organometallic Polymers & Materials, 18, 364, 10.1007/s10904-008-9207-y
Zhou, 2010, Thermally conductive silicone rubber reinforced with boron nitride particle[J], Polymer Composites, 28, 23, 10.1002/pc.20296
Jia, 1991, Molecular sieving effect of the zeolite-filled silicone rubber membranes in gas permeation[J], Journal of Membrane Science, 57, 289, 10.1016/S0376-7388(00)80684-5
Wang, 2013, Improvement in the electric field distribution of silicone rubber composite insulators by non-linear fillers[C]
Wang, 2010, Preparation of nano-zinc oxide/EPDM composites with both good thermal conductivity and mechanical properties[J], Journal of Applied Polymer Science, 119, 1144, 10.1002/app.32736
Wang, 2016, Preparation of nano-reinforced thermal conductive natural rubber composites[J], Polymer Composites, 37, 380, 10.1002/pc.23234
Kemaloglu, 2010, Properties of thermally conductive micro and nano-size boron nitride reinforced silicon rubber composites[J], Thermochimica Acta, 499, 40, 10.1016/j.tca.2009.10.020
Pongsa, 2013, Effective thermal conductivity of 3,5-diaminobenzoyl-functionalized multiwalled carbon nanotubes/epoxy composites[J], Journal of Applied Polymer Science, 130, 3184, 10.1002/app.39520
Costa, 2014, Effect of carbon nanotube type and functionalization on the electrical, thermal, mechanical and electromechanical properties of carbon nanotube/styrene-butadiene-styrene composites for large strain sensor applications[J], Composites Part B, 61, 136, 10.1016/j.compositesb.2014.01.048
Chen, 2004, Multi-walled carbon nanotube filled SBR rubber composites[J], New Carbon Materials, 19, 214
Li, 2011, Study on thermally conductive ESBR vulcanizates[J], Polymer Bulletin, 67, 1091, 10.1007/s00289-011-0534-8
Fan, 2008, The synergetic effect of carbon nanotubes and carbon black in a rubber system[J], New Carbon Materials, 23, 149
Zhang, 2018, Thermal conductivity of rubber composite materials with a hybrid AlN/carbon fiber filler[J], Chinese Science Bulletin, 63, 2403, 10.1360/N972017-01319
Zhou, 2010, Effect of the particle size of Al2O3 on the properties of filled heat conductive silicone rubber[J], Journal of Applied Polymer Science, 104, 1312, 10.1002/app.25789
Li, 2014, The Effect of Al2O3/Carbon Fibers on the Properties of EPDM/MVQ Blends[J], Special Purpose Rubber Products, 1
Cheng, 2012, Surface modification of alumina and its application in thermal conductivity cilicone Potting[J], Silicone Material, 26, 148
Akil, 2006, Effect of various coupling agents on properties of alumina-filled PP composites[J], Journal of Reinforced Plastics and Composites, 25, 745, 10.1177/0731684406062068
Namitha, 2013, Effect of micro- and nano-fillers on the properties of silicone rubber-alumina flexible microwave substrate[J], Ceramics International, 39, 7077, 10.1016/j.ceramint.2013.02.047
Zha, 2012, Low dielectric permittivity and high thermal conductivity silicone rubber composites with micro-nano-sized particles[J], Applied Physics Letters, 101, 10.1063/1.4745509
Chen, 2016, Morphology and performance of styrene butadiene rubber filled with modified graphite nanoplatelet and carbon black[J], Polymers for Advanced Technologies, 27, 830, 10.1002/pat.3741
Lin, 2016, The filler–rubber interface and reinforcement in styrene-butadiene rubber composites with graphene/silica hybrids: A quantitative correlation with the constrained region[J], Composites Part A Applied Science & Manufacturing, 86, 19, 10.1016/j.compositesa.2016.03.029
Mao, 2013, High-performance graphene oxide-based rubber composites[J], Scientific Reports, 3, 10.1038/srep02508
