Improving thermal and mechanical properties of the alumina filled silicone rubber composite by incorporating carbon nanotubes

New Carbon Materials - Tập 35 - Trang 66-72 - 2020
Jia-long Lin1,2, Shi-ming Su1, Yan-bing He1, Fei-yu Kang1,2
1Engineering Laboratory for Functionalized Carbon Materials, Shenzhen International Graduate School, Tsinghua University, Shenzhen 518055, China
2Laboratory of Advanced Materials, School of Materials, Tsinghua University, Beijing 100084, China

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