Carbon nanotube doped ionic liquid modified butyl rubber elastomer and preparation method
A carbon nanotube and ionic liquid technology, which is applied in the field of preparation of ionic liquid modified butyl rubber elastomer, can solve the problems of inability to achieve effective dispersion of carbon nanotubes, hinder the research and development of rubber composite materials, etc., and achieve high self-healing ability and dispersion performance. Good results
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[0032] refer to figure 2 Shown, the present invention also provides the preparation method of the ionic liquid modified butyl rubber elastomer of described carbon nanotube doping, it comprises the following steps:
[0033] Step (1) Adding bromobutyl rubber and imidazole molecular additives to the rubber mixer, the molar ratio of addition is: imidazole: bromine group = 1.5:1.
[0034] Step (2) Add carbon nanotube powder to the mixture in the above step (1), and the mass ratio is: mixture:CNT=100:2-5.
[0035] Step (3) For the mixture of the above step (2), first heat up to 60°C, stir and mix at 100 rpm for 1 hour, then heat up to 140°C, and solidify and mold under a pressure of 150kN for 2 hours to obtain a sheet Composite rubber elastomer sheet.
Embodiment 1
[0037] First weigh the brominated butyl rubber, add 1.5 times 1-methylimidazole according to the molar ratio of the relative bromine content, and then add 2wt% carbon nanotube powder in the rubber mixer at 60 ° C, 100 rpm, stirring and mixing for 1 hours, then heated up to 140°C, and cured under a pressure of 150kN for 2 hours to obtain a sheet-like composite rubber elastomer sheet.
[0038] The test results of the composite material prepared in this example: the tensile strength is 21.9MPa, the elongation at break is 10.6 times, the dielectric constant is 21 and the electrical conductivity is 1.1×10 -5 S / cm.
Embodiment 2
[0040] First weigh the brominated butyl rubber, add 1.5 times 1-ethylimidazole according to the molar ratio of the relative bromine content, and then add 2.5wt% carbon nanotube powder in the rubber mixer at 60°C, 100 rpm, stirring and mixing 1 hour, then heated up to 140°C, and cured and molded under a pressure of 150kN for 2 hours to obtain a sheet-shaped composite rubber elastomer sheet.
[0041] The test results of the composite material prepared in this example: the tensile strength is 17.8MPa, the elongation at break is 10.1 times, the dielectric constant is 23 and the electrical conductivity is 1.5×10 -5 S / cm.
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