Rubber masterbatch, method for producing the same, and rubber composition obtained from the same
There are provided a rubber masterbatch which can give a vulcanized rubber having a low hysteresis loss while having a low electrical resistance (low volume electrical resistance value); and a method for producing the rubber masterbatch. The rubber master-batch is a rubber masterbatch including a diene rubber, a carbon nanotube, and a silane coupling agent, and the carbon nanotube shows a weight loss proportion of 10 to 30% by weight in a range from 200 to 600° C. in a thermogravimetry of the carbon nanotube.
1. A rubber masterbatch, comprising a diene rubber, a carbon nanotube, and a silane coupling agent,
wherein the carbon nanotube shows a weight loss proportion of 10 to 30% by weight in a range from 200 to 600° C. in a thermogravimetry of the carbon nanotube.
2. A rubber composition obtained from the rubber masterbatch recited in claim 1 .
3. A method for producing the rubber masterbatch recited in claim 1 , comprising the step of dry-mixing and/or wet-mixing the diene rubber, the carbon nanotube, and the silane coupling agent with each other.
4. The method for producing the rubber masterbatch according to claim 3 , comprising:
a step (i-(a)) of wet-mixing a rubber latex solution of the diene rubber with a dispersion liquid including the carbon nanotube to produce a carbon-nanotube-including rubber latex solution;
a step ii-(a)) of drying the resultant carbon-nanotube-including rubber latex solution to produce a carbon-nanotube-including rubber composite; and
a step (iii-(a)) of adding the silane coupling agent to the resultant carbon-nanotube-including rubber composite, and dry-mixing these materials with each other.
5. The method for producing the rubber masterbatch according to claim 3 , comprising:
a step (i-(b)) of wet-mixing a rubber latex solution of the diene rubber, a dispersion liquid including the carbon nanotube, and the silane coupling agent with each other to produce a rubber latex solution which includes the carbon nanotube and the silane coupling agent; and
a step (ii-(b)) of drying the resultant rubber latex solution, which includes the carbon nanotube and the silane coupling agent, to produce a rubber composite which includes the carbon nanotube and the silane coupling agent.