Modified natural rubber, process for producing same, rubber composition for tire, and pneumatic tire
US-2015291765-A1 · Oct 15, 2015 · US
US10066090B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10066090-B2 |
| Application number | US-201415100506-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 27, 2014 |
| Priority date | Dec 26, 2013 |
| Publication date | Sep 4, 2018 |
| Grant date | Sep 4, 2018 |
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Provided are a rubber composition for tires that shows a balanced improvement in properties such as fuel economy, processability, heat aging resistance, abrasion resistance, wet-grip performance, performance on snow and ice, and handling stability, and a pneumatic tire formed from the rubber composition. The present invention relates to a rubber composition for tires, containing: a highly purified, modified natural rubber having a pH adjusted to 2-7; carbon black and/or a white filler; and a styrene-butadiene rubber having a styrene content of 30% by mass or more, and also relates to a pneumatic tire formed from the rubber composition.
Opening claim text (preview).
The invention claimed is: 1. A rubber composition for tires, comprising: a modified natural rubber having a phosphorus content of greater than zero and less or equal to 200 ppm and further having a pH of the whole rubber adjusted to 2 to 7; at least one of carbon black or a white filler; and a styrene-butadiene rubber having a styrene content of 30% by mass or more. 2. The rubber composition for tires according to claim 1 , wherein the modified natural rubber is obtained by removing non-rubber components in natural rubber, followed by treatment with an acidic compound, and the modified natural rubber has a pH of 2 to 7. 3. The rubber composition for tires according to claim 1 , wherein the modified natural rubber is obtained by washing a saponified natural rubber latex and treating the washed saponified natural rubber latex with an acidic compound, and the modified natural rubber has a pH of 2 to 7. 4. The rubber composition for tires according to claim 1 , wherein the modified natural rubber is obtained by washing a deproteinized natural rubber latex and treating the washed deproteinized natural rubber latex with an acidic compound, and the modified natural rubber has a pH of 2 to 7. 5. The rubber composition for tires according to claim 1 , wherein the modified natural rubber has a nitrogen content of 0.15% by mass or less. 6. The rubber composition for tires according to claim 1 , wherein the pH is determined by cutting the modified natural rubber into pieces at most 2 mm square on each side, immersing the pieces in distilled water, irradiating the immersed pieces with microwaves for extraction at 90° C. for 15 minutes, and measuring the resulting immersion water with a pH meter. 7. The rubber composition for tires according to claim 1 , wherein the modified natural rubber has a heat aging resistance index of 75 to 120%, the heat aging resistance index being defined by the equation below based on Mooney viscosities ML (1+4) at 130° C. measured in accordance with JIS K 6300:2001-1 , Heat aging resistance index (%) =(Mooney viscosity of the modified natural rubber measured after heat treatment at 80° C. for 18 hours)/(Mooney viscosity of the modified natural rubber before the heat treatment) ×100. 8. The rubber composition for tires according to claim 1 , wherein the white filler is silica. 9. The rubber composition for tires according to claim 1 , wherein the modified natural rubber is prepared without mastication. 10. The rubber composition for tires according to claim 1 , wherein the styrene-butadiene rubber is modified with a polar group having an affinity for silica. 11. The rubber composition for tires according to claim 1 , wherein the styrene-butadiene rubber has a weight average molecular weight of 2.5×10 5 to 2.5×10 6 . 12. A pneumatic tire, formed from the rubber composition for tires according to claim 1 .
Purification · CPC title
Physical properties or dimensions · CPC title
containing two or more polymers of the same C08L -group · CPC title
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