Modified conjugated diene-based polymer composition and manufacturing method thereof, and tire
A technology of conjugated diene and manufacturing method, applied to special tires, tire parts, transportation and packaging, etc., can solve the problems of insufficient reactivity, etc., and achieve the effect of excellent wear resistance and excellent balance height
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Embodiment 1~20
[0531] [Modified Conjugated Diene Polymer Compositions (Examples 1-20, Comparative Examples 1-9)]
[0532] Modified conjugated diene polymers (samples 1 to 16), SBR·A, SBR·B, natural rubber (NR) and polybutadiene (BR) shown in Table 1 and Table 2 above were used as raw materials Rubber was kneaded by the following method using the materials shown below, and an unvulcanized rubber composition and a vulcanized rubber composition were produced.
[0533] Each formula is listed in Table 3~Table 5.
[0534] It should be noted that in Tables 3 to 5, the values in parentheses indicate the amount of operating oil contained in the samples.
[0535] ・Modified conjugated diene polymer: samples 1 to 16
[0536] ・SBR・A (manufactured by Asahi Kasei Co., Ltd., Tufdene 4850, glass transition temperature: -12°C)
[0537] ・SBR・B (manufactured by Asahi Kasei Co., Ltd., Tufdene 1834, glass transition temperature: -70° C.)
[0538] NR (natural rubber, glass transition temperature: -70°C)
[...
Embodiment 1~13、15~20
[0551] (Examples 1-13, 15-20, Comparative Examples 1-9)
[0552] According to the formulations shown in Tables 3 to 5, kneading was carried out by the following method to obtain an unvulcanized rubber composition and a vulcanized rubber composition.
[0553] Using a kneader (inner volume 0.5 L) equipped with a temperature control device, as the first stage of kneading, according to the conditions of a filling rate of 65% and a rotor speed of 50 rpm, raw rubber, silica, silane coupling agent, and carbon black were used. , zinc white, stearic acid, wax and anti-aging agent, knead for 4 minutes. At this time, the discharge temperature was adjusted to 155 to 160° C. by temperature control of the kneader to obtain a compounded product.
[0554] Next, as the second stage of kneading, the compound obtained above was cooled to room temperature, and then kneaded for 3.5 minutes by the above-mentioned kneader. Also in this case, the discharge temperature was adjusted to 155 to 160° C....
Embodiment 14
[0560] In the first stage of kneading, after kneading sample 9 as a raw material rubber and silica at a rotor speed of 50 rpm for 1 minute, use sample 7 as a raw material rubber, silica, and a silane coupling agent , carbon black, zinc white, stearic acid, wax and anti-aging agent, knead for 4 minutes. At this time, the discharge temperature was adjusted to 155 to 160° C. by temperature control of the kneader to obtain a compounded product.
[0561] Next, as the second stage of kneading, the compound obtained above was cooled to room temperature, and then kneaded for 3.5 minutes by the above-mentioned kneader. Also in this case, the discharge temperature was adjusted to 155 to 160° C. by temperature control of the kneader. In addition, discharge temperature is controlled by measuring the temperature of each compound discharged from a kneader after kneading.
[0562] Furthermore, after cooling the compound obtained above to room temperature, the unvulcanized rubber compositio...
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