Rubber composition and tire
A rubber composition, rubber technology, applied in special tires, tire parts, transportation and packaging, etc., can solve problems such as poor appearance of antioxidants
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[0051]
[0052] The method for preparing the rubber composition according to the present invention is not particularly limited, and the rubber composition can be prepared by mixing the above-mentioned ingredients and optionally further vulcanizing the resulting mixture by a known method.
[0053] (tire)
[0054] The tire according to the invention comprises a tread, a sidewall or a combination thereof using any of the aforementioned rubber compositions. The tire has a highly balanced static ozone resistance, dynamic ozone resistance and discoloration resistance.
[0055] The manufacturing method of the tire is not particularly limited, and tire manufacturing methods known in the art can be used.
Embodiment 1-12 and comparative example 1-5
[0073] Petroleum waxes having the compositions shown in Table 1 were prepared by mixing different amounts of the following microcrystalline waxes: N (manufactured by Ouchi Shinko Chemical Industry Co., Ltd.), SW (manufactured by Seiko Chemical Co., Ltd.) and 0111 and 0301 (manufactured by Nippon Seika Co., Ltd.). Rubber compositions of Examples and Comparative Examples having the compositions shown in Table 1 were then prepared. Each rubber composition was evaluated for static ozone resistance, dynamic ozone resistance and discoloration resistance as described below.
[0074]
[0075] According to "Static ozone degradation test" of JIS K 6259:2004, the crack size after 24 hours was measured at an ozone concentration of 500±50 ppb (50±5 pphm), 40° C. and 20% tensile strain. The static ozone resistance was evaluated based on the following criteria.
[0076] Grade 4: No cracks appear
[0077] Grade 3: Cracks with a size of 1 mm or less appear
[0078] Grade 2: Cracks...
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