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    • 94. 发明公开
    • 스터드리스 타이어 트레드용 고무 조성물
    • 无胎轮胎的橡胶组合物
    • KR1020100073869A
    • 2010-07-01
    • KR1020080132651
    • 2008-12-23
    • 한국타이어월드와이드 주식회사
    • 신경섭
    • C08K7/04C08L21/00C08K3/36C08K3/04
    • C08L9/06C08K3/045C08L9/00C08K9/06B60C1/0016C08K3/013C08K3/04C08K3/36
    • PURPOSE: A rubber composition for a studless tire tread is provided to improve brake performance on a frozen road, to enhance LRR(long range radar) performance and properties of a tire, and to improve heat resistance and abrasion resistance. CONSTITUTION: A rubber composition for a studless tire tread includes 5-20 parts by weight of a fullerene carbon compound having a surface which is processed with a silicone compound and 50-100.0 parts by weight of silica based on 100.0 parts by weight of a crude rubber. The silica has a BET specific surface area of 100-400 m^2/g and a hydrogen ion exponent of 4-12. The fullerene carbon compound is obtained by processing 100.0 parts by weight of the fullerene compound with 1-15 parts by weight of the silicone compound. The silicone compound is 3-aminopropyltriethoxysilane.
    • 目的:提供用于防滑轮胎胎面的橡胶组合物,以提高冻结道路上的刹车性能,提高轮胎的LRR(远程雷达)性能和性能,提高耐热性和耐磨性。 构成:无钉轮胎胎面用橡胶组合物包含5-20重量份具有用硅氧烷化合物加工的表面的富勒烯碳化合物和50-100.0重量份二氧化硅,基于100.0重量份粗品 橡胶。 二氧化硅的BET比表面积为100-400m 2 / g,氢离子指数为4-12。 富勒烯碳化合物是通过加工100.0重量份的富勒烯化合物与1-15重量份硅氧烷化合物而获得的。 硅氧烷化合物为3-氨基丙基三乙氧基硅烷。
    • 95. 发明公开
    • 타이어 트레드용 고무 조성물
    • 轮胎用橡胶组合物
    • KR1020100064660A
    • 2010-06-15
    • KR1020080123192
    • 2008-12-05
    • 한국타이어월드와이드 주식회사
    • 김병립
    • C08K5/098C08L21/00
    • C08K5/098B60C1/0016C08K3/013C08K3/04C08K3/36C08L9/00C08L21/00
    • PURPOSE: A rubber composition for a tire tread is provided to secure the environment-friendly property of the composition, to reduce the weight of a tire, and to maintain the matter property of the composition while driving in a high speed. CONSTITUTION: A rubber composition for a tire tread contains 0.1~40 parts of sodium acetate by weight for 100 parts of raw rubber by weight. The sodium acetate generates the heat while changing its phase from gel to solid by the friction with a tire and the ground. The raw rubber is selected from the group consisting of polyisoprene rubber, polybutadiene rubber, a conjugated diene aromatic vinyl copolymer, a nitrile-conjugated diene copolymer, hydrogenation NBR, hydrogenation SBR, olefin rubber, maleic acid ethylene-propylene rubber, butyl rubber, an isobutylene and aromatic vinyl diene monomer copolymer, acryl rubber, ionomer, halogenated rubber, chloroprene rubber, or their mixture.
    • 目的:提供一种用于轮胎胎面的橡胶组合物,以确保组合物的环境友好性,减轻轮胎的重量,并且在高速行驶时保持组合物的物性。 构成:轮胎胎面用橡胶组合物含有0.1〜40重量份的乙酸钠重量百分比的生橡胶。 乙酸钠产生热量,同时通过与轮胎和地面的摩擦将凝胶相变成凝胶。 生橡胶选自聚异戊二烯橡胶,聚丁二烯橡胶,共轭二烯芳族乙烯基共聚物,腈共轭二烯共聚物,氢化NBR,氢化SBR,烯烃橡胶,马来酸乙烯 - 丙烯橡胶,丁基橡胶,丁基橡胶 异丁烯和芳族乙烯基二烯单体共聚物,丙烯酸橡胶,离聚物,卤化橡胶,氯丁二烯橡胶或它们的混合物。
    • 96. 发明公开
    • 타이어 트레드용 고무 조성물
    • 轮胎用橡胶组合物
    • KR1020100064590A
    • 2010-06-15
    • KR1020080123095
    • 2008-12-05
    • 한국타이어월드와이드 주식회사
    • 나육열
    • C08K3/04C08L21/00C08J3/20
    • C08K3/04B60C1/0016C08J3/20C08K3/013C08K13/02C08L9/00C08L21/00
    • PURPOSE: A rubber composition for a tire tread is provided to secure the handling a dry grip, and abrasion resistant ability of the rubber, and to provide the color and fume formability using the heat from a tire. CONSTITUTION: A rubber composition for a tire tread contains 100 parts of raw rubber by weight, 20~65 parts of first carbon black by weight, 30~95 parts of second carbon black by weight, 5~40 parts of heat-resistant dyes by weight, and 5~40 parts of heat-resistant pigment by weight. The first carbon black includes the nitrogen adsorption surface area of 60~130 square meters per gram, and the oil absorption rate of 90~160 cc per 100 grams. The second carbon black includes the nitrogen adsorption surface area of 90~160 square meters per gram, and the DBP oil absorption rate of 60~140 cc per 100 grams.
    • 目的:提供一种用于轮胎胎面的橡胶组合物,以确保处理干燥抓地力和橡胶的耐磨性,并且使用来自轮胎的热量提供颜色和烟雾成形性。 构成:轮胎胎面用橡胶组合物含有100重量份生橡胶,20〜65重量份第一炭黑,30〜95重量份第二炭黑,5〜40重量份耐热染料 重量和5〜40份重量的耐热颜料。 第一炭黑包括氮吸附表面积为60〜130平方米/克,吸油率为每100克90〜160立方厘米。 第二炭黑包括氮吸附表面积为90〜160平方米/克,DBP吸油率为60〜140cc / 100克。