首页> 外文期刊>Journal of Applied Polymer Science >Two advanced styrene-butadiene/polybutadiene rubber blends filled with a silanized silica nanofiller for potential use in passenger car tire tread compound
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Two advanced styrene-butadiene/polybutadiene rubber blends filled with a silanized silica nanofiller for potential use in passenger car tire tread compound

机译:填充有硅烷化二氧化硅纳米填料的两种先进的苯乙烯-丁二烯/聚丁二烯橡胶混合物,可用于乘用车轮胎胎面胶

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Styrene-butadiene rubber (SBR) and polybutadiene rubber (BR) were mixed together (75:25 by mass) to produce two SBR/BR blends. The blends were reinforced with a precipitated amorphous white silica nanofiller the surfaces of which were pretreated with bis(3-triethoxysilylpropyl)-tetrasulfide (TESPT). TESPT is a sulfur-bearing bifunctional organosilane that chemically bonds silica to rubber. The rubbers were primarily cured by using sulfur in TESPT and the cure was optimized by adding non-sulfur donor and sulfur donor accelerators and zinc oxide. The hardness, Young's modulus, modulus at different strain amplitudes, tensile strength, elongation at break, stored energy density at break, tear strength, cyclic fatigue life, heat build-up, abrasion resistance, glass transition temperature, bound rubber and tan δ of the cured blends were measured. The blend which was cured with the non-sulfur donor accelerator and zinc oxide had superior tensile strength, elongation at break, stored energy density at break and modulus at different strain amplitudes. It also possessed a lower heat build-up, a higher abrasion resistance and a higher tan δ at low temperatures to obtain high-skid resistance and ice and wet-grip. Optimizing the chemical bonding between the rubber and filler reduced the amount of the chemical curatives by approximately 58% by weight for passenger car tire tread. This helped to improve health and safety at work and reduce damage to the environment.
机译:将苯乙烯-丁二烯橡胶(SBR)和聚丁二烯橡胶(BR)混合在一起(质量比为75:25)以生产两种SBR / BR混合物。共混物用沉淀的无定形白色二氧化硅纳米填料增强,其表面用双(3-三乙氧基甲硅烷基丙基)-四硫化物(TESPT)预处理。 TESPT是一种含硫的双官能有机硅烷,可将二氧化硅化学键合到橡胶上。橡胶主要通过在TESPT中使用硫进行固化,并通过添加非硫供体和硫供体促进剂和氧化锌来优化硫化。硬度,杨氏模量,不同应变幅度下的模量,拉伸强度,断裂伸长率,断裂时储存的能量密度,撕裂强度,循环疲劳寿命,生热,耐磨性,玻璃化转变温度,粘结橡胶和tanδ测量固化的混合物。用非硫供体促进剂和氧化锌固化的共混物具有优异的拉伸强度,断裂伸长率,断裂时的储能密度和在不同应变幅度下的模量。它还具有较低的热量累积,较高的耐​​磨性和较低的低温tanδ,以获得较高的防滑性以及冰和湿抓地力。橡胶和填料之间的化学键合优化后,乘用车轮胎胎面的化学固化剂用量减少了约58%。这有助于改善工作场所的健康和安全,并减少对环境的破坏。

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