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Interaction of Silica Types with Other Compounding Ingredients for Modifying Viscoelastic Properties in Tread Compound Design

机译:二氧化硅类型与其他配混成份的相互作用用于改性胎面复合设计中的粘弹性性能

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The changes in dynamic and physical properties of a fuel efficient, high performance, SSBR compound are evaluated in a partial factorial DOE experiment. This is done to develop a priority for the factors that influence key viscoelastic and physical properties (responses). The responses this work investigates are the laboratory test properties generally considered to relate to the tire performance triangle: rolling resistance, wet traction, and abrasion resistance. This work studies varying three types of highly dispersible (HD) reinforcing silicas: ULTRASIL~R 5000 GR silica, ULTRASIL~R 7000 GR silica and ULTRASIL~R 9000 GR silica having CTAB surface areas of 110, 160, and 200 meters squared per gram, respectively. These three silicas will be varied along with five other compounding factors. These "other" compounding factors were selected as key to dynamic-mechanically interacting with the HD silica types being studied. The expected interactions would allow for greater manipulation of the viscoelastic responses associated with tire performance characteristics. These "other" compounding factors in this study are: silica loading level, plasticizer loading level, elastomer blend (average glass transition temperature), elastomer microstructure ratio (styrene to vinyl ratio), and silane crosslinking characteristics. The analysis will summarize the relative strength of each of these factors for the reported rubber viscoelastic and physical properties.
机译:在部分因子实验中评估了燃料效率,高性能,SSBR化合物的动态和物理性质的变化。这是为了开发影响关键粘弹性和物理性质(反应)的因素的优先事项。该工作调查的响应是通常认为涉及轮胎性能三角形的实验室测试性能:滚动阻力,湿牵引力和耐磨性。该工作研究改变了三种类型的高度分散(HD)增强硅:Ultrasil〜R 5000 GR二氧化硅,Ultrasil〜R 7000 Gr二氧化硅和超〜R 9000 GR二氧化硅,CTAB表面区域为110,160和200米的每克平方, 分别。这三种三种硅子将随着五种其他复合因子而变化。将这些“其他”复合因子选择为与所研究的HD二氧化硅类型动态地相互作用的关键。预期的相互作用允许更大地操纵与轮胎性能特征相关的粘弹性响应。在这项研究中,这些“其它”配混的因素有:二氧化硅负载水平,增塑剂负载水平,弹性体共混物(平均玻璃化转变温度),弹性体的微结构比(苯乙烯与乙烯基比),和硅烷交联特性。分析将总结报告的橡胶粘弹性和物理性质的每个因素的相对强度。

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