首页> 外文会议>Fall Technical Meeting of the Rubber Division, American Chemical Society >GREEN TIRE TREAD COMPOUNDS BASED ON SILICA-REINFORCED EPOXIDIZED NATURAL RUBBER (ENR): COMPARISON OF THE ROLE OF WATER IN THE CURE OF ENR, sSBR/BR, NR AND BR
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GREEN TIRE TREAD COMPOUNDS BASED ON SILICA-REINFORCED EPOXIDIZED NATURAL RUBBER (ENR): COMPARISON OF THE ROLE OF WATER IN THE CURE OF ENR, sSBR/BR, NR AND BR

机译:基于二氧化硅增强的环氧化天然橡胶(ENR)的绿色轮胎胎面化合物:水中的作用比较EAR,SSBR / BR,NR和BR的固化

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As concerns grow regarding climate change and the cost and long-term availability of oil supplies, there is an increasing desire for products such as tires to be manufactured in part or entirely from renewable materials, as well as for the energy consumption and carbon footprint over the life cycle of the tire to be minimized. This can be achieved in tire treads by using the renewable polymer, epoxidized natural rubber (ENR-25, with 25% epoxidation), reinforced with silica. In addition to providing lower rolling resistance, and hence reduced fuel consumption, silica-filled ENR tire treads also deliver enhanced wet traction, when compared with treads based on silane-coupled silica-filled synthetic rubbers (solution SBR/BR blends). The unique interaction of ENR with silica is a crucial factor. The cure behavior of silica-reinforced ENR-25, NR, cis- BR and solution SBR/BR has been compared with and without added water or ethanol, and in the presence and absence of the sulfur cure system. The cure behavior of silica-reinforced ENR-25 is radically changed when water is present in the compound. The torque rise is earlier, faster and much larger, and there is also a significant shoulder before the main cure, with a steep rise in torque from the start of the cure, associated with the development of a silica network. Similar effects may be seen in the cure behavior of the other rubbers, but their extent and the role of water of varies. These differences are thought to reflect the differences in rubber-silica interaction and silica dispersion in ENR, NR, BR and sSBR/BR.
机译:由于对气候变化的担忧和石油供应的成本和长期可用性,因此越来越大的产品,如轮胎部分或完全来自可再生材料的产品,以及能源消耗和碳足迹最小化轮胎的生命周期。通过使用二氧化硅增强,可以通过使用可再生聚合物,环氧化天然橡胶(ENR-25,25%环氧化)来在轮胎胎面中实现。除了提供较低的滚动阻力外,由于基于硅烷偶联的二氧化硅合成橡胶(溶液SBR / Br混合物)的胎面相比,二氧化硅填充的ENR轮胎胎面还能提供增强的湿牵引力。与二氧化硅的独特相互作用是一个关键因素。将二氧化硅增强EnR-25,NR,CIS-BR和溶液SBR / Br的固化行为与含水或乙醇进行比较,并且在存在和不存在硫磺固化系统中。当化合物中存在水时,二氧化硅增强EnR-25的固化行为在差异上变化。扭矩上升较早,更快,更大,并且在主固化之前也存在显着的肩部,并且从固化开始时急剧上升,与二氧化硅网络的开发相关。在其他橡胶的固化行为中可以看出类似的效果,但它们的程度和水的作用变化。认为这些差异反映了EAR,NR,BR和SSBR / BR中橡胶二氧化硅相互作用和二氧化硅分散的差异。

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