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Implications of the Use of Silica as Active Filler in Passenger Car Tire Compounds on Their Recycling Options

机译:二氧化硅作为活性填充剂在乘用车轮胎胶料中的回收选择意义

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摘要

Tires are an important vehicle component, as car handling, safety and fuel economy depend for a major part on the tire composition and construction. As a consequence, tires are improved continuously. The most prominent improvement in the recent past was the use of a silica-silane filler system in passenger car tread compounds, instead of traditionally used carbon black. For recycling and re-use of end-of-life car tire rubber one of the most promising recycling methods is devulcanization: re-plasticizing the vulcanized rubber by selectively breaking the sulfur bridges between the polymer molecules. In the present paper, the influence of silica, which is present in the passenger car tires granulate, on both devulcanization and subsequent revulcanization, is investigated. In a step-wise approach it is shown that the presence of silica influences both devulcanization and revulcanization. The best tensile strength of the revulcanizate, using a carbon-black-based revulcanization formulation, was 5 MPa. This could be improved to 6.5 MPa by using 2.8 phr of 1,3-DiPhenylGuanidine (DPG) in the revulcanization formulation. After addition of a silanization step during revulcanization by adding 3.2 phr bis[3-(TriEthoxySilyl)Propyl] Tetrasulfide (TESPT), a silane, to the formulation, the tensile strength of the revulcanizate was further improved to 8 MPa. With these results it is shown that the silica in the granulate can be used to improve the revulcanization properties. To check the benefits of using pure tire tread material for the devulcanization and subsequent revulcanization, of both a carbon black and a silica-based virgin tread compound, it is shown that a tensile strength of the revulcanizate of 13 MPa can be reached. This shows the potential of devulcanized rubber when the various tire components are separated before whole car tire material is granulated as the beginning of the recycling.
机译:轮胎是重要的汽车部件,因为汽车的操纵,安全性和燃油经济性在很大程度上取决于轮胎的成分和结构。结果,轮胎得到了持续改进。最近最显着的进步是在乘用车胎面胶料中使用了二氧化硅-硅烷填料体系,而不是传统上使用的炭黑。对于回收和再利用的报废汽车轮胎橡胶,最有希望的回收方法之一是脱硫:通过选择性地破坏聚合物分子之间的硫桥,使硫化橡胶再塑化。在本文中,研究了乘用车轮胎颗粒中存在的二氧化硅对脱硫和随后的脱硫的影响。以逐步的方法表明,二氧化硅的存在既影响脱硫也影响脱硫。使用基于炭黑的硫化配方,硫化橡胶的最佳拉伸强度为5 MPa。通过在硫化配方中使用2.8 phr的1,3-二苯基苯基胍(DPG),可以将其提高到6.5 MPa。通过在配方中添加3.2 phr的双[3-(TriEthoxySilyl)丙基]四硫醚(TESPT)(硅烷),在硫化过程中添加硅烷化步骤后,硫化橡胶的拉伸强度进一步提高至8 MPa。这些结果表明,颗粒中的二氧化硅可用于改善硫化性能。为了检验使用纯轮胎胎面材料对炭黑和二氧化硅基纯胎面胶进行脱硫和随后的脱硫的好处,表明可以达到13 MPa的脱硫胶的拉伸强度。这表明了在将整个汽车轮胎材料造粒之前,先将各种轮胎组件分开,然后再进行回收,然后再使用硫化橡胶的潜力。

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