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Tire Innerliner Analysis for NHTSA Tire Aging Test Development Project

机译:NHTSA轮胎老化测试开发项目的轮胎内部过程分析

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A project to develop an accelerated aged endurance test for tires is being conducted by the United States Department of Transportation - National Highway Traffic Safety Administration. Six models of tires were collected from service in Phoenix Arizona, USA and a wide assortment of material tests were conducted on various rubber compounds in the tires to track the evolution of properties during on-vehicle service. Scientific literature attributes the evolution of changes in properties of the rubber compounds and their interfaces to thermal-oxidation. A key tire component affecting thermal-oxidation in tires is the tire innerliner because it slows the diffusion of oxygen from the tire cavity to tire compounds. An understanding of the tire innerliners was desired including innerliner composition. The innerliner composition of the six NHTSA tire brands from the NHTSA tire data set (NHTSA tire types B, C, D, E, H, and L) were analyzed for composition. In addition, the compositions of innerliners from another 37 tire types were analyzed. The analytical techniques used to determine the liner compositions included X-ray fluorescence spectroscopy, energy dispersive X-ray spectroscopy, pyrolysis-gas chromatography /flame ionization detector, and pyrolysis-gas chromatography /mass spectroscopy. The innerliner composition correlated with liner permeability. Innerliner permeability was measure on extracted liner slices. The permeability results were correlated with the compositional results, for which butyl content was a major factor affecting permeability rates.
机译:开发加速老年耐力试验的项目正在由美国交通部 - 国家公路交通安全管理局进行。从凤凰亚利桑那州的服务中收集了六种型号,美国和各种各样的材料测试在轮胎中的各种橡胶化合物上进行,以跟踪车载服务期间性能的演变。科学文学将橡胶化合物及其界面变化的演变归因于热氧化。影响轮胎中热氧化的关键轮胎部件是轮胎内衬,因为它使氧气从轮胎腔扩散到轮胎化合物。期望对轮胎内衬的理解包括内衬组合物。分析来自NHTSA轮胎数据集(NHTSA轮胎型B,C,C,D,E,H和L)的六个NHTSA轮胎品牌的内嵌组合物用于组合物。此外,分析了来自另外37个轮胎类型的内衬的组合物。用于确定衬垫组合物的分析技术包括X射线荧光光谱,能量分散X射线光谱,热解 - 气相色谱/火焰电离检测器和热解 - 气相色谱/质谱。内衬组合物与衬里渗透性相关。在提取的衬里切片上测量了内链渗透性。渗透率结果与组合物结果相关,其中丁基含量是影响渗透率率的主要因素。

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