首页> 外文期刊>Rubber Chemistry and Technology >CORRELATION OF RUBBER PROPERTIES BETWEEN FIELD AGED TIRES AND LABORATORY AGED TIRES
【24h】

CORRELATION OF RUBBER PROPERTIES BETWEEN FIELD AGED TIRES AND LABORATORY AGED TIRES

机译:田间老化轮胎与实验室老化轮胎之间橡胶性能的相关性

获取原文
获取原文并翻译 | 示例
       

摘要

The kinetics of aging of key tire properties both in the field and in oven exposures at different temperatures has been interpreted by using a combination of empirical models and accelerated shift factors. Crosslink density and rubber modulus increase with aging while peel strength and elongation-to-break decrease. In the case of oven aging, the rate of property change increases from 40 ℃ to 70 ℃ and then decreases. In the case of field aging, the rate of property change is greatest in hotter climates such as Phoenix and is slower in cooler climates such as Detroit. Spare tires age at a rate that is ~70% as fast as on-road tires. Below 70 ℃, the rate data for all of the aging changes can be fit to an Arrenhius relationship with an activation energy of ~69 kJ/mole, a value that is consistent with the aging process resulting from diffusion limited oxidation. The measured acceleration factor of oven aging at 70 ℃ relative to on-road aging in Phoenix is independent of the property change measured confirming that it is possible to chemically age tires in ovens. It takes 6-7 weeks of oven aging at 70 ℃ to produce a tire that is aged 4 years in Phoenix. Field results show that the rate of tire aging varies by over a factor of 5 for the different tire types and brands studied in this work. The implications for tire durability testing are discussed.
机译:通过结合经验模型和加速变速系数,可以解释在不同温度下在野外和在烤箱中暴露关键轮胎性能的动力学。交联密度和橡胶模量随老化而增加,而剥离强度和断裂伸长率则下降。在烤箱老化的情况下,特性变化率从40℃增加到70℃,然后下降。在田间老化的情况下,在凤凰城等较热的气候中,财产变化的速度最大,而在底特律等较冷的气候中,财产变化的速度则较慢。备用轮胎的老化速度是公路轮胎的约70%。在70℃以下,所有时效变化的速率数据都可以与Arrenhius关系拟合,其活化能为〜69 kJ / mol,该值与扩散受限氧化导致的时效过程一致。在Phoenix中,相对于路面老化,在70℃下测得的烤箱老化加速因子与所测量的特性变化无关,这证实了可以在烤箱中对轮胎进行化学老化。在凤凰城,要在70℃的烤箱中进行6-7周的老化,才能生产出4年的轮胎。现场结果表明,针对这项研究中所研究的不同轮胎类型和品牌,轮胎老化率变化了5倍以上。讨论了轮胎耐久性测试的意义。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号