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Evaluation of oxidative behavior of polyolefin geosynthetics utilizing accelerated aging tests based on temperature and pressure.

机译:利用基于温度和压力的加速老化测试评估聚烯烃土工合成材料的氧化行为。

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摘要

Polyolefin geosynthetics are susceptible to oxidation, which eventually leads to the reduction in their engineering properties. In the application of polyolefin geosynthetics, a major issue is an estimate of the materials durability (i.e. service lifetime) under various aging conditions. Antioxidant packages are added to the polyolefin products to extend the induction time, during which antioxidants are gradually depleted and polymer oxidation reactions are prevented.; In this PhD study, an improved laboratory accelerating aging method under elevated and high pressure environments was applied to evaluate the combined effect of temperature and pressure on the depletion of the antioxidants and the oxidation of polymers. Four types of commercial polyolefn geosynthetic materials selected for aging tests included HDPE geogrid, polypropylene woven and nonwoven geotextiles. A total of 33 different temperature/pressure aging conditions were used, with the incubation duration up to 24 months. The applied oven temperature ranged from 35°C to 105°C and the partial oxygen pressure ranged from 0.005 MPa to 6.3 MPa.; Using the Oxidative Induction Time (OIT) test, the antioxidant depletion, which is correlated to the decrease of the OIT value, was found to follow apparent first-order decay. The OIT data also showed that, the antioxidant depletion rate increased with temperature according to the Arrhenius equation, while under constant temperatures, the rate increased exponentially with the partial pressure of oxygen. A modified Arrhenius model was developed to fit the antioxidant depletion rate as a function of temperature and pressure and to predict the antioxidant lifetime under various field conditions.; This study has developed new temperature/pressure incubation aging test method with lifetime prediction models. Using this new technique, the antioxidant lifetime prediction results are close to regular temperature aging data while the aging duration can be reduced considerably. Using the enhanced aging pressure and temperature with this aging method plus a new analytical methodology utilizing time-temperature-superposition and time-pressure-superposition techniques, the post-antioxidant lifetime (Stage C) of the materials can also be predicted and so a total lifetime for different polyolefin geosynthetics can be evaluated quantitatively.
机译:聚烯烃土工合成材料易于氧化,最终导致其工程性能下降。在聚烯烃土工合成材料的应用中,主要的问题是在各种老化条件下对材料耐久性(即使用寿命)的估计。将抗氧化剂包装物添加到聚烯烃产品中以延长诱导时间,在此期间逐步减少抗氧化剂并防止聚合物氧化反应。在这项博士研究中,采用了改进的实验室加速老化方法,以在高温和高压环境下评估温度和压力对抗氧化剂消耗和聚合物氧化的综合影响。选择用于老化测试的四种类型的商用聚烯烃土工合成材料包括HDPE土工格栅,聚丙烯织造和非织造土工布。总共使用了33种不同的温度/压力老化条件,孵育时间长达24个月。施加的烘箱温度为35℃至105℃,氧分压为0.005MPa至6.3MPa。使用氧化诱导时间(OIT)测试,发现与OIT值降低相关的抗氧化剂消耗遵循明显的一阶衰减。 OIT数据还表明,根据Arrhenius方程,抗氧化剂的耗竭率随温度升高而增加,而在恒定温度下,抗氧剂耗竭率随氧分压呈指数增加。建立了改进的Arrhenius模型,以适应抗氧化剂的消耗速率随温度和压力的变化,并预测在各种田间条件下的抗氧化剂寿命。本研究开发了具有寿命预测模型的新的温度/压力培养老化测试方法。使用这种新技术,抗氧化剂寿命预测结果接近常规温度老化数据,同时可以大大减少老化时间。通过使用这种时效方法提高了时效压力和温度,再加上使用时间-温度-叠加和时间-压力-叠加技术的新分析方法,还可以预测材料的抗氧化剂后寿命(C阶段),因此总的来说可以定量评估不同聚烯烃土工合成材料的使用寿命。

著录项

  • 作者

    Li, Mengjia.;

  • 作者单位

    Drexel University.;

  • 授予单位 Drexel University.;
  • 学科 Engineering Civil.; Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 151 p.
  • 总页数 151
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;工程材料学;
  • 关键词

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