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Mechanical properties and durability of natural rubber compounds and composites.

机译:天然橡胶化合物和复合材料的机械性能和耐久性。

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摘要

The focus of this research was to investigate the effect of thermal degradation upon the mechanical properties of natural rubber compounds and apply those effects to the life prediction of off axis 2-ply cord rubber laminates. The work examined both the quasi static and dynamic mechanical properties of two natural rubber vulcanizates, which had been subjected to isothermal anaerobic aging. Thermal aging was performed on two different natural rubber vulcanizates. The thermal aging was conducted between the temperatures of 80 and 120°C for times ranging from 3 to 24 days. The effect of thermal degradation was measured from the changes in the chemical composition of the vulcanizates as functions of time at temperature. A master curve relationship between the changes in the chemical composition of the vulcanizates due to thermal degradation and their static and dynamic mechanical properties has been developed. This relationship allowed for the prediction of the vulcanizate mechanical properties after thermal aging. It was found that the mechanical properties correlated with the percentage of poly and monosulfidic crosslinks, where in general higher levels of polysulfidic crosslink gave rise to the highest mechanical properties.; Crack propagation in an aged and unaged natural rubber vulcanizate was measured using a double cantilever beam, DCB. This type of testing arrangement exhibits a plane strain condition and resulted in crack growth rates two orders of magnitude faster than traditional plane stress testing geometries.{09}To validate the DCB specimens, an investigation into the potential cavitation inside the rubber of the DCB specimens was performed. It was found that no cavitation occurred due to the high speed of the fracture. DCB samples were thermally aged to determine the effect of thermal aging upon the crack growth rate. It was found that crack growth rates increase with thermal aging.; Life prediction of the aged 2-ply laminates was performed using a finite element analysis. In order to verify the finite element models used in the life prediction, the fatigue failure and crack growth characteristics of off axis 2-ply cord-rubber laminates were examined with a delamination analysis. This analysis allowed for the determination of the modulus of off axis 2-ply laminates in the presence of damage as well as the calculation of the crack growth rates of the laminate. The failure of unaged and thermally aged 2-ply laminates was evaluated and compared to the crack growth rates of thermally aged DCB specimens. The trend due to thermal aging between the two types of testing specimens was consistent.; The finite element analysis was sectioned into two approaches: crack initiation and crack propagation. The former utilized a residual strength approach, while the latter applied a fracture mechanics approach. The predicted stress versus cycles, S-N, curves were not in complete agreement with the experimental data. The error between the predicted and the experimental is discussed and future work to correct that error is suggested. While there was not complete agreement between the predicted and the experimental data, this dissertation outlines a comprehensive approach to track the effects of thermal degradation and apply those effects to a real world application.
机译:这项研究的重点是研究热降解对天然橡胶混合物机械性能的影响,并将这些影响应用于离轴2层帘线橡胶层压板的寿命预测。这项工作研究了两种天然橡胶硫化胶的准静态和动态力学性能,这两种胶已经进行了等温厌氧老化。对两种不同的天然橡胶硫化橡胶进行热老化。在80至120℃的温度下进行热老化3至24天。根据硫化物的化学组成随温度的时间变化来测量热降解的影响。已经开发出由于热降解而引起的硫化橡胶的化学成分变化与其静态和动态力学性能之间的主曲线关系。这种关系可以预测热老化后的硫化胶机械性能。发现机械性能与聚和单硫交联的百分比相关,其中通常较高含量的多硫交联产生最高的机械性能。使用双悬臂梁DCB测量了老化和未老化的天然橡胶硫化胶中的裂纹扩展。这种测试装置表现出平面应变条件,并且导致裂纹扩展速率比传统的平面应力测试几何形状快两个数量级。{09}要验证DCB样品,需要对DCB样品橡胶内部的潜在空化进行调查被执行了。发现没有由于断裂的高速而发生气穴现象。对DCB样品进行热时效处理,以确定热时效对裂纹扩展速率的影响。发现裂纹扩展速率随着热老化而增加。使用有限元分析进行了老化的2层层压板的寿命预测。为了验证寿命预测中使用的有限元模型,通过分层分析检查了离轴2层帘线橡胶层压板的疲劳破坏和裂纹扩展特性。该分析允许在存在损伤的情况下确定离轴2层层压板的模量以及计算层压板的裂纹扩展速率。评价了未老化和热老化的2层层压板的破坏,并将其与热老化的DCB试样的裂纹扩展速率进行了比较。两种类型的试样之间由于热老化而引起的趋势是一致的。有限元分析分为两种方法:裂纹萌生和裂纹扩展。前者采用残余强度方法,而后者则采用断裂力学方法。预测的应力对周期的S-N曲线与实验数据不完全一致。讨论了预测值与实验值之间的误差,并提出了纠正该误差的未来工作。尽管在预测数据和实验数据之间没有完全一致,但本文概述了一种综合方法来跟踪热降解的影响并将这些影响应用于实际应用。

著录项

  • 作者

    South, Joseph Thomas.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Materials Science.; Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 190 p.
  • 总页数 190
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;机械、仪表工业;
  • 关键词

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