首页> 外文学位 >The thermal-mechanical property interdependency of wax-coated granular composites used in thoroughbred horse racetracks.
【24h】

The thermal-mechanical property interdependency of wax-coated granular composites used in thoroughbred horse racetracks.

机译:纯种赛马场中使用的蜡涂颗粒状复合材料的热机械性能相互依赖性。

获取原文
获取原文并翻译 | 示例

摘要

Wax-coated granular composite materials or "synthetics" are used on the surface of nine Thoroughbred horse racetracks in North America. The composition of these surfaces differs from that of a conventional dirt track as they contain silica sand, polymer fibers, and rubber particles that are bound together with a paraffin-based, high-oil content wax coating. It is hypothesized that the solid-to-liquid thermal response of the wax coating has a major effect on the mechanical properties of the track.;The purpose of this dissertation is to understand the thermal-mechanical response of a synthetic racetrack surface under operational conditions. This research investigates; (1) the hydrocarbon composition and thermal characteristics of the wax coating that binds the track constituents, (2) the temperature effects on the quasi-static and dynamic triaxial shear strength (and cohesion) of the track material, and (3) the temperature effects on the tangent modulus (vertical stiffness) of the track material. The testing temperatures used in mechanical testing are based on the thermal transition regions measured in the wax during the first phase of testing.;The results of the quasi-static triaxial shear tests showed significant sensitivity to the DSC thermal transition peaks with shear strengths peaking at temperatures near the first thermal transition region (followed by an immediate drop in strength). Strength increased by as much as 29% during this temperature change. This increase is consistent with reduced wax viscosity that allows increased mobility of sand grains to interlock and resist shear. A test sample which was modified with a high-oil, high-melting temperature microcrystalline wax showed significantly less dependence on temperature. These materials are also rate-dependent with up to 38% higher triaxial shear strength as load rates increased when tested below the first DSC transition peak. In contrast, above the first DSC transition peak temperature, no significant load rate effect on strength was exhibited. Finally, tangent modulus values were highest at the highest loads and coolest temperatures tested, and decreased (by as much as 54%) as temperature increased through the first DSC thermal transition region.;Understanding the property changes that occur in a synthetic track surface as temperatures change has the potential to determine how maintenance can be used to increase surface consistency which is expected to improve equine safety and performance.
机译:在北美的9个纯种赛马场的表面上使用了涂蜡的粒状复合材料或“合成材料”。这些表面的成分不同于常规的泥土路面,因为它们包含硅砂,聚合物纤维和橡胶颗粒,这些颗粒与石蜡基高含油量的蜡涂层粘合在一起。假设蜡涂层的固-液热响应对轨道的机械性能有重要影响。本文的目的是了解合成跑道表面在运行条件下的热机械响应。 。本研究调查; (1)粘合履带成分的蜡涂层的碳氢化合物组成和热特性;(2)温度对履带材料的准静态和动态三轴剪切强度(和内聚力)的影响;以及(3)温度对轨道材料的切线模量(垂直刚度)的影响。机械测试中使用的测试温度基于在测试的第一阶段中蜡中测得的热转变区域。准静态三轴剪切测试的结果表明,对DSC热转变峰具有显着的敏感性,且剪切强度在第一热变区附近的温度(随后强度立即下降)。在这种温度变化期间,强度增加了多达29%。这种增加与蜡粘度降低相一致,蜡粘度降低使沙粒的流动性增强,从而互锁并抵抗剪切。用高油,高熔点温度的微晶蜡改性的测试样品对温度的依赖性显着降低。当在第一个DSC过渡峰以下进行测试时,随着负载率的增加,这些材料还具有速率依赖性,其三轴剪切强度最高可提高38%。相反,在第一DSC转变峰值温度以上,没有显示出对强度的显着负载率影响。最后,切线模量值在最高负载和测试的最低温度下最高,并且随着温度在第一个DSC热过渡区中的升高而降低(降低了54%);理解在合成轨道表面发生的特性变化为温度的变化可能会决定如何使用维护方法来提高表面一致性,从而有望改善马的安全性和性能。

著录项

  • 作者

    Bridge, John William.;

  • 作者单位

    The University of Maine.;

  • 授予单位 The University of Maine.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 126 p.
  • 总页数 126
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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