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Biofluid lubrication for artificial joints.

机译:人工关节的生物流体润滑。

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摘要

This research investigated biofluid lubrication related to artificial joints using tribological and rheological approaches. Biofluids studied here represent two categories of fluids, base fluids and nanostructured biofluids. Base fluids were studied through comparison of synthetic fluids (simulated body fluid and hyaluronic acid) as well as natural biofluids (from dogs, horses, and humans) in terms of viscosity and fluid shear stress. The nano-structured biofluids were formed using molecules having well-defined shapes. Understanding nano-structured biofluids leads to new ways of design and synthesis of biofluids that are beneficial for artificial joint performance.;Experimental approaches were utilized in the present research. This includes basic analysis of biofluids' property, such as viscosity, fluid shear stress, and shear rate using rheological experiments. Tribological investigation and surface characterization were conducted in order to understand effects of molecular and nanostructures on fluid lubrication. Workpiece surface structure and wear mechanisms were investigated using a scanning electron microscope and a transmission electron microscope. The surface topography was examined using a profilometer.;The results demonstrated that with the adding of solid additives, such as crown ether or fullerene acted as rough as the other solids in the 3-body wear systems. In addition, the fullerene supplied low friction and low wear, which designates the lubrication purpose of this particular particle system.;This dissertation is constructed of six chapters. The first chapter is an introduction to body fluids, as mentioned earlier. After Chapter II, it examines the motivation and approach of the present research, Chapter III discusses the experimental approaches, including materials, experimental setup, and conditions. In Chapter IV, lubrication properties of various fluids are discussed. The tribological properties and performance nanostructured biofluids are discussed in Chapter V, followed by summary and conclusions in Chapter VI.
机译:这项研究使用摩擦学和流变学方法研究了与人工关节有关的生物流体润滑。这里研究的生物流体代表两类流体,基础流体和纳米结构生物流体。通过比较合成液(模拟体液和透明质酸)以及天然生物流体(来自狗,马和人)的粘度和流体剪切应力,对基础液进行了研究。使用具有明确定义的形状的分子形成纳米结构的生物流体。对纳米结构生物流体的理解导致了新的设计和合成生物流体的方法,这些方法对人工关节的表现是有益的。;本研究采用了实验方法。这包括使用流变实验对生物流体特性(例如粘度,流体剪切应力和剪切速率)进行基本分析。为了了解分子和纳米结构对流体润滑的影响,进行了摩擦学研究和表面表征。使用扫描电子显微镜和透射电子显微镜研究了工件的表面结构和磨损机理。结果表明,加入固体添加剂,如冠醚或富勒烯,与三体磨损系统中的其他固体一样粗糙。此外,富勒烯具有低摩擦和低磨损的特性,这表明该特定颗粒系统的润滑目的。本论文分为六章。如前所述,第一章是对体液的介绍。在第二章之后,它研究了本研究的动机和方法,第三章讨论了实验方法,包括材料,实验装置和条件。在第四章中,讨论了各种流体的润滑特性。第五章讨论了摩擦学特性和纳米结构生物流体的性能,第六章总结并总结了结论。

著录项

  • 作者

    Pendleton, Alice Mae.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Materials Science.;Engineering Biomedical.;Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 130 p.
  • 总页数 130
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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