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Mechanical and electromechanical characterization of a novel composite cellular solid for orthopaedic applications: A feasibility study.

机译:用于骨科应用的新型复合多孔固体的机械和机电特性:可行性研究。

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摘要

This document presents investigations concerning the feasibility of manufacturing a novel active composite cellular structure to be used in surgical applications such as spinal fusion. The development of a biomimetic spinal fusion implant was motivated by two main factors. The population of patients whose metabolic conditions jeopardize the success of this surgical operation keeps increasing. Current implants and techniques present financial, technical, and health drawbacks. The new medical device would feature enhanced mechanical and electromechanical properties that would overcome these issues and could accelerate bone healing.;A simple one-dimensional piezoelectric re-entrant structure was created from piezoceramic plates positioned between metallic bowtie open cells. Various sizes of this structure were prepared by hand and by a solid free-form process. These ductile cellular solids were tested to verify if they presented a nonlinear mechanical behavior at small strains along with mechanical parameters and an electromechanical behavior that could be tailored for orthopaedic applications. The tensile strength of a gradual composition material used as an interface between the metallic and ceramic elements of the structure was also evaluated.;Despite the small number of specimens and limitations in the current manufacturing process, the investigations showed that the mechanical and electromechanical properties of the re-entrant structure can be controlled and tailored via their relative density. Also, the gradual composition interfacing material presented a linear change in tensile strength that could eliminate the problems of stress 4 concentration in the structure. This work provides base data for future finite element analyses of such and evolved versions of the piezoelectric re-entrant structure.
机译:该文献提出了有关制造用于外科手术应用例如脊柱融合术的新型活性复合细胞结构的可行性的研究。仿生脊柱融合植入物的开发受到两个主要因素的推动。其代谢状况危及该手术成功的患者人数不断增加。当前的植入物和技术存在财务,技术和健康方面的缺点。新的医疗设备将具有增强的机械和机电性能,可以克服这些问题并加速骨骼愈合。;从位于金属领结开孔之间的压电陶瓷板创建了简单的一维压电凹入结构。手工和通过固体自由形式工艺制备了各种尺寸的这种结构。对这些可延展的多孔固体进行了测试,以验证它们是否在小应变下呈现出非线性的机械性能,以及可以针对骨科应用量身定制的机械参数和机电性能。还评估了用作结构的金属和陶瓷元素之间的界面的渐进成分材料的拉伸强度。尽管样本数量少并且在当前的制造工艺中存在限制,但研究表明,材料的机械和机电性能凹入结构可以通过它们的相对密度来控制和定制。同样,逐渐组成的界面材料呈现出抗张强度的线性变化,这可以消除结构中应力4集中的问题。这项工作为压电凹腔结构的这种和演变版本的未来有限元分析提供了基础数据。

著录项

  • 作者

    Jaumard, Nicolas.;

  • 作者单位

    University of Kansas.;

  • 授予单位 University of Kansas.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 419 p.
  • 总页数 419
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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