首页> 外文会议>Asia Pacific conference on biomechanics;International conference on biomedical engineering;ICBME;APBiomech;World congress of biomechanics;WCB 2010 >Optical Stress Imaging for Orthopedic Biomechanics - Comparison of Thermoelastic Stress Analysis and Developed Mechanoluminescent Method
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Optical Stress Imaging for Orthopedic Biomechanics - Comparison of Thermoelastic Stress Analysis and Developed Mechanoluminescent Method

机译:骨科生物力学的光学应力成像​​-热弹性应力分析与发达的机械发光方法的比较

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摘要

Thermoelastic stress analysis, which utilizes the thermoelastic properties of materials, is a full-field, non-contact technique for surface stress mapping of materials and structures. Unlike the conventional technique such as strain gauge method, the unique advantage of the method is its ability to image whole-surface stress (△ (σ_1+σ_2)) distribution in specimens. An experimental system using the thermoelastic stress analysis method and a synthetic femur was utilized to perform reliable and convenient mechanical biocompatibility evaluation of hip prosthesis design. In addition, the mechanoluminescent materials, the author (Xu) developed, are novel inorganic materials that can luminesce in response to applied mechanical energy. A prosthetic device in which these mechanoluminescent materials are applied to a synthetic bone is a "mechanoluminescent synthetic bone." Since the region subjected to load emits high intensity light in the visible region, the device has allowed high-definition and high-speed visualization of the mechanical dynamic environment using conventional image sensors such as CCDs. Thermoelastic stress analysis and mechanoluminescent method have mutual, supplementary advantages. It is confirmed that they are very effective techniques in vitro biomechanics research and to contribute to a variety of biomechanical analyses and thus support the practical implementation of prosthetic devices.
机译:热弹性应力分析,利用材料的热弹性性能,是一种全场,非接触技术,用于材料和结构的表面应力映射。与诸如应变计法的传统技术不同,该方法的独特优点是其对样本中的全表面应力(△(Σ_1+σ_2))分布的能力。利用使用热弹性应力分析方法和合成股骨的实验系统进行髋关节假体设计的可靠和方便的机械生物相容性评价。此外,作者(XU)开发的机械发光材料是可以响应于应用机械能而发出的新型无机材料。将这些机械发光材料应用于合成骨的假体装置是“机械发光合成骨”。由于经过负载的区域发出可见区域中的高强度光,因此该装置使用诸如CCD的传统图像传感器允许机械动态环境的高清和高速可视化。热弹性应力分析和机械化方法具有相互,补充优势。证实它们是体外生物力学研究的非常有效的技术,并有助于各种生物力学分析,从而支持假肢装置的实际实施。

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