С/C复合材料髋关节内假体承载力的预测

Q3 Materials Science
Е.С. Разумовский, В.Е. Шавшуков, А.Н. Аношкин, Egor S. Razumovsky –, Alexander N. Anoshkin, E. S. Razumovskii, V. E. Shavshukov
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引用次数: 0

摘要

本文评估了碳/碳(С/C)复合材料制成的髋关节内假体在解剖载荷下的承载能力。С/C是以Ural N/400-22碳纤维和RP-010型酚醛树脂为基础制成的。内假体建模的一个重要复杂性是对С/C特性的预测。基于复合材料力学的数学建模的复杂性在于无法通过实验确定热解碳基体的力学特性。热解炭基体不以其与复合材料分开的纯形式存在。考虑到复杂的复合结构,计算了С/C的力学特性,建立了骨组织和内假体的数学模型。股骨由皮质组织和海绵组织组成。研究中的股骨是沿着股骨的外侧和内侧髁固定的。这种固定对应于髁与外侧和内侧半月板的接触点。该假设得到证实,С/C中最弱的成分是热解炭基质。揭示了法向应力和切向应力的最高值的位置。切向应力集中的位置与压缩试验期间内假体的破坏区域一致,这些区域先前已通过视觉识别。已经确定了该结构的新设计和技术要求,这将有助于提高内假体的可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PREDICTION OF THE BEARING CAPACITY OF THE HIP JOINT ENDOPROSTHESIS FROM THE С/C COMPOSITES
The article evaluates the bearing capacity of the hip joint endoprosthesis made of carbon/carbon (С/C) composites under anatomical load. С/C is made on the basis of carbon fiber Ural N/400-22 and phenolformaldehyde resin novolachny type RP-010. A significant complexity in modeling an endoprosthesis is the prediction of the properties of С/C. The complexity of mathematical modeling based on the mechanics of composite materials consists in the impossibility of experimentally determining the mechanical characteristics of a pyrocarbon matrix. The pyrocarbon matrix does not exist in its pure form separately from the composite material. The mechanical characteristics of the С/C are calculated, mathematical models of bone tissue and endoprosthesis are constructed, taking into account the complex composite structure. The femur is represented by a combination of cortical and spongy tissue. The femur in the study was fixed along the lateral and medial condyles of the femur. This fixation corresponds to the contact spot of the condyle with the lateral and medial menisci. The hypothesis is confirmed that the weakest component in the С/C is the pyrocarbon matrix. The position of the highest values of normal and tangential stresses are revealed. The position of concentration of tangential stresses coincide with the areas of destruction of the endoprosthesis during compression testing, which were previously visually identified. New design and technological requirements for the structure have been identified, which will contribute to increasing the reliability of the endoprosthesis.
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来源期刊
PNRPU Mechanics Bulletin
PNRPU Mechanics Bulletin Materials Science-Materials Science (miscellaneous)
CiteScore
1.10
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