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Structural and mechanical properties of the coral and nacre and the potentiality of their use as bone substitutes

机译:珊瑚和珍珠母的结构和机械特性及其作为骨替代品的潜力

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摘要

The main objective of this work is to develop resistant compact material samples with different porosities from coral and nacre adapted to the filling of bone cavities. The characterization of materials was conducted using scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDS) and laser granulometry. The micro-hardness and the influence of porosity on the mechanical behavior of these biomaterials under compression as well as three-points bending tests were also assessed. Both materials showed similar particles size ranging from 50 to 100 μm in diameter, distributed according to the Gauss curve. The modal particle size, the median D_(50) and D_(90)-D_(10) are the most important parameters which allow for the distinction between coral and nacre samples. The two biomaterials showed a micro hardness (138-167 HV for coral and 261-340 HV for nacre) higher than that of bovine bones (55-70 HV). The maximum compression stresses were 32.82 MPa for coral and 37.06 MPa for nacre at 50% of porosity. S-N curve with ASME format is constructed to predict the fatigue life extended from 10~1 to 10~6 cycles, which reveals an endurance limit at a compression stress ratio of about 10.
机译:这项工作的主要目的是从珊瑚和珍珠层开发具有不同孔隙度的耐压紧凑材料样品,以适应骨腔的填充。使用扫描电子显微镜(SEM),能量色散X射线光谱仪(EDS)和激光粒度分析仪对材料进行表征。还评估了这些硬度下的生物材料的显微硬度和孔隙率对机械性能的影响以及三点弯曲试验。两种材料均显示出相似的粒径,直径根据高斯曲线分布,直径范围为50至100μm。模态粒度,中值D_(50)和D_(90)-D_(10)是最重要的参数,可区分珊瑚和珍珠质样品。两种生物材料的显微硬度(珊瑚为138-167 HV,珍珠母为261-340 HV)高于牛骨(55-70 HV)。在孔隙率为50%时,珊瑚的最大压缩应力为32.82 MPa,珍珠母的最大压缩应力为37.06 MPa。构造具有ASME格式的S-N曲线来预测疲劳寿命,该疲劳寿命从10〜1个周期扩展到10〜6个周期,这揭示了在约10的压缩应力比下的耐久极限。

著录项

  • 来源
    《Applied Surface Science》 |2013年第1期|485-491|共7页
  • 作者单位

    Biomaterials and Biomechanics Laboratory, National Institute M.T. Kassab of Orthopedic, Tunis, Tunisia,National Institute of Applied Sciences and Technology,Centre Urbain Nord, Box 676,1080 Tunis cedex, Tunisia;

    Biomaterials and Biomechanics Laboratory, National Institute M.T. Kassab of Orthopedic, Tunis, Tunisia;

    Laboratory of Biomechanics, Polymer and Structures Mechanics, National School of Engineers of Metz, Metz, France;

    Laboratory of Biomechanics, Polymer and Structures Mechanics, National School of Engineers of Metz, Metz, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    coral; nacre; calcium carbonate; mechanical properties; fatigue;

    机译:珊瑚;珍珠母碳酸钙机械性能疲劳;

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