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Experimental Investigation on the Mechanical Behavior of Bovine Bone Using Digital Image Correlation Technique

机译:数字图像相关技术对牛骨力学行为的实验研究

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In order to understand the fracture mechanisms of bone subjected to external force well, an experimental study has been performed on the bovine bone by carrying out the three-point bending test with 3D digital image correlation (DIC) method, which provides a noncontact and full field of displacement measurement. The local strain and damage evolution of the bone has been recorded real time. The results show that the deflection measured by DIC agrees well with that obtained by the displacement sensor of the mechanical testing machine. The relationship between the deflection and the force is nearly linear prior to reaching the peak strength which is about 16 kN for the tested bovine tibia. The full-field strain contours of the bone show that the strain distribution depends on not only the force direction, but also the natural bone shape. The natural arched-shape bovine tibia bone could bear a large force, due to the tissue structure with high strength, and the fracture propagation process of the sample initiates at the inner side of the bone first and propagates along the force direction.
机译:为了更好地了解外力作用下的骨骼的断裂机理,通过采用3D数字图像相关技术(DIC)进行三点弯曲测试,对牛骨进行了实验研究,该方法提供了非接触式和全接触式位移测量领域。骨骼的局部应变和损伤演变已实时记录。结果表明,用DIC测得的挠度与机械试验机的位移传感器测得的挠度非常吻合。挠度和力之间的关系在达到峰值强度之前几乎是线性的,对于被测牛胫骨,峰值强度约为16 kN。骨骼的全场应变轮廓表明,应变分布不仅取决于力的方向,还取决于自然的骨骼形状。天然弓形牛胫骨由于组织结构强度高,可以承受较大的力,并且样品的断裂扩展过程首先在骨骼内侧开始,并沿受力方向扩展。

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