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A Novel Videography Method for Generating Crack-Extension Resistance Curves in Small Bone Samples

机译:在小骨样品中产生抗裂纹扩展曲线的一种新的摄像方法

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摘要

Assessment of bone quality is an emerging solution for quantifying the effects of bone pathology or treatment. Perhaps one of the most important parameters characterising bone quality is the toughness behaviour of bone. Particularly, fracture toughness, is becoming a popular means for evaluating bone quality. The method is moving from a single value approach that models bone as a linear-elastic material (using the stress intensity factor, K) towards full crack extension resistance curves (R-curves) using a non-linear model (the strain energy release rate in J-R curves). However, for explanted human bone or small animal bones, there are difficulties in measuring crack-extension resistance curves due to size constraints at the millimetre and sub-millimetre scale. This research proposes a novel “whitening front tracking” method that uses videography to generate full fracture resistance curves in small bone samples where crack propagation cannot typically be observed. Here we present this method on sharp edge notched samples (<1 mm×1 mm×Length) prepared from four human femora tested in three-point bending. Each sample was loaded in a mechanical tester with the crack propagation recorded using videography and analysed using an algorithm to track the whitening (damage) zone. Using the “whitening front tracking” method, full R-curves and J-R curves could be generated for these samples. The curves for this antiplane longitudinal orientation were similar to those found in the literature, being between the published longitudinal and transverse orientations. The proposed technique shows the ability to generate full “crack” extension resistance curves by tracking the whitening front propagation to overcome the small size limitations and the single value approach.
机译:骨质量评估是一种量化骨病理学或治疗效果的新兴解决方案。表征骨骼质量的最重要参数之一可能是骨骼的韧性行为。特别地,断裂韧性正成为评估骨质量的流行手段。该方法正从单一值方法转变为使用线性模型(应变能释放率)将单一模型建模为线性弹性材料的骨骼(使用应力强度因子K),转向全裂纹扩展阻力曲线(R曲线)。在JR曲线中)。然而,对于植入的人骨或小动物骨头,由于尺寸限制在毫米和亚毫米尺度,因此难以测量抗龟裂扩展曲线。这项研究提出了一种新颖的“增白前跟踪”方法,该方法使用摄像技术在通常无法观察到裂纹扩展的小骨样本中生成完整的抗断裂曲线。在这里,我们介绍了这种方法,该方法适用于在四点进行三点弯曲测试的人类股骨制备的锐边缺口样品(<1 mm×1 mm×长度)。将每个样品加载到机械测试仪中,并使用摄像头记录裂纹扩展,并使用算法进行分析以跟踪增白(损坏)区域。使用“增白前跟踪”方法,可以为这些样本生成完整的R曲线和J-R曲线。该反平面的纵向取向曲线与文献中发现的曲线相似,在已发布的纵向和横向取向之间。所提出的技术显示了通过跟踪增白前沿传播来克服小尺寸限制和单值方法来生成完整的“裂纹”扩展电阻曲线的能力。

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