首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Development and validation of a distal radius finite element model to simulate impact loading indicative of a forward fall
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Development and validation of a distal radius finite element model to simulate impact loading indicative of a forward fall

机译:远端半径有限元模型的开发和验证,以模拟指示向前下落的冲击载荷

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The purpose of this work was to develop and validate a finite element model of the distal radius to simulate impact loading. Eight-node hexahedral meshes of the bone and impactor components were created. Three separate impact events were simulated by altering the impact velocity assigned to the model projectile (pre-fracture, crack and fracture). Impact forces and maximum and minimum principal strains were calculated and used in the validation process by comparing with previously collected experimental data. Three measures of mesh quality (Jacobians, aspect ratios and orthogonality) and four validation methods (validation metric, error assessment, fracture comparisons and ensemble averages) assessed the model. The element Jacobians, aspect ratios and orthogonality measures ranged from 0.08 to 12, 1.1 to 26 and -70 degrees to 80 degrees, respectively. The force and strain validation metric ranged from 0.10 to 0.54 and 0.35 to 0.67, respectively. The estimated peak axial force was found to be a maximum of 28.5% greater than the experimental (crack) force, and all forces fell within +/- 2 standard deviation of the mean experimental fracture forces. The predicted strains were found to differ by a mean of 33% across all impact events, and the model was found to accurately predict the location and severity of bone damage. Overall, the model presented here is a valid representation of the distal radius subjected to impact.
机译:这项工作的目的是开发和验证远端半径的有限元模型,以模拟冲击载荷。创建了骨骼和撞击器组件的八节点六面体网格。通过更改分配给模型弹丸的冲击速度(预断裂,裂纹和断裂)来模拟三个单独的冲击事件。通过与先前收集的实验数据进行比较,计算出冲击力以及最大和最小主应变,并将其用于验证过程。对网格质量的三种度量(Jacobians,长宽比和正交性)和四种验证方法(验证度量,误差评估,断裂比较和总体平均值)对模型进行了评估。雅可比元素,长宽比和正交度量分别在0.08到12、1.1到26和-70到80度的范围内。力和应变验证指标的范围分别为0.10至0.54和0.35至0.67。发现估计的峰值轴向力最大比实验(裂纹)力大28.5%,并且所有力都落在平均实验断裂力的+/- 2标准偏差之内。发现在所有撞击事件中,预计的应变差异平均为33%,并且发现该模型可以准确预测骨骼损伤的位置和严重程度。总体而言,此处介绍的模型是受到撞击的远端radius骨的有效表示。

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