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The Elasticity Coefficients Measurement of Human Dentin Based on RUS

机译:基于RUS的人体牙本质弹性系数测量

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摘要

This paper proposed to take advantages of resonant ultrasound spectroscopy (RUS) to measure the mechanical properties of human dentin specimen. The resonant spectroscopy of the dentin specimen was obtained between the frequency bands 155 and 575 kHz, and resonant frequencies were extracted by linear predictive filter and then by Levenberg-Marquardt method. By inverse problem approach, 13 experimental resonant frequencies progressively matched to the first 30 orders of theoretical resonant frequencies calculated by Lagrangian variational method. The full second-order elastic tensor of dentin specimen was adjusted. The whole set of human dentin engineering moduli, including Young's moduli (E11 = 22.641 GPa, E33 = 13.637 GPa), shear moduli (G12 = 10.608 GPa, G23 = 7.742 Gpa), and Poisson's ratios (ν12 = 0.067, ν31 = 0.378), were finally calculated. This study demonstrates that RUS can be successfully adapted to measure the mechanical properties of low quality factor biomaterials.
机译:本文提出利用共振超声光谱法(RUS)来测量人体牙本质标本的力学性能。在155和575 kHz频带之间获得了牙本质标本的共振光谱,并通过线性预测滤波器和Levenberg-Marquardt方法提取了共振频率。通过反问题方法,有13个实验谐振频率逐渐与通过拉格朗日变分法计算的前30个理论谐振频率匹配。调整牙本质标本的完整二阶弹性张量。整套人类牙本质工程模量,包括杨氏模量(E11 = 22.641 GPa,E33 = 13.637 GPa),剪切模量(G12 = 10.608 GPa,G23 = 7.742 Gpa)和泊松比(ν12= 0.067,ν31= 0.378) ,终于算出来了。这项研究表明,RUS可以成功地用于测量低品质因数生物材料的机械性能。

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