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通过对有限厚度粘弹性样品的球形压痕载荷松弛试验来估算材料弹性。

Estimating material elasticity by spherical indentation load-relaxation tests on viscoelastic samples of finite thickness.

机构信息

Department of Physiology and Biomedical Engineering, Mayo Clinic College of Medicine, Rochester, MN, USA.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2011 Jul;58(7):1418-29. doi: 10.1109/TUFFC.2011.1961.

Abstract

A two-step viscoelastic spherical indentation method is proposed to compensate for 1) material relaxation and 2) sample thickness. In the first step, the indenter is moved at a constant speed and the reaction force is measured. In the second step, the indenter is held at a constant position and the relaxation response of the material is measured. Then the relaxation response is fit with a multi-exponential function which corresponds to a three-branch general Maxwell model. The relaxation modulus is derived by correcting the finite ramp time introduced in the first step. The proposed model takes into account the sample thickness, which is important for applications in which the sample thickness is less than ten times the indenter radius. The model is validated numerically by finite element simulations. Experiments are carried out on a 10% gelatin phantom and a chicken breast sample with the proposed method. The results for both the gelatin phantom and the chicken breast sample agree with the results obtained from a surface wave method. Both the finite element simulations and experimental results show improved elasticity estimations by incorporating the sample thickness into the model. The measured shear elasticities of the 10% gelatin sample are 6.79 and 6.93 kPa by the proposed finite indentation method at sample thickness of 40 and 20 mm, respectively. The elasticity of the same sample is estimated to be 6.53 kPa by the surface wave method. For the chicken breast sample, the shear elasticity is measured to be 4.51 and 5.17 kPa by the proposed indentation method at sample thickness of 40 and 20 mm, respectively. Its elasticity is measured by the surface wave method to be 4.14 kPa.

摘要

提出了一种两步粘弹性球形压痕方法来补偿 1)材料松弛和 2)样品厚度。在第一步中,压头以恒定速度移动,测量反作用力。在第二步中,压头保持在恒定位置,测量材料的松弛响应。然后,用多指数函数拟合松弛响应,该函数对应于三分支广义 Maxwell 模型。通过校正第一步中引入的有限斜坡时间来导出松弛模量。所提出的模型考虑了样品厚度,这对于样品厚度小于压头半径十倍的应用很重要。该模型通过有限元模拟进行了数值验证。使用提出的方法在 10%明胶模型和鸡胸肉样本上进行了实验。明胶模型和鸡胸肉样本的结果与表面波方法的结果一致。有限元模拟和实验结果均表明,通过将样品厚度纳入模型,可以提高弹性估计的准确性。在样品厚度为 40 和 20 mm 时,所提出的有限压痕方法分别测量 10%明胶样品的剪切弹性模量为 6.79 和 6.93 kPa。相同样品的弹性通过表面波方法估计为 6.53 kPa。对于鸡胸肉样本,在样品厚度为 40 和 20 mm 时,所提出的压痕方法分别测量其剪切弹性模量为 4.51 和 5.17 kPa。通过表面波方法测量其弹性为 4.14 kPa。

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