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Hardness and yield strength of dentin from simulated nano-indentation tests.

机译:模拟的纳米压痕测试显示牙本质的硬度和屈服强度。

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摘要

The finite element method (FEM) is applied for studying the hardness (H) and yield strength (Y) of dentin subjected to a nano-indentation process. The nano-indentation experiments were simulated with the ABAQUS finite element software package. This test, performed with a spherical indenter, was simulated by axisymmetric finite element analysis. The load versus displacement was calculated during loading-unloading sequence for different elastic modulus (E) and yield strength. Hardness and maximum principal compressive and tensile stresses were plotted for different elastic modulus depending on yield strength. The dentin was assumed to be isotropic, homogenous and elasto-plastic. The theoretical results outlined in this study were compared with the experimental works reported in the literature and then hardness and yield strength of dentin was estimated.
机译:有限元方法(FEM)用于研究经过纳米压痕处理的牙本质的硬度(H)和屈服强度(Y)。使用ABAQUS有限元软件包模拟了纳米压痕实验。通过球形压头进行的该测试是通过轴对称有限元分析来模拟的。对于不同的弹性模量(E)和屈服强度,在装卸顺序中计算了载荷与位移的关系。根据屈服强度,针对不同的弹性模量绘制了硬度,最大主压缩应力和拉伸应力。假定牙本质是各向同性的,均质的和弹塑性的。将本研究中概述的理论结果与文献中报道的实验工作进行比较,然后评估牙本质的硬度和屈服强度。

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