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Computer simulation of elastic constants of hydroxyapatite and fluorapatite.

机译:羟基磷灰石和氟磷灰石弹性常数的计算机模拟。

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摘要

Hydroxyapatite (HAP) and fluorapatite (FAP) are essential components of dental enamel and bone. In this paper, we report a computational study of the elastic properties of HAP and FAP using ab initio and force field techniques. We have obtained the HAP and FAP elastic stiffness constants in hexagonal symmetry by fitting the Hooke law for both the energy-strain and stress-strain relations. Our ab initio HAP stiffness constants differ from the results of previous calculations, but follow similar trends. The HAP and FAP stiffness constants calculated with the ab initio method are very similar, although FAP is slightly stiffer than HAP in the hexagonal plane, and more compliant along the hexagonal axis. The pseudo-single-crystal HAP experimental stiffness constants in current use are critically reviewed. Combining the data from the ab initio simulations with the experimental FAP stiffness constants, several alternative sets of HAP stiffness constants are proposed. The mismatch in properties between HAP and FAP is evidently too small to assume it to be directly responsible for dental enamel mechanical degradation with fluorosis disease.
机译:羟基磷灰石(HAP)和氟磷灰石(FAP)是牙釉质和骨骼的基本成分。在本文中,我们报告了使用从头算和力场技术对HAP和FAP的弹性特性进行的计算研究。通过针对能量-应变和应力-应变关系拟合胡克定律,我们获得了六边形对称的HAP和FAP弹性刚度常数。我们的从头开始的HAP刚度常数与之前的计算结果不同,但是遵循相似的趋势。从头计算方法计算出的HAP和FAP刚度常数非常相似,尽管FAP在六边形平面中比HAP稍硬,并且沿六边形轴更柔顺。严格审查了当前使用的伪单晶HAP实验刚度常数。结合从头算得到的数据与实验FAP刚度常数,提出了几种HAP刚度常数的替代集。 HAP和FAP之间的性质不匹配显然很小,无法假设它直接导致了牙釉质因氟中毒而导致的机械降解。

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