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Deformation behavior of human enamel and dentin-enamel junction under compression

机译:人牙釉质与牙本质-牙釉质交界处的压缩变形行为

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摘要

Deformation behavior under uniaxial compression of human enamel and dentin-enamel junction (DEJ) is considered in comparison with human dentin. This deformation scheme allows estimating the total response from all levels of the hierarchical composite material in contrast with the indentation, which are limited by the mesoscopic and microscopic scales. It was shown for the first time that dental enamel is the strength (up to 1850 MPa) hard tissue, which is able to consider some elastic (up to 8%) and plastic (up to 5%) deformation under compression. In so doing, it is almost undeformable substance under the creep condition. Mechanical properties of human enamel depend on the geometry of sample. Human dentin exhibits the similar deformation behavior under compression, but the values of its elasticity (up to 40%) and plasticity (up to 18%) are much more, while its strength (up to 800 MPa) is less in two times. Despite the difference in mechanical properties, human enamel is able to suppress the cracking alike dentin. Deformation behavior under the compression of the samples contained DEJ as the same to dentin. This feature allows a tooth to be elastic-plastic (as dentin) and wear resistible (as enamel), simultaneously.
机译:与人类牙本质相比,考虑了人类牙釉质和牙本质-牙釉质接合处(DEJ)在单轴压缩下的变形行为。与压痕相反,该变形方案允许从分层复合材料的所有层级估计总响应,而压痕受到介观和微观尺度的限制。首次显示牙釉质是强度(最高1850 MPa)的硬组织,能够考虑压缩下的某些弹性变形(最高8%)和塑性(最高5%)变形。这样,它在蠕变条件下几乎是不变形的物质。人类搪瓷的机械性能取决于样品的几何形状。人牙本质在压缩下表现出相似的变形行为,但其弹性(最高40%)和可塑性(最高18%)的值要大得多,而强度(最高800 MPa)则要低两倍。尽管机械性能有所不同,但人类牙釉质仍能像牙质一样抑制龟裂。样品压缩下的变形行为包含与牙本质相同的DEJ。此功能可以使牙齿同时具有弹塑性(如牙本质)和耐磨性(如牙釉质)。

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