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通过微压痕法对人牙根牙本质微观力学性能的映射

Mapping of the Micro-Mechanical Properties of Human Root Dentin by Means of Microindentation.

作者信息

Kucher Michael, Dannemann Martin, Modler Niels, Bernhard Martina Romy, Hannig Christian, Weber Marie-Theres

机构信息

Institute of Lightweight Engineering and Polymer Technology (ILK), Technische Universität Dresden, Holbeinstraße 3, 01307 Dresden, Germany.

Clinic of Operative and Pediatric Dentistry, Medical Faculty Carl Gustav Carus, Technische Universität Dresden, Fetscherstraße 74, 01307 Dresden, Germany.

出版信息

Materials (Basel). 2021 Jan 21;14(3):505. doi: 10.3390/ma14030505.

Abstract

The extensive knowledge of root dentin's mechanical properties is necessary for the prediction of microstructural alterations and the teeth's deformations as well as their fracture behavior. Standardized microindentation tests were applied to apical, medial, and cervical root sections of a mandibular human first molar to determine the spatial distribution of the hard tissue's properties (indentation modulus, indentation hardness, Martens hardness, indentation creep). Using an indentation mapping approach, the inhomogeneity of mechanical properties in longitudinal as well as in transversal directions were measured. As a result, the tooth showed strongly inhomogeneous material properties, which depended on the longitudinal and transversal positions. In the transversal cutting planes of the cervical, medial, apical sections, the properties showed a comparable distribution. A statistical evaluation revealed an indentation modulus between 12.2 GPa and 17.8 GPa, indentation hardness between 0.4 GPa and 0.64 GPa and an indentation creep between 8.6% and 10.7%. The established standardized method is a starting point for further investigations concerning the intensive description of the inhomogeneous mechanical properties of human dentin and other types of dentin.

摘要

了解牙根牙本质的力学性能对于预测微观结构变化、牙齿变形及其断裂行为至关重要。采用标准化的微压痕试验对人下颌第一磨牙的根尖、中部和颈部牙根切片进行检测,以确定硬组织性能(压痕模量、压痕硬度、马氏硬度、压痕蠕变)的空间分布。通过压痕映射方法,测量了纵向和横向力学性能的不均匀性。结果表明,牙齿呈现出强烈的材料性能不均匀性,这取决于纵向和横向位置。在颈部、中部、根尖切片的横向切割平面中,性能呈现出类似的分布。统计评估显示,压痕模量在12.2吉帕至17.8吉帕之间,压痕硬度在0.4吉帕至0.64吉帕之间,压痕蠕变在8.6%至10.7%之间。所建立的标准化方法是进一步深入研究人牙本质和其他类型牙本质不均匀力学性能的起点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/544b/7864522/57916df9bcd0/materials-14-00505-g001.jpg

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