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牙科亚微米混合CAD/CAM复合材料中弹塑性和粘弹性特性的阴影、老化及空间依赖性变化

Shade, Aging and Spatial-Dependent Variation of Elastoplastic and Viscoelastic Characteristics in a Dental, Submicron Hybrid CAD/CAM Composite.

作者信息

Ilie Nicoleta

机构信息

Department of Conservative Dentistry and Periodontology, University Hospital, Ludwig-Maximilians-Universität in Munich, Goethestr. 70, D-80336 Munich, Germany.

出版信息

Materials (Basel). 2023 Aug 17;16(16):5654. doi: 10.3390/ma16165654.

Abstract

This article reports the elastoplastic and viscoelastic response of an industrially cured CAD/CAM resin-based composite (Brilliant Crios, Coltene) at different scales, spatial locations, aging conditions, and shading. Mechanical tests were performed at the macroscopic scale to investigate material strength, elastic modulus, fracture mechanisms and reliability. An instrumented indentation test (IIT) was performed at the microscopic level in a quasi-static mode to assess the elastic and plastic deformation upon indentation, either by mapping transverse areas of the CAD/CAM block or at randomly selected locations. A dynamic-mechanical analysis was then carried out, in which chewing-relevant frequencies were included (0.5 to 5 Hz). Characteristics measured at the nano- and micro-scale were more discriminative in identifying the impact of variables as those measured at macro scale. Anisotropy as a function of the spatial location was identified in all shades, with gradual variation in properties from the center of the block to peripheral locations. Depending on the scale of observation, differences in shade and translucency are very small or not statistically significant. The aging effect is classified as low, but measurable on all scales, with the same pattern of variation occurring in all shades. Aging affects plastic deformation more than elastic deformation and affects elastic deformation more than viscous deformation.

摘要

本文报道了一种工业固化的CAD/CAM树脂基复合材料(Brilliant Crios,科尔tene公司)在不同尺度、空间位置、老化条件和颜色下的弹塑性和粘弹性响应。在宏观尺度上进行力学测试,以研究材料强度、弹性模量、断裂机制和可靠性。在微观层面以准静态模式进行仪器化压痕试验(IIT),通过绘制CAD/CAM块体的横向区域或在随机选择的位置评估压痕时的弹性和塑性变形。然后进行动态力学分析,其中包括咀嚼相关频率(0.5至5赫兹)。在纳米和微观尺度上测量的特性在识别变量影响方面比在宏观尺度上测量的特性更具区分性。在所有颜色中均识别出各向异性是空间位置的函数,从块体中心到周边位置性能逐渐变化。根据观察尺度,颜色和半透明度的差异非常小或无统计学意义。老化效应被归类为低,但在所有尺度上均可测量,所有颜色中均出现相同的变化模式。老化对塑性变形的影响大于弹性变形,对弹性变形的影响大于粘性变形。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf97/10456770/fc63bcfa95e6/materials-16-05654-g001.jpg

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