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在超声振动辅助加工过程中,预结晶和结晶的含氧化锆硅酸锂微晶玻璃中产生的表面裂纹。

Surface fractures in pre-crystallized and crystallized zirconia-containing lithium silicate glass-ceramics generated in ultrasonic vibration-assisted machining.

作者信息

Juri Afifah Z, Song Xiao-Fei, Nakanishi Yoshitaka, Dudley James, Jamieson Lisa, Yin Ling

机构信息

School of Electrical and Mechanical Engineering, The University of Adelaide, Adelaide, SA 5005, Australia; Department of Mechanical and Manufacturing Engineering, Faculty of Engineering and Built Environment, Universiti Kebangsaan Malaysia, 43600, Bangi, Selangor, Malaysia.

Key Laboratory of Advanced Ceramics and Machining Technology of Ministry of Education, School of Mechanical Engineering, Tianjin University, Tianjin, 300354, China.

出版信息

J Mech Behav Biomed Mater. 2023 Nov;147:106132. doi: 10.1016/j.jmbbm.2023.106132. Epub 2023 Sep 19.

Abstract

Machining-induced surface fractures in ceramic restorations is a long-standing problem in dentistry, affecting the restorations' functionality and reliability. This study approached a novel ultrasonic vibration-assisted machining technique to zirconia-containing lithium silicate glass-ceramics (ZLS) and characterized its induced surface fracture topographies and morphologies to understand the microstructure-property-processing relations. The materials were processed using a digitally controlled ultrasonic milling machine at a harmonic vibration frequency with different amplitudes. Machining-induced surface fracture topographies were measured with a 3D white light optical profilometer using the arithmetic mean, peak and valley, and maximum heights, as well as the kurtosis and skewness height distributions, and the texture aspect ratios. Fracture morphologies were analysed using scanning electron microscopy (SEM). The surface fracture topographies were significantly dependent on the material microstructure, the mechanical properties, and the ultrasonic machining vibration amplitudes. Larger scale fractures with higher arithmetic mean, peak and valley heights, and kurtosis and skewness height distributions were induced in higher brittleness indexed pre-crystallized ZLS than lower indexed crystallized ZLS by conventional machining. Conchoidal fractures occurred in pre-crystallized ZLS while microcracks were found in crystallized state although brittle fractures mixed with localized ductile flow deformations dominated all machined ZLS surfaces. Ultrasonic machining at an ideal vibration amplitude resulted in more ductile removal, reducing fractured-induced peaks and valleys for both materials than conventional processing. This research demonstrates the microstructure-property-processing interdependence for ZLS materials and the novel machining technique to be superior to current processing, reducing fractures in the materials and potentially advancing dental CAD/CAM techniques.

摘要

陶瓷修复体中的加工诱导表面裂纹是牙科领域长期存在的问题,影响修复体的功能和可靠性。本研究采用一种新型的超声振动辅助加工技术对含氧化锆的硅酸锂微晶玻璃(ZLS)进行加工,并对其诱导的表面裂纹形貌和形态进行表征,以了解微观结构-性能-加工之间的关系。使用数控超声铣床在具有不同振幅的谐波振动频率下对材料进行加工。使用三维白光光学轮廓仪测量加工诱导的表面裂纹形貌,测量参数包括算术平均高度、峰谷高度、最大高度,以及峰度和偏度高度分布,还有纹理长宽比。使用扫描电子显微镜(SEM)分析断裂形态。表面裂纹形貌显著依赖于材料的微观结构、力学性能和超声加工振动振幅。与通过传统加工的较低脆性指数的结晶ZLS相比,在较高脆性指数的预结晶ZLS中诱导出更大规模的裂纹,其算术平均高度、峰谷高度以及峰度和偏度高度分布更高。在预结晶ZLS中出现贝壳状断裂,而在结晶状态的ZLS中发现微裂纹,尽管脆性断裂与局部延性流动变形混合主导了所有加工的ZLS表面。在理想振动振幅下进行超声加工导致更多的延性去除,与传统加工相比,两种材料的断裂诱导峰谷都减少。本研究证明了ZLS材料的微观结构-性能-加工相互依赖性,以及这种新型加工技术优于当前加工方法,减少了材料中的裂纹,并有可能推动牙科CAD/CAM技术的发展。

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