Effect of rapid cooling on residual stress and surface fracture toughness of dental zirconia

IF 3.3 2区 医学 Q2 ENGINEERING, BIOMEDICAL Journal of the Mechanical Behavior of Biomedical Materials Pub Date : 2024-07-09 DOI:10.1016/j.jmbbm.2024.106656
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Abstract

Short-time sintering of dental zirconia not only improves manufacturing efficiency of zirconia prosthetics, but also enables an attractive situation in which prosthetic treatment can be completed within a single visit. Although many studies have clarified the effects of heating rate and dwell time on the properties of dental zirconia during short-time sintering, there are only a few studies on rapid cooling. In this study, we investigated the effect of cooling rate on dental zirconia. It was found that the cooling rate had no effect on the three-point flexural strength, but a fast cooling rate improved fracture toughness at the material surface. Raman piezo-spectroscopy showed that a compressive stress layer formed in the neighborhood of the zirconia surface and that its thickness increased with increasing cooling rate. From the above results, it was concluded that the compressive stress layer formed on the surface by rapid cooling improved the apparent fracture toughness at the material surface.

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快速冷却对牙科氧化锆残余应力和表面断裂韧性的影响
牙科用氧化锆的短时间烧结不仅提高了氧化锆修复体的生产效率,还实现了一次就诊即可完成修复治疗的理想状态。虽然许多研究已经阐明了短时间烧结过程中加热速率和停留时间对牙科氧化锆性能的影响,但关于快速冷却的研究却寥寥无几。在这项研究中,我们调查了冷却速度对牙科氧化锆的影响。结果发现,冷却速度对三点抗弯强度没有影响,但快速冷却会提高材料表面的断裂韧性。拉曼压电光谱仪显示,在氧化锆表面附近形成了压应力层,其厚度随着冷却速度的增加而增加。从上述结果可以得出结论,快速冷却在表面形成的压应力层提高了材料表面的表观断裂韧性。
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来源期刊
Journal of the Mechanical Behavior of Biomedical Materials
Journal of the Mechanical Behavior of Biomedical Materials 工程技术-材料科学:生物材料
CiteScore
7.20
自引率
7.70%
发文量
505
审稿时长
46 days
期刊介绍: The Journal of the Mechanical Behavior of Biomedical Materials is concerned with the mechanical deformation, damage and failure under applied forces, of biological material (at the tissue, cellular and molecular levels) and of biomaterials, i.e. those materials which are designed to mimic or replace biological materials. The primary focus of the journal is the synthesis of materials science, biology, and medical and dental science. Reports of fundamental scientific investigations are welcome, as are articles concerned with the practical application of materials in medical devices. Both experimental and theoretical work is of interest; theoretical papers will normally include comparison of predictions with experimental data, though we recognize that this may not always be appropriate. The journal also publishes technical notes concerned with emerging experimental or theoretical techniques, letters to the editor and, by invitation, review articles and papers describing existing techniques for the benefit of an interdisciplinary readership.
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