Grain size, crystalline phase and fracture toughness of the monolithic zirconia.

IF 2.7 3区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE Journal of Advanced Prosthodontics Pub Date : 2022-10-01 Epub Date: 2022-10-28 DOI:10.4047/jap.2022.14.5.285
Kodchakorn Bocam, Chuchai Anunmana, Trinuch Eiampongpaiboon
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引用次数: 2

Abstract

Purpose: This study evaluated the relationship among translucency, crystalline phase, grain size, and fracture toughness of zirconia.

Materials and methods: Four commercial zirconia - Prettau®Anterior® (PA), Prettau® (P), InCorisZI (ZI), and InCorisTZI (TZI)- were selected for this study. The bar specimens were prepared to determine fracture toughness by using chevron notched beam method with four-point bending test. The grain size was evaluated by a mean linear intercept method using a scanning electron microscope. X-ray diffraction and Rietveld refinement were performed to evaluate the amount of tetragonal and cubic phases of zirconia. Contrast ratio (CR) was measured to investigate the level of translucency.

Results: PA had the lowest fracture toughness among other groups (P < .05). In addition, the mean fracture toughness of P was significantly less than that of ZI, but there was no difference compared with TZI. Regarding grain size measurement, PA had the largest average grain size among the groups. P obtained larger grain size than ZI and TZI (P < .05). However, there was no significant difference between ZI and TZI. Moreover, PA had the lowest CR value compared with the other groups (P < .05). This means PA was the most translucent material in this study. Rietveld refinement found that PA presented the greatest percentage of cubic phase, followed by TZI, ZI, and P, respectively.

Conclusion: The different approaches are used by manufacturers to fabricate various types of translucent zirconia with different levels of translucency and mechanical properties, which should be concerned for material selection for successful clinical outcome.

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整体氧化锆的晶粒尺寸、晶相及断裂韧性。
目的:研究氧化锆的透明度、晶相、晶粒尺寸与断裂韧性之间的关系。材料和方法:本研究选用四种商用氧化锆:Prettau®Anterior®(PA)、Prettau®(P)、InCorisZI (ZI)和InCorisTZI (TZI)。采用字形缺口梁法,结合四点弯曲试验,制备棒材试样进行断裂韧性测定。用扫描电子显微镜用平均线性截距法测定晶粒尺寸。采用x射线衍射和Rietveld细化法对氧化锆的四方相和立方相的数量进行了评价。测量对比度(CR)以研究半透明程度。结果:PA组的断裂韧性最低(P < 0.05)。此外,P的平均断裂韧性明显小于ZI,但与TZI比较无差异。在粒径测量方面,PA的平均粒径在各组中最大。P比ZI和TZI获得更大的颗粒尺寸(P < 0.05)。然而,ZI和TZI之间没有显著差异。与其他组相比,PA组CR值最低(P < 0.05)。这意味着PA是本研究中最透明的材料。Rietveld细化发现,PA的立方相比例最大,其次是TZI、ZI和P。结论:生产厂家采用不同的方法制备出不同类型的半透明氧化锆,具有不同的透光程度和力学性能,在材料选择上应予以重视,以获得临床成功。
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来源期刊
Journal of Advanced Prosthodontics
Journal of Advanced Prosthodontics DENTISTRY, ORAL SURGERY & MEDICINE-
CiteScore
4.70
自引率
3.80%
发文量
25
期刊介绍: This journal aims to convey scientific and clinical progress in the field of prosthodontics and its related areas to many dental communities concerned with esthetic and functional restorations, occlusion, implants, prostheses, and biomaterials related to prosthodontics. This journal publishes • Original research data of high scientific merit in the field of diagnosis, function, esthetics and stomatognathic physiology related to prosthodontic rehabilitation, physiology and mechanics of occlusion, mechanical and biologic aspects of prosthodontic materials including dental implants. • Review articles by experts on controversies and new developments in prosthodontics. • Case reports if they provide or document new fundamental knowledge.
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