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加工诱导颗粒取向对多相牙科陶瓷断裂韧性和断裂行为的影响。

Effect of processing induced particle alignment on the fracture toughness and fracture behavior of multiphase dental ceramics.

作者信息

Gonzaga Carla C, Okada Cristina Yuri, Cesar Paulo F, Miranda Walter G, Yoshimura Humberto N

机构信息

Department of Dental Materials, School of Dentistry, University of São Paulo, São Paulo, Brazil.

出版信息

Dent Mater. 2009 Nov;25(11):1293-301. doi: 10.1016/j.dental.2009.03.013. Epub 2009 Jun 30.

Abstract

OBJECTIVE

To investigate the processing induced particle alignment on fracture behavior of four multiphase dental ceramics (one porcelain, two glass-ceramics and a glass-infiltrated-alumina composite).

METHODS

Disks (Ø12 mm x 1.1mm-thick) and bars (3 mm x 4 mm x 20 mm) of each material were processed according to manufacturer instructions, machined and polished. Fracture toughness (K(Ic)) was determined by the indentation strength method using 3-point bending and biaxial flexure fixtures for the fracture of bars and disks, respectively. Microstructural and fractographic analyses were performed with scanning electron microscopy, energy dispersive spectroscopy and X-ray diffraction.

RESULTS

The isotropic microstructure of the porcelain and the leucite-based glass-ceramic resulted in similar fracture toughness values regardless of the specimen geometry. On the other hand, materials containing second-phase particles with high aspect ratio (lithium disilicate glass-ceramic and glass-infiltrated-alumina composite) showed lower fracture toughness for disk specimens compared to bars. For the lithium disilicate glass-ceramic disks, it was demonstrated that the occurrence of particle alignment during the heat-pressing procedure resulted in an unfavorable pattern that created weak microstructural paths during the biaxial test. For the glass-infiltrated-alumina composite, the microstructural analysis showed that the large alumina platelets tended to align their large surfaces perpendicularly to the direction of particle deposition during slip casting of green preforms.

SIGNIFICANCE

The fracture toughness of dental ceramics with anisotropic microstructure should be determined by means of biaxial testing, since it results in lower values.

摘要

目的

研究加工过程中诱导的颗粒排列对四种多相牙科陶瓷(一种烤瓷、两种微晶玻璃和一种玻璃渗透氧化铝复合材料)断裂行为的影响。

方法

按照制造商说明对每种材料的圆盘(直径12毫米×厚1.1毫米)和棒材(3毫米×4毫米×20毫米)进行加工、机械加工和抛光。分别使用三点弯曲和双轴弯曲夹具对棒材和圆盘进行断裂试验,通过压痕强度法测定断裂韧性(K(Ic))。使用扫描电子显微镜、能量色散光谱和X射线衍射进行微观结构和断口分析。

结果

烤瓷和白榴石基微晶玻璃的各向同性微观结构导致无论试样几何形状如何,其断裂韧性值相似。另一方面,含有高长径比第二相颗粒的材料(二硅酸锂微晶玻璃和玻璃渗透氧化铝复合材料)的圆盘试样与棒材相比,断裂韧性较低。对于二硅酸锂微晶玻璃圆盘,已证明在热压过程中颗粒排列的出现导致了一种不利的模式,在双轴试验中产生了薄弱的微观结构路径。对于玻璃渗透氧化铝复合材料,微观结构分析表明,在生坯注浆过程中,大的氧化铝薄片倾向于使其大表面垂直于颗粒沉积方向排列。

意义

具有各向异性微观结构的牙科陶瓷的断裂韧性应通过双轴试验来确定,因为双轴试验会得出较低的值。

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