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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Influence of Hot Pressing on the Microstructure and Fracture Toughness of Two Pressable Dental Glass-Ceramics
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Influence of Hot Pressing on the Microstructure and Fracture Toughness of Two Pressable Dental Glass-Ceramics

机译:热压对两种可压型牙科玻璃陶瓷微结构和断裂韧性的影响

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Empress 1 and Empress 2 are well-known pressable all-ceramic dental materials that have generated substantial interest for many clinicians and patients. These two materials are reputed to benefit from heat pressing during the laboratory fabrication procedures, leading to better crystal distribution within a glass matrix, and hence an improved strength. The present study aimed to evaluate the effect of heat pressing on fracture toughness, microstructural features, and porosity. Results showed that Empress 1 had similar fracture toughness values before the pressing procedure, after it, and after the repressing procedure. The microstructural features were also similar among these specimens, but a more uniform distribution of leucite crystals was observed following the pressing and repressing procedures. Empress 2 demonstrated two different fracture toughness values. This was associated with the alignment of lithium disilicate crystals that occurred after the pressing and repressing procedures, which led to different indentation induced crack lengths, depending upon whether cracks propagated parallel to or perpendicular to the aligned crystals, the former having lower toughness than those that propagated in the perpendicular direction. Porosity, in terms of both the size and number of pores, was found to decrease after the pressing and repressing procedures for both materials. Repressing resulted in significant growth of the lithium disilicate crystals in Empress 2, but there was no change for the leucite crystals in Empress 1. The change in the lithium disilicate crystals' size did not have a noticeable effect on the fracture toughness of Empress 2. It was concluded that heat pressing did not significantly affect the fracture toughness of Empress 1, but resulted in two different values for Empress 2. It also decreased the size and number of pores for both materials, which could contribute to the strength improvement found after heat pressing, which has been reported in previous Studies.
机译:Empress 1和Empress 2是众所周知的可压制全陶瓷牙科材料,已引起许多临床医生和患者的极大兴趣。据说这两种材料在实验室制造过程中会从热压中受益,从而使玻璃基质中的晶体分布更好,从而提高强度。本研究旨在评估热压对断裂韧性,微观结构特征和孔隙率的影响。结果表明,Empress 1在压制步骤之前,之后和在压制步骤之后具有相似的断裂韧性值。这些样品的微观结构特征也相似,但是在压制和压制步骤之后,观察到白晶晶体的分布更加均匀。 Empress 2表现出两个不同的断裂韧性值。这与在压制和压制过程之后发生的二硅酸锂晶体的取向有关,这导致不同的压痕诱导裂纹长度,取决于裂纹是平行于还是垂直于取向晶体传播,前者的韧性低于那些沿垂直方向传播。在两种材料的压制和压制步骤之后,就孔隙的大小和数量而言,发现孔隙率均降低。压制导致Empress 2中二硅酸锂晶体的显着增长,但Empress 1中的白榴石晶体没有变化。二硅酸锂晶体尺寸的变化对Empress 2的断裂韧性没有明显影响。结论是,热压并没有显着影响Empress 1的断裂韧性,但是导致Empress 2的两个不同值。它还减小了两种材料的孔的大小和数量,这可能有助于加热后的强度提高。紧迫,这在先前的研究中已有报道。

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