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Mechanical properties of commercial high strength ceramic core materials

机译:商业高强度陶瓷芯材料的机械性能

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Objective. The objective of the present study is to evaluate and compare the flexural strength, dynamic elastic moduli and true hardness (H_o) values of commercial Vita In-Ceram~(~R) alumina core and Vita In-Ceram~(~R) matrix glass with the standard aluminous porcelain (Hi-Ceram~(~R) and Vitadur~(~R)), Vitadur N~(~R) and Dicor~(~R) glass and glass-ceramic. Methods. The flexural strength was evaluated (n = 5) using 3-point loading and a servo hydraulic Instron testing machine at a cross head speed of 0.5 mm/min. The density of the specimens (n = 3) was measured by means of the water displacement technique. Dynamic Young's shear and bulk moduli and Poisson's ratio (n = 3) were measured using a non-destructive ultrasonic technique using 10 MHz lithium niobate crystals. The true hardness (n = 3) was measured using a Knoop indenter and the fracture toughness (n = 3) was determined using a Vickers indenter and a Tukon hardness tester. Statistical analysis of the data was conducted using ANOVA and a Student-Newman-Keuls (SNK) rank order multiple comparative test. Results. The SNK rank order test analysis of the mean flexural strength was able to separate five commercial core materials into three significant groups at p = 0.05, Vita In-Ceram~(~R) alumina and IPS Empress~(~R) 2 exhibited significantly higher flexural strength than aluminous porcelains and IPS Empress~(~R) at p = 0.05. The dynamic elastic moduli and true hardness of Vita In-Ceram~(~R) alumina core were significantly higher than the rest of the commercial ceramic core materials at p = 0.05. Significance. The ultrasonic test method is a valuable mechanical characterization tool and was able to statistically discriminate between the chemical and structural differences within dental ceramic materials. Significant correlation was obtained between the dynamic Young's modulus and true hardness, p = 0.05.
机译:目的。本研究的目的是评估和比较商用Vita In-Ceram〜(〜R)氧化铝芯和Vita In-Ceram〜(〜R)基体玻璃的抗弯强度,动态弹性模量和真实硬度(H_o)值使用标准的铝质瓷器(Hi-Ceram〜(〜R)和Vitadur〜(〜R)),Vitadur N〜(〜R)和Dicor〜(〜R)玻璃和玻璃陶瓷。方法。使用三点加载和伺服液压Instron测试机以十字头速度0.5 mm / min评估抗弯强度(n = 5)。样品的密度(n = 3)通过水置换技术测量。使用10 MHz铌酸锂晶体的无损超声技术测量了动态杨氏剪切模量和体积模量以及泊松比(n = 3)。使用努氏压头测量真实硬度(n = 3),使用维氏压头和Tukon硬度测试仪确定断裂韧性(n = 3)。使用ANOVA和Student-Newman-Keuls(SNK)等级顺序多重比较测试对数据进行统计分析。结果。对平均弯曲强度的SNK秩次检验分析能够将五种商品芯材分为p = 0.05的三个重要组,Vita In-Ceram〜(〜R)氧化铝和IPS Empress〜(〜R)2表现出更高的抗弯强度。比铝质瓷器和IPS Empress〜(〜R)的抗弯强度在p = 0.05时。在p = 0.05时,Vita In-Ceram〜(〜R)氧化铝芯的动态弹性模量和真实硬度显着高于其他商用陶瓷芯材料。意义。超声波测试方法是一种有价值的机械表征工具,能够从统计学上区分牙科陶瓷材料内的化学和结构差异。动态杨氏模量与真实硬度之间存在显着相关性,p = 0.05。

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