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首页> 外文期刊>Journal of prosthodontics: official journal of the American College of Prosthodontists >Hardness, flexural strength, and flexural modulus comparisons of three differently cured denture base systems.
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Hardness, flexural strength, and flexural modulus comparisons of three differently cured denture base systems.

机译:三种不同固化义齿基托系统的硬度,挠曲强度和挠曲模量的比较。

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PURPOSE: This study compared the surface hardness, flexural strength, and flexural modulus of a light- and heat-cured urethane dimethacrylate (UDMA) to two conventional polymethyl methacrylate (PMMA) denture base resins. The effect of less-than-optimal processing condition on the hardness of internal and external surfaces of UDMA specimens was also investigated. MATERIALS AND METHODS: The materials tested were Eclipse (light- and heat-cured UDMA), Meliodent (heat-cured PMMA), and Probase Cold (auto-cured PMMA). Eclipse specimens were prepared by adapting the material onto the master cast and light curing in the processing unit for 10 minutes. Meliodent and Probase Cold specimens were prepared according to the manufacturers' instructions. Twenty rectangular specimens measuring 65 x 10 x 2.5 mm(3) were prepared for each material. They were stored in water at 37 degrees C for 30 days before testing. The surface hardness was measured using Vickers Hardness (VHN) test, and flexural strength and flexural modulus were measured using a 3-point bending test. Twenty-five additional Eclipse specimens were similarly prepared and were processed at various times of less than 20 minutes of curing. Vickers Hardness was determined on both the external and internal surfaces of specimens. Data were analyzed using a one-way ANOVA for comparisons of hardness, flexural strength, and flexural modulus between the three denture base materials and for hardness values of both the internal and external surface of Eclipse specimens with curing times. Post hoc analyses (Scheffe test) determined the difference between the groups. Student t-test was used for comparison of hardness between the external and internal surfaces of Eclipse specimens. RESULTS: The hardness (VHN) values were 19.4 +/- 0.7, 17.0 +/- 0.4, and 16.0 +/- 0.4; the flexural strengths (MPa) were 103 +/- 4, 78 +/- 3, and 63 +/- 4; and the flexural moduli (MPa) were 2498 +/- 143, 1969 +/- 55, and 1832 +/- 89 for Eclipse, Meliodent, and Probase Cold materials, respectively. A comparison among the three polymers showed there were significant differences in surface hardness, flexural strength, and flexural modulus (p < 0.05). No significant difference in surface hardness (VHN) between the internal (19.1 +/- 0.6 to 19.4 +/- 0.7) and external surfaces (18.9 +/- 0.4 to 19.2 +/- 0.6) of irradiated Eclipse specimens was observed at 10-, 12-, and 14-minute polymerization times. CONCLUSION: The surface hardness, flexural strength, and flexural modulus of light- and heat-cured UDMA (Eclipse) were significantly higher than the values obtained for heat-only cured (Meliodent) and auto-cured (Probase Cold) PMMA denture base systems.
机译:目的:本研究比较了光固化和热固化的氨基甲酸乙酯二甲基丙烯酸酯(UDMA)与两种常规的聚甲基丙烯酸甲酯(PMMA)义齿基托树脂的表面硬度,弯曲强度和弯曲模量。还研究了非最佳加工条件对UDMA样品内外表面硬度的影响。材料与方法:测试的材料为Eclipse(光固化和热固化的UDMA),Meliodent(热固化的PMMA)和Probase Cold(自动固化的PMMA)。通过将材料调整到母模上并在处理单元中进行10分钟的光固化来制备日蚀样品。 Meliodent和Probase冷样品根据制造商的说明进行制备。对于每种材料,准备了20个尺寸为65 x 10 x 2.5 mm(3)的矩形样本。在测试之前,将它们在37摄氏度的水中储存30天。使用维氏硬度(VHN)测试来测量表面硬度,并且使用三点弯曲测试来测量弯曲强度和弯曲模量。类似地制备了另外25个Eclipse标本,并在少于20分钟的固化时间进行了各种处理。维氏硬度是在样品的外表面和内表面上测定的。使用单向方差分析分析数据,以比较三种义齿基体材料之间的硬度,挠曲强度和挠曲模量,以及Eclipse样品内外表面随固化时间的硬度值。事后分析(Scheffe检验)确定了两组之间的差异。学生t检验用于比较Eclipse标本的内外表面之间的硬度。结果:硬度(VHN)值为19.4 +/- 0.7、17.0 +/- 0.4和16.0 +/- 0.4。弯曲强度(MPa)为103 +/- 4、78 +/- 3和63 +/- 4。对于Eclipse,Meliodent和Probase Cold材料,弯曲模量(MPa)分别为2498 +/- 143、1969 +/- 55和1832 +/- 89。三种聚合物之间的比较表明,表面硬度,弯曲强度和弯曲模量存在显着差异(p <0.05)。在10- ,12分钟和14分钟的聚合时间。结论:光固化和热固化的UDMA(Eclipse)的表面硬度,抗弯强度和弯曲模量明显高于仅热固化(Meliodent)和自动固化(Probase Cold)PMMA义齿基托系统获得的值。

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