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水对树脂改性玻璃离子水门汀物理性能的影响。

Effect of water on the physical properties of resin-modified glass ionomer cements.

作者信息

Cattani-Lorente M A, Dupuis V, Payan J, Moya F, Meyer J M

机构信息

Laboratory of Dental Materials, School of Dentistry, Geneva, Switzerland.

出版信息

Dent Mater. 1999 Jan;15(1):71-8. doi: 10.1016/s0109-5641(99)00016-0.

Abstract

OBJECTIVES

Resin-modified glass ionomer cements (GIC) are available for clinical use as restorative materials or as liners and bases. This work was conducted to study the effect of water sorption on the physical properties of several resin-modified GIC, by changing the samples' storage conditions.

METHODS

The water sorption, the flexural strength, the flexural elastic modulus, the Vickers hardness and the dimensional changes of five resin-modified GICs were measured using specimens aged for 24 h to 3 mon. The specimens were stored at 37 degrees C, either in a dry environment (A), immersed in water (B), stored in a humid environment (C), stored in a humid environment for 1 h and then immersed in water (D), or immersed in water and subsequently dried (B + A). An analysis of variance was used to compare the results.

RESULTS

The resin-modified GIC absorb during the first 24 h large amounts of water (114-172 mg/cm3) compared to the conventional GIC (30-63 mg/cm3). Water alters the physical properties of resin-modified GICs: With regard to dry specimens, a decrease in the flexural strength of 20 to 80% was observed for samples immersed in water. Decreases in their flexural elastic modulus (50 to 80%) and in their hardness (approximately 50%) were also observed. Water sorption also provoked an expansion in volume of the immersed specimens, ranging from 3.4 to 11.3% after 24 h.

SIGNIFICANCE

The flexural strength and Vickers hardness of the resin-modified GICs are sensitive to the water contained in the tested specimens. A correlation was established between the decrease in their physical properties and the water uptake. However, it should not be concluded that these materials are not adequate for use in applications in direct contact with oral fluids. Probably, resin-modified GIC placed in oral cavities would not be affected to the same extent as in in vitro tests. In an oral environment, the constituents of saliva will certainly decrease the rate of water sorption and will hence delay its effects.

摘要

目的

树脂改性玻璃离子水门汀(GIC)可作为修复材料或衬层和基底用于临床。本研究旨在通过改变样品的储存条件,研究吸水率对几种树脂改性GIC物理性能的影响。

方法

使用老化24小时至3个月的试样,测量了五种树脂改性GIC的吸水率、弯曲强度、弯曲弹性模量、维氏硬度和尺寸变化。试样在37℃下储存,分别处于干燥环境(A)、浸泡在水中(B)、储存在潮湿环境(C)、在潮湿环境中储存1小时然后浸泡在水中(D)或浸泡在水中然后干燥(B+A)。采用方差分析比较结果。

结果

与传统GIC(30 - 63mg/cm³)相比,树脂改性GIC在最初24小时内吸收大量水分(114 - 172mg/cm³)。水会改变树脂改性GIC的物理性能:对于干燥试样,浸泡在水中的样品弯曲强度降低了20%至80%。还观察到其弯曲弹性模量降低(50%至80%)和硬度降低(约50%)。吸水率还导致浸泡试样体积膨胀,24小时后膨胀范围为3.4%至11.3%。

意义

树脂改性GIC的弯曲强度和维氏硬度对测试试样中的水分敏感。其物理性能的降低与吸水量之间建立了相关性。然而,不应得出这些材料不适用于与口腔液体直接接触的应用的结论。可能,放置在口腔中的树脂改性GIC不会受到与体外测试相同程度的影响。在口腔环境中,唾液成分肯定会降低吸水率,从而延迟其影响。

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