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The Effect of Incorporating Lithium Fluoride on the Compressive Strength and Diametric Tensile Strength of Glass Ionomer Cement

机译:将氟化锂掺入玻璃离聚物水泥抗压强度和直径拉伸强度的效果

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Experimental glass ionomer cement was prepared for the purpose of this study. Twenty disk specimens (16mm diameter X 10mm height) of test-GIC were prepared for the diametral tensile strength (DTS) test and twenty cylindrical specimens (6 mm diameter X 16mm height) were prepared for the compressive strength (CS) test. Specimens were stored in an artificial saliva at 37 deg C and (50+-10percent) of relative humidity in an incubator until testing. Five specimens of each GIC were submitted to CS and DTS test in each period, namely 1 hour, 24 hours, 7 days and 28 days. The specimens were tested in a Universal Testing Machine (Instron 1122, Instron corp., High Wycombe, U.K.) at a crosshead speed of 1.0mm/min for CS and 0.5mm/min for the DTS test until failure occurred. The results have revealed that incorporation of lithium fluoride in the formula of the test GIC might impart an increase in the mechanical properties of the GICs
机译:实验玻璃离聚物水泥用于本研究的目的。为直径拉伸强度(DTS)测试制备二十个磁盘样品(16mm直径×10mm高度),为抗压强度(CS)试验制备20个圆柱形试样(6mm直径×16mm高度)。将标本在37℃和(50 + -10%)的培养箱中的相对湿度的37℃和(50 + -10%)中储存在试验中。每个GIC的五个标本在每个时期提交给Cs和DTS测试,即1小时,24小时,7天和28天。在通用测试机器(Instron 1122,Instron 1122,Instron Corp.Cl.)中测试标本,在1.0mm / min的十字头速度下,对于DTS测试,0.5mm / min的十字头速度,直到发生故障。结果表明,在试验GIC的式中掺入氟化锂可能促进了GIC的机械性能的增加

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