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The influence of environmental conditions on the material properties of setting glass-ionomer cements

机译:环境条件对固化玻璃离聚物水泥材料性能的影响

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Objectiues. Aim of this study was to investigate the influence of temperature on the setting time and compressive strength of two conventional glass-ionomer cements (GIC's) and to determine the influence of storage medium, oil or water and storage time. Materials and methods. Two conventional GIC's, Ketac Molar (3 M-ESPE Dental Products, Seefeld, Germany) and Fuji IX Fast (GC Corp., Tokyo, Japan) were used to perform flow property tests and compression tests. Flow property measurements were performed using a displacement rheometer at six different temperatures. From the results of the rheometer tests, the working times and setting times could be determined. The samples for the compressive tests were stored at four different temperatures and in two different media. Testing took place at five time intervals reaching from 1 h to 3 months. Results. The results of rheometer tests showed that a temperature increase speeded up the setting reaction significantly. The compressive strength results showed a jump in time as a result of the higher curing temperature but no long-term strength effect was observed. Materials curing in oil reached a significantly higher compressive strength compared to storage in water and Fuji IX Fast is significantly stronger than Ketac Molar. Significance. It was concluded that a temperature between 333 and 343 K almost sets conventional GIC's on command and improves the early compressive strength.
机译:对象。这项研究的目的是研究温度对两种传统的玻璃离聚物水泥(GIC)的凝固时间和抗压强度的影响,并确定存储介质,油或水以及存储时间的影响。材料和方法。使用了两个常规的GIC,即Ketac Molar(3 M-ESPE牙科产品,德国Seefeld)和Fuji IX Fast(GC Corp.,日本东京)来进行流动性能测试和压缩测试。使用位移流变仪在六个不同温度下进行流动性能测量。根据流变仪测试的结果,可以确定工作时间和凝结时间。用于抗压测试的样品分别在四个不同的温度和两种不同的介质中存储。测试从1小时到3个月,每5个时间间隔进行一次。结果。流变仪测试的结果表明,温度升高明显加快了固化反应。抗压强度结果显示,由于较高的固化温度,时间在跳跃,但未观察到长期强度影响。与在水中储存相比,在油中固化的材料具有明显更高的抗压强度,Fuji IX Fast比Ketac Molar强得多。意义。结论是,在333至343 K之间的温度几乎可以控制常规GIC,并提高了早期抗压强度。

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