Yap Adrian U J, Yap S H, Teo Jason C K, Tay C M, Ng K L, Thean Hilary P Y
Department of Restorative Dentistry, Faculty of Dentistry, National University of Singapore, Singapore.
Oper Dent. 2003 Mar-Apr;28(2):193-9.
High-strength dental stone is widely used to produce dies for the fabrication of restorations with the lost-wax technique. It is normal to wait at least 24 hours for casts to dry and gain sufficient strength prior to initiating laboratory procedures. This waiting time may be greatly reduced by using microwave drying. This study determined the optimum microwave energy density for preserving working die accuracy of a Type IV high-strength dental stone (Silky Rock; Whipmix). Cylindrical die specimens were fabricated according to manufacturer's instructions and allowed to set for one hour. The specimens were subsequently treated as follows: Group I (Control group)--air dried; Group II--microwaved at 700W for 40 seconds; Group III--microwaved at 490W for 60 seconds. The percentage weight loss of cylindrical specimens (n = 6) and the percentage dimensional change (n = 7) of die specimens in three axes (x, y and z) were determined at 30 minutes, 1 hour and 24 hours after air drying/microwaving. Weight loss was measured using an electronic digital balance, while dimensional changes were assessed using image analysis software. Data was subject to ANOVA/Scheffe's tests at significance level 0.05. No significant difference in percentage weight loss was observed between air drying for 24 hours and microwaved specimens at all time intervals. Although no significant difference in percentage dimensional changes was observed between specimens microwaved at 490W for 60 seconds and specimens air dried for 24 hours, significant changes in x, y and z dimensions were observed after microwaving at 700W for 40 seconds at various time intervals. Microwave radiation at 490W for 60 seconds is recommended for drying Type IV high-strength dental stone. Further investigations are required to determine changes in physical properties associated with the aforementioned microwave power density.
高强度牙科石膏被广泛用于通过失蜡技术制作修复体的铸模。在开始实验室操作之前,通常要等待至少24小时让铸模干燥并获得足够的强度。使用微波干燥可以大大缩短这个等待时间。本研究确定了用于保持IV型高强度牙科石膏(Silky Rock;Whipmix)工作铸模精度的最佳微波能量密度。按照制造商的说明制作圆柱形铸模标本,并让其凝固1小时。随后对标本进行如下处理:第一组(对照组)——空气干燥;第二组——以700W微波处理40秒;第三组——以490W微波处理60秒。在空气干燥/微波处理后30分钟、1小时和24小时,测定圆柱形标本(n = 6)的重量损失百分比以及铸模标本在三个轴(x、y和z)上的尺寸变化百分比。使用电子数字天平测量重量损失,同时使用图像分析软件评估尺寸变化。数据在显著性水平0.05下进行方差分析/谢费检验。在所有时间间隔内,空气干燥24小时和微波处理的标本之间在重量损失百分比方面未观察到显著差异。虽然以490W微波处理60秒的标本和空气干燥24小时的标本在尺寸变化百分比方面未观察到显著差异,但在不同时间间隔以700W微波处理40秒后,在x、y和z尺寸上观察到了显著变化。建议以490W微波辐射60秒来干燥IV型高强度牙科石膏。需要进一步研究以确定与上述微波功率密度相关的物理性能变化。