
doi: 10.4012/dmj.23.230
pmid: 15287573
A simultaneous differential thermal analysis and thermogravimetry method previously established was used to estimate the composition of gypsum-bonded investment marketed for the quick casting technique. Three commercial investments of this type were heated to 700 degrees C at 10 degrees C/min and the hemihydrate content was estimated by the mass decrease reached at 300 degrees C after subtracting the mass decrease at 100 degrees C as moisture content. The hemihydrate contents were between 25% and 30%, which appears to be the range also chosen for the conventional gypsum-bonded investment of cristobalite type over 70 years by the industry. However, the new type of investment contained both cristobalite and quartz. The small sample size is a disadvantage of the present method but this can be overcome by more frequent use of the method by investigators.
Dental Casting Technique, Differential Thermal Analysis, Hot Temperature, Time Factors, Water, Quartz, Silicon Dioxide, Calcium Sulfate, Thermogravimetry, Dental Casting Investment
Dental Casting Technique, Differential Thermal Analysis, Hot Temperature, Time Factors, Water, Quartz, Silicon Dioxide, Calcium Sulfate, Thermogravimetry, Dental Casting Investment
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