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冷却速率对牙科陶瓷中白榴石体积分数的影响。

Effect of cooling rate on leucite volume fraction in dental porcelains.

作者信息

Mackert J R, Evans A L

机构信息

Division of Dental Materials, School of Dentistry, Medical College of Georgia, Augusta 30912-1264.

出版信息

J Dent Res. 1991 Feb;70(2):137-9. doi: 10.1177/00220345910700020801.

Abstract

Prasad et al. (1988) have shown that slow cooling of dental porcelain produces increases in thermal expansion sufficient to make a compatible metal-porcelain system incompatible. The present study was undertaken to determine whether the increase in porcelain thermal expansion might be attributable to crystallization of additional leucite during slow cooling of the porcelain. Eight x-ray diffraction specimens for each of six commercial dental porcelains and for the Component No. 1 frit of the Weinstein and Weinstein (1962) and Weinstein et al. (1962) patents were fabricated and divided into two groups. Specimens in the first group (termed fast-cooled) were cooled in the conventional manner by removing them from the furnace at the maximum firing temperature immediately into room air. Specimens in the second group (termed slow-cooled) were cooled slowly by interrupting power to the furnace muffle and allowing them to cool inside the closed furnace. Quantitative x-ray diffraction was performed on the fast- and slow-cooled porcelain specimens with standards containing leucite volume fractions of 0.111, 0.223, 0.334, and 0.445. Unpaired, one-tailed t tests were performed on the fast- and slow-cool data, and a significant increase (p less than 0.05) in the amount of leucite (as a function of the slow cooling) was found for each of the porcelains. The increases in the leucite volume fractions resulting from the slow cooling ranged from a low of 8.5% to a high of 55.8%, with an average increase of 26.9%.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

普拉萨德等人(1988年)已表明,牙科烤瓷材料缓慢冷却会使热膨胀增加,足以使原本相容的金属 - 烤瓷系统变得不相容。本研究旨在确定烤瓷材料热膨胀的增加是否可能归因于烤瓷材料缓慢冷却过程中额外白榴石的结晶。制备了六种商用牙科烤瓷材料以及温斯坦和温斯坦(1962年)以及温斯坦等人(1962年)专利中的1号熔块的八个X射线衍射样本,并将其分为两组。第一组样本(称为快速冷却样本)以常规方式冷却,即在最高烧制温度下从炉中取出后立即放入室温空气中。第二组样本(称为缓慢冷却样本)通过切断炉衬的电源并让其在封闭的炉内缓慢冷却。对快速冷却和缓慢冷却的烤瓷样本进行了定量X射线衍射分析,使用了白榴石体积分数分别为0.111、0.223、0.334和0.445的标准样本。对快速冷却和缓慢冷却的数据进行了非配对单尾t检验,发现每种烤瓷材料的白榴石含量(作为缓慢冷却的函数)都有显著增加(p小于0.05)。缓慢冷却导致的白榴石体积分数增加范围从低8.5%到高55.8%,平均增加26.9%。(摘要截断于250字)

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