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粉液混合比例对牙科修复用玻璃离子水门汀性能的影响。

Influence of powder/liquid mixing ratio on the performance of a restorative glass-ionomer dental cement.

作者信息

Fleming Garry J P, Farooq Ahmed A, Barralet Jake E

机构信息

Biomaterials Unit, School of Dentistry, University of Birmingham, St. Chad's Queensway, Birmingham, B4 6NN, UK.

出版信息

Biomaterials. 2003 Oct;24(23):4173-9. doi: 10.1016/s0142-9612(03)00301-6.

Abstract

The influence of powder/liquid mixing regime on the performance of a hand-mixed restorative glass-ionomer cement (GIC) was evaluated in terms of compressive strength, working characteristics and the porosity distribution. Mean compressive fracture strengths, standard deviations and associated Weibull moduli (m) were determined from series of 20 cylindrical specimens (6mm height, 4mm diameter) prepared by hand-mixing the relative proportions of the powder and liquid constituents. Working characteristics were assessed using an oscillating rheometer whilst scanning electron microscopy and image analysis were used to investigate the influence of the mixing regime on pore distribution. For a constant volume of liquid (1ml) the mean compressive strength decreased from 102.1+/-23.1MPa for 7.4g of powder, to 93.8+/-22.9, 82.6+/-18.5 and 55.7+/-17.2MPa for 6.66, 5.94 and 3.7g of powder, respectively. A concomitant increase in both the working and setting times was also observed.GICs manipulated to a powder/liquid mixing consistency below the manufacturers' recommend ratio, for a constant volume of liquid, resulted in reduced porosity levels in the cement mass and extended working and setting times. Unfortunately, a reduction in the concentration of reinforcing glass particles in the set material below that specified by the manufacturers decreases the cements' load bearing capacity so that they fail at lower compressive stress levels in the posterior region of the mouth.

摘要

从抗压强度、工作特性和孔隙率分布方面评估了粉液混合方式对手工混合修复性玻璃离子水门汀(GIC)性能的影响。通过手工混合粉末和液体成分的相对比例制备了一系列20个圆柱形试样(高度6mm,直径4mm),测定了平均抗压断裂强度、标准差和相关的威布尔模量(m)。使用振荡流变仪评估工作特性,同时使用扫描电子显微镜和图像分析来研究混合方式对孔隙分布的影响。对于恒定体积的液体(1ml),粉末质量为7.4g时平均抗压强度为102.1±23.1MPa,粉末质量为6.66g、5.94g和3.7g时分别降至93.8±22.9MPa、82.6±18.5MPa和55.7±17.2MPa。还观察到工作时间和凝固时间同时增加。对于恒定体积的液体,将GICs的粉液混合稠度控制在制造商推荐比例以下,会降低水泥体中的孔隙率水平,并延长工作时间和凝固时间。不幸的是,固化材料中增强玻璃颗粒的浓度低于制造商规定的浓度会降低水泥的承载能力,以至于它们在口腔后部区域较低的压缩应力水平下就会失效。

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