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研究水胶比(水与水泥的质量比)对水硬性水泥性能的影响。

Investigation of the effect of the water to powder ratio on hydraulic cement properties.

机构信息

School of Dentistry, Institute of Clinical Sciences, College of Medical and Dental Sciences, University of Birmingham, Birmingham, United Kingdom.

School of Pharmacy, Institute of Clinical Sciences, College of Medical and Dental Sciences, University of Birmingham, Birmingham, United Kingdom.

出版信息

Dent Mater. 2019 Aug;35(8):1146-1154. doi: 10.1016/j.dental.2019.05.011. Epub 2019 May 29.

Abstract

OBJECTIVE

The use of rheological properties to determine the optimal water: powder ratio of tricalcium silicate-based prototype materials incorporating alternative radiopacifiers and fillers. Determination of how the proportion of water incorporated affected the physicochemical behaviour of the materials.

METHODS

Endodontic cements replaced with 30% radiopacifier, and additions of calcium phosphate and micro-silica were tested. The unmodified cements were mixed with a 0.35 water: powder ratio which served as control. At this water: powder ratio, unmodified Portland cement without any addition had an adequate consistency and furthermore it has been well characterized. Assessment of material rheological properties enabled adjustment of the water: powder ratio in each material to provide comparable viscosity values to those of the pure cement. The flowability, phase analysis and calcium release were measured for both viscosity-matched and the standard 0.35 water: powder ratio blends. The prototype materials with the adjusted water: powder ratios were also characterized by scanning electron microscopy, energy-dispersive spectroscopy and evaluated for radio-opacity.

RESULTS

The use of the 0.35 water: powder ratio is not appropriate when changing the radiopacifier and incorporating additives. Zirconium oxide did not vary the water: powder ratio but tantalum oxide and calcium tungstate resulted in an increase and decrease in water demand respectively. Using the standard 0.35 ratio when the mixture had a low water demand resulted in higher flowability values and calcium release in solution. Micro-silica and calcium phosphate altered the hydration of the materials. All materials were adequately radiopaque.

SIGNIFICANCE

Rheological assessment is an easy reproducible way to determine the water: powder ratios of materials with varying amounts of additives and radiopacifiers during development. Modifications to the water: powder ratio affects material properties.

摘要

目的

利用流变性来确定掺入替代显影剂和填料的硅酸三钙基原型材料的最佳水:粉比。确定掺入的水量比例如何影响材料的物理化学性能。

方法

用 30%显影剂替代牙根管水泥,并添加磷酸钙和微硅石进行测试。未改性的水泥与 0.35 的水:粉比混合作为对照。在这个水:粉比下,未添加任何添加剂的普通波特兰水泥具有足够的稠度,并且已经得到了很好的表征。评估材料的流变性特性,可调整每种材料的水:粉比,以提供与纯水泥相当的粘度值。对粘度匹配和标准 0.35 水:粉比混合材料进行了流动性、相分析和钙释放的测量。还通过扫描电子显微镜、能谱分析对调整水:粉比的原型材料进行了表征,并评估了其显影性。

结果

当改变显影剂并掺入添加剂时,使用 0.35 的水:粉比是不合适的。氧化锆不会改变水:粉比,但氧化钽和钨酸钙则分别增加和减少了对水的需求。当混合物需水量低时,使用标准的 0.35 比例会导致更高的流动性值和溶液中的钙释放。微硅石和磷酸钙改变了材料的水化作用。所有材料均具有足够的显影性。

意义

流变学评估是在开发过程中确定具有不同添加剂和显影剂含量的材料的水:粉比的一种简单、可重复的方法。水:粉比的修改会影响材料的性能。

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