有机硅压印材料亲疏水性的物理性能。牙石的润湿、吸水、表面结构及牙石模具的尺寸变化[j]。

Aichi Gakuin Daigaku Shigakkai shi Pub Date : 1990-12-01
H Murakami, S Takehana, M Takenaka, T Abe
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引用次数: 0

摘要

为了比较硅酮压印材料的亲疏水性、润湿性和吸水性等物理性能,对石模具的表面结构和尺寸变化进行了研究。对一种亲水性加成型材料、五种疏水性加成型材料和一种缩合型硅酮压印材料进行润湿评价。一种具有亲疏水性的加成型硅酮压印材料被用于其他研究。通过测量水与印模材料之间的接触角来评估润湿性。通过浸入水中后压印材料重量的变化来评估吸水率。用扫描电镜观察牙石的表面结构。利用该部门设计的仪器测量了石料模具的尺寸变化。实验结果如下:1.实验结果表明:润湿性:具有亲水性的加入型印模材料接触角为51.4 +/- 1.3度,其他印模材料接触角为84.6 +/- 6.1 ~ 97.7 +/- 4.4度。2. 吸水率:亲水型的吸水量大于疏水型。3.牙石的表面结构:将Vermix石倒入浸水亲水性材料中,石晶体变大,而Fujirock则没有变化。4. 石模具上的尺寸变化:亲水性型和疏水性型无明显差异。5. 亲水性可能会轻微影响牙石的表面结构,但这在允许的临床限度内是可能的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[The physical properties of silicone impression materials with hydrophilicity and hydrophobicity. Wetting, water absorption, surface structure of dental stone and dimensional change on stone dies].

In order to compare the physical properties of the silicone impression materials with regard to their hydrophilicity and hydrophobicity, wetting and water absorption, the surface structure and dimensional changes of stone dies were investigated. The evaluation of wetting was performed on one kind of addition-type material with hydrophilicity, five kinds of addition-type materials with hydrophobicity and one kind of condensation-type silicone impression material. One kind of addition-type silicone impression material with hydrophilicity and hydrophobicity was used in other research. Wetting was assessed by measuring the contact angle between water and the impression materials. Water absorption was assessed by the change in weight of the impression materials after immersion in water. The surface structure of the dental stone was observed by SEM. The dimensional changes of stone dies were measured by means of an apparatus designed in this department. The results were as follows: 1. Wetting: The addition-type impression material with hydrophilicity had a 51.4 +/- 1.3 degree contact angle, and other impression materials varied from 84.6 +/- 6.1 degrees to 97.7 +/- 4.4 degrees. 2. Water absorption: The amount of water absorption of the hydrophilic type was greater than that of the hydrophobic type. 3. The surface structure of dental stone: In the case of Vermix stone, which was poured into water-immersed hydrophilic type material, the stone crystals became large, but Fujirock showed no change. 4. The dimensional change on stone dies: No difference was apparent between the hydrophilic type and the hydrophobicity type. 5. Hydrophilicity may affect the surface structure of the dental stone slightly but this is possible within the permissible clinical limits.

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