[弹性压印材料的流变性能]。

Aichi Gakuin Daigaku Shigakkai shi Pub Date : 1990-12-01
M Kikuchi
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引用次数: 0

摘要

弹性体印模材料的流变特性很重要,因为它们是处理特性和适应口腔软硬组织的主要决定因素。特别令人感兴趣的是由制造商提供的弹性体印模材料的流变性,因为这强烈地影响了两种糊状物混合和放置的难易程度。此外,混合压印材料的流动特性也很重要,因为这些特性将对受工作时间影响的表面细节的准确性和再现产生重要影响。一般来说,流变性能可以定义为研究黏性材料的流动特性,如弹性体压印材料。在牙科中使用的印模材料中,这些流动特性在短时间间隔内的变化对于制作临床可接受的印模非常重要。这些研究的目的是测量未混合弹性体印模材料的各种流变特性,并将这些信息与临床牙科手术联系起来。本研究使用的弹性体印模材料为临床常用的聚硫化物、缩聚固化硅橡胶、加成固化硅橡胶,以及在每个印模膏的主要组成部分(硫醇LP2、氯石蜡、硅酮或乙烯基硅酮)中添加添加量递增的填料(SiO2、TiO2或PbO2)的标本。用石田- giken锥板高剪切流变仪测定了这些材料的粘度。在23℃条件下,记录了剪切速率为5 s-1时剪应力随时间的变化,并在0 s-1 ~ 20 s-1剪切速率范围内完成了剪切速率与剪应力的关系。根据剪切应力-时间曲线和剪切应力-剪切速率曲线确定了黏性特性,包括流动特性、表观黏度、屈服值和滞回线面积。本文对弹性体压痕材料膏体的研究结果表明:1。所有印象膏体均表现出非牛顿黏度特性,表观黏度随剪切速率的增加而减小。2. Surflex F基膏(聚硫橡胶)、Flexicone注射型基膏(冷凝固化硅橡胶)和Exaflex注射型基膏(添加固化硅橡胶)具有假塑性行为,其他压印型基膏几乎具有触变性行为。3.所有的压印膏都有屈服值,特别是Surflex F加速膏的屈服值明显高于压印膏。(摘要删节为400字)
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Rheological properties of elastomeric impression materials].

The rheological properties of elastomeric impression materials are important because they are major determinants in the handling characteristics and adaptation to the soft and hard tissues of the mouth. Of particular interest is the rheology of the elastomeric impression materials as supplied by the manufacture since this strongly influences the ease with which the two pastes can be mixed and placed. Additionally, the flow characteristics of the mixed impression materials are also important as these will have an important bearing on the accuracy and reproduction of surface detail which are influenced by the working time. Generally, rheological properties can be defined as the study of the flow characteristics of viscos materials such as elastomeric impression materials. In the context of impression materials used in dentistry the variation of these flow characteristics over short time intervals is extremely important in the making of clinically acceptable impressions. The purpose of these studies were to measure a variety of rheological characteristic for the unmixed elastomeric impression materials and to relate this information to clinical dental procedures. The elastomeric impression materials used in this study were polysulfides, condensation cured silicone, addition cured silicone rubbers in common clinical use and specimens of adding increasing increments of filler (SiO2, TiO2 or PbO2) to a main constituent part (Thiokol LP2, Chloridparaffin, Silicone or Vinylsilicone) of each impression paste. The viscosity of these materials were measured by using the Ishida-Giken cone and plate high shear rheometer. The changes in shear stress with time were recorded for a shear rate of 5 s-1 at 23 degrees C. The relation of shear rate to shear stress were accomplished with a range of shear rates from 0 s-1 to 20 s-1. The viscosity behavior which were the flow characteristic, apparent viscosity, the yield value and the areas of hysterisis loop, were determined from both the shear stress-time and the shear stress-shear rate curves. The results of this study of elastomer impression material pastes have shown that: 1. All impression pastes exhibited non-Newtonian viscosity characteristic, apparent viscosity decreasing with increasing shear rate. 2. Surflex F base pastes (polysulfide rubber), Flexicone injection type base paste (condensation-cured silicone rubber) and Exaflex injection type base paste (addition cured silicone rubber) were pseudoplastic behavior, and other impression pastes were virtually thixotropic behavior. 3. All impression paste had yield value, especially Surflex F accelerator pastes which had a markedly higher yield value.(ABSTRACT TRUNCATED AT 400 WORDS)

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