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Rheological properties of polyvinylsiloxane impression materials before mixing and during setting related to handling characteristics

机译:聚乙烯硅氧烷印模材料在混合前和固化过程中的流变特性与处理特性有关

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The purpose of this study is to determine and compare the handling and rheological properties of polyvinylsiloxane impression pastes before mixing and during setting, and to investigate the effect of its constituents on the properties of the materials. Five polyvinylsiloxane impression materials (Examixfine, Extrude, Honigum, Imprint II, and Express) were used. A flow test and a drip test were performed to determine the handling characteristics. The rheological properties of each impression material prior to mixing (shear stress, viscosity) and during setting (storage modulus G′), loss modulus G″), loss tangent tanδ) were measured with a stress-controlled rheometer at 25°C and 32°C, respectively. Inorganic filler content of each impression material was measured and observed with a SEM. The molecular weight distribution of polymer matrix was determined with a gel permeation chromatography (GPC). Express and Honigum display lower flow compared to the other materials, due to their high yield-stress values. Examixfine exhibits the greatest flow. All materials display pseudoplastic behavior, excluding the Examixfine catalyst. The viscosities at low shear rate are greatest for Express and Honigum; however, under high shear conditions, the viscosities of Extrude and Honigum are the lowest. Following mixing, each material show an increase in G′, finally reaching a plateau, and the tanδ rapidly decreases with time. Imprint II shows the highest final G′ as well as the most rapid decrease in tanδ. Express and Imprint II present the highest filler content and rough filler surface, while Honigum shows the lowest filler content and small filler particles. Most products are composed of polymers over 30 kDa and oligomers less than 1 kDa. Each impression material possesses different rheological properties, which significantly affect the handling characteristics. The yield stress of the impression material minimizes unnecessary flow prior to and after seating. Viscoelastic change during setting of each impression material determines the setting time and the stiffness after setting. These rheological properties of impression materials are affected by the filler content and molecular weight distribution of polymer matrix.
机译:这项研究的目的是确定和比较聚乙烯硅氧烷印模糊在混合之前和固化过程中的处理和流变性能,并研究其成分对材料性能的影响。使用了五种聚乙烯基硅氧烷印模材料(Examixfine,Extrude,Honigum,Imprint II和Express)。进行流动测试和滴落测试以确定处理特性。使用应力控制的流变仪在25°C和32°C下测量混合前每种印模材料的流变性质(剪切应力,粘度)和凝固过程中的储能模量(储能模量G',损耗模量G''),损耗角正切tanδ)。分别为℃。测量每种印模材料的无机填料含量,并用SEM观察。用凝胶渗透色谱法(GPC)测定聚合物基质的分子量分布。由于Express和Honigum的屈服应力较高,因此其流动性比其他材料低。 Examixfine表现出最大的流量。除Examixfine催化剂外,所有材料均表现出假塑性行为。 Express和Honigum在低剪切速率下的粘度最大。但是,在高剪切条件下,挤出物和Honigum的粘度最低。混合后,每种材料的G'值都会增加,最终达到平稳状态,并且tanδ随时间迅速降低。版本说明II显示出最高的最终G'值和最迅速的tanδ降低。 Express和Imprint II具有最高的填料含量和粗糙的填料表面,而Honigum具有最低的填料含量和小的填料颗粒。大多数产品由30 kDa以上的聚合物和1 kDa以下的低聚物组成。每种印模材料都具有不同的流变性质,这会严重影响处理特性。压印材料的屈服应力使安置前后的不必要流动最小化。每种印模材料在固化过程中的粘弹性变化决定了固化时间和固化后的硬度。印模材料的这些流变特性受聚合物基质的填料含量和分子量分布的影响。

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