首页> 外文期刊>The Journal of Prosthetic Dentistry >Mechanical properties of 3 hydrophilic addition silicone and polyether elastomeric impression materials.
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Mechanical properties of 3 hydrophilic addition silicone and polyether elastomeric impression materials.

机译:3亲水性加成有机硅和聚醚弹性体印模材料的机械性能。

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STATEMENT OF PROBLEM: New "hydrophilic" elastomeric impression materials have been introduced with the goals of reducing marginal voids and distortion in the impressions and improving the quality of gypsum dies, but there are insufficient data on the mechanical properties of these materials. PURPOSE: Mechanical properties, including elastic recovery, strain in compression, tear energy, and tensile strength of 3 hydrophilic impression materials with low and high consistencies were compared. MATERIAL AND METHODS: Two addition silicone impression brands (Imprint II, 3M ESPE; Flexitime, Heraeus Kulzer) and a polyether brand (Impregum, 3M ESPE) were studied. Two consistencies of each material (light-body and heavy-body) were investigated. Elastic recovery (%) and strain in compression (%) were tested according to ISO 4823; tear energy (J/m2) and tensile strength (MPa) were tested following Webber and Ryge's method and ASTM D412 (Test Method A), respectively. Five specimens were made for each group for a total of 24 groups and 120 specimens. Results were analyzed by 2-way analysis of variance, and Fisher's protected least significance difference intervals were calculated (alpha=.05). Correlation analysis was used to evaluate the relationships among properties. RESULTS: P values were smaller than .0001 for material, consistency, and interaction for strain in compression, tear energy, and tensile strength. For elastic recovery, P values were smaller than .0001 for material and the interaction between material and consistency, but equal to .4150 for consistency. Strain in compression correlated with other mechanical properties (P<.05), but tensile strength and tear resistance were not correlated. CONCLUSIONS: In general, new "soft" polyether impression materials had higher strain in compression and lower tensile strength compared to new "hydrophilic" addition silicone materials. Heavy-body materials had higher tear properties and tensile strength than light-body materials. Strain in compression was correlated with elastic recovery, tear energy, and tensile strength. Tear resistance and tensile strength were not correlated.
机译:问题陈述:引入了新的“亲水性”弹性体印模材料,其目的是减少印模中的边际空隙和变形,并改善石膏模的质量,但是有关这些材料的机械性能的数据不足。目的:比较了三种具有低和高稠度的亲水性印模材料的机械性能,包括弹性回复,压缩应变,撕裂能量和拉伸强度。材料和方法:研究了另外两个有机硅印模品牌(Imprint II,3M ESPE; Flexitime,Heraeus Kulzer)和聚醚品牌(Impregum,3M ESPE)。研究了每种材料的两种稠度(轻体和重体)。根据ISO 4823测试弹性回复率(%)和压缩应变(%);撕裂能(J / m2)和抗拉强度(MPa)分别根据Webber和Ryge方法和ASTM D412(测试方法A)进行测试。每组制作五个标本,共24组和120个标本。通过2方差分析对结果进行分析,并计算出Fisher受保护的最小显着性差异间隔(alpha = .05)。相关分析用于评估属性之间的关系。结果:对于材料,稠度以及压缩,撕裂能量和拉伸强度中的应变相互作用,P值均小于.0001。对于弹性恢复,材料的P值小于.0001,材料与稠度之间的相互作用小于.0001,但对于一致性,P值小于.4150。压缩应变与其他机械性能相关(P <.05),但拉伸强度和抗撕裂强度不相关。结论:与新的“亲水性”加成硅酮材料相比,新的“软”聚醚压印材料通常具有较高的压缩应变和较低的拉伸强度。重质材料比轻质材料具有更高的撕裂性能和拉伸强度。压缩应变与弹性回复,撕裂能量和拉伸强度相关。撕裂强度和抗张强度不相关。

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