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纳米氧化物浓度对颌面硅橡胶弹性体力学性能的影响

Effect of nano-oxide concentration on the mechanical properties of a maxillofacial silicone elastomer.

作者信息

Han Ying, Kiat-amnuay Sudarat, Powers John M, Zhao Yimin

机构信息

Department of Prosthodontics, School of Stomatology, Fourth Military Medical University, Xi'an, China.

出版信息

J Prosthet Dent. 2008 Dec;100(6):465-73. doi: 10.1016/S0022-3913(08)60266-8.

Abstract

STATEMENT OF PROBLEM

Contemporary silicone-based elastomeric prostheses tend to degrade over time because of the effect of mechanical loading. Little has been reported on how the mechanical properties of a maxillofacial prosthetic elastomer may be affected by the addition of nanosized oxide particles used as an opacifier.

PURPOSE

The purpose of this study was to evaluate the effect of different concentrations of nanosized oxides of various composition on the mechanical properties of a commercially available silicone elastomer.

MATERIAL AND METHODS

Nanosized oxides (Ti, Zn, or Ce) were added in various concentrations (0.5%, 1.0%, 1.5%, 2.0%, 2.5%, or 3.0% by weight) to a commercial silicone elastomer (A-2186), commonly used for fabricating extraoral maxillofacial prostheses. Silicone elastomer A-2186 without nanosized oxides served as a control group. Specimens (n=5) were polymerized according to manufacturer's recommendations and tested for tensile strength (ASTM D412) and tear strength (ASTM D624), and percent elongation in a universal testing machine. Uniformity of particle dispersion within the processed elastomer was assessed using scanning electron microscopic imaging. For each property, a 2-way ANOVA was performed evaluating the effect of oxide type and strength, and Fisher's PLSD test was used for pairwise comparisons (alpha=.05).

RESULTS

SEM examination indicated that all 3 nanosized oxides distribute evenly throughout the silicone specimens, except for the 3.0% group, which are partly agglomerated. The 2.0% and 2.5% groups of all nanosized oxides demonstrated significantly higher tensile and tear strengths and percent elongation (P<.001) than the control group. CeO(2) had significantly lower tensile strength than TiO2 and ZnO (P<.05). The ZnO group had significantly higher tear strength than TiO(2) and CeO(2) (P <.05). Most of specimens became somewhat harder when compared with the control group. CeO(2) group had significantly higher Shore A hardness than TiO(2) and ZnO (P<.001). There was no significant difference of percent elongation among the type of nanosized oxides.

CONCLUSIONS

Incorporation of Ti, Zn, or Ce nano-oxides at concentrations of 2.0% and 2.5% improved the overall mechanical properties of the silicone A-2186 maxillofacial elastomer.

摘要

问题陈述

由于机械负荷的影响,当代的硅基弹性假体往往会随着时间的推移而降解。关于用作遮光剂的纳米级氧化物颗粒的添加如何影响颌面修复弹性体的机械性能,鲜有报道。

目的

本研究的目的是评估不同成分的不同浓度纳米级氧化物对市售硅酮弹性体机械性能的影响。

材料与方法

将不同浓度(按重量计0.5%、1.0%、1.5%、2.0%、2.5%或3.0%)的纳米级氧化物(钛、锌或铈)添加到一种常用于制作口腔外颌面假体的市售硅酮弹性体(A-2186)中。未添加纳米级氧化物的硅酮弹性体A-2186作为对照组。根据制造商的建议对样本(n=5)进行聚合,并在万能试验机上测试其拉伸强度(ASTM D412)、撕裂强度(ASTM D624)和伸长率百分比。使用扫描电子显微镜成像评估加工后的弹性体内颗粒分散的均匀性。对于每个性能指标,进行双向方差分析以评估氧化物类型和强度的影响,并使用Fisher最小显著差异检验进行两两比较(α=0.05)。

结果

扫描电子显微镜检查表明,除3.0%的组部分团聚外,所有三种纳米级氧化物均在硅酮样本中均匀分布。所有纳米级氧化物的2.0%和2.5%组的拉伸强度、撕裂强度和伸长率百分比均显著高于对照组(P<0.001)。二氧化铈的拉伸强度显著低于二氧化钛和氧化锌(P<0.05)。氧化锌组的撕裂强度显著高于二氧化钛和二氧化铈(P<0.05)。与对照组相比,大多数样本变得稍硬。二氧化铈组的邵氏A硬度显著高于二氧化钛和氧化锌(P<0.001)。纳米级氧化物类型之间的伸长率百分比没有显著差异。

结论

以2.0%和2.5%的浓度掺入钛、锌或铈纳米氧化物可改善硅酮A-2186颌面弹性体的整体机械性能。

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