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不同种类的复合材料在水、空气和油中的机械降解。

Mechanical Degradation of Different Classes of Composite Resins Aged in Water, Air, and Oil.

机构信息

Department of Social Dentistry, Paulista State University, São Paulo, 04021-001, Brazil.

Postgraduate Program of Health Sciences, University of Southern Santa Catarina, Tubarão, 88701-420, Brazil.

出版信息

Biomed Res Int. 2019 Jan 9;2019:7410759. doi: 10.1155/2019/7410759. eCollection 2019.

Abstract

A significant deterioration of the properties can drastically compromise the survival rate of restorative materials. The aim of this study was to assess flexural strength and hardness of three composite classes: hybrid composite resin (HCR), nanoparticulate composite resin (NCR), and silorane-based composite resin (SBCR). One hundred specimens were prepared for hardness testing by using a split metallic mold measuring 10 mm in diameter and 2 mm deep. Twenty specimens were prepared for each restorative material, randomly assigned for storage in air, distilled water, or mineral oil. After intervals of 24 hours, 30, 60, 90, and 120 days, hardness and flexural strength tests were initially compared in two levels: "storage medium" and "time" within each material group. A two-way analysis of variance was performed (p<0.05) on the variables "material" and "storage time" (p<0.05). The HCR showed to be stable with regard to the evaluation of flexural strength and hardness (p<0.05). A significant reduction occurs for the NCR in comparison to the other groups (p<0.05). The NCR presented the lowest values of hardness and flexural strength kept on water over time. The characteristics of material showed a strong influence on the decrease of the mechanical properties analyzed.

摘要

材料性能的显著恶化会极大地降低修复材料的存活率。本研究旨在评估三种复合类别(混合复合树脂(HCR)、纳米复合树脂(NCR)和硅烷醇基复合树脂(SBCR)的弯曲强度和硬度。通过使用直径为 10 毫米、深度为 2 毫米的分体金属模具,制备了 100 个用于硬度测试的样本。每种修复材料制备 20 个样本,随机分配到空气中、蒸馏水中或矿物油中储存。在 24 小时、30 天、60 天、90 天和 120 天后的各个时间间隔,首先在两个水平上比较硬度和弯曲强度测试:“储存介质”和“时间”。在材料组内对变量“材料”和“储存时间”进行双向方差分析(p<0.05)。HCR 在弯曲强度和硬度评估方面表现稳定(p<0.05)。与其他组相比,NCR 的弯曲强度显著降低(p<0.05)。与其他组相比,NCR 在水中的硬度和弯曲强度随时间的推移而降低。材料特性对分析的机械性能下降有很大影响。

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