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Mechanical properties of methacrylate-based model dentin adhesives: Effect of loading rate and moisture exposure

机译:甲基丙烯酸酯基牙本质粘合剂的机械性能:加载速率和湿气暴露的影响

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摘要

The aim of this study is to investigate the mechanical behavior of model methacrylate-based dentin adhesives under conditions that simulate the wet oral environment. A series of monotonic and creep experiments were performed on rectangular beam samples of dentin adhesive in three-point bending configuration under different moisture conditions. The monotonic test results show a significant effect of loading rate on the failure strength and the linear limit (yield point) of the stress-strain response. In addition, these tests show that the failure strength is low, and the failure occurs at a smaller deformation when the test is performed under continuously changing moisture conditions. The creep test results show that under constant moisture conditions, the model dentin adhesives can have a viscoelastic response under certain low loading levels. However, when the moisture conditions vary under the same low loading levels, the dentin adhesives have an anomalous creep response accompanied by large secondary creep and high strain accumulation.
机译:这项研究的目的是在模拟湿口腔环境下研究基于甲基丙烯酸甲酯的牙本质粘合剂模型的机械性能。在不同湿度条件下,对三点弯曲配置的矩形牙本质胶样品进行了一系列的单调和蠕变实验。单调测试结果表明,加载速率对破坏强度和应力应变响应的线性极限(屈服点)有显着影响。另外,这些测试表明,在连续变化的湿度条件下进行测试时,破坏强度低,并且以较小的变形发生破坏。蠕变测试结果表明,在恒定的湿度条件下,模型牙本质粘合剂在一定的低负荷水平下可以具有粘弹性响应。但是,当水分条件在相同的低负荷水平下变化时,牙本质粘合剂的蠕变响应异常,伴随着较大的二次蠕变和高应变累积。

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