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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Lifetime Predictions for Resin-based Composites Using Cyclic and Dynamic Fatigue
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Lifetime Predictions for Resin-based Composites Using Cyclic and Dynamic Fatigue

机译:基于循环和动态疲劳的树脂基复合材料的寿命预测

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摘要

Because dental restorative materials undergo fatigue in use, testing is often performed in the laboratory to evaluate material responses to cyclic loading. The purpose of this study was to compare the lifetime predictions resulting from two methods of fatigue testing: dynamic and cyclic fatigue. Model composites were made in which one variable was the presence of a silanizing agent, and specimens tested in 4-point flexure. Cyclic fatigue was carried out at a frequency of 5 Hz, while dynamic fatigue testing spanned seven decades of stress rate application. Data were reduced and the crack propagation parameters for each material were calculated from both sets of fatigue data. These parameters were then used to calculate an equivalent static tensile stress for a 5-year survival time. The 5-year survival stresses predicted by dynamic fatigue data were approximately twice those predicted by cyclic fatigue data. In the absence of filler particle silanization, the survival stress was reduced by half. Aging in a water-ethanol solution reduced the survival stresses by a factor of four to five. Cyclic fatigue is a more conservative means of predicting lifetimes of resin-based composites.
机译:由于牙科修复材料在使用中会产生疲劳,因此经常在实验室中进行测试以评估材料对循环载荷的响应。本研究的目的是比较两种疲劳测试方法(动态疲劳和循环疲劳)得出的寿命预测。制备模型复合材料,其中一个变量是硅烷化剂的存在,并在4点弯曲下测试样品。循环疲劳以5 Hz的频率进行,而动态疲劳测试则跨越了施加应力率七十年的时间。减少数据,并从两组疲劳数据中计算每种材料的裂纹扩展参数。然后将这些参数用于计算5年生存时间的等效静态拉伸应力。动态疲劳数据预测的5年生存应力约为周期性疲劳数据预测的5倍。在没有填料颗粒硅烷化的情况下,存活应力降低了一半。在水-乙醇溶液中老化可将生存压力降低四到五倍。循环疲劳是预测树脂基复合材料寿命的一种较为保守的方法。

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