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Viscoelastic Properties of Collagen-Adhesive Composites under Water Saturated and Dry Conditions

机译:饱和水和干燥条件下胶原-粘合剂复合材料的粘弹性

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摘要

To investigate the time and rate dependent mechanical properties of collagen-adhesive composites, creep and monotonic experiments are performed under dry and wet conditions. The composites are prepared by infiltration of dentin adhesive into a demineralized bovine dentin. Experimental results show that for small stress level under dry conditions, both the composite and neat adhesive have similar behavior. On the other hand, in wet conditions, the composites are significantly soft and weak compared to the neat adhesives. The behavior in the wet condition is found to be affected by the hydrophilicity of both the adhesive and collagen. Since the adhesive-collagen composites area part of the complex construct that forms the adhesive-dentin interface, their presence will affect the overall performance of the restoration. We find that Kelvin-Voigt model with at least 4-elements is required to fit the creep compliance data, indicating that the adhesive-collagen composites are complex polymers with several characteristics time-scales whose mechanical behavior will be significantly affected by loading rates and frequencies. Such mechanical properties have not been investigated widely for these types of materials. The derived model provides an additional advantage that it can be exploited to extract other viscoelastic properties which are, generally, time consuming to obtain experimentally. The calibrated model is utilized to obtain stress relaxation function, frequency-dependent storage and loss modulus, and rate dependent elastic modulus.
机译:为了研究胶原粘合剂复合材料的时间和速率依赖性机械性能,在干燥和潮湿条件下进行蠕变和单调实验。通过使牙本质粘合剂渗透到脱矿的牛牙本质中来制备复合材料。实验结果表明,在干燥条件下应力较小的情况下,复合胶和纯胶的行为相似。另一方面,在湿润条件下,与纯胶粘剂相比,复合材料明显柔软且较弱。发现在潮湿条件下的行为受粘合剂和胶原的亲水性影响。由于粘合剂-胶原蛋白复合物是形成粘合剂-牙本质界面的复杂结构的一部分,因此它们的存在会影响修复体的整体性能。我们发现需要至少4个元素的Kelvin-Voigt模型来拟合蠕变柔量数据,这表明胶粘剂-胶原复合材料是具有多个特征时间尺度的复杂聚合物,其机械行为将受到加载速率和频率的显着影响。对于这些类型的材料,尚未广泛研究这种机械性能。导出的模型具有另一个优势,可以利用它来提取其他粘弹性质,而这些粘弹性质通常需要很长时间才能通过实验获得。校准的模型用于获得应力松弛函数,频率相关的存储和损耗模量以及速率相关的弹性模量。

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