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DOES POLYMERIZATION RATE OF DENTAL LAYERS DEPEND ON THEIR CONFIGURATIONS?

机译:牙科层的聚合率取决于它们的配置吗?

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Test results show that shrinkage stresses in cured dental layers depend on C-factor (bounded/unbounded surface ratio). To check it, a polymerization of set of thin resincomposite layers earlier tested by Alster et al. was modelled in the present work. To find shrinkage stress fields, the Maxwell model with time dependent parameters was used . Values of linear shrinkage, Young's modulus, and viscosity, were taken as the input data from the work by Dauvillier et al. The calculated shrinkage stresses were compared with the test results. To find a reason of the discrepancies between the calculated and tested stress values, the assumptions of the model were reconsidered. Based on the thermal analogy, it was taken that a degree of polymerization of the layers depends on their C-factor. The new assumption alludes to case of non-uniform temperature drop due to a faster heat transfer at the free surface of cooled element. As a consequence, the input data given by functions a(t) take the form a(t)·f(C), where f(C) is an unknown parameter. The stresses calculated on the basis of the modified input data compared with the test results enable to get parameter f(C). In this way, the measured and calculated stresses became the same. The method was used for the analysis of shrinkage stresses in dental layers filling the Class I cavities. It was found that for the restorations of small diameters the shrinkage stresses can be relatively high.
机译:测试结果表明,固化牙科层的收缩应力取决于C型(有界/无界面比)。为了检查它,通过Alster等人测试的早期测试的一组薄树脂组合物的聚合。被建模在目前的工作中。要查找收缩应力字段,使用具有时间依赖参数的麦克斯韦尔模型。线性收缩,杨氏模量和粘度的值被Dauvillier等人从工作中的输入数据。将计算的收缩应力与测试结果进行比较。为了找到计算和测试的应力值之间的差异的原因,重新考虑了模型的假设。基于热法,观察层的聚合程度取决于它们的C因子。由于冷却元件的自由表面更快的热传递,新的假设为不均匀温度降的情况。结果,由函数a(t)给出的输入数据采用形式A(t)·f(c),其中f(c)是未知参数。根据经修改的输入数据计算的应力与测试结果使得参数f(c)进行比较。以这种方式,测量和计算的应力变得相同。该方法用于分析填充I腔腔的牙科层中的收缩应力。结果发现,对于较小的直径的修复,收缩应力可以相对较高。

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