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Generalized hybrid modeling to estimate chemical shrinkage and modulus evolution at arbitrary temperatures

机译:广义混合模型可估算任意温度下的化学收缩和模量演变

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A generalized hybrid modeling is proposed to estimate the chemical shrinkage and modulus evolutions at arbitrary temperatures. Using the existing curing kinetics modeling, a theoretical formulation is developed to provide a mathematical relationship between the evolution properties at arbitrary temperatures and those obtained at a reference temperature. The evolution properties at the reference temperature are obtained first by the fiber Bragg grating (FBG) sensor method. The activation energy is determined from the supplementary curing extent data obtained at various temperatures using the differential scanning calorimeter (DSC). The shift factor is then calculated from the activation energy, and the evolution properties at a temperature range of interest are estimated from the reference properties.
机译:提出了一种通用的混合模型来估计任意温度下的化学收缩率和模量演变。使用现有的固化动力学模型,开发了一种理论公式以提供任意温度下的演化特性与参考温度下的演化特性之间的数学关系。首先通过光纤布拉格光栅(FBG)传感器方法获得参考温度下的演化特性。使用差示扫描量热仪(DSC)根据在各种温度下获得的补充固化程度数据确定活化能。然后根据活化能计算出位移因数,并根据参考特性估算感兴趣温度范围内的演化特性。

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