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Investigation of glass transition behavior in a rice kernel drying process by mathematical modeling

机译:数学建模研究水稻核干燥过程中玻璃过渡行为

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Rice fissuring during the drying process may decrease the head rice yield after milling. To better understand the rice fissure formation, a 3D body fitted mathematical model was developed based on the glass transition hypothesis. The simulated temperature, moisture content, and glassy/rubbery state distribution inside the rice kernel were used to analyze the glass transition behavior of the kernel in the hot air drying process. It was found that the changes of the kernel temperature and moisture content caused the glass transition behavior. The rice temperature dominated the glass transition occurring in the initial heating and final cooling stage, while the moisture content played a more important role in the main drying stage. No rubbery to glassy state transition occurred when the drying temperature is lower than 35 degrees C; the rubbery to glassy state transition occurred gradually in both the drying and cooling stage in 35 similar to 45 degrees C, while took place sharply and only in the cooling stage when the drying temperature is larger than 45 degrees C. The glass transition behaviors obtained in this work were related well with experimental observations about the rice fissuring rate.
机译:干燥过程中的稻米裂纹可在研磨后降低头部水稻产量。为了更好地了解稻米裂缝形成,基于玻璃过渡假设开发了一种3D体积数学模型。水稻内核内的模拟温度,含水量和玻璃状/橡胶状态分布用于分析热风干燥过程中籽粒的玻璃化转变行为。发现内核温度和水分含量的变化导致玻璃过渡行为。米温度占据了初始加热和最终冷却阶段发生的玻璃化转变,而水分含量在主干阶段发挥了更重要的作用。当干燥温度低于35℃时,不会发生橡胶到玻璃状过渡;在类似于45摄氏度的35中的干燥和冷却阶段均匀发生橡胶至玻璃状过渡,同时在干燥温度大于45℃的冷却阶段急剧且仅在冷却阶段进行急剧发生。获得的玻璃化转换行为这项工作与关于水稻裂缝率的实验观察结果良好。

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