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The composite reinforcement production in digital manufacturing: experimental validation of the heat transfer and cure modeling results

机译:数字制造中复合钢筋生产:传热和固化模拟结果的实验验证

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The experimental validation of the heat transfer and cure modeling results for 8-mm fiber-reinforced thermosetting composite reinforcement is reported in this article. The temperature and degree of cure of composite reinforcement are predicted using a two-dimensional heat transfer and curing model. The model uses the infrared radiant heating theory and takes into account the heat transfer between the composite rod and the surrounding air. The implicit finite difference method was used to solve the system of governing equations. The results obtained using mathematical model was compared to experimental data: the temperature field inside the composite reinforcement was measured by means of naked thermocouple; Differential Scanning Calorimetry (DSC) was used to measure the degree of cure of the final product. Calculated and measured temperature and degree of cure fields were in good agreement.
机译:本文报道了在本文中报道了8mm纤维增强热固性复合材料加固的传热和固化模拟结果的实验验证。 使用二维传热和固化模型预测复合加强件的温度和程度。 该模型采用红外辐射加热理论,并考虑了复合杆和周围空气之间的传热。 隐含有限差分方法用于解决控制方程的系统。 使用数学模型获得的结果与实验数据进行比较:通过赤裸的热电偶测量复合加强件内的温度场; 差分扫描量热法(DSC)用于测量最终产品的固化程度。 计算和测量的温度和治愈领域的程度良好。

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