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Autoclave manufacturing of thick composites

机译:高压釜生产厚复合材料

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Autoclave manufacturing of thermoset composites is determined mainly by heat transfer phenomena. As a matter of fact, the consolidation of composite laminates takes place by the progress of the polymerization, which is activated thermally. The design and control of the autoclave process relies on the capability to manage the relationship between the temperature-pressure cycle of the heat carrier fluid and the temperature distribution through the manufacturing part. In particular in industrial cases, the main limitations reside in the correct evaluation of the local convective heat transfer conditions through the autoclave and in the evaluation of the local thermal inertia arising from the bagging-tooling system. In this study, the autoclave manufacturing of thick laminates has been addressed by modeling the heat transport phenomena occurring through the composite. The bagging and the tooling system. A new methodology for the evaluation of the energy transfer regimes has been proposed accounting for the heat fluxes from the bag and the tool side, the temperature through-the-thickness gradients and the heat generated by the resin polymerization reaction. The proposed approach enables the prediction of the temperature history of the autoclave assembly without knowledge of the effective thermal inertia of the two external layers, which could be difficult to evaluate owing to possible deformations of the bag during the manufacturing cycle and nonuniform shape of the metallic tool along the part. Experimental data from industrial autoclave runs have been collected and analyzed to validate the method.
机译:热固性复合材料的高压釜制造主要取决于传热现象。事实上,复合层压板的固结是通过聚合反应进行的,聚合反应是热活化的。高压釜工艺的设计和控制依赖于管理载热流体的温度-压力循环与通过制造部件的温度分布之间的关系的能力。特别是在工业情况下,主要局限在于对通过高压釜进行的局部对流传热条件的正确评估以及对由装袋工具系统产生的局部热惯性的评估。在这项研究中,通过对复合材料中发生的热传递现象进行建模,解决了厚层压板的高压灭菌器制造问题。套袋和工具系统。已经提出了一种评估能量传递方式的新方法,该方法考虑了来自袋子和工具侧的热通量,厚度方向的温度梯度以及树脂聚合反应产生的热量。所提出的方法能够在不知道两个外层有效热惯性的情况下预测高压釜组件的温度历史,由于在制造过程中袋子可能变形以及金属形状不均匀,可能难以评估零件上的工具。已收集并分析了来自工业高压釜运行的实验数据,以验证该方法。

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