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Numerical simulation of temperature field in large integral panel during age forming process: Effect of autoclave characteristics

机译:年龄成形过程中大型面板温度场的数值模拟:高压釜特性的影响

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As an advanced manufacturing technology, autoclave age forming (AAF) has been developed to form large integral panels. During the AAF, autoclave characteristics (air speed, heating rate and pressure) influence the temperature uniformity in panel, which lead to lower the precision of the formed panel. Temperature field of a large panel with a dimension of 2500 x 1300 x 17mm~3, formed under a large frame mold, was computationally fluid dynamics simulated and experimentally evaluated. It is found that the simulation results tally well with the test results. Then, the effect of air speed (V), heating rate (H) and pressure (P) on panel's temperature field are investigated via simulation. It shows that increasing the air speed helps improve the temperature uniformity of the panel, while raising the heating rate and the pressure have the opposite effect. Additionally, the combination of the air speed and pressure (V&P) has a great impact on the panels' temperature field. The magnitude of effects on the panel's temperature field correspond to a sequence of V&P > H > V > P > H&V > H&P.
机译:作为一种先进的制造技术,已经开发了高压釜年龄成型(AAF)以形成大的整体面板。在AAF期间,高压灭菌特性(空气速度,加热速率和压力)影响面板中的温度均匀性,这导致形成所形成的面板的精度。大面板的温度场,尺寸为2500×1300×17mm〜3,在大框架模具下形成,是计算流体动力学模拟和实验评估。结果发现,模拟结果与测试结果很好。然后,通过仿真研究了面板温度场上的空气速度(V),加热速率(H)和压力(P)的影响。它表明,增加空气速度有助于提高面板的温度均匀性,同时提高加热速率,压力具有相反的效果。另外,空气速度和压力(V&P)的组合对面板的温度场具有很大的影响。面板温度场的效果的大小对应于V> H> v> H> H&V> H&P的序列。

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