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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Compression moulding of sheet moulding compound: Modelling with computational fluid dynamics and validation
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Compression moulding of sheet moulding compound: Modelling with computational fluid dynamics and validation

机译:片状模塑料的压缩成型:通过计算流体动力学进行建模和验证

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摘要

Compression moulding experiments of sheet moulding compound, visual observations of a vacuum test with prepregs and numerical models with two main approaches for computational fluid dynamics simulations of the mould filling phase are presented. One assumes that there are layers near the mould surfaces with much less viscosity and the other only use one viscosity model. The numerical experiments showed that the pressure could be accurately predicted with both approaches. The property necessary to predict correct pressure with altered mould closing velocities was that the bulk material had to obey shear-thinning effects. Preheating effects before compression were neglected, but altering the heating time until the prepreg was assumed to start flow had a significant effect. The experiments confirmed that the pressure is predominantly affected by the mould closing velocity. Regardless of the considered process settings, a first pressure top always appeared approximately at the logarithmic strain 0.25. A second top was associated with a slowdown of the press. The location of this was affected by the velocity and the vacuum, the latter indicating that vacuum assistance prevents a build-up of back pressure. Furthermore, heated prepreg above a critical temperature is observed to swell immediately as vacuum assistance is applied.
机译:介绍了片状模塑料的模压实验,用预浸料进行的真空试验的目测观察以及具有两种主要方法的数值模型的数值模型,这些方法用于模具填充阶段的计算流体动力学模拟。一个假设模具表面附近有几层的黏度要小得多,而另一个只使用一个黏度模型。数值实验表明,两种方法均可准确预测压力。通过改变合模速度来预测正确压力所必需的特性是,散装材料必须服从剪切稀化作用。可以忽略压缩前的预热效果,但是改变加热时间直到假定预浸料开始流动都具有显着效果。实验证实,压力主要受合模速度影响。不管考虑的工艺设置如何,总是在大约对数应变0.25处出现第一压力最高峰。排名第二的原因是媒体发展放缓。其位置受速度和真空的影响,后者表明真空辅助可防止背压的累积。此外,观察到在施加真空辅助时加热到临界温度以上的预浸料立即膨胀。

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