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Flow-speed-controlled quality optimisation for one-shot-hybrid RTM parts

机译:单次混合rtm零件的流量控制质量优化

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This work describes a model-based methodology to improve the bonding quality between the metal and composite constituents of one-shot-hybrid resin transfer moulding (OSH-RTM) parts. In order to reduce void induced defects in the interface an ideal flow front velocity needs to be achieved. This ideal flow front velocity is characterised by capillary rise experiments at the used carbon fibre textile. The flow front velocity during mould filling is controlled by the use of pressure sensors and Darcy’s law. Therefore, viscosity characterisation of the resin system and permeability measurements of the preform were carried out. The interface of the produced OSH-RTM roof bar for a car is tested on a component test rig imitating the load of a side impact at a car. A t-test was carried out to prove that the flow-speed-controlled injection strategy is advantageous compared to a constant mass flow injection by means of a higher maximum load transferable by the interface of the hybrid part.
机译:该工作描述了一种基于模型的方法,以提高单次杂交树脂转移成型(OSH-RTM)零件的金属和复合成分之间的粘接质量。为了减少界面中的空隙诱导的缺陷,需要实现理想的流动前速度。这种理想的流动前速度的特征在于使用碳纤维纺织品的毛细管升高实验。模具填充过程中的流动前速度通过使用压力传感器和达西法律来控制。因此,进行了树脂系统的粘度表征和预成型件的渗透率测量。用于汽车的生产OSH-RTM屋顶栏的界面在模拟侧面撞击的组件试验台上进行测试。进行了T检验以证明流动速度控制的喷射策略与常量流量喷射相比是有利的,借助于通过混合部件的界面可转移的较高的最大负荷。

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