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Model-based Heating and Handling Strategy for Pre-Assembled Hybrid Fibre-Reinforced Metal-Thermoplastic Preforms

机译:用于预组装的混合纤维增强金属 - 热塑性预制件的模型加热和处理策略

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Handling plays a key role in automated processing of continuous fibre-reinforced thermoplastics (organo sheets). Challenges result from the properties and behaviour of the processed semi-finished products in heated state. These include the defined grasping, transport and release of flexible materials, the precise handling of sensitive textiles and the observation of processing temperatures for thin-walled semi-finished products. In the context of multi-material or hybrid lightweight components consisting of organo sheets and metallic parts, the joint consideration of component and process development not only enables cost-efficient lightweight design but also yields potentials regarding the automation-oriented processing of organo sheets. With regard to automated handling, the authors have shown that bringing the different materials together to a hybrid preform before heating leads to advantageous material behaviour. For example, metallic areas of the hybrid composite can serve as rigid support and gripping points which can be grasped by standard grippers. To make use of this approach in the context of thermoforming, an integrated heating and handling strategy is required for automated processing of hybrid preforms with inhomogeneous material thickness and varying material combinations. For this purpose, the preform-related heat transfer behaviour was modelled and empirically validated. Based on the results, it was possible to derive process windows depending on the material combination and layer structure. Finally, these findings were used to design heating and handling strategies for the processing of hybrid preforms.
机译:处理起着连续纤维增强热塑性塑料(有机片材)的自动化加工中起关键作用。挑战导致从经处理的半成品在被加热状态的特性和行为。这些包括定义的把持,运输和柔性材料释放,敏感纺织品的精确处理和加工温度为薄壁半成品的观察。在由有机片材和金属部件,联合考虑部件和工艺开发的多种材料或混合轻质部件的上下文中,不仅使成本有效的轻便的设计,但还产生关于有机片材的面向自动化处理的电势。对于自动化处理,作者表明,加热导致有利的材料行为之前使不同的材料一起混合预制件。例如,杂化复合物的金属区域可以用作刚性支撑和夹紧点,这可以通过标准夹具抓握。为了使用热成型,集成加热的上下文中这一方法的和所需的具有非均匀的材料厚度和不同材料组合的混合预成型件的自动化处理的处理策略。为此,预制件相关的传热行为进行建模和实证验证。基于这些结果,有可能根据材料组合和层结构派生的工艺窗口。最后,这些结果被用于设计加热和处理策略用于混合预成型件的处理。

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