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首页> 外文期刊>Procedia CIRP >Heated gripper concept to optimize heat transfer of fiber-reinforced-thermoplastics in automated thermoforming processes
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Heated gripper concept to optimize heat transfer of fiber-reinforced-thermoplastics in automated thermoforming processes

机译:加热的夹持器概念可优化自动化热成型过程中纤维增强热塑性塑料的传热

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摘要

Today composite materials become increasingly more common to use for lightweight applications. This paper introduces a simulation approach for a handling and forming process. This process focusses on the robot based gripping, handling and forming of continuous-fiber-reinforced-thermoplastics, such as organo-sheet. The results of this paper show a manufacturing study of the heat transfer of a temperature-elevated organo-sheet during handling using heated needlegripper. Beside the fabric deformation, this research focuses on the temperature distribution during forming. Fast temperature drops lead to an increasing stiffness of the thermoplastic. Therefore, it is necessary to consider changing material parameters due to the temperature change.
机译:如今,复合材料在轻型应用中变得越来越普遍。本文介绍了一种用于处理和成型过程的仿真方法。该过程集中在基于机器人的连续纤维增强热塑性塑料(例如有机板)的抓取,处理和成型上。本文的结果显示了在使用加热的针式夹具处理过程中温度升高的有机片材传热的制造研究。除了织物变形之外,这项研究还着重于成型过程中的温度分布。快速的温度下降导致热塑性塑料的刚度增加。因此,有必要考虑由于温度变化而改变材料参数。

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