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Investigation of the Foam Development Stages by Non-Destructive Testing Technology Using the Freeze Foaming Process

机译:使用冻结发泡工艺的无损检测技术研究泡沫的发展阶段

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摘要

With a novel Freeze Foaming method, it is possible to manufacture porous cellular components whose structure and composition also enables them for application as artificial bones, among others. To tune the foam properties to our needs, we have to understand the principles of the foaming process and how the relevant process parameters and the foam’s structure are linked. Using in situ analysis methods, like X-ray microcomputed tomography (µCT), the foam structure and its development can be observed and correlated to its properties. For this purpose, a device was designed at the Institute of Lightweight Engineering and Polymer Technology (ILK). Due to varying suspension temperature and the rate of pressure decrease it was possible to analyze the foam’s developmental stages for the first time. After successfully identifying the mechanism of foam creation and cell structure formation, process routes for tailored foams can be developed in future.
机译:使用新颖的冷冻发泡方法,可以制造多孔细胞组分,其结构和组成也使其能够用作人造骨。为了调整泡沫性能以满足我们的需求,我们必须了解发泡过程的原理以及相关的工艺参数和泡沫结构之间的联系。使用X射线微计算机断层扫描(µCT)等原位分析方法,可以观察到泡沫的结构及其发展,并与其性能相关。为此,在轻量级工程和聚合物技术研究所(ILK)设计了一种设备。由于悬浮温度的变化和压力降低的速率,首次可以分析泡沫的发展阶段。在成功确定泡沫产生和孔结构形成的机理之后,将来可以开发定制泡沫的工艺路线。

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