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Manufacturing gluing-in-rods under low temperatures and with shorter process times using induction and resistive heating

机译:在低温下制造胶合杆,使用诱导和电阻加热更短的工艺程

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摘要

This paper summarizes joint research efforts of the University of Kassel and Fraunhofer IFAM, focusing on resistive and inductive heating as techniques to achieve fast curing in the particular context of tests on glued-in rods, as performed in the last 2 years. In different series of experiments, conducted on metallic bars glued into timber, the difficulties practitioners face with regard to temperature control are described. In a further set of experiments, induction is combined with a pre-applicable structural adhesive (PASA); it is shown how an innovative combination of PASA with induction heating leads to a process of gluing G-FRP rods into timber that substantially gains in terms of process quality and time. In the final series, in which a 1 K epoxy is mixed with metallic particles that exhibit a Curie temperature adapted to the curing temperature of the adhesive, we show how the induction process can be run without any outside control, leading to a technical solution adapted to practitioners.
机译:本文总结了卡司机大学和弗劳恩霍夫奥姆姆的联合研究努力,专注于电阻和电感加热作为在过去2年中进行的特定背景下实现快速固化的技术,如过去2年所表演。在不同系列实验中,在粘合到木材的金属条上进行,描述了关于温度控制的困难从业者。在进一步的实验中,诱导与预适用的结构粘合剂(PASA)组合;显示PASA与感应加热的创新组合如何导致将G-FRP棒粘合到木材中的过程,从而在工艺质量和时间方面基本提升。在最终系列中,其中1K环氧树脂与金属颗粒混合,具有适应粘合剂的固化温度的居里温度,我们展示了如何运行感应过程而无需任何外部控制,导致技术解决方案从业者。

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