高性能CFRP/金属活性层压板的研制

H. Asanuma, O. Haga, M. Imori
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引用次数: 4

摘要

本文主要从金属的种类和厚度等方面阐述了高性能CFRP/金属活性层合板的发展。用铝、铝合金、不锈钢和钛作为高CTE材料的金属层,用单向CFRP预浸料作为低CTE/电阻加热材料,用单向KFRP预浸料作为低CTE/绝缘材料热压制成各种类型的层压板。铝及其合金型层压板具有几乎相同且最高的室温曲率,且曲率随温度的升高呈线性变化,直至其制造温度。不锈钢型的曲率在其制造温度附近从一个曲率跳到另一个曲率,而钛型的曲率则是双曲率,其变化变得复杂。在相同厚度下,不锈钢型的输出力是三者中最高的。铝型通过增加其厚度和使用其合金,成功地增加了输出力。CFRP层的电阻可以用来监测温度,也就是有源层板的曲率,因为曲率是温度的函数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of High Performance CFRP/Metal Active Laminates
This paper describes development of high performance CFRP/metal active laminates mainly by investigating the kind and thickness of the metal. Various types of the laminates were made by hot-pressing of an aluminum, aluminum alloys, a stainless steel and a titanium for the metal layer as a high CTE material, a unidirectional CFRP prepreg as a low CTE/electric resistance heating material, a unidirectional KFRP prepreg as a low CTE/insulating material. The aluminum and its alloy type laminates have almost the same and the highest room temperature curvatures and they linearly change with increasing temperature up to their fabrication temperature. The curvature of the stainless steel type jumps from one to another around its fabrication temperature, whereas the titanium type causes a double curvature and its change becomes complicated. The output force of the stainless steel type attains the highest of the three under the same thickness. The aluminum type successfully increased its output force by increasing its thickness and using its alloys. The electric resistance of the CFRP layer can be used to monitor the temperature, that is, the curvature of the active laminate because the curvature is a function of temperature.
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