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Improving the Magnetoelectric Response of Laminates Containing High Temperature Piezopolymers

机译:改善含高温压电聚合物层压板的磁电响应

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High magnetoelectric (ME) coefficients at room temperature have been found when 2-2 type laminates (one magnetostrictive, the other piezoelectric) made of iron-based Metglas alloys and PVDF piezoelectric polymer are used. Searching for a good ME response of such laminate composites when used at high temperatures, we have modified both constituents: first, by using magnetostrictive Metglas 2826 MB (with $lambda_{s}approx 11 {rm ppm}$) in the ribbon form thermally treated at high temperature, in order to get internal stress-relief conditions. The main consequence of such thermal treatment has been to achieve a piezomagnetic coefficient of $d_{33}=1.5times 10^{-6}/{rm Oe}$, higher than the measured one in the as-cast state for this alloy. As piezoelectric constituent, we have used a new class of high temperature piezopolymer: a series of nitrile containing polyimide copolymers were fabricated with a mixture of two aromatic diamines, namely 1,3-Bis-2-cyano-3-(3-aminophenoxy)phenoxybenzene (diamine 2CN) and 1,3-Bis(3-aminophenoxy)benzene (diamine 0CN). Those diamines were in 30/70, 40/60, and 50/50 proportions within the 0CN/2CN mixture. We have measured room temperature ME coefficients up to 0.37 V/cm.Oe, being this value directly correlated to the remnant polarization of each copolyimide.
机译:当使用由铁基Metglas合金和PVDF压电聚合物制成的2-2型层压板(一种磁致伸缩,另一种压电)时,发现在室温下具有较高的磁电(ME)系数。为了在高温下使用时对此类层压复合材料的良好ME响应进行搜索,我们修改了这两种成分:首先,通过使用磁致伸缩Metglas 2826 MB(具有 $ lambda_ {s}约11 {rm ppm} $ )的碳带形式在高温下进行热处理,以消除内部应力。这种热处理的主要结果是实现了<公式公式类型=“ inline”> $ d_ {33} = 1.5×10 ^ {-6} / {rm Oe}的压电系数。 $ ,高于该合金在铸态下测得的值。作为压电成分,我们使用了一类新型的高温压电聚合物:用两种芳香族二胺(即1,3-Bis-2-cyano-3-(3-aminophenoxy))的混合物制备了一系列含腈的聚酰亚胺共聚物苯氧基苯(二胺2CN)和1,3-双(3-氨基苯氧基)苯(二胺0CN)。那些二胺在0CN / 2CN混合物中的比例为30 / 70、40 / 60和50/50。我们测得的室温ME系数最高为0.37 V / cm.Oe,因为该值与每个共聚酰亚胺的残余极化强度直接相关。

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