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Magnetostrictive and mechanical properties of Terfenol-D composites based on polymer

机译:聚合物基Terfenol-D复合材料的磁致伸缩和力学性能

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Several composites, with outstanding magnetostrictive properties, have been synthesized combining a polyurethane base elastomer, with polycrystalline powders of Terfenol-D with a preferential orientation obtained by curing the material in a magnetic field. The morphology of the polymer matrix can be modified by changing the ratio of the hard /soft segment (F) of the polyurethane from 0.6 to 1.5. The influence of the morphology in the magnetostrictive response, for different composites, has been studied by following the storage modulus, E', in DMTA analysis. The magnetostrictive response has been studied as a function of Terfenol-D particle size and distribution (0-300, 212-300, 106-212, 0-38 μm), as well as a function of the content of the magnetostrictive particles in the composite. The highest response (about 1390 ppm) was obtained for a F=1.5 polyurethane and 50% wt of Terfenol-D of 212-300 μm particle size, oriented with a magnetic field of 0.5 T.
机译:已经合成了几种具有出色的磁致伸缩性能的复合材料,该复合材料将聚氨酯基弹性体与Terfenol-D多晶粉末相结合,并通过在磁场中固化该材料获得了优先取向。可以通过将聚氨酯的硬/软链段(F)的比例从0.6改变为1.5来改变聚合物基质的形态。通过遵循DMTA分析中的储能模量E',研究了形态对不同复合材料磁致伸缩响应的影响。已经研究了磁致伸缩响应与Terfenol-D粒径和分布(0-300、212-300、106-212、0-38μm)的函数以及磁致伸缩颗粒中磁致伸缩颗粒含量的关系。合成的。对于F = 1.5的聚氨酯和50%wt的212-300μm粒径的Terfenol-D,在0.5 T的磁场中定向可获得最高响应(约1390 ppm)。

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