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Hollow and solid spherical magnetostrictive particulate composites

机译:空心和固态球形磁致伸缩颗粒复合材料

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摘要

Nickel microspheres were produced by the spark erosion technique under both liquid nitrogen and water conditions. Density measurements and Scanning electron microscope analysis revealed that a significant portion of the Ni particles produced under the liquid nitrogen conditions are hollow spheres with a density of 6.67(4)g/cm(3) while the particles produced in water are primarily solid spheres with a density of 8.40(1)g/cm(3), close to the bulk nickel value of 8.90 g/cm(3). Nickel/polymer composites incorporating the hollow and solid nickel microspheres were manufactured with volume fractions of 25% and 36%, respectively. The hollow and solid nickel composites exhibited saturation magnetostrictions of -24 and -28 ppm, respectively. In addition, small quantities of Terfenol-D (Tb0.3Dy0.7Fe2) were spark eroded under liquid argon conditions with similar to10% by volume of the spark eroded particles being solid microspheres. Calculations indicate that aligned composites that incorporate these Terfenol-D microspheres could reach a strain value of 2000 ppm. (C) 2004 American Institute of Physics.
机译:镍微球是通过火花腐蚀技术在液氮和水条件下生产的。密度测量和扫描电子显微镜分析表明,在液氮条件下产生的大部分Ni颗粒是空心球,密度为6.67(4)g / cm(3),而在水中产生的颗粒主要为固体球,密度为8.40(1)g / cm(3),接近镍的总体积值为8.90g / cm(3)。掺入空心和实心镍微球的镍/聚合物复合材料的体积分数分别为25%和36%。中空和固态镍复合材料的饱和磁致伸缩分别为-24和-28 ppm。另外,在液氩条件下,将少量的Terfenol-D(Tb0.3Dy0.7Fe2)进行了电火花腐蚀,其中约10%(体积)的电火花腐蚀颗粒为固体微球。计算表明,掺入这些Terfenol-D微球的取向复合材料可达到2000 ppm的应变值。 (C)2004美国物理研究所。

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