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A soft magnetic material for power supply systems of high energy physics experiments

机译:用于高能物理实验的电源系统的软磁材料

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Most of the high energy physics experiments require their detectors to be embedded in a high intensity magnetic field. In particular the biggest of them, ATLAS, running in the CERN Large Hadron Collider(LHC) particle accelerator, generates a field of 2 T by means of a gigantic toroidal magnet working in open air. Its future phase 2 upgrade plans to move the DC/DC power supplies from the present positions on the external balconies directly on the detectors, where the field is of the order of 1 T. This presentation describes the development of samples made of special magnetic material for inductor cores suitable to work in such an environment. Starting from iron-silicon powders, at FN plant a plastic forming process, based on powder extrusion, injection moulding and sintering, was developed. To get the best compromise between the forming process requirements(good coupling among the metallic powder and the organic components to assure the right mouldability) and the debinding and sintering conditions, several mixtures (with different percentages and kind of organic additives) were experimented. A proper mould was designed and realized to get torous-shaped prototypes. The preliminary results of the physical-microstructural characterization performed on the first prototypes made will be shown.
机译:大部分高能物理实验需要其的检测器将要被嵌入在一个高强度磁场。特别地,最大其中,ATLAS,在CERN大型强子对撞机(LHC)粒子加速器运行,借助于一个巨大的环形磁铁在敞开的空气工作,生成2 T的字段。其未来的第2个阶段升级计划从在外部阳台直接在检测器,其中该字段为1个T.这呈现的顺序的本位置移动至DC / DC电源描述样品进行的特殊磁性材料的开发对于电感器磁芯适于工作在这样的环境。从铁 - 硅粉末的塑料成形工艺开始,在FN植物,基于粉末挤出,注射成型和烧结,被开发。为了得到在成形过程的要求之间的最佳折衷(良好的耦合的金属粉末和有机成分中,以确保正确的成形性)和脱脂和烧结条件下,几种的混合物(具有不同的百分比和种有机添加剂)进行了实验。一个适当的模具设计并实现获得torous形的原型。上所做的第一个原型进行物理 - 显微组织特征的初步结果将被显示。

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