MANUFACTURING APPARATUS FOR METAL POWDER AND MANUFACTURING METHOD THEREOF

    公开(公告)号:US20210323064A1

    公开(公告)日:2021-10-21

    申请号:US17363109

    申请日:2021-06-30

    Abstract: A metal powder producing apparatus comprising a melted metal supplying part discharging a melted metal, a cylinder body provided below the melted metal supplying part, and a cooling liquid layer forming part forming a flow of a cooling liquid for cooling the melted metal discharged from the melted metal supplying part along an inner circumference face of the cylinder body, wherein the cooling liquid layer forming part has a primary pressure reservoir, and the primary pressure reservoir is provided on an outer circumference part of the cylinder body.

    COIL COMPONENT
    24.
    发明申请
    COIL COMPONENT 审中-公开

    公开(公告)号:US20200279675A1

    公开(公告)日:2020-09-03

    申请号:US16800299

    申请日:2020-02-25

    Abstract: A coil component having high inductance while suppressing core loss is obtained. The coil component includes a coil and a magnetic core. The magnetic core has a laminated body in which soft magnetic layers are laminated. Micro gaps are formed in the soft magnetic layers. The soft magnetic layers are divided into at least two or more small pieces by the micro gaps. A structure made of Fe-based nano-crystals is observed in the soft magnetic layers.

    ANALYSIS METHOD OF COMPOSITION NETWORK TOPOLOGY STRUCTURE AND ANALYSIS PROGRAM THEREOF

    公开(公告)号:US20180180643A1

    公开(公告)日:2018-06-28

    申请号:US15717488

    申请日:2017-09-27

    CPC classification number: G01Q30/04 H01F1/15308

    Abstract: An analysis method of a composition network topology structure includes obtaining a three-dimensional body for analysis capable of being used for three-dimensional measurement of a concentration distribution of a specific element contained in a sample within a predetermined measurement range. The three-dimensional body for analysis is divided into unit grids composed of a plurality of finer three-dimensional bodies. An amount of the specific element contained in each of the unit grids is obtained. Maximum-point grids respectively having a largest amount of the specific element among adjacent unit grids are obtained. The composition network topology structure of the specific element owned by the sample is quantified in relation to the maximum-point grids contained in the three-dimensional body for analysis.

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