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    • 3. 发明授权
    • Device and method for measuring surface temperature of cast piece
    • 铸件表面温度测量装置及方法
    • US09052242B2
    • 2015-06-09
    • US13264056
    • 2010-01-08
    • Hiroshi HaradaMasanori YamanaAtsushi SaidaMasaki NagashimaTomohiro Konno
    • Hiroshi HaradaMasanori YamanaAtsushi SaidaMasaki NagashimaTomohiro Konno
    • G01K7/00G01K7/02G01K11/00G01K7/38B22D2/00
    • G01K7/38B22D2/006G01K2217/00
    • A cast piece surface temperature measuring device includes: a magnetic field exciting device which applies an AC magnetic field substantially perpendicular to a surface of a cast piece; a magnetic field detecting device which detects the AC magnetic field to detect a magnetic flux varied in response to a surface temperature of the cast piece; and a surface temperature deriving device which derives the surface temperature of the cast piece based on an induced electromotive force obtained by detecting the AC magnetic field by the magnetic field detecting device and a predetermined relation data. The magnetic field exciting device includes a solenoidal excitation coil, the magnetic field detecting device includes a solenoidal detection coil interposed between the surface of the cast piece and the excitation coil, and the relation data indicates a correspondence relationship between the surface temperature of the cast piece and the induced electromotive force in a temperature range including a predetermined Curie point.
    • 铸件表面温度测量装置包括:施加基本垂直于铸件表面的交流磁场的磁场激励装置; 磁场检测装置,其检测AC磁场以检测响应于铸件的表面温度而变化的磁通量; 以及表面温度导出装置,其基于通过由磁场检测装置检测交流磁场和预定关系数据而获得的感应电动势导出铸件的表面温度。 磁场激励装置包括螺线管励磁线圈,磁场检测装置包括插入在铸件表面和励磁线圈之间的螺线管检测线圈,关系数据表示铸件表面温度之间的对应关系 以及在包括预定居里点的温度范围内的感应电动势。
    • 4. 发明申请
    • DEVICE AND METHOD FOR MEASURING SURFACE TEMPERATURE OF CAST PIECE
    • 用于测量铸件表面温度的装置和方法
    • US20120038353A1
    • 2012-02-16
    • US13264056
    • 2010-01-08
    • Hiroshi HaradaMasanori YamanaAtsushi SaidaMasaki NagashimaTomohiro Konno
    • Hiroshi HaradaMasanori YamanaAtsushi SaidaMasaki NagashimaTomohiro Konno
    • G01R33/12
    • G01K7/38B22D2/006G01K2217/00
    • A cast piece surface temperature measuring device includes: a magnetic field exciting device which applies an AC magnetic field substantially perpendicular to a surface of a cast piece; a magnetic field detecting device which detects the AC magnetic field to detect a magnetic flux varied in response to a surface temperature of the cast piece; and a surface temperature deriving device which derives the surface temperature of the cast piece based on an induced electromotive force obtained by detecting the AC magnetic field by the magnetic field detecting device and a predetermined relation data. The magnetic field exciting device includes a solenoidal excitation coil, the magnetic field detecting device includes a solenoidal detection coil interposed between the surface of the cast piece and the excitation coil, and the relation data indicates a correspondence relationship between the surface temperature of the cast piece and the induced electromotive force in a temperature range including a predetermined Curie point.
    • 铸件表面温度测量装置包括:施加基本垂直于铸件表面的交流磁场的磁场激励装置; 磁场检测装置,其检测AC磁场以检测响应于铸件的表面温度而变化的磁通量; 以及表面温度导出装置,其基于通过由磁场检测装置检测交流磁场和预定关系数据而获得的感应电动势导出铸件的表面温度。 磁场激励装置包括螺线管励磁线圈,磁场检测装置包括插入在铸件表面和励磁线圈之间的螺线管检测线圈,关系数据表示铸件表面温度之间的对应关系 以及在包括预定居里点的温度范围内的感应电动势。
    • 9. 发明申请
    • CELL-ADHESIVE PHOTOCONTROLLABLE BASE MATERIAL
    • 细胞粘合光电材料基材
    • US20140011960A1
    • 2014-01-09
    • US14002192
    • 2012-02-06
    • Tomohiro KonnoKazuhiko IshiharaBatzaya ByambaaHisashi SugiyamaSatoshi Ozawa
    • Tomohiro KonnoKazuhiko IshiharaBatzaya ByambaaHisashi SugiyamaSatoshi Ozawa
    • C12N5/071
    • C12N5/0602C12M25/02C12M33/00C12M47/04
    • In analyzing, fractionating, and culturing cells alive, operations can be more simply made in real time and culture can be performed while removing unnecessary cells from cultured cells for purification. Desired cells are also analyzed and fractionated from the cultured cells to increase the purity, recovery rate, and viability of the cells. A cell-adhesive photocontrollable base material is used in which light irradiation causes the bond dissociation of a photolabile group comprising an O-nitrobenzyl skeleton to irreversibly change the surface of the irradiated portion thereof from that of the cell-adhesive material to that of a non-cell-adhesive material. Cell images are detected and analyzed to obtain the positional information of desired cells. Based on this information, areas among cells and a cell-adhesive photocontrollable material are cut by second light irradiation. On the other hand, the surface of the base material is changed from a cell-adhesive one to a non-cell-adhesive one by first light irradiation to produce the detachment between cells and the base material. This enables cells to be analyzed and fractionated alive.
    • 在细胞分析,分离和培养细胞中,可以更简单地进行操作,并且可以在从培养细胞中除去不需要的细胞以进行纯化的同时进行培养。 还对所需的细胞进行分析并从培养的细胞中分离,以提高细胞的纯度,回收率和活力。 使用细胞粘合剂可光控制的基材,其中光照射导致包含O-硝基苄基骨架的光不稳定基团的键解离不可逆地将其照射部分的表面从细胞粘合剂材料的表面改变为非 - - 细胞粘合剂材料。 检测并分析细胞图像以获得所需细胞的位置信息。 基于该信息,通过第二次光照射来切断细胞和细胞粘合剂可光控制材料中的区域。 另一方面,通过第一光照射将基材的表面从电池粘合剂的表面改变为非电池粘合的表面,以产生电池与基材之间的分离。 这使得细胞能够被分析和活化分离。