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    • 23. 发明授权
    • Apparatus for making magnetic recording medium
    • 磁记录介质制造装置
    • US4672913A
    • 1987-06-16
    • US861608
    • 1986-05-09
    • Mikihiko KatoShinichi KatoKazunori KomatsuShigeo Komine
    • Mikihiko KatoShinichi KatoKazunori KomatsuShigeo Komine
    • C09D5/23G11B5/845B05B5/02
    • G11B5/845
    • In a method of and apparatus for making a magnetic recording medium, a plurality of rod-like orientation magnets are positioned in spaced relation in the movement direction of a non-magnetic substrate so that the magnetic pole facing the non-magnetic substrate is different between adjacent orientation magnets and the orientation magnets are oblique with respect to the substrate movement direction and alternately point reversely. The spaces between the orientation magnets are adjusted so that the intensity of the magnetic field generated in the substrate movement direction between adjacent orientation magnets is 50 Oe or less. A magnetic coating composition is applied onto the non-magnetic substrate, and magnetic grains contained in the composition are randomly orientated by the orientation magnets.
    • 在制造磁记录介质的方法和装置中,多个杆状取向磁体在非磁性基板的移动方向上以间隔的关系定位,使得面对非磁性基板的磁极在 相邻取向磁铁和取向磁铁相对于基板移动方向倾斜并交替地反向地指向。 调整取向磁体之间的空间,使得在相邻取向磁体之间的基板移动方向上产生的磁场的强度为50Oe以下。 将磁性涂料组合物施加到非磁性基材上,并且组合物中所含的磁性颗粒通过取向磁体随机取向。
    • 24. 发明授权
    • Method for making magnetic recording medium
    • 制造磁记录介质的方法
    • US4652461A
    • 1987-03-24
    • US814989
    • 1985-12-31
    • Mikihiko KatoShinichi KatoKazunori KomatsuShigeo Komine
    • Mikihiko KatoShinichi KatoKazunori KomatsuShigeo Komine
    • C09D5/23G11B5/845B05D3/14
    • G11B5/845
    • In a method of and apparatus for making a magnetic recording medium, a plurality of rod-like orientation magnets are positioned in spaced relation in the movement direction of a non-magnetic substrate so that the magnetic pole facing the non-magnetic substrate is different between adjacent orientation magnets and the orientation magnets are oblique with respect to the substrate movement direction and alternately point reversely. The spaces between the orientation magnets are adjusted so that the intensity of the magnetic field generated in the substrate movement direction between adjacent orientation magnets is 50 Oe or less. A magnetic coating composition is applied onto the non-magnetic substrate, and magnetic grains contained in the composition are randomly orientated by the orientation magnets.
    • 在制造磁记录介质的方法和装置中,多个杆状取向磁体在非磁性基板的移动方向上以间隔的关系定位,使得面对非磁性基板的磁极在 相邻取向磁铁和取向磁铁相对于基板移动方向倾斜并交替地反向地指向。 调整取向磁体之间的空间,使得在相邻取向磁体之间的基板移动方向上产生的磁场的强度为50Oe以下。 将磁性涂料组合物施加到非磁性基材上,并且组合物中所含的磁性颗粒通过取向磁体随机取向。
    • 26. 发明授权
    • Fluoroscopy
    • 透视
    • US08155266B2
    • 2012-04-10
    • US12672420
    • 2008-06-12
    • Katsuhiro MasuoMasahiro TanakaMikihiko Kato
    • Katsuhiro MasuoMasahiro TanakaMikihiko Kato
    • A61B6/02
    • A61B6/487A61B6/04A61B6/0421A61B6/06A61B6/4283A61B6/4441A61B6/481A61B6/587
    • When urinary organ contrasting inspection is performed by using a fluoroscopy for digestive organs, a region of interest such as a bladder often comes to a vicinity of a foot side end of a table top. Consequently, it is often the case that an irradiation field cannot be limited to a suitable area with respect to the region of interest and only an oblique photography can be performed. When the urinary organ contrasting inspection is performed, an X-ray tube device (1), an X-ray diaphragm (16), and an X-ray image detector (3) are interlocked to enable a foot side end of the irradiation field to be consistent with a foot side end of the X-ray image detector (3). Thus, a focal point (1A) of the X-ray tube device (1) can be moved directly above the foot side end of the X-ray image detector (3).
    • 当通过对消化器官进行荧光透视进行尿器官对比检查时,诸如膀胱的感兴趣区域经常到达台面的足侧端附近。 因此,通常情况下,照射场不能限于相对于感兴趣区域的适当区域,并且只能执行倾斜摄影。 当执行泌尿器官对比检查时,将X射线管装置(1),X射线光圈(16)和X射线图像检测器(3)互锁,以使照射场的脚侧端 与X射线图像检测器(3)的脚侧端部一致。 因此,X射线管装置(1)的焦点(1A)可以直接移动到X射线图像检测器(3)的脚侧端部的上方。