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    • 3. 发明授权
    • Two-dimensional collimator module, X-ray detector, X-ray CT apparatus, and method for assembling two-dimensional collimator module
    • 二维准直器模块,X射线检测器,X射线CT装置及二维准直器模块的组装方法
    • US09020093B2
    • 2015-04-28
    • US13407069
    • 2012-02-28
    • Haruo KurochiTakayuki Koike
    • Haruo KurochiTakayuki Koike
    • G21K1/02A61B6/00
    • G21K1/025A61B6/4291G21K1/02
    • A two-dimensional collimator module is provided. The two-dimensional collimator module includes first collimator plates arranged in a channel direction, second collimator plates arranged in a slice direction and combined with the first collimator plates to form a lattice, and a first block and a second block that hold the first collimator plates, wherein each of the first collimator plates is formed with slits, each of the second collimator plates is inserted through an associated row of the slits, first plate surfaces of the second collimator plates in the slice direction abut only first wall surfaces of first and second wall surfaces of the slits in the slice direction in a first set of the first collimator plates, and second plate surfaces of the second collimator plates opposite to the first plate surfaces abut only the second wall surfaces of the slits in a second set of first collimator plates.
    • 提供二维准直器模块。 二维准直器模块包括沿通道方向布置的第一准直器板,沿切片方向布置的第二准直器板,并与第一准直器板组合以形成格子;第一块和第二块,其将第一准直板 其中,所述第一准直板中的每一个形成有狭缝,所述第二准直板中的每一个插入穿过所述狭缝的相关行,所述第二准直器板的所述切片方向的第一板表面仅邻接第一和第二准直器的第一壁面 在第一组第一准直器板中的切片方向上的狭缝的壁表面和与第一平板表面相对的第二准直器板的第二板表面仅在第二组第一准直器中仅与狭缝的第二壁表面邻接 盘子
    • 4. 发明申请
    • TWO-DIMENSIONAL COLLIMATOR MODULE, X-RAY DETECTOR, X-RAY CT APPARATUS, AND METHOD FOR ASSEMBLING TWO-DIMENSIONAL COLLIMATOR MODULE
    • 两维收缩模块,X射线探测器,X射线CT装置以及组装二维收缩模块的方法
    • US20120219107A1
    • 2012-08-30
    • US13407069
    • 2012-02-28
    • Haruo KurochiTakayuki Koike
    • Haruo KurochiTakayuki Koike
    • A61B6/03B32B37/02G21K1/02
    • G21K1/025A61B6/4291G21K1/02
    • A two-dimensional collimator module is provided. The two-dimensional collimator module includes first collimator plates arranged in a channel direction, second collimator plates arranged in a slice direction and combined with the first collimator plates to form a lattice, and a first block and a second block that hold the first collimator plates, wherein each of the first collimator plates is formed with slits, each of the second collimator plates is inserted through an associated row of the slits, first plate surfaces of the second collimator plates in the slice direction abut only first wall surfaces of first and second wall surfaces of the slits in the slice direction in a first set of the first collimator plates, and second plate surfaces of the second collimator plates opposite to the first plate surfaces abut only the second wall surfaces of the slits in a second set of first collimator plates.
    • 提供二维准直器模块。 二维准直器模块包括沿通道方向布置的第一准直器板,沿切片方向布置的第二准直板,并与第一准直板相组合以形成格子;第一块和第二块,其将第一准直板 其中,所述第一准直板中的每一个形成有狭缝,所述第二准直板中的每一个插入穿过所述狭缝的相关行,所述第二准直器板的所述切片方向的第一板表面仅邻接第一和第二准直器的第一壁面 在第一组第一准直器板中的切片方向上的狭缝的壁表面和与第一平板表面相对的第二准直器板的第二板表面仅在第二组第一准直器中仅与狭缝的第二壁表面邻接 盘子
    • 9. 发明授权
    • Developing device and process cartridge for an image forming apparatus
    • 用于图像形成装置的显影装置和处理盒
    • US07171145B2
    • 2007-01-30
    • US11349244
    • 2006-02-08
    • Nobutaka TakeuchiHajime OyamaHiromitsu TakagakiTakayuki Koike
    • Nobutaka TakeuchiHajime OyamaHiromitsu TakagakiTakayuki Koike
    • G03G15/09
    • G03G15/09G03G2215/0634
    • A method of developing a latent image formed on an image carrier with toner, including causing a developer carrier, which faces the image carrier and accommodates a magnet therein, to support a developer having a toner and a magnetic carrier supporting the toner and convey the developer to a developing zone between the developer carrier and the image carrier, and providing an apparent coating ratio M of a surface of the developer carrier coated with the developer. The coating ration M is, in a zone upstream of the developing zone in a direction of rotation of the developer carrier, expressed as M=αA2+β (%), where α denotes a coefficient of the coating ratio, A2 denotes an amount of developer for a unit area, β denotes a value determined by a powder characteristic of the developer for an apparent coating ratio calculated with A2=0, and the coating ratio M is between 90% and 120%.
    • 一种利用调色剂在图像载体上形成潜像的方法,包括使面向图像载体的显影剂载体和容纳磁体的显影剂载体支撑着具有调色剂的显影剂和支撑调色剂的磁性载体并传送显影剂 到显影剂载体和图像载体之间的显影区域,并且提供涂覆有显影剂的显影剂载体的表面的表观涂布比M. 涂层比例M在显影剂载体的旋转方向的显影区上游区域中表示为M =αA2+β(%),其中α表示涂布比的系数,A2表示 显影剂为单位面积,β表示由A2 = 0计算出的表观涂布率的显影剂的粉末特性确定的值,涂布比M在90%至120%之间。