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    • 1. 发明授权
    • Corneal surgical apparatus
    • 角膜手术器械
    • US06203555B1
    • 2001-03-20
    • US09517188
    • 2000-03-02
    • Masanori AmanoMasahiro SugimuraRyoji Shibata
    • Masanori AmanoMasahiro SugimuraRyoji Shibata
    • A61F900
    • A61F9/013
    • A corneal surgical apparatus for incising a cornea of a patient's eye in a layered form includes: a suction ring unit, having a circular opening, that is to be vacuum-fixed onto a peripheral part of the cornea; a rotatable shaft; an eccentric pin projecting from a distal end of the shaft, the eccentric pin being located at a position offset from a rotational central axis of the shaft; and a cutting unit movable in an incising direction above the suction ring unit. The cutting unit including: cornea applanating means that applanates the cornea within the opening into a substantially flat form; a blade that incises the cornea; a first oscillation transmitting member having a part with which the eccentric pin is engaged; a second oscillation transmitting member having a part with which a part of the first oscillation transmitting member is engaged; and a holder that holds the first and second oscillation transmitting members to be movable in a lateral direction which is perpendicular to the rotational central axis of the shaft. Movement of the second oscillation transmitting member in the lateral direction causes the blade to be moved in the same direction.
    • 用于以分层形式切割患者眼睛的角膜的角膜手术装置包括:具有圆形开口的抽吸环单元,其被真空固定到角膜的周边部分; 可旋转轴; 从所述轴的远端突出的偏心销,所述偏心销位于偏离所述轴的旋转中心轴线的位置; 以及切割单元,其能够沿着所述吸入环单元上方的切割方向移动。 切割单元包括:角膜压平装置,其将开口内的角膜压平成基本平坦的形式; 切割角膜的刀片; 第一振动传递构件,其具有与所述偏心销接合的部分; 第二振动传递部件,其具有与第一振动传递部件的一部分接合的部分; 以及保持器,其保持所述第一和第二振动传递部件能够在垂直于所述轴的旋转中心轴线的横向方向上移动。 第二振动传递构件在横向上的移动使得叶片沿相同的方向移动。
    • 2. 发明授权
    • Corneal surgical apparatus
    • 角膜手术器械
    • US06344046B2
    • 2002-02-05
    • US09753568
    • 2001-01-04
    • Masahiro SugimuraRyoji Shibata
    • Masahiro SugimuraRyoji Shibata
    • A61F900
    • A61F9/013
    • A corneal surgical apparatus for incising a cornea of a patient's eye in a layered form includes: a suction ring unit, having a circular opening, that is to be vacuum-fixed onto a peripheral part of the cornea; a rotatable shaft; an eccentric pin projecting from a distal end of the shaft, the eccentric pin being located at a position offset from a rotational central axis of the shaft; and a cutting unit movable in an incising direction above the suction ring unit. The cutting unit including: cornea applanating means that applanates the cornea within the opening into a substantially flat form; a blade that incises the cornea; a first oscillation transmitting member having a part with which the eccentric pin is engaged; a second oscillation transmitting member having a part with which a part of the first oscillation transmitting member is engaged; and a holder that holds the first and second oscillation transmitting members to be movable in a lateral direction which is perpendicular to the rotational central axis of the shaft. Movement of the second oscillation transmitting member in the lateral direction causes the blade to be moved in the same direction.
    • 用于以分层形式切割患者眼睛的角膜的角膜手术装置包括:具有圆形开口的抽吸环单元,其被真空固定到角膜的周边部分; 可旋转轴; 从所述轴的远端突出的偏心销,所述偏心销位于偏离所述轴的旋转中心轴线的位置; 以及切割单元,其能够沿着所述吸入环单元上方的切割方向移动。 切割单元包括:角膜压平装置,其将开口内的角膜压平成基本平坦的形式; 切割角膜的刀片; 第一振动传递构件,其具有与所述偏心销接合的部分; 第二振动传递部件,其具有与第一振动传递部件的一部分接合的部分; 以及保持器,其保持所述第一和第二振动传递部件能够在垂直于所述轴的旋转中心轴线的横向方向上移动。 第二振动传递构件在横向上的移动使得叶片沿相同的方向移动。
    • 3. 发明授权
    • Eyeglass lens processing apparatus
    • 眼镜镜片加工设备
    • US08671532B2
    • 2014-03-18
    • US12731434
    • 2010-03-25
    • Ryoji ShibataShinji Koike
    • Ryoji ShibataShinji Koike
    • B23P13/00B24B49/00B23C1/14B24B51/00
    • B28D1/143B24B9/148
    • An eyeglass lens processing apparatus includes: a mode selector for selecting an auxiliary lens processing mode; an eyeglass data input unit for inputting a first target lens shape of the eyeglass lens and a right target lens shape-to-left target lens shape distance; a first hole data input unit for inputting a position of a first hole, to which a first magnet is attached; a determination unit which determines second target lens shape of the auxiliary lens, a position of a second hole to which a second magnet is attached, positions of third holes to which a bridge is attached; and a processing controller which processes the auxiliary lenses based on the second target lens shape data, and drills the auxiliary lenses based on the second and third hole positions in the auxiliary lens processing mode.
    • 眼镜透镜处理装置包括:模式选择器,用于选择辅助透镜处理模式; 用于输入眼镜片的第一目标透镜形状的眼镜数据输入单元和右目标镜头从左到右的目标镜头形状距离; 第一孔数据输入单元,用于输入安装有第一磁体的第一孔的位置; 确定辅助透镜的第二目标透镜形状的确定单元,附接有第二磁体的第二孔的位置,安装有桥的第三孔的位置; 以及处理控制器,其基于第二目标透镜形状数据处理辅助透镜,并且在辅助透镜处理模式中基于第二和第三孔位置钻取辅助透镜。
    • 4. 发明授权
    • Lens grinding apparatus
    • 镜头研磨装置
    • US6099383A
    • 2000-08-08
    • US021275
    • 1998-02-10
    • Toshiaki MizunoRyoji Shibata
    • Toshiaki MizunoRyoji Shibata
    • G02C13/00B24B9/14B24B27/00B24B47/22B24B51/00G05B19/18B24B49/00
    • G05B19/184B24B27/0046B24B47/225B24B51/00B24B9/148G05B2219/35525G05B2219/45157G05B2219/45162
    • A lens grinding apparatus is improved to ensure that the angular edge portions of an eyeglass lens are easily ground to a desired shape. The improved lens grinding apparatus includes an input device for entering data on the processing shape of the lens, a detector for detecting the edge position of the lens on the basis of the entered shape data, a first calculator for determining processing data on the rough and fine processings of the lens on the basis of the detected edge position and the entered shape data, an angular edge portion processor which has a grinding wheel to process the angular edge portions of the finely processed lens and which moves the shaft of said grinding wheel relative to a shaft holding the lens, a second calculator which sets a plurality of zones of the lens and which performs different calculations in different zones such that the amount of processing the angular edge portions is determined in correspondence with the radius vector angle of the lens, and a controller for controlling the processing of the lens on the basis of the results of calculation by said first and second calculators.
    • 透镜研磨装置被改进以确保眼镜镜片的角边缘部分容易研磨成所需的形状。 改进的透镜研磨装置包括用于输入关于透镜的处理形状的数据的输入装置,用于基于输入的形状数据检测透镜的边缘位置的检测器,用于确定粗糙的处理数据的第一计算器和 基于检测到的边缘位置和输入的形状数据对透镜进行精细处理;角边缘部分处理器,其具有用于处理精细加工的透镜的角边缘部分的砂轮,并且使所述砂轮的轴相对移动 涉及保持透镜的轴,第二计算器,其设置透镜的多个区域,并且在不同区域中执行不同的计算,使得根据透镜的半径向量角确定角边缘部分的处理量, 以及控制器,用于根据所述第一和第二计算器的计算结果控制透镜的处理。
    • 5. 发明授权
    • Apparatus for grinding eyeglass lens
    • 用于研磨眼镜镜片的装置
    • US6048258A
    • 2000-04-11
    • US50358
    • 1998-03-31
    • Ryoji Shibata
    • Ryoji Shibata
    • B24B9/14B24B51/00B24B7/00
    • B24B9/14B24B51/00
    • A lens grinding apparatus that can process the edge of a lens to have a satisfactory polished surface and fit snugly into the user's eyeglass frame. The apparatus includes frame configuration data input device for entering data on the configuration of the eyeglass frame, layout data input device for entering data to be used in providing a layout of the lens corresponding to the eyeglass frame, lens rotating shafts that hold the lens therebetween and rotate it, a finishing abrasive wheel rotating shaft having a finish abrasive wheel, a polishing abrasive wheel rotating shaft having a polishing abrasive wheel, computer which, on the basis of the information from the frame configuration data input device and the layout data input device, determines the locus of processing with the polishing abrasive wheel such that the amount of polishing after finish processing increases as the point of polishing departs from the line connecting the polishing abrasive wheel rotating shaft and each of the lens rotating shafts, and processing controller which controls the processing of the lens based on the result of calculation by the computer.
    • 一种透镜研磨装置,其可以处理透镜的边缘以具有令人满意的抛光表面并且紧密地配合到使用者的眼镜框架中。 该装置包括用于输入关于眼镜架配置的数据的框架配置数据输入装置,用于输入用于提供与眼镜框对应的镜片的布局的数据的布局数据输入装置,将透镜保持在其间的透镜旋转轴 并将其旋转,具有抛光砂轮的抛光砂轮旋转轴,具有抛光砂轮的抛光砂轮旋转轴,基于来自框架配置数据输入装置的信息和布局数据输入装置的计算机 用抛光砂轮确定处理轨迹,使得精加工后的抛光量随着抛光点离开连接抛光砂轮旋转轴和每个透镜旋转轴的线而增加,并且控制器 根据计算机的计算结果对镜头进行处理。
    • 10. 发明授权
    • Eyeglass lens processing apparatus
    • 眼镜镜片加工设备
    • US08506351B2
    • 2013-08-13
    • US12749824
    • 2010-03-30
    • Ryoji ShibataToshiaki AsaokaYoichi Sugiura
    • Ryoji ShibataToshiaki AsaokaYoichi Sugiura
    • B24B49/00
    • B24B41/062B24B9/14B24B13/06
    • An eyeglass lens processing apparatus includes: a processing chamber; a pair of lens chuck shafts which chucks an eyeglass lens; a lens rotating unit including a motor for rotating the lens chuck shafts; a processing tool which processes a periphery of the lens; an axis-to-axis distance changing unit for changing an axis-to-axis distance between a rotating shaft attached to the processing tool and the lens chuck shafts; a data input unit for inputting processing condition data including a target lens shape; a processing controller which controls the lens rotating unit and the axis-to-axis changing unit to process the lens based on the input processing condition data a camera which is disposed in the processing chamber and takes a video picture of the processing of the lens; and a memory which stores video pictures and the processing condition data.
    • 一种眼镜透镜处理装置,包括:处理室; 一对夹着眼镜镜片的镜头卡盘轴; 透镜旋转单元,包括用于旋转透镜卡盘轴的马达; 处理透镜周边的处理工具; 轴对轴距离改变单元,用于改变附接到所述处理工具的旋转轴与所述透镜卡盘轴之间的轴线到轴线的距离; 数据输入单元,用于输入包括目标透镜形状的处理条件数据; 处理控制器,其控制所述镜头旋转单元和所述轴对轴线改变单元,以根据所述输入处理条件数据处理所述镜头,所述摄像机设置在所述处理室中并拍摄所述镜头的处理的视频画面; 以及存储视频图像和处理条件数据的存储器。