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    • 2. 发明授权
    • Eyeglass lens processing apparatus
    • 眼镜镜片加工设备
    • US08506352B2
    • 2013-08-13
    • US12893745
    • 2010-09-29
    • Kyoji TakeichiRyoji ShibataMotoshi TanakaKatsuhiro NatsumeYuya Nakako
    • Kyoji TakeichiRyoji ShibataMotoshi TanakaKatsuhiro NatsumeYuya Nakako
    • B24B49/00B24B51/00
    • B24B9/14B24B9/146B24B47/225Y10T408/175
    • An eyeglass lens processing apparatus for processing a peripheral edge of an eyeglass lens, includes: a processing unit including a plurality of processing tools that process the peripheral edge of the eyeglass lens held by a lens chuck shaft; a calibrating lens; a mode selector that selects a calibration mode; a memory that stores calibration processing data for processing the calibrating lens to a predetermined shape; a detecting unit that includes a tracing stylus that contacts a surface of the calibrating lens which is processed by the processing unit based on the calibration processing data to detect the shape of the processed calibrating lens in the calibration mode; and a calculating unit that obtain calibration data by comparing a detected result by the detecting unit with the calibration processing data in the calibration mode.
    • 一种用于处理眼镜镜片的周缘的眼镜镜片处理装置,包括:处理单元,包括处理由透镜卡盘轴保持的眼镜镜片的周缘的多个处理工具; 校准镜头; 选择校准模式的模式选择器; 存储器,用于存储用于将校准透镜处理成预定形状的校准处理数据; 检测单元,其包括跟踪触针,所述跟踪触针基于所述校准处理数据接触所述校准透镜的表面,所述校准透镜的表面由所述处理单元处理,以在所述校准模式中检测所述经处理的校准透镜的形状; 以及计算单元,其通过将检测单元的检测结果与校准模式中的校准处理数据进行比较来获得校准数据。
    • 3. 发明授权
    • Eyeglass lens processing apparatus for processing periphery of eyeglass lens and eyeglass lens processing method
    • 用于处理眼镜镜片周边的眼镜镜片处理装置和眼镜镜片处理方法
    • US08366512B2
    • 2013-02-05
    • US12626708
    • 2009-11-27
    • Kyoji Takeichi
    • Kyoji Takeichi
    • B24B49/00
    • B24B9/14B24B51/00
    • An eyeglass lens processing apparatus including a lens edge position detecting unit for obtaining edge positions, an edge corner processing tool for processing an edge corner of the lens, a correction data input unit for inputting correction data to avoid interference between an edge and a nose pad arm, wherein the correction data includes data on a position of interference between the nose pad arm and the edge, data necessary for setting an amount of processing at an interference position, and an edge processing range, a processing data computing unit for determining a path of processing the edge corner, based on edge position data and the correction data, to obtain data on correction processing and a processing controller for processing the edge corner of the lens by the edge corner processing tool in accordance with the correction processing data.
    • 一种眼镜透镜处理装置,包括:用于获得边缘位置的透镜边缘位置检测单元,用于处理透镜的边缘角的边缘角处理工具;校正数据输入单元,用于输入校正数据,以避免边缘和鼻垫之间的干涉 臂,其中所述校正数据包括关于所述鼻垫臂和所述边缘之间的干涉位置的数据,用于设置干涉位置处的处理量所需的数据和边缘处理范围;处理数据计算单元,用于确定路径 基于边缘位置数据和校正数据来处理边缘角,以获得校正处理数据和用于根据校正处理数据由边缘角处理工具处理透镜的边缘角的处理控制器。
    • 4. 发明授权
    • Eyeglass lens processing apparatus
    • 眼镜镜片加工设备
    • US08260451B2
    • 2012-09-04
    • US12792438
    • 2010-06-02
    • Kyoji Takeichi
    • Kyoji Takeichi
    • G06F19/00B24B49/00
    • B24B9/148
    • An eyeglass lens processing apparatus comprising a processing control unit which performs polishing by controlling a lens rotating unit, a grindstone rotating unit and an axis-to-axis distance varying unit based on an input target lens shape so as to process a periphery of a lens, which has been finished, by a lens margin allowed for polishing by the polishing grindstone. The processing control unit controls the lens rotating unit, the grindstone rotating unit and the axis-to-axis distance varying unit based on a lens rotating speed V1 and the grindstone rotating speed Vw at least at the final rotation of the lens. The lens rotation speed V1 and the grindstone rotation speed Vw satisfy a condition in which an average interval between cyclic stripes appearing on a processed surface of the lens due to height fluctuations of the polishing grindstone is smaller than eye's resolution or is larger than 2 mm.
    • 一种眼镜透镜处理装置,包括:处理控制单元,其通过控制透镜旋转单元,砂轮旋转单元和基于输入目标透镜形状的轴对轴距离变化单元进行抛光,以处理透镜的周边 已经完成了被抛光磨石抛光的透镜边缘。 处理控制单元至少在透镜的最终旋转的基础上,基于透镜转速V1和磨石转速Vw来控制透镜旋转单元,砂轮旋转单元和轴对轴距离变化单元。 透镜旋转速度V1和砂轮转速Vw满足由于抛光砂轮的高度波动而出现在透镜的处理面上的循环条纹之间的平均间隔小于眼睛分辨率或大于2mm的条件。
    • 5. 发明授权
    • Eyeglass lens processing system
    • 眼镜镜片加工系统
    • US07925371B2
    • 2011-04-12
    • US11947183
    • 2007-11-29
    • Kyoji Takeichi
    • Kyoji Takeichi
    • G06F19/00H04Q5/22B23B51/08
    • B24B9/14B24B13/005B24B51/00Y10T408/34
    • An eyeglass lens processing system for processing an eyeglass lens includes: a data inputting device that inputs a left and right target lens shape data and a layout data; a cup attaching device that attaches a lens fixing cup used for processing the eyeglass lens, the cup including an IC tag capable of rewriting data, the cup attaching device including a left/right information inputting unit that inputs which of left and right eyeglass lenses the attached eyeglass lens is, and a writing device that writes processing information including the left/right identifying information to the IC tag; and an eyeglass lens processing device that holds the eyeglass lens and processes the lens, the eyeglass lens processing device including a reading device that reads the information stored to the IC tag and a setting unit that sets the processing information based on the read left/right identifying information.
    • 一种用于处理眼镜镜片的眼镜镜片处理系统包括:输入左右目标镜片形状数据和布局数据的数据输入装置; 连接用于处理眼镜镜片的镜片固定杯的杯子附接装置,杯子包括能够重写数据的IC标签,杯子附着装置包括左/右信息输入单元,其输入左右眼镜镜片中的哪一个 以及将包含左/右识别信息的处理信息写入IC标签的写入装置; 以及眼镜镜片处理装置,其保持所述眼镜镜片并处理所述镜片,所述眼镜镜片处理装置包括读取装置,所述读取装置读取存储在所述IC标签中的信息;以及设定部,其基于所读取的左右设定所述处理信息 识别信息。
    • 6. 发明授权
    • Eyeglass lens processing apparatus
    • 眼镜镜片加工设备
    • US07713108B2
    • 2010-05-11
    • US12058809
    • 2008-03-31
    • Kyoji Takeichi
    • Kyoji Takeichi
    • B24B1/00B24B7/19B24B7/30B24B49/00B24B51/00B24B5/00B24B29/00B24B3/00B24B17/00B24B13/00G06F19/00
    • B24B9/148
    • In an eyeglass lens processing apparatus for beveling a peripheral edge of an eyeglass lens, if the high curve lens processing mode is selected by a mode selector, a computing unit acquires a high curve bevel path for locating the bevel apex on a front surface curve of the eyeglass lens or for locating the bevel apex at a position shifted by a predetermined quantity from the front surface curve toward the rear side on the basis of the edge position information acquired by the edge position detector, thereby providing high curve beveling data for the rear surface beveling grindstone, or for the front surface and rear surface beveling grindstones; and a beveling controller bevels the peripheral edge of the eyeglass lens by the rear surface beveling grindstone, or by the front surface and rear surface beveling grindstones on the basis of the high curve beveling data.
    • 在用于使眼镜镜片的周缘倒角的眼镜镜片处理装置中,如果通过模式选择器选择了高曲线透镜处理模式,则计算单元获取用于将斜角顶点定位在前曲面 根据由边缘位置检测器获取的边缘位置信息将斜角顶点定位在从前表面曲线向后侧偏移预定量的位置处,从而为后方提供高曲率斜角数据 表面坡口磨石,或用于前表面和后表面的斜面磨石; 并且斜切控制器通过后表面斜面磨石或由前曲面和后表面的斜面磨石基于高曲线斜切数据来折叠眼镜镜片的外围边缘。
    • 7. 发明申请
    • EYEGLASS LENS PROCESSING APPARATUS
    • 眼镜镜片加工设备
    • US20060264154A1
    • 2006-11-23
    • US11412876
    • 2006-04-28
    • Toshiaki MizunoKyoji Takeichi
    • Toshiaki MizunoKyoji Takeichi
    • B24B51/00
    • B24B47/225B24B9/148
    • An eyeglass lens processing apparatus includes: a lens rotating unit having lens chucking shafts which hold an eyeglass lens, and a first motor which rotates the chucking shafts; an axis-to-axis distance changing unit having a second motor which changes an axis-to-axis distance between a center axis of rotation of a processing tool which processes a periphery of the lens and a center axis of rotation of the chucking shafts; a torque detector which directly or indirectly detects torque transmitted to the chucking shafts; a torque level setting unit which variably sets an allowable torque level; and a driving controller which controls at least one of driving of the first motor and driving of the second motor to adjust at least one of a rotational speed of the chucking shafts and a processing pressure of the lens so that the torque falls below the allowable torque level.
    • 一种眼镜透镜加工装置,具备:具有保持眼镜镜片的镜片夹持轴的镜头旋转部件和使夹持轴旋转的第一马达; 轴对轴距离改变单元,具有第二电动机,其改变处理所述透镜周边的处理工具的旋转中心轴与所述夹紧轴的旋转中心轴之间的轴向轴距离; 直接或间接地检测传递到夹紧轴的扭矩的扭矩检测器; 扭矩水平设定单元,其可变地设定容许转矩水平; 以及驱动控制器,其控制所述第一电动机的驱动和所述第二电动机的驱动中的至少一个,以调节所述夹持轴的转速和所述透镜的处理压力中的至少一个,使得所述转矩低于所述容许转矩 水平。
    • 8. 发明授权
    • Eyeglass lens processing apparatus
    • 眼镜镜片加工设备
    • US08260450B2
    • 2012-09-04
    • US11711820
    • 2007-02-28
    • Kyoji Takeichi
    • Kyoji Takeichi
    • B24B1/00B24B5/00B24B49/00G02C1/02G02C13/00G06F19/00
    • B28D1/143
    • An eyeglass lens processing apparatus for forming a hole on an eyeglass lens to attach a rimless frame to the lens, includes: a lens chuck that holds the lens; a drilling tool; a designating unit that designates a position of a hole; a unit that measures or inputs an inclined angle of a refractive surface of the lens at the designated hole position; an arithmetic unit that obtains a hole angle with respect to a predetermined reference axis based on the inclined angle; a control unit that controls a positional relationship between the held lens and the drilling tool based on the obtained hole angle to perform a drilling; and an input unit that inputs a modified hole angle based on the obtained hole angle. The control unit controls the positional relationship between the held lens and the drilling tool based on the modified hole angle to perform a re-drilling.
    • 一种用于在眼镜镜片上形成孔以将无框框架附接到透镜的眼镜透镜加工设备,包括:保持透镜的透镜卡盘; 钻具; 指定孔的位置的指定单元; 测量或输入透镜在指定孔位置处的折射表面的倾斜角度的单元; 算术单元,基于倾斜角度获得相对于预定参考轴的孔角; 控制单元,其基于获得的孔角度来控制所保持的透镜和所述钻孔工具之间的位置关系,以执行钻孔; 以及输入单元,其基于获得的孔角度输入修改的孔角度。 控制单元基于改进的孔角来控制被保持的透镜和钻孔工具之间的位置关系,以执行重新钻孔。
    • 10. 发明授权
    • Eyeglass lens processing method
    • 眼镜镜片加工方法
    • US07611243B2
    • 2009-11-03
    • US11831510
    • 2007-07-31
    • Kyoji Takeichi
    • Kyoji Takeichi
    • G02C13/00
    • B24B9/146B28D1/143
    • An eyeglass lens processing method for processing a hole for attaching a rimless frame to an eyeglass lens, the method includes: selecting a pattern used for a processing from a plurality of hole patterns; selecting a first drilling in which an angle of the processed hole is normal at least to a lens surface of a demo lens or a second drilling in which the angle of the processed hole is normal to a lens surface of the eyeglass lens; and when the first drilling is selected, (a) inputting a surface curve of the demo lens, (b) inputting hole position data of the demo lens for the selected pattern, (c) determining an hole angle and a hole position for the eyeglass lens based on the surface curve of the demo lens and the hole position data to obtain drilling data.
    • 一种用于处理用于将无框框架附接到眼镜镜片的孔的眼镜透镜处理方法,所述方法包括:从多个孔图案中选择用于处理的图案; 选择第一钻孔,其中处理孔的角度至少与演示镜片的透镜表面正常,或者第二钻孔,其中加工孔的角度垂直于眼镜镜片的透镜表面; 并且当选择第一钻孔时,(a)输入演示镜头的曲面,(b)输入所选图案的演示镜头的孔位置数据,(c)确定眼镜的孔角度和孔位置 透镜基于演示镜头的曲面和孔位数据获得钻孔数据。