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    • 4. 发明授权
    • Eyeglass lens processing apparatus
    • 眼镜镜片加工设备
    • US08333636B2
    • 2012-12-18
    • US12329916
    • 2008-12-08
    • Kyoji TakeichiHirokatsu Obayashi
    • Kyoji TakeichiHirokatsu Obayashi
    • B24B13/00B24B49/16
    • B24B49/16B24B9/148
    • An eyeglass lens processing apparatus includes a processing control unit (50) which in the soft processing mode, roughs the lens such that the torque threshold value is set to a value Tθs lower than the threshold value TθN of a normal processing mode, and when torque detected by a sensor unit does not exceed the threshold value Tθs, a axis-to-axis distance varying unit or a lens rotating unit is controlled so that a cutting amount per rotation of the lens reaches a threshold cutting amount, and when the detected torque exceeds the threshold value Tθs, the axis-to-axis distance varying unit or the lens rotating unit is controlled so that the torque becomes lower than the threshold value Tθs to decrease the threshold cutting amount.
    • 眼镜透镜处理装置包括处理控制单元(50),其处于软处理模式,使透镜粗糙,使得转矩阈值被设定为低于正常处理模式的阈值T& T; T的值T 并且当由传感器单元检测到的扭矩不超过阈值T& s时,控制轴对轴距离变化单元或透镜旋转单元,使得每个旋转的切割量达到阈值切割量 ,并且当检测到的扭矩超过阈值T& s时,控制轴对轴距离变化单元或透镜旋转单元,使得转矩变得低于阈值T& s,s以减小阈值切割量。
    • 5. 发明授权
    • Eyeglass lens processing apparatus
    • 眼镜镜片加工设备
    • US08007344B2
    • 2011-08-30
    • US12058790
    • 2008-03-31
    • Hirokatsu ObayashiKyoji Takeichi
    • Hirokatsu ObayashiKyoji Takeichi
    • B24B49/00
    • B24B9/14B24B49/006B24B49/02B24B51/00
    • An eyeglass lens processing apparatus comprising: an edge position measuring unit for measuring an edge position of the lens; a moving unit that moves a feeler with respect to the lens chuck shaft; and a speed controller that calculates radius vector moving data for the moving unit with respect a rotating angle of the lens chuck shaft based on target lens shape data, and calculates a rotating speed of the lens chuck shaft rotating unit based on a change of the moving data with respect to a change of the rotating angle of the lens chuck shaft. The rotating speed at an area where the change of the moving data with respect to the change of the rotating angle is small is higher than the rotating speed at an area where the change of the moving data with respect to the change of the rotating angle is large.
    • 一种眼镜透镜处理装置,包括:边缘位置测量单元,用于测量所述透镜的边缘位置; 移动单元,其相对于所述透镜卡盘轴移动探针; 以及速度控制器,其基于目标透镜形状数据计算相对于所述透镜卡盘轴的旋转角度的所述移动单元的半径向量运动数据,并且基于所述移动的变化来计算所述透镜卡盘轴旋转单元的旋转速度 关于透镜卡盘轴的旋转角度的变化的数据。 移动数据相对于旋转角度的变化的变化小的区域的旋转速度高于移动数据相对于旋转角度的变化的变化的区域的旋转速度 大。
    • 7. 发明申请
    • EYEGLASS LENS PROCESSING APPARATUS
    • 眼镜镜片加工设备
    • US20090176442A1
    • 2009-07-09
    • US12329916
    • 2008-12-08
    • Kyoji TakeichiHirokatsu Obayashi
    • Kyoji TakeichiHirokatsu Obayashi
    • B24B13/00B24B49/16
    • B24B49/16B24B9/148
    • An eyeglass lens processing apparatus includes a processing control unit (50) which in the soft processing mode, roughs the lens such that the torque threshold value is set to a value Tθs lower than the threshold value TθN of a normal processing mode, and when torque detected by a sensor unit does not exceed the threshold value Tθs, a axis-to-axis distance varying unit or a lens rotating unit is controlled so that a cutting amount per rotation of the lens reaches a threshold cutting amount, and when the detected torque exceeds the threshold value Tθs, the axis-to-axis distance varying unit or the lens rotating unit is controlled so that the torque becomes lower than the threshold value Tθs to decrease the threshold cutting amount.
    • 一种眼镜镜片处理装置,包括处理控制单元(50),其处于软处理模式,使透镜粗糙化,使得转矩阈值被设定为低于正常处理模式的阈值TthtaN的值,并且当扭矩 由传感器单元检测到的数值不超过阈值Tthetas,轴对轴距离变化单元或透镜旋转单元被控制,使得每个旋转的切割量达到阈值切割量,并且当检测到的扭矩 超过阈值Tthetas,控制轴对轴距离变化单元或透镜旋转单元,使得转矩变得低于阈值T thtas以降低阈值切割量。
    • 8. 发明申请
    • EYEGLASS LENS PROCESSING APPARATUS
    • 眼镜镜片加工设备
    • US20080248721A1
    • 2008-10-09
    • US12058790
    • 2008-03-31
    • Hirokatsu ObayashiKyoji Takeichi
    • Hirokatsu ObayashiKyoji Takeichi
    • B24B51/00
    • B24B9/14B24B49/006B24B49/02B24B51/00
    • An eyeglass lens processing apparatus comprising:an edge position measuring unit for measuring an edge position of the lens;a moving unit that moves a feeler with respect to the lens chuck shaft; anda speed controller that calculates radius vector moving data for the moving unit with respect a rotating angle of the lens chuck shaft based on target lens shape data, and calculates a rotating speed of the lens chuck shaft rotating unit based on a change of the moving data with respect to a change of the rotating angle of the lens chuck shaft. The rotating speed at an area where the change of the moving data with respect to the change of the rotating angle is small is higher than the rotating speed at an area where the change of the moving data with respect to the change of the rotating angle is large.
    • 一种眼镜透镜处理装置,包括:边缘位置测量单元,用于测量所述透镜的边缘位置; 移动单元,其相对于所述透镜卡盘轴移动探针; 以及速度控制器,其基于目标透镜形状数据计算相对于所述透镜卡盘轴的旋转角度的所述移动单元的半径向量运动数据,并且基于所述移动的变化来计算所述透镜卡盘轴旋转单元的旋转速度 关于透镜卡盘轴的旋转角度的变化的数据。 移动数据相对于旋转角度的变化的变化小的区域的旋转速度高于移动数据相对于旋转角度的变化的变化的区域的旋转速度 大。
    • 10. 发明授权
    • Eyeglass lens processing apparatus
    • 眼镜镜片加工设备
    • US07731565B2
    • 2010-06-08
    • US12059544
    • 2008-03-31
    • Ryoji ShibataHirokatsu Obayashi
    • Ryoji ShibataHirokatsu Obayashi
    • B24B49/00
    • B24B9/14
    • 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 the 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率透镜处理模式,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。