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    • 1. 发明授权
    • Method of moving printing tables in screen printing apparatus, and printing table driving unit therefor
    • 在丝网印刷装置中移动印刷台的方法及其印刷台驱动单元
    • US08453568B2
    • 2013-06-04
    • US12802140
    • 2010-05-28
    • Naoki NaoiKazushi GotoTakashi SuzukiMotoshi Tanaka
    • Naoki NaoiKazushi GotoTakashi SuzukiMotoshi Tanaka
    • B41M1/12
    • B41F15/26
    • In a screen printing apparatus, a first printing table and a second printing table are alternately driven to move horizontally between a workpiece introducing section and a workpiece printing section by a table driving unit. The table driving unit is constituted so that the first printing table is vertically moved from a first level to a second level during the horizontal movement of the first printing table, and so that the second printing table is maintained at the first level during the horizontal movement of the second printing table, whereby the first printing table can pass by the second printing table without interference therebetween when these tables meet each other. In either of the workpiece introducing section and the workpiece printing section, each of the first and second printing tables is always located at the same first level, and thus an unprocessed workpiece (W) loaded onto each of the first and second tables can be subjected to a screen printing process in the same control manner.
    • 在丝网印刷装置中,第一印刷台和第二印刷台交替地被驱动以通过工作台驱动单元在工件引入部和工件印刷部之间水平移动。 台面驱动单元被构造成使得第一印刷台在第一印刷台的水平移动期间从第一层次垂直移动到第二层,并且使得第二印刷台在水平移动期间保持在第一水平 由此当这些表彼此相遇时,第一印刷台可以通过第二印刷台而不受其间的干扰。 在工件引入部和工件印刷部中的任一个中,第一印刷台和第二印刷台中的每一个始终位于相同的第一层,因此可以承受加载到第一和第二台中的每一个上的未加工的工件(W) 以相同的控制方式进行丝网印刷处理。
    • 2. 发明申请
    • Method of moving printing tables in screen printing apparatus, and printing table driving unit therefor
    • 在丝网印刷装置中移动印刷台的方法及其印刷台驱动单元
    • US20100313773A1
    • 2010-12-16
    • US12802140
    • 2010-05-28
    • Naoki NaoiKazushi GotoTakashi SuzukiMotoshi Tanaka
    • Naoki NaoiKazushi GotoTakashi SuzukiMotoshi Tanaka
    • B05C17/08B41M1/12
    • B41F15/26
    • In a screen printing apparatus, a first printing table and a second printing table are alternately driven to move horizontally between a workpiece introducing section and a workpiece printing section by a table driving unit. The table driving unit is constituted so that the first printing table is vertically moved from a first level to a second level during the horizontal movement of the first printing table, and so that the second printing table is maintained at the first level during the horizontal movement of the second printing table, whereby the first printing table can pass by the second printing table without interference therebetween when these tables meet each other. In either of the workpiece introducing section and the workpiece printing section, each of the first and second printing tables is always located at the same first level, and thus an unprocessed workpiece (W) loaded onto each of the first and second tables can be subjected to a screen printing process in the same control manner.
    • 在丝网印刷装置中,第一印刷台和第二印刷台交替地被驱动以通过工作台驱动单元在工件引入部和工件印刷部之间水平移动。 台面驱动单元被构造成使得第一印刷台在第一印刷台的水平移动期间从第一层次垂直移动到第二层,并且使得第二印刷台在水平移动期间保持在第一水平 由此当这些表彼此相遇时,第一印刷台可以通过第二印刷台而不受其间的干扰。 在工件导入部和工件印刷部中的任一个中,第一印刷台和第二印刷台中的每一个始终位于相同的第一层,因此可以承受加载到第一和第二台中的每一个上的未加工的工件(W) 以相同的控制方式进行丝网印刷处理。
    • 4. 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。
    • 6. 发明授权
    • Eyeglass lens processing apparatus
    • 眼镜镜片加工设备
    • US08113912B2
    • 2012-02-14
    • US12184587
    • 2008-08-01
    • Motoshi Tanaka
    • Motoshi Tanaka
    • B24B51/00B24B9/14
    • B24B13/0037B24B13/005B24B55/02
    • An eyeglass lens processing apparatus includes: a processing chamber for processing the lens; a grinding water supply unit which includes a first switch unit for turning on/off a supply of grinding water to a first nozzle for ejecting grinding water toward a processing point of the lens; a cleaning water supply unit which includes a second switch unit for turning on/off a supply of cleaning water to a second nozzle for ejecting cleaning water for cleaning processing refuse of the lens scattered in the processing chamber. According to a selection signal indicating a material of the lens being plastic, the control unit controls the first switch unit to turn on the supply of the grinding water in whole processing processes, and controls the second switch unit to turn off the supply of the cleaning water in the whole processing processes.
    • 一种眼镜透镜加工装置,具备:处理所述透镜的处理室; 研磨供水单元,其包括用于将研磨水供给到第一喷嘴的开/关的第一开关单元,用于朝向所述透镜的处理点喷射研磨水; 一个清洁水供应单元,它包括一个第二开关单元,用于打开/关闭向第二喷嘴供应清洁水,用于喷射清洗水,以清理处理废弃物的处理废物。 根据指示透镜材料为塑料的选择信号,控制单元控制第一开关单元,以在整个处理过程中接通研磨水的供应,并且控制第二开关单元以关闭清洁的供应 水在整个加工过程中。
    • 7. 发明授权
    • Eyeglass lens processing apparatus
    • 眼镜镜片加工设备
    • US07335087B2
    • 2008-02-26
    • US11606053
    • 2006-11-30
    • Motoshi TanakaYoichi Sugiura
    • Motoshi TanakaYoichi Sugiura
    • B24B49/00
    • B24B9/146B24B9/148B24B41/061B24B49/16
    • An eyeglass lens processing apparatus includes: a controller that controls a second driver for rotating lens chucks for chucking an eyeglass lens and a third driver for changing an axis-to-axis distance between an axis of a processing tool and an axis of the lens chucks so that a processing load falls below an allowable value; and a processing mode selector that selects one of a first processing mode in which the allowable value is set to be high, and a second processing mode in which the allowable value is set to be low so as to suppress axis deviation when the lens having a surface slipping readily is processed. The controller controls the first driver so that a second chucking pressure of the lens chucks when the second processing mode is selected is smaller than a first chucking pressure of the lens chucks when the first processing mode is selected.
    • 一种眼镜透镜处理装置,包括:控制器,其控制用于旋转用于夹持眼镜镜片的透镜卡盘的第二驱动器和用于改变处理工具的轴线与透镜卡盘的轴线之间的轴线到轴距离的第三驱动器 使得处理负载低于允许值; 以及处理模式选择器,其选择其中允许值被设置为高的第一处理模式中的一个,以及允许值被设置为低的第二处理模式,以便当具有 表面滑动容易被处理。 当选择第二处理模式时,控制器控制第一驱动器,使得当选择第二处理模式时,透镜卡盘的第二夹紧压力小于当选择第一处理模式时透镜卡盘的第一夹紧压力。
    • 8. 发明申请
    • Eyeglass lens processing apparatus
    • 眼镜镜片加工设备
    • US20070135019A1
    • 2007-06-14
    • US11606053
    • 2006-11-30
    • Motoshi TanakaYoichi Sugiura
    • Motoshi TanakaYoichi Sugiura
    • B24B51/00B24B29/00
    • B24B9/146B24B9/148B24B41/061B24B49/16
    • An eyeglass lens processing apparatus includes: a controller that controls a second driver for rotating lens chucks for chucking an eyeglass lens and a third driver for changing an axis-to-axis distance between an axis of a processing tool and an axis of the lens chucks so that a processing load falls below an allowable value; and a processing mode selector that selects one of a first processing mode in which the allowable value is set to be high, and a second processing mode in which the allowable value is set to be low so as to suppress axis deviation when the lens having a surface slipping readily is processed. The controller controls the first driver so that a second chucking pressure of the lens chucks when the second processing mode is selected is smaller than a first chucking pressure of the lens chucks when the first processing mode is selected.
    • 一种眼镜透镜处理装置,包括:控制器,其控制用于旋转用于夹持眼镜镜片的透镜卡盘的第二驱动器和用于改变处理工具的轴线与透镜卡盘的轴线之间的轴线到轴距离的第三驱动器 使得处理负载低于允许值; 以及处理模式选择器,其选择其中允许值被设置为高的第一处理模式中的一个,以及允许值被设置为低的第二处理模式,以便当具有 表面滑动容易被处理。 当选择第二处理模式时,控制器控制第一驱动器,使得当选择第二处理模式时,透镜卡盘的第二夹紧压力小于当选择第一处理模式时透镜卡盘的第一夹紧压力。
    • 9. 发明申请
    • EYEGLASS LENS PROCESSING APPARATUS
    • 眼镜镜片加工设备
    • US20070004317A1
    • 2007-01-04
    • US11476614
    • 2006-06-29
    • Motoshi Tanaka
    • Motoshi Tanaka
    • B24B51/00B24B29/00
    • B24B9/146B24B9/148B24B27/0069B24B41/005
    • An eyeglass lens processing apparatus includes: a processing tool that processes a periphery of an eyeglass lens; a lens chucking shaft that holds the lens; a rotating unit that rotates the chucking shaft; a first moving unit that relatively moves the chucking shafts with respect to the processing tool; a lens holding arm that is provided with first and second lens holders for holding the lenses; a second moving unit that moves the lens holding arm; and a controller that controls the first and second moving units so that the first lens holder and the chucking shaft are moved to a first transfer position to transfer the lens therebetween, and, following the processing of the lens which is held by the first lens holder, the second lens holder and the chucking shaft are moved to a second transfer position to transfer the lens therebetween.
    • 一种眼镜透镜加工装置,具备:处理眼镜镜片周边的加工工具; 保持透镜的透镜夹持轴; 旋转所述夹持轴的旋转单元; 第一移动单元,其相对于所述加工工具相对地移动所述夹紧轴; 透镜保持臂,其设置有用于保持透镜的第一和第二透镜保持件; 移动透镜保持臂的第二移动单元; 以及控制器,其控制所述第一移动单元和所述第二移动单元,使得所述第一透镜保持件和所述夹持轴移动到第一转印位置以在所述第一转印位置之间转印所述透镜,并且在由所述第一透镜保持器 ,第二透镜架和夹持轴移动到第二传送位置以在其间传送透镜。