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    • 5. 发明授权
    • Electronic system and method for compensating the dimensional accuracy of a 4-axis CNC machining system using global and local offsets
    • 用于补偿使用全局和局部补偿的4轴CNC加工系统的尺寸精度的电子系统和方法
    • US08712577B2
    • 2014-04-29
    • US13032860
    • 2011-02-23
    • Jie GuSheri K. KurginPaula J. Deeds
    • Jie GuSheri K. KurginPaula J. Deeds
    • G05B19/401G06F7/66G05B19/402
    • G05B19/401G05B2219/50057G05B2219/50074
    • An electronic system for compensating the dimensional accuracy of a 4-axis CNC machining system includes a CNC machining system configured to machine a plurality of features into a part, a dimensional measuring device configured to measure a plurality of dimensions of the part, and to provide an output corresponding to the measured dimensions and a compensation processor in communication with the CNC machining system and dimensional measuring device. The CNC machining system includes a global coordinate system, and at least one feature being defined relative to a local coordinate system that is translated from the machine coordinate system. Additionally, the compensation processor is configured to receive the output from the dimensional measuring device, to calculate a plurality of CNC offsets, including at least one local offset, and to provide the offsets to the CNC machining system.
    • 一种用于补偿四轴CNC加工系统的尺寸精度的电子系统包括:一个被配置成将多个特征加工成零件的CNC加工系统;一个被配置成测量该零件的多个维度的尺寸测量装置, 与测量尺寸相对应的输出和与CNC加工系统和尺寸测量装置通信的补偿处理器。 CNC加工系统包括一个全局坐标系,并且相对于从机床坐标系转换的局部坐标系定义至少一个特征。 此外,补偿处理器被配置为接收来自尺寸测量装置的输出,以计算包括至少一个局部偏移的多个CNC偏移,并且向CNC加工系统提供偏移。
    • 8. 发明申请
    • ELECTRONIC SYSTEM AND METHOD FOR COMPENSATING THE DIMENSIONAL ACCURACY OF A 4-AXIS CNC MACHINING SYSTEM USING GLOBAL AND LOCAL OFFSETS
    • 使用全球和本地偏差来增强4轴CNC加工系统的尺寸精度的电子系统和方法
    • US20120215342A1
    • 2012-08-23
    • US13032860
    • 2011-02-23
    • Jie GuSheri K. KurginPaula J. Deeds
    • Jie GuSheri K. KurginPaula J. Deeds
    • G05B19/401
    • G05B19/401G05B2219/50057G05B2219/50074
    • An electronic system for compensating the dimensional accuracy of a 4-axis CNC machining system includes a CNC machining system configured to machine a plurality of features into a part, a dimensional measuring device configured to measure a plurality of dimensions of the part, and to provide an output corresponding to the measured dimensions and a compensation processor in communication with the CNC machining system and dimensional measuring device. The CNC machining system includes a global coordinate system, and at least one feature being defined relative to a local coordinate system that is translated from the machine coordinate system. Additionally, the compensation processor is configured to receive the output from the dimensional measuring device, to calculate a plurality of CNC offsets, including at least one local offset, and to provide the offsets to the CNC machining system.
    • 一种用于补偿四轴CNC加工系统的尺寸精度的电子系统包括:一个被配置成将多个特征加工成零件的CNC加工系统;一个被配置成测量该零件的多个维度的尺寸测量装置, 与测量尺寸相对应的输出和与CNC加工系统和尺寸测量装置通信的补偿处理器。 CNC加工系统包括一个全局坐标系,并且相对于从机床坐标系转换的局部坐标系定义至少一个特征。 此外,补偿处理器被配置为接收来自尺寸测量装置的输出,以计算包括至少一个局部偏移的多个CNC偏移,并且向CNC加工系统提供偏移。
    • 9. 发明授权
    • Global offset compensation for a CNC machine
    • 数控机床的全局补偿补偿
    • US08676373B2
    • 2014-03-18
    • US13032865
    • 2011-02-23
    • Jie GuSheri K. Kurgin
    • Jie GuSheri K. Kurgin
    • G06F19/00
    • G05B19/402G05B2219/42132G05B2219/50297
    • A method for offsetting a part on a CNC machine comprises clamping a part to a fixture on a table for the CNC machine and machining a plurality of features and surfaces on the part. A plurality of global offsets are calculated for the fixture and the table based on location data of the plurality of features and surfaces. An actual part position on a global coordinate system for the CNC machine is determined by translating the fixture and the table by each the plurality of global offsets to the coordinate system. The actual part position is compensated to a nominal part position for each of the controllable axes of the CNC machine and a controller is programmed with a global offset compensation based upon the calculated offset for each controllable axis of the CNC machine to adjust each of the controllable axes to the actual part position.
    • 用于抵消CNC机器上的零件的方法包括将零件夹紧到用于CNC机床的工作台上的固定装置上,并且加工零件上的多个特征和表面。 基于多个特征和表面的位置数据,为夹具和工作台计算多个全局偏移量。 在CNC机床的全局坐标系上的实际零件位置是通过将夹具和工作台由多个全局偏移中的每一个平移到坐标系来确定的。 实际零件位置被补偿到CNC机床的每个可控轴的公称零件位置,并且控制器被编程为基于用于CNC机床的每个可控轴的计算的偏移量的全局偏移补偿,以调整每个可控制的 轴到实际零件位置。
    • 10. 发明申请
    • GLOBAL OFFSET COMPENSATION FOR A CNC MACHINE
    • 数控机床的全局偏移补偿
    • US20120213604A1
    • 2012-08-23
    • US13032865
    • 2011-02-23
    • Jie GuSheri K. Kurgin
    • Jie GuSheri K. Kurgin
    • B23Q11/00
    • G05B19/402G05B2219/42132G05B2219/50297
    • A method for offsetting a part on a CNC machine comprises clamping a part to a fixture on a table for the CNC machine and machining a plurality of features and surfaces on the part. A plurality of global offsets are calculated for the fixture and the table based on location data of the plurality of features and surfaces. An actual part position on a global coordinate system for the CNC machine is determined by translating the fixture and the table by each the plurality of global offsets to the coordinate system. The actual part position is compensated to a nominal part position for each of the controllable axes of the CNC machine and a controller is programmed with a global offset compensation based upon the calculated offset for each controllable axis of the CNC machine to adjust each of the controllable axes to the actual part position.
    • 用于抵消CNC机器上的零件的方法包括将零件夹紧到用于CNC机床的工作台上的固定装置上,并且加工零件上的多个特征和表面。 基于多个特征和表面的位置数据,为夹具和工作台计算多个全局偏移量。 在CNC机床的全局坐标系上的实际零件位置是通过将夹具和工作台由多个全局偏移中的每一个平移到坐标系来确定的。 实际零件位置被补偿到CNC机床的每个可控轴的公称零件位置,并且控制器被编程为基于用于CNC机床的每个可控轴的计算的偏移量的全局偏移补偿,以调整每个可控制的 轴到实际零件位置。