METHOD FOR DESIGNING AND MACHINING A GEAR WHEEL, AND CORRESPONDING PROCESSING MACHINE TOOL AND SOFTWARE

    公开(公告)号:US20190391555A1

    公开(公告)日:2019-12-26

    申请号:US16483794

    申请日:2018-01-11

    申请人: Klingelnberg AG

    摘要: Method comprising: designing a gear in a software-based computer-aided manner in order to obtain a function-oriented geometry, using a software-based computer-aided method for ascertaining a theoretically producible gear geometry corresponding to or an approximation of the function-oriented geometry), providing production data representing the theoretically producible geometry, machining a gear using the production data in a CNC-controlled processing machine, measuring the gear to obtain an actual data set of the gear, carrying out a comparison of the actual data set with the production data in order to ascertain at least one correction variable, using the correction variable in order to ascertain corrected production data from the production data or carry out a machining correction in the processing machine, and post-machining the gear using the machining correction or using the corrected production data in order to machine at least one additional gear in the processing machine.

    METHOD AND DEVICE FOR AUTOMATED MACHINING OF GEARWHEEL COMPONENTS

    公开(公告)号:US20180264570A1

    公开(公告)日:2018-09-20

    申请号:US15924820

    申请日:2018-03-19

    申请人: Klingelnberg AG

    IPC分类号: B23F23/12 B23F21/12

    摘要: A manufacturing environment having a machine tool, a measuring device, a storage medium, and having a computer programmed to control: a) chip producing machining of a first workpiece in a machine tool, b) acquiring at least two machine parameters of the machine tool during the chip producing machining of the first workpiece, c) storing the machine parameters in the storage medium, wherein the storing is performed with assignment to the first workpiece, and d) repeating steps a) to c) for a number of n workpieces; and, after one of steps a) to d), or later, triggering a testing method including: (i) selecting at least one of the workpieces, (ii) performing an automated test of the at least one selected workpiece using the measuring device, or (iii) performing a processor-controlled evaluation of the automated test to classify the at least one selected workpiece as a good part, or a reject part.