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Influence and compensation of CMM geometric errors on 3D gear measurements

机译:CMM几何误差对3D档测量的影响与补偿

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The influence of CMM geometric errors on 3D gear measurements is still unclear as the requirement for a gear measurement standard with ideal geometry cannot be fulfilled. To solve this issue, the authors have proposed and developed a software program named Me2Ge to simulate 3D gear measurements with CMMs. This allows a systematic analysis of how gear deviations are affected by geometric errors of a CMM, and how the influence can be reduced. A large gear ring measurement standard and a large Cartesian CMM are used as an important application example. The simulation results achieve the gear deviations under the influence of machine geometric errors, and reveal the major error sources for profile slope deviation, helix slope deviation and single pitch deviation, which gives a first impression of geometric errors and their influence on 3D gear measurements. Finally, reversal techniques are integrated into the Me2Ge program to compensate machine errors. The results clearly prove that reversal techniques play a significant role and are worth spending the necessary time to achieve lower measurement uncertainties. (C) 2019 Elsevier Ltd. All rights reserved.
机译:CMM几何误差对3D档测量的影响仍然不清楚,因为不能满足具有理想几何形状的齿轮测量标准的要求。为了解决这个问题,作者提出并开发了一个名为Me2ge的软件程序来模拟CMMS的3D档测量。这允许对齿轮偏差如何受到CMM几何误差的影响,以及如何降低影响。大齿轮环测量标准和大笛卡尔CMM用作重要的应用示例。仿真结果在机器几何误差的影响下实现了齿轮偏差,并揭示了轮廓斜率偏差的主要误差源,螺旋斜率偏差和单间距偏差,这给出了几何误差的第一印象及其对3D档测量的影响。最后,将逆转技术集成到ME2GE程序中以补偿机器错误。结果清楚地证明了逆转技术发挥着重要作用,值得花费有必要实现较低的测量不确定性。 (c)2019年elestvier有限公司保留所有权利。

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