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ACCURACY IMPROVEMENT OF THE ON-MACHINE INSPECTION SYSTEM BY CORRECTION OF GEOMETRIC AND TRANSIENT THERMAL ERRORS

机译:通过校正几何和瞬态热误差来准确改进机上检测系统

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Accuracy improvement method of the on-machine measurement system is proposed by a correction methodology of measurement data. A volumetric error model to synthesize transient thermal errors as well as geometric errors is developed. Geometric errors are determined by the oft-line calibration procedure. Under the assumption that the on-machine measuring procedure is a pure cooling process, the transient thermal errors are modeled as exponential functions with different thermal time constants and gains. The thermal time constants characterize transient thermal responses of machine elements during the on-machine measurement. The gains are determined by measuring a 3D artifact twice when the on-machine measurement of a machined part is required. Total time taken for measuring the artifact is less than 5 minutes. Experiments are performed to verify the proposed method. The measuring accuracy of the on-machine inspection system has been improved from 60 mum to 10 mum.
机译:通过测量数据的校正方法提出了机上测量系统的准确性改进方法。开发了一种体积误差模型,用于合成瞬态热误差以及几何误差。几何误差由OFT-LINE校准程序确定。在机器测量过程是纯冷却过程的假设下,瞬态热误差被建模为具有不同热时间常数和增益的指数函数。热时间常数在机器测量期间表征机器元件的瞬态热响应。通过在需要机加工部件的机上测量时测量3D伪像来确定增益。测量伪影的总时间少于5分钟。进行实验以验证所提出的方法。机机检测系统的测量精度从60米到10米提高。

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