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坐标测量机的误差补偿融入特征测量:第一部分——模型开发

Integration of Error Compensation of Coordinate Measuring Machines into Feature Measurement: Part I-Model Development.

作者信息

Calvo Roque, D'Amato Roberto, Gómez Emilio, Domingo Rosario

机构信息

Department of Mechanical Engineering, Chemistry and Industrial Design, Universidad Politécnica de Madrid, Ronda de Valencia 3, Madrid 28012, Spain.

Department of Construction and Manufacturing Engineering, Universidad Nacional de Educación a Distancia (UNED), C/Juan del Rosal 12, Madrid 28040, Spain.

出版信息

Sensors (Basel). 2016 Sep 29;16(10):1610. doi: 10.3390/s16101610.

Abstract

The development of an error compensation model for coordinate measuring machines (CMMs) and its integration into feature measurement is presented. CMMs are widespread and dependable instruments in industry and laboratories for dimensional measurement. From the tip probe sensor to the machine display, there is a complex transformation of probed point coordinates through the geometrical feature model that makes the assessment of accuracy and uncertainty measurement results difficult. Therefore, error compensation is not standardized, conversely to other simpler instruments. Detailed coordinate error compensation models are generally based on CMM as a rigid-body and it requires a detailed mapping of the CMM's behavior. In this paper a new model type of error compensation is proposed. It evaluates the error from the vectorial composition of length error by axis and its integration into the geometrical measurement model. The non-explained variability by the model is incorporated into the uncertainty budget. Model parameters are analyzed and linked to the geometrical errors and uncertainty of CMM response. Next, the outstanding measurement models of flatness, angle, and roundness are developed. The proposed models are useful for measurement improvement with easy integration into CMM signal processing, in particular in industrial environments where built-in solutions are sought. A battery of implementation tests are presented in Part II, where the experimental endorsement of the model is included.

摘要

本文介绍了坐标测量机(CMM)误差补偿模型的开发及其在特征测量中的集成。CMM是工业和实验室中广泛使用的可靠尺寸测量仪器。从探头传感器到机器显示屏,通过几何特征模型对探测点坐标进行复杂转换,使得测量结果的准确性和不确定性评估变得困难。因此,与其他更简单的仪器不同,误差补偿并未标准化。详细的坐标误差补偿模型通常基于将CMM视为刚体,这需要对CMM的行为进行详细映射。本文提出了一种新的误差补偿模型类型。它通过按轴对长度误差进行矢量合成来评估误差,并将其集成到几何测量模型中。模型未解释的变异性被纳入不确定度预算。分析模型参数并将其与CMM响应的几何误差和不确定性相关联。接下来,开发了平面度、角度和圆度的卓越测量模型。所提出的模型对于测量改进很有用,易于集成到CMM信号处理中,特别是在寻求内置解决方案的工业环境中。第二部分展示了一系列实施测试,其中包括模型的实验验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a216/5087398/aaf690ceb502/sensors-16-01610-g001.jpg

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