首页> 外文会议>Conference on engineering systems design and analysis;Biennial conference on engineering systems design and analysis;ESDA 2008 >CMM MEASUREMENT VARIABILITY ANALYSIS: A COMPARISON BETWEEN TWO METROLOGICAL LABORATORIES MEASURING THREE INDUSTRIAL WORKPIECES
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CMM MEASUREMENT VARIABILITY ANALYSIS: A COMPARISON BETWEEN TWO METROLOGICAL LABORATORIES MEASURING THREE INDUSTRIAL WORKPIECES

机译:CMM测量变异性分析:两个计量实验室测量三个工业工件的比较

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Quality may be defined as a set of requirements a system should satisfy in order to meet customer's needs. Control of these requirements assures satisfaction of relevant standards, and consequently the performance levels of a manufacturing/transactional stream. In this context it is fundamental to define control procedures and reliable measurement systems adequate for adopting improvement action as soon as anomalies and dysfunctions are detected. This paper deals with a study of measurement variability occurring during practical exploitation of CMMs (Coordinate Measuring Machines).These measurement systems are designed to probe selected points of workpiece surface, and compare the relevant coordinates or derived quantities with specified values; capability and versatility of CMMs justify their widespread use in industry. Evaluation of CMM measurement variability is however often awkward owing to a number of factors, such as e.g. measurement task, environment, operator and measurement procedures.A round robin exercise involving two industrial laboratories v/as planned in order to address these issues. Three typical machine tool parts were circulated among participants,who were asked to measure linear dimensions as well as tolerances at specified locations, according to an agreed upon schedule.Results of measurements, performed by experienced CMM industrial users, were analyzed in order to bring out discrepancies, and suggest remedial actions in the light of information gathered. Several factors involving metrological as well as other aspects were observed to cause major discrepancies, yielding in turn information on where to look for potential sources of trouble. Conclusions were drawn in terms of operating procedure, leading to improved information on origin and components of variability.
机译:质量可以定义为系统为了满足客户需求而应满足的一组要求。对这些要求的控制可确保满足相关标准,并因此确保生产/交易流的性能水平。在这种情况下,定义控制程序和可靠的测量系统是基本的,一旦发现异常和功能异常,就足以采取改进措施。本文研究了在实际开发CMM(坐标测量机)过程中发生的测量变异性。 这些测量系统旨在探测工件表面的选定点,并将相关坐标或导出的量与指定值进行比较; CMM的功能和多功能性证明了它们在工业中的广泛使用。然而,由于许多因素,例如CMM测量的可变性的评估常常是尴尬的。测量任务,环境,操作员和测量程序。 为了解决这些问题,由两个工业实验室(计划中)组成的循环演习。在参与者中分发了三个典型的机床零件, 根据约定的时间表,要求他们测量线性尺寸以及指定位置的公差。 由经验丰富的CMM工业用户执行的测量结果经过分析,以找出差异,并根据收集到的信息建议补救措施。观察到涉及计量学及其他方面的几个因素会导致重大差异,从而反过来提供有关在哪里寻找潜在麻烦源的信息。根据操作程序得出了结论,从而改善了有关起源和可变性组成部分的信息。

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