SPC techniques for the M-48 Coordinate Measurement Machine applied to uncertainty analysis and monitoring
Conference
·
OSTI ID:290903
The Moore M-48 Coordinate Measuring Machine (CMM) is used to calibrate step gages, ball bars and hole plates. The expanded uncertainty (2 sigma) of the M-48 CMM was determined to be {+-}0.3 + 0.4 L microns (L is length in meters), using the decomposition method. The problem statement becomes, how does one monitor and control the calibration process to ensure that one maintains this level of reliability? Traditional methods of statistical process control, such as X-bar and R charts assume large lot production and are designed to detect changes in the process being monitored. Since calibrations are performed one at a time, with sometimes years between calibrations, standard control charting methodology falls a bit short of what is needed to maintain process capability. Upon examination of the process uncertainty for the M-48 CMM the author finds the following parameters play an important roll in process capability. Since the M-48 uses laser scales, the Edlen equation is used to convert pressure, temperature and humidity to wavelength correction. The largest source of uncertainty comes from temperature effects based on gradients, accuracy of the thermistors and the actual coefficient of thermal expansion of the artifact. The probe calibration, which is performed for each calibration, is another important variable. Since the M-48 CMM`s movement is very slow, drift is also an important parameter to monitor. The paper describes the selection of check standards and measurement protocol made.
- Research Organization:
- Oak Ridge Y-12 Plant, TN (United States)
- Sponsoring Organization:
- USDOE, Washington, DC (United States)
- DOE Contract Number:
- AC05-84OR21400
- OSTI ID:
- 290903
- Report Number(s):
- Y/AMT--0541; CONF-980721--; ON: DE98057575
- Country of Publication:
- United States
- Language:
- English
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