6sigma黑带培训教材(英文)精编版.pptx
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1、Process Capability Analysis(Measure Phase)Scope of ModuleProcess VariationProcess CapabilitySpecification,Process and Control LimitsProcess Potential vs Process PerformanceShort-Term vs Long-Term Process CapabilityProcess Capability for Non-Normal DataCycle-Time(Exponential Distribution)Reject Rate(
2、Binomial Distribution)Defect Rate(Poisson Distribution)Process VariationProcess Variation is the inevitable differences among individual measurements or units produced by a process.Sources of Variationwithin unit(positional variation)between units(unit-unit variation)between lots(lot-lot variation)b
3、etween lines(line-line variation)across time(time-time variation)measurement error(repeatability&reproducibility)Types of VariationInherent or Natural VariationDue to the cumulative effect of many small unavoidable causesA process operating with only chance causes of variation present is said to be“
4、in statistical control”Types of VariationSpecial or Assignable VariationMay be due to a)improperly adjusted machine b)operator error c)defective raw materialA process operating in the presence of assignable causes of variation is said to be“out-of-control”Process CapabilityProcess Capability is the
5、inherent reproducibility of a processs output.It measures how well the process is currently behaving with respect to the output specifications.It refers to the uniformity of the process.Capability is often thought of in terms of the proportion of output that will be within product specification tole
6、rances.The frequency of defectives produced may be measured ina)percentage(%)b)parts per million(ppm)c)parts per billion(ppb)Process CapabilityProcess Capability studies can indicate the consistency of the process outputindicate the degree to which the output meets specificationsbe used for comparis
7、on with another process or competitorProcess Capability vs Specification Limitsa)b)c)a)Process is highly capableb)Process is marginally capablec)Process is not capableThree Types of LimitsSpecification Limits (LSL and USL)created by design engineering in response to customer requirements to specify
8、the tolerance for a products characteristicProcess Limits (LPL and UPL)measures the variation of a processthe natural 6 limits of the measured characteristicControl Limits (LCL and UCL)measures the variation of a sample statistic(mean,variance,proportion,etc)Three Types of LimitsDistribution of Indi
9、vidual ValuesDistribution of Sample AveragesProcess Capability IndicesTwo measures of process capabilityProcess PotentialCpProcess PerformanceCpuCplCpkProcess PotentialThe Cp index assesses whether the natural tolerance(6)of a process is within the specification limits.Process PotentialA Cp of 1.0 i
10、ndicates that a process is judged to be“capable”,i.e.if the process is centered within its engineering tolerance,0.27%of parts produced will be beyond specification limits.Cp Reject Rate1.000.270%1.330.007%1.506.8 ppm2.002.0 ppbProcess Potentiala)b)c)a)Process is highly capable(Cp2)b)Process is capa
11、ble(Cp=1 to 2)c)Process is not capable(Cp1.5)b)Process is capable(Cpk=1 to 1.5)c)Process is not capable(Cpk1)a)Cp=2Cpk=2b)Cp=2Cpk=1c)Cp=2Cpk 1Example 1Specification Limits:4 to 16 gMachineMeanStd Dev(a)10 4(b)10 2(c)7 2(d)13 1Determine the corresponding Cp and Cpk for each machine.Example 1AExample
12、1BExample 1CExample 1DProcess CapabilityFor a normally distributed characteristic,the defective rate F(x)may be estimated via the following:For characteristics with only one specification limit:a)LSL onlyb)USL onlyLSLUSLExample 2Specification Limits:4 to 16 gMachineMeanStd Dev(a)10 4(b)10 2(c)7 2(d)
13、13 1Determine the defective rate for each machine.Example 2Mean Std Dev ZLSL ZUSL F(xUSL)F(x)10 4 -1.51.5 66,807 66,807133,614 10 2 -3.03.0 1,350 1,350 2,700 7 2 -1.54.5 66,807 3 66,811 13 1 -9.03.0 0 1,350 1,350Lower Spec Limit=4 gUpper Spec Limit=16 gProcess Potential vs Process Performance(a)Poor
14、 Process Potential(b)Poor Process PerformanceLSLUSLLSLUSLExperimental Design to reduce variationExperimental Design to center mean to reduce variationProcess Potential vs Process Performance Process Potential Index (Cp)Cpk 1.0 1.2 1.4 1.6 1.8 2.0 1.02,699.9 1,363.3 1,350.0 1,350.0 1,350.0 1,350.0 1.
15、2 318.3 159.9 159.1 159.1 159.1 1.4 26.7 13.4 13.4 13.4 1.6 1.6 0.8 0.8 1.8 0.1 0.0 2.0 0.0Defective Rate(measured in dppm)is dependent on the actual combination of Cp and Cpk.Process Potential vs Process Performancea)Cp=2Cpk=2b)Cp=2Cpk=1c)Cp=2Cpk 1Cp Cpk Missed OpportunityAlternative Process Perfor
16、mance IndexProcess capability statistics measure process variation relative to specification limits.The Cp statistic compares the engineering tolerance against the processs natural variation.The Cpk statistic takes into account the location of the process relative to the midpoint between specificati
17、ons.If the process target is not centered between specifications,the Cpm statistic is preferred.Process StabilityA process is stable if the distribution of measurements made on the given feature is consistent over time.TimeStable ProcessTimeUnstable ProcessucllclucllclWithin vs Overall CapabilityWit
18、hin Capability(previously called short-term capability)shows the inherent variability of a machine/process operating within a brief period of time.Overall Capability(previously called long-term capability)shows the variability of a machine/process operating over a period of time.It includes sources
19、of variation in addition to the short-term variability.Within vs Overall CapabilityWithinOverallSample Size30 50 units 100 unitsNumber of Lotssingle lotseveral lotsPeriod of Timehours or daysweeks or monthsNumber of Operatorssingle operatordifferent operatorsProcess Potential Cp PpProcess Performanc
20、e Cpk PpkWithin vs Overall CapabilityWithin CapabilityOverall CapabilityThe key difference between the two sets of indices lies in the estimates for Within and Overall.Estimating Within and OverallConsider the following observations from a Control Chart:S/NX1X2 XkMeanRangeStd Dev1x1,1x2,1 xk,1 X1 R1
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