Statistical-Quality-Control:统计质量控制课件.ppt
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- Statistical Quality Control 统计 质量 控制 课件
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1、Statistical Process ControlPowerPoint presentation to accompany Heizer and Render Operations Management,Eleventh EditionPrinciples of Operations Management,Ninth EditionPowerPoint slides by Jeff Heyl 2014 Pearson Education,Inc.Learning Objectives1.Apply quality management tools for problem solving2.
2、Identify the importance of data in quality managementIntroductionStatistical Quality ControlStatistical Process Control(SPC)Acceptance Sampling(AS)pStatistical process control is a statistical technique that is widely used to ensure that the process meets standards.pAcceptance sampling is used to de
3、termine acceptance or rejection of material evaluated by a sample.IntroductionFiringPreparing the clay for throwingWedgingThrowingPinching potsPaintingPottery Making ProcessIntroductionStatistical Process Control Chart(SPC)pVariability is inherent in every process.nNatural variation can not be elimi
4、nated nAssignable variation-Deviation that can be traced to a specific reason:machine vibration,tool wear,new worker.VariationNatural VariationAssignable VariationStatistical Process Control Chart(SPC)pThe essence of SPC is the application of statistical techniques to prevent,detect,and eliminate de
5、fective products or services by identifying assignable variation.012345678910 11 12 13 14 15UCLLCLSample numberMeanOut ofcontrolNatural variationdue to chanceAbnormal variationdue to assignable sourcesAbnormal variationdue to assignable sourcesA control chart is a time-ordered plot obtained from an
6、ongoing processStatistical Process Control Chart(SPC)Statistical Process Control Chart(SPC)Control ChartsControl Charts for Variable DataControl Charts for Attribute Data-charts(for controlling central tendency)xR-charts(for controlling variation)p-charts(for controlling percent defective)c-charts(f
7、or controlling number of defects)pAttribute Data(discrete):qualitative characteristic or condition,such as pass/fail,good/bad,go/no go.pVariable Data(continuous):quantifiable conditions along a scale,such as speed,length,density,etc.1.Take random samples2.Calculate the upper control limit(UCL)and th
8、e lower control limit(LCL)3.Plot UCL,LCL and the measured values4.If all the measured values fall within the LCL and the UCL,then the process is assumed to be in control and no actions should be taken except continuing to monitor.5.If one or more data points fall outside the control limits,then the
9、process is assumed to be out of control and corrective actions need to be taken.Statistical Process Control Chart(SPC)6S-10 x-Charts Range=18-13=5x-Charts Range=17-14=3x-Charts Average=(17+13+16)/9=16.11x-Charts Average=(14+16+17)/9=15.22x-Charts x-Charts x-Charts x-Charts Example S6.1:Eight samples
10、 of seven tubes were taken at random intervals.Construct the x-chart with 3-control limit.Is the current process under statistical control?Why or why not?Should any actions be taken?Sample size=n=7A2=?x-Charts x-Charts oz 29.6)17.0(42.036.62RAxLCLoz 36.6834.6.38.636.6xoz 43.6)17.0(42.036.62RAxUCLoz
11、17.0818.0.18.016.0RExample S6.1:Eight samples of seven tubes were taken at random intervals.Construct the x-chart with 3-control limit.Is the current process under statistical control?Why or why not?Should any actions be taken?A2=0.42 x-Charts It is assumed that the central tendency of process is in
12、 control with 99.73%confidence.No actions need to be taken except to continuously monitor this process.Steps in Creating Charts1.Take samples from the population and compute the appropriate sample statistic2.Use the sample statistic to calculate control limits3.Plot control limits and measured value
13、s4.Determine the state of the process(in or out of control)5.Investigate possible assignable causes and take actionsR-ChartsR-ChartsR-ChartsR-ChartsR-ChartsR-Chartsoz 17.0818.0.18.016.0Rn=7 Example S6.3:Refer to Example S6.1.Eight samples of seven tubes were taken at random intervals.Construct the R
14、-chart with 3-control limits.Is the current process under statistical control?Why or why not?Should any actions be taken?D3=?D4=?R-ChartsR-Chartsoz 17.0818.0.18.016.0RExample S6.3:Refer to Example S6.1.Eight samples of seven tubes were taken at random intervals.Construct the R-chart with 3-control l
15、imits.Is the current process under statistical control?Why or why not?Should any actions be taken?oz 01.0)17.0(08.03RDLCLoz 33.0)17.0(92.14RDUCLD3=0.08,D4=1.92 R-ChartsThe variation of process is in control with 99.73%confidence.Mean and Range Charts(a)The central tendency of process is in control,b
16、ut its variation is not in control.Mean and Range Charts(b)The variation of process is in control,but its central tendency is not in control.R-Chart and X-ChartExample S6.4:Seven random samples of four resistors each are taken to establish the quality standards.Develop the R-chart and the x-chart bo
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