Quality control
8 min read
.mw-parser-output .hatnote{font-style:italic}.mw-parser-output div.hatnote{padding-left:1.6em;margin-bottom:0.5em}.mw-parser-output .hatnote i{font-style:normal}.mw-parser-output .hatnote+link+.hatnote{margin-top:-0.5em}@media print{body.ns-0 .mw-parser-output .hatnote{display:none!important}}This article is about the project management process. For the record label, see Quality Control Music.
“TQC” redirects here. For other uses, see TQC (disambiguation).
Processes that maintain quality at a constant level
Quality inspector in a Volkseigener Betrieb sewing machine parts factory in Dresden, East Germany, 1977
Quality control (QC) is a process by which entities review the quality of all factors involved in production. ISO 9000 defines quality control as “a part of quality management focused on fulfilling quality requirements”.[1]
This approach places emphasis on three aspects (enshrined in standards such as ISO 9001):[2][3]
Inspection is a major component of quality control, where physical product is examined visually (or the end results of a service are analyzed). Product inspectors will be provided with lists and descriptions of unacceptable product defects such as cracks or surface blemishes for example.[3]
History and introduction
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See also: History of technology
Early stone tools such as anvils had no holes and were not designed as interchangeable parts. Mass production established processes for the creation of parts and system with identical dimensions and design, but these processes are not uniform and hence some customers were unsatisfied with the result. Quality control separates the act of testing products to uncover defects from the decision to allow or deny product release, which may be determined by fiscal constraints.[6] For contract work, particularly work awarded by government agencies, quality control issues are among the top reasons for not renewing a contract.[7]
The simplest form of quality control was a sketch of the desired item. If the item did not match the sketch, the item was rejected, in a simple Go/no go procedure. However, manufacturers soon found it was difficult and costly to make parts be exactly like their depiction; hence around 1840 tolerance limits were introduced, wherein a design would function if its parts were measured to be within the limits. Quality was thus precisely defined using devices such as plug gauges and ring gauges. However, this did not address the problem of defective items; recycling or disposing of the waste adds to the cost of production, as does trying to reduce the defect rate. Various methods have been proposed to prioritize quality control issues and determine whether to leave them unaddressed or use quality assurance techniques to improve and stabilize production.[6]
Notable approaches
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There is a tendency for individual consultants and organizations to name their own unique approaches to quality control—a few of these have ended up in widespread use:
In project management
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In project management, quality control requires the project manager and/or the project team to inspect the accomplished work to ensure its alignment with the project scope.[15] In practice, projects typically have a dedicated quality control team which focuses on this area.[16]
See also
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- Analytical quality control
- Corrective and preventative action (CAPA)
- Eight dimensions of quality
- First article inspection (FAI)
- Good automated manufacturing practice (GAMP)
- Good manufacturing practice
- Quality assurance
- Quality management framework
- Standard operating procedure (SOP)
- QA/QC
References
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- .mw-parser-output .citation{word-wrap:break-word}.mw-parser-output .citation:target{background-color:rgba(0,127,255,0.133)} This article incorporates public domain material from Federal Standard 1037C. General Services Administration. Archived from the original on 22 January 2022. (in support of MIL-STD-188).
Further reading
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- Radford, George S. (1922), The Control of Quality in Manufacturing, New York: Ronald Press Co., OCLC 1701274, retrieved 16 November 2013
- Shewhart, Walter A. (1931), Economic Control of Quality of Manufactured Product, New York: D. Van Nostrand Co., Inc., OCLC 1045408
- Juran, Joseph M. (1951), Quality-Control Handbook, New York: McGraw-Hill, OCLC 1220529
- Western Electric Company (1956), Statistical Quality Control Handbook (1 ed.), Indianapolis, Indiana: Western Electric Co., OCLC 33858387
- Feigenbaum, Armand V. (1961), Total Quality Control, New York: McGraw-Hill, OCLC 567344
External links
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- ASTM quality control standards
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- Index of dispersion
Summary tables
- Contingency table
- Frequency distribution
- Grouped data
Dependence
- Partial correlation
- Pearson product-moment correlation
- Rank correlation
- Kendall’s τ
- Spearman’s ρ
- Scatter plot
Graphics
- Bar chart
- Biplot
- Box plot
- Control chart
- Correlogram
- Fan chart
- Forest plot
- Histogram
- Pie chart
- Q–Q plot
- Radar chart
- Run chart
- Scatter plot
- Stem-and-leaf display
- Violin plot
Specific testsBayesian inference
- Bayesian probability
- prior
- posterior
- Credible interval
- Bayes factor
- Bayesian estimator
- Maximum posterior estimator
Survival
- Category
- Mathematics portal
- Commons
- WikiProject
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