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dc.contributor.authorGrzegorz Bomba
dc.contributor.authorArtur Ornat
dc.contributor.authorPiotr Gierlak
dc.contributor.otherPratt & Whitney Rzeszów S.A., ul. Hetmańska 120, 35-078 Rzeszów, Poland
dc.contributor.otherPratt & Whitney Rzeszów S.A., ul. Hetmańska 120, 35-078 Rzeszów, Poland
dc.contributor.otherFaculty of Mechanical Engineering and Aeronautics, Rzeszow University of Technology, al. Powstańców Warszawy 8, 35-959 Rzeszów, Poland
dc.date.accessioned2021-07-23T15:06:00Z
dc.date.available2025-10-02T03:36:09Z
dc.date.issued01-07-2021
dc.identifier.issn-
dc.identifier.urihttps://www.mdpi.com/1424-8220/21/14/4852
dc.description.abstractThe article discusses the quality testing of a measuring system consisting of a CNC machine with measuring probes. The research was conducted in a broader context regarding the implementation of the closed door technology, i.e., production without human intervention, in an aviation plant manufacturing aircraft gearbox systems. This technology may involve automated measuring operations performed in machining centers, and not in measuring laboratories, provided that the quality of the measurements is appropriate. The aim of the study was to investigate whether the CNC machining device can be used to measure the geometric features of aircraft gearbox housing. For this purpose, measurement experiments were carried out with the use of three different probes. Measurements were carried out using four sequences of increasing complexity, so that, after error analysis, it was possible to find the causes of possible irregularities. A reference ring with known dimensions and position in the working space of the machine was used for the measurements performed as part of the assessment of the measurement system. The quality of the measurements was evaluated with the use of repeatability and reproducibility testing and statistical process control. The analysis results showed that the tested measurement system ensures adequate accuracy and repeatability, and the measurement process is characterized with adequate efficiency in relation to the manufacturing tolerance of the components produced using the machine. Thus, it was proven that the measurement process can be carried out on a machining device, which enables its integration into the closed door technology.
dc.format-
dc.language.isoEN
dc.publisherMDPI AG
dc.relation.uri['https://www.keaipublishing.com/en/journals/women-and-children-nursing/', 'https://www.keaipublishing.com/en/journals/women-and-children-nursing/guide-for-authors/', 'https://www.keaipublishing.com/en/journals/women-and-children-nursing/open-access/']
dc.rights['CC BY', 'CC BY-NC-ND']
dc.subject['obstetrics', "gynecology and women's health", 'perinatology', 'pediatrics and child health', 'midwifery', 'nursing', 'Gynecology and obstetrics', 'RG1-991', 'Nursing', 'RT1-120']
dc.subject.lccChemical technology
dc.titleGeometric Measurements on a CNC Machining Device as an Element of Closed Door Technology
dc.typeArticle
dc.description.keywordsclosed door technology
dc.description.keywordsCNC machining device
dc.description.keywordsmeasurement
dc.description.keywordsrepeatability
dc.description.keywordsreproducibility
dc.description.pages-
dc.description.doi10.3390/s21144852
dc.title.journalSensors
dc.identifier.e-issn1424-8220
dc.identifier.oaioai:doaj.org/journal:88e549f36de544ff856db0aaf0fe53ed
dc.journal.infoVolume 21, Issue 14


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