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Normas DIN – AENOR
DIN EN ISO 10360-5:2018-07

DIN EN ISO 10360-5:2018-07

Geometrical product specifications (GPS) - Acceptance and reverification tests for coordinate measuring systems (CMS) - Part 5: CMMs using single and multiple stylus contacting probing systems using discrete point and/or scanning measuring mode (ISO/DIS 10360-5:2018); German and English version prEN ISO 10360-5:2018 / Note: Date of issue 2018-06-15

Spécification géométrique des produits (GPS) - Essais de réception et de vérification périodique des systèmes à mesurer tridimensionnelles (MMT) - Partie 5: MMT utilisant des systèmes de palpage à stylet simple ou à stylets multiples (ISO/DIS 10360-5:2018); Version allemande et anglaise prEN ISO 10360-5:2018 / Attention: Date de parution 2018-06-15

Geometrische Produktspezifikation (GPS) - Annahmeprüfung und Bestätigungsprüfung für Koordinatenmessgeräte (KMG) - Teil 5: Prüfung der Antastabweichungen von KMG mit berührendem Messkopfsystem im Einzelpunkt- und/oder Scanningbetrieb (ISO/DIS 10360-5:2018); Deutsche und Englische Fassung prEN ISO 10360-5:2018 / Achtung: Erscheinungsdatum 2018-06-15

Fecha Anulación:
2020-11 /Withdrawn
Equivalencias internacionales:

ISO/DIS 10360-5 (2018-06)

prEN ISO 10360-5 (2018-06)

Relación con otras normas DIN:

Reemplazada por: DIN EN ISO 10360-5:2020-11

Resumen:
This part of ISO 10360 is a geometrical product specification (GPS) standard and is to be regarded as a general GPS standard (see ISO/TR 14638). It influences chain link 5 of the chains of standards of size, distance, radius, angle, form, orientation, location, run-out and datums. For more detailed information on the relation of this part of ISO 10360 to other standards and the GPS Matrix model see Annex D. The acceptance and reverification tests described in this part of ISO 10360 are applicable to CMMs that use contacting probes, with or without multiple styli or multiple articulated probe positions when measuring a workpiece. Experience has shown that the multiple-stylus errors calculated using this part of ISO 10360 are significant and, at times, the dominant errors in the CMM. Owing to the virtually infinite variety of modern CMM probing system configurations, the tests specified by this part of ISO 10360 have been limited to providing a testing format only. The tests are intended to provide information on the ability of a CMM to measure a feature or features, using a contacting probe and, when relevant, using multiple styli, multiple probes or multiple articulated-probe positions. The situations to which they are applicable include - contacting probing Systems - multiple styli connected to the CMM probe (e. g. a star), - installations using an articulating probing system (motorized or manual) that can be prequalified, - installations using a repeatable probe-changing system, - installations using a repeatable stylus-changing system, and - multiple-probe installations. It is believed that the procedures given in this part of ISO 10360 will be helpful in minimizing CMM System uncertainty components for specific measurement tasks, and that the user will be able to reduce errors by removing contributing elements such as long probe extensions and styli, then retesting the new configuration set. The tests in this part of ISO 10360 are sensitive to many errors attributable to both the CMM and the probing system, and are to be performed in addition to the length measuring tests given in ISO 10360-2. Clause 3 in this part of ISO 10360 contains eight definitions 3.6 to 3.13 which supersede 14 similar definitions in Clause 9 of ISO 10360-1:2001. Some of these revised definitions are required to avoid ambiguities which would otherwise have been introduced with this issue of ISO 10360-5. Others supersede effectively identical definitions in ISO 10360-1, because the symbols used have been revised and expanded for clarification. The superseded definitions are 9.3, 9.4 and 9.15 to 9.26.
Keywords:
Acceptance inspection, Acceptance tests, Acknowledgements, Calipers, Checks, Coordinate measuring machines, Coordinate metrology, Definitions, Dimensional measurement, Efficiency, Evaluations, Geometrical product specification, Geometry, GPS, Keys, Linear measurement, Measurement, testing and instruments, Measuring instruments, Metrology, Multiple, Product specifications, Properties, Scanners, Scanning, Scanning methods, Size, Size measurement, Test equipment, Testing
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