DIN ISO 3567-2015 Vacuum gauges - Calibration by direct comparison with a reference gauge (ISO 3567 2011)《真空计 通过与基准量规进行直接对比的校准 (ISO 3567-2011)》.pdf
《DIN ISO 3567-2015 Vacuum gauges - Calibration by direct comparison with a reference gauge (ISO 3567 2011)《真空计 通过与基准量规进行直接对比的校准 (ISO 3567-2011)》.pdf》由会员分享,可在线阅读,更多相关《DIN ISO 3567-2015 Vacuum gauges - Calibration by direct comparison with a reference gauge (ISO 3567 2011)《真空计 通过与基准量规进行直接对比的校准 (ISO 3567-2011)》.pdf(19页珍藏版)》请在麦多课文档分享上搜索。
1、May 2015Translation by DIN-Sprachendienst.English price group 11No part of this translation may be reproduced without prior permission ofDIN Deutsches Institut fr Normung e. V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany,has the exclusive right of sale for German Standards (DIN-Normen).ICS 23.
2、160!%Ba“2316288www.din.deDDIN ISO 3567Vacuum gauges Calibration by direct comparison with a reference gauge(ISO 3567:2011),English translation of DIN ISO 3567:2015-05Vakuummeter Kalibrieren von Vakuummetern durch direkten Vergleich mit einem Bezugsnormal(ISO 3567:2011),Englische bersetzung von DIN I
3、SO 3567:2015-05Manomtres talonnage par comparaison directe avec un manomtre de rfrence (ISO 3567:2011),Traduction anglaise de DIN ISO 3567:2015-05SupersedesDIN 28418-1:1976-05, withdrawn2013-08,DIN 28418-2:1978-09, withdrawn2009-09 andDIN 28418-3:1980-08www.beuth.deIn case of doubt, the German-langu
4、age original shall be considered authoritative.Document comprises 19 pages04.15 DIN ISO 3567:2015-052A comma is used as the decimal marker. Contents Page National foreword .3 Introduction .5 1 Scope .6 2 Normative references .6 3 Terms and definitions 6 4 Symbols and abbreviated terms .8 5 General p
5、rinciple 9 6 Requirements 9 6.1 Design of calibration chamber 9 6.2 Plumbing of gauges to calibration chamber 10 6.3 Vacuum and gas inlet system . 11 6.4 Calibration gas 11 6.5 Thermometers and ambient conditions . 11 6.6 Reference gauge 12 7 Calibration 12 7.1 Procedure . 12 7.2 Evaluation of measu
6、rements 14 7.3 Measurement uncertainty . 14 8 Calibration certificate 15 Annex A (informative) Example of possible calibration system set-up 16 Annex B (informative) Problems in practice 17 Bibliography . 19 National foreword The text of this document (ISO 3567:2011) has been prepared by Technical C
7、ommittee ISO/TC 112 “Vacuum technology”, Working Group WG 2 “Vacuum instrumentation”. The responsible German body involved in its preparation was the DIN-Normenausschuss Maschinenbau (DIN Standards Committee Mechanical Engineer-ing), Working Committee NA 060-07-02 AA Vakuummessgerte of Section Vakuu
8、mtechnik. ISO 3567:2011 cancels and replaces ISO/TS 3567:2005. It replaces the standards DIN 28418-1 to DIN 28418-3 and differs from these in that numerous modifications have been made to reflect the state of the art, in addition to the following: The calibration chamber is to be chamber-symmetrical
9、 (6.1.b), and its volume is only to be 20 times (and not 50 times, as specified in the DIN Standards) the total volume of all the gauges and associated pipe work. The residual pressure now called the “base pressure” is not to go below 10 % (previously, 2 %) of the lowest calibration pressure so that
10、 ion gauges with sensitivities of up to 106Pa can also be calibrated without placing too strict requirements on the vacuum system. Requirements are now specified for the reference gauge. An entire subclause is dedicated to measurement uncertainty, subclause 7.3. Attention is drawn to the possibility
11、 that some of the elements of this document may be the subject of patent rights. DIN and/or DKE shall not be held responsible for identifying any or all such patent rights. For the International Standards referred to in this document there are no national standards available unless they have been pu
12、blished as DIN EN ISO or DIN ISO standards with the same number. The document corresponding to ISO/IEC Guide 98-3 is DIN V ENV 13005:1999-06, Guide to the expression of uncertainty in measurement. nderungen This standard differs from DIN 28418-1:1976-05, DIN 28418-2:1978-09 and DIN 28418-3:1980-08 a
13、s follows: a) the calibration chamber is to be chamber-symmetrical (6.1.b); b) the volume of the calibration chamber is only to be 20 times (and not 50 times, as specified in the DIN Standards) the total volume of all the gauges and associated pipe work; c) the residual pressure now called the “base
14、 pressure” is not to go below 10 % (previously, 2 %) of the lowest calibration pressure so that ion gauges with sensitivities of up to 106Pa can also be calibrated without placing too strict requirements on the vacuum system; d) requirements are now specified for the reference gauge; e) requirements
15、 are now specified for the measurement uncertainty of the method; f) an entire subclause is dedicated to measurement uncertainty, Subclause 7.3. Previous editions DIN 28418-1: 1976-05 DIN 28418-2: 1978-09 DIN 28418-3: 1980-08 DIN ISO 3567:2015-053 This page is intentionally blank DIN ISO 3567:2015-0
16、54Vacuum gauges Calibration by direct comparison with a reference gauge IntroductionThe purpose of this International Standard is to establish the physical, technical and metrological conditions necessary for adequately disseminating the pressure scale in the vacuum regime by calibration with a refe
17、rence gauge. It is assumed that the user will be familiar with the general procedures of vacuum generation and measurement in the vacuum ranges considered.DIN ISO 3567:2015-0551 ScopeThis International Standard specifies the physical, technical and metrological conditions to be fulfilled when calibr
18、ations of vacuum gauges are performed by direct comparison with a reference gauge. From the conditions described, the design of an apparatus that can perform vacuum gauge calibrations in an adequate manner can be deduced.The vacuum gauges to be calibrated can be of any kind. Many types of gauges con
19、sist of several parts. Typically, these are: gauge head, cable, operational device and signal read out. This entire set is considered as the unit that has to be calibrated. Whereas, if only the gauge head (i.e. the part of the vacuum gauge directly exposed to the vacuum) is calibrated, all set-ups a
20、nd conditions would have to be recorded such that the user of the calibrated gauge head would be able to perform the measurements in the same manner as during the calibration.The reference gauge is either a calibrated gauge, traceable to a vacuum primary or national standard (normal case), with a ca
21、libration certificate according to ISO/IEC 17025, or an absolute measuring instrument (rare case), traceable to the SI units and to which a measurement uncertainty can be attributed.This International Standard does not give guidance on how to treat special types of vacuum gauges, be they reference s
22、tandards or units under calibration; it is intended that such guidance be given in other International Standards.The pressure range for calibrations treated in this International Standard depends on the realized design of the calibration apparatus and on the type of reference gauge. The range varies
23、 in its limits from 106Pa to 110 kPa.2 Normative referencesThe following referenced documents are indispensable for the application of this document. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments)
24、 applies.ISO/IEC Guide 98-3, Uncertainty of measurement Part 3: Guide to the expression of uncertainty in measurement (GUM:1995)ISO/IEC 17025:2005, General requirements for the competence of testing and calibration laboratories3 Terms and definitionsFor the purposes of this document, the following t
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