BS 6808-3-1989 Coordinate measuring machines - Code of practice《坐标测量机 实用规程》.pdf
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1、BRITISH STANDARD BS6808-3: 1989 Incorporating Amendment No.1 Coordinate measuring machines Part 3: Code of practice ICS 17.040.30BS6808-3:1989 This British Standard, having been prepared under the directionof the Advanced Manufacturing Technology Standards Policy Committee, waspublished under the au
2、thorityof the Board of BSI andcomes into effect on 31 July1989 BSI 04-1999 The following BSI references relate to the work on this standard: Committee reference AMT/8 Draft for comment 87/97377 DC ISBN 0 580 17365 8 Committees responsible for this British Standard The preparation of this British Sta
3、ndard was entrusted by the Advanced Manufacturing Technology Standards Policy Committee (AMT/-) to Technical Committee AMT/8, upon which the following bodies were represented: Advanced Manufacturing Technology Research Institute British Telecommunications plc Cranfield Institute of Technology Depart
4、ment of Trade and Industry (National Engineering Laboratory) Department of Trade and Industry (National Physical Laboratory) Gauge and Tool Makers Association Institution of Production Engineers Ministry of Defence University of Manchester Institute of Science and Technology Amendments issued since
5、publication Amd. No. Date of issue Comments 9829 April 1998 Indicated by a sideline in the marginBS6808-3:1989 BSI 04-1999 i Contents Page Committees responsible Inside front cover Foreword ii 1 Scope 1 2 Definitions 1 3 General 1 4 Environmental conditions 1 5 Choice of mechanical reference artefac
6、ts 3 6 Performance verification tests 9 7 Probing techniques 13 Figure 1 Step gauges 4 Figure 2 Typical support arrangement for minimum deflection at45 inclination 4 Figure 3 Support for gauge blocks up to1000mm arranged with measuring lines symmetrically disposed about a common centre 5 Figure 4 Ad
7、justable support system with a common end plane 5 Figure 5 Space frames 6 Figure 6 Ball-plate 6 Figure 7 A multi-purpose commercially-available artefact 7 Figure 8 Example of a ball-ended rod with magnetic cups for kinematic location 7 Figure 9 Extendable bar system 8 Figure 10 Machine checking gaug
8、e 9 Figure 11 The four cross-diagonal configurations 10 Figure 12 In-plane diagonal configuration 10 Figure 13 Suggested additional measuring line 11 Figure 14 Position of measuring points for mathematically determining alignment of test devices 11 Figure 15 Errors when aligning gauge blocks 12 Publ
9、ications referred to Inside back coverBS6808-3:1989 ii BSI 04-1999 Foreword This Part of BS6808 has been prepared by the Advanced Manufacturing Technology Assembly (AMT/-/8) at the request of manufacturers and users of coordinate measuring machines (CMMs). BS6808-2:1987, which covered the performanc
10、e assessment of coordinate measuring machines, has been superseded by BS EN ISO10360-2:1996. Amendment No.1 to BS6808-3:1989 deletes all reference to BS6808-2:1987, which has been withdrawn. This Part of BS6808 provides the user and supplier with more information about further testing recommendation
11、s for variable environmental conditions. A glossary of terms is given in BS6808-1. A British Standard does not purport to include all the necessary provisions of a contract. Users of British Standards are responsible for their correct application. Compliance with a British Standard does not of itsel
12、f confer immunity from legal obligations. Summary of pages This document comprises a front cover, an inside front cover, pagesi andii, pages1 to14, an inside back cover and a back cover. This standard has been updated (see copyright date) and may have had amendments incorporated. This will be indica
13、ted in the amendment table on the inside front cover.BS 6808-3:1989 BSI 04-1999 1 1 Scope This Part of BS6808 gives recommendations to the user and supplier on the more detailed testing recommended if the environmental conditions give rise to problems. This standard is not intended for coordinate me
14、asuring machines that have working volumes, any dimension of which is significantly greater than the dimension of the mechanical reference artefact, or for those having more than three non-redundant axes. 2 Definitions For the purposes of this Part of BS6808, the definitions given in BS6808-1 apply.
15、 3 General The CMM under test should have validated software capable of determining from a series of data points the orientation in space of a best-fit plane. This ability will enable a much closer scrutiny of the measurement capability of the CMM to be made. 4 Environmental conditions 4.1 Vibration
16、 analysis 4.1.1 Principle. The vibration survey establishes the vertical and horizontal vibration environment at the interface between the CMM and its foundations and support system provided by the user, in order to allocate responsibility for faults between user and supplier. 4.1.2 Procedure. Make
17、the vibration survey using a directionally sensitive, low frequency(0.5Hzto100Hz) transducers capable of discriminating a peak-to-peak motion amplitude of0.25 4m. A band-pass filter of corresponding frequency range having variable high and low cut-off frequencies should be used to condition the tran
18、sducer signals prior to recording on an oscilloscope, a chart recorder or in some other way agreed between the user and the supplier. In the case of a contacting analogue probe, vibration between the mechanical probe and the workpiece can result from forces external to the CMM, or from forces genera
19、ted within the CMM itself. Therefore, a test should first be made to see if the CMM is the vibration source, prior to conducting a full measurement and analysis of vibration. If the CMM is motorized, the power to all motors should be removed and the CMM tested to determine if the vibration is still
20、present. If the CMM uses air bearings, the air pressure to the bearings should be varied sufficiently to establish whether air-bearing instability is causing vibration. If the CMM is not the source of the vibration, a complete vibration analysis at the CMM-to-support interface should be performed an
21、d the frequency spectrum analysed to determine if frequencies and amplitudes are present that exceed the CMM suppliers defined limits. Measurements should be made by transducers mounted on the CMM support in the direction of the vertical axis and the two mutually perpendicular horizontal directions
22、that approximately correspond to the principal axes of the CMM. Care should be taken that the survey is undertaken during a period representative of the CMM operating conditions. 4.1.3 Analysis. If any of the vibration parameters measured during the survey (see4.1.2) exceed the suppliers specificati
23、on, the user should correct the problem in order to conform to the specification or else accept a performance derating to be negotiated between supplier and user. If the vibration parameters are within the suppliers specification, it should be the sole responsibility of the supplier to correct the p
24、erformance of the CMM in order to meet the specification. 4.2 Air supply 4.2.1 Procedures are described for testing the air supply if there is evidence of excessive pressure fluctuation, inadequate supply pressure at the specified flow rate, excessive CMM thermal drift, or bearing contamination. Res
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