BS 7172-1989 Guide to assessment of position size and departure from nominal form of geometric features《几何特征的位置、尺寸和公称形式偏差评估指南》.pdf
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1、BRITISH STANDARD BS 7172:1989 Guide to Assessment of position, size and departure from nominal form of geometric features UDC 658.5.011.54:519.688:681.3.06:62 4:531.7BS7172:1989 This British Standard, having been prepared under the directionof the Advanced Manufacturing Technology Standards Policy C
2、ommittee, waspublished under the authorityofthe Board of BSI andcomes intoeffect on 31July1989 BSI 11-1999 The following BSI references relate to the work on this standard: Committee reference AMT/8 Draft for comment 88/98386 DC ISBN 0 580 173593 Committees responsible for this British Standard The
3、preparation of this British Standard 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
4、 Institute of Technology Department 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 Tec
5、hnology Amendments issued since publication Amd. No. Date of issue CommentsBS7172:1989 BSI 11-1999 i Contents Page Committees responsible Inside front cover Foreword ii 1 Scope 1 2 Definitions 1 3 Symbols and abbreviations 2 4 Outline of guide 3 5 Parametrization of geometric elements 4 6 Measuremen
6、t procedure 5 7 Data pre-processing 9 8 Establishing a reference 10 9 Departure from nominal form 10 10 Information to be provided by an assessment 11 11 Numerical considerations 12 Appendix A Formulae for distance of a point to a geometric element 14 Figure 1 A distribution of points on a line 6 Fi
7、gure 2 A distribution of points in a plane 7 Figure 3 A “chess board” distribution of points in a plane 7 Figure 4 A distribution of points on a lobed circle 7 Figure 5 A distribution of points on a sphere 8 Figure 6 A distribution of points on a cylinder 8 Figure 7 A distribution of points on a con
8、e 9 Figure 8 Example of a profile with two equal maximum inscribed circles, centred at A and B 12 Figure 9 Example of a profile with a locally maximum inscribed circle, centred at A 13 Table 1 Minimum numbers of points 9BS7172:1989 ii BSI 11-1999 Foreword This British Standard has been prepared unde
9、r the direction of the Advanced Manufacturing Technology Standards Policy Committee. This standard is intended for use by manufacturers of coordinate measuring machines (CMMs) and software writers within the CMM industry. It covers the assessment of geometric form of workpieces measured with a CMM.
10、It gives information and guidance to promote the better use of CMMs for this purpose by the adoption of reliable software that provides well presented comprehensive information. This British Standard contains mathematical concepts and notation; therefore it is assumed that the execution of its guida
11、nce is entrusted to appropriately qualified and experienced personnel. 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 itself confer imm
12、unity from legal obligations. Summary of pages This document comprises a front cover, an inside front cover, pages i and ii, pages1 to 17 and a back cover. This standard has been updated (see copyright date) and may have had amendments incorporated. This will be indicated in the amendment table on t
13、he inside front cover.BS7172:1989 BSI 11-1999 1 1 Scope This British Standard provides information and guidance to manufacturers of coordinate measuring machines (CMMs), and particularly software writers within the CMM industry. It contains recommendations for determining the position, size and depa
14、rture from nominal form of geometric features, given measurements of coordinates of points on a workpiece. The features covered correspond to the following geometric elements:lines, planes, circles, spheres, cylinders and cones. This standard is concerned with software implementations of algorithms
15、based on sound mathematical and computational principles, rather than automated versions of manual or graphical assessment procedures. This standard does not provide detailed guidance on methods for treating data gathered in an unstable environment. This standard does not cover secondary attributes,
16、 i.e. measures derived from departures from form of the above geometric elements, such as parallelism, concentricity or orthogonality. This standard primarily relates to CMMs that operate with a right-handed Cartesian coordinate system. It also relates to other measurement systems that provide such
17、coordinates. Some of the guidance provided also applies to other coordinate systems. 2 Definitions For the purposes of this British Standard the following definitions apply. 2.1 algorithm a step-by-step description in mathematical or other unambiguous terms of a process for solving a particular prob
18、lem, e.g. the determination of the parameters describing a geometric feature 2.2 centroid the point described by coordinates which are the arithmetic means of the corresponding coordinates of the data points 2.3 circularity measure of departure from nominal form for a mathematical circle 2.4 cylindr
19、icity measure of departure from nominal form for a mathematical cylinder 2.5 data point either a raw data point or a raw data point that has been processed in some way 2.6 departure from nominal form overall measure of the deviation of a workpiece from nominal form NOTEThe departure from nominal for
20、m is defined as the spread, or in terms of the spread. 2.7 deviation the straight-line (Euclidean) distance of a data point from the reference, measured normal to the geometric element. The distance is regarded as positive or negative according to which side of the element the point lies. Where appr
21、opriate it is negative if the point lies in the material of the workpiece, and positive otherwise. In the case of a line in two dimensions or a plane all points on one side are taken to have a positive deviation and those on the other a negative deviation. The deviation for the ith data point is den
22、oted by e i 2.8 direction cosines (of a line) the cosines of the angles between a line and the Cartesian axes 2.9 geometric element line, plane, circle, cylinder, cone or sphere 2.10 geometric feature (part of) an object nominally in the shape of one of the geometric elements 2.11 line a straight li
23、ne in two or three dimensions 2.12 measurement procedure a strategy for obtaining a representative set of points on a workpiece 2.13 nominal form the ideal geometric object of which the geometric feature under test is a machined or otherwise manufactured manifestation, e.g. sphere 2.14 normal a line
24、 passing through a point on a curve or surface and perpendicular to the tangent line or plane at the pointBS7172:1989 2 BSI 11-1999 NOTEA normal conventionally points out of the material. 2.15 outlier a data point that is not regarded as a member of a set of data points representative of the geometr
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