BS 3641-2-1980 Symbols for machine tools - Specification for numerical control symbols《机床符号 数控符号规范》.pdf
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1、Symboles pour les machines-outils Partie 2. Spcification des symboles relatifs la commande numrique Symbole fr Werkzeugmaschinen Teil 2. Spezifikation fr Symbole fr numerische Steuerung BSI BS*3b4L PART82 80 W BS 3641 : Part 2 : 1980 Contents Page Foreword Inside front cover Cooperating organization
2、s Back cover Specification 1. Scope 2. References - 1 1 Foreword This revision of this British Standard has been prepared under the direction of the Mechanical Engineering Standards Committee and implements agreements of the International Organization for Standardization (ISO). It extends the range
3、of symbols specified in Part 1 of this standard. This revision supersedes BS 3641 : Part 2 : 1972, which is now withdrawn. _ _ _ _ - -_ This standard was amended in 1982 to take account of the requirements of BS 5378 : Part 1 : 1980 and the Safety Signs Regulations, 1980 (S.I. 1980, No. 14711, becau
4、se machine tools are used in places of work where the requirements of these regulations apply. Symbols in this standard are intended primarily for purposes of operator information but where a symbol is used for safety reasons attention is also drawn to BS 5378 : Part 1. This Part of this standard is
5、 generally in accordance with Is0 2972-1979 Numerical control of machines - Symbols. 1624bb 0058749 9 Page 4 5. Additional symbols 13 3. Basic symbols 1 4. Symbols to be used on machine tools Appendix A. Examples of the grouping of symbols In symbols 4.10 Programmed stop and 4.1 1 Programmed optiona
6、l stop the qualification with machine functions has been added to correct an omission. In symbol 4.24 Manual data input the form and position of the hand have been improved. In symbols 4.25 Axis control, normal (machine follows program) and 4.26 Axis control in mirror image mode (machine mirrors pro
7、gram) the drawing has been amended so that the symbol and its mirror image are the same size. In symbol 4.54 Pre-warning storage overflow the caution sign has been reshaped slightly to align with BS 3641 : Part 1. In symbols 4.57 Program storage and 4.60 Modify, amend, edit the remark basic symbol h
8、as been deleted as superfluous. The United Kingdom, however, voted against IS0 2979-1979 and this standard differs from it in the following respects. Clause 5 and appendix A have been added* Clauses 3.1,3.2,3.3,3.4.3,3.4.4,3.4.5 (paragraph 1) and 3.5 have been added. Symbols 3.6.8 Reset (basic symbo
9、l), 3.6.9 Cancel, delete (basic symbol), 3.6.10 Do not (basic symbol) and 3.6.12 Modify, amend, edit (basic symbol) have been added. 16 BSI BS*3b4L PART*Z 80 M Lb24bb 0058750 5 M BS 3641 : Part 2 : 1980 British Standard Symbols for machine tools Part 2. Specification for numerical control symbols 1.
10、 Scope This British Standard specifies basic designs for symbols intended for use on indicator plates of numerically controlled (N.C.) machine tools. Drawings in this standard indicate the form of symbols only, and not their absolute dimensions. The standard gives recommendations for proportions to
11、be used in the design of symbols, independent of actual dimensions, and provides for the grouping together of symbols selected according to individual requirements. Examples of groupings of symbols are given in appendix A for guidance. NOTE. An index to BS 3641 : Parts 1,2 and 3 is given in PD 6490.
12、 2. References The titles of the standards publications referred to in this standard are listed on the inside back cover. 3. Basic symbols 3.1 Classification scheme. To facilitate cross reference with IS0 2972-1979, the classification scheme used in other Parts of this standard has not been applied
13、to the listing of symbols in this Part. 3.2 Numbering of symbols. In this Part of this standard, the symbols specified in 3.6 are not given the same number as corresponding symbols in IS0 2972-1979. The symbols specified in clause 4 are given the same number as corresponding symbols in IS0 2972-1979
14、. The symbols specified in clause 5 have no counterpart in IS0 2972-1 979. 3.3 Sizes and proportions. The symbols shown in this standard indicate form only. Where it is necessary to establish actual sizes, the symbols shown may be measured. The absolute size of symbol is at the designers discretion
15、and indeed it may be desirable to have symbols in two different basic sizes to achieve proper display balance. 3.4 The use of the arrow 3.4.1 General. The arrow shape is a unique symbol in relation to all of the symbols in this standard. It rarely appears as an isolated element, but is frequently us
16、ed as the basis for a symbol, or qualifies another symbol to give it additional meaning, 1 There are four different applications of the arrow shape and it is desirable to use a different form in each instance, as shown in 3.4.2 to 3.4.5. 3.4.2 Directional information arrows. The recommended form of
17、a directional arrow is shown on the right, the impor- tant dimensions being the shape and proportion of the head and the associated width of the shaft. OvGall length is not crucial and may be varied to accommodate situations where the arrow is graphically combined with other symbol parts. The curved
18、 form is for rotational information, the per- spective view being superimposed on a shaft representation. 3.4.3 Relative motion information arrows. Where it is not possible to define exactly the direction in space, it is often useful to define relative motion between two machine parts; in this case
19、the truncated arrow heads are used in pairs to define in (or towards) and out (or away from). 3.4.4 Dimension arrows. For symbols where dimensional concepts are required, an open headed arrow with no shaft is used. 3.4.5 Functional arrows. Many symbols require a functional dynamic in the form of an
20、arrow to improve their ease of inter- pretation. It is inappropriate to use the same arrow form as is used to define spatial directions, as the arrow shown on functionai symbols need not imply a specific direction. A heavier, bolder form of arrow is used in these cases. The functional arrow is parti
21、cularly useful and important for building NE. symbols to identify the various control modes. When used with the program symbols (3.6.4 and 3.6.5) it indicates program direction. For forward program direction, the functional arrow points the same way as the program symbol. For backward program direct
22、ion, the functional arrow points the opposite way to the program symbol. BSI BS*3b41 PARTxK2 80 W 162Llbb9 0058751 7 BS 3641 : Part 2 : 1980 3.5 Grouping of symbols. It is comparatively rare for a data axis tool magazine single symbol to be used in isolation. The grouping of transfer execute handwhe
23、el lock index symbols on displays is implicit in their application. These groupings generally fall into one of three types of association. (b) Pairing of symbols to build more complex symbols, eng. feed rate over-ride; end of block; end of program. (c) Association of symbol with value or quantity, e
24、.g. per cent maximum feed rate: full length tool offset. (a) Hierarchical arrangements. One symbol serves as a general label or heading for a further more detailed group of symbols, e.g. 3.6 Basic symbols. Many symbols are derived from the basic symbol shapes shown below.“ No. Designation Symbol Rem
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