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Industrial automation systems -- Numerical control of machines -- NC processor output -- Post processor commands
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GB/T 11292-2008
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| GB/T 11292-1989 | English | RFQ |
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Numerical control of machines--NC processor output--Minor elements of 2000-type records (post-processor commands)
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GB/T 11292-1989
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PDF similar to GB/T 11292-2008
Basic data | Standard ID | GB/T 11292-2008 (GB/T11292-2008) | | Description (Translated English) | Industrial automation systems -- Numerical control of machines -- NC processor output -- Post processor commands | | Sector / Industry | National Standard (Recommended) | | Classification of Chinese Standard | J07 | | Classification of International Standard | 25.040.20 | | Word Count Estimation | 155,158 | | Date of Issue | 2008-08-19 | | Date of Implementation | 2009-03-01 | | Older Standard (superseded by this standard) | GB/T 11292-1989 | | Quoted Standard | GB/T 8870; GB/T 12177; GB/T 12646; GB/T 19660-2005 | | Adopted Standard | ISO 4343-2000, IDT | | Regulation (derived from) | Announcement of Newly Approved National Standards No. 14 of 2008 (total 127) | | Issuing agency(ies) | General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China | | Summary | This standard defines the numerical control software, a series of post-processing statement elements. These post -processing statements with 2000 and 20000 type CLDATA records or other equivalent forms of coding. |
GB/T 11292-2008: Industrial automation systems -- Numerical control of machines -- NC processor output -- Post processor commands ---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
Industrial automation systems. Numerical control of machines. NC processor output. Post processor commands
ICS 25.040.20
J07
National Standards of People's Republic of China
GB/T 11292-2008/ISO 4343.2000
Replacing GB/T 11292-1989
Industrial Automation Systems
Numerical control of machines NC processor output
Post-processing command
(ISO 4343.2000, IDT)
Posted 2008-08-19
2009-03-01 implementation
Administration of Quality Supervision, Inspection and Quarantine of People's Republic of China
Standardization Administration of China released
Table of Contents
Preface Ⅶ
Introduction Ⅷ
1 Scope 1
2 Normative references 1
3 coordinate system 1
3.1 part program Reference 1
3.2 Machine Programming Reference 2
3.3 Units of measurement 3
Universal post processing command structure 4 3
4.1 NC processor 3
4.2 tool position data (CLDATA) 4
4.3 postprocessor 4
5 Common Language 7
5.1 Overview 7
5.2 adaptive instruction (ADAPTV) 8
5.3 instruction air (AIR) 9
5.4 Application Instructions (APPLY) 9
5.5 Auxiliary function command (AUXFUN) 10
5.6 OFF command (BREAK) 10
5.7 subroutine call instruction (CALSUB) 10
5.8 clamp command (CLAMP) 11
5.9 tool position data command (CLDATA) 12
5.10 synchronizing instruction (COUPLE) 12
5.11 tool compensation commands (CUTCOM) 13
5.12 Definition of subroutine start command (DEFSUB) 13
5.13 delay instruction (DELAY) 14
5.14 display instruction (DISPLY) 14
5.15 End instruction (END) 15
5.16 Definition of subroutine end instruction (ENDSUB) 15
5.17 feed rate command (FEDRAT) 15
5.18 reference point instruction (GOHOME) 16
5.19 back to the second position command reference point (GOPARK) 17
5.20 define the reference point instruction (HOMEPT) 17
5.21 containing instructions (INCLUDE) 17
5.22 insertion (INSERT) 18
5.23 bootstrap (LEADER) 18
5.24 limit instruction (LIMIT) 18
5.25 Positioning instruction (LOCATE) 19
GB/T 11292-2008/ISO 4343.2000
5.26 Printing a list of instructions (LPRINT) 20
5.27 machine instructions (MACHIN) 20
5.28 Directive (MATERL) 20
5.29 precision instruction (MCHFIN) 21
5.30 Machining tolerances instruction (MCHTOL) 21
5.31 mode command (MODE) 21
5.32 movement command (MOVETO) 23
5.33 Block cancellation instruction (OPSKIP) 23
5.34 Optional Stop command (OPSTOP) 24
5.35 Instruction origin (ORIGIN) 24
5.36 second reference point instruction (PARKPT) 24
5.37 Part Directive (PARTNO) 25
5.38 post-processing instruction (PPFUN) 25
5.39 Post Processing print orders (PPRINT) 25
5.40 Fixed Time Directive (PPTIME) 26
5.41 preparation function command (PREFUN) 26
5.42 fast instruction (RAPID) 26
5.43 reset command (RESET) 26
5.44 rewind command (REWIND) 27
5.45 safe position instruction (SAFPOS) 27
5.46 sequence Directive (SEQNO) 27
5.47 stop command (STOP) 28
5.48 synchronizing instruction (SYNCTR) 28
5.49 Tool Life Directive (TLLIFE) 29
5.50 with a label instruction (TMARK) 30
5.51 Transform command (TRANS) 30
6 EDM 31 languages
6.1 Overview 31
6.2 Application Instructions (APPLY) 31
6.3 tool compensation commands (CUTCOM) 31
6.4 fluid instruction (FLUSH) 33
6.5 discharge gap instruction (GENRTR) 34
6.6 load instruction (LOAD) 34
6.7 Pre-setting instruction (OP) 35
6.8 selection command (SELECT) 37
6.9 Spindle command (SPINDL) 37
6.10 Tool Directive (TOOLNO) 38
6.11 unload command (UNLOAD) 39
7 flame cutting 39 languages
7.1 Overview 39
7.2 Application Instructions (APPLY) 40
7.3 Auxiliary commands (ASSIST) 40
7.4 from the command (CLDIST) 41
GB/T 11292-2008/ISO 4343.2000
7.5 Instruction perforation (PIERCE) 41
7.6 splitting tool instruction (TORCH) 42
8 grinding 42 Languages
8.1 Overview 42
8.2 Application Instructions (APPLY) 43
8.3 finishing instruction (DRESS) 43
43 9 laser processing language
9.1 Overview 43
9.2 Application Instructions (APPLY) 43
9.3 Auxiliary commands (ASSIST) 44
9.4 from the command (CLDIST) 44
9.5 instruction cycles (CYCLE) 45
9.6 Instruction perforation (PIERCE) 46
10 milling and drilling 47 languages
10.1 Overview 47
10.2 Application Instructions (APPLY) 47
10.3 helical interpolation instruction (ARCSLP) 48
10.4 clamp command (CLAMP) 48
10.5 Safety instructions plane (CLEARP) 48
10.6 Coolant instruction (COOLNT) 49
10.7 tool compensation commands (CUTCOM) 49
10.8 Instruction cycle (CYCLE) 51
10.9 frame instruction (HEAD) 67
10.10 safe position instruction (INDPOS) 67
10.11 linear tolerance Directive (LINTOL) 68
10.12 load instruction (LOAD) 68
10.13 Instruction origin (ORIGIN) 69
10.14 retraction instruction (RETRCT) 70
10.15 rotation command (ROTATE) 70
10.16 selection command (SELECT) 71
10.17 spindle command (SPINDL) 71
10.18 Tool Directive (TOOLNO) 73
10.19 unload command (UNLOAD) 73
11 stamping molding 74 languages
11.1 Overview 74
11.2 Application Instructions (APPLY) 74
11.3 clamp command (CLAMP) 75
11.4 Instruction cycle (CYCLE) 75
11.5 load instruction (LOAD) 82
11.6 punching speed command (PIERCE) 82
11.7 selection command (SELECT) 82
11.8 Tool Directive (TOOLNO) 83
11.9 Uninstall instruction (UNLOAD) 84
GB/T 11292-2008/ISO 4343.2000
12 Turning 85 languages
12.1 Overview 85
12.2 Application Instructions (APPLY) 86
12.3 Feed Directive (BARFED) 86
12.4 workpiece instruction fetch unit (CATCHR) 86
12.5 chuck instruction (CHUCK) 86
12.6 clamp command (CLAMP) 88
12.7 cooling instruction (COOLNT) 89
12.8 synchronizing instruction (COUPLE) 90
12.9 tool compensation commands (CUTCOM) 90
12.10 contour instruction (DEFCON) 91
12.11 load instruction (LOAD) 92
12.12 mode command (MODE) 92
12.13 Pre-setting instruction (OP) 93
12.14 pitch command (PITCH) 100
12.15 Safety Directive (SAFETY) 100
12.16 selection command (SELECT) 101
12.17 spindle command (SPINDL) 101
12.18 installation angle command (STAN) 103
12.19 Center bracket instruction (STDYRS) 103
12.20 rack position command (TLSTCK) 104
12.21 Tool Directive (TOOLNO) 104
12.22 Turret instruction (TURRET) 105
12.23 unload command (UNLOAD) 105
13 106 Wire EDM language
13.1 Overview 106
13.2 Application Instructions (APPLY) 106
13.3 gap distance instruction (CLDIST) 107
13.4 diameter compensation command (CUTCOM) 107
13.5 Instruction cycle (CYCLE) 107
13.6 instruction fluid (FLUSH) 109
13.7 discharge gap instruction (GENRTR) 110
13.8 load instruction (LOAD) 110
13.9 Instruction origin (ORIGIN) 110
13.10 selection command (SELECT) 111
13.11 angle setting instruction (STAN) 111
13.12 Tool Directive (TOOLNO) 112
13.13 unload command (UNLOAD) 112
14 113 language detection
14.1 Overview 113
14.2 Application Instructions (APPLY) 113
14.3 load instruction (LOAD) 114
14.4 mode command (MODE) 114
GB/T 11292-2008/ISO 4343.2000
14.5 sniffer (PROBE) 115
14.6 selection command (SELECT) 117
14.7 Tool Directive (TOOLNO) 117
14.8 Uninstall instruction (UNLOAD) 118
14.9 check instruction (VERIFY) 118
15 graphics language 124
15.1 Overview 124
15.2 drawing instruction (DRAFT) 125
15.3 Text command (LETTER) 126
15.4 overlapping drawing instruction (OVPLOT) 126
15.5 pen down command (PENDWN) 127
15.6 pen up instruction (PENUP) 127
15.7 post-processing graphics instructions (PPLOT) 127
Appendix A (normative) to define the syntax rules 129
Appendix B (normative) Keywords list 130
GB/T 11292-2008/ISO 4343.2000
Foreword
This standard is identical with ISO 4343.2000 "Industrial automation systems - Numerical control of machines NC post-processing command processor output
make".
This standard is equivalent translation ISO 4343.2000.
For ease of use, this standard made the following editorial changes.
--- Use the "standard" instead of "this International Standard."
--- Remove the ISO 4343.2000 Foreword.
--- Delete references to normative documents guiding language, with GB/T 1.1-2000 6.2.3 specified in the introductory phrase instead.
--- For the ISO 4343.2000 and other international standards referenced in our country is equivalent to using the standard, with reference to our present standard
In place of national standards corresponding to international standards, and the rest is not tantamount to the adoption of standard international standard, in this standard are straight
Then reference.
The revised standard and replaces GB/T 11292-1989 "digital control of machines - NC processor output - Minor elements of 2000 record
(Post-processing command) "(eqv ISO 4343. 1978), compared with the previous version, the main technical changes are as follows.
--- Conduct a comprehensive adjustment system more standardized, more logical.
--- Begin to describe the post-processor command of the general structure and common language, all kinds of processing and measuring, mapping and other languages \u200b\u200beach says
Ming, greatly enriched the numerical control system in the machine tool industry. And can be extended to related fields.
--- Increasing the machine type.
--- Increasing the measurement and mapping, and other related types.
The Standard Appendix A, Appendix B normative appendix.
The standard proposed by China Machinery Industry Federation.
This standard by the National Industrial automation systems and integration Standardization Technical Committee (SAC/TC159) centralized.
This standard was drafted. Beijing Machine Tool Research Institute, Beijing KND CNC Technology Co., Ltd.
The main drafters of this standard. Liangruo Qiong, Yang Hongli, Zhang Liyan.
This standard replaces the standards previously issued as follows.
--- GB/T 11292-1989.
GB/T 11292-2008/ISO 4343.2000
Introduction
Output general-purpose numerical control processor is used as a post-processing of the input information, this information is referred to CLDATA, most
First data from the cutting tool library.
CLDATA provides a common language, process information can be passed from the processor to the numerical control post-processor, and the General
Language is converted into a specific format-specific numerical control equipment required. GB/T 12177 is given a logic CLDATA record
Series and physical structure.
This standard is based on the command word and the parameters associated with the command word to define a standard post-processor vocabulary. The vocabulary
Coding using the 2000 type (integer type post-processing commands) and 20,000 type (text-based post-processing command) by the GB/T 12177 given
The CLDATA record.
Between the post-processing and post-processing term element command element, CLDATA recorded one to one relationship. Appendix to this standard
B integer code number given is used to express the keyword record 2000 CLDATA code number. Key words given in Appendix B
The name is used to express the type CLDATA record 20,000 keyword name.
Numerical control has been applied to many types of machinery, but the language was originally defined in this standard for numerical control machine tools, thus
Vocabulary use this language to describe the "tool" and "part", respectively, refers to the processing elements and process elements, many of the vocabulary words also from gold
Metalworking term.
GB/T 11292-2008/ISO 4343.2000
Industrial Automation Systems
Numerical control of machines NC processor output
Post-processing command
1 Scope
The standard numerical control software defines a set of post-processing of the statement elements. These post-processing statements with the 2000 and
Type CLDATA 20,000 records or other equivalent forms of coding.
Where an international standard numerical control programming language processor capable of generating post-processing command line with the standard tool position data
(CLDATA) records.
CLDATA each post-processor can use this standard to define post-processing commands record as input.
This standard does not describe the following.
a) mechanisms for these statements to be processed;
b) to record these input language media statements;
c) medium and the format of the output machine control data;
d) order a part program statement.
2 Normative references
The following documents contain provisions which, through reference in this standard and become the standard terms. For dated references, subsequent
Amendments (not including errata content) or revisions do not apply to this standard, however, encourage the parties to the agreement are based on research
Whether the latest versions of these documents. For undated reference documents, the latest versions apply to this standard.
GB/T 8870 digital control machine tool positioning, line motion and contouring control system data format (GB/T 8870-1988, eqv
ISO 6983-1. 1982)
GB/T 12177 Industrial automation tool numerical control system NC processor output file structure and language format
(GB/T 12177-2008, ISO 3592.2000, IDT)
GB/T 12646 Numerical control of machines - NC processor input Basic part program reference language (GB/T 12646-1990,
eqv ISO 4342. 1985)
GB/T 19660-2005 Industrial automation systems and integration - Numerical control of machines and motion coordinate system named (ISO 841.
2001, IDT)
3 coordinate system
3.1 part program reference
GB/T 19660-2005 CLDATA is the basis for defining the coordinate system.
In CLDATA, the coordinate system reference axis is x, y and z axes. Coordinate system refers to the reference point of the tool relative to the part coordinate system on
(Usually the nose center). CLDATA able to define the position and orientation of the following.
x dimension parallel to the X axis;
y dimension parallel to the Y axis;
z dimension parallel to the Z axis;
i tool axis vector component in the X-axis direction;
j tool axis vector component in the Y-axis direction;
GB/T 11292-2008/ISO 4343.2000
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