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GB/T 19903.111-2013 English PDF

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GB/T 19903.111-2013: Industrial automation systems and integration -- Physical device control -- Data model for computerized numerical controllers -- Part 111: Tools for milling machines
Status: Valid
Standard IDUSDBUY PDFLead-DaysStandard Title (Description)Status
GB/T 19903.111-2013514 Add to Cart 3 days Industrial automation systems and integration -- Physical device control -- Data model for computerized numerical controllers -- Part 111: Tools for milling machines Valid

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GB/T 39331   GB/T 16977   GB/T 36415   GB/T 19903.14   GB/T 19903.13   GB/T 19903.11   

Basic data

Standard ID: GB/T 19903.111-2013 (GB/T19903.111-2013)
Description (Translated English): Industrial automation systems and integration -- Physical device control -- Data model for computerized numerical controllers -- Part 111: Tools for milling machines
Sector / Industry: National Standard (Recommended)
Classification of Chinese Standard: J07
Classification of International Standard: 25.010
Word Count Estimation: 26,291
Quoted Standard: ISO 3002-1; ISO 10303-41; ISO 10303-42; ISO 14649-10; ISO 14649-11
Adopted Standard: ISO 14649-111-2010; IDT
Regulation (derived from): National Standards Bulletin No. 22 of 2013
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 specifies: Description milling machines and machining centers with cutting tools data element. This standard applies to: and GB/T 19903. 11 (milling machines and machining centers Process Data) together using. These data elements can be used

GB/T 19903.111-2013: Industrial automation systems and integration -- Physical device control -- Data model for computerized numerical controllers -- Part 111: Tools for milling machines


---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 and integration Physical device control Data model for computerized numerical controllers Part 111.. Tools for milling machines ICS 25.010 J07 National Standards of People's Republic of China Industrial automation systems and integration - Physical device control Data model for computerized numerical controllers of Part 111. Milling Tool -Part 111. Toolsformilingmachines (ISO 14649-111.2010, IDT) Issued on. 2013-11-12 2014-03-15 implementation Administration of Quality Supervision, Inspection and Quarantine of People's Republic of China Standardization Administration of China released

Table of Contents

Introduction Ⅲ Introduction Ⅳ 1 Scope 1 2 Normative references 1 3 Terms and definitions 2 Cutting tool milling machines and machining centers with 4 2 4.1 Title and reference (headerandreference) 2 4.2 Milling cutting tool syntax (syntaxofmilingmachinecuttingtools) 3 4.2.1 Milling tool (milingmachinecuttingtools) 3 4.2.2 The composition of the cutting portion (cuttingcomponent) 3 4.2.3 The direction of rotation of the tool type (handofcuttype) 3 4.3 Milling cutting tool catalog (catalogueofmilingmachinecuttingtools) 4 4.3.1 drilling tool (drilingcuttingtool) 4 4.3.2 NC drill point (center drill) (NCpointdril/centredril) 4 4.3.3 reamer (counterbore) 4 4.3.4 countersink drill (countersink) 4 4.3.5 twist (twistdril) 5 4.3.6 tapered twist (tapereddril) 5 4.3.7 flat drill (spadedril) 5 4.3.8 Step Drills (stepdril) 5 4.3.9 milling tool (milingcuttingtool) 5 4.3.10 Face milling (facemil) 6 4.3.11 square shoulder milling cutter (shouldermil) 6 4.3.12 end mill (endmil) 6 4.3.13 ball end mill (balnoseendmil) 6 4.3.14 bullnose (bovine) end mill (bulnoseendmil) 7 4.3.15 contour milling cutter (profiledendmil) 7 4.3.16 T groove milling cutter (T-slotmil) 7 4.3.17 dovetail cutters (dovetailmil) 7 4.3.18 side cutter (face milling cutter) (sidemil) 8 4.3.19 Thread milling (threadmil) 8 4.3.20 reamer (reamingcuttingtool) 8 4.3.21 composite drilling Reamer (combineddrilandreamer) 8 4.3.22 tapered reamer (taperedreamer) 9 4.3.23 boring tool (rotatingboringcuttingtool) 9 4.3.24 Taps (tappingcuttingtool) 9 4.3.25 complex drilling and tapping (combineddrilandtap) 9 10 4.4 mode is completed Appendix A (normative appendix) EXPRESS list 11 Annex B (informative) Example 15 blade Appendix C (Informative Appendix) EXPRESS-G 18 References 20

Foreword

GB/T 19903 "Industrial automation systems and integration - Physical device control data model for computerized numerical controllers of" divided into the Under sections. --- Part 1. Overview and basic principles (ISO 14649-1); --- Part 10. General process data (ISO 14649-10); --- Part 11. Process data for milling (ISO 14649-11); --- Part 12. Process data for turning (ISO 14649-12); --- Part 111. Milling Tool (ISO 14649-111); --- Part 121. lathe tool (ISO 14649-121); This section GB/T Part of 11,119,903. This section drafted in accordance with GB/T 1.1-2009 given rules. This part identical with ISO 14649-111.2010 "Industrial automation systems and integration - Physical device control computer numerically controlled Used Part 111 data model. Milling Machine Tool. " Consistency correspondence between this part of international documents and normative references of our files are as follows. --- GB/T 19903.10 Industrial automation systems and integration - Physical device control data model for computerized numerical controllers of Part 10. General process data (ISO 14649-10.2004, IDT) --- GB/T 19903.11 Industrial automation systems and integration - Physical device control data model for computerized numerical controllers of Part 11. Process data for milling (ISO 14649-11.2004, IDT) Edit this section to the following modifications. GB/T 19903.111 standard text used in the "GB/T 19903 in this part of" instead of "this part of ISO 14649" is used. Please note that some of the content of this section may involve patents. This part of the release mechanism does not assume the responsibility to identify these patents. This part is proposed by China Machinery Industry Federation. This part of the automation systems and integration by the National Standardization Technical Committee (SAC/TC159) centralized. This section is drafted. Beijing Machine Tool Research Institute, Beijing University of Chemical Technology, Dalian Machine Tool Group Co., Ltd., a limited GSK The company, Nanjing Washing CNC Technology Co., Ltd., Dalian-NC Technology Development Center Co., Ltd. The main drafters of this section. Liangruo Qiong, Zhang Liyan, Liu Min Yang, Huang Fu, the Shao Guoan Li Zhe Lu, Wang Xiaochun, Xu Zonghua.

Introduction

Modern production equipment manufacturing enterprises are often distributed at home and abroad, these devices are often provided by different manufacturers. In manufacturing Process, we need between the workshops and equipment to transfer large amounts of information. Today, digital communications standards have solved reliably pass through the global network Lose information technology issues. For mechanical processing, by GB/T 16656 series of standards (STEP standard) makes product data Description standardization, which provides the possibility for the machinery manufacturing enterprises to adopt standardized data throughout the process. However, prejudice standardization Cause of data is the data format used in the enterprise CNC machine tools used. Most CNC machine tools are still using GB/T 8870 standard "G and M code" language programming associate provisions, NC programs are usually generated by CAD/CAM systems. However, with the GB/T 8870 standard Associate program has some shortcomings. First, the language used for the programming of the machine tool center axis, rather than parts processing Programming process; second, procedural semantics GB/T 8870 regulations in most cases be misleading; third, CNC manufacturers tend to spread Charge of programming languages, but this is beyond the scope of the expansion GB/T 8870 standard, non-interchangeable. GB/T 19903 is a new model of data transfer between CAD/CAM systems and CNC machine tools, used to replace GB/T 8870 standard. It uses object-oriented principle of step (Workingstep), by a predetermined machining process (rather than the tool Motion) to overcome the lack of GB/T 8870 standard exist. Corresponding to the top step of machining features and associated parameters, CNC systems The step is converted into motion and the tool axis operation. GB/T 19903 A major advantage is that it uses data from the GB/T 16656 standard According to the model. Since the GB/T 19903 standard provides a wide range of manufacturing process model, therefore, it can also be used as all other information technology Two-way and multi-directional exchange of data between the base of the system operation. GB/T 19903 is an object-oriented programming information and context preservation methods used, replacing the data into a simple switch command Or linear and circular motion. And because of its object-oriented features, and describes the machining operation of the workpiece, rather than describing the machine coordinate movement, because And it can run on different machines or controllers. New data models such as the NC controller used, its compatibility will be omitted by Postprocessor all data adaptation work. If GB/T 8870 NC program in this controller, the appropriate interpreter Should be able to handle different types of parallel NC program is necessary. From the use of GB/T 8870 process-based programming to portable feature programmed with a gradual. GB/T 19903 of early adopters It will be supported by the program or manually enter the traditional "G and M code" data, as modern controller supports both command-line interface and support As a graphical user interface. With the growing popularity of open architecture controllers, this approach will be more easily achieved. GB/T 19903 Excluding traditional programming statements. Industrial automation systems and integration - Physical device control Data model for computerized numerical controllers of Part 111. Milling Tool

1 Scope

GB/T 19903 provisions of this part of the description of milling machines and machining centers with cutting tool data elements. This section applies to and GB/T 19903.11 (milling machines and machining centers process data) to use together. These data elements can be It is used to select one of the processing operations, but they do not have complete information about a description of a particular tool. Therefore, the choice of leaving some genera To the controller of the greater freedom of tool selection. Note 1. Assuming NC system can be specified to give a complete description of the tool from the database. This section defines the work of miling_machine_tool_schema The basic tool for the model, which includes CNC system Select the desired tool from the tool holder. Note 2. GB/T 8870.1, the tool is defined by its identifier (eg T8), no more information about the tool types and geometric aspects. These letters Hike is part of the tool set table, provided by the NC program to the machine. The tool set table gives the tool orientation (such as an eighth slot magazine) And tool type (such as 4mm drill) relationship. This part is included in the tool set table contains information about. --- Tool identifier; --- Tool type; --- Tool geometry; --- Status and application-related tool life expectancy. miling_machine_tool_schema tool does not include the database information. Tool database and machine and tool itself but related Independent of the NC program. The following tool data outside the scope of this section. --- Normative tool life; --- Positioning tool in the tool change institutions; --- Shank tool system and related projects; --- Other processes with tools, such as turning, grinding, electrical discharge machining (EDM) 1). Note 3. It is important to inform all length measurement type is not a type of length measurement tolerances used in this section, as they are used to describe the machining of workpieces required To tool dimensions, while the actual size is not available on the machine tool. The actual tool by tool must be based on the actual tool dimensions and characteristics of tolerance Management to choose.

2 Normative references

The following documents for the application of this document is essential. For dated references, only the dated version suitable for use herein Member. For undated references, the latest edition (including any amendments) applies to this document. Basic data ISO 3002-1 cutting and grinding - Part 1. cutting tool geometry generic term cutting portion, reference System, tool angle and working angles, chip breaking (Basicquantitiesincuttingandgrinding-Part 1. Geometryoftheactive partofcuttingtools-Generalterms, referencesystems, toolandwookingangles, chipbreakers) 1) The process is described in other parts of ISO 14649.
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