G-code
- 网络G代码;程序格式
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Design of G-code Compiling for NC System Based on PC
基于PC机的数控系统G代码的编译设计
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As a practical application , the new method was integrated into the G-code optimization program .
作为实际应用,将新方法集成到G代码优化程序中。
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Development of G-code programming software for parallel kinematic machine tools
面向并联机床的G代码编程软件的开发
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The control system can execute the file compiled through G-code .
通过对G代码文件进行编译后,控制器就可以直接执行编译后的文件。
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Design parametric programming method , without the G-code programming , and improve work efficiency . 5 .
设计参数化编程方法,无需G代码编程,提高工作效率。
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Design and Implementation of G-code Interpreter in Linux Environment
Linux下G代码解释器的设计与实现
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The hardware , G-code programming and related software for displaying with LCD are introduced .
介绍了系统的硬件构成,G代码编程和LCD液晶显示条件下的系统软件设计。
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U-disk transfer G-code files ( cutting track file ), convenient and efficient .
通用U盘传输G代码文件(切割轨迹文件),方便快捷。
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The methods to control the feeding speed and location to meet the need of different machining requirements with G-code are studied .
研究了G代码编程实现不同加工要求时,对机床工作台进给速度和定位控制。
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For different free-form surfaces , this system lays out appropriate cutter location path , generates G-code ;
该系统可根据自由曲面的不同造型,规划出适当的刀位轨迹,生成G代码;
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In conventional Computer Numerical Controlled ( CNC ) machining , G-code is indispensable as the CNC programming language .
传统的数控加工中,G代码作为数控编程语言起着不可或缺的作用。
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Algorithm of cutting process simulation based on OpenGL - cutting process is more visual , more convenient for detecting correctness of G-code ;
基于OpenGL的切削过程模拟算法&加工过程更加直观,便于检查数控代码的正确性;
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Also , we introduce the G-code program of the module , the G code program provides high performance and we can use it easily .
另外,还介绍了该伺服定位模块的G代码编程,该语言具有功能强大、调试方便的特点。
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Designing G-Code compiling environment .
设计了G代码编译运行环境。
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And the numerical control system was developed , which can edit and execute G-code . Furthermore , the mechanics characteristics of micro milling cutter was analyzed using FEM .
开发了可编辑和执行G代码程序的数控系统,并利用有限元法对微细铣刀的力学特性进行分析。
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Besides this , it also covers the CAD / CAM for the mold cavity , and generating G-Code instructions for CNC machine by the advanced software .
除此之外,还包括模具型腔的CAD/CAM部分,并利用先进软件将其加工部分直接生成NC文件。
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IPC-based design of G-code compiler
基于工控机的G代码编译程序设计
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Man-machine interface modules such as G-code manual input module - convenient for manual operation , insight for working state , input of G-code and so on .
数控代码手动输入等人机界面模块&方便手动操作、了解加工状态和数控代码输入等。
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The new data interface for NC programming called STEP-NC was introduced on the basis of analyzing the shortcomings of conventional G-code , the main excellences of STEP-NC were discussed and its data model was given .
在分析传统G代码主要缺点的基础上,介绍了新的数控编程接口STEP-NC,详细阐述了STEP-NC的主要优点及其数据模型。
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The main contents include remote reception of real-time and history information , remote operation of CNC machine , remote performance of test G-code and the fault alarm by e-mail and short message of mobile-phone of CNC machine etc.
内容包括:数控机床实时和历史信息获取、数控机床远程操作、测试代码远程运行、数控机床E-mail和手机短信息报警等。
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Programmed on ARM platforms to achieve the functions of G-code file Parsing and forward-looking , interpolation parameter passing and interactive , constructed the engraving control system with continuous processing function , and it can be run offline .
在ARM平台上编程实现G代码文件解析前瞻、插补参数传递和人机交互等功能,构建了具有连续加工功能、可以脱机运行的雕刻控制系统。
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Using the NC function of commercial CAM software , this paper gives the inspection planning method and submits the inspection request by G-code text file . At last this paper refers to the questions about control of inspection process and data processing .
利用商品化CAM软件的NC功能进行检测轨迹规划,以G代码文本文件的形式提交检测作业要求,并介绍了检测过程控制及检测数据处理等问题。
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After the G-code format is changed to the NC code that the generating PMAC controllers can identify , the eye model is machined by PMAC-based three-axis control machine tool . At last the processing errors are analyzed .
将G-代码进行格式变化,生成PMAC控制器能够识别的数控代码,利用基于PMAC控制的三轴微细机床进行加工,得到仿生光学复眼模型并对加工误差进行分析。
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Make out the processing of spiral bevel gears , and calculate the cutter location under the UG software . Then according to machine center structure and directive format of CNC system , building post processing , and getting the G-code . 4 .
编制螺旋锥齿轮的加工工艺,并在UG软体下进行刀位轨迹计算,根据加工中心的结构和数控系统的指令格式构建后处理,生成加工代码。
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According to the characteristic of DMU 70V machining center , this thesis deals with the procedure after configuring its special-postprocessor , and the code ( G-code ) generated in Pro / Engineer system , which can be used in this machining center directly .
根据DMU70V加工中心的特点,在数控加工中,配置了其专用的后置处理程序,使Pro/Engineer系统生成的数控加工代码(G代码)能直接应用这个加工中心。
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One is planning the tool path and generating the G-code file based on the UG-CAM software considering the actual grinding technics , then the G-code file was transferred to the required format file that can be run in the robot by the developing software in the paper .
其一是以UG为平台、研磨工艺特点为背景,采用UG-CAM进行研磨路径的规划,并开发相关软件将所生成的G代码转化为机器人识别代码。
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Based on the cutting force surface model , a polynomial equation of side cutting depth and feedrate is created to calculate the feedrate of each CL data and the calculated feedrate value is written out with the G-code position data block to an updated version of the die-cavity .
基于切削力曲面模型,采用多项式拟合的方法构建刀具在许可切削力下的侧向切深和进给率的方程,根据建立的方程计算每个刀位点处的进给率并反写到初始的G代码文件中。