教育数控机床加工操作的发展周期

Pub Date : 2024-05-23 DOI:10.46300/9109.2024.18.5
N. Baroiu, Georgiana Novac, Valentin Tăbăcaru, G. Moroșanu
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引用次数: 0

摘要

本文介绍了高压液压齿轮泵法兰的技术分析、阶段和工作方法以及加工周期参数,该法兰的代码为 FHP-05-12-24,由 ERTALON 66 SA 型聚合材料制成。加工是在一台名为 EMCO MILL 55 CNC 的数控铣钻机的帮助下进行的。指令通过计算机接口编程,使用传统的数字代码,指令相同的运动链,定义特定元素,如零件的几何结构、技术条件、数控运动学结构、可编程坐标的计算、切削工具的参数和切削制度的参数。根据聚合物材料的特性,以及可编程功能和例程的确定,使用专用于异型表面钻孔和铣削加工的特殊功能,定义了复杂零件加工操作的完整开发周期。零件程序结构包含与每个阶段和加工工具相关的程序块。这项研究的目的是在早期阶段强调学生和年轻研究人员如何使用计算机数控(CNC)机床,将其作为复杂表面物理加工的辅助工具,可能通过基于专业软件产品(如 GOM 扫描、GOM 检查、有限元分析等)的数字关联进行数字化和测量数据。
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The Development Cycle of Machining Operations on an Educational CNC Machine
The paper presents a technological analysis, the phases and working methods, as well as the parameters of the processing cycle of a flange for a high-pressure hydraulic gear pump, which has the code FHP-05-12-24, made of polymeric material of ERTALON 66 SA type. The processing was made by cutting with the help of an educational milling and drilling machine with numerical control called EMCO MILL 55 CNC. The commands were programmed through a computer interface, using a conventional numerical code that commands the same kinematic chains, defining specific elements such as the geometric structure of the part, the technological conditions, the structure of the CNC kinematics, the calculation of the programmable coordinates, the parameters of the cutting tools and the parameters of the cutting regime. Based on the characteristics of the polymer material, but also on the identification of programmable functions and routines, the complete development cycle of the complex part processing operations was defined using special functions dedicated to the drilling and milling processes of the profiled surfaces. The part program structure contains program blocks associated with each stage and machining tools. The purpose of the study is to highlight, at an early stage, how students and young researchers can use computer numerical control (CNC) machines, which can be used as a support for the physical processing of complex surfaces, possibly obtained by digitizing and measuring data through a digital correlation based on specialized software products (e.g. GOM Scan, GOM Inspect, FEM analysis, etc.).
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