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STEP-NC and function blocks for interoperable manufacturing

机译:可互操作制造的STEP-NC和功能块

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Interoperable manufacturing systems help manufacturing companies stay competitive in the environment of frequent and unpredictable market changes. An important part of a manufacturing system is computer numerically controlled (CNC) machine tools. Over the years, G-codes have been extensively used by CNC machine tools and are now considered as a bottleneck for making these machines adaptable and interoperable. Two new technologies emerged in recent years: Standard for the Exchange of Product data for Numerical Control (STEP-NC) and function blocks. The STEP-NC data model represents a common standard for NC programming, making the goal of a generic NC code generation facility a reality. Function blocks are an emerging IEC standard for distributed industrial processes and control systems. They can be used for CNC controls to encapsulate machining data, such as machining features and their needed algorithms. This paper introduces the above two new standards and the technologies that are developed based on the standards. The main body is devoted to analyze the standards from the functionality viewpoint. These functionalities include, bidirectional information flow in computer-aided design/computer-aided manufacturing, data sharing over the Internet, the use of feature-based machining concept, modularity and reusability, intelligent and autonomous CNC, and portability among resources. Some implementations are also presented to showcase how the standards are used to develop technologies for interoperable machining. Note to Practitioners-Modern computer numerically controlled (CNC) machine tools are limited in functions because their controllers rely on G-codes for communications. G-code is considered a "dumb" language as it only documents instructional and procedural data, leaving most of the design information behind. G-code programs are also hardware dependent, denying modern CNC machine tools desired interoperability and portability. In recent years, two new standards emerged, STEP-NC and function blocks. They may hold the key to empowering CNC machine tools with richer information which, in turn, gives CNC machine tools the ability to "think" intelligently and to be interoperable. This paper introduces these two standards, the technologies that have been develop-ed based on the standards and some prototype systems using the standards and technologies. The intention is not to highlight any achieved research outcome. Instead, the focus is on informing the research and practical world about these new standards, analyzing them from the viewpoint of supporting interoperable CNC machine tools, and offering some futuristic views about these standards and technologies. While these standards are still in their infancy, research activities and prototype systems are already coming thick and fast. There seems to be a "healthy" mixture of participants working in the field. They range from the manufacturers of all systems related to the data interface (i.e., CAM systems, controls, and machine tools), to the users and academic institutions.
机译:可互操作的制造系统可帮助制造公司在频繁且不可预测的市场变化环境中保持竞争力。制造系统的重要组成部分是计算机数控(CNC)机床。多年来,G代码已被CNC机床广泛使用,现在被认为是使这些机床具有适应性和互操作性的瓶颈。近年来出现了两项新技术:数控产品数据交换标准(STEP-NC)和功能块。 STEP-NC数据模型代表了NC编程的通用标准,使通用NC代码生成工具的目标成为现实。功能块是针对分布式工业过程和控制系统的新兴IEC标准。它们可用于CNC控件以封装加工数据,例如加工特征及其所需的算法。本文介绍了以上两个新标准以及在这些标准的基础上开发的技术。主体致力于从功能的角度分析标准。这些功能包括:计算机辅助设计/计算机辅助制造中的双向信息流,Internet上的数据共享,基于特征的加工概念的使用,模块化和可重用性,智能和自主的CNC以及资源之间的可移植性。还介绍了一些实现方式,以展示如何使用标准来开发可互操作的加工技术。执业者注意-现代计算机数控(CNC)机床的功能受到限制,因为其控制器依赖于G代码进行通信。 G代码被认为是一种“愚蠢”的语言,因为它仅记录教学和过程数据,而留下了大多数设计信息。 G代码程序也依赖于硬件,从而拒绝了现代CNC机床所需的互操作性和可移植性。近年来,出现了两个新标准,STEP-NC和功能块。它们可能是为CNC机床提供更丰富信息的关键,而这反过来又使CNC机床具有智能“思考”和可互操作的能力。本文介绍了这两个标准,基于这些标准开发的技术以及使用这些标准和技术的一些原型系统。目的不是要突出任何已取得的研究成果。相反,重点是向研究和实践领域通报这些新标准,从支持可互操作的CNC机床的角度对它们进行分析,并对这些标准和技术提供一些未来的观点。虽然这些标准还处于起步阶段,但是研究活动和原型系统已经变得越来越庞大和快速。在现场工作的参与者似乎混合在一起。他们的范围从与数据接口有关的所有系统的制造商(即CAM系统,控件和机床)到用户和学术机构。

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