Novel Approach of an Intelligent and Flexible Manufacturing System: A Contribution to the Concept and Development of Smart Factory

W. Sawangsri, Pattranit Suppasasawat, Vorakrit Thamphanchark, Shilpa Pandey
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引用次数: 11

Abstract

An integrated and intelligent manufacturing system linked the concept of smart factory demonstration are proposed and implemented in this paper. A simple and flexible system design of interfacing between available machines and devices are conducted in term of an integrated system. Thus, the conventional milling machine, the robotic arm as well as the conveyor system are gathered and integrated into fully automated system of a loop cycle in process manufacturing demonstration, the so-called “Demo Site”. The key concepts of intelligent manufacturing system as well as smart factory are preliminary performed and presented based on system design of the “Demo Site”. The ability of this intelligent and flexible system is to manufacture the different shapes and dimensions of predesigned parts based on repeatedly running on single loop cycle of the system. A single loop system consists of sequencing in process manufacturing which fully automatic in any production steps. The experimental study is made on performance testing of the integrated system, and results shown that differently machined parts can be automatically manufactured by repeatedly execution of the single loop configuration of “Demo Site”. Also, it is flexible and reprogrammable for any machined parts which can be performed based on this system. Furthermore, proposed of the intelligent and flexible system is a primary key configuration enhancing in the development of smart factory for industry 4.0.
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智能柔性制造系统的新途径:对智能工厂概念和发展的贡献
本文提出并实现了一个结合智能工厂概念的集成智能制造系统。从集成系统的角度出发,对现有机器和设备之间的接口进行了简单灵活的系统设计。因此,将传统铣床、机械臂以及输送系统集合并集成到一个全自动化的循环系统中进行工艺制造演示,即所谓的“演示现场”。在“演示站点”系统设计的基础上,对智能制造系统和智能工厂的关键概念进行了初步的阐述和介绍。该系统的智能和灵活的能力是基于系统在单回路循环上的重复运行来制造预先设计的不同形状和尺寸的零件。单环系统由过程制造中的排序组成,在任何生产步骤中都是全自动的。对集成系统的性能测试进行了实验研究,结果表明,通过重复执行“演示站点”的单回路配置,可以自动制造不同加工的零件。此外,它是灵活的和可重新编程的任何加工零件,可以执行基于该系统。此外,提出的智能柔性系统是工业4.0智能工厂发展的主要关键配置。
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