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An integrated framework for developing generic modular reconfigurable platforms for micro manufacturing and its implementation

机译:用于为微制造及其实施开发通用模块化可重构平台的集成框架

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摘要

The continuing trends of miniaturisation, mass customisation, globalisation and wide use of the Internet have great impacts upon manufacturing in the 21st century. Micro manufacturing will play an increasingly important role in bridging the gap between the traditional precision manufacturing and the emerging technologies like MEMS/NEMS. The key requirements for micro manufacturing in this context are hybrid manufacturing capability, modularity, reconfigurability, adaptability and energy/resource efficiency. The existing design approaches tend to have narrow scope and are largely limited to individual manufacturing processes and applications. The above requirements demand a fundamentally new approach to the future applications of micro manufacturing so as to obtain producibility, predictability and productivity covering the full process chains and value chains. A novel generic modular reconfigurable platform (GMRP) is proposed in such a context. The proposed GMRP is able to offer hybrid manufacturing capabilities, modularity, reconfigurablity and adaptivity as both an individual machine tool and a micro manufacturing system, and provides a cost effective solution to high value micro manufacturing in an agile, responsive and mass customisation manner. An integrated framework has been developed to assist the design of GMRPs due to their complexity. The framework incorporates theoretical GMRP model, design support system and extension interfaces. The GMRP model covers various relevant micro manufacturing processes and machine tool elements. The design support system includes a user-friendly interface, a design engine for design process and design evaluation, together with scalable design knowledge base and database. The functionalities of the framework can also be extended through the design support system interface, the GMRP interface and the application interface, i.e. linking to external hardware and/or software modules. The design support system provides a number of tools for the analysis and evaluation of the design solutions. The kinematic simulation of machine tools can be performed using the Virtual Reality toolbox in Matlab. A module has also been developed for the multiscale modelling, simulation and results analysis in Matlab. A number of different cutting parameters can be studied and the machining performance can be subsequently evaluated using this module. The mathematical models for a non-traditional micro manufacturing process, micro EDM, have been developed with the simulation performed using FEA. Various design theories and methodologies have been studied, and the axiomatic design theory has been selected because of its great power and simplicity. It has been applied in the conceptual design of GMRP and its design support system. The implementation of the design support system is carried out using Matlab, Java and XML technologies. The proposed GMRP and framework have been evaluated through case studies and experimental results.
机译:小型化,大规模定制,全球化和Internet广泛使用的持续趋势对21世纪的制造业产生了巨大影响。微型制造在弥合传统精密制造与MEMS / NEMS等新兴技术之间的差距方面将发挥越来越重要的作用。在这种情况下,微型制造的关键要求是混合制造能力,模块化,可重构性,适应性和能源/资源效率。现有的设计方法趋于具有狭窄的范围,并且在很大程度上限于单个制造过程和应用。上述要求要求从根本上为微型制造的未来应用提供一种新方法,以便获得覆盖整个过程链和价值链的可生产性,可预测性和生产率。在这种情况下提出了一种新颖的通用模块化可重构平台(GMRP)。拟议的GMRP能够提供混合制造能力,模块化,可重构性和适应性,既可作为单个机床,也可以作为微制造系统,并以敏捷,响应迅速和大规模定制的方式为高价值微制造提供经济高效的解决方案。由于其复杂性,已经开发了一个集成框架来辅助GMRP的设计。该框架整合了理论GMRP模型,设计支持系统和扩展接口。 GMRP模型涵盖了各种相关的微制造工艺和机床要素。设计支持系统包括用户友好的界面,用于设计过程和设计评估的设计引擎,以及可扩展的设计知识库和数据库。框架的功能还可以通过设计支持系统接口,GMRP接口和应用程序接口来扩展,即链接到外部硬件和/或软件模块。设计支持系统提供了许多用于分析和评估设计解决方案的工具。可以使用Matlab中的Virtual Reality工具箱来执行机床的运动学仿真。还为Matlab中的多尺度建模,仿真和结果分析开发了一个模块。可以研究许多不同的切削参数,然后可以使用该模块评估加工性能。通过使用FEA进行的仿真,已经开发出了非传统的微型制造工艺(微型EDM)的数学模型。已经研究了各种设计理论和方法,并且公理设计理论由于其强大的功能和简单性而被选择。它已应用于GMRP及其设计支持系统的概念设计中。设计支持系统的实现是使用Matlab,Java和XML技术进行的。拟议的GMRP和框架已通过案例研究和实验结果进行了评估。

著录项

  • 作者

    Cheng K; Sun Xizhi;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
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