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A Modular Flexible Scalable and Reconfigurable System for Manufacturing of Microsystems Based on Additive Manufacturing and E-Printing

机译:基于添加剂制造和电子印刷制造微系统的模块化灵活可扩展和可重新配置系统

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Generative manufacturing technologies are gaining more and more of importance as key enabling technologies in future manufacturing, especially when a flexible scalable manufacturing of small medium series of customized parts is required. The paper describes a new approach for design manufacturing of complex three dimensional components building on a combination of laminated objects manufacturing and e-printing technologies. The micro component is made up of stacks offunctionalized layers of polymer films. The concept is currently developed further in the project SMARTLAM, funded by the European Commission. The manufacturing system is based on a modular approach which enables the manufacturing of different small size batches with different modules. Different modules can be combined by defined Hardware and software interfaces. Avoiding time consumable and difficult programming caused by manufacturing a new product a Function-Block Runtime (FORTE) executes generated control application platform-independently and coordinates component module functionalities. The control system will integrate all processes as well as the base platform with features far beyond ordinary PLC systems. One aspect is the use of process data out of the data acquisition system to simulate and optimize the processes. These results are incorporated into the main machine control system. Another aspect is the vision system for flexible quality control and closed-loop positioning control with visual serving. The paper shows the first example of manufacturing technologies and demonstrates the control system approach by the example of the control system for alignment of different stacks.
机译:生成制造技术正在增加越来越重要的是,作为未来制造业的关键能够实现技术,特别是当需要灵活的可扩展制造时需要的小型系列定制部件。本文描述了一种新的设计制造复杂三维部件建筑物的组合,层压物体制造和电子印刷技术的组合。微量组分由堆叠的聚合物膜的堆积化层组成。该概念目前在项目Smartlam项目中进一步开发,由欧洲委员会资助。制造系统基于模块化方法,其使得具有不同的模块的不同小尺寸批次的制造。可以通过定义的硬件和软件接口组合不同的模块。避免由制造新产品引起的耗时和困难的编程功能块运行时(Forte)独立执行生成的控制应用程序平台并协调组件模块功能。控制系统将集成所有流程以及基础平台,具有远远超出普通PLC系统的特性。一个方面是使用流程数据从数据采集系统中仿真和优化过程。这些结果纳入主机控制系统中。另一方面是具有视觉服务的灵活质量控制和闭环定位控制的视觉系统。本文显示了制造技术的第一示例,并通过控制系统的示例来演示控制系统方法,用于对准不同堆叠。

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