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Desenvolvimento de Sistema de Controle para Aparato de Soldagem por Atrito Rotativo

机译:旋转摩擦焊机控制系统的研制

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The friction rotary welding (FRW) is a solid state material welding method that is able to weld not only similar but dissimilar materials as well. The FRW allows the union between two pieces of metal converting mechanical energy into thermal welding. The friction generated by the rotational momentum between the two surfaces generates enough heat to fuse the materials without reaching the fusion temperature, this mechanical connection can be done through atomic diffusion. The equipment needed to perform the FRW process needed a new control system. This paper presents the development of this new control system through a top-down approach based on successive refinement using modeling tools developed to model dynamic systems to discrete events. The result presented in this paper is the control system algorithm in Enhanced Mark Flow Graph, a high level Petri Net derivative and a systematic to map the model in C++ in order to use it in a PIC microcontroller.
机译:摩擦旋转焊接(FRW)是一种固态材料焊接方法,不仅可以焊接相似的材料,也可以焊接不同的材料。FRW允许两块金属结合,将机械能转化为热焊接。两个表面之间的旋转动量产生的摩擦产生足够的热量,使材料在不达到熔化温度的情况下熔化,这种机械连接可以通过原子扩散实现。执行FRW工艺所需的设备需要一个新的控制系统。本文通过一种自上而下的方法来开发这种新的控制系统,这种方法基于使用开发的建模工具对离散事件的动态系统进行连续细化。文中给出的结果是增强型Mark Flow Graph的控制系统算法,一个高级Petri网导数,一个系统在C++中映射模型,以便将其应用于PIC单片机。

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