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山東軒燁機器人科技有限公司是一家以工業機器人以及自動化非標設備于一體的技術企業,公司致力于焊接、切割、機器人機床上下料等領域的機器人智能化研究和產業化應用

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工業機器人

公司立足于高端裝備制造等戰略新興產業,將追逐“制造2025"致力于機器人技術和互聯網技術的深度融合,推動智造。

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焊接機器人工業應用的關鍵技術

發布:2024-03-22 瀏覽:0

(1)開放性模塊化的控制系統體系結構:采用分布式CPU計算機結構,分為機器人控制器(RC),運動控制器(MC),光電隔離I/O控制板、傳感器處理板和編程示教盒等。機器人控制器(RC)和編程示教盒通過串口/CAN總線進行通訊。機器人控制器(RC)的主計算機完成機器人的運動規劃、插補和位置伺服以及主控邏輯、數字I/O、傳感器處理等功能,而編程示教盒完成信息的顯示和按鍵的輸入。

(1) Open modular control system architecture: adopting a distributed CPU computer structure, it is divided into robot controller (RC), motion controller (MC), photoelectric isolation I/O control board, sensor processing board, and programming teaching box. The robot controller (RC) and programming teaching box communicate through a serial port/CAN bus. The main computer of the robot controller (RC) completes the robot's motion planning, interpolation, position servo, main control logic, digital I/O, sensor processing and other functions, while the programming teaching box displays information and inputs buttons.

(2)模塊化層次化的控制器軟件系統:軟件系統建立在基于開源的實時多任務操作系統Linux上,采用分層和模塊化結構設計,以實現軟件系統的開放性。整個控制器軟件系統分為三個層次:硬件驅動層、核心層和應用層。三個層次分別面對不同的功能需求,對應不同層次的開發,系統中各個層次內部由若干個功能相對對立的模塊組成,這些功能模塊相互協作共同實現該層次所提供的功能。

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(2) Modular and Hierarchical Controller Software System: The software system is built on the open-source real-time multitasking operating system Linux, and adopts a layered and modular structure design to achieve the openness of the software system. The entire controller software system is divided into three levels: hardware driver layer, core layer, and application layer. The three levels face different functional requirements and correspond to different levels of development. Within each level of the system, there are several modules with relatively opposite functions, which work together to achieve the functions provided by that level.

(3)機器人的故障診斷與維護技術:通過各種信息,對機器人故障進行診斷,并進行相應維護,是保證機器人性的關鍵技術。

(3) Fault diagnosis and safety maintenance technology for robots: Diagnosis and corresponding maintenance of robot faults through various information is a key technology to ensure the safety of robots.

(4)網絡化機器人控制器技術:當前機器人的應用工程由單臺機器人工作站向機器人生產線發展,機器人控制器的聯網技術變得越來越重要。控制器上具有串口、現場總線及以太網的聯網功能??捎糜跈C器人控制器之間和機器人控制器同上位機的通訊,便于對機器人生產線進行監控、診斷和管理。

(4) Network based robot controller technology: Currently, the application engineering of robots is developing from single robot workstations to robot production lines, and the networking technology of robot controllers is becoming increasingly important. The controller has networking functions such as serial port, fieldbus, and Ethernet. Can be used for communication between robot controllers and between robot controllers and the upper computer, facilitating monitoring, diagnosis, and management of robot production lines.

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