<sub id="for6y"><s id="for6y"><form id="for6y"></form></s></sub>

    <cite id="for6y"></cite>

        <s id="for6y"></s>
        亚洲一品道一区二区三区,国产无套粉嫩白浆在线,51妺嘿嘿午夜福利,人人妻人人澡人人爽人人精品av,欧美一区二区三区欧美日韩亚洲,欧美一本大道香蕉综合视频 ,884aa四虎影成人精品,国产精品久久久久久福利69堂

        Choisissez votre emplacement:

        Emplacement

        KUKA robots and software get students at Rosenheim University of Applied Sciences up and running in robotics

        Learn how to handle industrial robots as a specialist of the future: in the assembly and robotics laboratory at Rosenheim University of Applied Sciences. Students learn to design specific practical applications in cells. KUKA, which has had links with Rosenheim University of Applied Sciences for many years, supplied simulation software and industrial robots, such as the KR AGILUS, and lightweight robots, such as the LBR iiwa.

        3 novembre 2016


        靈敏的 LBR iiwa 帶著夾持工具通過一座由樂高積木堆成的迷宮。
        The sensitive LBR iiwa moves its gripper tool through a maze built from Lego bricks.

        LBR?iiwa solves tasks with a sensitive touch

        Many engineering careers are no doubt born in early childhood out of a fascination for Lego bricks and robots. The next step up the career ladder then occurs in the assembly and robotics laboratory at Rosenheim University of Applied Sciences under Prof. Dr. Christian Meierlohr. Using an application with the LBR iiwa from KUKA, engineering students no longer stack Lego bricks themselves. Instead, they leave this task to the sensitive seven-axis lightweight robot. The LBR iiwa picks up the pieces, stacks them and sensitively pushes them together. Lego mazes can be created in this way and the sensitive lightweight robot passes through them with its gripper. The students make use here of the robot’s sensitive ability to detect and avoid obstacles and collisions in order to find its way out of the labyrinth. Since the robot is mounted on a specially manufactured laboratory trolley, it can be moved freely around the room and thus flexibly used in other teaching events.

        Handling workpieces with a kuka small robot

        The KR AGILUS sixx small robot is extremely fast. It is located in a training cell with a transparent table, automatic workpiece supply by vibratory feeder and an image processing system for workpiece recognition. Depending on the study level – Bachelor or Master – it can be used to accomplish different tasks. Pick-and-place is a typical automation scenario. Here the robot is used to grip workpieces and position them accurately. The image processing system can also be used to recognize and sort different parts. Another task is programming the robot to find its way through a foam labyrinth.

        Programming by means of software simulation

        As far as programming is concerned, students can use the simulation software KUKA.Sim Pro to program robots offline on the PC and test the sequence with KUKA.OfficeLite In this way, they learn to create motion sequences that can be used, for example, in robotic cells for production and assembly. Following the simulated tests, the sequences programmed offline can be checked directly on the real machine and optimized under practical conditions. “Simulation is a good first step when planning what can be done with a robot, but sooner or later it reaches its limits. The real world behaves slightly differently from the simulated world in certain respects. That is why the ability to transfer the planning on the computer directly to the real robot and apply it there is so valuable,” says Prof. Dr. Meierlohr. Moreover, the integration of the simulation workstations makes it possible to divide the students into smaller groups that can work at multiple stations. This increases the intensity and success of the learning process. In this way, the students can work through the typical engineering tasks from planning through to real implementation.

        Get to know the collaborative lightweight robot LBR iiwa.
        Find out everything about the KUKA AGILUS series in the field of small robots here.
        靈敏的 LBR iiwa 帶著夾持工具通過一座由樂高積木堆成的迷宮。
        The sensitive LBR iiwa moves its gripper tool through a maze built from Lego bricks.

        LBR?iiwa solves tasks with a sensitive touch

        Many engineering careers are no doubt born in early childhood out of a fascination for Lego bricks and robots. The next step up the career ladder then occurs in the assembly and robotics laboratory at Rosenheim University of Applied Sciences under Prof. Dr. Christian Meierlohr. Using an application with the LBR iiwa from KUKA, engineering students no longer stack Lego bricks themselves. Instead, they leave this task to the sensitive seven-axis lightweight robot. The LBR iiwa picks up the pieces, stacks them and sensitively pushes them together. Lego mazes can be created in this way and the sensitive lightweight robot passes through them with its gripper. The students make use here of the robot’s sensitive ability to detect and avoid obstacles and collisions in order to find its way out of the labyrinth. Since the robot is mounted on a specially manufactured laboratory trolley, it can be moved freely around the room and thus flexibly used in other teaching events.

        Handling workpieces with a kuka small robot

        The KR AGILUS sixx small robot is extremely fast. It is located in a training cell with a transparent table, automatic workpiece supply by vibratory feeder and an image processing system for workpiece recognition. Depending on the study level – Bachelor or Master – it can be used to accomplish different tasks. Pick-and-place is a typical automation scenario. Here the robot is used to grip workpieces and position them accurately. The image processing system can also be used to recognize and sort different parts. Another task is programming the robot to find its way through a foam labyrinth.

        Programming by means of software simulation

        As far as programming is concerned, students can use the simulation software KUKA.Sim Pro to program robots offline on the PC and test the sequence with KUKA.OfficeLite In this way, they learn to create motion sequences that can be used, for example, in robotic cells for production and assembly. Following the simulated tests, the sequences programmed offline can be checked directly on the real machine and optimized under practical conditions. “Simulation is a good first step when planning what can be done with a robot, but sooner or later it reaches its limits. The real world behaves slightly differently from the simulated world in certain respects. That is why the ability to transfer the planning on the computer directly to the real robot and apply it there is so valuable,” says Prof. Dr. Meierlohr. Moreover, the integration of the simulation workstations makes it possible to divide the students into smaller groups that can work at multiple stations. This increases the intensity and success of the learning process. In this way, the students can work through the typical engineering tasks from planning through to real implementation.

        Get to know the collaborative lightweight robot LBR iiwa.
        Find out everything about the KUKA AGILUS series in the field of small robots here.
        主站蜘蛛池模板: 国产成年无码久久久免费| 国产精欧美一区二区三区| 自拍偷自拍亚洲精品牛影院| 亚洲伊人精品久视频国产| 色九月亚洲综合网| 国产精品综合av一区二区国产馆| 一二三区国产精品久久| 欧美牲交40_50a欧美牲交aⅴ | 精品人妻丰满久久久a| 日韩精品一区二区深田咏美| 一亚洲一区二区中文字幕| 熟女荡漾在线| 泸水县| 国产欧美日韩在线专区| 97成人碰碰久久人人超级碰oo| 玖草视频在线观看| 超碰777| 午夜久久精品国产亚洲av| 亚洲自偷自拍另类小说| xxxx国产| 亚洲天堂人妻| 国产精品久久大屁股白浆黑人| 精品久久精品午夜精品久久| 国产专区一va亚洲v天堂| 夜夜?久久?狠狠| 亚洲国产av系列精品麻豆| 精品一区二区三区无码视频| 欧洲无码一区二区三区在线观看| 欧美激情a∨在线视频播放| 一区二区三区人妻无码| 亚洲无码2| 91青青草视频在线观看| 国产精品私拍99pans大尺度 | 婷婷综合亚洲| 亚洲国产欧美在线成人APP| 亚洲春色无码AV专区| 亚洲成a人片77777精品| 国产精品自拍中文字幕| 日韩在线天堂| 久久久久亚洲AV成人网人人小说| 亚洲人成网站久久久综合|