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首页> 外文期刊>Robotics and Computer-Integrated Manufacturing >Pure cycles in two-machine dual-gripper robotic cells
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Pure cycles in two-machine dual-gripper robotic cells

机译:两机双爪机械手单元中的纯循环

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We consider a robotic cell served by a dual-gripper robot that consists of identical CNC machines placed linearly and a material handling robot loading/unloading the machines and transporting the parts between them. Identical parts are to be processed in this system and the CNC machines are capable of performing all the operations that a part requires. We consider the problem of sequencing activities of the robot in order to maximize the throughput rate. As a consequence of the flexibility of the CNC machines, a new class of robot move sequences, named as pure cycles, arises. In a pure cycle, the robot loads and unloads each machine once and each part is processed on exactly one of the machines. Thereby, the problem is to determine the best pure cycle that maximizes the throughput rate. We first determine the feasibility conditions for the pure cycles and prove some basic results that reduces the number of feasible pure cycles to be investigated. We analyze 2-machine robotic cells in detail and prove that five of the cycles among a huge number of feasible pure cycles dominate the rest. We determine the parameter regions in which each of the five cycles is optimal. We also analyze the performance improvement that can be attained by using a dual gripper robot and provide managerial insights.
机译:我们考虑一个由双夹具机械手服务的机械手单元,该机械手由线性放置的相同CNC机器和一个物料装卸机器人来装载/卸载机器并在它们之间运输零件。相同的零件将在该系统中进行处理,并且CNC机床能够执行零件所需的所有操作。为了最大化生产率,我们考虑了机器人的排序活动问题。由于CNC机床的灵活性,出现了一种称为纯循环的新型机器人移动序列。在一个纯粹的周期中,机器人会在每台机器上装卸一次,并且每个零件都在其中一台机器上进行处理。因此,问题在于确定使生产率最大化的最佳纯循环。我们首先确定纯循环的可行性条件,并证明一些基本结果,这些结果减少了要研究的可行纯循环的数量。我们详细分析了两机机器人细胞,并证明了大量可行的纯循环中的五个循环占主导。我们确定五个循环中每个循环最佳的参数区域。我们还分析了使用双抓取器机器人可以实现的性能改进,并提供了管理方面的见解。

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