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Response surface method based robotic cells layout optimization in small part assembly

机译:基于响应面方法基于小部分组件的机器人单元布局优化

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Small part assembly (SPA) in 3C industry is considered as the next giant market for the industrial robots, which have proven to be more cost effective in terms of flexibility, repeatability, and with new functions offer improved accuracy. However, high product volume in a quite short product lifecycle, short leading time for new product, and low added value per production step differentiates the robotic cells in 3C industry from those in the established automotive industry. The productivity normally determines the fortune of 3C manufacturing enterprises. Therefore, how to maximize the throughput of a robotic cell in SPA with optimal cell layout is highly demanded. This present work puts forward a practical methodology to minimized the cycle time for certain patterned robotic cell layouts in SPA, by applying response surface method (RSM). The optimization is performed not only with 3-dimension translation, but also together with rotation. Additionally, an available solution can be provided to the cell with two workstations/tasks simultaneously. The validation of this methodology has been carefully implemented with several kinds of practical cases, by achieving the optimum deployment of the workstations/tasks in the cell, with an incensement in productivity up to 15%. This is not a considerate improvement, but will bring a significant benefit to SPA manufacturer's revenues.
机译:3C行业中的小型组件(SPA)被认为是工业机器人的下一个巨大市场,这在灵活性,可重复性和新功能方面被证明更具成本效益,提供了提高的准确性。然而,高产品体积在相当短的产品生命周期中,新产品的短时间内,每种生产步长的低附加值与既定汽车行业中的3C行业中的机器人细胞区分开来。生产力通常确定3C制造企业的财富。因此,如何最大限度地提高具有最佳小区布局的水疗中心的机器人单元的吞吐量。本工作提出了一种实用方法,通过施加响应表面方法(RSM)来最小化SPA中某些图案机器人细胞布局的循环时间。优化不仅具有3维度转换,而且还与旋转一起执行。另外,可以同时向小区提供可用的解决方案,同时具有两个工作站/任务。通过多种实用案例验证了这种方法,通过实现了电池中的工作站/任务的最佳部署,生产率高达15%的速度。这不是一个体贴的改进,但会对SPA制造商的收入带来重大好处。

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