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首页> 外文期刊>Journal of Fuel Cell Science and Technology >Fuel Cell ASAP: Two Iterations of an Automated Stack Assembly Process and Ramifications for Fuel Cell Design-for-Manufacture Considerations
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Fuel Cell ASAP: Two Iterations of an Automated Stack Assembly Process and Ramifications for Fuel Cell Design-for-Manufacture Considerations

机译:尽快进行燃料电池:自动堆叠组装过程的两次迭代以及针对燃料电池设计制造考虑因素的改进

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Polymer-electrode membrane fuel cell technology, a low-emission power source receiving much attention for its efficiency, will need to progress from low-volume production to high-volume within the course of the next decade. To successfully achieve this transition, significant research progress has already been made toward developing a fully functional fuel cell automatic stack assembly robotic station. Lessons can be drawn from this research with regards to design-for-manufacture (DFM) and design-for-assembly (DFA) considerations of fuel cells; however, more work still remains to be done. This document outlines both iterations of the robotic fuel cell assembly stations, other work to date, DFM and DFA lessons learned, and the anticipated future progression of automatic fuel cell stack assembly stations. Two individual robotic fuel cell assembly stations were constructed, including custom-built end effectors and part feeders. The second station incorporated numerous improvements, including overlapping work envelopes, elimination of a shuttle cart, software synchronization, fewer axes, and a better end effector. Consequentially, the second workcell achieved a fourfold improvement in cycle time over the previous iteration. Future improvements will focus in part upon improving the reliability of the overall system. As the stack assembly workcell continues to improve, research will focus upon the ramifications and interplay of tolerances, stack failure modes, sealing, reliability, and the potential for component redesign specifically to optimize fuel cell manufacturing throughput.
机译:聚合物电极膜燃料电池技术是一种因其效率而备受关注的低排放电源,它将需要在未来十年内从小批量生产发展为大批量生产。为了成功实现这一转变,在开发功能齐全的燃料电池自动堆垛装配机器人工作站方面已经取得了重大的研究进展。从这项研究中可以吸取关于燃料电池的制造设计(DFM)和组装设计(DFA)方面的经验教训;但是,还有更多工作要做。本文档概述了机器人燃料电池组装站的迭代,迄今为止的其他工作,DFM和DFA的经验教训以及自动燃料电池堆组装站的预期未来发展。建造了两个单独的机器人燃料电池组装站,包括定制的末端执行器和零件进料器。第二个工位进行了许多改进,包括重叠的工作范围,取消了穿梭车,软件同步,更少的轴和更好的末端执行器。因此,第二个工作单元的循环时间比以前的迭代提高了四倍。未来的改进将部分集中在提高整个系统的可靠性上。随着电池组组装工作单元的不断改进,研究将集中在公差,电池组失效模式,密封,可靠性以及重新设计组件以优化燃料电池制造产能的潜力等方面的影响。

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