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作 者:庞博 苏亮 罗强[1] 赵辉 鲁帆[1] Pang Bo;Su Liang;Luo Qiang;Zhao Hui;Lu Fan(Institute of Spacecraft System Engineering,Beijing 100094,China)
出 处:《质量与可靠性》2024年第5期24-28,共5页Quality and Reliability
摘 要:铝氨槽道热管是在航天器中应用最广泛、最高效、最可靠的重要传热元件之一。当前,宇航型号研制任务呈现出“任务激增、竞争激烈、周期缩短、成本严控”等新特征,对热管提出了“规模化、短周期、低成本”的研制需求。为适应新形势,以产品化为核心,重点围绕建立面向规模化产品型谱、体系化组织机制和智能化生产线,打造新质生产力。面向规模化生产,系统分析当前情况和未来需求,压缩、合并、升级产品型谱;建立体系化组织机制,成立独立产品队伍,不断迭代型谱并提升型谱选用率;建设具有规模效应的智能化热管生产线,大幅提升热管产能,压缩生产周期、生产成本,减少人员占用。Aluminum-ammonia axis groove heat pipe is one of the most widely used,efficient,and reliable heat transfer components in spacecraft applications.Currently,new mission characteristics of mission surge,fierce competition,shortened cycle and strict cost control necessitate the heat pipe production to larger scale,shorter cycle and lower cost.To adapt to the new situation,with product optimization as the core,efforts are focused on establishing a scaled product spectrum,systematic organizational mechanism and intelligent production line to create new quality productive force.For scaled production,a systematic analysis of the current situation and future needs is conducted to compress,merge,and upgrade the product spectrum.A systematic organizational mechanism and an independent product team are established.The product spectrum is continuously iterated to improve the selection rate.An intelligent production line with scale effects is built,implementing work to significantly increase capacity,compress production cycles and costs,and minimize manpower requirements.
分 类 号:V468[航空宇航科学与技术—航空宇航制造工程]
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