计算机集成制造系统 ›› 2014, Vol. 20 ›› Issue (1): 104-.DOI: 10.13196/j.cims.2014.01.renshiming.0104.6.20140113

• 论文 • 上一篇    下一篇

大曲率赋形凸面天线制造关键技术

任士明,李东升,于成龙,江超   

  1. 北京航空航天大学机械工程及自动化学院
  • 出版日期:2014-01-25 发布日期:2014-01-25

Key technology of large curvature beam-shaped convex antenna manufacture

  • Online:2014-01-25 Published:2014-01-25

摘要: 针对大曲率赋形凸面天线的制造难题,研究了其制造关键技术并给出了制造工艺流程。该制造技术利用“点阵钉模、真空负压、蜂窝夹层、应力释放”的精密成形原理,并采用双夹层蜂窝结构胶结成形的方法,其关键技术主要包括赋形凸面天线母线点集的计算、工艺补充面的建立、点阵钉模的生成及用于形成包络面的垫板开缝原则等。基于该制造工艺流程研制出了赋形凸面天线反射单元并给出了测量结果。结果显示,反射单元型面精度达到30.2 μm,验证了该制造工艺流程的实用性和有效性。

关键词: 大曲率赋形凸面天线|制造工艺流程|工艺补充面|垫板开缝原则|反射单元

Abstract: To solve the manufacturing problem of the large curvature beam-shaped convex antenna, the key technology of manufacture was researched and the manufacturing process flow was also pointed, which adapted the precision forming principle of discrete nails die, vacuating press, honeycomb sandwich, stress release in plane and the cemented forming method of double laminated honeycomb structure. The key technologies such as the point set calculation of the beam-shaped convex antenna generatrix, the establishment of the process supplement surface, the generation of discrete nails die and the shim plate slitting principle used for the formation of the envelope surface were discussed and implemented. The beam-shaped convex antenna reflector units were developed based on the manufacturing process flow and the measurement results were given. The Root Mean Square (RMS) of reflector unit surface accuracy achieved 30.2 μm and the feasibility and effectiveness of the manufacturing process flow were verified.

Key words: large curvature beam-shaped convex antenna|manufacturing process flow|process supplement surface|shim plate slitting principle|reflector unit