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Precision forming technology and application for high-precision sandwich reflector panels

机译:高精度夹芯反射板的精密成型技术及其应用

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Aiming at the precision forming manufacturing issues of high-precision, wide-range, undevelopable hyperbolic reflector panels, this paper further developed high-precision reflector panels forming technology based on "discrete nail die, vacuuming pressure, honeycomb sandwich, stress release and spring back", built a mechanical model for hyperbolic sandwich forming, determined the simulation algorithm of the forming process and summarized the main influence factors reflected panel precision. The shape precision of panels was increased by slotting stress release and spring back compensation, while the edge precision was assured by accessing developed panel by iterative strain energy releasing method. The precision-forming CAE system, environmental control and laser tracker measurement were used as the panel quality control methods. The shape precision and edge precision of panels manufactured by this technology totally met the design requirements. The technology can be successfully applied in large compact antenna test range (CATR) and the manufacture of millimeter wave antenna.
机译:针对高精度,大范围,无法开发的双曲线反射板的精密成型制造问题,本文进一步开发了基于“离散钉模,真空压力,蜂窝夹层,应力释放和回弹”的高精度反射板成型技术。 ”,建立了双曲夹层成形的力学模型,确定了成形过程的模拟算法,并总结了影响面板精度的主要影响因素。通过开槽应力释放和回弹补偿提高了面板的形状精度,而通过迭代应变能释放方法访问已开发的面板则确保了边缘精度。精密成型的CAE系统,环境控制和激光跟踪仪测量被用作面板质量控制方法。通过该技术制造的面板的形状精度和边缘精度完全满足设计要求。该技术可以成功地应用于大型紧凑型天线测试范围(CATR)和毫米波天线的制造中。

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