Abstract
A method of diminishing the shape error of membrane mirror is proposed in this paper. The inner inflating pressure is considerably decreased by adopting the pre-shaped membrane. Small deformation of the membrane mirror with greatly reduced shape error is sequentially achieved. Primarily a finite element model of the above pre-shaped membrane is built on the basis of its mechanical properties. Then accurate shape data under different pressures can be acquired by iteratively calculating the node displacements of the model. Shape data are applicable to build up deformed reflecting surfaces for the simulative analysis in ZEMAX. Finally, ground-based imaging experiments of 4-bar targets and nature scene are conducted. Experiment results indicate that the MTF of the infrared system can reach to 0.3 at a high spatial resolution of 10l p/mm, and texture details of the nature scene are well-presented. The method can provide theoretical basis and technical support for the applications in lightweight optical components with ultra-large apertures.
| Original language | English |
|---|---|
| Pages (from-to) | 170-177 |
| Number of pages | 8 |
| Journal | Infrared Physics and Technology |
| Volume | 82 |
| DOIs | |
| State | Published - 1 May 2017 |
Keywords
- Inflated reflector
- Medium wave infrared system
- Nonlinear finite element method
- Pre-shaped membrane surface
- Small shape deformation
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