节点文献
空间遥感器高体份SiC/Al复合材料反射镜组件设计
Design of high volume fraction SiC/Al composite mirror in space remote sensor
【摘要】 为消除反射镜与支撑结构材料线胀系数差异产生的热变形对反射镜面形精度、系统成像质量的影响,采用高体份Si C/Al复合材料作为新型反射镜组件的材料。首先,通过合理的结构设计及有限元分析比较,确定了Ф600 mm口径反射镜结构参数,然后,对反射镜组件进行了静力学和动力学分析,在1 g重力载荷作用下,反射镜X、Y、Z方向去除刚体位移后的镜面变形RMS值分别为12.6,12.7,12.6 nm,达到了λ/50(λ=632.8 nm)。最后,为了验证高体份SiC/Al复合材料反射镜组件的结构性能及检验结构在振动条件下的抗干扰能力,对反射镜组件进行了力学试验,反射镜组件的一阶谐振频率为556.6 Hz。力学试验前后,反射镜镜面面形误差RMS分别为0.021λ、0.025λ,没有明显变化。实验结果表明:高体份SiC/Al复合材料反射镜达到了与SiC材料反射镜相同的设计指标要求,能够满足空间应用。
【Abstract】 The difference of linear expansion coefficient between a mirror and its support structure causes mirror thermal deformation which influences the surface accuracy of mirror and the image quality of optical system. In order to avoid above influence,the high volume fraction Si C / Al composite is chosen as the only material of a Φ600 mm mirror component. The Φ600 mm mirror structure parameters are specified by the reasonable mechanical design and finite element analysis. Using finite element analysis method,the static and dynamic characteristics of the mirror component are analyzed. Under the gravity load of 1 g,the surface figure accuracy of the high volume fraction Si C / Al composite mirror reaches RMS 12. 6 nm,12. 7 nm,12. 6 nm,in X,Y,Z respective direction,nearly λ /50( λ = 632. 8 nm). The mechanical dynamic test results verify the structural performance and the capability of vibration resistance. The 1st order natural frequency of the mirror component is 556. 6 Hz. After the test,the surface figure accuracy changs from RMS 0. 021λ to 0. 025λ,not showing obvious changes. The high volume fraction Si C / Al mirror can reach the same design indexes as Si Cmirror and meet the space application requirements.
【Key words】 space remote sensor; space mirror; high volume fraction SiC/Al composite; finite element analysis;
- 【文献出处】 中国光学 ,Chinese Optics , 编辑部邮箱 ,2015年01期
- 【分类号】V443.5
- 【被引频次】21
- 【下载频次】339