首页> 外文会议>Conference on infrared technology and applications >Ruggedizing infrared Integrated Dewar-Detector Assemblies for harsh environmental conditions
【24h】

Ruggedizing infrared Integrated Dewar-Detector Assemblies for harsh environmental conditions

机译:坚固耐用的红外集成式杜瓦检测器组件,可应对恶劣的环境条件

获取原文

摘要

Cryogenically cooled infrared electro-optical payloads have to operate and survive frequent exposure to harsh vibrational and shock conditions typical of the modern battlefield. This necessitates the development of special approaches to ruggedizing their sensitive components. The ruggedization requirement holds true specifically for Integrated Dewar-Detector Assemblies (IDDA), where the infrared Focal Plane Array (FPA) is usually supported by a thin-walled cold finger enveloped by an evacuated tubular Dewar. Without sufficient ruggedization, harsh environmental vibration may give rise to structural resonance responses resulting in spoiled image quality and even mechanical fractures due to material fatigue. The authors present their approach for the ruggedization of the IDDA by attaching the FPA to a semi-rigid support extending from the dynamically damped Dewar envelope. A mathematical model relies on an experimentally evaluated set of frequency response functions for a reference system and a lumped model of a wideband dynamic absorber. By adding only 2% to the weight of the IDDA, the authors have managed to attenuate the relative deflection and absolute acceleration of the FPA by a factor of 3. The analytical predictions are in full agreement with experiment.
机译:低温冷却的红外电光有效载荷必须能够在频繁暴露于现代战场上常见的恶劣振动和冲击条件下正常工作并幸免于难。这就需要开发特殊的方法来加固其敏感组件。坚固性要求特别适用于集成式杜瓦瓶探测器组件(IDDA),其中红外焦平面阵列(FPA)通常由薄壁的冷手指支撑,该薄壁冷手指由真空管状杜瓦瓶包裹。如果没有足够的坚固性,恶劣的环境振动可能会引起结构共振响应,从而导致图像质量受损,甚至由于材料疲劳而导致机械断裂。作者通过将FPA附加到从动态阻尼杜瓦包络线延伸出来的半刚性支撑件上,提出了加固IDDA的方法。数学模型依赖于参考系统的实验评估频率响应函数集以及宽带动态吸收器的集总模型。通过仅将IDDA的重量增加2%,作者设法将FPA的相对挠度和绝对加速度减小了3倍。分析预测与实验完全吻合。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号