首页> 外文期刊>IEEE Transactions on Plasma Science >Small-Scale Simulation Chamber for Space Environment Survivability Testing
【24h】

Small-Scale Simulation Chamber for Space Environment Survivability Testing

机译:小型模拟舱,用于空间环境生存能力测试

获取原文
获取原文并翻译 | 示例

摘要

A vacuum chamber was designed that simulates the space environment to facilitate tests of material modification due to space environment interactions. Critical environmental elements to be simulated include an ultrahigh vacuum, a far ultraviolet (FUV)/ultraviolet/VIS/NIR solar spectrum, an electron plasma flux, temperature extremes, and long duration exposure. To simulate the solar electromagnetic spectrum (EMS), a solar simulator was used with a range 200–2000 nm. A Krypton lamp provides surrogate radiation for the prominent FUV hydrogen Lyman-$alpha$120-nm emission not produced by the solar simulator. A monoenergetic electron flood gun (20–15 keV) provides a controlled electron flux. Electron and EMS incident fluxes of up to four times sun equivalent intensities at 95% uniformity across the full 100-${rm cm}^{2}$ sample surface are possible to reduce the exposure time for accelerated testing. A temperature range from 100 to 450 K is achieved using an attached cryogenic reservoir and resistance heaters. The versatile sample holder and radiation mask allow for cost-effective, customizable investigations of multiple small-scale samples under diverse conditions. In situ monitoring capabilities allow measurements to be taken at frequent intervals during the course of the exposure cycle, while the samples are still under vacuum. An automated data acquisition system monitors and records the temperature, pressure, electron, and EMS fluxes. Calibrated reflectivity, absorptivity, and emissivity of the samples can be measured using in situ integrating sphere and IR absorptivity/emissivity probes.
机译:设计了一个真空室,它可以模拟空间环境,以促进由于空间环境相互作用而进行的材料修改测试。要模拟的关键环境要素包括超高真空,远紫外线(FUV)/紫外线/ VIS / NIR太阳光谱,电子等离子体通量,极端温度和长时间暴露。为了模拟太阳电磁光谱(EMS),使用了200-2000 nm范围的太阳模拟器。 rypto灯可为太阳模拟器无法产生的显着FUV氢Lyman-α$ 120-nm发射提供替代辐射。单能电子溢流枪(20–15 keV)提供受控的电子通量。电子和EMS入射通量在整个100-$ {rm cm} ^ {2} $的整个样品表面上达到95%的均匀度时,太阳等效强度的四倍,可以减少加速测试所需的暴露时间。使用随附的低温储罐和电阻加热器可实现100至450 K的温度范围。多功能的样品架和防辐射罩允许在不同条件下对多个小规模样品进行具有成本效益的可定制研究。原位监测功能允许在暴露循环过程中以频繁的间隔进行测量,而样品仍处于真空状态。自动化的数据采集系统监视并记录温度,压力,电子和EMS流量。可以使用原位积分球和红外吸收率/发射率探针测量样品的校准反射率,吸收率和发射率。

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