首页> 外文会议>AIAA/SAE/ASEE joint propulsion conference >Post-test Inspection of NASA's Evolutionary Xenon Thruster Long-Duration Test Hardware: Discharge Chamber
【24h】

Post-test Inspection of NASA's Evolutionary Xenon Thruster Long-Duration Test Hardware: Discharge Chamber

机译:美国宇航局进化氙气推进器长期试验五金的测试后检查:排放室

获取原文

摘要

The NEXT Long-Duration Test is part of a comprehensive thruster service life assessment intended to demonstrate overall throughput capability, validate service life models, quantify wear rates as a function of time and operating condition, and identify any unknown life-limiting mechanisms. The test was voluntarily terminated in February 2014 after demonstrating 51,184 hours of high-voltage operation, 918 kg of propellant throughput, and 35.5 MlN-s of total impulse. The post-test inspection of the thruster hardware began shortly afterwards with a combination of non-destructive and destructive analysis techniques, and is presently nearing completion. This paper presents relevant results of the post-test inspection for the discharge chamber as well as other miscellaneous components such as the high-voltage propellant isolators and electrical cabling. Comparison of magnetic field measurements taken during pretest and post-test inspections indicate that the field strength did not degrade, consistent with performance data obtained during the test. Inspection of discharge chamber mesh samples show a deposition coating primarily composed of grid material that is approximately 15 μm in thickness. This thickness is well within the retention capability of the mesh and is therefore not expected to present any issues. Approximately 3.1 grams of deposition flakes were found at the bottom of the discharge chamber, composed primarily of grid material and carbon. Calculated size histograms of these flakes indicate that 99% have a maximum dimension of 200 μm or smaller, which is significantly less than the ion optics grid gap. Larger flakes that are capable of causing a grid-to-grid short will be analyzed to determine if their formation will occur in flight or is a facility effect. The high-voltage propellant isolators as well as numerous other electrical insulators were inspected and no evidence of arcing or any other issues were found.
机译:下一个长时间测试是旨在展示整体吞吐量能力,验证服务寿命模型,作为时间和操作条件的函数的验证速率,以及识别任何未知的寿命限制机制。在展示高压操作的51,184小时的高压操作,918公斤推进剂通量和35.5mLn-S的总冲动,这项测试是自愿终止的2014年2月。推进器硬件的后测试检查后不久开始,结合了非破坏性和破坏性分析技术,并目前接近完成。本文介绍了放电室的测试后检查以及其他杂项组件,如高压推进剂隔离器和电缆。在预测试和测试后检查期间拍摄的磁场测量的比较表明场强与测试期间获得的性能数据一致。检测放电室网格样品显示沉积涂层主要由厚度为约15μm的栅格材料构成。该厚度在网格的保持能力范围内,因此不预期呈现任何问题。在排出室的底部发现大约3.1克的沉积片,主要由栅格材料和碳组成。计算出这些薄片的尺寸直方图表明99%的最大尺寸为200μm或更小,这显着小于离子光学栅格间隙。将分析能够引起电网致电网短路的较大薄片,以确定它们的形成是否会在飞行中发生,或者是设施效果。检查高压推进剂隔离器以及许多其他电气绝缘体,并没有发现弧度的证据或任何其他问题。

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