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Lunar Polar Environmental Testing: Regolith Simulant Conditioning

机译:月球极地环境测试:Regolith模拟调理

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As ISRU system development approaches flight fidelity, there is a need to test hardware in relevant environments. Extensive laboratory and field testing have involved relevant soil (lunar regolith simulants), but the current design iterations necessitate relevant pressure and temperature conditions. Including significant quantities of lunar regolith simulant in a thermal vacuum chamber poses unique challenges. These include facility operational challenges (dust tolerant hardware) and difficulty maintaining a pre-prepared soil state during pump down (consolidation state, moisture retention). For ISRU purposes, the regolith at the lunar poles will be of most interest due to the elevated water content. To test at polar conditions, the regolith simulant must be doped with water to an appropriate percentage and then chilled to cryogenic temperatures while exposed to vacuum conditions. Aim tall, 28cm diameter bin of simulant was developed for testing these simulant preparation and drilling operations. The bin itself was wrapped with liquid nitrogen cooling loops (100K) so that the simulant bed reached an average temperature of 140K at vacuum. Post-test sampling was used to determine desiccation of the bed due to vacuum exposure. Depth dependent moisture data is presented from frozen and thawed soil samples. Following simulant only evacuation tests, drill hardware was incorporated into the vacuum chamber to test auguring techniques in the frozen soil at thermal vacuum conditions. The focus of this testing was to produce cuttings piles for a newly developed spectrometer to evaluate. This instrument, which is part of the RESOLVE program science hardware, detects water signatures from surface regolith. The drill performance, behavior of simulant during drilling, and characteristics of the cuttings piles will be offered.
机译:随着ISRU系统开发接近飞行保真度,需要在相关环境中测试硬件。广泛的实验室和现场测试已经涉及到相关的土壤(月桂白粉模拟物),但是当前的设计迭代需要相关的压力和温度条件。在热真空室内包含大量的月球重石模拟物构成了独特的挑战。其中包括设施操作难题(耐尘硬件)和抽空期间难以保持预先准备的土壤状态(固结状态,水分保持)。出于ISRU的目的,由于水含量升高,月球两极处的灰岩将是最受关注的。为了在极性条件下进行测试,必须将重膏石模拟物掺入适当比例的水,然后在暴露于真空条件下冷却至低温。目的是开发直径为28cm的模拟物箱,以测试这些模拟物的准备和钻孔操作。料箱本身被液氮冷却回路(100K)包裹,因此模拟床在真空下的平均温度达到140K。测试后采样用于确定由于真空暴露而导致的床的干燥。深度和湿度数据来自于冷冻和解冻的土壤样品。在仅进行模拟的疏散测试之后,将钻机硬件整合到真空室中,以在热真空条件下测试冷冻土壤中的预钻技术。该测试的重点是为新开发的光谱仪生产切屑桩进行评估。该仪器是RESOLVE程序科学硬件的一部分,可检测表面重石中的水迹。将提供钻头性能,钻探过程中的模拟物行为以及钻屑桩的特性。

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