1 Honeybee Robotics , Pasadena, California.
Astrobiology. 2013 Dec;13(12):1166-98. doi: 10.1089/ast.2013.1038. Epub 2013 Dec 4.
The future exploration of Mars will require access to the subsurface, along with acquisition of samples for scientific analysis and ground-truthing of water ice and mineral reserves for in situ resource utilization. The Icebreaker drill is an integral part of the Icebreaker mission concept to search for life in ice-rich regions on Mars. Since the mission targets Mars Special Regions as defined by the Committee on Space Research (COSPAR), the drill has to meet the appropriate cleanliness standards as requested by NASA's Planetary Protection Office. In addition, the Icebreaker mission carries life-detection instruments; and in turn, the drill and sample delivery system have to meet stringent contamination requirements to prevent false positives. This paper reports on the development and testing of the Icebreaker drill, a 1 m class rotary-percussive drill and triple redundant sample delivery system. The drill acquires subsurface samples in short, approximately 10 cm bites, which makes the sampling system robust and prevents thawing and phase changes in the target materials. Autonomous drilling, sample acquisition, and sample transfer have been successfully demonstrated in Mars analog environments in the Arctic and the Antarctic Dry Valleys, as well as in a Mars environmental chamber. In all environments, the drill has been shown to perform at the "1-1-100-100" level; that is, it drilled to 1 m depth in approximately 1 hour with less than 100 N weight on bit and approximately 100 W of power. The drilled substrate varied and included pure ice, ice-rich regolith with and without rocks and with and without 2% perchlorate, and whole rocks. The drill is currently at a Technology Readiness Level (TRL) of 5. The next-generation Icebreaker drill weighs 10 kg, which is representative of the flightlike model at TRL 5/6.
未来对火星的探索将需要进入地下,并获取样本进行科学分析,同时对水冰和矿物资源进行实地核实,以实现原位资源利用。破冰钻是破冰任务概念的一个组成部分,该任务旨在火星富冰地区寻找生命。由于该任务的目标是空间研究委员会 (COSPAR) 定义的火星特殊区域,因此该钻必须满足美国宇航局行星保护办公室要求的适当清洁度标准。此外,破冰任务还携带生命探测仪器;反过来,钻和样本传输系统必须满足严格的污染要求,以防止误报。本文介绍了破冰钻的开发和测试,这是一种 1 米级旋转冲击钻和三重冗余样本传输系统。该钻以短的、大约 10 厘米的间隔采集地下样本,这使得采样系统具有很强的鲁棒性,并防止目标材料解冻和相变。在北极和南极干旱谷以及火星环境室等火星模拟环境中,已经成功地演示了自主钻探、样本采集和样本传输。在所有环境中,该钻都表现出了“1-1-100-100”的水平;也就是说,它在大约 1 小时内钻到 1 米深,钻头重量小于 100N,功率小于 100W。钻探的基底各不相同,包括纯冰、冰含量丰富的风化层,有或没有岩石,有或没有 2%的高氯酸盐,以及整体岩石。该钻目前的技术成熟度等级 (TRL) 为 5 级。下一代破冰钻重 10 公斤,代表了 TRL5/6 的飞行模型。