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Magna Parva and ESA's Ultrasonic Drill Tool for Planetary Surface Exnlo ration

机译:麦格纳·帕尔瓦(Magna Parva)和ESA的行星表面超声超声波钻具

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Between 2006 and 2009 Magna Parva performed a European Space Agency (ESA) study "Ultrasonic Tools for Planetary Surface Exploration". It was partially funded by the ESA Technology Research Programme (TRP) framework. During the course of the work Breadboard and Engineering Model drill concepts were designed, developed and tested in a range of media and environmental conditions. The tools were demonstrated to drill and collect samples from various mediums. The abilities of the devices and phenomena encountered during experimental testing were documented and through an iterative development and test programme, the Engineering Model concept's material removal rate was improved by 3600%. Effects encountered during testing included: ultrasonic erosion machining (including particle disintegration), ultrasonic consolidation of fine powers, vibro-fluidisation of granular medium, ultrasonically induced atomisation of water, phenomenologically modified factional characteristics, alleviated jamming of mechanisms in the presence of granular medium, and ultrasonic particle/fluid transport. From the experimental evidence presented, four ultrasonic drilling mechanisms were proposed along with recommendations for improving the efficiency of ultrasonic drilling devices. The Autoresonant Control System developed by Magna Parva facilitated stable control of the ultrasonic tools during the study (even when subjected to an inherently nonlinear and ill-defined loading) and a description of the control strategy was given. Finally, a potential future capability of the ultrasonic tool was introduced - its ability to act as a ranging/sonar type device to interrogate both solid rocks and subterranean geological features.
机译:在2006年至2009年之间,麦格纳·帕尔瓦(Magna Parva)进行了欧洲航天局(ESA)的“行星表面探测的超声工具”研究。它由ESA技术研究计划(TRP)框架部分资助。在工作过程中,在各种介质和环境条件下设计,开发和测试了“面包板和工程模型”钻探概念。演示了该工具可从各种介质中钻孔和收集样品。记录了设备的能力和在实验测试中遇到的现象,并通过迭代的开发和测试程序,将工程模型概念的材料去除率提高了3600%。测试过程中遇到的影响包括:超声腐蚀加工(包括颗粒崩解),细粉的超声固结,颗粒介质的振动流化,超声诱导的水雾化,现象学上修改的派生特性,在存在颗粒介质的情况下减轻了机理的干扰,以及超声波颗粒/流体传输。从提供的实验证据中,提出了四种超声钻孔机理以及提高超声钻孔设备效率的建议。麦格纳·帕尔瓦(Magna Parva)开发的自动共振控制系统有助于研究期间超声波工具的稳定控制(即使在固有的非线性和不确定的载荷下也是如此),并给出了控制策略的说明。最后,介绍了超声波工具的潜在潜在功能-它可以作为测距/声纳类型的设备来询问固体岩石和地下地质特征。

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