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MAKING THE VENUS CONCEPT WATCH 1.0

机译:制作金星概念手表1.0

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Over the past year we have celebrated the 50th anniversary of planetary exploration, which started with the Venus flyby of Mariner-2; and the 35th anniversary of the Pioneer-Venus multi-probe mission where one large and three small probes descended to the surface of Venus, encountering extreme environmental conditions. At the surface of Venus the temperature is about 460°C, and the pressure is 92 bar, with a highly corrosive super-critical C02 atmosphere. At a Ve-nusian altitude of 50 km the pressure and temperature conditions are near Earth-like, but the clouds carry sulfuric acid droplets. Deep probe missions to Jupiter and Saturn, targeting the 100 bar pressure depth encounter similar pressure and temperature conditions as the Pioneer-Venus probes did. Mitigating these environments is highly challenging and requires special considerations for designs and materials. While assessing such space mission concepts, we have found that there is an overlap between the extreme environments in planetary atmospheres and the environments experienced by deep-sea explorers back on Earth. Consequently, the mitigation approaches could be also similar between planetary probes and diver watches. For example, both need to tolerate about 100 bars of pressure-although high temperatures are not factors on Earth. Mitigating these environments, the potential materials are: titanium for the probe and the watch housing; sapphire for the window and glass; resin impregnated woven carbon fiber for the aeroshell's thermal protection system and for the face of the watch; and nylon ribbon for the parachute and for the watch band. Planetary probes also utilize precision watches, thus there is yet another crosscutting functionality with diver watches. Our team, from the Innovation Design Engineering Program of the Royal College of Art, have designed and built a concept watch to commemorate these historical events, while highlighting advances in manufacturing processes over the past three to five decades, relevant to both future planetary mission designs and could be use to produce deep diver watches. In this paper we describe our design considerations; give a brief overview of the extreme environments these components would experience on both Venus and Earth; the manufacturing techniques and materials we used to build the Venus Watch; and its outreach potential to bring a distant concept of planetary exploration closer to Earth. We will also address lessons learned from this project and new ideas forward, for the next generation of tin's concept design.
机译:在过去的一年中,我们庆祝了行星探索50周年,其始于水手2号的金星飞越;以及“先锋-金星”多探针飞行任务35周年,一次大型和三个小型探测器下降到金星表面,遇到了极端的环境条件。在金星表面,温度约为460°C,压力为92 bar,具有高度腐蚀性的超临界CO2气氛。在50 km的Ve-nusian高度,压力和温度条件类似于地球,但云层上带有硫酸液滴。针对木星和土星的深度探测任务(针对100巴的压力深度)遇到的压力和温度条件与先锋-金星探测器相似。减轻这些环境的挑战非常艰巨,需要对设计和材料进行特殊考虑。在评估此类太空任务概念时,我们发现行星大气中的极端环境与重返地球的深海探险者所经历的环境之间存在重叠。因此,行星探测器和潜水表之间的缓解方法也可能相似。例如,两者都需要承受约100巴的压力-尽管高温不是地球上的因素。缓解这些环境的潜在材料是:探针和表壳的钛金属;以及蓝宝石用于窗户和玻璃;树脂浸渍的机织碳纤维用于机壳的热保护系统和表盘;和尼龙缎带,用于降落伞和表带。行星式探头还利用精密手表,因此潜水表还有另一个横切功能。我们的团队来自皇家艺术学院的创新设计工程计划,设计并制造了一款概念表以纪念这些历史事件,同时重点介绍了过去三到五十年中与未来两种行星任务设计相关的制造工艺方面的进步。可以用来生产深潜水表。在本文中,我们描述了我们的设计注意事项;简要概述这些组件在金星和地球上都会遇到的极端环境;我们用来制造维纳斯手表的制造技术和材料;以及它的扩展潜力,使遥远的行星探索概念更接近地球。我们还将介绍从该项目中学到的经验教训以及未来的新想法,以用于锡的下一代概念设计。

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