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Thermal analysis of brazing seal and sterilizing technique to break contamination chain for Mars sample return

机译:钎焊密封的热分析和消毒技术以打破污染链,以返回火星样品

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The potential to return Martian samples to Earth for extensive analysis is in great interest of the planetary science community. It is important to make sure the mission would securely contain any microbes that may possibly exist on Mars so that they would not be able to cause any adverse effects on Earth's environment. A brazing sealing and sterilizing technique has been proposed to break the Mars-to-Earth contamination chain. Thermal analysis of the brazing process was conducted for several conceptual designs that apply the technique. Control of the increase of the temperature of the Martian samples is a challenge. The temperature profiles of the Martian samples being sealed in the container were predicted by finite element thermal models. The results show that the sealing and sterilization process can be controlled such that the samples' temperature is maintained below the potentially required level, and that the brazing technique is a feasible approach to break the contamination chain.
机译:行星科学界非常感兴趣将火星样本返回地球进行广泛分析的潜力。重要的是要确保飞行任务将安全地包含火星上可能存在的任何微生物,以便它们不会对地球环境造成任何不利影响。已经提出了一种钎焊密封和消毒技术来打破火星对地球的污染链。对采用该技术的几种概念设计进行了钎焊过程的热分析。控制火星样品温度的升高是一个挑战。通过有限元热模型预测了密封在容器中的火星样品的温度曲线。结果表明,可以控制密封和灭菌过程,以使样品的温度保持在潜在的要求水平以下,并且铜焊技术是打破污染链的可行方法。

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