Advantages and challenges of novel materials for future space applications

L. Pernigoni, A. M. Grande
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Abstract

In the last years space technologies have made giant leaps, increasing the feasibility of human exploration and colonization of other celestial bodies. The Moon and Mars have become appealing in these terms, but autonomy, adaptability and high reliability are inevitably needed in long-term missions. Furthermore, new generation spacecraft will have to face challenges related to the degradation of materials and the continuous exposure to the threats of space environment. Novel materials and technologies must hence be developed to satisfy future missions requirements. This paper aims at giving a clear and organic overview of the describes the most significant innovations in the field of materials for space applications, along with the related advantages and challenges. After introducing the main environmental factors in space and their possible risks and effects on materials, the authors proceed with the description of novel materials for space applications, subdivided into polymers, metals, semiconductors, composites, and mixtures. Innovations in manufacturing techniques and in-situ resource utilization are also briefly presented before moving to final considerations on the limitations and future challenges for these innovative materials.
新型材料在未来空间应用中的优势与挑战
在过去的几年里,空间技术取得了巨大的飞跃,增加了人类探索和殖民其他天体的可行性。在这些方面,月球和火星已经变得很有吸引力,但长期任务不可避免地需要自主性、适应性和高可靠性。此外,新一代航天器将面临与材料退化和持续暴露于空间环境威胁有关的挑战。因此,必须发展新的材料和技术以满足未来任务的需要。本文旨在对空间应用材料领域最重要的创新以及相关的优势和挑战进行清晰和有机的概述。在介绍了空间中的主要环境因素及其对材料的可能风险和影响之后,作者接着描述了用于空间应用的新型材料,细分为聚合物、金属、半导体、复合材料和混合物。在转移到对这些创新材料的局限性和未来挑战的最后考虑之前,还简要介绍了制造技术和就地资源利用方面的创新。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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