航天飞机用材料:发展、挑战和未来前景综述

IF 12.7 1区 材料科学 Q1 ENGINEERING, MULTIDISCIPLINARY
Irfan Nazir Wani , Kanika Aggarwal , Swati Bishnoi , Pushpendra Kumar Shukla , Dineshkumar Harursampath , Ashish Garg
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引用次数: 0

摘要

航天飞机是一种革命性的航天器,在人类太空探索中发挥了重要作用,它由各种先进材料组成,这些材料经过精心挑选,以满足航天飞行的极端要求。这篇综述文章提供了历史上用于航天飞机建造的材料的全面检查,并探讨了塑造该领域的最新趋势。航天飞机材料的演变可以追溯到从太空计划开始到当代任务,突出了关键的里程碑、挑战和突破。重点放在材料在航天飞机的整体性能、安全性和可持续性方面发挥的关键作用上。论文首先阐述了材料在恶劣和复杂的空间环境中必须满足的各种要求,包括极端温度、辐射暴露和机械应力。详细分析了各种航天飞机部件制造中使用的材料,如热防护系统、结构元件和推进系统。特别关注重新进入所带来的挑战以及为减轻与热有关的问题所采用的策略。此外,该评论还探讨了正在重塑航天飞机设计格局的最新创新和新兴材料。本文讨论了纳米技术、复合材料和增材制造在提高航天飞机性能和降低任务成本方面的潜在应用。论文还讨论了可持续性在太空探索中的重要性,探索对环境影响较小、可回收性更好的材料。本文以前瞻性的视角总结了材料的未来,考虑到正在进行的研究、开发和前沿技术的潜在结合。洞察材料科学的不断发展的景观如何影响下一代空间飞行器的设计和制造过程。本文概述了航天飞机制造中使用的材料,包括它们的特性、应用和挑战。航天飞机使用的材料对确保航天器的安全、性能和寿命至关重要,了解它们在太空中的特性和性能对航空航天工程的进步至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Materials used in space shuttle: Evolution, challenges, and future prospects— An overview
The space shuttle, a revolutionary spacecraft that has played a significant role in human space exploration, was composed of various advanced materials that were carefully selected to meet the extreme demands of spaceflight. This review paper provides a comprehensive examination of the materials historically employed in the construction of space shuttles and explores the latest trends shaping the field. The evolution of space shuttle materials is traced from the inception of the space program to contemporary missions, highlighting key milestones, challenges, and breakthroughs. Emphasis is placed on the critical role that materials play in the overall performance, safety, and sustainability of space shuttles. The paper begins by elucidating the diverse requirements that materials must fulfill in the harsh and complex environment of space, encompassing extreme temperatures, radiation exposure, and mechanical stresses. A detailed analysis of the materials utilized in the fabrication of various shuttle components, such as thermal protection systems, structural elements, and propulsion systems, is presented. Special attention is given to the challenges posed by re-entry and the strategies employed to mitigate heat-related issues. Furthermore, the review explores recent innovations and emerging materials that are reshaping the landscape of space shuttle design. Advancements in nanotechnology, composite materials, and additive manufacturing are discussed in the context of their potential applications for enhancing shuttle performance and reducing mission costs. The paper also addresses the importance of sustainability in space exploration, exploring materials with lower environmental impact and improved recyclability. The review concludes with a forward-looking perspective on the future of materials, considering ongoing research, development, and the potential incorporation of cutting-edge technologies. Insights are provided into how the evolving landscape of materials science may influence the design and manufacturing processes of the next generation of space vehicles. This paper provides an overview of the materials used in the construction of the space shuttle, including their properties, applications, and challenges. The materials used in the space shuttle are critical in ensuring the safety, performance, and longevity of the spacecraft, and understanding their characteristics and performance in space is crucial for the advancement of aerospace engineering.
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来源期刊
Composites Part B: Engineering
Composites Part B: Engineering 工程技术-材料科学:复合
CiteScore
24.40
自引率
11.50%
发文量
784
审稿时长
21 days
期刊介绍: Composites Part B: Engineering is a journal that publishes impactful research of high quality on composite materials. This research is supported by fundamental mechanics and materials science and engineering approaches. The targeted research can cover a wide range of length scales, ranging from nano to micro and meso, and even to the full product and structure level. The journal specifically focuses on engineering applications that involve high performance composites. These applications can range from low volume and high cost to high volume and low cost composite development. The main goal of the journal is to provide a platform for the prompt publication of original and high quality research. The emphasis is on design, development, modeling, validation, and manufacturing of engineering details and concepts. The journal welcomes both basic research papers and proposals for review articles. Authors are encouraged to address challenges across various application areas. These areas include, but are not limited to, aerospace, automotive, and other surface transportation. The journal also covers energy-related applications, with a focus on renewable energy. Other application areas include infrastructure, off-shore and maritime projects, health care technology, and recreational products.
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