Recent Advances and Challenges in Polymer-Based Materials for Space Radiation Shielding

Последние достижения и проблемы полимерных материалов для радиационной защиты в космосе
Elisa Toto, Lucia Lambertini, Susanna Laurenzi, Maria Gabriella Santonicola
2024-01-30

ionizing radiationnanofillerspolymer nanocompositespolymer-based radiation shieldingspace radiation
Space exploration requires the use of suitable materials to protect astronauts and structures from the hazardous effects of radiation, in particular, ionizing radiation, which is ubiquitous in the hostile space environment. In this scenario, polymer-based materials and composites play a crucial role in achieving effective radiation shielding while providing low-weight and tailored mechanical properties to spacecraft components. This work provides an overview of the latest developments and challenges in polymer-based materials designed for radiation-shielding applications in space. Recent advances in terms of both experimental and numerical studies are discussed. Different approaches to enhancing the radiation-shielding performance are reported, such as integrating various types of nanofillers within polymer matrices and optimizing the materials design. Furthermore, this review explores the challenges in developing multifunctional materials that are able to provide radiation protection. By summarizing the state-of-the-art research and identifying emerging trends, this review aims to contribute to the ongoing efforts to identify polymer materials and composites that are most useful to protect human health and spacecraft performance in the harsh radiation conditions that are typically found during missions in space.
1
Developing multifunctional polymer materials that simultaneously provide radiation protection and other required spacecraft properties remains a major challenge.
2
Integrating nanofillers into polymer matrices is a reported strategy for enhancing radiation-shielding performance.
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Optimizing material design can improve shielding effectiveness while supporting spacecraft structural requirements.
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Polymer-based materials and composites offer lightweight radiation shielding while enabling tailored mechanical properties for spacecraft components.
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Recent research combines experimental and numerical studies to evaluate polymer-based materials for ionizing-radiation protection in space.

polymer-based materials and composites for space radiation shielding

radiation-shielding performance and the development challenges of these materials, including nanofiller integration, materials-design optimization, and multifunctional protection under space radiation conditions

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Publication Date
2024-01-30
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Authors
Elisa Toto
Lucia Lambertini
Susanna Laurenzi
Maria Gabriella Santonicola
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