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Metallurgy in Space: Recent Results from ISS

Metallurgy in Space: Recent Results from ISS

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  • More about Metallurgy in Space: Recent Results from ISS


This book presents experimental work conducted on the International Space Station (ISS) to characterize metals and alloys in the liquid state, using microgravity techniques. It serves as a handbook of space experiments and an overview of space experiment data, inspiring further research and development.

Format: Paperback / softback
Length: 565 pages
Publication date: 02 April 2023
Publisher: Springer Nature Switzerland AG


This comprehensive book delves into groundbreaking experimental research conducted on the International Space Station (ISS), aimed at characterizing metals and alloys in their liquid state. Authored by renowned experts in the field, the book showcases a series of experiments conducted in microgravity, offering a unique opportunity to study the volume and surface-related properties of these materials without the constraints of a gravity-based environment. Moreover, it serves as a valuable handbook for space experiments utilizing electromagnetic levitation techniques. A concise summary of recent results provides a glimpse into the vast wealth of space experiment data, fueling further research endeavors and inspiring academics and industrial research departments to pursue continuous development.

The study of metals and alloys in their liquid state has been revolutionized by groundbreaking experimental research conducted on the International Space Station (ISS). Authored by renowned experts in the field, this comprehensive book delves into a series of experiments conducted in microgravity, offering a unique opportunity to explore the volume and surface-related properties of these materials without the constraints of a gravity-based environment. Moreover, it serves as a valuable handbook for space experiments utilizing electromagnetic levitation techniques. A concise summary of recent results provides a glimpse into the vast wealth of space experiment data, fueling further research endeavors and inspiring academics and industrial research departments to pursue continuous development.

The authors of this book have made significant contributions to the field of materials science by conducting experimental research on the International Space Station (ISS). Their work focuses on characterizing metals and alloys in their liquid state, a topic of immense importance in various industries, including aerospace and electronics. By conducting these experiments in microgravity, the authors were able to study the properties of these materials without the influence of gravity, which allows for a more accurate understanding of their behavior.

One of the key advantages of conducting space experiments is the ability to study materials in conditions that are not possible on Earth. In the case of metals and alloys, the absence of gravity allows for the formation of unique structures and properties that are not observed in terrestrial environments. For example, in microgravity, metals can flow more easily and take on different shapes, which can have significant implications for their performance in various applications.

The authors of this book have conducted a wide range of experiments on the ISS, including studies on the behavior of metals under different temperature and pressure conditions, as well as the effects of radiation on their properties. These experiments have provided valuable insights into the behavior of metals in space and have helped to improve our understanding of the materials used in spacecraft and other space-related applications.

In addition to their scientific contributions, the authors of this book have also played a crucial role in promoting the use of space experiments in materials science. They have organized workshops and conferences to bring together researchers from different fields and to share their knowledge and expertise. This has helped to foster collaboration and to promote the development of new technologies and materials for space applications.

Overall, this book is a valuable resource for researchers and students interested in the field of materials science. It provides a comprehensive overview of the experimental research conducted on the ISS and highlights the significant contributions made by the authors to the field. The book is also a valuable tool for policymakers and industry professionals who are interested in the development of new materials for space applications.

In conclusion, the experimental research conducted on the International Space Station (ISS) by the authors of this book has made significant contributions to the field of materials science. By studying metals and alloys in their liquid state in microgravity, the authors have been able to gain a deeper understanding of their behavior and properties, which has implications for various industries, including aerospace and electronics. The book serves as a valuable resource for researchers and students, and it also plays a crucial role in promoting the use of space experiments in materials science.

Weight: 884g
Dimension: 235 x 155 (mm)
ISBN-13: 9783030897864
Edition number: 1st ed. 2022

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