An Unpowered Exoskeleton to Reduce Astronaut Hand Fatigue During Microgravity EVA

An Unpowered Exoskeleton to Reduce Astronaut Hand Fatigue During Microgravity EVA

Author: Alan John Carey

Publisher:

Published: 2016

Total Pages:

ISBN-13: 9781369202564

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Astronaut hand fatigue during Extravehicular Activity (EVA) and EVA training is a critical risk in human space exploration. Improved glove designs over the past forty years have reduced hand fatigue, but limitations of the technology prevent major improvements to reduce hand fatigue. Therefore, a mechanism to assist astronauts by reducing hand fatigue was explored. Many organizations have already developed exoskeletons to assist astronauts, but all mechanisms developed required electrically powered actuators and control systems to enhance grip strength. However, astronauts already possess the strength required to actuate the glove; what is needed is a method to reduce fatigue without introducing electromechanical complexity. A passive mechanical system was developed as a proof-of-concept to test the feasibility of an unpowered exoskeleton to maintain static grip around an object. The semi- rigid nature of an inflated pressure glove provided an ideal substrate to mount a mechanism and associated components to allow an astronaut to release his/her grip inside the glove while maintaining attitude, as the mechanism will keep the glove closed around an object.Three prototypes were fabricated and tested to evaluate the architecture. The final two prototypes were tested on a real pressure suit glove at Final Frontier Design (FFD), and the third mechanism demonstrated attachment and basic operating principles. At University of California (UC) Davis, pressure glove analogs were fabricated from a baseball batting glove and polystyrene to simulate a real pressure glove without the risk of testing in a reduced pressure environment (i.e. a glove box). Testing of the third prototype showed a reduction in fatigue as measured by Maximum Voluntary Contraction (MVC) grip force over a 30 second period when the mechanism assisted gripping an object.


Interactive Aerospace Engineering and Design

Interactive Aerospace Engineering and Design

Author: Dava J. Newman

Publisher: McGraw-Hill Companies

Published: 2002

Total Pages: 392

ISBN-13:

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This text contains an integrated bound-in CD-ROM, and has a strong emphasis on design. Its active visual approach and inclusion of space-orientated engineering make it an interesting examination of the aerospace engineering field.


Nanotechnology in Space

Nanotechnology in Space

Author: Maria Letizia Terranova

Publisher: CRC Press

Published: 2021-09-15

Total Pages: 262

ISBN-13: 1000294498

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This book presents selected topics on nanotechnological applications in the strategic sector of space. It showcases some current activities and multidisciplinary approaches that have given an unprecedented control of matter at the nanoscale and will enable it to withstand the unique space environment. It focuses on the outstanding topic of dual-use nanotechnologies, illustrating the mutual benefits of key enabling materials that can be used successfully both on earth and in space. It highlights the importance of space as a strategic sector in the global economy, with ever-increasing related businesses worldwide. In this light, it dedicates a chapter to the analysis of current and future markets for space-related nanotechnological products and applications.


After LM

After LM

Author: John F. Connolly

Publisher:

Published: 2020

Total Pages: 260

ISBN-13: 9780578622729

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The Sourcebook for Teaching Science, Grades 6-12

The Sourcebook for Teaching Science, Grades 6-12

Author: Norman Herr

Publisher: John Wiley & Sons

Published: 2008-08-11

Total Pages: 614

ISBN-13: 0787972983

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The Sourcebook for Teaching Science is a unique, comprehensive resource designed to give middle and high school science teachers a wealth of information that will enhance any science curriculum. Filled with innovative tools, dynamic activities, and practical lesson plans that are grounded in theory, research, and national standards, the book offers both new and experienced science teachers powerful strategies and original ideas that will enhance the teaching of physics, chemistry, biology, and the earth and space sciences.


Principles of Clinical Medicine for Space Flight

Principles of Clinical Medicine for Space Flight

Author: Michael R. Barratt

Publisher: Springer Science & Business Media

Published: 2008-03-20

Total Pages: 592

ISBN-13: 0387681647

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Over the years, a large body of knowledge has developed regarding the ways in which space flight affects the health of the personnel involved. Now, for the first time, this clinical knowledge on how to diagnose and treat conditions that either develop during a mission or because of a mission has been compiled by Drs. Michael Barratt and Sam L. Pool of the NASA/Johnson Space Center. Complete with detailed information on the physiological and psychological affects of space flight as well as how to diagnose and treat everything from dental concerns to decompression to dermatological problems encountered, this text is a must have for all those associated with aerospace medicine.


Technology as Symptom and Dream

Technology as Symptom and Dream

Author: Robert Romanyshyn

Publisher: Routledge

Published: 2003-09-02

Total Pages: 265

ISBN-13: 1134985495

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The development of linear perspective in the 15th century represented a radical transformation in the European's sense of the world, the body and the self. Robert Romanyshyn's latest book examines the claim that the development of linear perspective vision was and is indispensable to the emergence of our technological world. It does so by telling the story of how an artistic technique has become a cultural habit of mind.


Next Stop Mars

Next Stop Mars

Author: Giancarlo Genta

Publisher: Springer

Published: 2016-12-30

Total Pages: 435

ISBN-13: 3319443119

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This book covers the possible manned mission to Mars first discussed in the 1950s and still a topic of much debate, addressing historic and future plans to visit the Red Planet. Considering the environmental dangers and the engineering and design needed for a successful trip, it covers every aspect of a possible mission and outpost. The chapters explain the motivations behind the plan to go to Mars, as well as the physical factors that astronauts on manned missions will face on Mars and in transit. The author provides a comprehensive exposure to the infrastructure needs on Mars itself, covering an array of facilities including power sources, as well as addressing earth-based communication networks that will be necessary. Mechanisms for return to Earth are also addressed. As the reality of a manned Mars voyage becomes more concrete, the details are still largely up in the air. This book presents an overview of proposed approaches past, present, and future, both from NASA and, increasingly, from other space agencies and private companies. It clearly displays the challenges and the ingenious solutions involved in reaching Mars with human explorers.


The Coming Robot Revolution

The Coming Robot Revolution

Author: Yoseph Bar-Cohen

Publisher: Springer Science & Business Media

Published: 2009-04-20

Total Pages: 180

ISBN-13: 0387853499

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Making a robot that looks and behaves like a human being has been the subject of many popular science fiction movies and books. Although the development of such a robot facesmanychallenges,themakingofavirtualhumanhaslongbeenpotentiallypossible. With recent advances in various key technologies related to hardware and software, the making of humanlike robots is increasingly becoming an engineering reality. Development of the required hardware that can perform humanlike functions in a lifelike manner has benefitted greatly from development in such technologies as biologically inspired materials, artificial intelligence, artificial vision, and many others. Producing a humanlike robot that makes body and facial expressions, communicates verbally using extensive vocabulary, and interprets speech with high accuracy is ext- mely complicated to engineer. Advances in voice recognition and speech synthesis are increasingly improving communication capabilities. In our daily life we encounter such innovations when we call the telephone operators of most companies today. As robotics technology continues to improve we are approaching the point where, on seeing such a robot, we will respond with ‘‘Wow, this robot looks unbelievably real!’’ just like the reaction to an artificial flower. The accelerating pace of advances in related fields suggests that the emergence of humanlike robots that become part of our daily life seems to be imminent. These robots are expected to raise ethical concerns and may also raise many complex questions related to their interaction with humans.