Mary Helen Johnston

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Mary Helen Johnston
West Palm Beach, Florida, US
NationalityAmerican
Occupation(s)Scientist, astronaut
AwardsNASA Exceptional Scientific Achievement Medal (1982)
Space career
SelectionSpacelab-3 (1983)
MissionsSTS-51-B
RetirementMay 6, 1985 (1985-05-06)
Academic background
Alma materFlorida State University (BS; MS)
University of Florida (PhD)
ThesisEffect of gravity forces on crystal growth parameters in tin (1973)
Doctoral advisorDavid Hale Baldwin
Academic work
DisciplineEngineering
Sub-disciplineLaser-induced surface improvement
InstitutionsUniversity of Tennessee Space Institute
Florida Institute of Technology
Scientific career
FieldsMaterials science (metallurgical engineering), Aerospace engineering, Laser research, Hydrogen research

Mary Helen Johnston (born September 17, 1945), later also Mary Helen McCay, is an American scientist and former astronaut. Working with NASA as an engineer in the 1960s and '70s, Johnston aspired to be an astronaut; she unsuccessfully applied in 1980 before becoming a payload specialist in 1983. Johnston retired from NASA in 1986 without having gone to space. She is a professor at Florida Institute of Technology.

Early life and education

Mary Helen Johnston was born in

West Palm Beach, Florida, and grew up in the nearby Fort Pierce. As a child, she was inspired to engineering and space exploration by the arrival of Sputnik and by the Kennedy Space Center, which was located near her home.[1]

Johnston graduated in 1966 with a Bachelor of Science in engineering from

metallurgical engineering, from the University of Florida,[2][3] while working under the direction on David H. Baldwin.[4] Johnston was the first woman to receive an engineering degree from FSU. Of her time at university, Johnston has said: "It was a different time, for sure. It's still unusual for me when I find myself in a meeting with all women, because throughout most of my career I have gone into meetings where the rooms were filled with men."[1]

NASA career

Johnston began working at the Marshall Space Flight Center (MSFC) of NASA during her engineering studies from 1963 to 1968. In 1968, she became employed there as a metallurgist.[2]

Johnston (left, seated) and her colleagues at the outset of the five-day GPL exercise in 1974

In 1974, she worked with Doris Chandler, Carolyn S. Griner and Ann Whitaker on the simulation of a space mission at the General Purpose Laboratory (GPL) of MSFC. The exercise was named Concept Verification Test (CVT) Test No. 4 and began on December 16 for five days. The team of four women, all scientists, conducted eleven experiments to test their feasibility before they were carried out in the Spacelab of the Space Shuttle. These experiments were carried out under conditions identical to those of the Space Shuttle (temperature, humidity, air circulation, etc.) except for the weightlessness.[5][6][7] These tests included some in the neutral buoyancy simulator, itself a mock-up of one to be built in Europe to provide training for future astronauts. Johnston led three science experiments, and helped her fellow scientists to develop techniques to be used on Spacelab. In 1976, she indicated that she "had planned the work in hopes of going on orbital missions in the 1980s."[8]

In 1976, Johnston worked with Griner on MSFC experiments testing space-like conditions with Space Processing Applications Rocket (SPAR) launched objects, particularly involving "dendrite remelting and macrosegregation".[9]

Johnston (left) with Ann Whitaker and Carolyn S. Griner in training as a candidate payload specialist for space missions in 1973

With Whitaker and Griner, Johnston received astronaut training. Her training included tests in the pool of the MSFC neutral buoyancy laboratory and a flight in microgravity aboard the Boeing KC-135 Stratotanker, as well as completing additional flight lessons.[2] In 1980, Johnston applied to be an astronaut in the Group 9 selection, but was unsuccessful.[3]

Johnston received the NASA Exceptional Scientific Achievement Medal in 1982.[1]

On June 5, 1983,

Eugene Trinh, also provided support from Johnson Space Center "as members of the mission management and science team responsible for controlling and directing experiment operations from the Payload Operations Control Center (POCC)".[14] Of her selection, mission manager Joseph Cremin wrote: "The job ahead is difficult and the time is short which makes this assignment a significant challenge that will require the utmost dedication and perseverance of Dr. Johnston. I have no doubt that she will accomplish this assignment in an exemplary fashion."[3]

Johnston later spoke of her involvement in the mission:[1]

I got involved in what was called the 'Manufacturing–in–Space' program, and it has morphed into commercialization in space and such [...] I was really interested in working on things that could be produced in space. To me, being a researcher, scientist, and engineer, the best way to do that was to get up there with a bunch of equipment and find out what worked, because it's almost impossible to imagine what some things will do where there is absolutely no gravity. It was great fun, especially if you were a scientific gadfly, because there were astronomy experiments, experiments with rats and monkeys, and crystal–growth experiments, for instance. This was an international laboratory.

She ended her astronaut career on May 6, 1985.[10]

Later career

Leaving NASA in 1986, Johnston – at this point known as McCay – became a professor, teaching at the University of Tennessee Space Institute. A later role came in 2003, when she was appointed the director of the National Center for Hydrogen Research at Florida Institute of Technology (FIT).[3] She is married to Dr. T. Dwayne McCay, who is also a former NASA engineer and the president and CEO of FIT.[1]

As an inventor, Johnston holds two dozen patents, many applying to laser-surface modification. While at the University of Tennessee, one of Johnston's inventions in laser surfacing received numerous awards and commendations, including the American Museum of Science and Energy Award for Technical Achievement, the university's Wheeley Award for Excellence in Technology Transfer and Chancellor's Award for Creativity in Research. In 2018 she was made a Fellow of the National Academy of Inventors.[1]

References

  1. ^ a b c d e f Datzman, Ken (February 19, 2018). "FIT's Mary Helen McCay blazes trail at FSU, NASA, named Fellow of elite NAI" (PDF). Brevard Business News. Vol. 36, no. 8. Retrieved March 1, 2020.
  2. ^
    ISBN 978-1-84628-078-8. Retrieved April 23, 2019 – via Google Books
    .
  3. ^ .
  4. ^ Johnston, Mary Helen (1973). Effect of gravity forces on crystal growth parameters in tin (Ph.D. thesis). University of Florida.
  5. ISBN 978-1-4214-0394-6. Retrieved April 23, 2019 – via Google Books
    .
  6. ISBN 978-0-387-49387-9. Retrieved April 23, 2019 – via Google Books
    .
  7. ^ "Space History Photo: Materials Science Experiments Conducted at MSFC". Space.com. July 3, 2014. Retrieved April 23, 2019.
  8. ^ Ritchie, Eleanor H. (1984). Astronautics and Aeronautics, 1976 A Chronology (PDF). NASA. p. 270. Retrieved March 1, 2020.
  9. ^ Ritchie, Eleanor H. (1984). Astronautics and Aeronautics, 1976 A Chronology (PDF). NASA. pp. 95, 225. Retrieved March 1, 2020.
  10. ^ a b "Astronaut Biography: Mary Johnston". Space Facts. Retrieved March 1, 2020.
  11. ^ a b NASA (July 1, 1983). "Spacelab 3 payload specialist group named" (PDF). Space News Roundup. p. 4. Retrieved March 1, 2020.
  12. ^ NASA (June 29, 1984). "Varied flight assignments made" (PDF). Space News Roundup. p. 1. Retrieved March 1, 2020.
  13. ^ NASA (March 27, 2014). "Woman Scientists and Engineers Train In Simulated Weightless Environment". Retrieved March 1, 2020.
  14. ^ NASA (1985). Orloff, Richard W. (ed.). "Space Shuttle Mission STS-51B Press Kit April 1985" (PDF). p. 27. Retrieved March 1, 2020.