Chad Clements

Chemical Engineer at Astro Pak Corporation
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Contact Information
us****@****om
(386) 825-5501
Location
Titusville, Florida, United States, US

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Credentials

  • Process Safety Certification: Chemical Reactivity Hazards
    Safety and Chemical Engineering Education
    Dec, 2018
    - Nov, 2024
  • Process Safety Certification: Fire Hazards
    Safety and Chemical Engineering Education
    Dec, 2018
    - Nov, 2024
  • Process Safety Certification: Introduction to Pressure Protection
    Safety and Chemical Engineering Education
    Dec, 2018
    - Nov, 2024
  • Process Safety Certification: Toxicological Hazards
    Safety and Chemical Engineering Education
    Dec, 2018
    - Nov, 2024
  • Process Safety Certification: Understanding Hazards and Risk
    Safety and Chemical Engineering Education
    Dec, 2018
    - Nov, 2024

Experience

    • United States
    • Industrial Machinery Manufacturing
    • 100 - 200 Employee
    • Chemical Engineer
      • Jun 2023 - Present

    • Process Engineering Manager
      • Sep 2021 - Jun 2023

    • Process Engineer
      • May 2020 - Sep 2021

    • United States
    • Aviation and Aerospace Component Manufacturing
    • 700 & Above Employee
    • Cryogenics Test Laboratory Intern
      • Jun 2018 - Aug 2018

      Worked with several engineering professionals to further cryogenic research and applications. Measured the thermal conductivities of several test materials to determine aptitude for space travel via cryogenic boiloff. Collaborated with NIOSH personnel to investigate emergency breathing device improvements by using cryogens. In a team of three, designed and evaluated an experimental setup that controlled the input of heat to a cryogenic system and measured the resulting temperature profile… Show more Worked with several engineering professionals to further cryogenic research and applications. Measured the thermal conductivities of several test materials to determine aptitude for space travel via cryogenic boiloff. Collaborated with NIOSH personnel to investigate emergency breathing device improvements by using cryogens. In a team of three, designed and evaluated an experimental setup that controlled the input of heat to a cryogenic system and measured the resulting temperature profile. Utilized safe cryogen handling methods while preforming cold research. Summarized relevant findings and contributions in an end of term technical report. Show less Worked with several engineering professionals to further cryogenic research and applications. Measured the thermal conductivities of several test materials to determine aptitude for space travel via cryogenic boiloff. Collaborated with NIOSH personnel to investigate emergency breathing device improvements by using cryogens. In a team of three, designed and evaluated an experimental setup that controlled the input of heat to a cryogenic system and measured the resulting temperature profile… Show more Worked with several engineering professionals to further cryogenic research and applications. Measured the thermal conductivities of several test materials to determine aptitude for space travel via cryogenic boiloff. Collaborated with NIOSH personnel to investigate emergency breathing device improvements by using cryogens. In a team of three, designed and evaluated an experimental setup that controlled the input of heat to a cryogenic system and measured the resulting temperature profile. Utilized safe cryogen handling methods while preforming cold research. Summarized relevant findings and contributions in an end of term technical report. Show less

    • United States
    • Higher Education
    • 700 & Above Employee
    • Research Assistant
      • Jan 2018 - May 2018

      Worked with a fluid dynamics program in Python to model how existing climate simulation methods could be improved. Independently benchmarked reworks of the program versus elementary transport phenomena problems to assess program accuracy. Implemented additional active computational nodes to further increase the accuracy of the program. Worked with a fluid dynamics program in Python to model how existing climate simulation methods could be improved. Independently benchmarked reworks of the program versus elementary transport phenomena problems to assess program accuracy. Implemented additional active computational nodes to further increase the accuracy of the program.

Education

  • University of Florida
    Bachelor's degree, Chemical Engineering
    2015 - 2019

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