Joseph Pace

Joseph Pace Email and Phone Number

Principal Structural Engineer @ Northrop Grumman
Phoenix, AZ, US
Joseph Pace's Location
Greater Phoenix Area, United States, United States
Joseph Pace's Contact Details

Joseph Pace personal email

n/a
About Joseph Pace

Mechanical engineer with a background in computational mechanics of materials. I have a willingness and aptitude to obtain new skills and learn new methods to answer diverse research and development questions using quantitative tools. This is demonstrated by my varied experience in mechanical analysis of high temperature, hypersonic structural applications in the aerospace industry and a research background in biomechanics. My general interests lie in mechanics of materials, research and development, materials science, biomechanics, and analysis.

Joseph Pace's Current Company Details
Northrop Grumman

Northrop Grumman

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Principal Structural Engineer
Phoenix, AZ, US
Employees:
79336
Joseph Pace Work Experience Details
  • Northrop Grumman
    Principal Structural Engineer
    Northrop Grumman
    Phoenix, Az, Us
  • Chandler/Gilbert Community College
    Adjunct Faculty
    Chandler/Gilbert Community College May 2024 - Present
    Chandler, Az, Us
    Mechanics of Materials Course InstructorDevelop course curriculum including lecture material, assignments, and the final exam for use in online and in-person course settingsPresent semi-weekly in-person lecturesPerform general course administration (grading, managing the class Canvas page, etc.)
  • Northrop Grumman
    Principal Structural Engineer
    Northrop Grumman Oct 2022 - Present
    Falls Church, Va, Us
    • Provide analysis support for advanced programs, develop analysis methodologies, and support research and development initiatives• Mechanical analysis of aerospace components for high temperature, hypersonic applications using finite element models and classical analytical solutions• Analyze metallic, composite (polymer matrix and ceramic matrix composites), and ceramic structures• Employ a ceramics reliability analysis methodology based on Weibull probabilistic methods to introduce the capability to analyze ceramic materials to the analysis team - Perform verification and validation of the ceramics analysis methodology including performing thermo-mechanical testing of ceramic specimens in conjunction with corresponding mechanical analysis of test conditions• Perform mechanical testing to characterize materials and identify failure modes of components• Perform trade studies to inform design of components used in development projects• Document analysis results and analysis methodologies in technical reports• Provide technical mentorship to team members and perform peer reviews of structural analyses
  • Stanford University
    Graduate Research Assistant, Dauskardt Research Group
    Stanford University Jun 2018 - Aug 2022
    Stanford, Ca, Us
    Characterizing the mechanism of sensorial perception of biomechanical changes in human skin:• Create nonlinear finite element models in Abaqus based on actual skin topographies and perform parameter studies to analyze how varying topographical features, mechanical properties in the distinct skin layers, and loading conditions affect the mechanical state of the skin at the depth of cutaneous mechanoreceptors• Simulate microneurography experiments from literature using finite element methods to optimize parameters in models that relate mechanical strain at the depth of cutaneous mechanoreceptors to neuron activity• Relate predicted neuron activity from computational neuron models to reported consumer survey scores from 1000s of women to explain sensorial perception from a mechanics perspective• Create 3D finite element models to replicate thin film stress measurement experiments and in vivo dermal torque meter experiments performed by research group colleagues and by project collaborators to discern mechanical behavior and mechanical properties that are difficult to measure directly• Perform profilometry on a facial skin replica to generate a 3D skin model and to simulate skin treatment effects using finite element methods
  • Stanford University
    Course Assistant, Mechanical Properties Of Materials
    Stanford University Mar 2022 - Jun 2022
    Stanford, Ca, Us
    • Prepare and teach lectures to class of ~30 students when instructor is away• Assist students in understanding of course content and assignments during regular office hours
  • Lawrence Livermore National Laboratory
    Student Intern
    Lawrence Livermore National Laboratory May 2017 - Sep 2017
    Livermore, Ca, Us
    • Characterized piezoresponsive properties of a nanocomposite foam sensor• Prepared compression test protocols, set up instrumentation, and worked directly with the Instron testing machine operator to measure resistivity of the nanocomposite foam over a broad range of compressive strains• Designed fixture for shaker testing in CAD and carried out vibration tests to evaluate the ability of the foam sensor to measure compression amounts, speed of compression, and acceleration of compression during high frequency loading• Measured resistance of foam under prolonged static compressive loads to observe stability of sensor over time and with mild variations in indoor ambient temperatures• Compiled results obtained during internship in a written report and communicated results in a presentation to employees with an interest in the potential of foam sensors
  • Brigham Young University
    Undergraduate Research Assistant, Byu Applied Biomechanics Engineering Laboratory
    Brigham Young University May 2015 - Apr 2017
    Provo, Ut, Us
    • Fabricated nanocomposite foam sensors with varying amounts of conductive particles for use in tests to evaluate piezoelectric and piezoresistive properties• Carried out experiments using drop weight impact tester to measure output voltage generated in foam upon impact for various sample compositions and organized data for statistical analysis• Utilized Instron testing machine to measure resistance of various nanocomposite foam sample compositions under compressive loading• Presented at 2016 SAMPE University Research Symposium in Anaheim, CA and was awarded 1st place in the undergraduate category for presentation titled, Optimal Design of Quasi-Piezoelectric Nanocomposite Foam Sensors• Gained experience collecting ground reaction force data from force plates in biomechanics lab

Joseph Pace Skills

Testing Research Microsoft Office Microsoft Excel Microsoft Word Powerpoint Leadership Matlab Ansys Catia Mill/lathe Thermodynamics Materials Science Customer Service Time Management

Joseph Pace Education Details

  • Stanford University
    Stanford University
    Mechanical Engineering
  • Stanford University
    Stanford University
    Mechanical Engineering
  • Brigham Young University
    Brigham Young University
    Mechanical Engineering

Frequently Asked Questions about Joseph Pace

What company does Joseph Pace work for?

Joseph Pace works for Northrop Grumman

What is Joseph Pace's role at the current company?

Joseph Pace's current role is Principal Structural Engineer.

What is Joseph Pace's email address?

Joseph Pace's email address is jp****@****lnl.gov

What schools did Joseph Pace attend?

Joseph Pace attended Stanford University, Stanford University, Brigham Young University.

What are some of Joseph Pace's interests?

Joseph Pace has interest in Sports, Running, Kinematics, Mechanics Of Materials, Mechanical Engineering, Machine Design.

What skills is Joseph Pace known for?

Joseph Pace has skills like Testing, Research, Microsoft Office, Microsoft Excel, Microsoft Word, Powerpoint, Leadership, Matlab, Ansys, Catia, Mill/lathe, Thermodynamics.

Who are Joseph Pace's colleagues?

Joseph Pace's colleagues are Wendy Hauffen, Mba, Garrett Tsumaki, Taylor Ussery, Keith Gray, Abdi Mahamed, Mike Lafleur, Chloe Hawkins.

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