Structural Analyst

Tiberius Aerospace Inc.•Orange County, FL
•$125,000 - $165,000•Onsite

About The Position

Tiberius Aerospace is seeking a hands-on Structural Analysis & Test Engineer to evaluate and validate the structural integrity, durability, and environmental survivability of mechanical assemblies and electronic hardware. This role is analysis-forward, with direct ownership of structural verification and physical test support. You will translate system requirements and mission environments into component-level loads, analysis cases, verification plans, test conditions, and acceptance criteria. Your work will span static strength, fatigue, modal response, random vibration, shock, thermal-structural interaction, and qualification of flight-relevant hardware. The ideal candidate is equally capable of building a credible finite-element model, checking it with first-principles engineering, defining a test approach, instrumenting hardware, interpreting the data, and turning results into better design decisions.

Requirements

  • B.S. or higher in Mechanical Engineering, Aerospace Engineering, Engineering Mechanics, or a related discipline.
  • 3+ years of experience performing structural analysis and supporting physical testing of mechanical, electronic, or electromechanical hardware.
  • Strong foundation in solid mechanics, structural dynamics, fatigue, vibration, shock, and thermal stress.
  • Proficiency with finite-element tools such as ANSYS, Abaqus, NASTRAN, FEMAP, or equivalent, including model setup, meshing, contacts, boundary conditions, and results interpretation.
  • Demonstrated ability to validate simulation results through hand calculations, simplified models, and practical engineering judgment.
  • Experience assessing high-cycle fatigue in metallic structures and electronic assemblies, with an understanding of their distinct failure mechanisms.
  • Familiarity with modal response, random vibration, power spectral density (PSD), shock response spectra (SRS), frequency response, and time-domain dynamic analysis.
  • Ability to translate system-level requirements into component loads, analysis cases, test conditions, and verification requirements.
  • Hands-on experience with strain gauges, accelerometers, thermocouples, load cells, and data-acquisition systems.
  • Proficiency with MATLAB, Python, or equivalent tools for engineering calculations, automation, and test-data processing.
  • Strong technical writing, communication, and cross-functional collaboration skills.
  • U.S. citizenship and eligibility to obtain and maintain a U.S. government security clearance.

Nice To Haves

  • Experience with missile, munition, air vehicle, propulsion, aerospace, or defense hardware exposed to severe mechanical and thermal environments.
  • Experience evaluating printed-circuit-board dynamics, component attachment, solder-joint fatigue, and the structural effects of potting, underfill, or conformal coating.
  • Experience developing qualification and acceptance test programs.
  • Experience with nonlinear structural analysis, including contact, preload, plasticity, and transient dynamic response.
  • Familiarity with fatigue-life methods, including S–N curves, mean-stress corrections, and cumulative-damage assessment.
  • Experience correlating finite-element models with modal, strain, vibration, shock, and thermal-test data.
  • Experience with environmental-test standards and laboratory test execution.
  • Active U.S. government security clearance.

Responsibilities

  • Develop and maintain load flowdowns from system requirements to subsystems, assemblies, and components.
  • Define load cases, interface loads, boundary conditions, factors of safety, margins of safety, and verification approaches appropriate to the hardware and operating environment.
  • Perform static structural analysis of metallic structures, joints, fasteners, housings, electronic enclosures, printed circuit boards, and electromechanical assemblies using hand calculations and finite element analysis.
  • Evaluate stress, deformation, stiffness, buckling, joint integrity, contact behavior, and structural margins.
  • Develop, execute, and maintain FEA models, including meshing, material definition, contacts, preload, boundary conditions, load application, and results interpretation.
  • Validate numerical results using hand calculations, simplified models, and sound engineering judgment.
  • Assess high-cycle fatigue life for metallic components and electronic hardware, including printed circuit boards, solder joints, component leads, and interconnects.
  • Perform modal, frequency-response, random-vibration, transient-shock, and time-domain dynamic analyses to evaluate dynamic response, load amplification, and hardware survivability.
  • Evaluate thermal-structural interaction, including thermal-expansion mismatch, temperature gradients, thermally induced stress, and temperature-dependent material behavior.
  • Support nonlinear analysis involving contact, preload, plasticity, and transient response when required.
  • Develop structural verification, qualification, and acceptance-test plans for static, fatigue, vibration, shock, and combined thermal-mechanical environments.
  • Define test conditions, instrumentation plans, procedures, success criteria, and acceptance criteria that trace directly to engineering requirements.
  • Design or support the design of test fixtures, accounting for fixture stiffness, modal behavior, dynamics, and influence on measured results.
  • Support test execution, including hardware setup, instrumentation installation, data-acquisition configuration, troubleshooting, and post-test inspection.
  • Select, install, and use strain gauges, accelerometers, thermocouples, load cells, displacement sensors, and associated data-acquisition systems.
  • Process and interpret strain, acceleration, force, displacement, and temperature data using MATLAB, Python, or equivalent tools.
  • Correlate finite-element models with modal, strain, vibration, shock, fatigue, and thermal-test data.
  • Investigate failures, unexpected results, and analysis-to-test discrepancies; identify root causes and recommend design improvements.
  • Work closely with Mechanical, Electrical, Systems, Manufacturing, Quality, and Test teams throughout the hardware-development lifecycle.
  • Translate analysis and test results into clear, actionable design guidance for engineers, technicians, and program leadership.
  • Participate in design reviews and communicate structural risk, verification status, margins, discrepancies, and recommended actions.
  • Support prototype builds, environmental qualification, flight-hardware integration, and production-readiness activities.
  • Support manufacturing and supplier partners with structural disposition, design-for-manufacturing, and design-for-assembly decisions.
  • Prepare clear technical reports, analysis packages, test procedures, verification evidence, and milestone-review materials.
  • Capture and apply lessons from analysis and test to future designs, requirements, verification plans, and test methods.

Benefits

  • equity participation
  • comprehensive health benefits
  • 401(k)
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