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Fatigue Fracture Aerospace Engineer Jobs (NOW HIRING)

Senior Structural Analyst

Huntsville, AL · On-site

$145K - $203K/yr

Proven expertise in ANSYS Workbench and advanced understanding of strength, fatigue, fracture ... Master's degree in Aerospace Engineering, Mechanical Engineering, or a related field. * Previous ...

Proven expertise in ANSYS Workbench and advanced understanding of strength, fatigue, fracture ... Master's degree in Aerospace Engineering, Mechanical Engineering, or a related field. * Previous ...

Proven expertise in ANSYS Workbench and advanced understanding of strength, fatigue, fracture ... Master's degree in Aerospace Engineering, Mechanical Engineering, or a related field. * Previous ...

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Fatigue Fracture Aerospace Engineer information

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$68.5K

$109.4K

$148.5K

How much do fatigue fracture aerospace engineer jobs pay per year?

As of Sep 9, 2026, the average yearly pay for fatigue fracture aerospace engineer in the United States is $109,399.00, according to ZipRecruiter salary data. Most workers in this role earn between $80,000.00 and $137,000.00 per year, depending on experience, location, and employer.

What does a fatigue fracture aerospace engineer do?

A Fatigue Fracture Aerospace Engineer specializes in analyzing, predicting, and preventing the failure of aerospace structures and components due to repeated stress, known as fatigue, and crack propagation, referred to as fracture. They assess materials, design criteria, and environmental factors to ensure aircraft and spacecraft maintain structural integrity over time. Their work involves performing simulations, laboratory tests, and inspections to identify potential risks and recommend solutions to improve safety and performance. This role is essential for extending the lifespan of aerospace components and ensuring compliance with safety regulations.

How does a fatigue fracture aerospace engineer typically collaborate with other engineering disciplines during a project?

Fatigue Fracture Aerospace Engineers frequently work alongside structural, materials, and design engineers to ensure aircraft components meet stringent safety and durability standards. Collaboration often involves sharing test results, analyzing failure modes, and integrating fatigue assessment data into the overall design process. Regular meetings and joint reviews help align testing protocols, material selection, and design modifications, ensuring that all teams address potential fatigue issues early in the development cycle. This teamwork is essential for meeting regulatory requirements and achieving optimal aircraft performance.

What are the key skills and qualifications needed to thrive as a fatigue fracture aerospace engineer, and why are they important?

To thrive as a Fatigue Fracture Aerospace Engineer, you need a strong background in materials science, mechanical engineering, and fatigue analysis, usually supported by a relevant engineering degree. Familiarity with finite element analysis (FEA) software, fracture mechanics modeling tools, and industry standards such as ASTM and NASGRO is essential. Attention to detail, problem-solving abilities, and effective communication skills are crucial for collaborating with cross-functional teams and ensuring precise analysis. These competencies ensure the reliability and safety of aerospace components by accurately predicting and mitigating fatigue-related failures.

What is the difference between Fatigue Fracture Aerospace Engineer vs Structural Aerospace Engineer?

AspectFatigue Fracture Aerospace EngineerStructural Aerospace Engineer
Required CredentialsBachelor's or Master's in Aerospace or Mechanical Engineering, relevant certificationsBachelor's or Master's in Aerospace or Mechanical Engineering, relevant certifications
Work EnvironmentDesign labs, testing facilities, aircraft maintenance sitesDesign offices, testing labs, manufacturing plants
Industry UsageFocuses on fatigue life, crack growth, fracture analysis of aerospace componentsDesigns and analyzes aircraft structures for strength and stability

Both roles require similar educational backgrounds and certifications, but Fatigue Fracture Aerospace Engineers specialize in analyzing and preventing fatigue-related failures, while Structural Aerospace Engineers focus on overall structural design and integrity of aircraft components.

What are popular job titles related to Fatigue Fracture Aerospace Engineer jobs?

For Fatigue Fracture Aerospace Engineer jobs, the most frequently searched job titles are:

Infographic showing various Fatigue Fracture Aerospace Engineer job openings in the United States as of July 2026, with employment types broken down into 92% Full Time, 3% Part Time, 3% Contract, and 2% Nights. Highlights an 93% Physical, 3% Hybrid, and 4% Remote job distribution, with an average salary of $109,399 per year, or $52.6 per hour.

Lead, Structural Analysis Engineering (Stress, Fatigue & Damage Tolerance)

Long Beach, CA • On-site

Relativity Space
Aerospace Product and Parts Manufacturing • 501 - 1,000 employees

$61.75 - $84.75/hr

Full-time

Re-posted 23 days ago


Key responsibilities

  • Lead structural analysis activities for vehicle structures, including static stress, fatigue, and damage tolerance assessments.

  • Guide the development, verification, and certification of primary and secondary structures from design through flight operations.

  • Collaborate with cross-functional teams to ensure structurally robust, manufacturable designs that meet performance and reliability requirements.


Relativity Space rating

9.7

Company rating: 9.7 out of 10

Based on 8 frontline employees who took The Breakroom Quiz

2nd of 72 rated aerospace companies


Job description

About the Team:  

The Integrated Performance team owns the holistic view of how Terran R comes together, ensuring that every system on the vehicle and ground is capable of achieving ambitious performance, reliability, and reusability goals. The team works across the full launch system-from trajectory design and aerodynamics to reliability analysis and post-flight data review-with technical leadership influence across the entire product lifecycle. Beyond analysis, team members engage hands-on with hardware, testing, and operations, with the authority to lead and drive meaningful programmatic change.

The Integrated Analysis group accelerates Relativity's hardware engineering through advanced analysis, life prediction, and modern tools. The team enables robust, lightweight, and reusable structures by leading the integration of fatigue, fracture, durability, and inspection considerations early in design and throughout vehicle maturation.

About the Role: 

As a Structural Analysis Lead, you will provide technical leadership for the structural integrity, strength, durability, and life management of flight hardware across the vehicle. You will be responsible for defining and executing structural analysis strategies spanning static strength, fatigue and damage tolerance, fracture mechanics, and structural dynamics.

In this role, you will guide the development, verification, and certification of primary and secondary structures from early design through flight operations. You will work closely with design, materials, manufacturing, and test teams to ensure structurally robust designs that meet performance, reliability, and reusability requirements.

Cross-Functional Leadership & Tools

  • Oversee a team of analysts while maintaining direct technical contribution
  • Provide technical mentorship and guidance to structural analysts and engineers
  • Collaborate with design, materials, manufacturing, and test teams to ensure structurally robust and manufacturable designs
  • Establish and improve structural analysis standards, best practices, and verification workflows
  • Develop automation and analysis tools using scripting environments such as Python or MATLAB to improve analysis efficiency

Structural Analysis Leadership

  • Lead structural analysis activities for major vehicle structures across component, subsystem, and vehicle levels
  • Define structural analysis methodologies, requirements, and design margins for flight-critical hardware
  • Provide technical leadership across static stress, fatigue, fracture mechanics, and durability assessments

Stress & Structural Analysis

  • Perform and review static and dynamic stress analyses for metallic and additively manufactured structures
  • Develop and maintain finite element models using tools such as Nastran and Abaqus with pre/post environments such as Femap
  • Evaluate structural margins including yield, ultimate strength, buckling, thermal stress, and dynamic response
  • Support structural sizing and optimization of primary load-bearing structures

Fatigue & Damage Tolerance

  • Develop fatigue life and durability predictions using SN/EN methods and fracture mechanics approaches
  • Perform crack initiation and crack growth analyses using tools such as NASGRO and AFGROW
  • Establish fatigue allowables, crack growth limits, inspection intervals, and life limits for flight hardware
  • Translate time-domain or spectral load environments into fatigue-relevant stress histories and cumulative damage metrics

Loads, Modeling & Environments

  • Translate flight, ground, acoustic, and thermal environments into structural loads and responses
  • Integrate loads and environments into structural analysis and fatigue life predictions
  • Support multidisciplinary analysis for vehicle-level structural performance

Test Correlation & Structural Validation

  • Lead correlation of structural and fatigue analyses with qualification and durability testing
  • Support structural testing, including component, subsystem, and full-scale structural tests. Investigate anomalies and structural failures and update analysis models accordingly
  • Support structural life reassessment using test and flight data

About You:  

  • Bachelor's degree in Mechanical Engineering, Aerospace Engineering, or a related discipline
  • Experience leading or mentoring a team (either formally or informally)
  • 5+ years of experience in structural analysis, fatigue & damage tolerance, or structural life assessment
  • Strong understanding of:
    • Static stress analysis
    • Structural mechanics
    • Fatigue and Fracture mechanics
    • Structural failure modes in aerospace hardware
  • Proficiency with commercial finite element analysis tools such as:
    • Nastran
    • Abaqus
  • Experience using pre/post-processing environments such as Femap
  • Proficiency with fracture mechanics software such as:
    • NASGRO
    • AFGROW
  • Experience converting time-domain or spectral loads into fatigue damage and life predictions
  • Proficiency with engineering scripting or analysis languages such as Python or MATLAB
  • Ability to independently scope, execute, review, and defend structural analyses

Nice to Haves, but Not Required:  

  • Master's or PhD in Mechanical or Aerospace Engineering
  • Experience with launch vehicles, reusable aerospace systems, or flight-critical hardware
  • Experience with additive manufacturing structural analysis and fatigue characterization
  • Familiarity with Elastic-Plastic Fracture Mechanics (EPFM)
  • Experience correlating structural, fatigue, or fracture predictions with test or flight data
  • Prior experience defining structural design allowables or durability standards for aerospace systems

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