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Remote Aerospace Systems Engineer Jobs in Ohio (NOW HIRING)

Enterprise Solutions Engineer, Channel

OH · On-site +1

$103K - $128K/yr

Location - We are flexible on remote working from home, if you are located in the USA and reside in ... Evolved from a technical background (e.g., TAM, support, systems engineer), with practical insight ...

Enterprise Solutions Engineer, Channel

OH · On-site +1

$103K - $128K/yr

Location - We are flexible on remote working from home, if you are located in the USA and reside in ... Evolved from a technical background (e.g., TAM, support, systems engineer), with practical insight ...

You will work closely with senior engineers, systems engineers, and stakeholders to translate ... Remote, with occasional travel to the Dayton/WPAFB area * Travel Requirements: Minimal (0-20%

... passive remote sensing applications and missile/aircraft systems Desired Qualifications * Active ... Background in mechanical/aerospace engineering and modeling tools a plus Radiance Technologies is ...

Showing results 21-40

Remote Aerospace Systems Engineer information

What does a remote aerospace systems engineer do?

A Remote Aerospace Systems Engineer designs, analyzes, and manages complex aerospace systems such as aircraft, spacecraft, satellites, and missiles, all while working remotely. Their responsibilities include developing system requirements, integrating various subsystems, ensuring compliance with industry standards, and collaborating with multidisciplinary teams using digital tools. Remote engineers use simulation software, CAD programs, and virtual meetings to oversee projects from conception to completion, making communication and documentation skills especially important in a remote setting.

What are the key skills and qualifications needed to thrive as a remote aerospace systems engineer?

To thrive as a Remote Aerospace Systems Engineer, you need a solid background in engineering principles, systems integration, and aerospace design, usually supported by a relevant engineering degree and experience in aerospace projects. Familiarity with simulation software (like MATLAB/Simulink), CAD tools, and industry standards such as DO-178C or ARP4754A is often required. Strong problem-solving abilities, self-motivation, and effective remote communication skills help you excel in a distributed team environment. These competencies are crucial for ensuring the reliability, safety, and innovation of aerospace systems while collaborating seamlessly from a remote setting.

How do remote aerospace systems engineers typically collaborate with on-site teams to ensure successful project outcomes?

Remote Aerospace Systems Engineers frequently use a combination of digital collaboration tools, such as video conferencing, shared design platforms, and real-time project management software, to stay closely connected with on-site engineering, manufacturing, and testing teams. Regular virtual meetings and clear documentation are essential to align on specifications, address technical challenges, and integrate system components effectively. While remote, engineers may occasionally visit the site for critical milestones, but most communication is structured to maintain project momentum and foster strong cross-functional relationships.

What is the difference between Remote Aerospace Systems Engineer vs Remote Aerospace Software Engineer?

AspectRemote Aerospace Systems EngineerRemote Aerospace Software Engineer
Required CredentialsBachelor's or higher in aerospace, mechanical, or systems engineering; certifications like INCOSEBachelor's or higher in computer science, software engineering, or related; coding certifications
Work EnvironmentDesign, integrate, and test aerospace systems remotely; collaboration with multidisciplinary teamsDevelop and test aerospace software remotely; focus on coding, simulation, and debugging
Employer & Industry UsageAirlines, aerospace manufacturers, defense contractorsAircraft software providers, aerospace tech firms, defense industry

While both roles involve aerospace and remote work, Remote Aerospace Systems Engineers focus on system integration and hardware-software interactions, whereas Remote Aerospace Software Engineers specialize in developing aerospace software solutions. The choice depends on your expertise in hardware systems versus software development within the aerospace industry.

What are the most commonly searched types of Aerospace Systems Engineer jobs in Ohio?

The most popular types of Aerospace Systems Engineer jobs in Ohio are:

What cities in Ohio are hiring for Remote Aerospace Systems Engineer jobs?

Cities in Ohio with the most Remote Aerospace Systems Engineer job openings:

Infographic showing various Remote Aerospace Systems Engineer job openings in Ohio as of August 2026, with employment types broken down into 79% Full Time, 17% Part Time, and 4% Contract. Highlights an 89% Physical, 3% Hybrid, and 8% Remote job distribution.

Mechanical Integrity Engineer - Gas Turbine Structures

Quest Defense Systems & Solutions, Inc.

Cincinnati, OH • On-site, Remote

Full-time

Medical, Dental, Life, Retirement

Re-posted yesterday


Job description

Immediately Hiring!

Quest Defense Systems & Solutions is seeking a Mechanical Integrity Engineer - Gas Turbine Structures to support structural analysis and substantiation work for gas turbine engine components. This role is ideal for an engineer with a strong foundation in mechanical or aerospace engineering who enjoys solving complex structural problems through finite element analysis, hand calculations, fatigue/fracture mechanics, and technical documentation.

In this role, you will work closely with internal engineering teams, customer stakeholders, and cross-functional technical groups to evaluate designs, support program reviews, and provide analysis-backed recommendations. You will use CAE tools such as ANSYS, Siemens Simcenter, Nastran/Patran, or ABAQUS to perform structural and mechanical integrity analysis, document findings, and help ensure components meet customer, program, and durability requirements.

Due to the nature of this work, candidates must be U.S. Citizens.

This role is preferred hybrid in Cincinnati, OH, but remote candidates will be considered.

What You'll Be Doing:

  • Perform structural and mechanical integrity analysis for gas turbine engine components and systems.
  • Use finite element analysis (FEA) and hand calculations to support design decisions, technical substantiation, and customer requirements.
  • Evaluate component durability, strength, low-cycle fatigue, fatigue life, and fracture mechanics considerations.
  • Build, modify, and analyze models using CAE tools such as ANSYS Classic, ANSYS Workbench, Siemens Simcenter, Nastran/Patran, and ABAQUS.
  • Support geometry and mesh preparation for analysis activities, including working with Siemens Simcenter and Siemens NX when needed.
  • Review analysis results, identify risks or areas of concern, and provide clear technical recommendations.
  • Participate in technical reviews, program reviews, and customer discussions to communicate analysis findings and support engineering decisions.
  • Collaborate with internal engineering teams, customer stakeholders, and cross-functional groups to solve complex structural/mechanical challenges.
  • Document analysis plans, assumptions, methods, results, and conclusions in accordance with customer and program requirements.
  • Prepare technical reports and presentations that clearly communicate findings, substantiation, and next steps.
  • Manage multiple tasks and deadlines while supporting changing program priorities.

Required Qualifications:

  • Bachelor's degree in Mechanical Engineering, Aerospace Engineering, or a related engineering discipline from an accredited university.
  • 2+ years of experience in gas turbine structural analysis, mechanical integrity, durability, or related aerospace structures work.
  • Strong understanding of low-cycle fatigue, fatigue life, fracture mechanics, strength, and durability principles.
  • Experience using finite element analysis and/or hand calculations to support structural or mechanical design decisions.
  • Working knowledge of CAE tools such as ANSYS Classic, ANSYS Workbench, Siemens Simcenter, Nastran/Patran, ABAQUS, or similar analysis tools.
  • Ability to document analysis plans, assumptions, methods, results, and conclusions in a clear and organized manner.
  • Strong written and verbal communication skills, with the ability to explain technical findings to engineering teams, managers, and customer stakeholders.
  • Ability to work collaboratively in a cross-functional engineering environment.
  • Must be a U.S. Citizen due to the nature of the work.

Preferred Qualifications:

  • Experience supporting gas turbine engine components, aerospace propulsion systems, or rotating machinery.
  • Hands-on experience with geometry cleanup, mesh preparation, model setup, analysis, and post-processing.
  • Proficiency with Siemens Simcenter, Siemens NX, ANSYS Classic, ANSYS Workbench, Nastran/Patran, ABAQUS, HEEDS, or similar tools.
  • Experience evaluating strength, fatigue, durability, low-cycle fatigue, crack growth, or fracture mechanics of metallic components.
  • Familiarity with aerospace materials, manufacturing processes, part standards, and design practices.
  • Ability to translate analysis results into clear technical recommendations, reports, and customer-ready presentations.
  • Experience participating in technical reviews, design reviews, program reviews, or customer-facing engineering discussions.
  • Strong time management skills with the ability to support multiple priorities, meet deadlines, and work effectively in a remote or hybrid team environment.
  • Demonstrated ability to collaborate across engineering disciplines, including design, analysis, manufacturing, program, and customer teams.

The QDSS Advantage:  

At QDSS, our advantage is purpose-driven work, collaborative teams, and complex challenges that push boundaries and build lasting impact. You'll grow your career while contributing to mission-critical programs that demand excellence and shape the future. 

What You'll Find Here 

  • Work That Matters - Next-generation, safety- and mission-critical projects where your contributions have real-world impact. 
  • Growth That's Supported - Competitive compensation, employer-matched 401(k), certification assistance, and clear opportunities for advancement. 
  • A Culture That Works - A flexible, collaborative, and people-first environment where teamwork, innovation, and balance are valued. 

Benefits Include 

  • Competitive pay, comprehensive medical/dental/life and disability coverage, 401(k) with employer match, professional development support, and a flexible, friendly workplace.