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Rotational Engineer Jobs in Michigan (NOW HIRING)

PowerFlow Engineering, Inc. located in Westland, MI is a recognized leader in the Energy Industry for maintenance and engineering of rotating power transfer equipment. We have been in business for ...

Bachelor's degree in engineering * 5+ years of relevant experience ... Experienced in the NVH characterization and fault detection in rotating machinery using microphones ...

This position rotates between sailing as Relief Chief Engineer and Assistant Engineer. Responsible for the safe and efficient operation of all machinery on vessel, including preventative maintenance ...

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Rotational Engineer information

See Michigan salary details

$20.9K

$94.1K

$149.9K

How much do rotational engineer jobs pay per year?

As of May 30, 2026, the average yearly pay for rotational engineer in Michigan is $94,094.00, according to ZipRecruiter salary data. Most workers in this role earn between $72,800.00 and $116,400.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a Rotational Engineer, and why are they important?

To thrive as a Rotational Engineer, you generally need a bachelor's degree in engineering, strong analytical skills, and adaptability to various technical domains. Familiarity with industry-specific software (like AutoCAD, MATLAB, or SAP), project management tools, and sometimes certifications like EIT (Engineer-In-Training) are valued. Strong communication, teamwork, and problem-solving abilities help you excel across diverse assignments and teams. These skills and qualities are crucial for successfully navigating different roles, quickly learning new systems, and contributing effectively to multiple projects.

How does participating in a rotational engineering program help accelerate career development?

Rotational engineering programs are designed to provide early-career engineers with broad exposure to different projects, teams, and technical disciplines within an organization. By rotating through various departments, participants build a diverse skill set, gain a better understanding of the company’s operations, and develop a strong professional network. This experience not only helps identify areas of particular interest but also enhances adaptability and problem-solving abilities, making graduates of the program strong candidates for advancement and specialized roles in the future.

What are Rotational Engineers?

Rotational Engineers are entry-level professionals who participate in structured programs that allow them to work in various departments or roles within an organization over a set period, typically one to two years. These programs are designed to provide broad exposure to different aspects of the business, helping engineers develop a diverse skill set and understand how various teams operate. Rotational Engineers often gain experience in fields such as manufacturing, design, quality, and project management, preparing them for future leadership or specialized roles. The goal is to accelerate professional growth and enable participants to make informed decisions about their long-term career paths.

Can you make $250,000 as an engineer?

Rotational engineers typically earn salaries that vary based on experience, location, and industry, with many earning between $70,000 and $120,000 annually. Reaching a $250,000 salary usually requires senior-level positions, specialized skills, or working in high-paying sectors such as aerospace or oil and gas, often combined with bonuses or profit sharing. Achieving this level may also involve advanced certifications and extensive experience.

What is the difference between Rotational Engineer vs Mechanical Engineer?

AspectRotational EngineerMechanical Engineer
CredentialsBachelor's in Mechanical, Electrical, or related fields; often requires internshipsBachelor's or higher in Mechanical Engineering; licensure may be preferred
Work EnvironmentRotates through different departments or projects within a companyTypically works in design, analysis, or manufacturing departments
Industry UsageCommon in manufacturing, aerospace, and energy sectorsWidespread across various engineering sectors including automotive, aerospace, and industrial
Search & ComparisonOften compared for career development and diverse experienceCompared for specialization and technical expertise

While both roles require a strong engineering background, a Rotational Engineer gains diverse experience by rotating through different departments, whereas a Mechanical Engineer typically specializes in design, analysis, or manufacturing within a specific area. The choice depends on whether you seek broad exposure or technical specialization.

What are the most commonly searched types of Rotational Engineer jobs in Michigan? The most popular types of Rotational Engineer jobs in Michigan are:
What are popular job titles related to Rotational Engineer jobs in Michigan? For Rotational Engineer jobs in Michigan, the most frequently searched job titles are:
What cities in Michigan are hiring for Rotational Engineer jobs? Cities in Michigan with the most Rotational Engineer job openings:
Infographic showing various Rotational Engineer job openings in Michigan as of May 2026, with employment types broken down into 4% Internship, 74% Full Time, 12% Part Time, 4% Temporary, 4% Contract, and 2% Nights. Highlights an 84% Physical, 5% Hybrid, and 11% Remote job distribution, with an average salary of $94,094 per year, or $45.2 per hour.
Design Release Engineer - Non-Rotating Components

Design Release Engineer - Non-Rotating Components

Kratos Defense

Auburn Hills, MI

$38 - $43.50/hr

Full-time

Posted 29 days ago


Kratos Defense & Security Solutions rating

7.4

Company rating: 7.4 out of 10

Based on 7 frontline employees who took The Breakroom Quiz


Job description

Kratos Defense & Security Solutions, Inc., is a leading defense technology company focused on uncrewed systems, satellite communications, cyber security/warfare, microwave electronics, missile defense, training, and combat systems. Our customers include the U.S. federal government, foreign governments, commercial enterprises, and state and local government agencies. At Kratos, we prioritize affordability as a cornerstone of our technology. We leverage proven, cutting-edge methodologies and technology to minimize costs, streamline schedules, and mitigate risks, ensuring timely delivery of cost-effective solutions to market.

GENERAL JOB SUMMARY:

The Non-Rotating Components Design Release Engineer is responsible for ensuring the successful design, development, validation, and release of structural engine components that support propulsion system architecture but do not rotate. This includes engine structures, housings, mounts, frames, brackets, and load-bearing assemblies that interface with rotating machinery, fuel systems, controls, and airframe structures.

This role owns non-rotating component designs from concept through production release, ensuring designs meet structural, thermal, durability, and manufacturability requirements. The engineer ensures that non-rotating hardware is configuration-controlled, technically mature, and ready for manufacturing, assembly, testing, and customer delivery.

The position works closely with Design Engineering, Product Engineering, Systems Engineering, Performance Engineering, Manufacturing Engineering, Test Engineering, and Quality to ensure structural components support engine performance, system integration, and production reliability.

ESSENTIAL JOB FUNCTIONS

Component Design & Development

  • Own the design and development of non-rotating structural propulsion components, including:
    • Engine casings and housings
    • Structural frames and support structures
    • Engine mounts and airframe interfaces
    • Exhaust structures and ducting
    • Fuel system structures and brackets
    • External engine structures and covers
  • Support Design Engineering in the development of 3D CAD models and detailed engineering drawings
  • Define component best practices based on customer flow down requirements and internal methodologies as they relate to geometry, tolerances, and interface requirements
  • Apply continuous improvement methods to refine component design (design best practices based on learnings) and processes
  • Ensure designs meet structural load, thermal, vibration, and durability requirements

Design Release & Configuration Control

  • Ensure engineering drawings, models, and specifications are released in accordance with configuration management standards
  • Maintain design documentation including:
    • Engineering drawings
    • Bills of material (BOM)
    • Design calculations
    • Interface documentation
    • Technical Specification
  • Own Engineering Change Requests (ECR) and Engineering Change Notices (ECN)
  • Ensure designs are configuration-controlled within PLM/PDM systems
  • Manage and present component status & schedule during internal reviews relative Process of Engineering milestones (Change Control Boards, Issues Resolution Board, Gate Reviews)

Structural Analysis & Validation

  • Perform/Coordinate structural analysis for non-rotating components including:
    • Static structural analysis
    • Thermal stress considerations
    • Vibration and load path analysis
    • Mount and structural interface loads and fatigue life
  • Work with CAE/FEA engineers to validate structural integrity and durability

Design for Manufacturing & Assembly

  • Partner with Manufacturing Engineering to ensure structural components are manufacturable and producible
  • Support design reviews related to fabrication, machining, welding, and assembly
  • Ensure tolerances, joints, and interfaces support efficient assembly and serviceability
  • Support production readiness reviews and first article inspections
  • Support on-site supplier audits

System Integration & Interface Management

  • Ensure structural components properly support system interfaces including:
    • Rotating assemblies
    • Fuel systems
    • Engine controls
    • Electrical harnessing
    • Exhaust and thermal systems
    • Airframe mounting interfaces
  • Coordinate closely with Systems Engineering and Integration Engineering to maintain interface compatibility

Test & Validation Support

  • Support development, structural, and system-level testing activities
  • Evaluate test data to validate structural component performance
  • Support troubleshooting and failure analysis of hardware
  • Provide engineering support during development and production testing

Root Cause Analysis & Continuous Improvement

  • Participate in post-test design reviews and own the execution of root cause investigations related to component performance or failures
  • Support corrective actions and design improvements
  • Capture lessons learned to improve component design robustness and manufacturability

Cross-Functional Engineering Collaboration

  • Collaborate with:
    • Design Engineering
    • Product Engineering
    • Systems Engineering
    • Performance Engineering
    • Manufacturing Engineering
    • Test Engineering
    • Quality Engineering
  • Support design reviews, interface reviews, and risk assessments
  • Communicate design intent and technical requirements to cross-functional teams

SUPERVISORY RESPONSIBILITY

  • No direct supervisory responsibility
  • May provide technical guidance to junior engineers or technicians

KNOWLEDGE, SKILLS & ABILITIES

Required

  • Strong understanding of structural mechanical design
  • Knowledge of load paths, stress analysis, structural durability and thermal effects
  • Ability to interpret and create engineering drawings with GD&T
  • Proficiency with CAD software (SolidWorks preferred)
  • Strong analytical and problem-solving skills
  • Ability to collaborate across multidisciplinary engineering teams
  • Ability to manage confidential and export-controlled information (ITAR)

Preferred

  • Experience designing aerospace engine structures or propulsion hardware
  • Familiarity with structural FEA tools
  • Experience with welded or fabricated structural assemblies
  • Experience in AS9100-regulated environments

EDUCATION AND EXPERIENCE

Required

  • Bachelor's degree in Mechanical Engineering, Aerospace Engineering, or related discipline
  • 3-8 years of experience in mechanical design or structural engineering

Preferred

  • Experience with propulsion systems or aerospace structures
  • Experience supporting development and production programs

WORK ENVIRONMENT / PHYSICAL REQUIREMENTS

  • Office, laboratory, and manufacturing environments
  • Interaction with production hardware and test equipment
  • Ability to work in manufacturing areas and test facilities
  • May be required to lift materials or components up to 50 lbs

TRAVEL REQUIREMENTS

  • 0-15% as required to support supplier visits, testing, or program activities

THE ABOVE STATEMENTS ARE INTENDED TO DESCRIBE THE GENERAL NATURE AND LEVEL OF WORK BEING PERFORMED BY INDIVIDUALS ASSIGNED TO THIS CLASSIFICATION. THEY ARE NOT INTENDED TO BE CONSTRUED AS AN EXHAUSTIVE LIST OF ALL RESPONSIBILITIES, DUTIES AND SKILLS REQUIRED OF PERSONNEL SO CLASSIFIED.

A REVIEW OF THIS CLASSIFICATION HAS EXCLUDED THE MARGINAL FUNCTIONS OF THE CLASSIFICATION THAT ARE INCIDENTAL TO THE PERFORMANCE OF FUNDAMENTAL JOB JUTIES. ALL DUTIES AND RESPONSIBILITIES ARE ESSENTIAL JOB FUNCTIONS AND REQUIREMENTS AND ARE SUBJECT TO POSSIBLE MODIFICATION TO REASONABLY ACCOMMODATE INDIVIDUALS WITH DISABILITIES TO PERFORM THIS JOB PROFICIENTLY. THE REQUIREMENTS LISTED IN THIS DOCUMENT ARE THE MINIMUM LEVELS OF KNOWLEDGE, SKILLS OR ABILITIES.

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