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Gear Design Engineer Jobs in Ohio (NOW HIRING)

Operate gear production equipment and perform tooling change overs. Collect data and analyze gear ... Interface with the CAD department in order to create assembly prints. Assist in managing the ...

Senior Project Engineer

Dayton, OH ยท On-site

$96K - $125K/yr

Reviews product design for compliance with engineering principles, company standards, customer ... gear motors, electric motors and drives a plus. * Excellent project management skills w/ strong ...

The Mechanical Engineer is responsible for drafting/design function for the development of new and ... The employee will occasionally be required to walk through the warehouse while wearing safety gear ...

The Mechanical Engineer is responsible for drafting/design function for the development of new and ... The employee will occasionally be required to walk through the warehouse while wearing safety gear ...

Showing results 41-60

Gear Design Engineer information

See Ohio salary details

$25.1K

$86.4K

$140.8K

How much do gear design engineer jobs pay per year?

As of Aug 8, 2026, the average yearly pay for gear design engineer in Ohio is $86,364.00, according to ZipRecruiter salary data. Most workers in this role earn between $65,359.00 and $104,209.00 per year, depending on experience, location, and employer.

What does a gear design engineer do?

A Gear Design Engineer is responsible for developing and designing geared assemblies for various industrial purposes, sometimes including military applications. Gear Design Engineers analyze gear and spline designs to meet performance requirements, as well as other features that are essential to gearbox functionality, such as fluids, fasteners, bearings, and seals. Gear Design Engineers work to design, develop, and manufacture new and existing gear systems to help power vehicles and machines. They often meet customer specifications to create products designed precisely for clients' needs. Gear Design Engineers must be able to work both collaboratively and individually in order to complete their tasks.

What are the key skills and qualifications needed to thrive as a gear design engineer, and why are they important?

To thrive as a Gear Design Engineer, you need a solid background in mechanical engineering principles, gear geometry, and materials science, typically supported by a relevant engineering degree. Proficiency in CAD software (such as SolidWorks or CATIA), gear analysis tools, and familiarity with industry standards like AGMA is essential. Attention to detail, strong problem-solving skills, and effective teamwork are critical soft skills in this role. These abilities ensure the development of reliable, efficient gear systems that meet technical requirements and industry standards.

What does a gear design engineer do?

A Gear Design Engineer specializes in designing gears and gear systems used in various machines and mechanical devices. Their responsibilities include selecting appropriate materials, calculating gear sizes and ratios, creating technical drawings, and ensuring the gears meet performance and safety standards. They often use computer-aided design (CAD) software and work closely with manufacturing and testing teams to bring their designs to production. Gear Design Engineers play a critical role in industries such as automotive, aerospace, and industrial machinery.

What is the difference between Gear Design Engineer vs Mechanical Design Engineer?

AspectGear Design EngineerMechanical Design Engineer
Primary FocusDesigning gears and gear systemsDesigning various mechanical components and systems
Required SkillsGear mechanics, CAD, materialsBroad mechanical engineering skills, CAD, materials
Work EnvironmentManufacturing, automotive, aerospaceMultiple industries including manufacturing, robotics, automotive
CertificationsOptional specialized certifications in gear designProfessional Engineer (PE) license often beneficial

While both roles involve mechanical design and CAD skills, Gear Design Engineers specialize in gear systems, whereas Mechanical Design Engineers work on a broader range of mechanical components across various industries.

What are some common challenges gear design engineers face when working on new projects?

Gear Design Engineers often encounter challenges such as balancing performance requirements with manufacturing constraints, ensuring proper gear meshing to minimize noise and vibration, and meeting tight project deadlines. Collaboration with manufacturing, quality assurance, and testing teams is essential to address issues like material selection and tolerance control. Staying updated with the latest design software and industry standards also helps engineers deliver innovative and reliable gear solutions.
What are the most commonly searched types of Gear Design Engineer jobs in Ohio? The most popular types of Gear Design Engineer jobs in Ohio are:
Infographic showing various Gear Design Engineer job openings in Ohio as of July 2026, with employment types broken down into 86% Full Time, 11% Part Time, and 3% Contract. Highlights an 88% Physical, 3% Hybrid, and 9% Remote job distribution, with an average salary of $86,364 per year, or $41.5 per hour.

Application Engineer, Gearbox Repair

Brightpath Associates LLC

Cleveland, OH โ€ข On-site

Other

This job post hasย expired 1 day ago.ย Applications are no longer accepted.


Job description

Job Description:

Seeking for an experienced Gearbox Repair Application Engineer to serve as the primary technical liaison between our customers and our repair organization. In this role, you will evaluate industrial gearbox repair opportunities from initial customer inquiry through quotation, engineering, project execution, and final delivery.

This position combines engineering expertise, commercial awareness, and project coordination to develop technically sound, cost-effective repair solutions that maximize equipment reliability while meeting customer expectations, quality standards, and business objectives.

The ideal candidate will have a strong background in industrial gearing, bearings, lubrication systems, rotating equipment, and repair methodologies, along with excellent problem-solving and customer communication skills.


Key Responsibilities

Customer Technical Support

  • Serve as the primary technical contact for industrial gearbox repair opportunities.
  • Review customer requirements, equipment history, operating conditions, and failure information.
  • Participate in customer meetings, conference calls, and onsite equipment inspections.
  • Recommend repair versus replacement solutions based on technical and commercial considerations.
  • Support emergency breakdowns, planned outages, and critical customer service needs.

Repair Evaluation

  • Evaluate industrial gearboxes, gear drives, speed reducers, and other rotating equipment.
  • Review inspection reports, disassembly findings, dimensional inspections, and non-destructive testing (NDT) results.
  • Analyze gears, shafts, bearings, housings, lubrication systems, seals, and couplings.
  • Develop repair scopes based on AGMA standards, OEM specifications, and repair procedures.
  • Identify opportunities to improve equipment reliability and extend service life through upgrades or design enhancements.

Failure Analysis

  • Conduct root cause investigations for gearbox and rotating equipment failures.
  • Analyze wear patterns, lubrication issues, bearing failures, gear damage, alignment conditions, and installation practices.
  • Prepare technical reports documenting findings and corrective recommendations.
  • Support warranty investigations and continuous improvement initiatives.

Proposal Development & Estimating

  • Develop comprehensive repair scopes of work.
  • Prepare labor estimates, material requirements, subcontracted services, and purchased component costs.
  • Coordinate with Purchasing, Engineering, Manufacturing, and Sales to ensure accurate, competitive quotations.
  • Review delivery schedules, commercial risks, and technical exceptions.
  • Support customer presentations and technical proposal reviews.

Engineering & Project Coordination

  • Collaborate with Repair Engineering to develop repair drawings, manufacturing documentation, and work instructions.
  • Coordinate reverse engineering efforts when original drawings are unavailable.
  • Review engineering documentation for technical accuracy and compliance.
  • Ensure repair plans meet customer specifications and quality standards.

Project Execution Support

  • Support repair projects from order entry through shipment.
  • Participate in project kickoff meetings.
  • Resolve technical issues during manufacturing, machining, and assembly.
  • Review engineering deviations and recommend corrective actions.
  • Support customer witness testing, final inspections, and equipment acceptance.


Qualifications

Education

  • B.A. in Mechanical Engineering or BSMET or a related engineering discipline preferred.
  • Equivalent industry experience will be considered.

Experience

  • Five (5) to ten (10) + years of experience in power transmission, industrial gearing, rotating equipment, or heavy machinery.
  • Experience supporting industrial gearbox repair or repair engineering is preferred.
  • Experience serving customers within the steel, mining, cement, power generation, marine, pulp and paper, or other heavy industrial markets is highly desirable.

Technical Knowledge

Successful candidates should possess knowledge in many of the following areas:

  • Industrial gearboxes and gear drives.
  • Ability to produce a detailed customer repair quote
  • AGMA standards and gearing principles.
  • Bearings and bearing failure analysis.
  • Lubrication systems and lubrication failure mechanisms.
  • Mechanical power transmission.
  • Rotating equipment.
  • Reverse engineering.
  • Root cause failure analysis (RCFA).
  • Precision measurement and inspection techniques.
  • Manufacturing and machining processes.
  • Welding and repair methodologies.
  • Quality systems and continuous improvement.

Core Competencies

  • Technical problem solving and analytical thinking.
  • Root cause analysis.
  • Customer relationship management.
  • Cost estimating and commercial awareness.
  • Project coordination.
  • Strong written and verbal communication.
  • Organization and time management.
  • Decision making and sound engineering judgment.
  • Cross-functional collaboration.