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Mechanical Integrity Engineer Jobs in Florida (NOW HIRING)

Fixed Equipment Reliability Engineer

Panama City, FL · On-site

$91K - $115K/yr

The Fixed Equipment Reliability Engineer is responsible for the fixed equipment mechanical integrity program of the plant for fixed equipment - including process piping, tanks, pressure vessels, heat ...

Fixed Equipment Reliability Engineer

Panama City, FL · On-site

$91K - $115K/yr

The Fixed Equipment Reliability Engineer is responsible for the fixed equipment mechanical integrity program of the plant for fixed equipment - including process piping, tanks, pressure vessels, heat ...

Engineer, Reliability (Mechanical)

White Springs, FL · On-site

$75K - $100K/yr

Engineer, Reliability (Mechanical) Requisition ID: 28930 Location: White Springs, FL, USA, 32096 ... We're guided by our culture of care and our core values: safety, inclusion, integrity, and results.

Aon - Energy Risk Engineer- Remote US ! Location: Flexible / Remote with travel - Preference for ... mechanical integrity, and business interruption exposures. - Assess process safety, asset integrity ...

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Showing results 1-20

Mechanical Integrity Engineer information

See Florida salary details

$81.8K

$102.3K

$141.6K

How much do mechanical integrity engineer jobs pay per year?

As of Aug 11, 2026, the average yearly pay for mechanical integrity engineer in Florida is $102,285.00, according to ZipRecruiter salary data. Most workers in this role earn between $89,700.00 and $111,000.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a mechanical integrity engineer?

A Mechanical Integrity Engineer should possess a strong background in mechanical engineering principles, experience with codes and standards (such as API 510/570/653), and typically hold a relevant engineering degree. Familiarity with inspection methods, integrity management software, reliability tools, and certifications like API or NDT credentials is highly valued in the industry. Excellent problem-solving skills, attention to detail, and the ability to communicate findings clearly are vital soft skills for this role. These capabilities ensure safe, compliant plant operations and help prevent costly failures through proactive asset management.

What is a mechanical integrity engineer?

A Mechanical Integrity Engineer ensures the safety, reliability, and compliance of equipment and structures in industrial settings. They inspect, evaluate, and maintain pressure vessels, pipelines, tanks, and other mechanical systems to prevent failures and meet regulatory requirements. Their role involves risk assessments, implementing inspection programs, and recommending repairs or design improvements. Industries such as oil and gas, chemical processing, and manufacturing rely on these engineers to prevent accidents and optimize asset performance.

What does a mechanical integrity engineer do?

A mechanical integrity engineer is responsible for ensuring the safety, reliability, and compliance of mechanical systems and equipment. They perform inspections, analyze failure data, develop maintenance strategies, and use tools like nondestructive testing and risk assessments to prevent equipment failures and ensure operational integrity.

What types of industries and facilities do mechanical integrity engineers typically work in, and how does this impact their daily responsibilities?

Mechanical Integrity Engineers are commonly employed in industries such as oil and gas, chemical processing, power generation, and manufacturing, where asset reliability and safety are critical. Their daily work often involves inspecting equipment, reviewing maintenance records, conducting risk assessments, and ensuring compliance with regulatory standards. The specific environment—refinery, chemical plant, or industrial facility—can influence the types of equipment inspected and the focus areas for integrity management. Collaboration with maintenance, operations, and health and safety teams is a key aspect of the job, ensuring that recommendations are practical and aligned with overall facility goals. This interdisciplinary nature keeps the work dynamic and offers varied opportunities for technical and managerial career advancement.

What cities in Florida are hiring for Mechanical Integrity Engineer jobs? Cities in Florida with the most Mechanical Integrity Engineer job openings:
Infographic showing various Mechanical Integrity Engineer job openings in Florida as of August 2026, with employment types broken down into 1% As Needed, 82% Full Time, 15% Part Time, and 2% Contract. Highlights an 93% Physical, 3% Hybrid, and 4% Remote job distribution, with an average salary of $102,285 per year, or $49.2 per hour.

Mechanical Integrity Engineer

Power Systems Mfg., LLC

Jupiter, FL • On-site

Full-time

Re-posted 15 days ago


Job description

POSITION: Mechanical Integrity Engineer, Combustion
LOCATION: Jupiter, FL
STATUS: Salary-Exempt

JOB SUMMARY

The Mechanical Integrity position will support development and implementation of combustor system upgrades. This position is in a fast-paced, technical environment working on diverse projects across several different industrial gas turbine frames. This is a technical leadership position requiring functional authority in the structures and lifing discipline with advanced level of knowledge in at least one specialty area. Must lead and direct technical teams to support overall program goals as well as mentor junior engineers. Expected to work independently and take responsibility for all direct and indirect aspects of their work to set an example for the team in successfully meeting deliverables of the project

ESSENTIAL DUTIES AND RESPONSIBILITIES

The essential functions of the job include, but are not limited to, the following:

  • Provide timely analytical solutions to verify mechanical configurations on combustion equipment. Work with design engineers to develop improvements to turbine components.
  • Understand finite element boundary conditioning on static, vibratory, and thermal analyses for both elastic and inelastic solutions
  • Ability to link thermal, mechanical and vibratory finite element solutions to produce life calculations (low cycle fatigue, thermal mechanical fatigue, high cycle fatigue).
  • Develop life algorithms for LCF, HCF, and TMF predictions on combustion system components.
  • Assist performance of high pressure rig tests and engine field validation of systems designed and developed at PSM. Support commercial installation and operation of systems developed.
  • Support the continued development and oversee the adherence to PSM design systems including job folders and documentation, technical reviews, drawings and engineering changes and field validation plans and verification.
  • Analyze components to ensure parts maintain appropriate stress levels, meets life requirements and design criteria.
  • Utilize appropriate design/analysis tools, such as ProEngineer, ANSYS, Microsoft Excel or similar.
  • Lead or support scheduling, project engineering and supplier issues and procurement efforts to ensure timely delivery of components to meet program and company objectives.
  • Project ownership and leadership of technical team to achieve success
  • Assess needs and identify critical path schedules for design, manufacturing and procurement activities as well as development of structures best practices into “rules and tools”
  • Create, lead and/or deliver presentations to internal and external clients.
  • Other duties as assigned

MINIMUM REQUIREMENTS

Education & Training

  • Bachelor’s Degree in Mechanical, Aeronautical, or Civil Engineering. An advanced degree is preferred.
  • Equivalent industry experience will also be considered
  • Must complete EHS assigned regulatory training for work area as described by PSM’s EHS Training Matrix

Skills/Experience

  • Minimum of 5 years of experience with Ansys and Ansys workbench
  • Minimum of 5 years’ experience with structural analysis and life prediction
  • Minimum 2 years of gas turbine experience, Familiarity with E/F class IGT is a plus and preferably in combustion
  • Strong analytical decision-making and organizational skills are required
  • Experience with 3D CAD software – Creo, NX, Solidworks
  • Knowledge of various manufacturing processes, general machining and fabrication techniques
  • Strong verbal and written communication and interpersonal skills are required
  • Strong skills with MS Office programs. Project, Excel, Word, PowerPoint, etc.
  • Ability to perform hands-on fieldwork is strongly desired
  • Field work and travel may be required (up to 20%)
  • Demonstrated coaching and mentoring skills, including ability to motivate and influence others.

Equal Opportunity Employer Veterans/Disabled