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Fea Engineer Jobs in Toronto, ON (NOW HIRING)

About the Role Report to the Engineering Manager, the Mechanical Engineer is responsible for ... FEA analysis methodology with capability to review FEA design report, interpret results, and ...

About the Role Report to the Engineering Manager, the Mechanical Engineer is responsible for ... Familiar with FEA analysis methodology with capability to review FEA design report, interpret ...

We deliver engineered solutions that enhance operational awareness, safety, reliability and ... FEA analysis methodology with capability to review FEA design report, interpret results, and ...

Develop concepts, detailed 3D CAD models, engineering calculations, FEA simulations, prototypes, and manufacturing-ready designs. * Plan and execute prototype validation, laboratory testing, and ...

Develop concepts, detailed 3D CAD models, engineering calculations, FEA simulations, prototypes, and manufacturing-ready designs. * Plan and execute prototype validation, laboratory testing, and ...

Guide Dana's global CAE teams to apply thermal-fluid models, including CFD and thermal FEA, to evaluate concepts and guide engineering decisions. * Participate in the design, fabrication and ...

Mechanical Engineer III

Mississauga, ON · On-site

CA$90K - CA$100K/yr

... FEA). * Ability to interact with, maintain, and update ERP system data related to engineering ... processes. * Familiarity with industry standards (e.g., IEEE, IEC, CSA) and regulatory requirements ...

Mechanical Engineer II

Mississauga, ON · On-site

CA$85K - CA$95K/yr

Your mandate as a Mechanical Engineer: As a Mechanical Design Engineer, you will assist in the ... FEA). * Familiarity with industry standards (e.g., IEEE, UL, IEC, CSA) and regulatory requirements ...

Mechanical Engineer Concord, ON | Full-Time Opportunities Looking for Your Next Engineering ... Finite Element Analysis (FEA) * BOM Management * Product Validation * Continuous Improvement * Lean ...

Familiarity with FEA and stress analysis. Prior exposure to integrated solutions and engineered-to-order manufacturing processes. Why join Weir? We live our values we think safety first, do the right ...

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Fea Engineer information

What are the key skills and qualifications needed to thrive as an FEA engineer?

To thrive as a FEA (Finite Element Analysis) Engineer, you need a strong background in mechanical or structural engineering, proficiency in mathematical modeling, and typically a bachelor's or master's degree in a related field. Mastery of FEA software tools such as ANSYS, Abaqus, or NASTRAN, and relevant certifications, are commonly required. Strong analytical thinking, problem-solving abilities, and clear communication skills help you interpret data and collaborate effectively with multidisciplinary teams. These skills are essential to ensure accurate simulations, optimize product designs, and contribute to successful engineering projects.

What does an FEA engineer do?

As a FEA Engineer, your daily tasks often include developing finite element models, running simulations to predict product behavior under various conditions, and analyzing the results to identify potential design improvements or weaknesses. You will collaborate closely with design, manufacturing, and test teams to ensure simulation results align with real-world performance and project requirements. You may also be responsible for documenting your findings, presenting recommendations, and refining models based on new data or project needs. This role provides opportunities to impact product safety, reliability, and efficiency through your technical expertise.

What is an FEA engineer?

An FEA (Finite Element Analysis) Engineer is responsible for using computer simulations to analyze the structural, thermal, and fluid dynamics behavior of products or components. They use FEA software like ANSYS, Abaqus, or NASTRAN to predict stresses, deformations, and failures in materials under various conditions. FEA Engineers work in industries such as automotive, aerospace, and manufacturing to optimize designs, improve product reliability, and reduce costs. Their role involves interpreting results, validating simulations with physical tests, and collaborating with design teams to enhance product performance.

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What job categories do people searching Fea Engineer jobs in Toronto, ON look for? The top searched job categories for Fea Engineer jobs in Toronto, ON are:
Infographic showing various Fea Engineer job openings in Toronto, ON as of August 2026, with employment types broken down into 92% Full Time, 2% Part Time, and 6% Contract. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution.

Full-time

Posted 12 days ago


Job description

Job Description (Detailed)

We are seeking an experienced Lead Stress Engineer / Project Coordinator to support aerostructures engineering activities for an aerospace program based in the Mississauga/Toronto area.

The selected candidate will lead technical stress-analysis activities while coordinating engineering deliverables between customer stakeholders and offshore engineering teams. The role requires strong expertise in aircraft structural analysis, design validation, project coordination, and customer communication.

The ideal candidate should possess extensive experience in:

  • Classical/hand stress analysis
  • Finite Element Analysis (FEA)
  • Aircraft primary and secondary structures
  • Structural substantiation
  • Design modifications
  • Strength evaluations
  • Stress report preparation
  • Design validation

Candidates should also be capable of leading technical discussions, tracking project activities, coordinating engineering teams, and ensuring timely delivery of project milestones.

Experience with commercial or business aircraft programs and Aircraft OEM environments is highly preferred.

Screening Requirements

Please confirm the following during screening:

  1. Minimum 10 years of aerostructures experience.
  2. Hands-on classical/hand stress-analysis expertise.
  3. FEA tools used and ability to interpret results.
  4. Experience with aircraft primary and secondary structures.
  5. OEM and certification experience.
  6. Structural substantiation, modifications, strength evaluation, and stress-report experience.

Technical leadership and coordination of onsite/offshore engineering teams