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Aerospace Mechanical Engineering Internship Jobs in Rochester, MN

Product Engineer I

Rochester, MN · On-site

$71K - $89K/yr

... aerospace, defense, advanced computing, next-generation communications, complex industrials ... Industrial, Manufacturing, and Mechanical Engineering preferred. Geographical Location: Minnesota:

CNC Milling Machinist

Rochester, MN · On-site

$30 - $42/hr

Horizontal Machining Centers - programming and running horizontal mills to tight tolerances ... mechanical aptitude. * Proficient on manual and CNC mills and lathes, including hand filing and ...

CNC Milling Machinist

Rochester, MN · On-site

$30 - $42/hr

Horizontal Machining Centers - programming and running horizontal mills to tight tolerances ... mechanical aptitude. * Proficient on manual and CNC mills and lathes, including hand filing and ...

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Aerospace Mechanical Engineering Internship information

See Rochester, MN salary details

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How much do aerospace mechanical engineering internship jobs pay per hour?

As of Aug 23, 2026, the average hourly pay for aerospace mechanical engineering internship in Rochester, MN is $22.24, according to ZipRecruiter salary data. Most workers in this role earn between $18.32 and $24.66 per hour, depending on experience, location, and employer.

What is an aerospace mechanical engineering internship?

An Aerospace Mechanical Engineering Internship is a temporary position for students or recent graduates to gain hands-on experience in the aerospace industry, focusing on mechanical engineering principles. Interns typically work on projects related to aircraft or spacecraft design, testing, analysis, and manufacturing. This internship allows individuals to apply classroom knowledge to real-world challenges, develop technical and professional skills, and network with industry professionals. It often serves as a stepping stone to full-time roles in aerospace engineering after graduation.

What kinds of projects or tasks can I expect to work on during an aerospace mechanical engineering internship?

As an Aerospace Mechanical Engineering intern, you can expect to work on a variety of hands-on and analytical projects such as assisting with the design and testing of aircraft components, supporting the integration and analysis of mechanical systems, and participating in team meetings to review project progress. Interns often use engineering software to create models, run simulations, and help troubleshoot engineering challenges alongside experienced engineers. You may also be involved in preparing technical documentation or reports and collaborating with cross-disciplinary teams, providing exposure to real-world aerospace projects and industry-standard practices.

What are the key skills and qualifications needed to thrive as an aerospace mechanical engineering intern, and why are they important?

To thrive as an Aerospace Mechanical Engineering Intern, you typically need a solid grasp of mechanical engineering fundamentals, coursework in aerospace concepts, and progress toward a relevant bachelor's degree. Familiarity with CAD software (such as SolidWorks or CATIA), finite element analysis tools, and basic programming (like MATLAB) is highly valued. Strong problem-solving abilities, teamwork, and clear communication help interns contribute effectively to complex projects. These skills ensure interns can support engineering teams, learn quickly, and add value to fast-paced aerospace environments.

What cities near Rochester, MN are hiring for Aerospace Mechanical Engineering Internship jobs?

Cities near Rochester, MN with the most Aerospace Mechanical Engineering Internship job openings:

Mechanical Engineer - Product Design & Development (Entry Level)

Valley Craft Industries Inc

Lake City, MN

$60K - $65K/yr

Full-time

Posted 23 days ago


Job description

Description

Valley Craft is seeking an entry-level Mechanical Engineer to support the design, development, and production of material handling, storage, and safety related products. This role is ideal for a hands-on engineer early in their career who wants exposure to real production hardware, manufacturing support, and product lifecycle ownership. The position emphasizes practical engineering execution, collaboration with manufacturing, and continuous product improvement.

Requirements

Key Responsibilities: 


Product Design & Engineering Execution

  • Design and engineer new products and custom solutions
  • Support existing product designs through design updates, documentation changes, and production support
  • Assist with engineering change requests (ECRs/ECOs) and implementation into production
  • Help diagnose production, quality, or field issues and support corrective actions.


CAD, BOM, and Documentation

  • Create and update 3D models, drawings, and BOMs using SolidWorks
  • Apply company drawing standards, tolerances, weld symbols, and basic GD&T
  • Maintain accurate part data, revisions, and metadata in PDM and MRP systems

Manufacturing & Shop Collaboration

  • Work closely with fabrication, welding, assembly, and quality teams to ensure designs are manufacturable and buildable
  • Support fixture design and basic prototyping as needed
  • Identify potential pinch points, cut hazards, or ergonomic concerns early and help implement improvements

Continuous Improvement

  • Participate in root-cause analysis and problem-solving efforts

Qualifications Required:

  • Bachelor's degree in Mechanical Engineering or related discipline
  • Familiarity with SolidWorks or similar 3D CAD software
  • Basic understanding of manufacturing processes (welding, machining, sheet metal, fabrication)
  • Strong attention to detail and willingness to learn
  • Good written and verbal communication skills

Qualifications Preferred

  • Internship, co-op, or hands-on experience in a manufacturing or fabrication environment
  • Exposure to lift products, material-handling equipment, or industrial machinery
  • Familiarity with BOMs, revision control, and engineering documentation

Key Attributes for Success

  • Hands-On Mindset: Interested in how products are built, not just designed.
  • Team-Oriented: Works well with manufacturing, quality, and procurement partners.
  • Adaptable: Comfortable handling shifting priorities in a production environment.
  • Detail-Focused: Understands that accurate documentation prevents downstream issues.
  • Growth-Oriented: Eager to build engineering judgment through real-world experience.