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Internship Additive Manufacturing Engineer Jobs in Florida

Senior Thermal Engineer

Rockledge, FL ยท On-site

$92K - $122K/yr

Position Summary We are looking for motivated thermal engineers to develop cutting-edge products ... additive manufacturing, membrane enhanced cooling, oscillating heat pipes. This position includes ...

Senior Thermal Engineer

Rockledge, FL ยท On-site

$92K - $127K/yr

... additive manufacturing, membrane enhanced cooling, oscillating heat pipes. This position includes ... Engineering Corporation is an equal opportunity employer. Qualified candidates will be considered ...

Senior Thermal Engineer

Rockledge, FL ยท On-site

$92K - $122K/yr

Position Summary We are looking for motivated thermal engineers to develop cutting-edge products ... additive manufacturing, membrane enhanced cooling, oscillating heat pipes. This position includes ...

Showing results 41-60

Internship Additive Manufacturing Engineer information

What does an internship additive manufacturing engineer do?

An Internship Additive Manufacturing Engineer assists in designing, testing, and producing parts using 3D printing and other additive manufacturing technologies. They work under the guidance of experienced engineers to support product development, optimize printing processes, and ensure quality standards are met. Interns often help with CAD modeling, machine setup, post-processing, and documentation. This role provides hands-on experience in advanced manufacturing and exposure to cutting-edge technology in the engineering field.

What types of projects can an internship additive manufacturing engineer expect to work on during their internship?

As an Internship Additive Manufacturing Engineer, you can expect to be involved in hands-on projects such as designing and prototyping components using 3D printing technologies, optimizing print parameters for different materials, and assisting in the post-processing and quality testing of printed parts. You'll often collaborate with engineers from design, materials, and production teams to ensure that prototypes meet functional requirements. This role offers valuable exposure to the entire additive manufacturing workflow, from concept to finished product, and provides opportunities to learn industry-standard software and equipment.

What is the difference between Internship Additive Manufacturing Engineer vs Mechanical Engineering Intern?

AspectInternship Additive Manufacturing EngineerMechanical Engineering Intern
Required CredentialsEnrolled in or recent graduate of engineering or related program, familiarity with additive manufacturingEnrolled in or recent graduate of mechanical engineering or related program
Work EnvironmentManufacturing labs, R&D facilities, design teams focused on additive processesDesign offices, labs, manufacturing settings across various engineering projects
Industry UsagePrimarily in aerospace, automotive, healthcare, and manufacturing sectors using additive techBroadly across engineering sectors including automotive, aerospace, energy, and consumer products

While both roles involve engineering fundamentals, the Internship Additive Manufacturing Engineer focuses on additive manufacturing technologies, whereas the Mechanical Engineering Intern has a broader scope in mechanical design and analysis. The additive manufacturing internship emphasizes skills in 3D printing processes, materials, and prototyping, making it more specialized within manufacturing sectors.

What are the key skills and qualifications needed to thrive as an internship additive manufacturing engineer, and why are they important?

To thrive as an Internship Additive Manufacturing Engineer, you need a foundational understanding of engineering principles, CAD design, and materials science, often supported by coursework in mechanical or industrial engineering. Familiarity with 3D modeling software like SolidWorks or AutoCAD, and hands-on experience with additive manufacturing equipment such as 3D printers, are typically required. Strong problem-solving skills, attention to detail, and effective teamwork set standout candidates apart. These skills ensure precise prototyping, efficient collaboration, and innovative solutions in a rapidly evolving manufacturing environment.
What are the most commonly searched types of Additive Manufacturing Engineer jobs in Florida? The most popular types of Additive Manufacturing Engineer jobs in Florida are:
What cities in Florida are hiring for Internship Additive Manufacturing Engineer jobs? Cities in Florida with the most Internship Additive Manufacturing Engineer job openings:
Infographic showing various Internship Additive Manufacturing Engineer job openings in Florida as of August 2026, with employment types broken down into 11% Internship, 78% Full Time, and 11% Contract. Highlights an 100% In-person job distribution.

Assembly Manufacturing Engineer

Helios Hydraulics America's

Sarasota, FL โ€ข On-site

Other

Re-posted 28 days ago


Job description

Job Summary:
The Assembly Manufacturing Engineer will oversee and optimize manufacturing processes within our Assembly operation. This role involves applying insights from product design, fabrication, tooling, and materials, collaborating with equipment vendors, and gathering feedback from operators. The engineer will be responsible for both manual and automated assembly operations, driving process improvements consistently. A key aspect of this position is a strong commitment to continuous improvement on an annual basis.
Supervisory Responsibilities:
  • No direct reports. Will be expected to be a mentor to manufacturing engineers and interns working in the Assembly focused factory.

Duties/Responsibilities:
  • Manage medium and large assembly machine projects through full implementation including capital appropriations
  • Ability to ensure availability and capability of shop floor assembly equipment including automation
  • Understand where producibility issues lie, based on data and is able to communicate and lead the cross functional team to solve the most common issues, using processes like six sigma or 8D.
  • Analyze and plans work force utilization, space requirements, and workflow. Designs layout of equipment and workspace for maximum efficiency
  • Estimate production times, staffing requirements, and related costs to provide information for management decisions
  • Communicate manufacturing capabilities, production schedules, or other information to facilitate production processes
  • Defining, redefining, and developing workflows based on capacity and efficiency needs
  • Creating assembly tooling designs utilizing Autodesk software
  • Evaluates products based on specifications and quality standards
  • Participate on multifunctional PFMEA (Potential Failure Mode and Effects Analysis) teams

Required Skills/Abilities:
  • Strong project management skills, including ability to manage several large projects at once
  • Strong problem-solving skills including the determination of root cause and implementing and controlling solutions.
  • Strong ability to present technical information
  • Strong conceptual skills
  • Superior quality focus
  • Strong technical ability - experience working with automated equipment (Robots, HMI, and PLC controls) is a plus
  • Self-driven, positive attitude and team player
  • Demonstrates strong communication skills
  • Willingness to learn all aspects described above by way of on-the-job training

Education and Experience:
  • BSME/BSMET required
  • 5+ years' experience in a manufacturing environment
  • Experience in a high mix/low volume and low mix/high volume manufacturing required
  • Process development, control and improvement experience required
  • Strong understanding of GD&T and working in tight tolerances (.0001)
  • 3-5 years of practical Kaizen experience preferred
  • Practical Six Sigma experience preferred
  • Experience with controls, including proficiency in ladder logic, structured text, and programming input/output (I/O) is a plus
  • Superior computer skills, with experience in Autodesk 3-D design software a plus

Physical Requirements:
The characteristics listed below are representative of the physical demands required by an individual to successfully perform the essential duties of this position. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential duties.
  • While performing the duties of this job, the employee is regularly required to stand, walk, and sit; use hands to finger, handle, or feel; and reach with hands and arms
  • Ability to lift up to 50lbs
  • The employee is frequently required to talk and/or hear
  • Specific vision abilities required by this job include close vision, color vision, depth perception, and ability to adjust focus

Work Environment:
The characteristics listed below are representative of the work environment typically encountered by an individual while performing the essential duties of this position. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential duties.
  • While performing the duties of this job, the employee is exposed to a normal office and manufacturing environment

NOTE: The above stated duties are intended to outline those functions typically performed by individuals assigned to this classification. This description of duties is not intended to be all-inclusive nor to limit the discretionary authority of leadership to assign other tasks of similar nature or level of responsibility.