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Mechanical Engineering Internship Jobs in Springtown, TX

Perform engineering calculations, simulation, and analysis to validate design performance ... Bachelor's degree in mechanical engineering or a related discipline. * 3-5 years of verifiable ...

Perform engineering calculations, simulation, and analysis to validate design performance ... Bachelor's degree in mechanical engineering or a related discipline. * 3-5 years of verifiable ...

Manage projects using engineering principles and techniques. * Plan and design new production ... Bachelor's degree in Mechanical Engineering required. * 5-10 years of knowledge in the perforating ...

Mechanical Engineer

Millsap, TX ยท On-site

$80 - $100/hr

Manage projects using engineering principles and techniques. * Plan and design new production ... Bachelor's degree in Mechanical Engineering required. * 5-10 years of knowledge in the perforating ...

Manage projects using engineering principles and techniques. * Plan and design new production ... Bachelor's degree in Mechanical Engineering required. * 5-10 years of knowledge in the perforating ...

Manage projects using engineering principles and techniques. * Plan and design new production ... Bachelor's degree in Mechanical Engineering required. * 5-10 years of knowledge in the perforating ...

Showing results 41-60

Mechanical Engineering Internship information

See Springtown, TX salary details

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How much do mechanical engineering internship jobs pay per hour?

As of Sep 5, 2026, the average hourly pay for mechanical engineering internship in Springtown, TX is $17.84, according to ZipRecruiter salary data. Most workers in this role earn between $14.71 and $19.81 per hour, depending on experience, location, and employer.

What is a mechanical engineering internship?

A Mechanical Engineering Internship is a temporary position for students or recent graduates to gain hands-on experience in the field of mechanical engineering. Interns typically work under the supervision of experienced engineers, assisting with projects such as designing, testing, and analyzing mechanical systems. The internship provides practical exposure to engineering processes, software, and teamwork, helping students apply classroom knowledge to real-world challenges. It also allows interns to develop professional skills, build industry connections, and enhance their resumes for future job opportunities.

What types of projects and tasks can I expect to work on during a mechanical engineering internship?

As a Mechanical Engineering Intern, you can expect to work on a variety of hands-on and analytical tasks, such as assisting with product design, creating CAD models, conducting prototype testing, and preparing technical documentation. Interns often collaborate closely with full-time engineers and may participate in team meetings, brainstorming sessions, and project reviews. The specific projects will depend on the company's focus, but you'll likely gain exposure to real-world engineering challenges and develop your technical and problem-solving skills. This experience not only enhances your resume but also helps you build a professional network and better understand potential career paths within mechanical engineering.

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

Mechanical Engineering Interns should possess a solid understanding of engineering principles, CAD design, and basic problem-solving, typically supported by progress toward a bachelor's degree in mechanical engineering. Familiarity with tools such as SolidWorks, AutoCAD, MATLAB, and exposure to industry standards or relevant certifications can be advantageous. Strong teamwork, eagerness to learn, and effective communication set standout interns apart in collaborative project environments. These skills and qualities are crucial for contributing to engineering teams, adapting to professional workflows, and developing practical expertise.

What do you do in a mechanical engineering internship?

A mechanical engineering internship involves assisting with design, analysis, and testing of mechanical systems and components. Interns often work with CAD software, perform experiments, and support project development under the supervision of experienced engineers, gaining practical industry experience.

Which internship is best for mechanical engineering students?

The best internship for mechanical engineering students typically involves hands-on experience in design, manufacturing, or research environments, often at engineering firms, manufacturing companies, or research institutions. Internships that offer exposure to CAD software, MATLAB, or industry-specific tools, along with mentorship and project work, provide valuable skills for future employment.

What are the most commonly searched types of Mechanical Engineering jobs in Springtown, TX?

The most popular types of Mechanical Engineering jobs in Springtown, TX are:

What cities near Springtown, TX are hiring for Mechanical Engineering Internship jobs?

Cities near Springtown, TX with the most Mechanical Engineering Internship job openings:

Senior Mechanical Engineer - Fort Worth, Texas

Davidson Technologies, Inc.

Fort Worth, TX โ€ข On-site

$100K - $132K/yr

Full-time

Re-posted 6 days ago


Job description

Davidson is distinguished in the aerospace and missile defense industry, in part, because of its excellence in hiring exceptional experts, engineers and software developers dedicated to delivering advanced, intelligent technology solutions in defense of our nation.
Davidsons Warfighter Integration (WFI) team is building a new Mechanical Engineering capability and is seeking an experienced Senior Mechanical Engineer in Fort Worth, Texas (This position is contingent upon funding) to help design, integrate, and field next-generation defense solutions. This is an opportunity to build mechanical engineering processes from the ground up while solving complex integration challenges across a diverse portfolio of Command & Control (C2), sensor systems, embedded electronics, autonomy, AI, and emerging defense technologies.
As part of our fast-paced, mission-focused team, you'll work directly with systems, software, electrical, and manufacturing engineers to transform concepts into deployable hardware. You'll develop mechanical designs, create engineering drawings, evaluate interface requirements, and support aircraft, ground vehicle, and tactical platform integrations. No two projects are alike, providing continuous exposure to new technologies, challenging engineering problems, and opportunities to make a direct impact on capabilities delivered to the warfighter.
Primary Responsibilities
  • Design and develop mechanical solutions supporting integration of sensors, processors, communication equipment, and mission systems.
  • Develop detailed mechanical engineering drawings, fabrication packages, and technical data packages (TDPs).
  • Create and maintain 3D CAD models, assemblies, and manufacturing drawings.
  • Evaluate and develop Mechanical Interface Control Documents (ICDs) supporting subsystem integration.
  • Design mounting structures, equipment racks, brackets, enclosures, cable routing, harness support, and structural interfaces.
  • Optimize Size, Weight, Power, Cooling, and Cost (SWaP-C) while balancing structural integrity, manufacturability, maintainability, and mission performance across integrated platform designs.
  • Develop thermal management and cooling solutions for electronic systems.
  • Perform system power, weight, center of gravity, and SWaP assessments.
  • Support aircraft, ground vehicle, and tactical platform integration activities.
  • Support environmental qualification activities including vibration, shock, thermal, humidity, and other MIL-STD testing requirements.
  • Support prototype fabrication, hardware integration, system installation, and verification testing.
  • Collaborate with Systems Engineering to ensure mechanical designs satisfy system requirements and interface definitions.
  • Participate in design reviews including PDR, CDR, TRR, and integration readiness reviews.
  • Support transition from prototype development into production.

Required Qualifications
  • Bachelor's degree in mechanical engineering or related engineering discipline.
  • 8+ years of mechanical engineering experience supporting complex DoW or aerospace systems.
  • Experience creating 3D CAD models and engineering drawings.
  • Experience developing fabrication drawings and technical data packages.
  • Experience evaluating and developing Mechanical ICDs.
  • Experience designing solutions to include:
    • Equipment mounting solutions
    • Structural brackets
    • Electronics enclosures
    • Cable management systems
    • Harness routing
    • Cooling solutions
    • Mechanical assemblies
  • Experience performing packaging, weight, and space claim analyses.
  • Strong understanding of manufacturing processes and Design for Manufacturability (DFM).
  • Experience supporting prototype builds and hardware integration.
  • Excellent communication and cross-functional collaboration skills.
  • Ability to obtain and maintain a Top Secret Security Clearance.

Desired Qualifications
  • Experience supporting aircraft integration programs.
  • Familiarity with MIL-STD-810, MIL-STD-461, MIL-STD-1472, and environmental qualification testing.
  • Experience designing systems for vibration, thermal, shock, and airborne environments.
  • Experience supporting FAA military airworthiness or flight certification efforts.
  • Experience integrating VPX, SOSA, OpenVPX, or other modular electronics.
  • Familiarity with cable harness design standards including AS50881.
  • Experience with additive manufacturing and rapid prototyping.
  • Experience supporting supplier technical oversight and hardware fabrication.

Preferred Technical Skills
  • SolidWorks
  • Creo
  • CATIA
  • Siemens NX
  • AutoCAD
  • Windchill or Teamcenter
  • PDM/PLM tools
  • ANSYS Mechanical
  • Thermal analysis tools
  • Microsoft Office Suite

Desired Engineering Experience
Candidates should have experience supporting the design and integration of:
  • Mission equipment racks
  • Sensor payloads
  • Electro-optical/Infrared (EO/IR) systems
  • Radar systems
  • RF systems
  • Embedded computing systems
  • VPX/OpenVPX chassis
  • Tactical communications equipment
  • Ruggedized electronic enclosures
  • Cable harnesses and interconnects
  • Cooling and airflow management systems
  • Aircraft mission equipment
  • Ground vehicle payload integrations
  • Expeditionary and mobile platforms

Security Clearance
  • Ability to receive a Top Secret clearance with SCI eligibility