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3D Machine Modeling Jobs in Washington (NOW HIRING)

Prototype Machinist

Sterling, VA ยท On-site

$30 - $45/hr

Work from 3D CAD models * Select tools, speeds, feeds, workholding, and machining strategy * Make parts accurately and efficiently * Inspect your own work * Catch problems before they become ...

Prototype Machinist

Sterling, VA ยท On-site

$30 - $45/hr

Work from 3D CAD models * Select tools, speeds, feeds, workholding, and machining strategy * Make parts accurately and efficiently * Inspect your own work * Catch problems before they become ...

Use SolidWorks, 3D CAD models, and engineering data to develop and verify machining processes. * Verify completed components using micrometers, calipers, gauges, and other precision measuring ...

Use SolidWorks, 3D CAD models, and engineering data to develop and verify machining processes. * Verify completed components using micrometers, calipers, gauges, and other precision measuring ...

Develop fully parametric 3D CAD models of mechanical parts and assemblies using Autodesk Inventor ... Manufacturing process knowledge (Injection Molding, Sheet Metal, CNC Machining, Casting). * CAD ...

Cad Designer

Columbia, MD ยท On-site

$37.02 - $40/hr

Extensive hands-on experience with SolidWorks, including 3D modeling and 2D drafting. * Experience in the design of machinery or industrial systems, particularly industrial machinery or machine ...

Cad Designer

Columbia, MD ยท On-site

$37.02 - $40/hr

Extensive hands-on experience with SolidWorks, including 3D modeling and 2D drafting. * Experience in the design of machinery or industrial systems, particularly industrial machinery or machine ...

Create accurate 3D CAD models and detailed engineering drawings of mechanical and electro ... Apply principles of mechanical and machine design to support the development of complex systems ...

Create accurate 3D CAD models and detailed engineering drawings of mechanical and electro ... Apply principles of mechanical and machine design to support the development of complex systems ...

New

WHO YOU ARE: * 3+ years of industry experience in CAD software development, 3D modeling software ... Our facility includes a variety of robots, CNC milling machines, 3D printers, and all the tools ...

... 3D site models, and directing field crews to complete mass earthwork projects on time and on grade ... Machine Versatility: Competency across small-to-large dozers (CAT D3 to D8) and basic support iron ...

New

Senior Data Scientist

Springfield, VA ยท On-site

$117 - $195/hr

Machine Learning * Bayesian Modeling * Data Processing * Demand forecasting * Data Management * Data Quality * Descriptive Analytics * D3.js * Atlassian Confluence * Atlassian Jira * 3D processing ...

Hands-on experience in prototype or production machine shops, including interpreting drawings ... Familiarity with model-based definition (MBD) and applying PMI/GD&T within 3D models. Experience ...

Showing results 21-40

3D Machine Modeling information

What is 3D machine modeling?

3D machine modeling is the process of creating three-dimensional digital representations of machines or mechanical components using specialized computer software. These models help engineers and designers visualize, test, and refine machines before they are physically built. 3D machine modeling is widely used in industries such as manufacturing, automotive, aerospace, and robotics to improve design accuracy and efficiency. The process often involves using CAD (Computer-Aided Design) programs to create detailed, precise models that can be used for simulations, prototyping, and production.

What are the key skills and qualifications needed to thrive as a 3D machine modeler, and why are they important?

To thrive as a 3D Machine Modeler, you need strong skills in 3D modeling, mechanical design principles, and a background in engineering or industrial design. Proficiency with CAD software such as SolidWorks, Autodesk Inventor, or Siemens NX, along with relevant certifications, is typically required. Attention to detail, creativity, and effective communication are crucial soft skills for translating concepts into precise models and collaborating with engineering teams. These skills and qualities ensure accurate, manufacturable designs that meet technical specifications and project goals.

What are some common challenges faced by 3D machine modelers when collaborating with engineering teams?

3D Machine Modelers often work closely with engineers to ensure that models accurately reflect technical specifications and functional requirements. A common challenge is translating complex engineering data into visually precise and manufacturable 3D models while keeping up with frequent design changes. Effective communication is essential to resolve discrepancies and maintain alignment on project goals. Additionally, modelers must balance aesthetic considerations with mechanical feasibility, requiring both creative and technical problem-solving skills.

What is the difference between 3D Machine Modeling vs 3D CAD Designer?

Aspect3D Machine Modeling3D CAD Designer
CredentialsTechnical certifications in CAD and mechanical designCAD software certifications, engineering background
Work EnvironmentManufacturing, engineering firms, product developmentDesign studios, engineering departments, manufacturing
Industry UsageMechanical systems, machinery, industrial equipmentProduct design, architectural components, consumer products

3D Machine Modeling focuses on creating detailed models of machinery and mechanical systems, often for manufacturing or engineering purposes. 3D CAD Designers develop detailed designs for a variety of products and structures. While both roles require CAD skills and technical knowledge, 3D Machine Modeling emphasizes mechanical accuracy and functionality, whereas 3D CAD Design covers a broader range of design applications.

What are popular job titles related to 3D Machine Modeling jobs in Washington?

For 3D Machine Modeling jobs in Washington, the most frequently searched job titles are:

What job categories do people searching 3D Machine Modeling jobs in Washington look for?

The top searched job categories for 3D Machine Modeling jobs in Washington are:

What cities in Washington are hiring for 3D Machine Modeling jobs?

Cities in Washington with the most 3D Machine Modeling job openings:

Infographic showing various 3D Machine Modeling job openings in Washington as of August 2026, with employment types broken down into 87% Full Time, 8% Part Time, 1% Temporary, 2% Contract, and 2% Nights. Highlights an 83% Physical, 1% Hybrid, and 16% Remote job distribution.

Prototype Machinist

KFORM Defense

Sterling, VA โ€ข On-site

$30 - $45/hr

Other

This job post hasย expired today.ย Applications are no longer accepted.


Key responsibilities

  • Support rapid prototyping, machining, fabrication, fixture building, and production readiness for hardware products.

  • Program, set up, operate, and troubleshoot CNC mills, lathes, manual mills, lathes, saws, drill presses, grinders, and related equipment.

  • Review and provide feedback on part designs, inspect parts for quality, and collaborate with engineers to improve manufacturability.


Job description

Kform is a next-generation defense manufacturer helping leading defense and dual-use startups turn advanced technology into producible hardware. We work across design, engineering, prototyping, manufacturing, quality, and production readiness to move critical products from concept to fielded reality.

We are recruiting prototype machinists who want to build real hardware, solve practical manufacturing problems, and work on products that matter. The battlefield waits weeks, not years.

The right person for this role is a hands-on builder with strong machining fundamentals, practical judgment, and the ability to turn incomplete engineering information into high-quality physical parts. You should be comfortable working closely with engineers, technicians, suppliers, and production teams to move fast without cutting corners.

At Kform, you will not be operating in a narrow production lane. You will make prototypes, improve designs, troubleshoot manufacturability problems, build fixtures, support testing, and help transition hardware from one-off prototype to repeatable production.

This is one of the few places where machinists get to work directly with engineers, influence product design, and help strengthen American industrial capacity for defense.

The Role

You will support rapid prototyping, machining, fabrication, fixture building, and production readiness for complex defense and dual-use hardware products.

This is a hands-on shop role for someone who can work from CAD models, drawings, sketches, verbal direction, and evolving requirements. You should be comfortable making parts, identifying problems, communicating tradeoffs, and helping engineers improve designs before they become expensive production issues.

You should be comfortable moving between:

  • CNC mills and lathes

  • Manual machining equipment

  • CAD models and drawings

  • CAM workflows

  • Inspection tools

  • Prototype assemblies

  • Fixtures and tooling

  • Engineering conversations

  • Production feedback

We want people who understand how parts are actually made. People who care about tolerances, finishes, setup strategy, workholding, material behavior, cutting tools, and the difference between a design that looks good on a screen and a design that can be made reliably.

What You Will Do
  • Machine prototype and low-volume production components for defense and dual-use hardware systems.

  • Program, set up, and operate CNC mills, lathes, and related shop equipment.

  • Operate manual mills, manual lathes, saws, drill presses, grinders, and general fabrication tools.

  • Work from CAD models, drawings, sketches, engineering notes, and verbal instructions.

  • Review part designs and provide practical feedback on:

    • Manufacturability

    • Tolerances

    • Material selection

    • Setup strategy

    • Tool access

    • Fixturing

    • Surface finish

    • Cost and lead time

  • Build, modify, and repair prototypes, fixtures, tooling, test articles, brackets, enclosures, panels, mounts, and mechanical assemblies.

  • Collaborate directly with engineers to move quickly from design intent to physical hardware.

  • Identify design issues early and recommend practical improvements before release to production.

  • Inspect parts using calipers, micrometers, indicators, height gauges, thread gauges, surface plates, and other standard inspection tools.

  • Verify that parts meet drawing requirements, functional requirements, and assembly needs.

  • Support prototype assembly, fit checks, test setups, and troubleshooting.

  • Document setup notes, machining issues, lessons learned, and recommended design changes.

  • Maintain shop organization, tooling, machine readiness, and safe working practices.

  • Support continuous improvement across Kform’s prototyping, machining, and manufacturing systems.

What We Are Looking For

We are looking for a machinist who can think, build, troubleshoot, and communicate.

You should be technically disciplined, but not rigid. Prototype work often starts with ambiguity. Drawings may be incomplete. Requirements may evolve. Engineers may need help understanding what is practical. Your job is to bring manufacturing judgment into the process and help the team create better hardware faster.

You should be able to:

  • Read mechanical drawings and understand design intent

  • Work from 3D CAD models

  • Select tools, speeds, feeds, workholding, and machining strategy

  • Make parts accurately and efficiently

  • Inspect your own work

  • Catch problems before they become expensive

  • Explain manufacturability issues clearly

  • Work with urgency while maintaining quality and safety

The best fit for this role is practical, precise, resourceful, and biased toward action.

Minimum Qualifications
  • 3 to 5 years of experience in CNC machining, manual machining, prototype fabrication, toolmaking, model making, or a related hands-on manufacturing role.

  • Strong ability to read and interpret mechanical drawings, dimensions, tolerances, notes, materials, and finishes.

  • Experience setting up and operating CNC milling machines.

  • Experience with manual machining equipment, including mills, lathes, saws, drills, and standard shop tools.

  • Working knowledge of common engineering materials, including aluminum, steel, stainless steel, plastics, and specialty materials.

  • Ability to inspect machined parts using standard measurement tools and basic quality practices.

  • Ability to work from incomplete information and ask the right questions when requirements are unclear.

  • Strong mechanical aptitude and practical problem-solving ability.

  • Ability to work safely in a fast-moving prototyping and manufacturing environment.

  • Clear communication skills and willingness to work directly with engineers, technicians, and production teams.

Preferred Qualifications
  • Experience in a prototype shop, R&D shop, defense manufacturing environment, aerospace shop, robotics company, machine shop, or advanced manufacturing operation.

  • Experience programming CNC machines using Fusion 360, Mastercam, SolidWorks CAM, HSMWorks, or similar CAM software.

  • Experience with both CNC mills and CNC lathes.

  • Experience machining tight-tolerance parts for complex mechanical assemblies.

  • Experience with fixture design, soft jaws, custom workholding, and production tooling.

  • Experience supporting low-volume production, engineering builds, EVT, DVT, or production readiness efforts.

  • Experience with GD&T, inspection documentation, first article inspection, or AS9100-style quality systems.

  • Experience with sheet metal, welding, finishing, coating, additive manufacturing, or assembly operations.

  • Experience working with engineers to improve design for manufacturability and assembly.

  • Demonstrated interest in manufacturing, American industry, defense technology, and hard technical problems.

Skills That Matter Here
  • CNC setup, operation, and practical machining strategy.

  • Manual machining and hands-on fabrication.

  • Drawing interpretation, tolerancing, and inspection discipline.

  • CAM programming and toolpath development.

  • Workholding, fixturing, and setup planning.

  • Prototype fabrication and rapid iteration.

  • Materials knowledge and cutting tool selection.

  • Design for manufacturability feedback.

  • Shop organization, safety, and machine care.

  • Communication with engineers, technicians, suppliers, and production teams.

  • Practical judgment, attention to detail, and ownership.

Working Environment

This role operates in a fast-moving product development and manufacturing environment.

You should expect:

  • Frequent hands-on work with machines, tools, materials, fixtures, prototypes, inspection equipment, and production hardware.

  • Time spent standing, walking, lifting, setting up machines, deburring parts, inspecting components, and working near active manufacturing operations.

  • Use of personal protective equipment depending on the task, equipment, and work area.

  • Occasional support for customer projects, supplier coordination, testing, or production needs.

How We Work

Kform values continuous improvement, aggressive value creation, and extreme ownership.

We are building the infrastructure, technical capability, and execution engine required to bring advanced defense products into production faster. That requires people who understand physical hardware, respect manufacturing reality, care about details, and know how to turn ideas into working parts.

If you want to build real hardware, work directly with engineers, solve practical manufacturing problems, and help create defense products that matter, this is the work.

I can also make this sharper for a senior prototype machinist, CNC programmer, or shop lead version.

You should be proficient in:

  • CNC Programming
  • Design for Manufacturability (DFM)
  • CNC Machine Setup & Changeover
  • CAD/CAM Software

Machines & technologies you'll use:

  • CNC Mill (3-4 axis VMC) (Haas, Doosan)
  • 3D Modeling (Solidworks)
  • CNC Lathe (2-4 axis) (Haas)
  • CNC Mill (5+ axis VMC) (Haas)