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3D Machine Modeling Jobs in Connecticut (NOW HIRING)

Mechanical Engineer

Seymour, CT ยท On-site

$90K/yr

... in machine design preferred, but will consider others with proven history * Experience with 3D solid modeling for design conceptualization and realization. (SolidWorks preferred) * Demonstrated ...

Senior CNC Programmer

Meriden, CT ยท On-site

$80K - $130K/yr

Interpret aerospace engineering drawings, 3D CAD models, specifications, and GD&T requirements * Develop efficient machining strategies for complex components in aluminum, titanium, Inconel ...

... in machine design preferred, but will consider others with proven history * Experience with 3D solid modeling for design conceptualization and realization. (SolidWorks preferred) * Demonstrated ...

Create and modify 3D models using SolidWorks to support manufacturing and programming activities. * Develop CNC turning programs using Mastercam. * Support machine setup, prove-out, testing, and ...

Create and modify 3D models using SolidWorks to support manufacturing and programming activities. * Develop CNC turning programs using Mastercam. * Support machine setup, prove-out, testing, and ...

Mechanical design and machine design experience, including exposure to new product development. * Proficiency in 3D modeling and CAD tools such as NX and/or SolidWorks. * Proficient understanding and ...

Showing results 41-60

3D Machine Modeling information

Is 3D Machine Modeling still in demand?

3D Machine Modeling remains in demand in industries such as manufacturing, engineering, and product design, where accurate digital representations of machinery are essential. Professionals with skills in CAD software, such as SolidWorks or AutoCAD, and knowledge of mechanical systems are highly sought after. The role often requires attention to detail and familiarity with industry standards to support prototyping, simulation, and manufacturing processes.

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 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 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 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.

Is 3D machine modeling a good career?

3D machine modeling is a specialized field that involves creating detailed digital representations of machinery using CAD software and 3D modeling tools. It offers opportunities in industries such as manufacturing, engineering, and product design, often requiring technical skills and attention to detail. The career can be stable and rewarding for those with strong technical abilities and a background in engineering or design.

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

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

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

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

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

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

Manufacturing Engineer 1 -Tooling & Fixture Design (Entry Level)

MICROBEST INC

Waterbury, CT โ€ข On-site

Full-time

Medical, Dental, Vision, Retirement, PTO

Re-posted 19 days ago


Job description

Description:

Essential Duties and Responsibilities

  • Assist in the design of CNC workholding fixtures (milling/turning/secondary ops) to improve part stability, repeatability, and throughput.
  • Create and maintain 2D/3D CAD models and drawings for fixtures, soft jaws, nests, clamps, and related tooling.
  • Collaborate with engineers, tool room machinists and CNC operators to review fixture concepts, incorporate feedback, and support build/debug.
  • Support fixture prove-outs on the shop floor; document results and implement revisions as needed.
  • Assist with process documentation including set-up sheets, work instructions, tooling lists, and basic process flow documentation.
  • Support continuous improvement efforts (cycle time reduction, scrap reduction, ergonomic/safety improvements) using structured problem-solving.
  • Participate in root cause analysis for fixture- or process-related quality issues (5-Why, fishbone) and help implement corrective actions.
  • Help standardize tooling/fixture components and support basic tooling inventory and identification practices.
  • Assist with engineering changes affecting fixturing, gaging, and process steps; update documentation accordingly.
  • Work cross-functionally with Quality and Inspection to ensure fixtures support print requirements and measurement strategy.
  • Follow all safety policies; support EHS requirements related to guarding, clamping forces, pinch points, and safe setup practices.


Requirements:

Required

  • Bachelor’s degree in Mechanical Engineering, Manufacturing Engineering, or related field (0–2 years experience).
  • Basic understanding of machining concepts (turning/milling), fixturing fundamentals, and how workholding impacts quality.
  • Ability to read and interpret engineering drawings, familiarity with basic GD&T concepts.
  • Working knowledge of CAD (SolidWorks preferred; equivalent acceptable).
  • Strong problem-solving skills, attention to detail, and willingness to be hands-on in a manufacturing environment.
  • Proficiency with Microsoft Office (Excel/Word).

Preferred

  • co-op in machining, tooling, or manufacturing engineering.
  • Exposure to fixture design principles: locating schemes (3-2-1), datum strategy, clamp methods, repeatability.
  • Familiarity with common shop measuring tools and concepts (calipers, micrometers, indicators).
  • Basic knowledge of machining process planning and tooling selection.
  • Experience with ERP/MRP systems or basic BOM/tool lists.

Key Competencies

  • Practical mechanical aptitude and curiosity
  • Clear communication with machinists/operators
  • Design-for-manufacturability mindset
  • Documentation discipline and follow-through
  • Structured problem-solving
  • Ability to prioritize and manage multiple requests

Work Environment / Physical Requirements

  • Combination of office and shop-floor work; PPE required.
  • Ability to stand/walk for extended periods and occasionally lift up to 25 lbs.
  • Will frequently support tool room builds and production prove-outs at machines.

What Success Looks Like (first 6–12 months)

  • Designs and releases simple fixtures with supervision, then progressively more complex workholding.
  • Builds strong relationships with tool room and operators; responds quickly to production needs.
  • Helps reduce setup time, improves repeatability, and contributes to scrap reduction through better workholding.

Tools/Software

SolidWorks (or similar CAD), basic CAM exposure a plus, Excel, and document control practices.

Compensation:

  • Competitive salary commensurate with experience.
  • PTO
  • Benefits package includes health, dental, vision, 401(k), 401(k) Company Match, Short and Long term Disability and more.

Microbest is an Equal Opportunity Employer.