1

3D Machine Modeling Jobs in Kansas (NOW HIRING)

... machining, welding, assembly, and finishing. * Ability to interpret and apply engineering drawings, 3D models, GD&T, specifications, and customer requirements. * Experience with aerospace ...

Posted today

With over 700 employees and growing, we're leaders in structural steel, precision machining, heavy ... Produce 3D model, shop drawings, assembly drawings, and erection drawings * Submit requests for ...

With over 700 employees and growing, we're leaders in structural steel, precision machining, heavy ... Produce 3D model, shop drawings, assembly drawings, and erection drawings * Submit requests for ...

NC Programmer

Wichita, KS ยท On-site

$65K - $90K/yr

Interpret drawings and models to create programs that utilize modern machining methodology, work ... Ability to read and understand 3D GD&T information. * Demonstrated ability to accurately assess ...

NC Programmer

Wichita, KS ยท On-site

$65K - $90K/yr

Interpret drawings and models to create programs that utilize modern machining methodology, work ... Ability to read and understand 3D GD&T information * Demonstrated ability to accurately assess work ...

NC Programmer

Wichita, KS ยท On-site

$23.75 - $32.50/hr

Interpret drawings and models to create programs that utilize modern machining methodology, work ... Ability to read and understand 3D GD&T information * Demonstrated ability to accurately assess work ...

Manufacturing Engineer

Wichita, KS

$65K - $84K/yr

Experience in machining and tooling, including machine operating in a production environment. * Experience with SolidWorks or similar 3D modeling software for tooling and fixture design. * Ability to ...

Manufacturing Engineer

Wichita, KS

$65K - $84K/yr

Experience in machining and tooling, including machine operating in a production environment. * Experience with SolidWorks or similar 3D modeling software for tooling and fixture design. * Ability to ...

Senior Process Engineer

Olathe, KS ยท On-site

$100K - $130K/yr

Working knowledge of modern machining and rapid prototyping capabilities * Experience programming industrial and/or collaborative robots * End effecter design experience in 3D modeling software

... models to create programs that utilize modern machining methodologies, work holding and cutter ... Ability to read and understand 3D GD&T information. * Demonstrated ability to assess work effort ...

Showing results 41-60

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 Kansas?

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

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

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

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

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

Engineering Program Manager Level 3

The Atlas Group

Park City, KS โ€ข On-site

$115K/yr

Full-time

Posted 4 days ago


Job description

The Sheet Metal Engineering Program Manager serves as a key member of the engineering team and is responsible for leading the successful execution of new and existing sheet metal products throughout the entire manufacturing lifecycle. Working closely with Engineering, Manufacturing, Quality, Supply Chain, Planning, Tooling, and Operations, this position ensures all technical, quality, and customer requirements are met while driving projects from concept through production implementation. The role is responsible for managing program schedules, technical risks, manufacturing readiness, tooling requirements, process development, and continuous improvement initiatives to ensure repeatable, efficient, and compliant production processes.


Essential Duties and Responsibilities

    • Lead and manage new sheet metal product introductions and existing production programs from quotation through production release.
    • Serve as the primary engineering focal point for program execution, customer requirements, technical issues, and manufacturing readiness activities.
    • Coordinate cross-functional teams to ensure engineering, quality, tooling, planning, supply chain, and production objectives are achieved.
    • Develop and manage project timelines, milestones, deliverables, and risk mitigation plans.
    • Review engineering drawings, 3D models, specifications, customer requirements, and manufacturing standards to ensure producibility and compliance.
    • Drive Design for Manufacturability (DFM) reviews and recommend improvements to improve quality, reduce cost, and increase production efficiency.
    • Develop and implement manufacturing processes for complex sheet metal assemblies and components, including cutting, forming, machining, welding, assembly, and finishing operations.
    • Evaluate and define tooling, fixtures, gages, and equipment requirements necessary to support production and inspection activities.
    • Review and validate routes, work instructions, Bills of Material (BOMs), Product Configuration Control Information (PCCI), and manufacturing documentation.
    • Ensure production planning accurately reflects validated processes capable of supporting repeatable manufacturing.
    • Coordinate prototype, first article, qualification, and production builds while ensuring lessons learned are incorporated into standard processes.
    • Support quoting activities through technical reviews, labor estimates, tooling assessments, and manufacturing feasibility evaluations.
    • Prepare engineering cost estimates, status reports, and program updates by collecting, analyzing, and summarizing project data.
    • Lead resolution of manufacturing, quality, and technical issues through root cause analysis and corrective actions.
    • Work closely with Quality Assurance and Document Control regarding revision changes, engineering changes, customer requirements, and corrective action implementation.
    • Monitor program performance, identify potential risks, and implement corrective actions to maintain schedule, quality, and cost objectives.
    • Participate in continuous improvement initiatives focused on process capability, efficiency, quality, and manufacturing throughput.
    • Maintain compliance with company policies, customer requirements, aerospace standards, and applicable regulatory requirements.
    • Demonstrate the authority to stop production when quality, safety, or technical concerns warrant immediate action.

  • Minimum 5 years of engineering or manufacturing experience in sheet metal fabrication, aerospace manufacturing, or related industries.
  • Prior project or program management experience preferred.
  • Experience supporting new product introduction (NPI), production transitions, and manufacturing process development.
  • Strong understanding of sheet metal fabrication processes including laser cutting, punching, bending, hydroforming, machining, welding, assembly, and finishing.
  • Ability to interpret and apply engineering drawings, 3D models, GD&T, specifications, and customer requirements.
  • Experience with aerospace manufacturing requirements and specifications.
  • Proficiency in CATIA V5 or similar CAD software.
  • Knowledge of MRP/ERP systems and manufacturing planning processes.
  • Experience with FAI, RCCA, process validation, and configuration management.
  • Understanding of tooling design, fixture development, and manufacturing process optimization.
  • Strong project management, organizational, and time-management skills.
  • Excellent written and verbal communication skills.
  • Ability to lead cross-functional teams and manage multiple projects simultaneously.
  • Lean Manufacturing and continuous improvement experience preferred.