1

Freelance Robotic Simulation Engineer Jobs in Wisconsin

Robotic Weld Engineer

Hartford, WI · On-site

$19.75 - $27/hr

Robotic Welding Engineer Company: Standard Iron Reports To: Engineering Manager Location: Hartford ... Experience with simulation software like RobotStudio or RoboGuide is highly preferred. * Welding ...

We're looking for someone who has strong programming skills, is self-motivated and organized, and ... You'll begin by working on a project that involves creating a robot simulation from a set of tasks.

Use simulation, digital twins, virtual commissioning, structured testing, and prototype builds to ... Leverage machine data, sensors, vision, robotics, edge devices, and industrial communication ...

Use simulation, digital twins, virtual commissioning, structured testing, and prototype builds to ... Leverage machine data, sensors, vision, robotics, edge devices, and industrial communication ...

The Automation Engineer will design and implement automated systems, develop PLC and robotics ... Create and maintain digital twin simulations for process optimization and virtual commissioning

The Automation Engineer will design and implement automated systems, develop PLC and robotics ... Create and maintain digital twin simulations for process optimization and virtual commissioning

Controls Engineer

Menomonee Falls, WI · On-site

$83K - $108K/yr

Use simulation, digital twins, virtual commissioning, machine data, and structured prototyping to ... MQTT, robotics, vision, motion control, safety systems, laser marking/welding, and assembly ...

Controls Engineer

Menomonee Falls, WI

$83K - $108K/yr

Use simulation, digital twins, virtual commissioning, machine data, and structured prototyping to ... MQTT, robotics, vision, motion control, safety systems, laser marking/welding, and assembly ...

next page

Showing results 1-20

Freelance Robotic Simulation Engineer information

What are some common challenges faced by freelance robotic simulation engineers when working with diverse client projects?

Freelance Robotic Simulation Engineers often encounter challenges such as adapting quickly to different simulation platforms, ensuring compatibility with various robot hardware, and meeting tight project deadlines. Each client may use unique software tools or have specific workflow requirements, so the ability to learn and integrate new systems efficiently is essential. Additionally, clear communication and regular updates are vital when collaborating remotely with multidisciplinary teams to align simulation outcomes with client expectations.

What does a freelance robotic simulation engineer do?

A Freelance Robotic Simulation Engineer designs, develops, and tests virtual models of robotic systems using specialized simulation software. Their work helps companies visualize, optimize, and troubleshoot robotic processes before physical implementation, saving time and resources. They typically collaborate remotely with clients in industries such as manufacturing, logistics, and automation to create accurate simulations, analyze performance, and provide technical recommendations. As freelancers, they manage multiple projects and are responsible for their own schedules and client communications.

What are the key skills and qualifications needed to thrive as a freelance robotic simulation engineer, and why are they important?

To thrive as a Freelance Robotic Simulation Engineer, you need strong proficiency in robotics principles, simulation modeling, and programming languages such as Python or C++, often backed by a degree in engineering or computer science. Expertise with simulation platforms like ROS (Robot Operating System), Gazebo, or MATLAB/Simulink, and relevant certifications, are typically required. Excellent problem-solving, project management, and communication skills help you deliver effective solutions and collaborate with diverse clients. These skills ensure accurate simulations, successful project outcomes, and sustained client satisfaction in a competitive, technology-driven field.
What are the most commonly searched types of Robotic Simulation Engineer jobs in Wisconsin? The most popular types of Robotic Simulation Engineer jobs in Wisconsin are:
What are popular job titles related to Freelance Robotic Simulation Engineer jobs in Wisconsin? For Freelance Robotic Simulation Engineer jobs in Wisconsin, the most frequently searched job titles are:
What cities in Wisconsin are hiring for Freelance Robotic Simulation Engineer jobs? Cities in Wisconsin with the most Freelance Robotic Simulation Engineer job openings:

Robotic Weld Engineer

Standard Iron

Hartford, WI • On-site

$19.75 - $27/hr

Full-time

Re-posted 5 days ago


Standard Iron rating

7.4

Company rating: 7.4 out of 10

Based on 6 frontline employees who took The Breakroom Quiz


Job description

Job Opportunity: Robotic Welding Engineer
Company: Standard Iron
Reports To: Engineering Manager
Location: Hartford Wiscosnin (With occasional travel to other plants)
You can streamline the interview process by completing this form> https://go.cultureindex.com/p/24598463d6af6e7cc955
Company Overview
At Standard Iron, we provide top-tier contract manufacturing and fabrication solutions. We pride ourselves on safety, quality, and production efficiency. We are looking for an experienced Robotic Welding Engineer to drive our automated production systems forward.
Position Summary
The Robotic Welding Engineer bridges the gap between weld metallurgy, advanced robotics programming, and production floor efficiency. You will design, develop, integrate, and optimize automated and robotic welding systems. This role leads process improvement initiatives, troubleshoots complex cells, collaborates on fixture design, and ensures compliance with strict AWS quality standards.
Key Responsibilities
Robotic Programming & Optimization
  • Program Systems: Program and clone paths for multi-axis systems (primarily ABB) using teach pendants and Offline Programming (OLP) software.
  • Tune Parameters: Adjust arc parameters, travel angles, travel speeds, voltage, and wire feed speeds to ensure structural integrity and reduce cycle times.
  • Calibrate Sensors: Implement and calibrate Thru-Arc Seam Tracking (TAST), touch sensing, and laser/vision guidance systems.

Tooling, Fixture & Cell Design Review
  • Review Fixtures: Partner with Tooling Engineers to review fixture designs for part repeatability and torch joint access.
  • Specify Equipment: Define technical specs for new robotic arms, power sources, positioners, reamers, and safety enclosures.
  • Manage Integration: Lead commissioning of new robotic weld cells from initial design through production launch.

Quality Control & Troubleshooting
  • Solve Defects: Diagnose mechanical, electrical, and programming faults to resolve issues like porosity, undercut, and lack of fusion.
  • Maintain Calibration: Manage Tool Center Point (TCP) standards and develop recovery protocols to minimize downtime.
  • Ensure Compliance: Execute weld macro-examinations to guarantee alignment with AWS D1.1, D1.3, or customer-specific standards.

Continuous Improvement & Safety
  • Boost Efficiency: Analyze production data to reduce "air-cut" time and improve Overall Equipment Effectiveness (OEE).
  • Champion Safety: Ensure cell compliance with OSHA and RIA/ANSI R15.06 guidelines (light curtains, interlocking gates).
  • Train Staff: Mentor robot operators, technicians, and maintenance staff on basic troubleshooting and safety.

Job Qualifications
Education & Experience
  • Degree: Bachelor's degree in Welding, Mechanical, or Automation/Robotics Engineering is preferred. An Associate degree with equivalent hands-on industrial experience will be considered.
  • Experience: 3-5+ years of direct experience engineering robotic welding applications in heavy manufacturing, automotive, or structural steel fabrication.

Technical Skills
  • Robotics: Proficient in programming major robotic platforms (primarily ABB). Experience with simulation software like RobotStudio or RoboGuide is highly preferred.
  • Welding Expertise: Deep understanding of GMAW (MIG), FCAW, or GTAW (TIG) processes and parameter development.
  • CAD & Prints: Ability to read engineering drawings and utilize CAD software (SolidWorks, AutoCAD, CREO) to review part geometry.
  • Upstream Focus: Knowledge of how laser cutting, stamping, and sheet metal rolling impact part fit-up and automated weld success.

Success Metrics (KPIs)
  • First-Time Through (FTT) Yield: Reduction in post-weld manual rework and repair rates.
  • Cycle Time Reduction: Percentage decrease in cell cycle times through optimized tool paths.
  • Equipment Downtime: Minimizing cell downtime caused by programming errors or fixture tracking alignment issues.

What Standard Iron employees say

Pay

Hours and flexibility

Workplace

Get the full story on Breakroom