Job Title:Paint Process Engineer – Robotic Programming
Position Summary:
We are seeking a
Key Responsibilities:
Qualifications:
Preferred Skills:
Why Join Us:
Job Title:Paint Process Engineer – Robotic Programming
Location:Atlanta, GADepartment:Manufacturing Engineering / Paint OperationsReports To:Engineering Manager
Position Summary:
We are seeking aPaint Process Engineerto join our manufacturing team supporting automotive component production. This position focuses on programming, optimizing, and maintaining robotic paint systems (including fan-style paint robots) to ensure consistent coating quality, efficiency, and compliance with production standards. The ideal candidate will combineengineering expertisewithhands-on programming skillsto improve process reliability, reduce waste, and enhance product appearance and performance.
Key Responsibilities:
Develop, program, and optimize robotic paint applications using fan and multi-axis paint robots.
Configure robot paths, flow rates, and paint parameters for optimal coverage, transfer efficiency, and surface quality.
Support launch and continuous improvement of automated paint processes for new and existing automotive components.
Monitor, troubleshoot, and adjust paint systems to ensure consistent film build, color accuracy, and quality standards.
Collaborate with design, maintenance, and quality teams to implement process changes and corrective actions.
Maintain documentation for robot programs, process parameters, and paint system settings.
Conduct root cause analysis for defects such as runs, orange peel, thin coverage, or contamination.
Lead trials for new paint materials and application equipment.
Support safety, environmental, and lean manufacturing initiatives within the paint department.
Qualifications:
- Bachelor’s degreein Mechanical, Electrical, Chemical, or Manufacturing Engineering (or related field).
- 3+ years of experiencein paint process engineering within an automotive or industrial environment.
- Experience programming paint robots(e.g., Fanuc, ABB, Dürr, or similar) required.
Strong understanding of spray dynamics, atomization, and electrostatic paint systems.
Proficient in robotic path programming, teach pendant operation, and offline simulation tools.
Knowledge of paint booth design, air handling, curing ovens, and surface prep processes.
Proven ability to analyze process data and implement continuous improvement solutions.
Excellent problem-solving and communication skills.
Preferred Skills:
Experience with PLC integration and paint flow control systems.
Familiarity with automotive quality systems (IATF 16949, ISO 9001).
Understanding of environmental and safety regulations related to paint operations.
Project management experience in process automation or equipment installation.
Why Join Us:
Opportunity to work with cutting-edge robotic paint technology.
Collaborative team environment focused on innovation and process excellence.
Competitive pay, comprehensive benefits, and professional growth opportunities.
Freqently Asked Questions
Paint Process Engineers excel in robotic programming for paint applications, combining expertise in spray dynamics, electrostatic systems, and robotic path optimization. Unlike general manufacturing engineers, they focus on coating quality, paint flow control, and troubleshooting surface defects, ensuring automotive parts meet stringent appearance and durability criteria.
Professionals often advance into senior engineering positions, automation project leads, or process optimization managers. With experience in robotic paint systems and quality standards like IATF 16949, one can also transition into cross-functional roles involving environmental compliance or manufacturing leadership within the automotive industry.
Each day involves programming and fine-tuning multi-axis paint robots, analyzing process data for defects, collaborating with quality and maintenance teams, and leading trials for new paint materials. Engineers also document procedures and adjust parameters to uphold consistent finish quality and operational efficiency.
While a bachelor’s degree in engineering is standard, certifications in automotive quality systems such as IATF 16949 or ISO 9001 are highly valued locally. Knowledge of environmental and safety regulations in Georgia’s manufacturing sector further enhances a candidate’s fit for paint process roles in Carrollton.
Carrollton's growing automotive manufacturing cluster increases demand for skilled paint engineers, though competition is moderate. Candidates with robotic programming experience and local quality certifications tend to stand out, as companies like Career Professionals, Inc. seek talent to support advanced paint automation processes.
At Career Professionals, Inc., the Paint Process Engineer plays a vital role in optimizing robotic painting operations, working closely with design, maintenance, and quality departments. This collaboration ensures seamless production flow, quality control, and continuous improvement tailored to automotive component manufacturing.
Career Professionals, Inc. emphasizes hands-on robotic programming proficiency combined with strategic process troubleshooting. Their engineers lead paint trials and manage detailed documentation, reflecting a commitment to innovation and lean manufacturing, which distinguishes their approach from more conventional paint engineering roles.
Salaries typically range between $75,000 and $95,000 annually, reflecting the specialized skill set in robotic paint programming and automotive manufacturing expertise. Factors such as experience, certifications, and proficiency with systems like Fanuc or Dürr can influence compensation within this competitive Georgia market.
Carrollton's moderate traffic and proximity to Atlanta make commutes manageable for paint process engineers, supporting a balanced lifestyle. Many manufacturing facilities encourage shifts that align with lean operations, helping professionals maintain efficient schedules without excessive overtime.
Local plants often feature advanced air handling and curing ovens requiring precise integration with robotic systems. Engineers must troubleshoot airflow inconsistencies, maintain compliance with environmental standards, and optimize paint transfer efficiency to meet stringent regional quality and safety expectations.