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
In Carrollton, GA, paint process engineers focusing on automotive manufacturing often need advanced knowledge of robotic paint programming and spray dynamics. This specialization supports high-quality production and aligns with local industry standards, emphasizing efficiency and environmental compliance unique to the region’s manufacturing demands.
Paint process engineers frequently troubleshoot issues like inconsistent film thickness, color mismatches, and contamination. Handling robotic path optimization and calibrating flow rates to maintain surface finish quality are vital, especially when using multi-axis fan-style paint robots common in automotive component production.
Expertise in robotic programming, particularly with brands like Fanuc or ABB, combined with a deep understanding of spray atomization and electrostatic paint systems, distinguishes candidates. Proficiency in offline simulation tools and root cause analysis for paint defects is also critical for success in this niche engineering field.
Professionals in this role can advance into senior engineering positions, process optimization leadership, or cross-functional roles involving automation project management. The growing demand for innovative paint technologies in the automotive sector in Carrollton offers pathways toward specialized technical and managerial roles.
Crescent City Recruitment Group equips paint process engineers with access to cutting-edge robotic paint technology and fosters a collaborative environment emphasizing innovation. Their support includes integration with quality and maintenance teams, enhancing both programming expertise and process improvement initiatives.
This position uniquely blends hands-on robotic programming with process engineering in automotive component manufacturing. Crescent City Recruitment Group's focus on continuous improvement and lean manufacturing principles sets it apart, creating a dynamic work culture that values both technical skills and collaborative problem-solving.
Paint process engineers in Carrollton generally earn between $75,000 to $95,000 annually, depending on experience and specific expertise in robotic programming. The competitive pay reflects the region's manufacturing industry standards and the specialized nature of automotive paint process engineering roles.
Certifications aligned with automotive quality systems like IATF 16949 and ISO 9001 are highly valued in Georgia’s manufacturing sector. Familiarity with environmental and safety regulations related to paint operations also enhances a candidate’s suitability for paint process engineer positions in this region.
Carrollton’s location near Atlanta offers reasonable commute options, though candidates often consider traffic patterns and distance. The relatively lower competition in Carrollton compared to larger metro areas may positively influence hiring, attracting skilled engineers seeking balanced work-life proximity.
Daily responsibilities typically include programming robotic paths, adjusting paint flow parameters, monitoring coating quality, and collaborating with cross-functional teams to troubleshoot defects. Ensuring compliance with environmental and safety standards while optimizing process efficiency is integral to this role’s routine.