Find Jobs
Find Jobs Near You – Available Work in Your Location
Skip to job details
PG
PIP Global Safety
Reliability Engineer
Career Insights for Reliability Engineer
See where this job fits in the broader career landscape. Knowing your career path helps you see what's possible from here.
Scorecard
Based on South Carolina data
Review key factors to help you decide if this role fits your goals. How is this calculated?
What they do
A Reliability Engineer evaluates and analyzes the reliability of manufacturing and production equipment and processes. Identifies pro-active maintenance requirements and process improvements. Works to maximize reliable performance and prevent equipment or process failures.
$108,031 / year median in South Carolina
+10% projected growth
Job Description
The Reliability Engineer is responsible for driving equipment reliability, maintainability, availability, and safety across the facility in alignment with Process Safety Management (PSM) standards. This role ensures that manufacturing assets are designed, maintained, and improved to meet production demands while optimizing downtime/maintenance costs, safeguarding personnel/environment, while also designing mechanical improvements, replacement components, and new equipment using modern CAD tools. 1. Reliability & Asset Performance Develop and implement equipment reliability strategies to improve overall equipment effectiveness (OEE). Perform root cause failure analysis (RCFA) and recommend corrective actions for recurring equipment issues. Lead predictive and preventive maintenance programs, including vibration analysis, oil analysis, thermography, and ultrasonic testing. Analyze downtime trends, failure modes, and maintenance history to identify improvement opportunities. Support predictive and preventative maintenance strategies. Develop equipment reliability dashboards. 2. Process Safety Management (PSM) Compliance Ensure all reliability and maintenance practices comply with
OSHA 1910.119
Process Safety Management standards. Support the Mechanical Integrity (MI) element of PSM by maintaining accurate asset records, inspection schedules, and repair documentation. Collaborate with engineering and operations to ensure equipment changes follow Management of Change (MOC) procedures. Participate in Process Hazard Analysis (PHA) and Layer of Protection Analysis (LOPA) reviews to identify and mitigate reliability risks. 3. Maintenance Strategy & Optimization Develop and maintain equipment criticality rankings and risk-based maintenance plans. Partner with operations and maintenance teams to optimize spare parts management and reduce mean time to repair (MTTR). Recommend upgrades, redesigns, or replacements for equipment with persistent reliability concerns. Provide technical expertise during equipment overhauls, turnarounds, and shutdowns. 4. Mechanical Design & Equipment Development Design machine modifications to improve safety, reliability, and productivity. Create mechanical designs using CAD software. Produce fabrication drawings and assembly documentation. Design replacement components when OEM parts are unavailable or cost prohibitive. Reverse engineer obsolete machine components. Develop concepts for new production equipment, tooling, fixtures, and work-holding devices. Evaluate commercially available equipment and customize designs for plant applications. Lead small to medium-sized equipment improvement projects. 5. Continuous Improvement & Training Drive continuous improvement initiatives to enhance equipment life cycle and reduce unplanned outages. Develop training materials and mentor maintenance technicians on reliability best practices and PSM mechanical integrity requirements. Evaluate and implement emerging technologies to enhance asset reliability and monitoring capabilities. Recommend equipment upgrades based on reliability data.CORE SKILLS/COMPETENCY REQUIREMENTS
Required:
Bachelors degree in Mechanic Engineering, Manufacturing Engineering or related engineering discipline. Reliability Engineering Methods- Skilled in FMEA (Failure Modes and Effects Analysis), RCM (Reliability Centered Maintenance), and root cause analysis techniques. Mechanical Integrity Compliance
- Strong understanding of PSM mechanical integrity requirements, inspection intervals, and repair standards. Asset Performance Analytics
- Ability to interpret downtime data, MTBF/MTTR trends, and maintenance cost drivers to identify improvement opportunities. Risk-Based Maintenance
- Knowledge of criticality ranking, risk assessments, and life cycle cost analysis. PSM Compliance
- Familiarity with
OSHA 29 CFR 1910.119
standards and how they apply to reliability and maintenance activities. Analytical Thinking- Strong troubleshooting ability to resolve complex equipment issues.
Requirements:
Reliability Engineering Methods- Skilled in FMEA (Failure Modes and Effects Analysis), RCM (Reliability Centered Maintenance), and root cause analysis techniques. Predictive & Preventive Maintenance
- Proficiency in vibration analysis, oil analysis, thermography, ultrasound, and other condition-monitoring tools. Mechanical Integrity Compliance
- Strong understanding of PSM mechanical integrity requirements, inspection intervals, and repair standards. Asset Performance Analytics
- Ability to interpret downtime data, MTBF/MTTR trends, and maintenance cost drivers to identify improvement opportunities. CMMS Expertise
- Proficient in using Computerized Maintenance Management Systems for asset tracking, work orders, and reporting.