Reliability Engineer

undefined ago • 2-3 Years • Software Development & Engineering

Job Summary

Job Description

To lead and align reliability strategies that improve asset performance, reduce operational risk, and extend equipment life across all manufacturing and operational areas. This role focuses on establishing consistent reliability engineering practices, optimizing asset lifecycle and performance, driving predictive maintenance, leading root cause analysis, building regional capability, and aligning reliability with operational and sustainability goals.
Must have:
  • Global deployment of standardized RCA, RCM, and PdM methodologies
  • Reduction in variability of equipment failure modes across sites
  • Adoption of shared best practices and continuous improvement tools globally
  • Year-over-year improvement in asset performance indicators (MTBF, MTTR, OEE)
  • Documented reduction in lifecycle costs of key asset classes
  • Global asset strategies created and reviewed annually
  • Increased use and ROI of vibration analysis, thermography, ultrasound, and oil analysis
  • Decrease in unplanned downtime and reactive maintenance globally
  • Integration of condition data into CMMS and decision-making tools
  • All critical failures have RCAs completed within defined timeline
  • Action plans tracked and implemented with accountability
  • Lessons learned repository developed and leveraged across all sites
  • Reliability training programs delivered regularly
  • Positive feedback from site leadership on engagement and knowledge transfer
  • Increase in proactive vs. reactive maintenance ratio across regions
  • Reduction in reliability-related environmental or safety incidents
  • Energy and resource efficiency gains linked to reliability upgrades
  • Reliability initiatives tied to sustainability and corporate KPI dashboards

Job Details

Description

Process Success Profile

Language: English

Travel: 10% - 15%

To lead and align reliability strategies that improve asset performance, reduce operational risk, and extend equipment life across all manufacturing and operational areas.

Outcome: Establish consistent reliability engineering practices, tools, and metrics across regions to drive equipment effectiveness and reduce failure variability.

Actions:

  • Global deployment of standardized RCA, RCM, and PdM methodologies
  • Reduction in variability of equipment failure modes across sites
  • Adoption of shared best practices and continuous improvement tools globally

Outcome: Optimize Asset: Life Cycle and Performance

Develop and deploy asset strategies that reduce total cost of ownership while maximizing uptime and performance reliability of critical assets.

Actions:

  • Year-over-year improvement in asset performance indicators (MTBF, MTTR, OEE)
  • Documented reduction in lifecycle costs of key asset classes
  • Global asset strategies created and reviewed annually

Outcome: Drive Predictive Maintenance and Condition Monitoring Initiatives

Expand and optimize the use of predictive maintenance technologies and data analytics across all departments to proactively address equipment degradation.

Actions:

  • Increased use and ROI of vibration analysis, thermography, ultrasound, and oil analysis
  • Decrease in unplanned downtime and reactive maintenance globally
  • Integration of condition data into CMMS and decision-making tools

Outcome: Lead Root Cause and Failure Analysis Ensure high-impact failures are investigated with corrective actions implemented and knowledge shared across sites to prevent recurrence.

Actions:

  • All critical failures have RCAs completed within defined timeline
  • Action plans tracked and implemented with accountability
  • Lessons learned repository developed and leveraged across all sites

Outcome: Build Regional Capability and Reliability Culture Train in reliability practices and tools, fostering a culture of ownership and continuous improvement.

Actions:

  • Reliability training programs delivered regularly
  • Positive feedback from site leadership on engagement and knowledge transfer
  • Increase in proactive vs. reactive maintenance ratio across regions

Outcome: Align Reliability with Operational and Sustainability Goals Support objectives by aligning reliability improvements with safety, environmental, and production targets.

Actions:

  • Reduction in reliability-related environmental or safety incidents
  • Energy and resource efficiency gains linked to reliability upgrades
  • Reliability initiatives tied to sustainability and corporate KPI dashboards

Competency

  • Optimizes Work Processes - Knowing the most effective and efficient processes to get things done, with a focus on continuous improvement
  • Collaborates - Building partnerships and working collaboratively with others to meet shared objectives
  • Customer Focus - Building strong customer relationships and delivering customer-centric solutions
  • Nimble Learning - Actively learning through experimentation when tackling new problems, using both successes and failures as learning fodder
  • Financial Acumen - Interpreting and applying understanding of key financial indicators to make better business decisions

Education Requirements

Bachelor's Degree in Mechanical Engineering, Electrical Engineering, Industrial Engineering, or related technical field

Experience

2 - 3 years

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