Reliability Engineer
AIC -
Nasr City, CairoPosted 6 years ago53Applicants for1 open position
- 13Viewed
- 0In Consideration
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Job Description
- Provide engineered solutions to complex equipment problems.
- Identify and set priorities on opportunities for reliability improvement by mining information using reliability databases.
- Statistically analyze equipment and process performance to assess reliability, maintainability, and availability.
- Lead maintenance planning and process procedure improvements via reliability tools.
- Translate reliability opportunities into bottom-line cost savings and top-line growth (e.g., implement Six Sigma work processes in support of reliability projects and high-impact projects to deliver bottom line cost reductions).
- Provide training and facilitation on root cause failure analysis with maintenance and production personnel.
- Provide training and facilitation on root cause failure analysis with maintenance and production personnel.
- Provide training and facilitation failure modes and effects analysis (FMEA), a process by which maintenance strategies are developing identifying known and likely failure modes and what their effects on a system, with maintenance and production personnel.
- Provide “design for reliability” input to capital projects.
- Provide technical leadership at all levels of the plant organization with special emphasis on interacting with maintenance crews.
Job Requirements
Job Knowledge
- The minimum requirement is the completion of Bachelor’s degree in Engineering and three (3) years working experience in all facets of reliability engineering works and of the following:
- Strong basic engineering skills (mechanical, electrical, industrial, and materials).
- Solid verbal and written communication skills.
- Robust computer skills (at a minimum, Work, Access, Advanced Excel, and PowerPoint).
- Effective interpersonal skills and the ability to work with and lead loosely knit, cross-functional working teams.
- Basic skill in root cause analysis work process methods and tools.
- Proven facilitation and group leadership experience and skills.
- Skills in basic reliability engineering principles, such as mechanical components and systems; properly categorizing and analyzing failure data and modes; translating failure data to cost; FMEA; fault tree analysis; data mining and management; reliability growth methods (Crow-AMSAA); failure reporting and analysis (FRACAS); basic reliability models, block diagrams, impact on reliability; and availability, reliability and maintainability.
- Practical statistical analysis skills, including failure statistics (normal, exponential, lognormal, binomial, Poisson); failure rates, hazard rates, expected life, MTTF, MTBF, MTTR, MTBM; and Weibull analysis.
- Basic understanding of common predictive technologies: vibration analysis, lubrication, thermography, motor analysis, ultrasonics, machinery analysis, alignment and balancing procedures, and fixed equipment diagnostic technologies.
- Project value identification, including the ability to convert the cost of unreliability into bottom –line profit, and apply reliability business case tools.
- Lean and Six Sigma skills are a plus.