Improve your experience. We are very sorry but this website does not support Internet Explorer. We recommend using a different browser that is supported such as Google Chrome or Mozilla Firefox.

CBM - Condition Based Maintenance

This short one-day course gives an overview of Condition Monitoring and a Condition-Based Maintenance strategy.

Description

CM technologies covered are Vibration analysis, Ultrasound, Oil Analysis, Infrared Thermography, Visual Inspections, Performance data, Non-Destructive Testing (NDT) and Electrical Equipment testing.

Condition monitoring plays a key role in the reliability improvement program. At the least, it is used to provide a warning of future failures so that corrective maintenance can be planned. In a true reliability-based maintenance program, condition monitoring is an integral part of the planning and scheduling process. In a more enlightened program, it is used to detect the root causes of failure so they may be avoided, and it is used for quality assurance and quality control (acceptance testing when purchasing new equipment and for verifying the quality of work performed on-site).

This course provides a summary of the major technical areas of condition monitoring: vibration analysis, ultrasound analysis, oil analysis and wear particle analysis, infrared thermography, inspections, performance monitoring, NDT, and electrical equipment testing (including electric motors and transformers – additional electrical applications are covered under ultrasound and infrared thermography).

Thanks to the use of the Mobius Institute simulations and animations, students will find it very easy to understand the condition monitoring technologies.

These lesson modules were taken from the Asset Reliability Practitioner ARP[E] course for Reliability Engineers, but this course will also be of interest to maintenance managers (and planners/schedulers) and condition monitoring practitioners.

Please note that the “Asset Strategy Development” course provides a very useful background on how the appropriate condition monitoring technologies should be chosen as part of the overall maintenance plan and the philosophy of condition-based maintenance.
It would be extremely useful to take this course or complete the while ARP [E] Reliability Engineer course.

The course includes approximately 5 hours of video lessons, delivered by Jason Tranter, the founder and CEO of Mobius Institute.

Fee

$450 plus GST = $495

Similar courses

ARP [L] Reliability Leader - Public Classroom Course

Asset Reliability Practitioner [L] for Reliability Managers

More Information
ARP [E] Reliability Engineer - Public Classroom Course

ARP [E] is a 5-day course with Certification Exam on the afternoon of the last day.

More Information
ARP [E] Reliability Engineer - On-Line Course. Four months to complete.

Students can enroll anytime - course starts 1 week after enrolment

More Information
ARP [L] Reliability Leader - On-Line Course. Four months to complete.

Students can enroll anytime - course starts 1 week after enrolment

More Information
ARP [A] Reliability Advocate - On-Line Course. Four months to complete.

Students can enroll anytime - course starts 1 week after enrolment

More Information
ARP [E] Reliability Engineer - Public Classroom Course

ARP [E] Reliability Engineer Classroom Course and Exam

More Information
Precision in-situ Balancing

This 1-day course provides step-by-step training in precision balancing in the field - understanding the physics of imbalance and safely correcting the imbalance.

More Information
Asset Strategy Development

This 1-day course gives an overview of the steps required to develop an effective asset maintenance strategy.

More Information
Asset Criticality Ranking and Pareto Analysis

This 1/2 -day course gives an overview of the concepts of risk, consequences, likelihood of failure & prioritizing using an Asset Criticality Ranking & Pareto analysis.

More Information
Precision and Proactive Maintenance

This 1-day course gives an overview of the main causes of equipment unreliability and how a focus on precision can help achieve the intended design life.

More Information
Reliability Engineering and Data Analytics

This 1-day course gives an overview of the various ways to analyse failure data to be able to understand failure patterns and make data-based decisions.

More Information

Press enter to see more results