Unlock the Power of SmartCBM® for Unmatched Reliability and Performance
Unlock the power of SmartCBM® to optimize asset performance, reduce risks, and drive measurable results. Learn how to implement a comprehensive condition-based maintenance strategy.

Unplanned downtime, safety risks, and wasted resources are challenges no operation can afford. Watch this on-demand webinar to explore SmartCBM®, Allied Reliability’s comprehensive condition-based maintenance (CBMCondition Based Maintenance) solution, designed to optimize asset performance, reduce risks, and drive measurable results.
Discover how SmartCBM integrates cutting-edge condition monitoring and enterprise asset managementInformation system that integrates all asset-related applications for an entire enterprise. Incorporates at least maintenance management, financial / budgeting, materials management, and reliability functionality. technologies, advanced data analytics, and over two decades of reliability expertise to identify and address component defects before they escalate. In this session, you’ll learn how the platform:
- Combines predictive maintenanceThe use of instruments and analysis to determine equipment condition in order to predict failure before it takes place so corrective maintenance can be done in a planned and scheduled fashion. Examples include vibration analysis, oil analysis, thermography, airborne ultrasonic’s, NDT, motor current signature analysis, trending of process parameters, etc. technologies with statistical process control and specific failure-mode-driven repair recommendations.
- Provides actionable insights using data from asset management systems, condition monitoring, and operational sources.
- Leverages a proprietary failure modeOne event causing a functional failure; the different ways a component can fail to perform as intended. library containing over three million failure modes from components across 1,500+ facilities.
- Offers flexible data collection techniques, from manual inspections to wireless sensor-based monitoring.
- Captures and presents KPIs to quantify the ROIReturn on Investment of your reliability efforts.
We also dive into the importance of a comprehensive condition monitoring strategy, featuring techniques such as vibration analysisThis Predictive Maintenance technique is widely used to evaluate mechanical rotating equipment to determine if any undesirable changes are present that might give an early indication of imminent failure. Uses transducers to translate a vibration amplitude and frequency into electronic signals to determine the equipment’s actual condition. This may lead to the recommendation of a logical course of maintenance actions to correct the problem before secondary damage or catastrophic failure can occur. Additionally Vibration Analysis can be used for the modeling, prediction, measurement and analysis of structural dynamic response in design and root cause failure analysis. In design, vibration modeling and prediction is used to anticipate and avoid undesirable dynamic response. In root cause failure analysis it is used both to understand undesirable response and as a factor in determining true root cause., infrared thermographyA predicitive maintenance method that detects infrared energy emitted from an object, converts it to temperature, and displays an image of the temperature distribution., ultrasoundSimilar to vibration analysis, ultrasound is a sound wave or frequency generated by the release of energy. As a predictive maintenance technology, ultrasonic testing can be both passive, listening, or active by emitting an ultrasonic pulse and analyzing the echo return. Ultrasound is often used to find compressed air or steam leaks, or to identify structural defects within a material., and more to detect subtle changes in asset performance.



