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  2. Shock pulse method - Wikipedia

    en.wikipedia.org/wiki/Shock_pulse_method

    Shock pulse method (SPM) is a technique for using signals from rotating rolling bearings as the basis for efficient condition monitoring of machines. From the innovation of the method in 1969 it has been further developed and broadened and is a worldwide accepted philosophy for condition monitoring of rolling bearings and machine maintenance.

  3. CNC machine tool monitoring by AE sensors - Wikipedia

    en.wikipedia.org/wiki/CNC_machine_tool...

    A machine tool monitoring system is a flow of information and system processing in which the information selection, obtaining data, processing of information and decision making on the refined information are integrated. The aim of tool condition monitoring is to detect early the disturbances in the machining process and wear of machine tool ...

  4. Condition monitoring - Wikipedia

    en.wikipedia.org/wiki/Condition_monitoring

    Condition monitoring by a simple head-flow test near duty point using repeatable measurements has long been used but could be more widely adopted. An extension of this method can be used to calculate the best time to overhaul a pump based on balancing the cost of overhaul against the increasing energy consumption that occurs as a pump wears.

  5. Predictive maintenance - Wikipedia

    en.wikipedia.org/wiki/Predictive_maintenance

    Predictive maintenance evaluates the condition of equipment by performing periodic (offline) or continuous (online) equipment condition monitoring.The ultimate goal of the approach is to perform maintenance at a scheduled point in time when the maintenance activity is most cost-effective and before the equipment loses performance within a threshold.

  6. Proactive maintenance - Wikipedia

    en.wikipedia.org/wiki/Proactive_maintenance

    Proactive maintenance depends on rigorous machine inspection and condition monitoring.

  7. Deformation monitoring - Wikipedia

    en.wikipedia.org/wiki/Deformation_monitoring

    Manual deformation monitoring is the operation of sensors or instruments by hand or manual downloading of collected data from deformation monitoring instruments. Automatic deformation monitoring operation of a group of software and hardware elements for deformation monitoring that, once set up, does not require human input to function.

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