2013•Unpublished venueRequires access

Analysis of the condition based monitoring system for heavy industrial machineries

Krishna Kant Agrawal, Garima Pandey, Kannan Chandrasekaran

Open publisher page 15 citations

Abstract

Condition monitoring of Industrial machines typically relies on being able to detect the disparity between a healthy machine and a faulty one. An accurate interpretation of a machine's condition requires knowledge of the effects of different operating conditions. Phrase Condition monitoring is sometimes used in combination with predictive maintenance which is maintenance of machines based on a signature that a problem is about to occur. In current scenario many industries is replacing predictive maintenance with run-to-breakdown maintenance and in some cases with preventive maintenance, where mechanical parts are replaced periodically regardless of the machinery mechanical condition. There are a lot of practices available and discussed in this paper for condition monitoring but measuring vibration is one of the most essential in detecting and diagnoses any deviation from usual machine conditions. Vibration monitoring of Machinery is the most effectual technique, used to track operating conditions of machines which will further reduce maintenance costs and subsequent downtime caused by catastrophic failure of machineries of the Industry simultaneously. This Research ponders upon different condition based monitoring techniques available and state of the art development for identifying the most effective technique in diverse scenarios.

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What this paper is about

Condition monitoring of Industrial machines typically relies on being able to detect the disparity between a healthy machine and a faulty one. An accurate interpretation of a machine's condition requires knowledge of the effects of different operating conditions. Phrase Condition monitoring is sometimes used in combination with predictive maintenance which is maintenance of machines based on a signature that a problem is about to occur. In current scenario many industries is replacing predictive maintenance with run-to-breakdown maintenance and in some cases with preventive maintenance, where mechanical parts are replaced periodically regardless of the machinery mechanical condition. There are a lot of practices available and discussed in this paper for condition monitoring but measuring vibration is one of the most essential in detecting and diagnoses any deviation from usual machine conditions. Vibration monitoring of Machinery is the most effectual technique, used to track operating conditions of machines which will further reduce maintenance costs and subsequent downtime caused by catastrophic failure of machineries of the Industry simultaneously. This Research ponders upon different condition based monitoring techniques available and state of the art development for identifying the most effective technique in diverse scenarios.

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OpenAlex reports 15 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Condition monitoring of Industrial machines typically relies on being able to detect the disparity between a healthy machine and a faulty one. An accurate interpretation of a machine's condition requires knowledge of the effects of different operating conditions. Phrase Condition monitoring is sometimes used in combination with predictive maintenance which is maintenance of machines based on a signature that a problem is about to occur. In current scenario many industries is replacing predictive maintenance with run-to-breakdown maintenance and in some cases with preventive maintenance, where mechanical parts are replaced periodically regardless of the machinery mechanical condition. There are a lot of practices available and discussed in this paper for condition monitoring but measuring vibration is one of the most essential in detecting and diagnoses any deviation from usual machine conditions. Vibration monitoring of Machinery is the most effectual technique, used to track operating conditions of machines which will further reduce maintenance costs and subsequent downtime caused by catastrophic failure of machineries of the Industry simultaneously. This Research ponders upon different condition based monitoring techniques available and state of the art development for identifying the most effective technique in diverse scenarios.

Key concepts: Downtime, Condition monitoring, Condition-based maintenance, Predictive maintenance, Preventive maintenance, Reliability engineering, Computer science, Fault (geology)

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