METHODS AND SYSTEMS FOR ANALYZING THE DEGRADATION AND FAILURE OF MECHANICAL SYSTEMS

Methods and systems for identifying, understanding, and predicting the degradation and failure of mechanical systems are disclosed. The methods include measuring and quantifying stressors that are responsible for the activation of degradation mechanisms in the machine component of interest. The inte...

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Hauptverfasser: SISK, DANIEL, R, HATLEY, DARREL, D, KIRIHARA, LESLIE, J, PETERS, TIMOTHY, J, JARRELL, DONALD, B
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HATLEY, DARREL, D
KIRIHARA, LESLIE, J
PETERS, TIMOTHY, J
JARRELL, DONALD, B
description Methods and systems for identifying, understanding, and predicting the degradation and failure of mechanical systems are disclosed. The methods include measuring and quantifying stressors that are responsible for the activation of degradation mechanisms in the machine component of interest. The intensity of the stressor may be correlated with the rate of physical degradation according to some determinable function such that a derivative relationship exists between the machine performance, degradation, and the underlying stressor. The derivative relationship may be used to make diagnostic and prognostic calculations concerning the performance and projected life of the machine. These calculations may be performed in real time to allow the machine operator to quickly adjust the operational parameters of the machinery in order to help minimize or eliminate the effects of the degradation mechanism, thereby prolonging the life of the machine. Various systems implementing the methods are also disclosed. Methods and systems for identifying, understanding, and predicting the degradation and failure of mechanical systems are disclosed. The methods include measuring and quantifying stressors that are responsible for the activation of degradation mechanisms in the machine component of interest. The intensity of the stressor may be correlated with the rate of physical degradation according to some determinable function such that a derivative relationship exists between the machine performance, degradation, and the underlying stressor. The derivative relationship may be used to make diagnostic and prognostic calculations concerning the performance and projected life of the machine. These calculations may be performed in real time to allow the machine operator to quickly adjust the operational parameters of the machinery in order to help minimize or eliminate the effects of the degradation mechanism, thereby prolonging the life of the machine. Various systems implementing the methods are also disclosed. L'invention concerne des procédés et des systèmes d'identification, de compréhension, et de prédiction de la dégradation et de la défaillance de systèmes mécaniques. Ces procédés consistent à mesurer et à quantifier les agresseurs responsables de l'activation des mécanismes de dégradation dans le composant de machine d'intérêt. L'intensité de l'agresseur peut être en corrélation avec la vitesse de dégradation physique selon certaines fonctions déterminables de sorte qu'il
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The methods include measuring and quantifying stressors that are responsible for the activation of degradation mechanisms in the machine component of interest. The intensity of the stressor may be correlated with the rate of physical degradation according to some determinable function such that a derivative relationship exists between the machine performance, degradation, and the underlying stressor. The derivative relationship may be used to make diagnostic and prognostic calculations concerning the performance and projected life of the machine. These calculations may be performed in real time to allow the machine operator to quickly adjust the operational parameters of the machinery in order to help minimize or eliminate the effects of the degradation mechanism, thereby prolonging the life of the machine. Various systems implementing the methods are also disclosed. Methods and systems for identifying, understanding, and predicting the degradation and failure of mechanical systems are disclosed. The methods include measuring and quantifying stressors that are responsible for the activation of degradation mechanisms in the machine component of interest. The intensity of the stressor may be correlated with the rate of physical degradation according to some determinable function such that a derivative relationship exists between the machine performance, degradation, and the underlying stressor. The derivative relationship may be used to make diagnostic and prognostic calculations concerning the performance and projected life of the machine. These calculations may be performed in real time to allow the machine operator to quickly adjust the operational parameters of the machinery in order to help minimize or eliminate the effects of the degradation mechanism, thereby prolonging the life of the machine. Various systems implementing the methods are also disclosed. L'invention concerne des procédés et des systèmes d'identification, de compréhension, et de prédiction de la dégradation et de la défaillance de systèmes mécaniques. Ces procédés consistent à mesurer et à quantifier les agresseurs responsables de l'activation des mécanismes de dégradation dans le composant de machine d'intérêt. L'intensité de l'agresseur peut être en corrélation avec la vitesse de dégradation physique selon certaines fonctions déterminables de sorte qu'il existe une relation dérivée entre la performance de la machine, la dégradation de celle-ci et l'agresseur sous-jacent. La relation dérivée peut être utilisée pour effectuer des calculs de diagnostic et de pronostic à propos de la performance et de la durée de vie envisagée de la machine. Ces calculs peuvent être exécutés en temps réel de façon à permettre à l'opérateur de la machine de régler rapidement les paramètres de fonctionnement de la machine afin de minimiser, voire d'éliminer, les effets du mécanisme de dégradation, et de prolonger ainsi la durée de vie de la machine. 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The methods include measuring and quantifying stressors that are responsible for the activation of degradation mechanisms in the machine component of interest. The intensity of the stressor may be correlated with the rate of physical degradation according to some determinable function such that a derivative relationship exists between the machine performance, degradation, and the underlying stressor. The derivative relationship may be used to make diagnostic and prognostic calculations concerning the performance and projected life of the machine. These calculations may be performed in real time to allow the machine operator to quickly adjust the operational parameters of the machinery in order to help minimize or eliminate the effects of the degradation mechanism, thereby prolonging the life of the machine. Various systems implementing the methods are also disclosed. Methods and systems for identifying, understanding, and predicting the degradation and failure of mechanical systems are disclosed. The methods include measuring and quantifying stressors that are responsible for the activation of degradation mechanisms in the machine component of interest. The intensity of the stressor may be correlated with the rate of physical degradation according to some determinable function such that a derivative relationship exists between the machine performance, degradation, and the underlying stressor. The derivative relationship may be used to make diagnostic and prognostic calculations concerning the performance and projected life of the machine. These calculations may be performed in real time to allow the machine operator to quickly adjust the operational parameters of the machinery in order to help minimize or eliminate the effects of the degradation mechanism, thereby prolonging the life of the machine. Various systems implementing the methods are also disclosed. L'invention concerne des procédés et des systèmes d'identification, de compréhension, et de prédiction de la dégradation et de la défaillance de systèmes mécaniques. Ces procédés consistent à mesurer et à quantifier les agresseurs responsables de l'activation des mécanismes de dégradation dans le composant de machine d'intérêt. L'intensité de l'agresseur peut être en corrélation avec la vitesse de dégradation physique selon certaines fonctions déterminables de sorte qu'il existe une relation dérivée entre la performance de la machine, la dégradation de celle-ci et l'agresseur sous-jacent. La relation dérivée peut être utilisée pour effectuer des calculs de diagnostic et de pronostic à propos de la performance et de la durée de vie envisagée de la machine. Ces calculs peuvent être exécutés en temps réel de façon à permettre à l'opérateur de la machine de régler rapidement les paramètres de fonctionnement de la machine afin de minimiser, voire d'éliminer, les effets du mécanisme de dégradation, et de prolonger ainsi la durée de vie de la machine. 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The methods include measuring and quantifying stressors that are responsible for the activation of degradation mechanisms in the machine component of interest. The intensity of the stressor may be correlated with the rate of physical degradation according to some determinable function such that a derivative relationship exists between the machine performance, degradation, and the underlying stressor. The derivative relationship may be used to make diagnostic and prognostic calculations concerning the performance and projected life of the machine. These calculations may be performed in real time to allow the machine operator to quickly adjust the operational parameters of the machinery in order to help minimize or eliminate the effects of the degradation mechanism, thereby prolonging the life of the machine. Various systems implementing the methods are also disclosed. Methods and systems for identifying, understanding, and predicting the degradation and failure of mechanical systems are disclosed. The methods include measuring and quantifying stressors that are responsible for the activation of degradation mechanisms in the machine component of interest. The intensity of the stressor may be correlated with the rate of physical degradation according to some determinable function such that a derivative relationship exists between the machine performance, degradation, and the underlying stressor. The derivative relationship may be used to make diagnostic and prognostic calculations concerning the performance and projected life of the machine. These calculations may be performed in real time to allow the machine operator to quickly adjust the operational parameters of the machinery in order to help minimize or eliminate the effects of the degradation mechanism, thereby prolonging the life of the machine. Various systems implementing the methods are also disclosed. L'invention concerne des procédés et des systèmes d'identification, de compréhension, et de prédiction de la dégradation et de la défaillance de systèmes mécaniques. Ces procédés consistent à mesurer et à quantifier les agresseurs responsables de l'activation des mécanismes de dégradation dans le composant de machine d'intérêt. L'intensité de l'agresseur peut être en corrélation avec la vitesse de dégradation physique selon certaines fonctions déterminables de sorte qu'il existe une relation dérivée entre la performance de la machine, la dégradation de celle-ci et l'agresseur sous-jacent. La relation dérivée peut être utilisée pour effectuer des calculs de diagnostic et de pronostic à propos de la performance et de la durée de vie envisagée de la machine. Ces calculs peuvent être exécutés en temps réel de façon à permettre à l'opérateur de la machine de régler rapidement les paramètres de fonctionnement de la machine afin de minimiser, voire d'éliminer, les effets du mécanisme de dégradation, et de prolonger ainsi la durée de vie de la machine. Plusieurs systèmes utilisant ces procédés sont décrits.</abstract><edition>7</edition><oa>free_for_read</oa></addata></record>
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subjects CONTROL OR REGULATING SYSTEMS IN GENERAL
CONTROLLING
FUNCTIONAL ELEMENTS OF SUCH SYSTEMS
MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS ORELEMENTS
PHYSICS
REGULATING
title METHODS AND SYSTEMS FOR ANALYZING THE DEGRADATION AND FAILURE OF MECHANICAL SYSTEMS
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