Method for controlling a spray process
First Claim
1. A method for controlling a spray process, the method comprising:
- measuring a particle property associated with a spray jet of particles;
calculating a centroid for the measured particle property;
using the calculated centroid as a control parameter for controlling the spray process;
measuring temperature, speed and flow rate of at least one ensemble of particles associated with the spray jet of particles;
calculating temperature, speed and flow rate centroids for the measured temperature, speed and flow rate of the at least one ensemble of particles;
plotting the calculated centroids to define a triangle; and
adjusting at least one operating parameter associated with the spray process to reduce an area of the triangle.
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Accused Products
Abstract
A method is provided for controlling a spray process that may include measuring a particle property associated with a spray jet of particles, calculating a centroid for the measured particle property and using the calculated centroid as a control parameter for controlling the spray process. At least one operating parameter associated with the spray process may be adjusted in response to the calculated centroid to change a trajectory of at least a portion of the particles within the spray jet of particles. The operating parameter may be adjusted so that an ensemble of particles having the highest measured temperature and an ensemble of particles having the highest measured velocity and an ensemble of particles having the highest measured flow rate are moved more closely together to create a common region proximate a surface of a substrate to be coated by the spray process. This may be done manually prior to a coating run or continuously during a run using a closed-loop feedback circuit (43) in a computer-controlled (38) spray system.
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Citations
13 Claims
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1. A method for controlling a spray process, the method comprising:
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measuring a particle property associated with a spray jet of particles;
calculating a centroid for the measured particle property;
using the calculated centroid as a control parameter for controlling the spray process;
measuring temperature, speed and flow rate of at least one ensemble of particles associated with the spray jet of particles;
calculating temperature, speed and flow rate centroids for the measured temperature, speed and flow rate of the at least one ensemble of particles;
plotting the calculated centroids to define a triangle; and
adjusting at least one operating parameter associated with the spray process to reduce an area of the triangle.
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2. A method for controlling a spray process, the method comprising:
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measuring a particle property associated with a spray jet of particles;
calculating a centroid for the measured particle property;
using the calculated centroid as a control parameter for controlling the spray process;
measuring temperature, speed and flow rate of at least one ensemble of particles associated with the spray jet of particles;
calculating temperature, speed and flow rate centroids for the measured temperature, speed and flow rate of the at least one ensemble of particles; and
adjusting at least one operating parameter associated with the spray process to change a trajectory of at least one ensemble of particles associated with the spray jet of particles; and
adjusting the at least one operating parameter so that an ensemble of particles having the highest measured temperature and an ensemble of particles having the highest measured velocity and an ensemble of particles having the highest measured flow rate are moved more closely together within the spray jet.
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3. A method for controlling a spray process, the method comprising:
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measuring a particle property associated with a spray jet of particles;
calculating a centroid for the measured particle property;
using the calculated centroid as a control parameter for controlling the spray process; and
adjusting at least one operating parameter associated with the spray process in response to the calculated centroid so that an ensemble of particles having the highest measured temperature and an ensemble of particles having the highest measured velocity and an ensemble of particles having the highest measured flow rate form a common region within the spray jet proximate a surface of a substrate.
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4. A method for controlling a spray process, the method comprising:
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measuring a particle property associated with a spray jet of particles;
calculating a centroid for the measured particle property;
using the calculated centroid as a control parameter for controlling the spray process;
determining whether an ensemble of particles in the spray jet having the highest temperature and an ensemble of particles in the spray jet having the highest speed and an ensemble of particles in the spray jet having the highest flow rate are coincident within the spray jet; and
using the calculated centroid to change a trajectory of at least a portion of the particles of the spray jet if the respective ensembles of particles are not coincident within the spray jet.
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5. A method for controlling a spray process, the method comprising:
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measuring a plurality of particle properties associated with a spray jet of particles;
calculating a centroid for each measured property;
using the calculated centroids as a control parameter for controlling the spray process; and
adjusting at least one operating parameter associated with the spray process in response to the calculated centroids so that the spray process produces a spray jet within which an ensemble of particles having the highest temperature and an ensemble of particles having the highest velocity and an ensemble of particles having the highest flow rate define respective trajectories that form a common region within the spray jet proximate a surface of a substrate.
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6. A method for controlling a spray process, the method comprising:
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measuring a plurality of particle properties associated with a spray jet of particles;
calculating a centroid for each measured property;
using the calculated centroids as a control parameter for controlling the spray process;
plotting the calculated centroids to define a triangle; and
adjusting at least one operating parameter associated with the spray process to reduce an area of the triangle. - View Dependent Claims (7)
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8. A method for controlling a spray process of a hot spray system that uses a continuous heat source for partially and/or fully melting particles, a feedstock of particles to be propelled within a spray jet, a continuous delivery system for delivering particles from the feedstock into the heat source to form a spray jet of particles, the method comprising:
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determining whether an ensemble of particles having the highest temperature and an ensemble of particles having the highest velocity and an ensemble of particles having the highest flow rate form a common region within the spray jet of particles; and
adjusting at least one operating parameter associated with the hot spray system in the event the respective ensembles of particles do not form the common region. - View Dependent Claims (9, 10, 11, 12, 13)
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Specification