摘要:
The invention relates to an ultrasonic standing-wave atomizer arrangement for producing a paint spray mist for painting a workpiece, with at least one sonotrode, with a component arranged lying opposite the at least one sonotrode, a standing ultrasonic field being formed in the intermediate space between the at least one sonotrode and the component in the case of operation, and also with at least one nozzle-shaped paint feeding device, which arranged perpendicularly in relation to the center axis of each sonotrode and introduces the paint into the intermediate space for the atomizing process at at least one paint discharge point, the component arranged lying opposite the at least one sonotrode being a coaxially aligned reflector.
摘要:
The invention relates to an ultrasonic standing-wave atomizer arrangement for producing a paint spray mist for painting a workpiece, with a sonotrode, with a component arranged lying opposite the sonotrode, a standing ultrasonic field being formed in the intermediate space between the at least one sonotrode and the component in the case of operation. At least one nozzle-shaped paint feeding device is arranged perpendicularly in relation to the center axis of the sonotrode and introduces the paint into the intermediate space for the atomizing process at least one paint discharge point, the component arranged lying opposite the sonotrode being a coaxially aligned reflector, and the end face of the latter, facing the sonotrode, having a step-shaped recessed formation and the depth of said recessed formation corresponding to a multiple of half the wavelength λ of the sonic vibrations in air that are produced in the sonotrode.
摘要:
The invention relates to an ultrasonic standing-wave atomizer arrangement for producing a paint spray mist for painting a workpiece, with a sonotrode, with a component arranged lying opposite the sonotrode, a standing ultrasonic field being formed in the intermediate space between the sonotrode and the component in the case of operation, and with at least one paint feeding device, which introduces the paint into the intermediate space for the atomizing process at at least one paint discharge point. An air supply device, interacts with at least one air distribution device. The air distribution device has a number of clearances, which serve for blowing out air, the clearances being arranged in such a way that between the at least one paint discharge point and the sonotrode, and also between the at least one paint discharge point and the component, there is formed at least one region with a blocking air flow, by which air flow wetting of the sonotrode or of the component with paint is substantially avoided.
摘要:
The invention relates to an ultrasonic standing-wave atomizer arrangement for producing a paint spray mist for painting a workpiece, with a sonotrode, with a component arranged lying opposite the sonotrode, a standing ultrasonic field being formed in the intermediate space between the at least one sonotrode and the component in the case of operation. At least one nozzle-shaped paint feeding device is arranged perpendicularly in relation to the center axis of the sonotrode and introduces the paint into the intermediate space for the atomizing process at at least one paint discharge point, the component arranged lying opposite the sonotrode being a coaxially aligned reflector, and the end face of the latter, facing the sonotrode, having a step-shaped recessed formation and the depth of said recessed formation corresponding to a multiple of half the wavelength λ of the sonic vibrations in air that are produced in the sonotrode.
摘要:
A rotary atomizing head type coating machine which is arranged to prevent occurrence of spark discharges, including a rotational shaft (9) which is formed of an insulating material, a rotary atomizing head (11) which is likewise formed of an insulating material and mounted on a fore end portion of the rotational shaft (9). An on-head semi-conductive coat film (14) is formed on outer peripheral surfaces of the rotary atomizing head (11). On the other hand, a first arcuate coat film (16) is formed on a first limiter ring (15) which is provided on a motor body (6), and a second arcuate coat film (18) is formed on a second limiter ring (17) which is provided on the rotary atomizing head (11). Further, a power supply semi-conductive coat film (19) is formed on and around outer peripheral surfaces of the rotational shaft (9) between the arcuate coat films (16) and (18). A high voltage which is applied to the air motor 5 is supplied to paint releasing edges (12E) of the rotary atomizing head (11) through the first arcuate coat film (16), power supply semi-conductive coat film (19), second arcuate coat film (18) and on-head semi-conductive coat film (14).
摘要:
A method for determining spraying parameters for controlling a paint-spraying apparatus using a spraying agent is disclosed. A known spray pattern is provided which has been determined by means of known spraying parameters for the use of a first spraying agent. A provisional spray pattern is calculated using the known spraying parameters and the characteristics of a second spraying agent. The known spraying parameters are altered in order to acquire changed spraying parameters which yield a further spray pattern. The changed spraying parameters are altered to the point where the further spray pattern is similar to the known spray pattern within a similarity criterion. The changed spraying parameters corresponding to the further spray pattern are intended as spraying parameters for the second spraying agent and are provided to the paint-spraying apparatus whenever the second spraying agent is used. The spraying parameters comprise a plurality of air currents which influence the spraying behavior of the paint-spraying apparatus.
摘要:
A method for determining of spraying parameters for controlling a painting appliance which sprays and is moved over an area to be painted, in particular a robot with a painting application. A known spraying map is produced, using known spraying parameters and paint amount, for a predetermined movement speed of the painting appliance, and a paint amount is matched to a new movement speed in comparison to the predetermined movement speed. Furthermore, new spraying parameters are calculated for the adapted paint amount, while maintaining a spraying map which is similar to the known spraying map.
摘要:
An arrangement for coating a workpiece with a working surface comprises a movement rail and a lacquering robot. The movement rail is moveable relative to a stationary reference point parallel to the working surface. The lacquering robot is disposed on the movement rail and is moveable on the movement rail. A lacquering cabin for coating a workpiece comprises at least two chassis parallel to one another and a lacquering apparatus with an opening. The lacquering apparatus is supported on the two chassis and is moveable with the chassis. A method for coating a workpiece using a lacquering cabin comprises subdividing the workpiece into adjacent sections, moving the lacquering cabin to a position corresponding to a section, and coating the section.
摘要:
The disclosure relates to a method for determining of spraying parameters for controlling a painting appliance which uses spraying means and is moved over an area to be painted, in particular a robot with a painting application. A known spraying map is produced, using known spraying parameters and paint amount, for a predetermined movement speed of the painting appliance, and a paint amount is matched to a new movement speed in comparison to the predetermined movement speed. Furthermore, new spraying parameters are calculated for the adapted paint amount, while maintaining a spraying map which is similar to the known spraying map.
摘要:
A method for restarting a robot after a premature interruption of a processing program, which controls it, at an interruption point. The robot has an atomizer apparatus for automatic coating of workpieces, and the processing program is used to preset a nominal movement of the atomizer apparatus with respect to a workpiece, which is to be coated and can be moved by means of a feed device, and to preset the associated nominal atomizer parameters. After the interruption of the processing program, the atomizer apparatus is first of all moved to a restarting point, which is located on the nominal movement path and is located ahead of the interruption point. After this, the atomizer apparatus is then moved on the nominal movement path, corresponding to a predeterminable velocity function, to a transfer point which is located on the nominal movement path and is located behind the interruption point. The atomizer apparatus is switched on again between the restarting point and the transfer point. The nominal atomizer parameters which are provided by the processing program are matched and are applied at least once, between the restarting point and the transfer point, to the respective current velocity of the atomizer apparatus, in relation to the nominal velocity preset, and all of the nominal movement parameters and nominal atomizer parameters in the processing program are used when the transfer point is reached.