System for tempering vehicle bodies
09890996 ยท 2018-02-13
Assignee
Inventors
Cpc classification
F26B2210/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F26B21/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F26B15/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F26B21/004
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F26B21/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A system for tempering vehicle bodies having a housing, a tempering tunnel in the housing, at least one pressure chamber in a housing and separated by a wall from the tempering tunnel, a plurality of nozzles in the wall and an air tempering unit which introduces tempered air into the pressure chamber in such a way that the tempered air flows in through the nozzles into the tempering tunnel and acts on the vehicle body. At least one nozzle unit is oriented and has a range that is wide enough, such that the air stream exiting the nozzle unit passes through an opening in the vehicle body on the side facing the nozzle unit and acts on an inner face of the vehicle body on the opposite side.
Claims
1. A device for tempering motor vehicle bodies, the device comprising: a) a housing; b) a tempering tunnel accommodated in the housing for receiving a motor vehicle body; c) at least one pressure chamber accommodated in the housing and separated from the tempering tunnel by a wall; d) a plurality of nozzles in the wall; e) an air tempering unit, which introduces tempered air into the pressure chamber such that the tempered air flows through the plurality of nozzles into the tempering tunnel and acts upon a motor vehicle body therein; and, f) at least one nozzle unit which is so oriented such that an air stream leaving the at least one nozzle unit passes through an opening in the motor vehicle body on a side facing the at least one nozzle unit and acts upon an inner surface of the motor vehicle body on an opposite side; wherein, g) the at least one nozzle unit includes, in a flow cross-section, movable air guiding elements inside the at least one nozzle unit, so that a direction of projection of the at least one nozzle unit is adjustable, h) at least one actuating rod is connected to the movable air guide elements and movement of the at least one actuating rod rotates the movable air guide elements inside the at least one nozzle to dynamically adjust air flow from the at least one nozzle unit to blow at a motor vehicle body in response to the motor vehicle body's position within the tempering tunnel; and i) at least one pivot lever, the pivot lever is connected to the at least one actuating rod, wherein a portion of the at least one pivot lever extends into the tempering tunnel to engage a skid carrying an automobile, wherein engagement of the portion of the at least one pivot lever causes the at least one actuating rod to rotate and move the movable air guide elements, changing the direction of air flow from the at least one nozzle unit.
2. The device according to claim 1, wherein the actuating rod is moved by at least one motor.
3. The device according to claim 1, wherein the movable air guiding elements are movable by a carrier device, which cooperates with a part that is moved together with the motor vehicle body in such a manner that the direction of projection of the nozzle unit follows the motor vehicle body over a certain distance as the motor vehicle body moves through the tempering tunnel.
4. The device according to claim 1, wherein the at least one nozzle unit includes air guiding elements that are pivotable about two mutually perpendicular axes.
5. The device of claim 1, wherein the at least one nozzle unit is removably fixed in at least one opening in the wall between the pressure chamber and the tempering tunnel.
6. The device of claim 5, wherein the at least one opening in which at least one nozzle unit is removably fixed is configured in the same manner as an openings in which the nozzles from the plurality of nozzles are fixed in the wall.
7. The device of claim 1, wherein each nozzle within the plurality of nozzles are adjustable with respect to their angular position.
8. The device of claim 7, wherein the at least one nozzle unit is fixed.
9. The device of claim 1 wherein the at least one nozzle unit includes, in a flow cross-section, movable air guiding elements, so that a direction of projection of the at least one nozzle unit is simultaneously adjustable about both a horizontal and a vertical axis.
10. The device of claim 1 further comprising at least one spring device connected to the at least one pivot lever, wherein the at least one spring device causes the at least one pivot lever to return to an initial position after the portion of the at least one pivot lever extending into the tempering tunnel disengages a skid carrying an automobile.
11. A device for tempering motor vehicle bodies, the device comprising: a) a housing; b) a tempering tunnel accommodated in the housing for receiving a motor vehicle body; c) at least one pressure chamber accommodated in the housing and separated from the tempering tunnel by a wall; d) a plurality of nozzles in the wall; e) an air tempering unit, which introduces tempered air into the pressure chamber such that the tempered air flows through the plurality of nozzles into the tempering tunnel and acts upon a motor vehicle body therein; and, f) at least one nozzle unit which is so oriented such that an air stream leaving the at least one nozzle unit passes through an opening in the motor vehicle body on a side facing the at least one nozzle unit and acts upon an inner surface of the motor vehicle body on an opposite side; wherein, g) the at least one nozzle unit includes, in a flow cross-section, movable air guiding elements, so that a direction of projection of the at least one nozzle unit is adjustable, h) at least one actuating rod is connected to the movable air guide elements and movement of the at least one actuating rod rotates the movable air guide elements, and i) at least one pivot lever, the pivot lever being connected to the at least one actuating rod, wherein a portion of the at least one pivot lever extends into the tempering tunnel to engage a skid carrying an automobile, wherein engagement of the portion of the at least one pivot lever causes the at least one actuating rod to rotate and move the movable air guide elements, changing the direction of air flow from the at least one nozzle unit.
12. The device of claim 11 further comprising at least one spring device connected to the at least one pivot lever, wherein the at least one spring device causes the at least one pivot lever to return to an initial position after the portion of the at least one pivot lever extending into the tempering tunnel disengages a skid carrying an automobile.
13. The device according to claim 11, wherein the at least one actuating rod is moved by at least one motor.
14. The device according to claim 11, wherein the movable air guiding elements are movable by a carrier device, which cooperates with a part that is moved together with the motor vehicle body in such a manner that the direction of projection of the nozzle unit follows the motor vehicle body over a certain distance as the motor vehicle body moves through the tempering tunnel.
15. The device according to claim 11, wherein the at least one nozzle unit includes air guiding elements that are pivotable about two mutually perpendicular axes.
16. The device of claim 11, wherein the at least one nozzle unit is removably fixed in at least one opening in the wall between the pressure chamber and the tempering tunnel.
17. The device of claim 16, wherein the at least one opening in which at least one nozzle unit is removably fixed is configured in the same manner as an openings in which the nozzles from the plurality of nozzles are fixed in the wall.
18. The device of claim 11, wherein each nozzle within the plurality of nozzles are adjustable with respect to their angular position.
19. The device of claim 18, wherein the at least one nozzle unit is fixed.
20. The device of claim 11 wherein the at least one nozzle unit includes, in a flow cross-section, movable air guiding elements, so that a direction of projection of the at least one nozzle unit is simultaneously adjustable about both a horizontal and a vertical axis.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Exemplary embodiments of the invention will be explained in detail below by means of the drawing, in which
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DETAILED DESCRIPTION OF THE PRESENT INVENTION
(12) While this invention is susceptible of embodiment in many different forms, there is shown in the drawings and will herein be described in detail one or more embodiments with the understanding that the present disclosure is to be considered as an exemplification of the principles of the invention and is not intended to limit the invention to the embodiments illustrated.
(13) Reference will first be made to
(14) In the two walls 3, 4 there is a plurality of nozzles 10, 11, which establish a connection between the pressure chambers 5 and 6 and the drying tunnel 7. The nozzles provided with reference numerals 10 and 11 are of conventional configuration; their direction of projection is adjustable and their direction of projection is so short that they are able to act upon the side of the motor vehicle body 9 facing them. The nozzles 10, 11 are located in openings 13, 14 with spherical-cap-shaped delimiting walls, as a result of which the nozzles 10, 11 are guided in an adjustable manner in their angular position.
(15) In each of the openings 12a and 13a in the walls 3, 4 that is located in the position second from the top there is no conventional nozzle 10 or 11. Instead, a special nozzle unit 14 or 15 is fixed therein, which nozzle unit is provided for that purpose with two spherical-cap-shaped clamping plates 16 and 17. The arrangement is accordingly such that the nozzle units 14, 15 can be mounted in the corresponding wall 3, 4 in place of a conventional nozzle 10, 11. In this manner, conversion of a conventional drier into a drier 1 according to the invention and vice versa is possible.
(16) The nozzle units 14, 15 are identical in construction, so that it is sufficient to describe the nozzle opening 14. This comprises a box-like housing 14a, which is substantially open on the side facing the motor vehicle body 9 and is provided on its rear side, which abuts the wall 3, with an opening that communicates via the corresponding opening 12a with the pressure chamber 5. Inside the housing 14a there are parallel fins 14b as air guiding elements, which in the exemplary embodiment shown in
(17) The particular feature of the nozzle units 14, 15 is that, unlike the normal nozzles 10, 11, they are in the form of long-range nozzles. In this manner it is possible in the manner shown in
(18) The pressure chambers 5, 6 are fed in known manner with hot air, which then passes not only in the manner already indicated above through the nozzle units 14, 15 but also through the normal nozzles 10, 11, so that hot air acts upon the outsides of the motor vehicle body through the normal nozzles 10, 11 and upon the insides of the motor vehicle body 9 through the additional nozzle units 14, 15. In this manner it is possible to dry all regions of the motor vehicle body 9 in approximately the same time, even though they are high-mass to differing degrees and therefore have different heat capacities. As a result, the total drying time of the motor vehicle body 9 can be shortened; local overheating, which could damage the materials of the motor vehicle body 9 or bonds located thereon, does not occur.
(19) As mentioned above, the nozzle units 14, 15 of the exemplary embodiment of
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(21) Partial figures a to c of
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(23) The variant of the drier that is shown in
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(25) In the exemplary embodiments of a drier according to the invention that have been described above by means of
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(31) It is to be understood that additional embodiments of the present invention described herein may be contemplated by one of ordinary skill in the art and that the scope of the present invention is not limited to the embodiments disclosed. While specific embodiments of the present invention have been illustrated and described, numerous modifications come to mind without significantly departing from the spirit of the invention, and the scope of protection is only limited by the scope of the accompanying claims.