EP0990473B1 - Dispositif de fabrication d'échangeurs de chaleur à plaques à parir de tôles d'échangeur de chaleur préfabriquées - Google Patents
Dispositif de fabrication d'échangeurs de chaleur à plaques à parir de tôles d'échangeur de chaleur préfabriquées Download PDFInfo
- Publication number
- EP0990473B1 EP0990473B1 EP99118505A EP99118505A EP0990473B1 EP 0990473 B1 EP0990473 B1 EP 0990473B1 EP 99118505 A EP99118505 A EP 99118505A EP 99118505 A EP99118505 A EP 99118505A EP 0990473 B1 EP0990473 B1 EP 0990473B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- heat exchanger
- edges
- folding
- exchanger plates
- hold
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Lifetime
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Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B21—MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21D—WORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21D53/00—Making other particular articles
- B21D53/02—Making other particular articles heat exchangers or parts thereof, e.g. radiators, condensers fins, headers
- B21D53/04—Making other particular articles heat exchangers or parts thereof, e.g. radiators, condensers fins, headers of sheet metal
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B21—MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21D—WORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21D39/00—Application of procedures in order to connect objects or parts, e.g. coating with sheet metal otherwise than by plating; Tube expanders
- B21D39/02—Application of procedures in order to connect objects or parts, e.g. coating with sheet metal otherwise than by plating; Tube expanders of sheet metal by folding, e.g. connecting edges of a sheet to form a cylinder
- B21D39/021—Application of procedures in order to connect objects or parts, e.g. coating with sheet metal otherwise than by plating; Tube expanders of sheet metal by folding, e.g. connecting edges of a sheet to form a cylinder for panels, e.g. vehicle doors
Definitions
- the invention relates to a device for production of plate heat exchangers from prefabricated heat exchanger plates with an assembly station on which a folding device is arranged by means of each heat exchanger plate on two opposite edges with the corresponding Edges of the heat exchanger plate arranged below it and on the other two opposite edges with the corresponding edges of those arranged above it Heat exchanger plate is foldable, and with a transport device, by means of the prefabricated heat exchanger plates can be fed to the assembly station (see e.g. US-A-5 226 234).
- the invention has for its object the above Generic device for the production of Plate heat exchangers made from prefabricated heat exchanger plates to develop such that in the intimate connection of Edges of heat exchanger plates arranged one below the other these edges in the vertical direction over their entire horizontal Extent arranged exactly above or below one another are.
- the Device has two recording stations that are in contact with each other opposite sides of the assembly station are arranged, in which the square and the same prefabricated Heat exchanger plates can be stacked rotated by 90 degrees to each other are and from which the heat exchanger plates by means the transport device can be removed individually.
- the orientation in the stack of the first recording station exactly 90 degrees to the Orientation in the stack of the second recording station twisted is.
- the individual heat exchanger plates are merely a device picked up from their respective stacks and then - without any twisting - conveyed straight to the assembly station. This ensures that the edges of one another arranged heat exchanger plates exactly to each other are aligned.
- the folding process can therefore always be done perform evenly with constant quality, which results from a high tightness of the plate heat exchanger and thus a compared to the prior art increased efficiency of the same results. This happens in the case of the invention Device in that the correctly pre-positioned heat exchanger plates during and immediately before the manufacturing process of the heat exchanger no longer rotated, but only be moved in a straight line.
- a largely continuous operation of the assembly station the device according to the invention can be achieved if according to an advantageous embodiment of the invention Device whose transport device has two transport units has, at the same time one between the first Receiving station and the assembly station and the other between the assembly station and the second receiving station is movable and vice versa.
- the next heat exchanger plate be included.
- the invention Device for the production of plate heat exchangers everyone works from prefabricated heat exchanger plates Folding unit of the four folding units comprising folding unit with two folding angle ranges, namely a first Folding angle range, at which the associated edges of the both heat exchanger plates bent at least 90 degrees and a second folding angle range, in which the already edges of the heat exchanger plates bent by 90 degrees can be bent to a total of 180 degrees.
- the first fold angle range is advantageously about 135 degrees and the second Fold angle range about 45 degrees.
- Hold-down device provided during the folding process is arranged on the transport device, there is better insight into the same, being above In addition, compared to the prior art, improved control options available. In addition, due to the Attachment of the hold-down device to the transport device ensures that the hold-down device in in any case in the correct vertical position with respect to the two heat exchanger plates is located, the edges of which are together should be folded. This also results a qualitatively superior folding process that corresponds to the corresponding Improvements in the tightness of the ultimately manufactured plate heat exchanger leads.
- a constructive and technically inexpensive and functional Design of the folding device is achieved when each Folding unit has a folding link, the folding surfaces of which contact surface with the bottom of the bottom of the two together edges of the two heat exchanger plates to be folded bringable and that while maintaining the surface contact between its folded surface and the bottom of the lower of the two edges of the two heat exchanger plates to be folded together is rotatable by 180 degrees.
- Folding units are those when the folding process is carried out occurring noises compared to conventional, folding devices working with hammers comparatively quiet.
- compared to the mentioned conventional folding devices a significantly reduced Wear.
- Each folding unit advantageously has a drive pinion, by means of its rotation, the folding member of the folding unit can be rotated and which in turn by means of a driven tooth part is rotatable.
- the vertical positioning of the folding units the folder can be done while the next Heat exchanger plate is supplied to the assembly station.
- each member's folding link Folding unit is the folding surface of each member's folding link Folding unit as an inclined surface, preferably at an angle of 45 degrees educated.
- the hold-down device of the invention advantageously Two hold-down devices per transport unit on, of which the hold-down device of a transport unit two opposite edges of the heat exchanger plates and the hold-down of the other transport unit other two opposite edges of the heat exchanger plates assigned. This makes it, for example possible, the hold-down device already during the transport process position the heat exchanger plate so that during the folding process on the heat exchanger plate can withstand forces exerted by the folding unit.
- Each hold-down device expediently has a hold-down member, whose holding surface in surface contact with the Edge bordering the top of the top of the two heat exchanger plates to be folded at their edges is.
- the holding surface of the hold-down member each hold-down with the edge of the heat exchanger plate facing edge defines the crease line around the two edges of the Heat exchanger plates are bent or kinked.
- the folding angle range and the second folding angle range advantageous if those of the forming the kink line Edge of the holding surface upwardly extending end face of the hold-down member of each hold-down as, to preferably 45 degrees, inclined inclined surface against which the Top of the top of the two to be folded together Edges of the heat exchanger plates at the end of the first folding angle range gets in plant.
- the hold-down member each Hold down between his active position, in which his Holding surface in surface contact with the one adjacent to the edge Area the top of the top of the two at their edges is to be folded heat exchanger plates, and its rest position is adjustable in the outside of the room between the top of the top of the two together interlocking edges of the two heat exchanger plates and the bordering area of the top of the top of the two heat exchanger plates to be folded at their edges is arranged.
- each folding unit of the Folding device and each hold-down device of the hold-down device deliverable from an outside position to an inside position is closer to the center of the heat exchanger plate is.
- each recording station has an edging device by means of which the edges the one in the receiving station from the transport device recorded heat exchanger plates are deformable.
- the procedure is the 180 degree interlocking of the Edges of the heat exchanger plates in a first folding step the edges of the heat exchanger plates in a first folding step, which extends over a first folding angle range of at least 90 degrees, preferably 150 degrees, and split a second folding step, which is over a second folding angle range of max. 90 degrees, preferably from 45 degrees.
- a region adjacent to the edge is expediently the top of the top of the two to be folded at their edges Heat exchanger plates during the first folding step held down. During the second folding step such a hold-down is not necessary because the Execution of the interlocking forces no longer increases can lead to evasion of the two heat exchanger plates.
- edges of the prefabricated heat exchanger plates are expediently pre-bent before it goes to the assembly station or the interlocking.
- FIG Device By means of an inventive device shown in principle in FIG Device for the production of plate heat exchangers from prefabricated heat exchanger plates 1 the prefabricated Heat exchanger plates 1 processed into plate packs, the heat exchanger plates 1 on two opposite one another Edges 2, 3 with the corresponding edges 2, 3 of the heat exchanger plate 1 and arranged below them the other two opposite edges 4, 5 with the corresponding edges 4, 5 of those arranged above them Heat exchanger plate 1 are connected or rebated.
- the heat exchanger plates 1 have projections in a vertical direction Direction up and form flow channels between them those media that pass through the heat exchanger, whereby on a flow channel for the one medium in vertical Direction one flow channel for the other medium follows.
- the heat exchanger plates 1 are identical to one another or prefabricated.
- To the device according to the invention for the production of Plate heat exchangers from the prefabricated heat exchanger plates 1 include an assembly station 6 at which the heat exchanger plates 1 can be assembled into plate packs, and two receiving stations 7, 8, on which the prefabricated heat exchanger plates 1 held in a stack 9, 10 become.
- the stack 9 of the first receiving station 7 are the Heat exchanger plates 1 rotated 90 degrees to those in stack 10 the second receiving station 8 held heat exchanger plates 1 arranged.
- the heat exchanger plates 1 alternating in the arrangement according to Stack 9 of the first receiving station or the stack 10 of the second receiving station processed to plate heat exchangers.
- a rotation of the heat exchanger plates 1 during their transportation from the first receiving station 7 or from the second receiving station 8 to the assembly station 6 is accordingly not required.
- a transport device belongs to the device according to the invention 11, by means of which the heat exchanger plates 1 of the Recording stations 7, 8 can be transported to the assembly station 6 are.
- the transport device 11 has two transport units 12, 13 on, of which the first transport unit 12 the heat exchanger plates 1 from the one on the left in FIG first receiving station 7 to the assembly station 6 and the second Transport unit 13, the heat exchanger plates 1 of the one in FIG 1 right second receiving station 8 to assembly station 6 transported.
- the two transport units 12, 13 of the Transport device 11 are interconnected so that whenever a transport unit 12, 13 on its assigned Recording station 7, 8 is located, the other Transport unit 13, 12 is located in the assembly station 6. While the one transport unit 12, 13 from the Recording station 7, 8 moves to the assembly station 6, moves then the other transport unit 13, 12 from the assembly station to the receiving station 8, 7.
- the heat exchanger plates 1 are from the respective transport unit 12, 13 in exactly the same position to the assembly station 6 pass in which they are from the respective receiving station 7, 8 have been taken over. One rotation of the transport units 12, 13 and the heat exchanger plates attached to them 1 is not required. When they are shipped from the receiving stations 7, 8, the heat exchanger plates 1 only conveyed in a straight direction, none at all Rotation of the heat exchanger plates 1 is required.
- Each transport unit 12, 13 has one with several suction points 14 equipped suction device, by its negative pressure a heat exchanger plate 1 on the transport unit 12, 13 can be fixed. By means of this fixing process the heat exchanger plates 1 from the stacks 9, 10 taken. The transfer of the heat exchanger plates 1 in the Assembly station 6 takes place by switching off the vacuum the suction points 14, whereby the heat exchanger plates 1 in the desired arrangement in the assembly station 6 added become.
- an edging device 15 is provided, by means of which the edges 2, 3, 4, 5 or edges of the heat exchanger plates 1 are preformable or bendable in the desired manner so that with the desired distance from the previous one Heat exchanger plate 1 can be placed on top of one another in the assembly station 6 are.
- the from the transport unit 12, 13 at the receiving station 7, 8 absorbed heat exchanger plate 1 is by means of the transport unit 12, 13 of the transport device 11 from the receiving station 7, 8 promoted to the assembly station 6, whereupon the heat exchanger plate 1 on the already in the assembly station 6 stored and processed previous heat exchanger plate 1 is filed.
- the margins 2, 3, 4, 5 of the just placed Heat exchanger plate 1 lie exactly over the corresponding one Margins 2, 3, 4, 5 of the previously filed and already processed heat exchanger plates 1.
- the assembly station 6 has a height-adjustable in the vertical direction Folding device consisting of four folding units 16, 17, 18, 19, each of which one of the edges 2, 3, 4, 5 of Heat exchanger plates 1 is assigned.
- the four folding units 16, 17, 18, 19 are on a frame of the device or the Assembly station 6 attached.
- Each folding unit 16, 17, 18, 19 has a cylinder 20, from the end of the frame distant one
- Actuator 21 protrudes, which has a lever 22 with Partially circular tooth part 23 provided with a toothing drives.
- Lever 22 By moving the actuator 21 in and out Lever 22 pivots, which rotatably with the tooth part 23rd is connected and the tooth part 23 rotates accordingly.
- the toothing of the tooth part 23 is in engagement with the ring gear a drive pinion 24, which by rotating the Tooth part 23 is rotatable accordingly. Because the diameter of the Pitch circle of the tooth part 23 is larger than the diameter of the drive pinion 24 is that covered by the drive pinion 24 Angle of rotation greater than that of the tooth part 23.
- the drive pinion 24 is firmly connected to a false link 25.
- the false link 25 is approximately as long as the edges 2, 3, 4, 5 of a heat exchanger plate 1.
- the false link 25 has one Folding surface 26 with which the folding member 25 rotates by means of the drive pinion 24 in contact with the underside e.g. of the edge 2 of the lower of the two to be folded together Heat exchanger plates 1 device.
- the folding member 25 as a folding surface 26 an inclined surface, which is shown in dashed lines in Figure 1 vertical position of the false link 25 with the lower surface the edge 2 of the heat exchanger plate 1 an angle of 45 degrees.
- position 25a in which its folding or Inclined surface 26 in contact with the lower surface of the edge 2 of the lower of the two heat exchanger plates to be folded together 1 device.
- the two transport units 12, 13 of the transport device 11 each have a hold-down device.
- the hold-down device has two hold-downs 27, 28.
- the hold-down device 27, 28 of the transport unit shown in Figures 2 and 3 12 is the opposite edges 2 and 4 assigned to the heat exchanger plates 1, whereas the two hold-downs of the not shown in Figures 2 to 4 Transport unit 13 the two other opposite one another Edges 3 and 5 of the heat exchanger plates 1 assigned.
- Each hold-down 27, 28 is by means of an actuating cylinder 29 arranged to be adjustable about an axis 30.
- Actuating cylinder 29 and Hold-down devices 27 and 28 are by means of suitable fastening elements firmly attached to the transport unit 12. By retracting and extending an actuator 31 of the actuating cylinder 29 the hold-down device 27 is pivoted about the axis 30.
- the hold-down 27 has a hold-down member 32, the holding surface 33 to hold down the two heat exchanger plates 1, the edges 2 of which are to be folded together, such as results in particular from Figure 4 against that area the surface of the top of the two heat exchanger plates 1 is brought in, which is on the edge 2 of upper heat exchanger plate 1 connects.
- the edge facing 2 Edge 34 of the holding surface 33 defines the bending axis or the crease line around which the two edges 2 of the two heat exchanger plates 1 are folded.
- the hold-down member 32 the position described above on the upper heat exchanger plate 1, if by approximation of the Folding surface 26 of the folding member 25 on the lower surface of the edge 2 of the lower of the two heat exchanger plates 1 the actual one Warping process is initiated.
- the edge 34 adjoining the end face facing the edge 2 35 is also the hold-down member 32 in the form of an inclined surface formed, the end face or inclined surface 35 with the holding surface 33 encloses an angle of 45 degrees and thus the angle between the rebate or inclined surface 26 to Case 25 corresponds.
- the false link 25 has the one labeled 25a in FIG Position is pivoted out, the heat exchanger plates 1 by the hold-down member 32 of the hold-down device 27 fixed in the vertical direction.
- the two edges 2 of the two heat exchanger plates 1 are around the edge 34 or through this edge 34 of the holding surface 33 of the hold-down member 32 defined buckling line in Figure 4 opposite bent clockwise.
- the false link 25 runs here from its position labeled 25a over the position labeled 25b designated position in the position designated 25c.
- the lever connected to the cylinder 20 via the actuator 21 22 becomes from its position 22a, in which the false link 25 is arranged vertically below the heat exchanger plate 1, about its position 22b, that of position 25a of the false link 25 corresponds to the position pivoted into its position 25c 25c of the false song 25 corresponds.
- the first folding angle range which is in the illustrated embodiment extends over a rotation angle of 135 degrees, completed.
- the first folding angle range 36 holding down the two heat exchanger plates 1 by means of of the hold-down 27 required.
- After reaching the first Folding angle area 36 corresponding folding or bending angle The bending or folding process is stopped by 135 degrees the drive pinion 24 or the false link 25 interrupted.
- the hold-down member is now 32 of the hold-down device 22 by retracting the actuator 31 in the actuating cylinder 29 clockwise around the Axle 30 pivoted, whereby the hold-down member 32 of the hold-down device 27 into the position designated 32a in FIG device in which the hold-down member 32 outside the gap between the surface of the top of the two Edges 2 and the surface adjoining this edge 2 the upper heat exchanger plate 1 is arranged.
- Both the hold-down 27 and the folding unit 16, which are assigned to the edge 2 of the heat exchanger plates 1, are towards the center of the heat exchanger plate 1 deliverable.
- the hold-down devices of the transport unit 13 are correspondingly the edges 3, 5 of the heat exchanger plates which are perpendicular to the edges 2, 4 1 assigned.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Heat-Exchange Devices With Radiators And Conduit Assemblies (AREA)
- Making Paper Articles (AREA)
- Separation By Low-Temperature Treatments (AREA)
Claims (20)
- Dispositif pour la fabrication d'échangeurs de chaleur à plaques à partir de plaques d'échangeur (1) préfabriquées, comportant un poste d'assemblage (6) dans lequel est disposé un dispositif de sertissage (16, 17, 18, 19) à l'aide duquel chaque plaque d'échangeur (1), au niveau de deux bords (2, 4) mutuellement en vis-à-vis, peut être sertie avec les bords (2, 4) associés de la plaque d'échangeur (1) placée au-dessous, et, au niveau des deux autres bords (3, 5) mutuellement en vis-à-vis, peut être sertie avec les bords (3, 5) associés de la plaque d'échangeur (1) placée au-dessus, ainsi qu'un dispositif de transport (11) à l'aide duquel les plaques d'échangeur (1) préfabriquées peuvent être amenées au poste d'assemblage (6), caractérisé par le fait que le dispositif présente deux postes d'alimentation (7, 8) qui sont disposés sur des côtés en vis-à-vis du poste de montage (6), dans lesquels les plaques d'échangeur (1) préfabriquées, rectangulaires et identiques entre elles, sont empilées tournées de 90 degrés les unes par rapport aux autres, et dans lesquels les plaques d'échangeur (1) peuvent être prélevées une à une à l'aide du moyen de transport (11).
- Dispositif selon la revendication 1, dont le dispositif de transport (11) comporte deux unités de transport (12, 13) qui peuvent être déplacées simultanément entre le premier poste d'alimentation (7) et le poste d'assemblage (6) pour l'une (12) et entre le poste d'assemblage (6) et le second poste d'alimentation (8) pour l'autre (12) et vice versa.
- Dispositif selon la revendication 1 ou 2, dont le dispositif de sertissage comporte quatre unités de sertissage (16, 17, 18, 19), chaque unité de sertissage (16, 17, 18, 19) présentant une première zone angulaire de pliage (36) dans laquelle les bords (2) concernés des deux plaques d'échangeur (1) sont pliés d'au moins 90° et une deuxième zone angulaire de pliage (37) dans laquelle les bords (2) déjà pliés à au moins 90° des plaques d'échangeur (1) sont pliés à 180° au total.
- Dispositif selon la revendication 3, dans lequel la première zone angulaire de pliage (36) est d'environ 135° et la deuxième zone angulaire de pliage (37) de 45° environ.
- Dispositif selon une des revendications 1 à 4, comportant un dispositif presse-plaques (27, 28) à l'aide duquel les plaques d'échangeur (1) peuvent être tenues pendant le sertissage de leur bords (2, 4) et qui est disposé sur le dispositif de transport (11).
- Dispositif selon une des revendications 1 à 5, dans lequel chaque unité de sertissage (16, 17, 18, 19) présente un organe de sertissage (25) dont la surface de sertissage (26) peut être amenée en contact plan avec la face inférieure du bord inférieur parmi les deux bords (2) à sertir des deux plaques d'échangeur (1) et qui, tout en maintenant le contact plan entre sa surface de sertissage (26) et la face inférieure du bord inférieur parmi les deux bords (2) à sertir des deux plaques d'échangeur (1), peut pivoter de 180°.
- Dispositif selon la revendication 6, dans lequel chaque unité de sertissage (16, 17, 18, 19) présente un pignon d'entraínement (24) par la rotation duquel l'organe de sertissage (25) de l'unité de sertissage (16, 17, 18, 19) peut être mis en rotation et qui peut être mis en rotation par un élément denté (23) entraíné.
- Dispositif selon la revendication 6 ou 7, dans lequel la surface de sertissage (26) de l'organe de sertissage (25) de chaque unité de sertissage (16, 17, 18, 19) est conformée en surface inclinée, de préférence en surface inclinée à 45°.
- Dispositif selon une des revendications 5 à 8, dans lequel le dispositif presse-plaques de chaque unité de transport (12, 13) présente deux presse-plaques (27, 28), parmi lesquels les presse-plaques (27, 28) de l'une (12) des unités de transport sont associés à deux bords (2, 4) mutuellement en vis-à-vis des plaques d'échangeur (1) et les presse-plaques de l'autre unité de transport (13) sont associés aux deux autres bords (3, 5) mutuellement en vis-à-vis des plaques d'échangeur (1).
- Dispositif selon la revendication 9, dans lequel chaque presse-plaques (27, 28) présente un organe de serrage (32), dont la surface de serrage (33) peut être amenée en contact plan avec la zone contiguë au bord (2) de la face supérieure de la plaque supérieure parmi les deux plaques d'échangeur (1) à sertir au niveau de leurs bords (2).
- Dispositif selon la revendication 10, dans lequel la surface de serrage (33) de chaque organe de serrage (32) de chaque presse-plaques (27, 28) définit avec son arête (34) tournée vers le bord (2) de la plaque d'échangeur (1) une ligne de pliage autour de laquelle les deux bords (2) à assembler par sertissage des plaques d'échangeur (1) peuvent être pliés.
- Dispositif selon la revendication 11, dans lequel la face frontale (35) de l'organe de serrage (32) de chaque presse-plaques (27, 28), qui s'étend vers le haut depuis l'arête (34) formant la ligne de pliage de la surface de serrage (33), est conformée en surface inclinée, de préférence en surface inclinée à 45°, contre laquelle la face supérieure de la plaque supérieure parmi les deux plaques d'échangeur (1) à sertir au niveau de leurs bords (2) vient en appui à la fin de la première zone angulaire de pliage (36).
- Dispositif selon une des revendications 10 à 12, dans lequel l'organe de serrage (32) de chaque presse-plaques (27, 28) peut être déplacé entre sa position active, dans laquelle sa surface de serrage (33) est en contact plan avec la zone contiguë au bord (2) de la face supérieure de la plaque supérieure parmi les deux plaques d'échangeur (1) à sertir au niveau de leurs bords (2), et sa position de repos, dans laquelle il est situé en dehors de l'espace compris entre la face supérieure de la plaque supérieure parmi les deux plaques d'échangeur (1) à sertir au niveau de leurs bords (2) et la zone contiguë au bord (2) de la face supérieure de la plaque supérieure parmi les deux plaques d'échangeur (1) à sertir au niveau de leurs bords (2).
- Dispositif selon une des revendications 5 à 13, dans lequel chaque unité de sertissage (16, 17, 18, 19) du dispositif de sertissage et chaque presse-plaques (27, 28) du dispositif presse-plaques peut être déplacé depuis une position extérieure dans une position intérieure plus proche du centre de la plaque d'échangeur (1).
- Dispositif selon une des revendications 1 à 14, dans lequel chaque poste d'alimentation (7, 8) présente un système de façonnage (15) à l'aide duquel les bords (2, 3, 4, 5) de la plaque d'échangeur (1) prélevée par le dispositif de transport (11) dans le poste d'alimentation (7, 8) peuvent être façonnés.
- Procédé pour la fabrication d'échangeurs de chaleur à plaques à partir de plaques d'échangeur (1) préfabriquées, dans lequel chaque plaque d'échangeur (1), au niveau de deux bords (2, 4) mutuellement en vis-à-vis, est sertie avec les bords (2, 4) associés de la plaque d'échangeur (1) placée au-dessous, et au niveau des deux autres bords (3, 5) mutuellement en vis-à-vis, est sertie avec les bords (3, 5) associés de la plaque d'échangeur (1) placée au-dessus, caractérisé par le fait que les plaques d'échangeur (1) rectangulaires et identiques entre elles sont préfabriquées et que les plaques d'échangeur (1) préfabriquées sont amenées au sertissage depuis deux directions mutuellement opposées en étant tournées de 90°.
- Procédé selon la revendication 16, dans lequel l'opération de sertissage à 180° des bords (2, 3, 4, 5,) des plaques d'échangeur (1) est subdivisée en une première étape de sertissage qui s'étend sur une première zone angulaire de sertissage (36) d'au moins 90°, de préférence de 135°, et en une deuxième étape de sertissage qui s'étend sur une deuxième zone angulaire de sertissage (37) d'au moins 90°, de préférence de 45.
- Procédé selon la revendication 17, dans lequel une zone contiguë au bord (2) de la face supérieure de la plaque supérieure parmi les deux plaques d'échangeur (1) à sertir au niveau de leurs bords est tenue serrée pendant la première étape de sertissage.
- Procédé selon une des revendications 16 à 18, dans lequel, à la fin d'une première opération de sertissage à 180°, les bords (2) sertis sont soumis à une seconde opération de sertissage à 180°.
- Procédé selon une des revendications 16 à 19, dans lequel les bords (2, 3, 4, 5,) des plaques d'échangeur (1) préfabriquées sont pré-pliés avant d'être amenés au sertissage.
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE19845388 | 1998-10-02 | ||
DE19845388A DE19845388C2 (de) | 1998-10-02 | 1998-10-02 | Vorrichtung und Verfahren zur Herstellung von Plattenwärmetauschern aus vorgefertigten Wärmetauscherplatten |
Publications (3)
Publication Number | Publication Date |
---|---|
EP0990473A2 EP0990473A2 (fr) | 2000-04-05 |
EP0990473A3 EP0990473A3 (fr) | 2002-03-06 |
EP0990473B1 true EP0990473B1 (fr) | 2004-06-23 |
Family
ID=7883174
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP99118505A Expired - Lifetime EP0990473B1 (fr) | 1998-10-02 | 1999-09-18 | Dispositif de fabrication d'échangeurs de chaleur à plaques à parir de tôles d'échangeur de chaleur préfabriquées |
Country Status (3)
Country | Link |
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EP (1) | EP0990473B1 (fr) |
AT (1) | ATE269766T1 (fr) |
DE (2) | DE19845388C2 (fr) |
Families Citing this family (2)
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CN107855430B (zh) * | 2017-09-22 | 2019-04-05 | 徐州德坤电气科技有限公司 | 一种翅片总成自动胀管系统支撑钢板置入单元的控制方法 |
CN118143670B (zh) * | 2024-05-13 | 2024-07-30 | 山东豪迈机械制造有限公司 | 一种海上平台水处理换热器密封板制作专机及制作方法 |
Family Cites Families (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US4510660A (en) * | 1980-08-15 | 1985-04-16 | Snyder General Corporation | Method of manufacturing a two-plate heat exchanger |
US5226234A (en) * | 1992-06-29 | 1993-07-13 | General Motors Corporation | Method for assembling heat exchanger tubes |
-
1998
- 1998-10-02 DE DE19845388A patent/DE19845388C2/de not_active Expired - Fee Related
-
1999
- 1999-09-18 AT AT99118505T patent/ATE269766T1/de active
- 1999-09-18 DE DE59909796T patent/DE59909796D1/de not_active Expired - Lifetime
- 1999-09-18 EP EP99118505A patent/EP0990473B1/fr not_active Expired - Lifetime
Also Published As
Publication number | Publication date |
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DE19845388A1 (de) | 2000-04-20 |
EP0990473A2 (fr) | 2000-04-05 |
DE19845388C2 (de) | 2003-10-02 |
ATE269766T1 (de) | 2004-07-15 |
DE59909796D1 (de) | 2004-07-29 |
EP0990473A3 (fr) | 2002-03-06 |
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