FAN MODULE FOR A SOLDERING SYSTEM, IN PARTICULAR FOR A REFLOW SOLDERING SYSTEM, AND REFLOW SOLDERING SYSTEM
20230021889 · 2023-01-26
Assignee
Inventors
Cpc classification
F04D17/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D25/0606
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D25/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H02K5/1732
ELECTRICITY
F04D25/166
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/059
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B23K3/085
PERFORMING OPERATIONS; TRANSPORTING
F04D25/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H02K5/10
ELECTRICITY
B23K1/0016
PERFORMING OPERATIONS; TRANSPORTING
International classification
F04D25/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D25/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H02K7/00
ELECTRICITY
Abstract
A fan module for a soldering system and a soldering system, in particular for a reflow soldering system, for circulating air in a process channel of the soldering system, the module having a housing-like support part, a first shaft bearing provided in or on the support part, a motor, which includes a stator and a rotor which cooperates with the stator, a rotor shaft provided on the rotor, a fan wheel provided on the rotor shaft and having a second shaft bearing for supporting the rotor shaft, wherein the fan module includes a flange plate, which in the assembled state covers a channel opening in the process channel and which includes an aperture in or on which the second shaft bearing is provided.
Claims
1. A fan module for a soldering system for circulating air in a process channel of the soldering system, the module having a. a housing-like support part, b. a first shaft bearing provided in or on the support part, c. a motor, which comprises a stator and a rotor which cooperates with the stator, d. a rotor shaft provided on the rotor, e. a fan wheel provided on the rotor shaft and having a second shaft bearing for supporting the rotor shaft, f. wherein the fan module comprises a flange plate, which in the assembled state covers a channel opening in the process channel and which comprises an aperture in or on which the second shaft bearing is provided.
2. The fan module according to claim 1, wherein a shaft seal for sealing the rotor shaft is provided in or on the aperture.
3. The fan module according to claim 1, wherein the flange plate is designed to be larger in directions extending perpendicularly to the rotor shaft than the fan wheel-.
4. The fan module (26) according to claim 1, wherein the flange plate has openings for supplying and discharging process gas.
5. The fan module according to claim 1, wherein the flange plate (30) has a seal (46) for sealing the flange plate (30) against the channel components (70) that form the process channel (16).
6. The fan module according to claim 1, wherein the flange plate has locking portions for fastening to the channel components that form the process channel.
7. The fan module according to claim 1, wherein the flange plate has fastening portions for fastening heating elements and/or other components located in the process channel.
8. The fan module according to claim 1, wherein the flange plate has insulation on the side facing away from the stator.
9. The fan module according to claim 1, wherein the flange plate has a separating panel on the side facing away from the stator, which panel separates the interior of the process channel from a suction channel.
10. The fan module according to claim 9, wherein the separating panel has a peripheral collar pointing away from the flange plate for guiding the air flow toward the fan wheel-.
11. The fan module according to claim 10, wherein the fan wheel has a circumferential shoulder corresponding to the collar.
12. The fan module according to claim 1, wherein the flange plate is produced in the die-casting process.
13. A soldering system having one or more fan modules for circulating air in a process channel of the soldering system, the module having a. a housing-like support part, b. a first shaft bearing provided in or on the support part, c. a motor, which comprises a stator and a rotor which cooperates with the stator, d. a rotor shaft provided on the rotor, e. a fan wheel provided on the rotor shaft and having a second shaft bearing for supporting the rotor shaft, f. wherein the fan module comprises a flange plate, which in the assembled state covers a channel opening in the process channel and which comprises an aperture in or on which the second shaft bearing is provided.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In the drawings:
[0022]
[0023]
[0024]
[0025]
[0026]
DETAILED DESCRIPTION
[0027]
[0028] The soldering system is used for continuous soldering of items to be soldered and has an input 12 and an output 14. The item to be soldered enters the soldering system 10 via the input and the soldered item is removed from the soldering system 10 via the output. The item to be soldered is transported along a transport direction 18 through the soldering system 10 via a process channel 16 extending over the entire length of the soldering system 10.
[0029] A preheating zone 20, a soldering zone 22, and a cooling zone 24 are provided in the process channel 16. During the operation of the soldering system 10, the item to be soldered, that is, the printed circuit board provided with solder paste and fitted with electronic components, is first heated in the preheating zone 20 to a temperature which is below the melting temperature of the solder paste. In the soldering zone 22, the printed circuit board is heated for a specific period to a process temperature which is above the melting point of the solder paste, so that it melts in the soldering zone to solder the electronic components to the printed circuit board. The item to be soldered is cooled in the cooling zone 24, so that the liquid solder solidifies before the soldered item is removed at the output 14 of the soldering system 10.
[0030] As is clear from
[0031] The fan modules 26 shown in
[0032] One of these fan modules 26 is shown in
[0033] As is clear from the section according to
[0034] In the embodiment shown in the figure, the shaft seal 44 is provided on the side of the second shaft bearing 42 facing the first shaft bearing 32; according to the invention, it is also conceivable that the shaft seal 44 is arranged on the side of the second shaft bearing 42 facing away from the first shaft bearing 32.
[0035] The flange plate 30 is designed in such a way that, in the assembled state shown in
[0036] As is also clear from
[0037] The flange plate 30 is larger than the fan wheel 50 in the direction running perpendicular to the rotor shaft 36. Consequently, the outer edge 52 of the flange plate 36 protrudes in the radial direction beyond the fan wheel 50. This ensures that the fan module 26 can be inserted into a channel opening in the process channel 16, which opening is then reliably sealed by the seal 46 in the assembled state.
[0038] As is also clear from
[0039] As is clear from the view according to
[0040] On the side facing away from the stator, the flange plate 30 has an insulating plate 60 in order to thermally insulate the process channel 16 from the outside. Furthermore, a separating panel 62, which separates the interior of the process channel 16 from a suction channel 64 formed by the separating panel 62, is provided on the flange plate 30. As is clear in particular from
[0041] As is also clear in particular from
[0042] The fan wheel has a circumferential shoulder 68 which corresponds to the collar 66 and has a rounded design corresponding to the collar 66. In this way, an advantageous flow of air from the collar 66 toward the shoulder 68 is achieved. In operation, the shoulder 68, in contrast to the collar 66, rotates together with the fan wheel 50.
[0043]
[0044] The described fan module 26 can be installed and removed in the soldering system 10 in a simple manner. For this purpose, the flange plate 30 is placed on the particular channel opening 72 to be provided, so that the fan wheel 50 with the heating elements 52 protrudes into the process channel 16. After that, it is only a matter of fastening the fan module 26 to the channel components 70 with the locking portions 58 and making the electrical connections. An exact alignment or adjustment of the rotor shaft 36 or the shaft seals 44, 45 is not necessary, because the entire module 26 can be inserted as a prefabricated unit into the soldering system 10. Even if, as shown in