FROST-FREE REFRIGERATION APPLIANCE
20180259238 ยท 2018-09-13
Inventors
Cpc classification
F25D17/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D2317/0666
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D2201/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D11/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D17/045
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F25D17/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D17/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A refrigeration appliance, particularly a domestic refrigeration appliance, has a thermally-insulating housing in which at least one first and one second inner chamber are separated from one another by a thermally-insulated wall. The first inner chamber is divided into a storage compartment and an evaporator chamber. A passage in the thermally-insulated wall connects the evaporator chamber to the second inner chamber. At least one closure element for controlling the air exchange is housed, in the passage, between the evaporator chamber and the second inner chamber.
Claims
1-15. (canceled)
16. A refrigeration appliance, comprising: a thermally-insulated housing; a thermally-insulated wall having a passage formed therein; at least one first and one second inner chamber being separated from one another by said thermally-insulated wall in said thermally-insulated housing, said first inner chamber is divided into a storage compartment and an evaporator chamber and said passage in said thermally-insulated wall connecting said evaporator chamber to said second inner chamber; and at least one closure element for controlling an air exchange is housed, in said passage, between said evaporator chamber and said second inner chamber.
17. The refrigeration appliance according to claim 16, wherein said closure element has a flap.
18. The refrigeration appliance according to claim 17, wherein said closure element has a frame which completely surrounds said flap in a closed position.
19. The refrigeration appliance according to claim 16, further comprising an air channel cover, said second inner chamber is divided by said air channel cover into a further storage compartment and at least one air channel.
20. The refrigeration appliance according to claim 19, wherein said at least one air channel is one of two air channels, a first of said air channels extends from said passage into a lower region of said second inner chamber and a second of said air channels extending from said passage past said lower region into an upper region of said second inner chamber.
21. The refrigeration appliance according to claim 20, wherein said at least one closure element is assigned to each of said air channels.
22. The refrigeration appliance according to claim 21, further comprising a motor for driving said at least one closure element, said at least one closure element combined with said motor forms a sub-assembly which is mounted in said passage.
23. The refrigeration appliance according to claim 19, wherein said thermally-insulated wall has a thermally insulating layer; wherein said first inner chamber and said second inner chamber in each case are defined by an internal container each having an aperture formed therein; and further comprising a tubular housing and in said passage said tubular housing extends between said apertures of said internal containers through said thermally insulating layer of said thermally-insulated wall.
24. The refrigeration appliance according to claim 23, wherein said tubular housing has two flanges which in each case bear against said internal container of one of said first and said second inner chamber.
25. The refrigeration appliance according to claim 24, wherein said tubular housing has two plug-connected housing parts each with one of said two flanges.
26. The refrigeration appliance according to claim 23, further comprising a foamed part disposed between a rear face of said air channel and a rear wall of said internal container of said second inner chamber.
27. The refrigeration appliance according to claim 26, wherein said air channel cover comes into contact with said foamed part on both sides of said air channel and said foamed part is fixed in position between said air channel cover and said rear wall.
28. The refrigeration appliance according to claim 16, wherein said closure element is able to be inserted from sides of one of said first and said second inner chamber into said passage.
29. The refrigeration appliance according to claim 28, further comprising a clamp, said closure element is secured by said clamp which is latched to said thermally-insulated wall between said closure element and said second inner chamber, said closure element being inserted from said second inner chamber.
30. The refrigeration appliance according to claim 22, further comprising a clamp disposed so as to be positioned across said motor.
31. The refrigeration appliance according to claim 16, wherein the refrigeration appliance is a domestic refrigeration appliance.
Description
[0023] Further features and advantages of the invention are disclosed from the following description of exemplary embodiments with reference to the accompanying figures, in which:
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030] The inner chamber 3 is sub-divided by a partition 10 substantially parallel to the rear wall 9 of its internal container 5 into a storage compartment for refrigerated goods, in this case a freezer compartment 11 and an evaporator chamber 12. A further wall 13 divides the evaporator chamber 12 into a suction region 14 in which a lamella-type evaporator 15 is also located and a distributer region 16. A fan 17 is arranged in an opening of the wall 13 in order to suction air through the evaporator 15 and to pump the air thus cooled into the distributor region 16. Via distributor openings 18 in the wall 13, a portion of the cooled air passes directly back into the storage chamber 11. The remaining air passes via a passage 19 in the wall 8 into an air channel 20 of the upper inner chamber 2.
[0031] The air channel 20 is defined toward a rear wall 23 of the internal container 4 by a molded part 24 made of expanded polystyrene (EPS) and delimited from a storage compartment 21 by a plate-shaped air channel cover 22. The air channel cover 22, and the wall 13, are provided with distributor openings 18, via which the cold air distributed vertically is able to escape into the storage compartment 21.
[0032] The air channel 20 and the air channel cover 22 may extend over the entire height of the inner chamber 2; in the design shown here they extend only from the bottom 25 of the inner chamber 2 to a horizontal partition 26 inserted in the internal container 4, so that the air guided in the air channel 20 is only able to be distributed in a lower region 27 of the storage compartment 21. In order to supply a region 28 above the partition 26, a second air channel 29 is guided through the molded part 24 partially outside the cutting plane of
[0033]
[0034] Latching connections are provided in order to fix the air channel cover 22 in the position shown and to hold the molded part 24 clamped between the air channel cover 22 and the rear wall 23. Here, the latching connections in each case comprise a sleeve 31 and a latching pin 32 engaging in the sleeve. The sleeve 31 is bonded, welded or fastened in another suitable manner to the rear wall 23 and engages in a passage 33 of the molded part 24. The latching pin 32 has a shank 34 with a plurality of frusto-conical segments which, when inserted into the sleeve 31, which is slotted in the longitudinal direction, widen said sleeve in a resilient manner until the segments come into engagement with complementary latching contours in the interior of the sleeve 31. Each latching pin 32 is inserted sufficiently deeply into its sleeve 31 until a head 35 of the latching pin 32 bears fixedly against the air channel cover 22.
[0035] In each case at both ends of the passage 19 apertures 37 (see
[0036] The lower housing part 39 in this case comprises two pipe connectors 41, 42 which are slightly widened in the upward direction and are respectively of rectangular cross section and a flange 43 extending around the lower ends of the pipe connectors 41, 42, said flange being provided in order to bear against the top 36, all around the aperture 37 thereof, when the housing 38 is inserted from the rear face of the body 1 into the wall 8. On its lower face, not visible in
[0037] In the upper housing part 40 a flange 44 surrounds an individual connector 45 which is also rectangular in cross section and which at its lower end branches into two connecting parts 46, 47 complementary to the pipe connectors 41, 42. On the narrow sides of the flange two projections 67 are formed which together with the flange form grooves which are open in the lateral direction. The aperture 37 of the bottom 25 at its edge facing the rear wall 9 has two widenings 68 (see
[0038] When the body 1 is foamed, retaining tools are inserted into the inner chambers 2, 3, said tools forcing the bottom 25 and the top 36 sufficiently far apart until both bear against the flanges 44, 43 in a foam-tight manner.
[0039] In each case a latching projection 49 is positioned on the narrow sides 48 of the connector 45 such that when the downwardly tapering connecting parts 46, 47 engage by a frictional connection in the pipe connectors 41, 42, resilient latching hooks 50 of the lower housing part 39 engage behind the latching projections 49.
[0040] A sub-assembly 51 shown in
[0041] In each frame 53, 54 a flap 56 (see
[0042] In addition to an electric motor, a gear mechanism is also accommodated in the motor housing 52, said gear mechanism making it possible to control the positions of the flaps 56 independently of one another by means of two eccentric cams, as mentioned above, for example. When refrigeration is not required in the normal refrigeration compartment 2, both flaps 56 are closed, when refrigeration is only required in the lower region 27 only the flap 56 of the frame 53 is open in order to subject only the air channel 20 to cold air, when refrigeration is required in the upper region 28 only the flap 56 of the frame 54 is open and when refrigeration is required at the same time in both regions 27, 28 both flaps 56 may be open at the same time.
[0043] Since the upper region 28 and the lower region 27 of the upper storage compartment 21 are thus selectively able to be subjected to cold air, different temperatures may be set in both regions. The temperature of the lower region 27 should be the lower temperature, not least because at the height of the lower region 27 the molded part 24 is thicker and thus the thermal insulation of the lower region 27 is more effective than that of the upper region. Thus, in particular, the upper region 28 may be used as a normal refrigeration compartment and the lower region may be used as a fresh food refrigeration compartment.
[0044] In a simpler design of the refrigeration appliance, in which the storage compartment 21 is not sub-divided and only one individual air channel is provided behind the cover 30, one of the frames 53, 54, the flap mounted therein and optionally the eccentric cam driving the flap may be dispensed with.
[0045] A clamp 58 is also provided in order to fix the sub-assembly 51 in the connector 45, said clamp in the mounted state extending over the upper face of the motor housing 52 from one longitudinal wall of the connector 45 to the other. The clamp 58 has an upper wall 59 and two side walls 60 which encompass the motor housing 52 on both sides. In the mounted state, the clamp 58, on the one hand, is fixed by engagement in a recess 61 to a rear longitudinal wall of the connector 45 and, on the other hand, is fixed by latching between two latching hooks 62 to a front edge of the flange 44. On the clamp 58, as shown in
[0046]
LIST OF REFERENCE NUMERALS
[0047] 1 Body [0048] 2 Inner chamber [0049] 3 Inner chamber [0050] 4 Internal container [0051] 5 Internal container [0052] 6 Frame [0053] 7 Insulating material layer [0054] 8 Wall [0055] 9 Rear wall [0056] 10 Partition [0057] 11 Freezer compartment [0058] 12 Evaporator chamber [0059] 13 Wall [0060] 14 Suction region [0061] 15 Lamella-type evaporator [0062] 16 Distributor region [0063] 17 Fan [0064] 18 Distributor opening [0065] 19 Passage [0066] 20 Air channel [0067] 21 Storage compartment [0068] 22 Air channel cover [0069] 23 Rear wall [0070] 24 Molded part [0071] 25 Bottom [0072] 26 Intermediate wall [0073] 27 Lower region [0074] 28 Upper region [0075] 29 Air channel [0076] 30 Air channel cover [0077] 31 Sleeve [0078] 32 Latching pin [0079] 33 Passage [0080] 34 Shank [0081] 35 Head [0082] 36 Top [0083] 37 Aperture [0084] 38 Housing [0085] 39 Lower housing part [0086] 40 Upper housing part [0087] 41 Pipe connector [0088] 42 Pipe connector [0089] 43 Flange [0090] 44 Flange [0091] 45 Connector [0092] 46 Connecting part [0093] 47 Connecting part [0094] 48 Narrow side [0095] 49 Latching projection [0096] 50 Latching hook [0097] 51 Sub-assembly [0098] 52 Motor housing [0099] 53 Frame [0100] 54 Frame [0101] 55 Shoulder [0102] 56 Flap [0103] 57 Axis [0104] 58 Clamp [0105] 59 Upper wall [0106] 60 Side wall [0107] 61 Recess [0108] 62 Latching hook [0109] 63 Hook [0110] 64 Supply cable [0111] 65 Front part [0112] 66 Rear part [0113] 67 Projection [0114] 68 Widening