CN210036033U - Improved double-greenhouse wine cabinet - Google Patents
Improved double-greenhouse wine cabinet Download PDFInfo
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- CN210036033U CN210036033U CN201920749011.8U CN201920749011U CN210036033U CN 210036033 U CN210036033 U CN 210036033U CN 201920749011 U CN201920749011 U CN 201920749011U CN 210036033 U CN210036033 U CN 210036033U
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Abstract
An improved double-greenhouse wine cabinet comprises a box body, a cabinet door, a partition plate, a refrigeration compressor, a first evaporator, a second evaporator, a first partition plate with a first fan, a second partition plate with a second fan and a control circuit; the box body comprises a shell and an inner container, wherein a partition cavity boss is arranged on a back plate of the inner container, a partition plate is horizontally arranged in the inner container and is butted with the partition cavity boss, and the partition plate is matched with a first partition cavity plate and a second partition cavity plate to divide the inner container into a first refrigerating chamber and a second refrigerating chamber; the first water receiving tank is arranged on the boss of the separation cavity, and the rear water tank is positioned at the bottom of the first refrigerating chamber and receives condensed water generated by the first evaporator; the front water channel part extends forwards into the first refrigerating chamber and is positioned below the bottom of the first cavity separating plate, and the front water channel part is used for receiving condensed water dropping on the first cavity separating plate. Due to the adoption of the structure, the temperature control of the wine cabinet with the double greenhouses is accurate, and the humidity and the water accumulation in the double greenhouses of the wine cabinet can be prevented.
Description
Technical Field
The utility model relates to a wine cabinet, especially a double-greenhouse wine cabinet.
Background
At present, a double-temperature wine cabinet in the prior art comprises a cabinet body, a cabinet door, a refrigeration compressor, a partition plate, a first evaporator, a first air duct partition plate with a fan, a first water receiving tank, a second evaporator, a second air duct partition plate with a fan, a second water receiving tank and a control circuit; the box body comprises a shell, an inner container and a heat-insulating layer, wherein the compartment plate is horizontally arranged on the inner container and is matched with the vertically arranged first air duct compartment plate and the vertically arranged second air duct compartment plate to divide the space of the inner container into a first refrigerating chamber, a second refrigerating chamber and an evaporation chamber; first water receiving tank level sets up in the evaporation chamber and is located compartment board place height, and first water receiving tank separates into two independent first evaporation chamber and second evaporation chamber to the evaporation chamber, and first water receiving tank is located the bottom in first evaporation chamber for accept the produced comdenstion water of first evaporimeter, the existing problem is: the first water receiving tank is also used as a partition plate of the first evaporation cavity and the second evaporation cavity, and is directly fixedly connected to the back plate of the inner container by two screws, so that the first evaporation cavity and the second evaporation cavity are interfered with each other and subjected to temperature serial connection due to poor temperature insulation effect, and the control of the two temperature chambers of the wine cabinet is not accurate; in addition, the first water receiving groove is formed in the rear portion of the first air duct cavity separating plate, the second water receiving groove is formed in the rear portion of the second air duct cavity separating plate, condensation water on the outer surface of the first air duct cavity separating plate drops on the cavity separating plate, condensation water on the outer surface of the second air duct cavity separating plate drops on the bottom of the second refrigerating chamber, and therefore the double-temperature chamber of the wine cabinet is wet and generates water accumulation.
SUMMERY OF THE UTILITY MODEL
The utility model aims at: in order to solve the problems, an improved double-greenhouse wine cabinet is provided, which has the advantages that the temperature control of the double greenhouses is accurate, and the humidity and the water accumulation in the double greenhouses of the wine cabinet can be prevented.
The utility model discloses a realize like this: an improved double-greenhouse wine cabinet comprises a box body, a cabinet door, a partition plate, a refrigeration compressor, a first evaporator, a second evaporator, a first partition plate with a first fan, a second partition plate with a second fan and a control circuit; the first partition cavity plate is provided with air inlet holes opposite to the first fan, and the second partition cavity plate is provided with air inlet holes corresponding to the second fan; the box body comprises a shell and an inner container, a back plate of the inner container is horizontally provided with a partition cavity boss, the rear part of the inner container is divided into a first evaporation cavity and a second evaporation cavity from top to bottom by the partition cavity boss,
the partition plate is horizontally arranged in the inner container and is butted with the partition boss, and the partition plate is matched with the first partition plate and the second partition plate to divide the inner container into a first refrigerating chamber and a second refrigerating chamber;
the water-collecting device also comprises a first water-collecting tank, wherein the first water-collecting tank comprises a rear water-collecting tank part positioned at the rear part, a front water-collecting tank part positioned at the front part and a water drainage interface;
the first water receiving tank is arranged on the boss of the separation cavity, and the rear water tank is positioned at the bottom of the first refrigerating chamber and receives condensed water generated by the first evaporator; the front water channel part extends forwards into the first refrigerating chamber and is positioned below the bottom of the first cavity separating plate, and the front water channel part is used for receiving condensed water dropping on the first cavity separating plate.
The partition board is horizontally inserted into the inner container along the positioning grooves on the inner walls of the left side and the right side of the inner container and reaches a drop-level inner stop position formed by the rear water groove part and the front water groove part, and the partition board is connected with the first water receiving groove.
Furthermore, separate chamber boss bottom surface and establish to have the inclined plane of slope, the second fan that the second separated on the chamber board is installed and is being separated chamber boss bottom surface below, and the installation inclination of second fan separates chamber board air inlet hole back backward flow air flow more smooth and in the same direction as with separating chamber boss bottom surface parallel arrangement for through the second.
Further, separate the chamber boss for hollow, with the inner bag integrated into one piece preparation form, separate the cavity intussuseption of chamber boss and be filled with the heat preservation for the thermal insulation performance between first evaporation chamber and the second evaporation chamber is better.
The step is arranged on the back plate at the lower part of the inner container, a second water receiving groove which is integrally formed with the inner container is arranged on the step, the second water receiving groove is positioned at the bottom of the second refrigerating chamber, and the front part of the second water receiving groove extends into the second refrigerating chamber and is used for receiving condensed water dripping from the second cavity separating plate.
And an overflow hole seat is arranged in the second water receiving tank, and when the accumulated water in the second water receiving tank is higher than the overflow hole seat, the accumulated water is discharged from the through hole on the overflow hole seat.
The lower end of the front wall plate of the rear water tank part is provided with a fixing plate, and a screw penetrates through the fixing plate to be screwed with the partition cavity boss on the inner container.
The rear side of back basin portion one end is equipped with keeps away the dead slot, keeps away the dead slot and is used for placing the pipeline of connecting first evaporimeter, the upper end of keeping away the dead slot is equipped with the breakwater for prevent that the ponding of first water receiving tank from overflowing to flow into in keeping away the dead slot.
The utility model relates to an improved double-temperature-chamber wine cabinet, because the back plate of the inner container is provided with the separation cavity boss which is integrally formed with the inner container, the separation cavity boss divides the rear part of the inner container into a first evaporation cavity and a second evaporation cavity from top to bottom, the separation cavity boss is hollow, and the cavity of the separation cavity boss is filled with a heat preservation layer, so that the temperature separation effect between the first evaporation cavity and the second evaporation cavity is better; meanwhile, the first water receiving tank is arranged on the partition cavity boss, the front water tank portion extends forwards into the first refrigerating chamber and is located below the bottom of the first partition cavity plate, the front water tank portion is used for receiving condensed water dripped on the first partition cavity plate and then flows into the rear water tank portion, and the condensed water is discharged through the drainage interface, so that the accumulated water and the moisture generated in the first refrigerating chamber are effectively prevented. The water containing surface areas of the first water receiving groove and the second water receiving groove are enlarged, the condensed dry cold air is fully contacted with the water passing surface, the humidity of the cold air is rapidly increased, the humidity of the wine cabinet is kept appropriate, and wine is better stored.
Drawings
Fig. 1 is a perspective view of the present invention.
Fig. 2 is a perspective view of the utility model with the cabinet door removed.
Fig. 3 is a front view of the utility model with the cabinet door removed.
Fig. 4 is a view a-a of fig. 3.
Fig. 5 is a perspective view of the inner container of the present invention.
Fig. 6 is a perspective view of the first water receiving tank of the present invention.
Fig. 7 is a second perspective view of the first water receiving tank of the present invention.
Detailed Description
The embodiments of the present invention will be described in detail with reference to the drawings, and the specific embodiments described herein are only for the purpose of illustrating the present invention and are not to be construed as limiting the present invention.
As shown in fig. 1-5, an improved double-temperature chamber wine cabinet comprises a cabinet body 1, a cabinet door 2 with a window, a compartment plate 3, a refrigeration compressor 4, a first evaporator 51, a second evaporator 52, a first compartment plate 61 with a first fan, a second compartment plate 62 with a second fan and a control circuit; the first cavity separating plate 61 is provided with an air inlet hole opposite to the first fan, and the second cavity separating plate 62 is provided with an air inlet hole corresponding to the second fan; the box body 1 comprises a shell 11 and an inner container 12, a back plate of the inner container 12 is horizontally provided with a partition cavity boss 1A, the rear part of the inner container 11 is divided into a first evaporation cavity 71 and a second evaporation cavity 72 by the partition cavity boss 1A from top to bottom,
the partition plate 3 is horizontally arranged in the inner container 12 and is butted with the partition boss 1A, and the partition plate 3 is matched with the first partition plate 61 and the second partition plate 62 to divide the inner container into a first refrigerating chamber 81 and a second refrigerating chamber 82.
As shown in fig. 6 to 7, the water collecting device further comprises a first water collecting tank 91, wherein the first water collecting tank 91 comprises a rear water tank part 911 located at the rear part and a front water tank part 912 located at the front part, accumulated water in the front water tank part 912 is collected and flows into the rear water tank part 911, and a bottom plate of the rear water tank part 911 is provided with a water drainage interface 913;
the first water receiving tank 91 is arranged on the partition boss 1A, and the rear water tank part 911 is positioned at the bottom of the first refrigerating chamber 81 to receive condensed water generated by the first evaporator 51; the front water trough portion 912 extends forward into the first refrigerating compartment 81 and is located below the bottom of the first partition plate 61, and the front water trough portion 912 is used for receiving the condensed water dropping from the first partition plate 61.
The partition plate 3 is horizontally inserted into the liner along the positioning grooves 121 on the inner walls of the left side and the right side of the liner, reaches a drop-level inner stop position formed by the rear water tank part 911 and the front water tank part 912, and is connected with the first water receiving tank 91.
Further, separate chamber boss 1A for hollow, with the inner bag integrated into one piece preparation form, separate the cavity intussuseption of chamber boss 1A and be filled with the heat preservation for the thermal-insulated performance between first evaporation chamber 71 and the second evaporation chamber 72 is better.
A step 122 is arranged on the back plate at the lower part of the liner 12, a second water receiving groove 92 integrally formed with the liner is arranged on the step 122, the second water receiving groove 92 is positioned at the bottom of the second refrigerating chamber 82, and the front part of the second water receiving groove 92 extends into the second refrigerating chamber for receiving the condensed water dropping from the second cavity-separating plate 62.
An overflow hole seat 921 is arranged in the second water receiving tank 92, when the accumulated water in the second water receiving tank 92 is higher than the overflow hole seat 921, the accumulated water is discharged to an evaporator on the refrigeration compressor 44 from a through hole on the overflow hole seat 921, and the accumulated water is vaporized while cooling the refrigeration compressor.
A fixing plate 914 is provided at the lower end of the front wall plate of the rear tub 911, and a screw is screwed to the compartment boss 97 of the inner tub 9 through the fixing plate 915.
A clearance groove 915 is formed in the rear side of one end of the rear water tank 911, the clearance groove 915 is used for placing a pipeline connected with the first evaporator 51, and a water baffle 916 is arranged at the upper end of the clearance groove 915 and used for preventing accumulated water in the first water receiving tank 91 from overflowing and flowing into the clearance groove 915.
Because the flourishing water surface area of first water receiving tank 91, second water receiving tank 92 enlarges, the dry refrigerated air after the condensation obtains abundant contact when first water receiving tank 91, second water receiving tank 92, increases the humidity of refrigerated air fast for the humidity of gradevin maintains suitably, stores the beverage better.
What has been described above is only a preferred embodiment of the present invention. It should be noted that, for a person skilled in the art, several modifications and variations can be made without departing from the principle of the invention, which is also considered as the protection scope of the invention.
Claims (9)
1. An improved double-greenhouse wine cabinet comprises a box body, a cabinet door, a partition plate, a refrigeration compressor, a first evaporator, a second evaporator, a first partition plate with a first fan, a second partition plate with a second fan and a control circuit, wherein the cabinet door is arranged on the box body; the first partition cavity plate is provided with air inlet holes opposite to the first fan, and the second partition cavity plate is provided with air inlet holes corresponding to the second fan; the box includes shell and inner bag, its characterized in that: a partition cavity boss is horizontally arranged on the back plate of the inner container, the partition cavity boss divides the rear part of the inner container into a first evaporation cavity and a second evaporation cavity from top to bottom,
the partition plate is horizontally arranged in the inner container and is butted with the partition boss, and the partition plate is matched with the first partition plate and the second partition plate to divide the inner container into a first refrigerating chamber and a second refrigerating chamber;
the water-collecting device also comprises a first water-collecting tank, wherein the first water-collecting tank comprises a rear water-collecting tank part positioned at the rear part, a front water-collecting tank part positioned at the front part and a water drainage interface;
the first water receiving tank is arranged on the boss of the separation cavity, and the rear water tank is positioned at the bottom of the first refrigerating chamber and receives condensed water generated by the first evaporator; the front water channel part extends forwards into the first refrigerating chamber and is positioned below the bottom of the first cavity separating plate, and the front water channel part is used for receiving condensed water dropping on the first cavity separating plate.
2. An improved dual-compartment wine cabinet according to claim 1 wherein: the partition board is horizontally inserted into the inner container along the positioning grooves on the inner walls of the left side and the right side of the inner container and reaches a drop-level inner stop position formed by the rear water groove part and the front water groove part, and the partition board is connected with the first water receiving groove.
3. An improved dual-compartment wine cabinet according to claim 2 wherein: the bottom surface of the boss of the separation cavity is provided with an inclined plane with gradient, a second fan on the second separation cavity plate is arranged below the bottom surface of the boss of the separation cavity, and the installation inclination angle of the second fan is parallel to the bottom surface of the boss of the separation cavity.
4. An improved dual-compartment wine cabinet according to claim 2 or 3 wherein: the partition cavity boss is hollow and is integrally formed with the inner container, and a heat insulation layer is filled in a cavity of the partition cavity boss.
5. An improved dual-compartment wine cabinet according to claim 4 wherein: the lower back plate of the inner container is provided with a step, the step is provided with a second water receiving groove which is integrally formed with the inner container, the second water receiving groove is positioned at the bottom of the second refrigerating chamber, and the front part of the second water receiving groove extends into the second refrigerating chamber and is used for receiving condensed water dripping from the second cavity separating plate.
6. An improved dual-compartment wine cabinet according to claim 5 wherein: and an overflow hole seat is arranged in the second water receiving tank, and when the accumulated water in the second water receiving tank is higher than the overflow hole seat, the accumulated water is discharged from the through hole on the overflow hole seat.
7. An improved dual-compartment wine cabinet according to claim 1 wherein: the lower end of the front wall plate of the rear water tank part is provided with a fixing plate, and a screw penetrates through the fixing plate to be screwed with the partition cavity boss on the inner container.
8. An improved dual-compartment wine cabinet according to claim 7 wherein: and a clearance groove is formed in the rear side of one end of the rear water tank part.
9. An improved dual-compartment wine cabinet according to claim 8 wherein: and a water baffle is arranged at the upper end of the clearance groove.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920749011.8U CN210036033U (en) | 2019-05-22 | 2019-05-22 | Improved double-greenhouse wine cabinet |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920749011.8U CN210036033U (en) | 2019-05-22 | 2019-05-22 | Improved double-greenhouse wine cabinet |
Publications (1)
Publication Number | Publication Date |
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CN210036033U true CN210036033U (en) | 2020-02-07 |
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ID=69367561
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201920749011.8U Active CN210036033U (en) | 2019-05-22 | 2019-05-22 | Improved double-greenhouse wine cabinet |
Country Status (1)
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CN (1) | CN210036033U (en) |
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2019
- 2019-05-22 CN CN201920749011.8U patent/CN210036033U/en active Active
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Denomination of utility model: An improved double greenhouse wine cabinet Effective date of registration: 20211126 Granted publication date: 20200207 Pledgee: Guangdong Shunde Rural Commercial Bank Co.,Ltd. science and technology innovation sub branch Pledgor: GUANGDONG WEINUO ELECTRIC APPLIANCE Co.,Ltd. Registration number: Y2021980013376 |