CN115218583A - Refrigerating and freezing device - Google Patents

Refrigerating and freezing device Download PDF

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Publication number
CN115218583A
CN115218583A CN202110420069.XA CN202110420069A CN115218583A CN 115218583 A CN115218583 A CN 115218583A CN 202110420069 A CN202110420069 A CN 202110420069A CN 115218583 A CN115218583 A CN 115218583A
Authority
CN
China
Prior art keywords
ice
ice making
water
door body
box body
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.)
Pending
Application number
CN202110420069.XA
Other languages
Chinese (zh)
Inventor
王爱民
陶瑞涛
孙永升
房雯雯
李靖
冯茹丹
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Qingdao Haier Smart Technology R&D Co Ltd
Haier Smart Home Co Ltd
Original Assignee
Qingdao Haier Smart Technology R&D Co Ltd
Haier Smart Home Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Qingdao Haier Smart Technology R&D Co Ltd, Haier Smart Home Co Ltd filed Critical Qingdao Haier Smart Technology R&D Co Ltd
Priority to CN202110420069.XA priority Critical patent/CN115218583A/en
Publication of CN115218583A publication Critical patent/CN115218583A/en
Pending legal-status Critical Current

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D11/00Self-contained movable devices, e.g. domestic refrigerators
    • F25D11/02Self-contained movable devices, e.g. domestic refrigerators with cooling compartments at different temperatures
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D21/00Defrosting; Preventing frosting; Removing condensed or defrost water
    • F25D21/14Collecting or removing condensed and defrost water; Drip trays
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D23/00General constructional features
    • F25D23/02Doors; Covers
    • F25D23/04Doors; Covers with special compartments, e.g. butter conditioners
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D2321/00Details or arrangements for defrosting; Preventing frosting; Removing condensed or defrost water, not provided for in other groups of this subclass
    • F25D2321/14Collecting condense or defrost water; Removing condense or defrost water
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D2323/00General constructional features not provided for in other groups of this subclass
    • F25D2323/02Details of doors or covers not otherwise covered

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Removal Of Water From Condensation And Defrosting (AREA)

Abstract

The invention provides a refrigerating and freezing device. The refrigerating and freezing device comprises a box body, at least one door body and an ice-making unit. The box body is limited with at least one storage compartment. At least one door body is used for opening and closing at least one storage compartment. The ice-making unit is provided in one door body. The refrigerating and freezing apparatus further includes a drainage system configured to collect the defrost water generated by the ice-making unit and blow the gasified defrost water toward an upper side of the cabinet. According to the invention, by collecting the defrosting water generated by the ice making unit and blowing the gaseous defrosting water to the upper part of the box body, the defrosting water can be effectively discharged and treated while the structure of the door body is simplified and a short pipeline is used, so that the production difficulty and the production cost are reduced, and the door body has a large ice making and storage space.

Description

Refrigerating and freezing device
Technical Field
The invention relates to the field of refrigeration and freezing, in particular to a refrigeration and freezing device with an ice-making unit arranged on a door body.
Background
At present, the refrigerator with the ice making chamber on the door body mostly guides the cold energy of the freezing chamber into the ice making chamber of the door body through an air channel, the air channel has a complex structure, condensation is easily generated at the butt joint position of the box body and the air channel of the door body, the ice making time is long, and the ice making chamber is easily tainted with the freezing chamber and influences the cleanliness of ice blocks. However, if the direct cooling ice making is performed on the door body, not only is the refrigerant pipeline connection complicated and difficult, the transmission distance is too long, but also effective defrosting and draining needs to be realized in a narrow space, and the technical problems which the skilled person wants to solve and cannot solve are always solved.
In view of the above, there is a need in the art to provide a refrigerator/freezer having an ice-making unit with a door, which can efficiently drain water and treat defrosted water.
Disclosure of Invention
It is an object of the present invention to overcome at least one of the technical disadvantages of the prior art and to provide a refrigerating and freezing apparatus having an ice-making unit with a door.
A further object of the invention is to improve the drainage effect.
It is a further object of the invention to prevent further water vapour from condensing in the water collector.
In particular, the present invention provides a refrigeration and freezing apparatus comprising:
a case defining at least one storage compartment;
the door body is used for opening and closing the at least one storage compartment; and
an ice making unit provided in one of the door bodies; and the refrigerating and freezing device further comprises:
and the drainage system is arranged for collecting the defrosting water generated by the ice making unit and blowing the gaseous defrosting water to the upper part of the box body.
Optionally, the drainage system comprises:
the water collector is arranged on the door body and used for collecting the defrosting water generated by the ice making unit;
the water draining air duct is communicated with the upper part of the water collector and the upper part of the box body; and
a drain fan configured to cause air to flow from the water collector to above the cabinet through the drain duct; wherein
And one end of the water collector, which is far away from the water drainage air duct, is communicated with the indoor environment.
Optionally, the drainage fan is arranged above the box body; and is provided with
The drain fan is arranged to draw air from the drain duct and to urge the air to flow along the top wall of the cabinet.
Optionally, the drain fan is a centrifugal fan with a rotation axis extending vertically.
Optionally, the drainage system further comprises:
and the return air duct is arranged with one end communicated with the water collector and the other end communicated with the indoor environment by penetrating through the front wall of the door body.
Optionally, the periphery of the water collector is provided with an insulating layer.
Optionally, the door defines an ice making compartment, the ice making unit is disposed in the ice making compartment, and the ice making unit includes:
the ice-making box is limited with at least one ice-making groove and is used for accommodating water or ice blocks;
the heat exchange fins are arranged to be in thermal connection with the refrigerating tubes so as to provide cold energy for the ice making chamber;
the separator is used for driving the ice blocks in the ice making groove to move; and
the heating pipe is used for heating the heat exchange fins to defrost; wherein
The heating pipe and the water discharge fan are set to work after the separator finishes driving the ice cubes each time.
Optionally, a heating wire is arranged at the bottom of the water collector; and is
Under the condition that the temperature more than or equal to of indoor environment predetermines the temperature threshold value and humidity is more than or equal to and predetermines the humidity threshold value, the heater strip sets up to be in the separator accomplishes work behind the drive to the ice-cube, drainage fan sets up to be in work behind the heater strip work predetermined time.
Optionally, under the condition that the temperature of the indoor environment is smaller than the preset temperature threshold and the humidity is smaller than the preset humidity threshold, the drainage fan is set to start to work when the heating pipe starts to serve as the heat exchange fin, and work until the height of the frost water in the water collector is smaller than or equal to the preset height threshold.
Optionally, the drain duct includes:
the door body section is arranged on the door body, and one end of the door body section is communicated with the water collector; and
the box body section is arranged on the box body, and one end of the box body section is communicated with the upper part of the box body; wherein
The door body section is connected and communicated with the box body section when the door body is in a closed state.
According to the invention, by collecting the defrosting water generated by the ice making unit and blowing the gaseous defrosting water to the upper part of the box body, the defrosting water can be effectively discharged and treated while the structure of the door body is simplified and a shorter pipeline is used, so that the production difficulty and the production cost are reduced, and the door body has larger ice making and storing space.
Furthermore, the centrifugal fan is used for promoting the air in the drainage air duct to flow along the top wall of the box body, so that dust can be prevented from falling into the fan and the drainage air duct, blown air can be diffused quickly, a thin layer of water mist is formed even if condensation is formed on the top wall of the box body, the water mist can be evaporated quickly, and the drainage effect and the user experience are better.
Furthermore, under the condition that the temperature and the humidity of the indoor environment are high, the heating wires are used for heating the water collector, the evaporation efficiency of the defrosting water can be improved, and more water vapor is prevented from being condensed in the water collector; under the condition that the temperature and the humidity of the indoor environment are lower, the heating pipe and the drainage fan start to work simultaneously, the water collector can be preheated by utilizing the ambient air, defrosting and drainage are carried out simultaneously, and the drainage period is further shortened.
The above and other objects, advantages and features of the present invention will become more apparent to those skilled in the art from the following detailed description of specific embodiments thereof, taken in conjunction with the accompanying drawings.
Drawings
Some specific embodiments of the invention will be described in detail hereinafter by way of example and not by way of limitation with reference to the accompanying drawings. The same reference numbers in the drawings identify the same or similar elements or components. Those skilled in the art will appreciate that the drawings are not necessarily drawn to scale. In the drawings:
figure 1 is a schematic isometric view of a refrigerated freezer in accordance with one embodiment of the invention;
FIG. 2 is a schematic isometric view of the door body of FIG. 1 with portions of the outer shell and ice-making bladder of the door body removed;
FIG. 3 is a schematic cross-sectional view of the ice-making unit of FIG. 1;
FIG. 4 is a schematic exploded view of the water receiving assembly of FIG. 3;
fig. 5 is a schematic isometric view of the water collector of fig. 1, viewed from below upwards;
fig. 6 is a schematic isometric view of a water collector and its return air duct in accordance with one embodiment of the invention.
Detailed Description
Fig. 1 is a schematic isometric view of a refrigeration freezer 100 according to one embodiment of the invention; fig. 2 is a schematic isometric view of the door body 120 of fig. 1, with portions of the outer shell 121 and ice making bladder 122 of the door body 120 removed. Referring to fig. 1 and 2, the refrigerating and freezing apparatus 100 may include a cabinet 110 defining at least one storage compartment 111, at least one door body for opening and closing the at least one storage compartment 111, an ice making unit 130 disposed in the door body 120, and a refrigerating system for providing cold to the at least one storage compartment 111 and the ice making unit 130. In the present invention, at least one is one, two, or more than two.
The door 120 may include a case 121, an ice making inner container 122 disposed inside the case 121, and an insulating layer disposed between the case 121 and the ice making inner container 122. The ice making inner container 122 may define an ice making compartment, and the ice making unit 130 may be disposed in the ice making compartment to increase a storage space of the storage compartment 111.
Fig. 3 is a schematic cross-sectional view of the ice making unit 130 of fig. 1. Referring to fig. 3, the ice making unit 130 may include an ice making housing 131, a refrigerating pipe 132, heat exchanging fins 133, a heating pipe 135, and a separator 136.
The ice-making housing 131 may define at least one ice-making groove for receiving water or ice cubes. The number of the ice making grooves may be plural and distributed along the longitudinal direction of the ice making housing 131.
Heat exchanging fins 133 may be provided in thermal connection with the refrigerating pipe 132 to provide cooling to the ice making compartment. In the present invention, the refrigerating pipe 132 may be a refrigerant evaporating pipe, which is connected to the portion of the refrigerating system located in the cabinet 110 through a flexible hose and connected in parallel with the evaporator.
The heat exchange fins 133 may be disposed below the ice making housing 131, and the refrigerating pipe 132 is interposed between the ice making housing 131 and the ice making housing 131, so that the ice making housing 131 and the heat exchange fins 133 are refrigerated at the same time, thereby improving the structural compactness of the ice making unit 130 and reducing the occupied space.
A heat insulator 134 may be disposed between the cooling duct 132 and the ice making housing 131 to reduce the ice making speed and improve the transparency of the made ice.
The heating pipe 135 may also be interposed between the ice making case 131 and the heat exchanging fins 133, and is used to heat the ice making case 131 to de-ice and/or heat the heat exchanging fins 133 to defrost.
Alternatively, the refrigerating pipe 132 and the heating pipe 135 may be fixed to the heat exchanging fins 133, and the heat exchanging fins 133 are thermally connected to the ice making housing 131.
The separator 136 may be configured to drive the movement of ice cubes within the ice making groove. Illustratively, the decoupler 136 may include a shift lever and a drive that drives the shift lever for movement.
The ice-making unit 130 may further include a box cover 137. The cover 137 may be disposed above the ice making housing 131 and guide the ice cubes driven by the separator 136 to a lower side of the ice making housing 131. An ice bank may be disposed below the ice making unit 130 to receive the dropped ice cubes.
The ice-making unit 130 may also include a fan assembly 138 to facilitate air circulation within the ice-making compartment.
The fan assembly 138 may include a circulating fan and a fan support. The circulation fan may be provided to promote the air in the ice making compartment to flow through the heat exchange fins 133. The fan support may be configured to be fixedly coupled to the box cover 137 and to support the circulating fan.
In some embodiments, the ice-making unit 130 may also include a water-receiving assembly 139. The water receiving assembly 139 may be disposed below the heat exchanging fins 133, and is configured to receive the defrosting water generated by the heat exchanging fins 133.
Fig. 4 is a schematic exploded view of the water receiving assembly 139 of fig. 3. Referring to fig. 4, the water receiving assembly 139 may include a water receiving pan 1391, heating wires 1392, insulation materials 1394, and a lower cover 1393.
A water receiving pan 1391 may be disposed below the heat exchanging fins 133 to receive defrosted water generated from the heat exchanging fins 133 when the heating pipe 135 operates.
A heating wire 1392 may be provided at a bottom wall of the drip pan 1391 to prevent the defrost water from being frozen in the drip pan 1391, so that the defrost water is smoothly discharged.
The heating wire 1392 may be disposed below the drip tray 1391 to avoid potential safety hazards and improve the safety of the ice making unit 130.
Insulation 1394 can be provided below heater wire 1392 to reduce the temperature effects of heating on the environment below heater wire 1392.
A lower cover 1393 may be disposed below the insulation material 1394 to support the water pan 1391, heating wire 1392, and insulation material 1394. The lower cover 1393 may be fixedly connected to at least one of the driving unit of the separator 136 and the cover 137 to fix the water receiving assembly 139, thereby facilitating the production and transportation of the ice making unit 130.
The lower cover plate 1393 can be provided with a water outlet and a line passing hole, so that defrosting water in the water pan 1391 is discharged through the water outlet, and the heating wire 1392 is electrically connected through the line passing hole.
The projection of the heat exchange fins 133 on the vertical plane may be located in the lower cover 1393 to improve the structural compactness of the ice making unit 130.
The lower cover plate 1393 may be formed with a vent hole penetrating the circumferential side wall of the lower cover plate 1393 in a horizontal direction to allow the heat exchange fins 133 to exchange heat with the surrounding environment.
Referring to fig. 1 and 2, the refrigeration freezer 100 may also include a drainage system. In particular, the drainage system may be configured to collect the defrosted water generated by the ice making unit 130 and blow the gasified defrosted water to the upper side of the cabinet 110, so as to achieve effective defrosted water drainage and treatment, reduce production difficulty and production cost, and make the door 120 have a large ice making and storage space while simplifying the structure of the door 120 and using a short pipeline.
The drain system may include a water collector 141, a drain duct, and a drain fan 145. The water collector 141 may be disposed at the door 120, and is communicated with the water tray 1391 through a pipe 142, for collecting defrosted water generated by the ice making unit 130.
The drain duct may be provided to communicate the sump 141 with the upper side of the case 110. The drain fan 145 may be provided to induce air to flow from the sump 141 to the upper side of the cabinet 110 through the drain duct.
In some embodiments, the heating pipe 135 and the drain fan 145 may be configured to operate after the separator 136 finishes driving the ice cubes each time, that is, defrosting the heat exchanging fins 133 and treating the defrosting water each time ice making is finished, so as to reduce the amount of the defrosting water generated by a single defrosting and shorten the time required for a single draining.
In some embodiments, the drain duct may include a door section 143 and a box section 144. Tank section 144 may be disposed on tank 110 and communicate at one end with the top of tank 110.
The door body section 143 may be disposed at the door body 120 and have one end communicating with the sump 141. The door body section 143 may be disposed to be contiguous and communicated with the cabinet section 144 when the door body 120 is in a closed state, so that the defrosted water may be transmitted to above the cabinet 110. The door section 143 and the cabinet section 144 may be respectively formed with a door interface 1431 and a cabinet interface 1441 for docking communication.
For example, the door 120 may be partially disposed in the storage compartment 111 when in a closed state. The door body interface 1431 may be disposed at a portion of the door body 120 located in the storage compartment 111, and is disposed at a side wall close to a rotation axis of the door body 120. The box body section 144 may be at least partially pre-installed in the insulation layer of the box body 110, and the box body interface 1441 may be disposed on a sidewall of the storage compartment 111 near the rotation axis of the door 120.
In some embodiments, the drain fan 145 may be disposed above the cabinet 110, and configured to suck air from the drain duct and promote the air to flow along the top wall of the cabinet 110, so that the blown air is quickly diffused, a thin layer of water mist is formed even if condensation is formed on the top wall of the cabinet 110, and the air mist is quickly evaporated, thereby achieving a good drainage effect and a good user experience.
The drain fan 145 may be a centrifugal fan with its axis of rotation extending vertically to prevent dust from falling into the fan and the interior of the drain duct.
Fig. 6 is a schematic isometric view of the water collector 141 and its return air duct 147 in accordance with one embodiment of the present invention. Referring to fig. 6, an end of the water collector 141 remote from the drain duct may be disposed to communicate with the indoor environment through the return duct 147 to achieve circulation of air.
The return air duct 147 may communicate with the indoor environment at the front wall of the door 120 to ensure the amount of air entering the water collector 141. That is, the return air duct 147 is provided such that one end thereof communicates with the water collector 141 and the other end thereof communicates with the indoor environment through the front wall of the door 120.
Illustratively, the door 120 may also be provided with a water dispenser, and the housing 123 of the water dispenser may have a cavity recessed rearward. A return air duct 147 can be provided through the housing 123 of the water dispenser in communication with the cavity to draw in room air.
Fig. 5 is a schematic perspective view of the sump 141 of fig. 1, viewed from below to above, and referring to fig. 5, the bottom of the sump 141 may be provided with a heating wire 146 to heat the defrosted water within the sump 141.
In case that the temperature of the indoor environment is equal to or higher than the preset temperature threshold and the humidity is equal to or higher than the preset humidity threshold, the heater wire 146 may be set to operate after the separator 136 completes driving of the ice cubes, and the drain fan 145 may be set to operate after the heater wire 146 operates for a preset time, so as to improve the evaporation efficiency of the defrosting water and prevent more water vapor from being condensed in the sump 141.
Under the condition that the temperature of the indoor environment is less than the preset temperature threshold and the humidity is less than the preset humidity threshold, the drainage fan 145 may be set to start working while the heating pipe 135 starts to be the heat exchange fin 133, and work until the height of the frost water in the water collector 141 is less than or equal to the preset height threshold, so as to preheat the water collector 141 by using the ambient air, and enable the defrosting and the drainage to be performed simultaneously, thereby further shortening the drainage period.
The preset height threshold may be 0, i.e., the drain fan 145 is operated to completely remove the defrosted water in the sump 141.
An insulating layer may be provided on the outer circumference of the water collector 141 to prevent condensation of the outer wall of the water collector 141 and reduce the influence of the cold of the ice-making compartment on the temperature of the water collector 141. The water collector 141 may be directly disposed in the foaming layer of the door 120, or may be disposed outside the foaming layer of the door 120 and separately coated with a heat insulating material.
Thus, it should be appreciated by those skilled in the art that while a number of exemplary embodiments of the invention have been illustrated and described in detail herein, many other variations or modifications consistent with the principles of the invention may be directly determined or derived from the disclosure of the present invention without departing from the spirit and scope of the invention. Accordingly, the scope of the invention should be understood and interpreted to cover all such other variations or modifications.

Claims (10)

1. A refrigeration chiller comprising:
a case defining at least one storage compartment;
the door body is used for opening and closing the at least one storage compartment; and
an ice making unit provided in one of the door bodies; and the refrigerating and freezing device further comprises:
and the drainage system is arranged for collecting the defrosting water generated by the ice making unit and blowing the gaseous defrosting water to the upper part of the box body.
2. The refrigeration chiller of claim 1, wherein the drainage system comprises:
the water collector is arranged on the door body and is used for collecting defrosting water generated by the ice making unit;
a drainage air duct which is arranged to communicate the water collector with the upper part of the box body; and
a drain fan configured to cause air to flow from the water collector to above the cabinet through the drain duct; wherein
And one end of the water collector, which is far away from the water drainage air channel, is communicated with an indoor environment.
3. A refrigerator-freezer according to claim 2,
the drainage fan is arranged above the box body; and is
The drain fan is arranged to draw air from the drain duct and to urge the air to flow along the top wall of the cabinet.
4. The refrigeration and freezing apparatus according to claim 2,
the drainage fan is a centrifugal fan with a rotation axis extending vertically.
5. The refrigeration chiller of claim 2, wherein the drainage system further comprises:
and the air return duct is arranged in a way that one end is communicated with the water collector, and the other end penetrates through the front wall of the door body and is communicated with the indoor environment.
6. A refrigerator-freezer according to claim 2,
and a heat insulation layer is arranged on the periphery of the water collector.
7. The refrigerator-freezer of claim 2, wherein the door defines an ice making compartment, the ice making unit is disposed in the ice making compartment, and the ice making unit comprises:
the ice-making box is limited with at least one ice-making groove and is used for containing water or ice blocks;
the heat exchange fins are arranged to be in thermal connection with the refrigerating tubes so as to provide cold energy for the ice making chamber;
the separator is used for driving the ice blocks in the ice making groove to move; and
the heating pipe is used for heating the heat exchange fins to defrost; wherein
The heating pipe and the drainage fan are set to work after the separator finishes driving the ice cubes each time.
8. The refrigeration freezer of claim 7, wherein,
the bottom of the water collector is provided with a heating wire; and is provided with
Under the condition that the temperature more than or equal to of indoor environment predetermines the temperature threshold value and humidity is more than or equal to and predetermines the humidity threshold value, the heater strip sets up to be in the separator accomplishes work behind the drive to the ice-cube, drainage fan sets up to be in work behind the heater strip work predetermined time.
9. The refrigeration freezer of claim 8,
and under the condition that the temperature of the indoor environment is smaller than the preset temperature threshold and the humidity is smaller than the preset humidity threshold, the drainage fan is set to start working when the heating pipe starts to serve as the heat exchange fin, and the drainage fan works until the height of the frost water in the water collector is smaller than or equal to the preset height threshold.
10. A refrigerator-freezer according to claim 2, wherein the drain duct comprises:
the door body section is arranged on the door body, and one end of the door body section is communicated with the water collector; and
the box body section is arranged on the box body, and one end of the box body section is communicated with the upper part of the box body; wherein
The door body section is connected and communicated with the box body section when the door body is in a closed state.
CN202110420069.XA 2021-04-19 2021-04-19 Refrigerating and freezing device Pending CN115218583A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202110420069.XA CN115218583A (en) 2021-04-19 2021-04-19 Refrigerating and freezing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202110420069.XA CN115218583A (en) 2021-04-19 2021-04-19 Refrigerating and freezing device

Publications (1)

Publication Number Publication Date
CN115218583A true CN115218583A (en) 2022-10-21

Family

ID=83604096

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202110420069.XA Pending CN115218583A (en) 2021-04-19 2021-04-19 Refrigerating and freezing device

Country Status (1)

Country Link
CN (1) CN115218583A (en)

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