CN215604198U - Heating cabinet - Google Patents

Heating cabinet Download PDF

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Publication number
CN215604198U
CN215604198U CN202120891661.3U CN202120891661U CN215604198U CN 215604198 U CN215604198 U CN 215604198U CN 202120891661 U CN202120891661 U CN 202120891661U CN 215604198 U CN215604198 U CN 215604198U
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China
Prior art keywords
heating
cabinet
door
area
cabinet body
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CN202120891661.3U
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Chinese (zh)
Inventor
袁江为
杜威
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Wuhan Grom Intelligent Technology Co ltd
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Wuhan Grom Intelligent Technology Co ltd
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Priority to CN202120891661.3U priority Critical patent/CN215604198U/en
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Abstract

The utility model relates to the technical field of heating, in particular to a heating cabinet, which is provided with a fan and a door body, so that a user can push hot air after the temperature of air in the cabinet body rises, cold air in a cold starting state is prevented from being directly blown out, and the adjustment of hot air supply is realized; through setting up the baffle of seting up the bleeder vent for the user can place the clothing and dry in the hot-blast district, makes the function of heating cabinet abundanter various.

Description

Heating cabinet
Technical Field
The utility model relates to the technical field of heating, in particular to a heating cabinet.
Background
In daily life, people use various electric appliances to adapt to seasonal temperature changes, for example, various heating appliances are used in winter, and a plurality of different types of heating appliance branches are derived under the broad category of heating appliances aiming at different application scenes and heating requirements.
In the heating cabinet in the prior art, a ventilation device such as a fan is usually used to blow out heated air, but the temperature of the heating sheet after cold start is still relatively low, which causes the temperature of warm air blown from the cabinet body to an indoor area to be heated to be relatively low, so that the warm air with relatively low temperature cannot achieve a predetermined heating effect on a user, but rather, the loss of the body surface temperature of the user is aggravated, and in general, the comfort of use of the heating cabinet after cold start is relatively low;
moreover, the existing heating cabinet has single function, usually only plays the role of warm air supply, and does not have the function of drying clothes.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a heating cabinet which can control hot air supply and has a clothes drying function.
The technical scheme adopted by the utility model for solving the technical problems is as follows: a heating cabinet is constructed, and comprises a cabinet body, a partition plate provided with air holes, a fan and a door body, wherein the partition plate is arranged in the cabinet body, the two sides of the partition plate respectively enclose a heating area and a hot air area with the cabinet body, the heating area is provided with a heating unit, and the fan is arranged on the door body;
the door body is movably arranged on the cabinet body, and when the door body covers the opening side of the hot air area, the fan pumps air in the hot air area to the outside of the cabinet body.
In the heating cabinet, the heating cabinet further comprises a sliding door, the sliding door is arranged on the cabinet body in a sliding or rotating mode so that the sliding door covers or opens the opening side of the heating area, and a plurality of through holes are formed in the sliding door.
In the heating cabinet, the heating unit comprises at least one heating sheet, and the heating sheet is connected with a power supply.
In the heating cabinet, the heating unit comprises a plurality of heating sheets, each heating sheet is positioned in the heating area, and a gap is arranged between every two adjacent heating sheets.
In the heating cabinet, the heating cabinet comprises a plurality of fans, and each fan is positioned on the door body.
In the heating cabinet, the fans are distributed on the door body in a linear array or a circumferential array.
In the heating cabinet, the door body is connected with the cabinet body in a sliding or rotating way.
In the heating cabinet, the side wall of the cabinet body in the heating area is provided with a ventilation waist hole.
In the heating cabinet, a heat insulation layer is arranged in the cabinet body.
In the heating cabinet, the cabinet body is provided with the storage groove, the cabinet body is movably connected with the storage door, and the storage door is used for covering the storage groove.
The heating cabinet provided by the utility model at least has the following beneficial effects: by arranging the fan and the door body, a user can push hot air after the temperature of air in the cabinet body rises, so that cold air in a cold start state is prevented from being directly blown out, and the adjustment of hot air supply is realized; through the arrangement of the partition plate provided with the air holes, the user can place clothes in the hot air area for drying.
Drawings
The utility model will be further described with reference to the accompanying drawings and examples, in which:
FIG. 1 is a schematic diagram of the heating cabinet of the present invention.
Detailed Description
FIG. 1 illustrates a cabinet 10 according to some embodiments of the present invention, the cabinet 10 being used for hot air supply; it may include a cabinet 100, a partition 200, a fan 300, and a door 400. The cabinet 100 is used to mount the partition 200, the fan 300, and the door 400. The partition 210 is disposed in the cabinet 100 and is used for carrying clothes to be dried. The fan 300 is disposed on the door 400, and is configured to draw air in a predetermined direction; the door 400 is movably disposed on the cabinet 100 and is used for driving the fan 300 to move synchronously;
two sides of the partition 210 and the cabinet 100 respectively enclose a heating area 110 and a hot air area 120, the heating area 110 is used for installing the heating unit 500, and the hot air area 120 is used for containing heated air and articles to be dried. The partition plate 200 is provided with a ventilation hole 210, and the ventilation hole 210 is used for communicating the heating area 110 and the hot air area 120, so that the gas heated by the heating area 110 can flow into the hot air area 120.
As can be understood, when the door 400 covers the opening side of the hot air zone 120, the fan 300 on the door 400 will pump the air in the hot air zone 120 to the outside of the cabinet 100; of course, in some embodiments, not only the fan 300 may be used to pump the gas in the hot blast zone 120, but also other devices or mechanisms capable of directing the gas in a predetermined direction may be used as known in the art.
As shown in fig. 1, the heating cabinet 10 may further include a sliding door 600 in some embodiments, the sliding door 600 is slidably or rotatably disposed on the cabinet body 100, so that the sliding door 600 covers or opens the opening side of the heating area 110, and a plurality of through holes 610 are formed on the sliding door 600. The sliding door 600 functions to cover or open the opening side of the heating area 110, and the through hole 610 functions to communicate the heating area 110 with the outside of the cabinet.
It is understood that a filtering structure may be disposed on the through hole 610 to filter the air to be heated flowing into the heating region 110, so as to prevent impurities such as dust from damaging the heat generating unit 500 in the heating region 110.
As shown in fig. 1, the heat generating unit 500 may include at least one heat generating sheet 510 in some embodiments, and the heat generating sheet 510 is connected to a power source. The heat generating sheet 510 is used for generating heat by energization, so that the gas in the heating region 110 can be heated.
It will be appreciated that the heated air will flow into the hot blast zone 120, and then the hot air will be drawn out of the cabinet 100 by the fan 300.
As shown in fig. 1, the heat generating sheet 510 may be a graphene heat generating sheet in some embodiments.
Understandably, adopt graphite alkene to generate heat the piece as generating heat piece 510, have and avoid light pollution and the efficient advantage that generates heat, it is long when the heat engine that can shorten the heating cabinet, improve the drying efficiency of article. Of course, besides the technical solution of the present embodiment, the heat generating sheet 510 may also be one or a combination of several other devices or mechanisms that can be powered and generate heat in the prior art, such as a USB heat generating sheet, a ceramic heat generating sheet, a silicon heat conducting heat generating sheet, a mica heat generating sheet, and the like, in some embodiments.
Further, the heat generating unit 500 may include a plurality of heat generating sheets 510 in some embodiments, each of the heat generating sheets 510 is located in the heating region 110, and a space is provided between two adjacent heat generating sheets 510.
As can be appreciated, the common arrangement of the plurality of heat generating sheets 510 can further shorten the warm-up time of the heating cabinet 10, and further improve the drying efficiency of the articles. The interval between two adjacent heating sheets 510 can avoid the excessive cross overlapping of the heating areas of two heating sheets 510, and improve the heating efficiency of the heating unit 500.
As shown in fig. 1, the number of fans 300 may be two or more in some embodiments. The fans 300 are used for guiding the air in the hot air zone 120 to flow out of the cabinet 100, so as to supply warm air.
It can be understood that the provision of the plurality of fans 300 can increase the amount of warm air supplied to the heating cabinet 10. Secondly, if each fan 300 is set in an individually controlled manner, the user can freely select the amount of warm air, which is very convenient.
As shown in fig. 1, the door 400 may be slidably or rotatably connected to the cabinet 100 in some embodiments.
It is understood that the door 400 may be slidably connected to the cabinet 100 through a guide rail, and the door 400 may be rotatably connected to the cabinet 100 through a hinge or the like.
Further, as shown in fig. 1, the fans 300 may be distributed on the door 400 in a linear array or a circumferential array in some embodiments.
It can be understood that different distribution modes of the fans 300 will change the amount of air at each position when the warm air is supplied. When the door 400 is slidably disposed on the cabinet 100, the door 400 covers the opening side of the hot air zone 120 at different degrees, the number of the fans 300 capable of pumping the air in the hot air zone 120 is different, and thus, the user can flexibly adjust the supply amount of the hot air according to actual needs.
As shown in fig. 1, the cabinet 100 may have ventilation waist holes 130 formed on the side walls of the heating region 110 in some embodiments.
It can be understood that the ventilation waist hole 130 is opened to allow the air outside the cabinet 100 to flow into the heating area 110 more quickly, thereby ensuring the supply of warm air.
As shown in fig. 1, in some embodiments of the cabinet 100, an insulating layer 700 is disposed within the cabinet 100. The heat insulating layer 700 serves to prevent heat loss, thereby further improving the hot air supply efficiency of the heating cabinet 10.
As shown in fig. 1, the cabinet 100 may have a storage groove 140 in some embodiments, and the cabinet 100 is movably connected with a storage door 800, and the storage door 800 is used for covering the storage groove 140. The storage groove 140 plays a role of storing articles; the storage door 800 is used to cover or open the storage groove 140.
It is understood that the storage door 800 may be slidably or rotatably disposed on the cabinet 100.
It is to be understood that the foregoing examples, while indicating the preferred embodiments of the utility model, are given by way of illustration and description, and are not to be construed as limiting the scope of the utility model; it should be noted that, for those skilled in the art, the above technical features can be freely combined, and several changes and modifications can be made without departing from the concept of the present invention, which all belong to the protection scope of the present invention; therefore, all equivalent changes and modifications made within the scope of the claims of the present invention should be covered by the claims of the present invention.

Claims (10)

1. A heating cabinet comprises a cabinet body (100), and is characterized by further comprising a partition plate (200) provided with air holes (210), a fan (300) and a door body (400), wherein the partition plate (200) is arranged in the cabinet body (100), two sides of the partition plate 210 and the cabinet body respectively enclose a heating area (110) and a hot air area (120), the heating area (110) is provided with a heating unit (500), and the fan (300) is arranged on the door body (400);
the door body (400) is movably arranged on the cabinet body (100), and when the door body (400) covers the opening side of the hot air area (120), the fan (300) pumps air in the hot air area (120) out of the cabinet body (100).
2. The heating cabinet according to claim 1, wherein the heating cabinet (10) further comprises a sliding door (600), the sliding door (600) is slidably or rotatably disposed on the cabinet body (100) so that the sliding door (600) covers or opens the opening side of the heating area (110), and a plurality of through holes (610) are formed on the sliding door (600).
3. The heating cabinet according to claim 1, wherein the heating unit (500) comprises at least one heating sheet (510), and the heating sheet (510) is connected to a power supply.
4. The heating cabinet according to claim 3, wherein the heating unit (500) comprises a plurality of heating sheets (510), each heating sheet (510) is located in the heating area (110), and a space is provided between two adjacent heating sheets (510).
5. The heating cabinet according to claim 1, characterized in that the heating cabinet (10) comprises a plurality of fans (300), and each fan (300) is located on the door body (400).
6. The heating cabinet according to claim 5, wherein the fans (300) are arranged on the door body (400) in a linear array or a circumferential array.
7. The heating cabinet according to any one of claims 1 to 6, wherein the door (400) is slidably or rotatably connected to the cabinet body (100).
8. The heating cabinet according to any one of claims 1 to 6, wherein the cabinet body (100) is provided with a ventilation waist hole (130) on a side wall of the heating zone (110).
9. The heating cabinet according to any one of claims 1 to 6, characterized in that an insulating layer (700) is provided in the cabinet body (100).
10. The heating cabinet according to any one of claims 1 to 6, wherein the cabinet body (100) is provided with a storage groove (140), the cabinet body (100) is movably connected with a storage door (800), and the storage door (800) is used for covering the storage groove (140).
CN202120891661.3U 2021-04-25 2021-04-25 Heating cabinet Active CN215604198U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120891661.3U CN215604198U (en) 2021-04-25 2021-04-25 Heating cabinet

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120891661.3U CN215604198U (en) 2021-04-25 2021-04-25 Heating cabinet

Publications (1)

Publication Number Publication Date
CN215604198U true CN215604198U (en) 2022-01-25

Family

ID=79936840

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120891661.3U Active CN215604198U (en) 2021-04-25 2021-04-25 Heating cabinet

Country Status (1)

Country Link
CN (1) CN215604198U (en)

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