CN211119748U - Dehumidifier with waste heat output device - Google Patents

Dehumidifier with waste heat output device Download PDF

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Publication number
CN211119748U
CN211119748U CN201922174882.4U CN201922174882U CN211119748U CN 211119748 U CN211119748 U CN 211119748U CN 201922174882 U CN201922174882 U CN 201922174882U CN 211119748 U CN211119748 U CN 211119748U
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China
Prior art keywords
radiator
dehumidifier
shell
porcelain plate
temperature
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CN201922174882.4U
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Chinese (zh)
Inventor
陈磊
陈建民
张文涛
王丹
赵丽萍
钱俊有
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Henan Hongchang Electronics Co Ltd
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Henan Hongchang Electronics Co Ltd
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Priority to CN201922174882.4U priority Critical patent/CN211119748U/en
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Abstract

The utility model relates to the technical field of a dehumidifier, in particular to a dehumidifier with a waste heat output device, which comprises a shell, wherein a semiconductor refrigerating part is arranged in the shell; high temperature ceramic plate on have the cooling tube that coils, it still includes a radiator, the radiator pipe has, the cooling tube connect the radiator pipe and form loop construction, the radiator above have the heating seat, the radiator below install wind direction fan up, the heating seat above still have electric heating wire, such dehumidifier has the heat that can produce high temperature ceramic plate and utilizes, improves the advantage of dehumidification efficiency.

Description

Dehumidifier with waste heat output device
Technical Field
The utility model relates to a dehumidifier technical field.
Background
The dehumidifier comprises a shell, wherein an inlet of air to be dehumidified and an outlet of the dehumidified air are arranged on the shell, an air channel for connecting the inlet and the outlet is also arranged in the shell, and a semiconductor refrigerating piece is arranged in the air channel; the semiconductor refrigeration piece comprises two ceramic plates, a semiconductor crystal grain is arranged between the two ceramic plates, the semiconductor refrigeration piece is made by utilizing the Peltier effect, when direct current is connected, the temperature of the ceramic plate on one side of the semiconductor refrigeration piece rises, the ceramic plate on the one side is called a high-temperature ceramic plate, the temperature of the ceramic plate on the other side falls, the ceramic plate on the one side is called a low-temperature ceramic plate, when air passes through the low-temperature ceramic plate, the temperature of the air also falls, and due to the temperature reduction, part of the air with the original water vapor in a saturated state can be condensed on the low-temperature ceramic plate, and the moisture in the part of the air is reduced, so that the dehumidification effect is achieved.
In the using process, the high-temperature porcelain plate of the semiconductor refrigeration piece is heated; in the prior art, the arrangement for utilizing the heat on the high-temperature porcelain plate is not available, so that the heat is wasted due to waste, the heat on the high-temperature porcelain plate is slowly and freely dissipated, the working efficiency of the whole semiconductor refrigeration piece is influenced, and the dehumidifying device has the defects of inconvenience in use and influence on dehumidifying effect.
Disclosure of Invention
The present invention aims at providing a dehumidifier with a waste heat output device, which can utilize the heat generated by the high temperature porcelain plate and improve the dehumidification efficiency.
The technical scheme of the utility model is realized like this: the dehumidifier with the waste heat output device comprises a shell, wherein a semiconductor refrigerating piece is arranged in the shell; the semiconductor refrigeration piece comprises two porcelain plates, when direct current is connected, the temperature of the porcelain plate on one side of the semiconductor refrigeration piece is increased, the porcelain plate on the other side is called a high-temperature porcelain plate, and the porcelain plate on the other side is reduced, and the porcelain plate on the one side is called a low-temperature porcelain plate; the shell is provided with an inlet of air to be dehumidified and an outlet of the dehumidified air, the shell is also provided with an air channel for connecting the inlet and the outlet, and the semiconductor refrigerating element is arranged in the channel; the method is characterized in that: the high-temperature porcelain plate is provided with a coiled radiating pipe and further comprises a radiator, the radiator is provided with a radiator pipeline, and the radiating pipe is connected with the radiator pipeline to form a circulating structure.
Furthermore, the radiator is provided with a heating seat.
Further, a fan with an upward wind direction is installed below the radiator.
Furthermore, an electric heating wire is arranged on the heating seat.
Further, the heating seat is arranged on the side surface or the upper surface of the shell.
Furthermore, the heating seat has a groove-shaped structure.
The utility model has the advantages that: the dehumidifier has the advantages of utilizing the heat generated by the high-temperature porcelain plate and improving the dehumidification efficiency.
Drawings
Fig. 1 is a schematic sectional structure of the present invention.
Fig. 2 is a schematic view showing the connection relationship between the radiating pipe and the radiator.
Wherein: 1. the air-cooling device comprises a shell 11, an inlet 12, an outlet 13, an air channel 2, a semiconductor refrigerating element 21, a high-temperature porcelain plate 22, a low-temperature porcelain plate 3, a radiating pipe 4, a radiator 41, a radiator pipeline 5, a heating seat 6, a fan 7, an electric heating wire 8 and a groove-shaped structure.
Detailed Description
The invention is further illustrated by the following figures and examples.
As shown in fig. 1, the dehumidifier with residual heat output device comprises a housing 1, in which a semiconductor refrigeration member 2 is installed; the semiconductor refrigeration piece comprises two porcelain plates, when direct current is connected, the temperature of the porcelain plate on one side of the semiconductor refrigeration piece is increased, the porcelain plate on the other side is called a high-temperature porcelain plate 21, and the porcelain plate on the other side is reduced, and the porcelain plate on the one side is called a low-temperature porcelain plate 22; the shell is provided with an inlet 11 for air to be dehumidified and an outlet 12 for dehumidified air, the shell is also provided with an air channel 13 for connecting the inlet and the outlet, and the semiconductor refrigerating element is arranged in the channel; the method is characterized in that: the high-temperature porcelain plate is provided with a coiled radiating pipe 3 and further comprises a radiator 4, the radiator is provided with a radiator pipeline 41, and the radiating pipe 3 is connected with the radiator pipeline 41 to form a circulating structure.
The utility model discloses set up like this, the heat that can make full use of high temperature porcelain plate produced to on carrying the cooling tube with the heat, the radiator can heat the object, realize the utility model discloses a purpose.
Further, the radiator is provided with a heating seat 5. Therefore, the object can be placed on the heating seat when the object is heated, and the object is heated more conveniently.
Further, a fan 6 with an upward wind direction is installed below the radiator. Thus, the heating efficiency can be further improved.
Furthermore, an electric heating wire 7 is arranged on the heating seat. Thus, if the heat generated by using the semiconductor refrigerating element is insufficient, the object can be heated by using the electric heating wire, and the requirement of higher heating temperature is met.
Further, the heating seat 5 is disposed on or beside the housing. Thus, the use is more convenient.
Furthermore, the heating base has a groove-shaped structure 8. In this way, the object to be heated can be placed inside the groove-shaped structure.
The above embodiments are only used to illustrate the technical solution of the present invention, and not to limit the same; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some or all of the technical features may be equivalently replaced; such modifications and substitutions do not substantially depart from the scope of the embodiments of the present invention, and are intended to be included within the scope of the present invention.

Claims (6)

1. The dehumidifier with the waste heat output device comprises a shell, wherein a semiconductor refrigerating piece is arranged in the shell; the semiconductor refrigeration piece comprises two porcelain plates, when direct current is connected, the temperature of the porcelain plate on one side of the semiconductor refrigeration piece is increased, the porcelain plate on the other side is called a high-temperature porcelain plate, and the porcelain plate on the other side is reduced, and the porcelain plate on the one side is called a low-temperature porcelain plate; the shell is provided with a foul air inlet needing dehumidification and an air outlet after dehumidification, the shell is also provided with an air channel connecting the inlet and the outlet, and the semiconductor refrigerating element is arranged in the channel; the method is characterized in that: the high-temperature porcelain plate is provided with a coiled radiating pipe and further comprises a radiator, the radiator is provided with a radiator pipeline, and the radiating pipe is connected with the radiator pipeline to form a circulating structure.
2. The dehumidifier with residual heat removal device of claim 1, wherein: the radiator is provided with a heating seat.
3. The dehumidifier with residual heat removal device of claim 2, wherein: and a fan with upward wind direction is arranged below the radiator.
4. A dehumidifier having a waste heat output device as claimed in claim 2 or 3 wherein: and an electric heating wire is arranged on the heating seat.
5. The dehumidifier with residual heat removal device of claim 4, wherein: the heating seat is arranged on the side surface or the upper surface of the shell.
6. A dehumidifier having a waste heat output device as claimed in claim 2 or 3 wherein: the heating seat is provided with a groove-shaped structure.
CN201922174882.4U 2019-12-07 2019-12-07 Dehumidifier with waste heat output device Active CN211119748U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922174882.4U CN211119748U (en) 2019-12-07 2019-12-07 Dehumidifier with waste heat output device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922174882.4U CN211119748U (en) 2019-12-07 2019-12-07 Dehumidifier with waste heat output device

Publications (1)

Publication Number Publication Date
CN211119748U true CN211119748U (en) 2020-07-28

Family

ID=71700597

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922174882.4U Active CN211119748U (en) 2019-12-07 2019-12-07 Dehumidifier with waste heat output device

Country Status (1)

Country Link
CN (1) CN211119748U (en)

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