CN215062342U - Wall-hanging efficient infrared ray electric heater convenient to installation - Google Patents

Wall-hanging efficient infrared ray electric heater convenient to installation Download PDF

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Publication number
CN215062342U
CN215062342U CN202120237387.8U CN202120237387U CN215062342U CN 215062342 U CN215062342 U CN 215062342U CN 202120237387 U CN202120237387 U CN 202120237387U CN 215062342 U CN215062342 U CN 215062342U
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side wall
wall
cavity
shell
water
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CN202120237387.8U
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Chinese (zh)
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范剑峰
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Ningbo Baishili Electrical Appliance Co ltd
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Ningbo Baishili Electrical Appliance Co ltd
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Abstract

The utility model discloses a wall-hanging efficient infrared ray electric heater convenient to installation relates to electric heater technical field. The utility model discloses a structure includes shell, mounting panel, guide duct, motor, the rectangle that sets up is sunken to the front groove on the preceding lateral wall of shell, the top cavity of shell is the water cavity, the rear portion cavity is for preheating the chamber, the mounting panel sets up on preheating the rear side wall in chamber, the preceding lateral wall upper berth of mounting panel is equipped with the carbon fiber pipe, set up the louvre on the preceding lateral wall of guide duct, be provided with into the tuber pipe in the through-hole of the top lateral wall of guide duct, go into in the tuber pipe inserts the through-hole of the top lateral wall of front groove, fixed pivot again on the bottom lateral wall of guide duct, the pivot passes the bottom lateral wall of front groove, and the bottom mounting has the gear, the guide duct sets up in the front groove, the motor sets up on preheating the bottom lateral wall in chamber, and top and gear fixed connection. The utility model discloses can change hot-blast direction automatically to convenient installation is on the wall.

Description

Wall-hanging efficient infrared ray electric heater convenient to installation
Technical Field
The utility model relates to an electric heater technical field especially relates to a wall-hanging efficient infrared ray electric heater convenient to installation.
Background
The carbon fiber electric heater is a fully novel electric heater which is designed and developed by adopting a high-tech material, namely carbon fiber precursor, as a heating body. The household appliance is provided with a temperature controller, the remote controller has the function of adjusting the indoor temperature, and can generate far infrared rays in the heating process, thereby having the effect of physical therapy and health care on the body. The carbon fiber electric heater is usually fixedly mounted on a wall due to its small volume and light weight. But the position of the louvre of carbon fiber electric heater is fixed to through static thermal radiation heat dissipation, inconvenient with heat transfer to distant place.
Accordingly, one skilled in the art provides a subject to solve the problems set forth in the background above.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that it is inconvenient to overcome prior art with heat transfer to far away.
In order to solve the above technical problems, the utility model provides a wall-hanging type high-efficiency infrared electric heater which is convenient to install, comprising,
the water preheating device comprises a shell, a water inlet pipe, a water outlet pipe, a water inlet pipe, a water outlet pipe and a water outlet pipe, wherein the shell is of a cuboid shell structure, a rectangular recess arranged on the front side wall of the shell is a front groove, a top cavity of the shell is a water cavity, a rear cavity of the shell is a preheating cavity, and the shell is fixed on the wall of the shell through a mounting frame; the mounting plate is of a rectangular heat insulation plate structure, the mounting plate is arranged on the rear side wall of the preheating cavity, a carbon fiber pipe is laid on the front side wall of the mounting plate, and heat is generated after the carbon fiber pipe is electrified; the wind guide pipe is of a cylinder shell structure, a plurality of through holes arranged on the front side wall of the wind guide pipe are radiating holes, a wind inlet pipe is arranged in the through hole of the top side wall of the wind guide pipe and is inserted into the through hole of the top side wall of the front groove, a rotating shaft is fixed on the bottom side wall of the wind guide pipe and penetrates through the bottom side wall of the front groove, gears are fixed at the bottom end of the rotating shaft, the wind guide pipes are uniformly arranged in the front groove, a plurality of gears of the wind guide pipes are sequentially meshed, one gear rotates to drive a plurality of gears to simultaneously rotate, and the gears drive a plurality of wind guide pipes to simultaneously rotate, so that the radiating holes of the wind guide pipes simultaneously turn to the same direction; the motor is arranged on the bottom side wall of the preheating cavity, the top end of a rotor of the motor is fixedly connected with a gear, and the motor drives the gear to rotate.
As a further aspect of the present invention: the top side wall of the preheating cavity protrudes upwards to form a top groove, the rear end opening of the air inlet pipe is inserted into the through hole in the front side wall of the top groove, a fan is arranged in the top groove, the fan is used for rolling hot air in the preheating cavity into the top groove, and the hot air in the top groove flows into the air guide pipe from the air inlet pipe.
As a further aspect of the present invention: the through hole arranged on the bottom side wall of the preheating cavity is an air inlet, and external air can conveniently flow into the preheating cavity through the air inlet.
As a further aspect of the present invention: the water cavity is filled with clear water, the through hole formed in the top side wall of the water cavity is a steam hole, water in the water cavity absorbs heat and then evaporates, and the steam is discharged into the outside air from the steam hole.
As a further aspect of the present invention: the pipe arranged in the through hole of the top side wall of the water cavity is a water inlet which is convenient for pouring clean water into the water cavity.
As a further aspect of the present invention: the structure of mounting bracket includes picture peg and fixed plate, the picture peg is Z type plate structure, the upper portion vertical plate of picture peg is fixed on the back lateral wall of shell through a screw, the fixed plate is type ohm plate structure, the both sides board of fixed plate respectively fixes on the wall through No. two screws, the lower part vertical plate of picture peg inserts in the gap of fixed plate and wall for the picture peg is fixed on the fixed plate, the shell is fixed on the wall, if need overhaul the time, only need upwards hold up the shell, and the picture peg is along with the shell rebound, and leaves the fixed plate, makes the shell take off from the wall.
As a further aspect of the present invention: be provided with control panel on the right side wall of shell, control panel and carbon fiber pipe, motor, fan electric connection, control panel control electric heater operation.
The utility model has the advantages that:
(1) when the utility model is used, the carbon fiber tube generates heat after being electrified and radiates the heat to the air in the preheating cavity, the fan rolls the hot air in the preheating cavity into the top groove, the hot air in the top groove flows into the air guide tube from the air inlet tube, and the hot air in the air guide tube forms hot air from the radiating hole and is blown out; the motor drives one gear to rotate, one gear rotates to drive the plurality of gears to rotate simultaneously, and the plurality of gears drive the plurality of air guide pipes to rotate simultaneously, so that the heat dissipation holes of the plurality of air guide pipes turn to the same direction simultaneously to change the wind direction of hot wind. The utility model discloses can change hot-blast direction automatically.
(2) The utility model discloses set up the water cavity, if indoor air drying, pour clear water into the water cavity from the water inlet, the clear water absorbs the heat evaporation through top groove and income tuber pipe, and vapor is discharged into the outside air from the steam hole. The utility model discloses humidification function has.
(3) The utility model discloses set up the mounting bracket, if fix the electric heater on the wall, the lower part vertical plate of picture peg inserts in the gap of fixed plate and wall for the picture peg is fixed on the fixed plate, the shell is fixed on the wall, if when needing to overhaul, only needs upwards hold up the shell, and the picture peg is along with shell rebound, and leaves the fixed plate, makes the shell take off from the wall. The utility model discloses convenient mounting is on the wall.
Drawings
Fig. 1 is a front view of the present invention;
FIG. 2 is a cross-sectional view of the housing from the left;
fig. 3 is a perspective view of the mounting bracket.
Wherein: the device comprises a shell 10, a front groove 11, a preheating cavity 12, a water cavity 13, a mounting plate 14, a carbon fiber pipe 15, a top groove 16, an air guide pipe 17, a heat dissipation hole 18, an air inlet pipe 19, a gear 20, a motor 21, an air inlet 22, an insertion plate 23, a first screw 24, a fixing plate 25, a second screw 26, a water inlet 27 and a steam hole 28.
Detailed Description
The wall-mounted high-efficiency infrared electric heater convenient to mount provided by the embodiment has the structure shown in fig. 1-3, and comprises,
the heat exchanger comprises a shell 10, wherein the shell 10 is of a cuboid shell structure, a rectangular recess arranged on the front side wall of the shell 10 is a front groove 11, a top cavity of the shell 10 is a water cavity 13, a rear cavity of the shell 10 is a preheating cavity 12, and the shell 10 is fixed on a wall through a mounting rack; the mounting plate 14 is of a rectangular heat insulation plate structure, the mounting plate 14 is arranged on the rear side wall of the preheating cavity 12, a carbon fiber pipe 15 is paved on the front side wall of the mounting plate 14, and heat is generated after the carbon fiber pipe 15 is electrified; the wind guide pipe 17 is of a cylindrical shell structure, a plurality of through holes arranged on the front side wall of the wind guide pipe 17 are heat dissipation holes 18, a wind inlet pipe 19 is arranged in the through hole on the top side wall of the wind guide pipe 17, the wind inlet pipe 19 is inserted into the through hole on the top side wall of the front groove 11, a rotating shaft is fixed on the bottom side wall of the wind guide pipe 17, the rotating shaft penetrates through the bottom side wall of the front groove 11, gears 20 are fixed at the bottom end of the rotating shaft, the wind guide pipe 17 is provided with a plurality of gears 20, the wind guide pipes 17 are uniformly arranged in the front groove 11, the plurality of gears 20 of the plurality of wind guide pipes 17 are sequentially meshed, one gear 20 rotates to drive the plurality of gears 20 to simultaneously rotate, and the plurality of gears 20 drive the plurality of wind guide pipes 17 to simultaneously rotate, so that the heat dissipation holes 18 of the plurality of wind guide pipes 17 simultaneously turn to the same direction; the motor 21 is arranged on the bottom side wall of the preheating chamber 12, the top end of the rotor of the motor 21 rotates with a gear 20, and the motor 21 drives the gear 20 to rotate.
The top side wall of the preheating cavity 12 protrudes upwards to form a top groove 16, the rear end opening of the air inlet pipe 19 is inserted into a through hole in the front side wall of the top groove 16, a fan is arranged in the top groove 16, the fan draws hot air in the preheating cavity 12 into the top groove 16, and the hot air in the top groove 16 flows into the air guide pipe 17 from the air inlet pipe 19.
The through hole formed in the bottom side wall of the preheating chamber 12 is an air inlet 22, and the air inlet 22 facilitates the external air to flow into the preheating chamber 12.
Clear water is contained in the water cavity 13, the through hole formed in the top side wall of the water cavity 13 is a steam hole 28, water in the water cavity 13 absorbs heat and evaporates, and water vapor is discharged into the outside air from the steam hole 28.
The pipe provided in the through hole of the top sidewall of the water chamber 13 is a water inlet 27, and the water inlet 27 facilitates the pouring of clean water into the water chamber 13.
The structure of mounting bracket includes picture peg 23 and fixed plate 25, picture peg 23 is Z type plate structure, the vertical board in upper portion of picture peg 23 is fixed on the back lateral wall of shell 10 through a screw 24, fixed plate 25 is type ohm type plate structure, the both sides board of fixed plate 25 respectively fixes on the wall through No. two screws 26, the lower part vertical plate of picture peg 23 inserts in the gap of fixed plate 25 and wall for picture peg 23 fixes on fixed plate 25, shell 10 fixes on the wall, if need overhaul the time, only need upwards hold up shell 10, and picture peg 23 moves along with shell 10 to leave fixed plate 25, make shell 10 take off from the wall.
Be provided with control panel on the right side wall of shell 10, control panel and carbon fiber tube 15, motor 21, fan electric connection, control panel control electric heater operation.
The utility model discloses a theory of operation: when the device is used, the carbon fiber tube 15 generates heat after being electrified and radiates the heat to the air in the preheating cavity 12, the fan winds the hot air in the preheating cavity 12 into the top groove 16, the hot air in the top groove 16 flows into the air guide tube 17 from the air inlet tube 19, and the hot air in the air guide tube 17 forms hot air from the heat dissipation hole 18 and is blown out; the motor 21 drives one gear 20 to rotate, one gear 20 rotates to drive the plurality of gears 20 to rotate simultaneously, and the plurality of gears 20 drive the plurality of air guide pipes 17 to rotate simultaneously, so that the heat dissipation holes 18 of the plurality of air guide pipes 17 are simultaneously turned to the same direction to change the wind direction of hot wind; if the indoor air is dry, clear water is poured into the water cavity 13 from the water inlet 27, the clear water absorbs heat through the top groove 16 and the air inlet pipe 19 to evaporate, and water vapor is discharged into the external air from the steam hole 28; if the electric heater is fixed on the wall, the lower vertical plate of the plug board 23 is inserted into the gap between the fixed plate 25 and the wall, so that the plug board 23 is fixed on the fixed plate 25 and the shell 10 is fixed on the wall, if maintenance is needed, only the shell 10 needs to be lifted upwards, the plug board 23 moves upwards along with the shell 10 and leaves the fixed plate 25, and the shell 10 is taken down from the wall. The utility model discloses can change hot-blast direction automatically to convenient installation is on the wall.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (5)

1. A wall-mounted high-efficiency infrared electric heater convenient to mount is characterized by comprising,
the water heater comprises a shell (10), wherein the shell (10) is of a cuboid shell structure, a rectangular recess arranged on the front side wall of the shell (10) is a front groove (11), a top cavity of the shell (10) is a water cavity (13), a rear cavity of the shell is a preheating cavity (12), and the shell (10) is fixed on a wall through a mounting rack;
the preheating device comprises a mounting plate (14), wherein the mounting plate (14) is of a rectangular heat insulation plate structure, the mounting plate (14) is arranged on the rear side wall of a preheating cavity (12), a carbon fiber pipe (15) is laid on the front side wall of the mounting plate (14), and the carbon fiber pipe (15) generates heat after being electrified;
the air guide pipe (17), the air guide pipe (17) is a cylinder shell structure, a plurality of through holes arranged on the front side wall of the air guide pipe (17) are heat dissipation holes (18), an air inlet pipe (19) is arranged in a through hole of the top side wall of the air guide pipe (17), the air inlet pipe (19) is inserted into the through hole of the top side wall of the front groove (11), a rotating shaft is fixed on the bottom side wall of the air guide pipe (17), the rotating shaft penetrates through the bottom side wall of the front groove (11), and the bottom end is fixed with a gear (20), a plurality of air guide pipes (17), and are uniformly arranged in the front groove (11), a plurality of gears (20) of a plurality of air guide pipes (17) are sequentially meshed, one gear (20) rotates to drive a plurality of gears (20) to rotate simultaneously, a plurality of gears (20) drive a plurality of air guide pipes (17) to rotate simultaneously, so that the heat dissipation holes (18) of the plurality of air guide pipes (17) turn to the same direction at the same time;
the motor (21), the motor (21) is arranged on the bottom side wall of the preheating cavity (12), the top end of a rotor of the motor (21) rotates with a gear (20), and the motor (21) drives the gear (20) to rotate.
2. A wall-mounted high efficiency infrared electric warmer as recited in claim 1, wherein: the top side wall of the preheating cavity (12) protrudes upwards to form a top groove (16), the rear end opening of the air inlet pipe (19) is inserted into a through hole in the front side wall of the top groove (16), a fan is arranged in the top groove (16), the fan rolls hot air in the preheating cavity (12) into the top groove (16), and the hot air in the top groove (16) flows into the air guide pipe (17) from the air inlet pipe (19).
3. A wall-mounted high efficiency infrared electric warmer as recited in claim 1, wherein: the through hole arranged on the bottom side wall of the preheating cavity (12) is an air inlet (22), and the air inlet (22) is convenient for external air to flow into the preheating cavity (12).
4. A wall-mounted high efficiency infrared electric warmer as recited in claim 1, wherein: clear water is contained in the water cavity (13), a through hole formed in the top side wall of the water cavity (13) is a steam hole (28), water in the water cavity (13) absorbs heat and then evaporates, and water vapor is discharged into the outside air from the steam hole (28).
5. A wall-mounted high efficiency infrared electric warmer as recited in claim 1, wherein: the pipe arranged in the through hole of the top side wall of the water cavity (13) is a water inlet (27), and the water inlet (27) is convenient for pouring clean water into the water cavity (13).
CN202120237387.8U 2021-01-28 2021-01-28 Wall-hanging efficient infrared ray electric heater convenient to installation Active CN215062342U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120237387.8U CN215062342U (en) 2021-01-28 2021-01-28 Wall-hanging efficient infrared ray electric heater convenient to installation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120237387.8U CN215062342U (en) 2021-01-28 2021-01-28 Wall-hanging efficient infrared ray electric heater convenient to installation

Publications (1)

Publication Number Publication Date
CN215062342U true CN215062342U (en) 2021-12-07

Family

ID=79253039

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120237387.8U Active CN215062342U (en) 2021-01-28 2021-01-28 Wall-hanging efficient infrared ray electric heater convenient to installation

Country Status (1)

Country Link
CN (1) CN215062342U (en)

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