Bath heater

By designing a sliding cover assembly and a controller-controlled sliding cover drive system, the problems of exposed air outlets affecting aesthetics and being susceptible to corrosion in bathroom heaters have been solved. This achieves both concealment and exposure of the air outlets, improving the aesthetics and lifespan of the bathroom heater.

CN119267985BActive Publication Date: 2025-11-04MIDEA INTELLIGENT LIGHTING & CONTROLS TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202310814339.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-04
Publication Date
2025-11-04
Estimated Expiration
2043-07-04

AI Technical Summary

Technical Problem

Existing bathroom heaters have their air outlets exposed to the air, which affects their appearance and makes them susceptible to moisture and dust intrusion, leading to malfunctions such as electrical short circuits, motor damage, and reduced airflow.

Method used

Design a sliding cover assembly that switches between exposing and covering the air outlet using a controller. Combined with the start and stop of the fan assembly, the air outlet can be hidden or exposed, improving aesthetics.

Benefits of technology

By concealing the air outlet, moisture and dust are prevented from entering, extending the lifespan of the motor and other components, and enhancing the aesthetics and usability of the bathroom heater.

✦ Generated by Eureka AI based on patent content.

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    Figure CN119267985B_ABST
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Abstract

The present disclosure relates to the technical field of household appliances, and provides a bathroom heater. The bathroom heater comprises a box body, a panel, a sliding cover assembly, a sliding cover driving assembly and a controller. The box body is provided with a fan assembly. The panel is connected to the box body in a cover closing manner. The panel is provided with an air outlet which is in communication with the air outlet side of the fan assembly. The sliding cover assembly is slidably arranged on the panel. The sliding cover assembly is configured to switch between a sliding-out position for exposing the air outlet and a retracted position for covering the air outlet relative to the panel. The sliding cover driving assembly is connected to the sliding cover assembly and is used to drive the sliding cover assembly to switch between the sliding-out position and the retracted position. The controller is electrically connected to the fan assembly and the sliding cover driving assembly to control the start and stop of the fan assembly and the sliding cover driving assembly. The bathroom heater provided by the present disclosure can realize the exposure and hiding of the air outlet according to the operation of the fan assembly. When the sliding cover is in the retracted position, the appearance surface of the bathroom heater is flat, simple and atmospheric, and the user experience is improved.
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Description

TECHNICAL FIELD

[0001] The present disclosure relates to the technical field of household appliances, in particular to a bathroom heater. BACKGROUND

[0002] The wind heating bathroom heater is commonly used for heating in the bathroom. The bathroom heater is usually installed in the ceiling space of the bathroom. The warm air heated by the bathroom heater enters the bathroom through the air outlet to increase the temperature of the bathroom. At present, the air outlet of the bathroom heater is mostly exposed to the air, which is too conspicuous on the ceiling and not beautiful enough. At the same time, water vapor and dust can enter the inside of the air outlet, which affects the motor, lighting assembly and wind deflection assembly inside the bathroom heater, and easily causes electrical short circuit, motor damage, reduced air volume and shortened service life and other faults. SUMMARY

[0003] In order to solve the above technical problems or at least partially solve the above technical problems, the present disclosure provides a bathroom heater.

[0004] The present disclosure provides a bathroom heater, comprising: a box body, a fan assembly is arranged in the box body; a panel, which is connected with the box body in a cover combination mode, and an air outlet is arranged on the panel and communicates with the air outlet side of the fan assembly; a sliding cover assembly, which is arranged on the panel in a slidable mode, and is configured to switch between a sliding-out position for exposing the air outlet and a retracted position for covering the air outlet relative to the panel; a sliding cover driving assembly, which is connected with the sliding cover assembly and is used for driving the sliding cover assembly to switch between the sliding-out position and the retracted position; and a controller, which is electrically connected with the fan assembly and the sliding cover driving assembly to control the start and stop of the fan assembly and the sliding cover driving assembly.

[0005] In some embodiments, a lamp source and a lampshade corresponding to the lamp source are arranged on the panel, and the lampshade and the sliding cover assembly are located on the side panel surface of the panel away from the box body;

[0006] The sliding cover assembly is configured to slide away from the lampshade to expose the air outlet and slide towards the lampshade to cover the air outlet relative to the panel.

[0007] In some embodiments, when the sliding cover assembly is in the retracted position, the surface of the lampshade and the surface of the sliding cover assembly are arranged in a flush mode or the height difference between the two is within a preset range;

[0008] And / or, a function display area is further arranged on the side panel surface of the panel away from the box body, and the function display area is located in the region between the lampshade and the sliding cover assembly.

[0009] In some embodiments, the sliding cover assembly comprises a sliding cover and a supporting arm fixedly connected with the sliding cover, and the sliding cover driving assembly is connected with the supporting arm and used to drive the supporting arm to slide relative to the panel so as to drive the sliding cover to slide relative to the panel.

[0010] In some embodiments, the sliding cover driving assembly comprises a first driving mechanism and a sliding block connected with the first driving mechanism, the first driving mechanism comprises a first motor and a screw shaft connected with the first motor, the sliding block is fitted on the screw shaft, and the sliding block is provided with a screw groove engaged with the screw shaft, the supporting arm is in position-limiting connection with the sliding block, and the first motor drives the screw shaft to rotate so that the sliding block slides along the length direction of the screw shaft to drive the supporting arm to slide relative to the panel.

[0011] In some embodiments, an end portion of the supporting arm along the length direction is provided with a counterbore, and the sliding block is provided with a protrusion in position-limiting connection with the counterbore so as to drive the supporting arm to slide synchronously.

[0012] In some embodiments, the first driving mechanism is installed on the panel through a motor fixing seat, an end portion of the motor fixing seat away from the first motor is provided with a micro switch, the micro switch is electrically connected with the controller, the sliding block slides along the length direction of the screw shaft and contacts the micro switch to trigger the micro switch, and the controller controls the first driving mechanism to stop running.

[0013] In some embodiments, a swing cover assembly and a swing cover driving assembly are further included, the swing cover assembly is swingingly arranged at the air outlet, and the swing cover driving assembly is connected with the swing cover assembly and used to drive the swing cover assembly to swing relative to the air outlet.

[0014] In some embodiments, the panel is provided with a mounting bracket fixedly installed thereon and arranged in correspondence with the air outlet, the swing cover assembly comprises a rod-shaped swing cover member and a plurality of swing pages, the rod-shaped swing cover member is swingingly arranged in the mounting bracket and configured to swing relative to the mounting bracket along a first direction, and the plurality of swing pages are swingingly arranged in the rod-shaped swing cover member and configured to swing relative to the rod-shaped swing cover member along a second direction, the first direction being perpendicular to the second direction to realize bidirectional swinging of the swing cover assembly.

[0015] In some embodiments, the rod-shaped swing cover member is rotationally connected with the mounting bracket through a swing cover member mounting shaft, the swing cover member mounting shaft is arranged along the length direction of the rod-shaped swing cover member, and the rod-shaped swing cover member swings relative to the mounting bracket about the swing cover member mounting shaft.

[0016] A plurality of said swing pages are arranged in said rod-shaped swing air device in sequence along the length direction of said rod-shaped swing air device, and are rotatably connected to said rod-shaped swing air device through swing page mounting shafts, said swing page mounting shafts being perpendicular to said swing air device mounting shafts, and a plurality of said swing pages swing about said swing page mounting shafts relative to said rod-shaped swing air device.

[0017] In some embodiments, said swing air assembly further comprises a swing arm;

[0018] Said swing arm is arranged in said rod-shaped swing air device and extends along the length direction of said rod-shaped swing air device, said swing page is provided with said swing page mounting shaft and swing page swing shaft, said rod-shaped swing air device is provided with swing page mounting slots corresponding to the positions of said swing pages, said swing page mounting shafts are rotatably arranged in said swing page mounting slots, said swing arm is provided with swing page swing slots corresponding to the positions of said swing pages, and said swing page swing shafts are arranged in said swing page swing slots, said swing arm reciprocates along the length direction of said rod-shaped swing air device to drive said swing pages to swing about said swing page mounting shafts.

[0019] In some embodiments, said swing air driving assembly comprises a second driving mechanism and a third driving mechanism;

[0020] Said second driving mechanism is connected to said rod-shaped swing air device for driving said rod-shaped swing air device to swing about said swing air device mounting shaft, and said third driving mechanism is connected to said swing arm for driving said swing arm to reciprocate along the length direction of said rod-shaped swing air device to drive said swing pages to swing about said swing page mounting shafts.

[0021] In some embodiments, a sensor electrically connected to said controller is further included, said sensor is used for detecting the position of a user, said controller is electrically connected to said swing air driving assembly for controlling the operation of said swing air driving assembly according to the position signal detected by said sensor, so that said swing air driving assembly drives said swing air assembly to change the swing angle.

[0022] In some embodiments, said bathroom heater has a first blowing mode and a second blowing mode, and said controller is used for controlling said swing air driving assembly to drive said swing air assembly to swing in a direction deviating from the position of a user in the first blowing mode, and to drive said swing air assembly to swing in a direction towards the position of a user in the second blowing mode.

[0023] In some embodiments, a voice module is further included, said voice module is arranged on said panel for receiving the voice signal sent by a user, and said voice module is electrically connected to said controller, and said controller switches the blowing mode of said bathroom heater according to the received voice signal;

[0024] And / or, further comprising a negative ion generator arranged on the panel and a negative ion carbon brush arranged at the air outlet and electrically connected with the negative ion generator to emit negative ions generated by the negative ion generator through the air outlet.

[0025] In some embodiments, the box is provided with a hanger mounting position, the box is configured to be mounted on a cement ceiling through a hanger arranged at the hanger mounting position, the panel is configured to be clamped on a gypsum board, and the panel is provided with a mounting spring on a side facing the box, the mounting spring being used to abut against the gypsum board.

[0026] Alternatively, the box is provided with a fixing support configured to be lapped on a furring of an integrated ceiling to support the box, and the panel is configured to be clamped in the furring.

[0027] Compared with the prior art, the technical scheme provided by the embodiments of the present disclosure has the following advantages:

[0028] The bath heater provided by the present disclosure comprises a box, a panel, a sliding cover assembly, a sliding cover driving assembly and a controller, wherein the box is provided with a fan assembly, the panel is connected with the box in a cover combination, the panel is provided with an air outlet communicating with an air outlet side of the fan assembly, that is, the fan assembly is used to provide warm air to the air outlet to discharge and increase the temperature in the room, the sliding cover assembly is slidably arranged on the panel, the sliding cover assembly is configured to switch between a sliding-out position exposing the air outlet and a retracted position covering the air outlet relative to the panel, the sliding cover driving assembly is connected with the sliding cover assembly to drive the sliding cover assembly to switch between the sliding-out position and the retracted position, and the controller is electrically connected with the fan assembly and the sliding cover driving assembly to control the start and stop of the fan assembly and the sliding cover driving assembly. In specific implementation, the controller is used to control the joint start and stop of the fan assembly and the sliding cover driving assembly, so that the sliding cover assembly is in the sliding-out position when the fan assembly starts blowing, and the sliding cover assembly is in the retracted position when the fan assembly stops blowing, at this time, the air outlet is hidden under the sliding cover assembly, the appearance surface of the bath heater is flat, simple and atmospheric, and the user's use feeling is improved. BRIEF DESCRIPTION OF DRAWINGS

[0029] The drawings incorporated into the specification and constituting a part of the specification show embodiments consistent with the present disclosure and, together with the specification, serve to explain the principles of the present disclosure.

[0030] In order to more clearly illustrate the technical scheme in the embodiments of the present disclosure or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced as follows, and obviously, other drawings can also be obtained by those skilled in the art without creative labor.

[0031] Figure 1 The exploded view of the bathroom heater according to an embodiment of the present application;

[0032] Figure 2 The partial enlarged view of A in the figure; Figure 1

[0033] Figure 3 The side view of the bathroom heater according to an embodiment of the present application;

[0034] Figure 4 The schematic view of the air outlet hidden of the bathroom heater according to an embodiment of the present application;

[0035] Figure 5 The schematic view of the air outlet opened of the bathroom heater according to an embodiment of the present application;

[0036] Figure 6 The exploded view of the air deflector assembly according to an embodiment of the present application;

[0037] Figure 7 The partial enlarged view of B in the figure; Figure 6

[0038] The side view of the air deflector assembly according to an embodiment of the present application; Figure 8

[0039] The exploded view of the air deflector driving assembly according to an embodiment of the present application; Figure 9

[0040] The exploded view of the sliding cover driving assembly according to another embodiment of the present application; Figure 10

[0041] The partial enlarged view of C in the figure; Figure 11 Figure 10

[0042] Figure 12 The schematic view of the installation of the bathroom heater according to an embodiment of the present application on the integrated ceiling;

[0043] Figure 13 The schematic view of the installation of the bathroom heater according to an embodiment of the present application on the cement ceiling.

[0044] In the figure: 1, the box body; 11, the fan assembly; 12, the air outlet side; 13, the hanger rod installation position; 14, the fixed support;

[0045] 2, the panel; 21, the air outlet; 22, the lampshade; 23, the function display area; 24, the installation spring;

[0046] 3, the sliding cover assembly; 31, the sliding cover; 32, the supporting arm; 321, the counterbore;

[0047] ​​​4, the sliding cover driving assembly; 41, the first driving mechanism; 411, the first motor; 412, the screw segment; 413, the gear screw, 4131, the first gear end; 4132, the first screw end; 414, the first gear; 42, the sliding block; 43, the motor fixing seat; 44, the micro switch;

[0048] 5, the controller; 51, the voice module; 52, the negative ion generator; 53, the negative ion carbon brush;

[0049] 6, the swing wind assembly; 61, the rod-shaped swing wind piece; 611, the swing page installation slot; 612, the swing wind piece installation shaft; 613, the gear shaft hole; 62, the swing page; 621, the swing page installation shaft; 622, the swing page swing shaft; 63, the swing arm; 631, the transmission rod installation slot; 632, the swing page swing slot; 64, the air guide sleeve; 65, the shaft cover; 66, the limiting piece;

[0050] 7, the swing wind driving assembly; 71, the second driving mechanism; 711, the second motor; 712, the second gear; 713, the gear shaft; 7131, the second gear end; 7132, the first connecting end; 72, the third driving mechanism; 721, the third motor; 722, the third gear; 723, the transmission rod; 7231, the second screw end; 7232, the second connecting end; 7233, the annular snap ring; 73, the second motor support; 74, the third motor support;

[0051] 8, the mounting support; 81, the first circular hole; 82, the second circular hole;

[0052] 9, the hanging rod; 10, the keel. DETAILED DESCRIPTION

[0053] In order to enable the above-mentioned purposes, features and advantages of the present disclosure to be more clearly understood, the schemes of the present disclosure will be further described below. It should be noted that the embodiments of the present disclosure and the features in the embodiments can be combined with each other without conflict.

[0054] In the following description, many specific details are set forth in order to provide a thorough understanding of the present disclosure, but the present disclosure can also be implemented in other ways different from those described herein; obviously, the embodiments in the description are only some of the embodiments of the present disclosure, not all the embodiments.

[0055] The wind heating type bath heater is commonly used for heating in the bathroom, and the bath heater is usually installed in the ceiling space of the bathroom. The warm air heated by the bath heater enters the bathroom through the air outlet to increase the temperature of the bathroom. At present, the air outlet of the bath heater is mostly exposed to the air, which is too conspicuous on the ceiling and not beautiful enough. At the same time, water vapor and dust can enter the inside of the air outlet, which affects the motor, lighting assembly and swing wind assembly and other components inside the bath heater, and easily causes electrical short circuit, motor damage, reduced air volume and shortened life and other faults.

[0056] Based on this, the bath heater provided by the embodiments of the present disclosure can drive the sliding cover assembly to switch between the sliding-out position of exposing the air outlet and the retracting position of covering the air outlet according to the operation of the fan assembly, so as to expose or hide the air outlet and improve the appearance of the bath heater.

[0057] The bath heater will be described in detail through specific embodiments as follows:

[0058] Referring to Figures 1 to 13 The bath heater provided by some embodiments of the present disclosure includes a box body 1, a panel 2, a sliding cover assembly 3, a sliding cover driving assembly 4 and a controller 5. Specifically, the bath heater can be a warm air bath heater, which can output warm air to the bathroom to improve the overall temperature of the bathroom and realize the lighting function. In order to improve the appearance of the bath heater, the bath heater is designed to have a structure in which the air outlet 21 can be hidden.

[0059] The box body 1 is provided with a fan assembly 11, the panel 2 is connected to the box body 1 in a cover-hinge manner, the panel 2 is provided with an air outlet 21 which is in communication with the air outlet side 12 of the fan assembly 11, that is, the fan assembly 11 is used to provide warm air to the air outlet 21 to discharge and improve the temperature of the indoor space. The sliding cover assembly 3 is slidably arranged on the panel 2 and is configured to switch between the sliding-out position of exposing the air outlet 21 and the retracting position of covering the air outlet 21 relative to the panel 2. The sliding cover driving assembly 4 is connected to the sliding cover assembly 3 and is used to drive the sliding cover assembly 3 to switch between the sliding-out position and the retracting position. The controller 5 is arranged on any one of the box body 1 or the panel 2 and is electrically connected to the fan assembly 11 and the sliding cover driving assembly 4 to control the start and stop of the fan assembly 11 and the sliding cover driving assembly 4. The controller 5 is configured to control the operation of the sliding cover driving assembly 4 according to the operation of the fan assembly 11, that is, to realize the associated control of the fan assembly 11 and the sliding cover driving assembly 4.

[0060] In a specific implementation, the exposure and hiding of the air outlet 21 can be realized by setting a slidable cover assembly 3 on the panel 2, that is, when the blowing function is not used, the controller 5 is used to control the fan assembly 11 to stop blowing and control the cover driving assembly 4 to make the cover assembly 3 in the retracted position, and the air outlet 21 of the bath heater is hidden under the cover assembly 3; when the blowing function is used, the controller 5 is used to control the cover driving assembly 4 to make the cover assembly 3 in the sliding-out position, and the air outlet 21 is exposed on the ceiling, and at this time, the controller 5 is used to control the fan assembly 11 to start blowing, and hot air is transported to the indoor to increase the indoor temperature. That is, the joint start-stop of the controller 5, the fan assembly 11 and the cover driving assembly 4 can realize that when the fan assembly 11 starts blowing, the cover assembly 3 is in the sliding-out position, and when the fan assembly 11 stops blowing, the cover assembly 3 is in the retracted position, at this time, the air outlet 21 is hidden under the cover assembly 3, the appearance surface of the bath heater is flat, simple and atmospheric, and the user's use feeling is improved.

[0061] In a specific embodiment, a plurality of air suction holes are set on the panel 2, and the fan assembly 11 can suck the indoor air into the box 1 through the air suction holes on the panel 2, and the air sucked into the box 1 is heated by the heating element and then sent into the indoor from the air outlet 21 to increase the indoor temperature.

[0062] In some embodiments, a lamp source and a lampshade 22 corresponding to the lamp source are installed on the panel 2, the lampshade 22 and the cover assembly 3 are located on the same side plate surface of the panel 2 away from the box 1, that is, the lampshade 22 and the cover assembly 3 are set on the same side and are arranged towards the indoor to provide illumination or transport hot air to the indoor. Specifically, the cover assembly 3 is configured to slide away from the lampshade 22 to expose the air outlet 21 and slide towards the lampshade 22 to cover the air outlet 21 relative to the panel 2, and as shown in Figure 4 and Figure 5 The cover assembly 3 slides away from the lampshade 22 to expose the air outlet 21 and transport hot air to the indoor through the air outlet 21 relative to the panel 2, and when the fan assembly 11 stops blowing, the cover assembly 3 slides towards the lampshade 22 to hide the air outlet 21 relative to the panel 2, so that the surface of the bath heater is beautiful and atmospheric.

[0063] Referring to Figure 3As shown, when the sliding cover assembly 3 is in the retracted position, the surface of the lampshade 22 and the surface of the sliding cover assembly 3 are flush or the height difference therebetween is within a preset range. It can be understood that the face cover is arranged on the same side panel of the panel 2 as the sliding cover assembly 3, and when the sliding cover 31 is in the retracted position, the sliding cover assembly 3 is flush with the surface of the lampshade 22 or the height difference therebetween is within a preset range, so that the appearance surface of the bathroom heater is flat, simple, and atmospheric, and the user's use experience is improved. Further, the panel 2 is provided with a function display area 23 on the side panel facing away from the cabinet 1. Specifically, the function display area 23 can display the current indoor temperature, wind speed, and other related information through digital display, so as to facilitate the user to obtain the working state of the bathroom heater. In specific implementation, the controller 5 can be arranged at a position of the panel 2 corresponding to the function display area 23 and facing the cabinet 1.

[0064] In specific implementation, the air outlet 21 is a long strip-shaped air outlet 21 extending along the length direction of the panel 2, and the sliding direction of the sliding cover assembly 3 is perpendicular to the length direction of the panel 2. That is, the sliding direction of the sliding cover assembly 3 is parallel to the width direction of the air outlet 21, and the sliding cover assembly 3 can expose or hide the air outlet 21 by sliding a small stroke, thereby saving the sliding space, making the structure of the bathroom heater compact, and occupying a small space. Of course, it should be noted that the shape of the air outlet 21 can also be a ring shape or other shapes, or a plurality of air outlets 21 can be arranged on the panel 2 to increase the air outlet range of the bathroom heater, and the present disclosure does not limit this as long as the air outlet 21 can be exposed or hidden by the sliding of the sliding cover assembly 3.

[0065] In some embodiments, the sliding cover assembly 3 includes a sliding cover 31 and a support arm 32 fixedly connected with the sliding cover 31, and a sliding cover driving assembly 4 connected with the support arm 32. The sliding cover driving assembly 4 is used to drive the support arm 32 to slide relative to the panel 2, so as to drive the sliding cover 31 to slide relative to the panel 2. Specifically, the sliding cover driving assembly 4 is arranged between the sliding cover 31 and the panel 2, and the sliding cover 31 slides relative to the panel 2 through the sliding cover driving assembly 4, so as to expose or hide the air outlet 21, thereby meeting the use demand of the user. Specifically, the sliding cover driving assembly 4 is connected with the support arm 32, and the sliding cover 31 can move under the driving of the sliding cover driving assembly 4 along with the support arm 32. For details, refer to the description of the sliding cover driving assembly 4. Figure 1As shown, in order to ensure the stability of the sliding of the sliding cover 31, two sliding cover driving assemblies 4 and two supporting arms 32 are arranged, and the two sliding cover driving assemblies 4 simultaneously drive the sliding cover 31 to move to realize the exposure or hiding of the air outlet 21. It can be understood that, in order to avoid the positions of the air outlet 21 and the lighting assembly, the two supporting arms 32 are arranged at the two ends of the panel 2 along the length direction, and the supporting arms 32 extend along the width direction of the panel 2, and the supporting arms 32 can slide relative to the panel 2 under the driving of the corresponding sliding cover driving assembly 4. It should be understood that the two supporting arms 32 can also be arranged at the two ends of the panel 2 along the width direction, and the supporting arms 32 extend along the length direction of the panel 2, and the supporting arms 32 can slide relative to the panel 2 under the driving of the corresponding sliding cover driving assembly 4, and the present disclosure does not limit this as long as the sliding cover driving assembly 4 can drive the supporting arms 32 and the sliding cover 31 to slide.

[0066] It should be noted that the number of sliding cover driving assemblies 4 and supporting arms 32 can be one or more than two, as long as they can be reasonably arranged on the panel 2, can realize the sliding of the sliding cover 31, and will not affect the positions of the air outlet 21 and the lighting assembly, and the present disclosure does not limit this.

[0067] In some embodiments, the sliding cover driving assembly 4 includes a first driving mechanism 41 and a sliding block 42 connected with the first driving mechanism 41. It can be understood that the first driving mechanism 41 can drive the sliding block 42 to slide relative to the panel 2, thereby driving the supporting arm 32 and the sliding cover 31 to slide relative to the panel 2 to expose or hide the air outlet 21. Specifically, the first driving mechanism 41 includes a first motor 411 and a screw shaft connected with the first motor 411, the sliding block 42 is connected with the screw shaft, and the sliding block 42 is provided with a screw groove engaged with the screw shaft. That is, by the cooperation of the sliding block 42 and the screw shaft, the rotary motion of the screw shaft can be converted into the linear sliding of the sliding block 42. The supporting arm 32 is limited and matched with the sliding block 42. The first motor 411 drives the screw shaft to rotate, so that the sliding block 42 slides along the length direction of the screw shaft, drives the supporting arm 32 to slide relative to the panel 2, and drives the sliding cover 31 to slide relative to the panel 2, so that the sliding cover assembly 3 can be switched between the sliding-out position and the retracted position.

[0068] In specific implementation, referring to Figure 2 As shown, the screw shaft and the motor shaft of the first motor 411 are integrated, and the exposed part of the motor shaft of the first motor 411 is formed into a screw segment 412 for engaging with the screw groove on the sliding block 42. It can be understood that the output shaft of the first motor 411 is directly formed into the screw segment 412, the sliding block 42 is engaged with the screw segment 412, and the first motor 411 drives the screw segment 412 to rotate to enable the sliding block 42 to slide along the length direction of the screw segment 412.

[0069] In some other embodiments, the screw shaft is a gear screw 413, which comprises a first gear end 4131 and a first screw end 4132 connected together. The first motor 411 is provided with a first gear 414 on the motor shaft. The first gear end 4131 is engaged with the first gear 414, and the first screw end 4132 is engaged with the screw groove on the sliding block 42. The first motor 411 drives the first gear 414 and the gear screw 413 to rotate, so that the sliding block 42 slides along the length direction of the gear screw 413. Referring to Figure 10 and Figure 11 As shown in FIGS. 32 and 42, the support arm 32 is limited and matched with the sliding block 42. In the specific implementation, the power output by the first motor 411 is transmitted to the sliding block 42 after passing through the first gear 414 and the gear screw 413, and the sliding block 42 moves to drive the support arm 32 to move, so that the sliding cover 31 slides. The first gear 414 is arranged on the output shaft of the first motor 411. A flat shaft hole is formed in the middle of the first gear 414. The shape of the output shaft of the first motor 411 is matched with the shape of the flat shaft hole. The output shaft is inserted into the flat shaft hole to fix the output shaft and the first gear 414. Under the limiting action of the flat shaft hole, the first gear 414 rotates with the rotation of the output shaft of the first motor 411.

[0070] Specifically, one end of the gear screw rod 413 is a first gear end 4131, the first gear end 4131 is engaged with the first gear 414, when the first gear 414 rotates, the first gear end 4131 rotates with it, that is, the entire gear screw rod 413 rotates under the driving of the first gear 414; the other end of the gear screw rod 413 is a first screw end 4132, the sliding block 42 is engaged with the first screw end 4132, specifically, after the first motor 411 is installed on the panel 2, when the first screw end 4132 rotates with the first gear 414, under the engagement of the screw groove and the first screw end 4132, the rotation of the gear screw rod 413 can be converted into the sliding of the sliding block 42, that is, the first motor 411, the first gear 414 and the gear screw rod 413 are fixed on the panel 2, and the sliding block 42 is slidably wrapped outside the first screw end 4132, the support arm 32 is fixed on the sliding cover 31 by bolts and other fasteners, the first motor 411 drives the first gear 414 and the gear screw rod 413 to rotate, so that the sliding block 42 slides along the length direction of the gear screw rod 413, to drive the support arm 32 to slide relative to the panel 2. It can be understood that the forward and reverse rotation of the first motor 411 can realize the reciprocating sliding of the sliding block 42 along the length direction of the first screw end 4132, so as to realize the sliding of the sliding cover 31, so that the sliding cover 31 can be located at the sliding position of exposing the air outlet 21 or the retracted position of covering the air outlet 21, to realize the exposure or hiding of the air outlet 21. Of course, it should be noted that the sliding block 42 can be a whole structure with a screw groove inside, or a split structure clamped together, and the specific structure of the sliding block 42 is not limited in the present disclosure, as long as it can be engaged with the screw shaft and slide along the length direction of the screw shaft, and can be fixedly connected with the support arm 32 to drive the support arm 32 to slide.

[0071] In some embodiments, an end portion of the support arm 32 along the length direction is provided with a counterbore 321, and the sliding block 42 is provided with a protrusion, the protrusion is limited and matched with the counterbore 321, to realize the limited matching between the sliding block 42 and the support arm 32, so that the support arm 32 can slide synchronously with the sliding block 42, to drive the sliding cover 31 to slide to expose or hide the air outlet 21. In other embodiments, the support arm 32 can be fixedly connected with the sliding cover 31 by screws and other fasteners, under the driving of the sliding cover driving assembly 4, the support arm 32 slides relative to the panel 2, to drive the sliding cover 31 to slide relative to the panel 2, to realize the exposure or hiding of the air outlet 21, which is not limited in the present disclosure.

[0072] In the embodiment, the first driving mechanism 41 is installed on the panel 2 through the motor fixing seat 43, and the micro switch 44 is arranged on the end of the motor fixing seat 43 away from the first motor 411. That is, the arrangement position of the micro switch 44 limits the maximum stroke of the opening of the sliding cover 31. The micro switch 44 is electrically connected with the controller 5, and the slider 42 can contact the micro switch 44 to trigger the micro switch 44 when sliding to the end away from the first motor 411 along the length direction of the screw rod, so that the controller 5 controls the first driving mechanism 41 to stop running. It can be understood that when the user uses the shower heater, the controller 5 controls the first driving mechanism 41 to move, and makes the slider 42 and the sliding cover 31 move relative to the panel 2 in the direction away from the lampshade 22 to expose the air outlet 21, until the slider 42 contacts the micro switch 44, the micro switch 44 is triggered, so that the controller 5 controls the first driving mechanism 41 to stop running, at this time, the sliding cover 31 is completely opened, and the controller 5 is used to control the blower assembly 11 to blow, when it is needed to stop the wind heating function of the shower heater, the controller 5 controls the blower assembly 11 to stop blowing, and drives the sliding cover assembly 3 to hide the air outlet 21, which can prevent impurities such as water vapor and dust from entering the air outlet 21, and further ensures the service life of the shower heater.

[0073] In some embodiments, the shower heater can further include a swing assembly 6 and a swing driving assembly 7, the swing assembly 6 is swingingly arranged at the air outlet 21, and the swing driving assembly 7 is connected with the swing assembly 6 and used to drive the swing assembly 6 to swing relative to the air outlet 21.

[0074] Referring to Figure 6 The panel 2 of the shower heater is provided with a mounting bracket 8, the mounting bracket 8 is fixedly installed on the panel 2 and arranged corresponding to the air outlet 21, the swing assembly 6 includes a rod-shaped swing piece 61 and a plurality of swing pages 62, the rod-shaped swing piece 61 is swingingly arranged in the mounting bracket 8 and configured to swing relative to the mounting bracket 8 along a first direction, specifically, the rod-shaped swing piece 61 is provided with a through hole for airflow to pass through, so as to change the angle of the through hole arranged on the rod-shaped swing piece 61 through the swing of the rod-shaped swing piece 61, thereby achieving the purpose of adjusting the air outlet angle along the first direction; the plurality of swing pages 62 are swingingly arranged in the rod-shaped swing piece 61 and configured to swing relative to the rod-shaped swing piece 61 along a second direction, so as to change the angle of the swing pages 62 through the swing of the swing pages 62, thereby achieving the purpose of adjusting the air outlet angle along the second direction; and the first direction is perpendicular to the second direction, so as to realize the swing in two directions of the swing assembly 6, so that the blowing range is larger. Specifically, the first direction can be the front-back direction, and the second direction can be the left-right direction, thereby realizing the swing in the front-back direction and the left-right direction. Referring to Figure 1As shown, the mounting bracket 8 can be fixed on the panel 2 by screws or other fasteners. Around the air outlet 21 of the panel 2, a plurality of threaded holes are arranged at intervals, and corresponding mounting holes for the fasteners to pass through are arranged at corresponding positions on the mounting bracket 8. The screws or other fasteners pass through the mounting holes and the threaded holes in sequence to fix the mounting bracket 8 on the panel 2.

[0075] Specifically, referring to Figure 6 As shown, the rod-shaped air deflector 61 can be arranged along the length direction of the air outlet 21. For example, when the air outlet 21 is arranged horizontally, the rod-shaped air deflector 61 is arranged horizontally at the air outlet 21. The rod-shaped air deflector 61 can be a semi-cylindrical frame structure, which includes two opposite and spaced semi-circular end faces and an arc-shaped side surface connected between the two semi-circular end faces. The upper part of the arc-shaped side surface is formed as an open structure, and a through hole is arranged on the arc-shaped side surface for airflow to pass through. When the shower heater blows air, the airflow enters the rod-shaped air deflector 61 from the opening at the upper part of the arc-shaped side surface and is blown out through the through hole arranged on the arc-shaped side surface.

[0076] Specifically, continuing to refer to Figure 6 As shown, the rod-shaped air deflector 61 is rotatably connected to the mounting bracket 8 through an air deflector mounting shaft 612. The air deflector mounting shaft 612 extends along the length direction of the rod-shaped air deflector 61. The rod-shaped air deflector 61 rotates about the air deflector mounting shaft 612 in the first direction relative to the mounting bracket 8. The rotatable angle of the rod-shaped air deflector 61 is α, referring to Figure 3 As shown, α is 50 degrees. A plurality of swing pages 62 are arranged in the rod-shaped air deflector 61 along the length direction of the rod-shaped air deflector 61 at intervals, and are rotatably connected to the rod-shaped air deflector 61 through swing page mounting shafts 621, respectively. The swing page mounting shafts 621 are perpendicular to the air deflector mounting shaft 612. The plurality of swing pages 62 can rotate about the swing page mounting shafts 621 in the second direction relative to the rod-shaped air deflector 61. The rotatable angle of the rod-shaped air deflector 61 is β, referring to Figure 8 As shown, β is 88 degrees. Specifically, a limiting piece 66 is arranged at the top of the rod-shaped air deflector 61, and the limiting piece 66 can rotate with the rod-shaped air deflector 61 in the first direction relative to the mounting bracket 8 about the air deflector mounting shaft 612. The plurality of swing pages 62 are limited between the rod-shaped air deflector 61 and the limiting piece 66 and can rotate between the rod-shaped air deflector 61 and the limiting piece 66.

[0077] Further, continuing to refer to Figure 6As shown, the swing assembly 6 further comprises a swing arm 63, and the rod-shaped swing piece 61 and the swing arm 63 are both open warm air channels to facilitate the change of direction of the warm air passing through the swing opening. Specifically, the rod-shaped swing piece 61 can be a cylindrical rod as a whole, the swing pages 62 are arranged in a shape matching the cylindrical rod-shaped swing piece 61, the rod-shaped swing piece 61 is formed with a long strip-shaped through hole extending along the length direction thereof, and the air flow in the heater core can pass through the long strip-shaped through hole in the radial direction of the rod-shaped swing piece 61 and then be blown out from the air outlet 21 on the panel 2. Specifically, the rod-shaped swing piece 61 is swingably arranged in the mounting bracket 8, the rod-shaped swing piece 61 is rotationally connected to the mounting bracket 8 through a swing piece mounting shaft 612, the rod-shaped swing piece 61 can swing along the axial direction of the mounting bracket 8, the swing arm 63 is arranged in the rod-shaped swing piece 61 and extends along the length direction of the rod-shaped swing piece 61, and the plurality of swing pages 62 are sequentially and spacedly arranged on the swing arm 63 along the extension direction of the swing arm 63. The swing pages 62 can swing along the length direction of the rod-shaped swing piece 61, that is, the swing arm 63 moves along the length direction of the rod-shaped swing piece 61 in the rod-shaped swing piece 61, and the swing pages 62 are rotationally connected to the swing arm 63 and the rod-shaped swing piece 61 and can swing between the swing arm 63 and the rod-shaped swing piece 61 to change the wind direction.

[0078] In some embodiments, the air outlet side 12 of the cabinet 1 is provided with a wind guide sleeve 64, one end of the wind guide sleeve 64 is arranged corresponding to the air outlet side 12 on the cabinet 1, and the other end is arranged corresponding to the air outlet 21 on the panel 2 to send the warm air in the cabinet 1 into the room through the air outlet 21. Specifically, the wind guide sleeve 64 is connected to the mounting bracket 8 to limit the rod-shaped swing piece 61, the swing arm 63 and the plurality of swing pages 62 in the mounting bracket 8, and the outer side wall of the mounting bracket 8 is provided with threaded holes at intervals, and corresponding fasteners such as bolts are arranged at corresponding positions of the wind guide sleeve 64 to accommodate the rod-shaped swing piece 61, the swing arm 63 and the plurality of swing pages 62 in the accommodation space between the wind guide sleeve 64 and the mounting bracket 8. Of course, it should be noted that the fixing mode between the wind guide sleeve 64 and the mounting bracket 8 is not limited to bolt connection, but can also be other modes such as clamping connection, as long as the connection between the wind guide sleeve 64 and the mounting bracket 8 can be achieved.

[0079] It can be understood that the rod-shaped swing piece 61 rotates along the axial direction of the mounting bracket 8, and the swing pages 62 rotate with the rotation of the rod-shaped swing piece 61, and at the same time, the swing pages 62 can also swing along the length direction of the rod-shaped swing piece 61 in the interior of the rod-shaped swing piece 61. Therefore, the heater core provided by the present disclosure can swing the swing pages 62 and the rod-shaped swing piece 61 according to the user's use demand, change the wind direction, and blow out the warm air in a directional manner to improve the user's use demand.

[0080] In a specific implementation, the swing driving assembly 7 includes a second driving mechanism 71 connected with the rod-shaped swing member 61 for driving the rod-shaped swing member 61 to swing in a first direction, and a third driving mechanism 72 connected with the swing page 62 for driving the swing page 62 to swing in a second direction, so as to realize the dual swing function of the bathroom heater. Specifically, the swing driving assembly 7 can be fixedly installed at one end of the mounting bracket 8 by means of screws or other fasteners, the driving of the rod-shaped swing member 61 is in the form of rotation, the driving of the swing page 62 is in the form of pushing, and finally the dual swing of the swing assembly 6 is realized.

[0081] Specifically, the second driving mechanism 71 is connected with the rod-shaped swing member 61 for driving the rod-shaped swing member 61 to swing with the rotary connecting shaft of the mounting bracket 8 as the axis; the third driving mechanism 72 is connected with the swing arm 63 for driving the swing arm 63 to move in the length direction of the rod-shaped swing member 61, so as to drive the swing page 62 to swing with the rotary connecting shaft of the rod-shaped swing member 61 as the axis. It can be understood that, in order to realize omnidirectional swing, the swing direction of the rod-shaped swing member 61 and the movement direction of the swing arm 63 are perpendicular to each other, so that the swing direction of the swing page 62 and the swing direction of the rod-shaped swing member 61 are perpendicular to each other, thereby the swing page 62 and the rod-shaped swing member 61 can be combined according to the use requirement of the user, the wind direction can be changed, directional air outlet is realized, and the use requirement of the user is improved.

[0082] Referring to Figure 7 As shown in the drawings, the swing page 62 is provided with a swing page mounting shaft 621 and a swing page swing shaft 622. In a specific implementation, the swing page mounting shaft 621 and the swing page swing shaft 622 can be arranged on both sides of the swing page 62. The swing page mounting shaft 621 is arranged at a lower position on both sides of the swing page 62 (referring to the direction shown in the drawings), and the swing page mounting shafts 621 on both sides are arranged at the same height. The swing page swing shaft 622 is arranged at an upper position on both sides of the swing page 62 (referring to the direction shown in the drawings). Figure 7 Figure 7 ​The two sides of the swing page installation shaft 621 are arranged at the same height. Correspondingly, the swing page 62 is arranged on the rod-shaped swing piece 61, and the position corresponding to the swing page 62 is provided with a swing page installation groove 611. The position, number, shape and the like of the swing page installation groove 611 and the swing page installation shaft 621 are matched with each other, so that the swing page installation shaft 621 is rotatably arranged in the swing page installation groove 611. The swing page installation shaft 621 is formed as a rotating connection shaft of the swing page 62 and the rod-shaped swing piece 61, so that the swing page 62 rotates around the swing page installation shaft 621 as the center. Correspondingly, the swing arm 63 is provided with a swing page swing groove 632 at a position corresponding to the swing page 62. The position, number, shape and the like of the swing page swing groove 632 and the swing page swing shaft 622 are matched with each other, so that the swing page swing shaft 622 is arranged in the swing page swing groove 632. The swing arm 63 drives the swing page 62 to swing around the swing page installation shaft 621 through the cooperation of the swing page swing shaft 622 and the swing page swing groove 632. It can be understood that when the swing arm 63 reciprocates along the length direction of the swing arm 63, and the rod-shaped swing piece 61 does not move in the length direction thereof, the swing page 62 is limited between the swing arm 63 and the rod-shaped swing piece 61. Under the driving of the swing arm 63, the swing page installation shaft 621 rotates in the swing page installation groove 611. Thus, the reciprocating movement of the swing arm 63 along the length direction of the swing arm 63 can be converted into the swing of the swing page 62 around the swing page installation shaft 621. Through the warm air of the rod-shaped swing piece 61, the wind direction is changed under the swing of the swing page 62, and multi-directional air outlet is realized.

[0083] In some embodiments, with reference to Figure 9 As shown, the second driving mechanism 71 includes a second motor 711, a second gear 712 and a gear shaft 713. The second motor 711 is fixed on the panel 2 through a second motor support 73. Specifically, the second motor 711 is fixed on the second motor support 73 through fasteners such as bolts, and the second motor support 73 is fixed on the panel 2 through fasteners such as bolts. The second gear 712 is arranged on the output shaft of the second motor 711. A flat shaft hole is formed in the middle of the second gear 712. The shape of the output shaft of the second motor 711 is matched with the shape of the flat shaft hole. The output shaft is inserted into the flat shaft hole to fix the output shaft and the second gear 712. Under the limiting action of the flat shaft hole, the second gear 712 rotates with the rotation of the output shaft of the first motor 411. The gear shaft 713 includes a second gear end 7131 engaged with the second gear 712 and a first connection end 7132 for outputting power to the rod-shaped swing piece 61. The second gear end 7131 is engaged with the second gear 712. Under the driving of the second gear 712, the second gear end 7131 rotates, that is, the gear shaft 713 rotates. Since the first connection end 7132 is connected with the rod-shaped swing piece 61, the rod-shaped swing piece 61 also rotates with the gear shaft 713. Specifically, the rotation center line of the rod-shaped swing piece 61 is the axis of the gear shaft 713.

[0084] Specifically, the rod-shaped swing piece 61 is provided with a gear shaft hole 613 at one end along the length direction, which matches the cross-sectional shape of the first connecting end 7132. As shown in Figure 9 The first connecting end 7132 is a column with a hexagonal cross section, and the gear shaft hole 613 matches the shape of the first connecting end 7132. The rotation of the first connecting end 7132 can drive the rod-shaped swing piece 61 to rotate. The first connecting end 7132 is inserted into the gear shaft hole 613. The second motor 711 drives the second gear 712 and the gear shaft 713 to rotate, so that the gear shaft 713 drives the rod-shaped swing piece 61 to swing around the gear shaft 713. It can be understood that the first connecting end 7132 can also be a column with a triangular, quadrangular or polygonal cross section. The shape of the gear shaft hole 613 corresponds to the shape of the first connecting end 7132, so that the first connecting end 7132 can drive the rod-shaped swing piece 61 to rotate to change the wind direction. The outer side of the other end of the rod-shaped swing piece 61 along the length direction is provided with a swing piece mounting shaft 612 extending along the length direction. The swing piece mounting shaft 612 is rotatably connected to the mounting bracket 8. That is, the mounting bracket 8 is provided with a first circular hole 81 at the corresponding position, and the swing piece mounting shaft 612 is inserted into the first circular hole 81. That is, the swing assembly 6 is supported in the mounting bracket 8 by the support of the gear shaft 713 and the swing piece mounting shaft 612, and the swing assembly 6 can rotate in the mounting bracket 8 along the axis of the gear shaft 713 and the swing piece mounting shaft 612.

[0085] Continuing to refer to Figure 9As shown, the third driving mechanism 72 comprises a third motor 721, a third gear 722 and a transmission rod 723, the third motor 721 is fixed on the panel 2 through a third motor support 74, specifically, the third motor 721 is fixed on the third motor support 74 through fasteners such as bolts, the third motor support 74 is fixed on the panel 2 through fasteners such as bolts, the third gear 722 is arranged on the output shaft of the third motor 721, a flat shaft hole is formed in the middle of the third gear 722, the shape of the output shaft of the third motor 721 is matched with the shape of the flat shaft hole, the output shaft is inserted into the flat shaft hole to realize the fixation of the output shaft and the third gear 722, under the limiting action of the flat shaft hole, the third gear 722 rotates with the rotation of the output shaft of the third motor 721, the transmission rod 723 comprises a second screw rod end 7231 engaged with the third gear 722 and a second connecting end 7232 for outputting power to the swing arm 63, the second screw rod end 7231 is engaged with the third gear 722, under the driving of the third gear 722, the second screw rod end 7231 moves in the length direction thereof, that is, the transmission rod 723 moves in the length direction, since the second connecting end 7232 is connected with the swing arm 63, the swing arm 63 also moves in the length direction of the transmission rod 723. Specifically, the movement direction of the swing arm 63 is the length direction of the transmission rod 723, it can be understood that the length direction of the transmission rod 723 is consistent with the length direction of the rod-shaped swing piece 61, so that the swing arm 63 moves along the length direction of the rod-shaped swing piece 61.

[0086] It can be understood that, in order to make the structure of the swing driving assembly 7 more compact and reduce the occupied space, the gear shaft 713 is designed as a hollow gear shaft 713, the transmission rod 723 is arranged coaxially with the hollow gear shaft 713, the second motor support 73 is provided with a shaft hole through which the gear shaft 713 passes, and the second connecting end 7232 passes through the inner hole of the hollow gear shaft 713 to be connected with the swing arm 63, so as to realize the bidirectional swing function in a limited space. Specifically, in the implementation, refer to Figure 9 As shown, the length of the second connecting end 7232 of the transmission rod 723 is greater than the length of the gear shaft 713, a shaft hole (or inner hole) corresponding to the shape of the second connecting end 7232 of the transmission rod 723 is arranged in the middle of the gear shaft 713, the gear shaft 713 is sleeved on the second connecting end 7232, and the second connecting end 7232 passes through the inner hole of the hollow gear shaft 713 and extends out of the inner hole of the hollow gear shaft 713 to be connected with the swing arm 63. At the same time, the mounting support 8 is provided with a second circular hole 82 at the corresponding position, the second connecting end 7232 passes through the second circular hole 82 to be connected with the swing arm 63 to drive the swing arm 63 to move.

[0087] In some embodiments, refer to Figure 6As shown, the swing component 6 further comprises a shaft cover 65, the swing arm 63 is provided with a transmission rod 723 mounting groove 631, the shaft cover 65 is connected with the transmission rod 723 mounting groove 631 and is sleeved on the second connecting end 7232. That is, the part of the second connecting end 7232 passing through the second circular hole 82 is fixed on the swing arm 63 through the shaft cover 65 and the transmission rod 723 mounting groove 631 to drive the swing arm 63 to move. Specifically, the shaft cover 65 and the transmission rod 723 mounting groove 631 can be clamped and matched, a buckle is arranged on any one of the shaft cover 65 and the transmission rod 723 mounting groove 631, and a clamping groove is arranged on the other one of the shaft cover 65 and the transmission rod 723 mounting groove 631. The fixing between the shaft cover 65 and the transmission rod 723 mounting groove 631 is realized through the cooperation of the buckle and the clamping groove, the second connecting end 7232 is fixed between the shaft cover 65 and the transmission rod 723 mounting groove 631, and the swing arm 63 is driven to move through the second connecting end 7232.

[0088] Specifically, the end of the second connecting end 7232 connected with the swing arm 63 is provided with an annular clamping ring 7233, correspondingly, a first clamping groove is arranged on the groove wall of the transmission rod 723 mounting groove 631, and a second clamping groove is arranged on the corresponding position of the shaft cover 65. The openings of the first clamping groove and the second clamping groove jointly form an annular clamping groove, and the annular clamping ring 7233 is limited in the annular clamping groove. That is, the second connecting end 7232 is limited in the annular clamping groove through the limitation of the annular clamping ring 7233 in the annular clamping groove, so that the swing arm 63 is driven to move through the second connecting end 7232, thereby realizing the swing of the swing page 62 to change the wind direction at the air outlet 21.

[0089] In some embodiments, the first end of the mounting bracket 8 is provided with a first circular hole 81, and the swing piece mounting shaft 612 is rotatably inserted in the first circular hole 81. The swing piece mounting shaft 612 is formed as a rotating connection shaft of the rod-shaped swing piece 61 and the mounting bracket 8. That is, through the gear shaft 713 and the swing piece mounting shaft 612 and the supporting action, the swing component 6 is supported in the mounting bracket 8, and the swing component 6 can rotate along the axis of the gear shaft 713 and the swing piece mounting shaft 612 in the mounting bracket 8. Meanwhile, the second end of the mounting bracket 8 is provided with a second circular hole 82, the second connecting end 7232 is inserted into the annular clamping groove through the second circular hole 82, and is connected with the swing arm 63 to drive the swing arm 63 to move.

[0090] In some embodiments, the bathroom heater provided by the present disclosure further comprises a sensor electrically connected to the controller 5, the sensor being configured to detect the position of the user, and the controller 5 is electrically connected to the swing driving assembly 7 and configured to control the swing driving assembly 7 to operate according to the position signal detected by the sensor, so that the swing driving assembly 7 drives the swing assembly 6 to change the swing angle, so as to avoid blowing wind to the user or directly blowing wind to the user according to the user's demand. In some embodiments, the sensor is a millimeter wave radar. When the bathroom heater is turned on, the millimeter wave radar can detect the current position of the user, and according to the position information of the user, the second motor 711 and the third motor 721 of the swing driving assembly 7 are driven to adjust the angle of the rod-shaped swing part 61 and the plurality of swing pages 62, so that the warm air in the bathroom heater blows to the user. Similarly, when the wind-avoiding function of the bathroom heater is turned on, the angle of the rod-shaped swing part 61 and the plurality of swing pages 62 is adjusted so that the wind blows away from the user and does not blow to the user, so as to realize the wind-pursuing and wind-avoiding functions of the bathroom heater. It should be noted that the sensor can also be an infrared sensor or other sensors, as long as the position information of the user can be obtained through the sensor, and the wind-pursuing or wind-avoiding function of the bathroom heater can be realized according to the position information of the user. The present disclosure does not limit this.

[0091] It should be noted that when the wind-pursuing or wind-avoiding function is not needed, the bathroom heater provided by the present disclosure can also be set to a plurality of modes such as no swing, only the rod-shaped swing part 61 swings, only the swing page 62 swings, or the rod-shaped swing part 61 and the swing page 62 swing at the same time. Specifically, the working mode of the bathroom heater can be displayed on the display screen on the function display area 23, so that the user can know the working state of the bathroom heater.

[0092] In specific implementation, the bathroom heater has a first blowing mode and a second blowing mode, and the controller is configured to control the swing driving assembly 7 to drive the swing assembly 6 to swing away from the position of the user in the first blowing mode, and to drive the swing assembly 6 to swing towards the position of the user in the second blowing mode. That is, the first blowing mode corresponds to the wind-avoiding function of the bathroom heater, that is, the swing assembly 6 can swing away from the position of the user, and the second blowing mode corresponds to the wind-pursuing function of the bathroom heater, that is, the swing assembly 6 swings towards the position of the user.

[0093] In some embodiments, the bathroom heater provided by the present disclosure further comprises a voice module 51 arranged on the panel 2, which is configured to receive voice signals sent by a user, and the voice module 51 is electrically connected to the controller, and the controller switches the blowing mode of the bathroom heater according to the received voice signals. In specific implementation, the voice module 51 comprises a microphone and a speaker, the microphone can accept voice signals, and the machine is controlled by voice, and the user can freely switch the blowing mode during bathing. At the same time, since the speaker is arranged, the relevant function feedback can be broadcast in the form of audio, so that the bathroom heater provided by the present disclosure can flexibly switch the function during use.

[0094] With reference to Figure 1 The bathroom heater provided by the present disclosure further comprises an anion generator 52 and an anion carbon brush 53, the anion generator 52 is arranged on the panel 2, and the anion carbon brush 53 is arranged at the air outlet 21 and is electrically connected to the anion generator 52, so that the negative ions generated by the anion generator 52 are emitted through the air outlet 21. When the bathroom heater starts the anion sterilization function, the anion generator 52 generates negative ions, which are blown out from the swing assembly 6 through the anion carbon brush 53, so as to sterilize the air flowing through the air outlet 21.

[0095] In some embodiments, as shown in Figure 13 The box body 1 is configured to be installed on the cement ceiling through the hanger 9 arranged at the hanger mounting position 13, and the panel 2 is configured to be clamped on the gypsum board, and the side of the panel 2 facing the box body 1 is provided with a mounting spring 24 for abutting against the gypsum board. It can be understood that the box body 1 is arranged on the cement ceiling through the hanger 9, the gypsum board is provided with a mounting hole, the panel 2 is clamped in the mounting hole of the gypsum board, and the air outlet side 12 of the box body 1 and the air outlet 21 of the panel 2 are correspondingly arranged, so that the warm air heated in the box body 1 is sequentially sent into the room through the air outlet side 12 and the air outlet 21, so as to improve the temperature in the room. Specifically, the hanger mounting position 13 is arranged at the side of the box body 1 close to the panel 2, as shown in Figure 13 The bottom surface of the box body 1 is provided with four hanger mounting positions 13, the box body 1 is hung on the cement ceiling through the four hangers 9, and the warm air is delivered to the air outlet 21.

[0096] In other embodiments, as shown in Figure 12As shown, the box body 1 is provided with a fixing support 14 configured to be lapped on the joist 10 of the integrated ceiling to support the box body 1, and the panel 2 is configured to be clamped in the joist 10. Specifically, the fixing support 14 is fixed on the box body 1 by bolts or other fasteners, the fixing support 14 is lapped on the joist 10 to support the box body 1, and the panel 2 can be clamped between the joists 10. Similarly, the air outlet side 12 of the box body 1 and the air outlet 21 on the panel 2 are correspondingly arranged to sequentially send the warm air heated in the box body 1 into the room through the air outlet side 12 and the air outlet 21. It can be understood that the integrated ceiling is composed of multiple aluminum panels of the same size and laid on the joist 10, and the panel 2 of the bathroom heater occupies the position of one or two aluminum panels and is clamped between the joists, without the need for additional holes to achieve the installation of the bathroom heater.

[0097] In summary, the bathroom heater provided by the present disclosure has the following advantages. The sliding cover 31 can hide the air outlet 21, and the sliding cover 31 is flush with the face cover of the lighting assembly when it is retracted, so that the appearance of the bathroom heater is simple and elegant. The combination of the cylindrical rod-shaped air deflector 61 and the swing page 62 realizes the double air deflection of the bathroom heater, so that the warm air blown by the bathroom heater can blow to a larger range, the bathroom can be warmed up more quickly, the waiting time for heating is reduced, and the user experience is greatly improved. The bathroom heater can be installed on the integrated ceiling using the fixing support 14 and on the cement ceiling using the hanger rod 9.

[0098] In the description of the embodiments of the present disclosure, it should be understood that the terms "upper", "lower", "left", "right", "front", "back", "top", "bottom" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the embodiments of the present disclosure and simplifying the description, and do not indicate or imply that the indicated structure or device must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the embodiments of the present disclosure.

[0099] It should be noted that in this document, relational terms such as "first" and "second", and the like can only be used to distinguish one entity or action from another entity or action, and do not necessarily require or imply that there is any such actual relationship or order between these entities or actions. Moreover, the terms "comprise", "contain" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such a process, method, article or device. Without more limitations, the element defined by the statement "comprising a" does not exclude the presence of additional identical elements in the process, method, article or device including the element.

[0100] The foregoing is merely illustrative of the various implementations of the present disclosure and the general principles thereof. Numerous modifications can be made to these illustrations, and equivalents can be substituted therefor, without departing from the scope of the present disclosure. The specific embodiments commensurate with the specific aspects of the present disclosure are thus not to be taken as limiting the scope of the disclosure but rather as being illustrative thereof. It is thus to be understood that the scope of the present disclosure is defined by the appended claims and equivalents thereof rather than by the description contained herein.

Claims

1. A bathroom heater, characterized in that, include: The housing contains a fan assembly; A panel is connected to the housing cover, and the panel is provided with an air outlet that communicates with the air outlet side of the fan assembly; A sliding cover assembly is slidably disposed on the panel, the sliding cover assembly being configured to switch between a sliding position exposing the air outlet and a retracted position covering the air outlet relative to the panel; A sliding cover drive assembly, connected to the sliding cover assembly, is used to drive the sliding cover assembly to switch between the sliding position and the retracted position; The controller is electrically connected to the fan assembly and the sliding cover drive assembly to control the start and stop of the fan assembly and the sliding cover drive assembly; A light source is installed on the panel; The sliding cover assembly includes a sliding cover and a support arm fixedly connected to the sliding cover. The sliding cover driving assembly is connected to the support arm and is used to drive the support arm to slide relative to the panel, so as to drive the sliding cover to slide relative to the panel. The sliding cover drive assembly includes a first drive mechanism and a slider connected to the first drive mechanism. The first drive mechanism includes a first motor and a lead screw shaft connected to the first motor. The slider is mounted on the lead screw shaft and has a lead screw groove that meshes with the lead screw shaft. The support arm is limited to the slider. The first motor drives the lead screw shaft to rotate, causing the slider to slide along the length of the lead screw shaft, thereby driving the support arm to slide relative to the panel. One end of the support arm along its length is provided with a countersunk hole, and the slider is provided with a protrusion. The protrusion is matched with the countersunk hole to limit the movement of the slider and drive the support arm to slide synchronously. And / or, the first drive mechanism is mounted on the panel through a motor mounting bracket. A micro switch is provided at the end of the motor mounting bracket away from the first motor. The micro switch is electrically connected to the controller. When the slider slides along the length of the lead screw shaft and comes into contact with the micro switch, the micro switch is triggered, and the controller controls the first drive mechanism to stop running.

2. The bathroom heater according to claim 1, characterized in that, The panel is equipped with a lampshade corresponding to the light source, and both the lampshade and the sliding cover assembly are located on the side of the panel facing away from the housing. The sliding cover assembly is configured to slide relative to the panel in a direction away from the lampshade to expose the air outlet, and to slide in a direction close to the lampshade to cover the air outlet.

3. The bathroom heater according to claim 2, characterized in that, When the sliding cover assembly is in the retracted position, the surface of the lampshade and the surface of the sliding cover assembly are flush, or the height difference between them is within a preset range; And / or, a function display area is also provided on the side of the panel facing away from the housing, the function display area being located in the area between the lampshade and the sliding cover assembly.

4. The bathroom heater according to any one of claims 1 to 3, characterized in that, It also includes a swing assembly and a swing drive assembly. The swing assembly is oscillatingly disposed at the air outlet, and the swing drive assembly is connected to the swing assembly to drive the swing assembly to oscillate relative to the air outlet.

5. The bathroom heater according to claim 4, characterized in that, The panel is provided with a mounting bracket, which is fixedly installed on the panel and corresponding to the air outlet. The swing assembly includes a rod-shaped swing element and multiple swing blades. The rod-shaped swing element is oscillatingly disposed in the mounting bracket and configured to swing relative to the mounting bracket in a first direction. The multiple swing blades are oscillatingly disposed in the rod-shaped swing element and configured to swing relative to the rod-shaped swing element in a second direction. The first direction and the second direction are perpendicular to each other to achieve bidirectional swing of the swing assembly.

6. The bathroom heater according to claim 5, characterized in that, The rod-shaped swing element is rotatably connected to the mounting bracket via a swing element mounting shaft. The swing element mounting shaft extends along the length of the rod-shaped swing element, and the rod-shaped swing element swings relative to the mounting bracket around the swing element mounting shaft. Multiple swing blades are arranged sequentially and at intervals along the length of the rod-shaped oscillating component, and are rotatably connected to the rod-shaped oscillating component via swing blade mounting shafts. The swing blade mounting shafts are perpendicular to the oscillating component mounting shafts, and the multiple swing blades swing relative to the rod-shaped oscillating component around the swing blade mounting shafts.

7. The bathroom heater according to claim 6, characterized in that, The swing assembly also includes a swing arm; The swing arm is disposed in the rod-shaped oscillating component and extends along the length direction of the rod-shaped oscillating component. The oscillating blade is provided with the oscillating blade mounting shaft and the oscillating blade swing shaft. The rod-shaped oscillating component is provided with a oscillating blade mounting groove corresponding to the position of the oscillating blade. The oscillating blade mounting shaft is disposed in the oscillating blade swing groove. The swing arm reciprocates along the length direction of the rod-shaped oscillating component to drive the oscillating blade to swing around the oscillating blade mounting shaft.

8. The bathroom heater according to claim 7, characterized in that, The swing drive assembly includes a second drive mechanism and a third drive mechanism; The second drive mechanism is connected to the rod-shaped oscillating component and is used to drive the rod-shaped oscillating component to swing around the oscillating component mounting axis. The third drive mechanism is connected to the swing arm and is used to drive the swing arm to reciprocate along the length direction of the rod-shaped oscillating component, so as to drive the swing blade to swing around the swing blade mounting axis.

9. The bathroom heater according to claim 4, characterized in that, It also includes a sensor electrically connected to the controller, the sensor being used to detect the user's location, the controller being electrically connected to the swing drive assembly, and being used to control the operation of the swing drive assembly based on the position signal detected by the sensor, so that the swing drive assembly drives the swing assembly to change the swing angle.

10. The bathroom heater according to claim 9, characterized in that, The bathroom heater has a first blowing mode and a second blowing mode. The controller is used to control the swing drive component to swing in a direction away from the user's position in the first blowing mode, and to control the swing drive component to swing in a direction toward the user's position in the second blowing mode.

11. The bathroom heater according to claim 10, characterized in that, It also includes a voice module, which is set on the panel and is used to receive voice signals sent by the user. The voice module is electrically connected to the controller, and the controller switches the blowing mode of the bathroom heater according to the received voice signals. And / or, it also includes a negative ion generator and a negative ion carbon brush, the negative ion generator being disposed on the panel, and the negative ion carbon brush being disposed at the air outlet and electrically connected to the negative ion generator to eject the negative ions generated by the negative ion generator through the air outlet.

12. The bathroom heater according to any one of claims 1 to 3, characterized in that, The enclosure is provided with a hanger mounting position, and the enclosure is configured to be installed on a cement ceiling via a hanger provided at the hanger mounting position. The panel is configured to be snapped onto a plasterboard, and the panel is provided with a mounting spring on the side facing the enclosure, the mounting spring being used to abut against the plasterboard. Alternatively, the housing may be provided with a fixed bracket, which is configured to be attached to the keel of the integrated ceiling to support the housing, and the panel may be configured to be snapped into the keel.

Citation Information

Patent Citations

  • Bath heater

    CN220601603U