Novel tower type warmer

By designing detachable air outlet and storage components in a tower heater, combined with a simulated flame effect, a highly efficient and aesthetically pleasing heater has been achieved. This solves the problems of existing tower heaters, such as simple structure, limited functionality, and large space occupation, and improves the user experience.

CN223622987UActive Publication Date: 2025-12-02NINGBO CHUANSHI ELECTRICAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423248977.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-12-02
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

Existing tower heaters have a simple structure, limited functionality, large space requirements, and are not easy to move.

Method used

A heating assembly with detachable air outlet and storage components was designed. Combined with simulated flame effects, it provides efficient heating through a fan structure and heating elements, and enhances the visual experience by simulating flame effects through movable rods and light sources.

Benefits of technology

It provides efficient and even heating in a limited space, meets both decorative and practical needs, and is easy to disassemble and move.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223622987U_ABST
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Abstract

The utility model discloses a novel tower type warmer which comprises a heating assembly, an air outlet assembly is detachably arranged above the heating assembly, the air outlet assembly comprises an air outlet, the heating assembly comprises a first shell and a cover plate arranged on the first shell, a first air inlet groove is formed in the rear end of the first shell, and a second air inlet groove is formed in the rear end of the first shell. A simulation flame chamber and a heating chamber are arranged in the first shell, the heating chamber is arranged above the simulation flame chamber, the heating chamber and the simulation flame chamber are separated through a baffle, the first air inlet groove corresponds to the heating chamber, a fan structure is arranged in the heating chamber, and the first air inlet groove is communicated with the heating chamber. The fan structure is communicated with the air outlet assembly, a heating element is arranged in the fan structure, and a storage assembly is further arranged below the heating assembly. The heating device is compact in structure and rich in function, can provide an efficient and uniform heating effect in a limited space, and meets the requirements of decoration and practicability.
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Description

Technical Field

[0001] This utility model relates to the field of heater technology, and in particular to a novel tower heater. Background Technology

[0002] Tower heaters are upright indoor heating devices popular for their tall, slender design. They operate on various principles, such as rapidly heating with ceramic heating elements and then using a fan to blow hot air out, or using quartz tubes to generate infrared radiation to directly heat surrounding objects. Some tower heaters may also include an oil-filled radiator function to ensure a sustained heat supply. These devices are often equipped with timers, temperature control functions, and multiple heat settings, providing users with a safer and more flexible experience, making them an ideal choice for home heating in winter.

[0003] Existing tower heaters typically only have a single heating function, have a simple design, and take up a lot of space. They are not convenient enough in scenarios where frequent movement is required, increasing the burden on users. Utility Model Content

[0004] The technical problem to be solved by this utility model is to provide a new type of tower heater with a compact structure and rich functions, which can provide efficient and uniform heating effect in a limited space, while satisfying both decorative and practical needs.

[0005] To solve the above-mentioned technical problems, this utility model provides a novel tower heater, including a heating component, an air outlet component detachably mounted on top of the heating component, the air outlet component including an air outlet, the heating component including a first housing and a cover plate mounted on the first housing, a first air inlet slot at the rear end of the first housing, a simulated flame chamber and a heating chamber inside the first housing, the heating chamber being located above the simulated flame chamber, the heating chamber and the simulated flame chamber being separated by a baffle, the first air inlet slot being positioned corresponding to the heating chamber, a fan structure being mounted inside the heating chamber, the fan structure communicating with the air outlet component, a heating element being mounted inside the fan structure, and a storage component being mounted below the heating component.

[0006] The air outlet assembly includes a second housing, the air outlet is located at the front end of the second housing, a mesh cover is provided on the air outlet, a second air inlet groove is provided at the bottom end of the second housing, and the fan structure is connected to the second air inlet groove.

[0007] The storage assembly includes a third housing, which has a storage cavity for accommodating the second housing, and a storage slot on the third housing through which the second housing can pass.

[0008] A detachable connector is provided between the first housing and the second housing.

[0009] The first housing has a movable groove at its upper end, and an insert is provided in the movable groove. The second housing has a slot at its bottom end corresponding to the insert. The insert is connected to the first housing through a folding part. The insert can be folded along the folding part, and a slot is formed on one side of the folding part.

[0010] The inner wall of the fan structure surrounds and forms a volute cavity and an air duct. The rear end of the volute cavity is open and communicates with the heating chamber. The air duct communicates with the second air inlet slot. The end of the air duct away from the air outlet assembly communicates with the volute cavity. A fan wheel structure is provided inside the volute cavity. The heating element is located inside the air duct.

[0011] The second housing is provided with a first air guide plate, the upper end of the first air guide plate is inclined forward, and a second air guide plate is connected to the first air guide plate.

[0012] The first housing is equipped with a projection plate, the heating chamber and the simulated flame chamber are located behind the projection plate, and simulated charcoal is located in front of the projection plate.

[0013] The projection panel is provided with a flame-shaped light-transmitting groove.

[0014] The simulated flame chamber is equipped with a support frame, on which a movable rod is mounted. A drive motor is located on one side of the support frame, which drives the movable rod to rotate. A light source is located in front of the support frame, and a rotating reflector is mounted on the movable rod.

[0015] In use, the insert at the top of the first housing is folded upwards and inserted into the slot at the bottom of the second housing. The second housing is then pushed forward, causing one end of the slot to engage with the groove, thus mounting the second housing onto the first housing. When the device is started, the first air inlet at the rear of the first housing begins to draw in cold air. This air enters the heating chamber, where the fan structure rotates, driving the airflow to the air duct. The heating element within the duct rapidly heats the cold air. The air then passes through the second air inlet into the air outlet assembly. The second and first air guide plates guide the hot air to the air outlet, where it is expelled, quickly raising the indoor temperature. Simultaneously, the drive motor rotates the movable rod, and the light from the light source is reflected by a rotating reflector onto a flame-shaped light-transmitting groove on the projection panel, creating a light and shadow projection resembling a burning flame. Simulated charcoal serves as a foreground decoration, further enhancing the visual realism of the flame. When the device is not in use, the second housing can be stored in the storage cavity via the storage slot on the third housing, reducing space occupation and facilitating movement and storage.

[0016] The beneficial effects of this utility model are:

[0017] This utility model has a compact structure and rich functions, and can provide efficient and uniform heating in a limited space, while satisfying both decorative and practical needs.

[0018] This utility model is easy to assemble and disassemble, and provides a stable mounting structure for the motor. Through reasonable interference fit, the installation of the upper and lower end covers is simpler and more efficient.

[0019] This invention creates a warm visual experience for users and enhances the aesthetics and comfort of the home environment. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the structure of this utility model.

[0021] Figure 2 This is a cross-sectional view of the heating component of this utility model.

[0022] Figure 3 This is a schematic diagram of the heating component of this utility model.

[0023] Figure 4 This is a cross-sectional view of the air outlet component of this utility model with the mesh cover removed.

[0024] Figure 5 This is a top view of the first housing of this utility model.

[0025] Figure 6 This is a bottom view of the second housing of this utility model.

[0026] Figure 7 This is a schematic diagram of the projection panel of this utility model.

[0027] Figure 8 This is a structural schematic diagram of the air outlet component of this utility model.

[0028] In the diagram: 1. Heating component; 2. Air outlet component; 3. Air outlet; 4. First housing; 5. First air inlet slot; 6. Simulated flame chamber; 7. Heating chamber; 8. Fan structure; 9. Heating element; 10. Storage component; 11. Second housing; 12. Third housing; 13. Second air inlet slot; 14. Volute inner cavity; 15. Air duct; 16. Fan structure; 17. First air guide plate; 18. Second air guide plate; 19. Projection board; 20. Simulated charcoal; 21. Flame-shaped light-transmitting slot; 22. Support; 23. Movable rod; 24. Drive motor; 25. Light source; 26. Rotating reflector; 27. Movable slot; 28. Insert; 29. ​​Slot; 30. Folding part; 31. Slot; 32. Connector; 33. Storage cavity; 34. Storage slot; 35. Cover plate; 36. Mesh cover. Detailed Implementation

[0029] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.

[0030] according to Figures 1 to 6 As shown, this utility model discloses a novel tower heater, comprising a heating assembly 1, a detachable air outlet assembly 2 above the heating assembly 1, the air outlet assembly 2 including an air outlet 3, and a first housing 4 with a transparent cover 35. A first air inlet slot 5 is located at the rear end of the first housing 4 for introducing external air. The interior of the housing is divided into two functional areas: a lower simulated flame chamber 6 and an upper heating chamber 7. The simulated flame chamber 6 simulates a real flame effect, adding a decorative touch to the heater and creating a more comfortable home atmosphere. The heating chamber 7 is isolated from the simulated flame chamber 6 by a baffle and is connected to the first air inlet slot 5, ensuring that cold air can directly enter the heating area. A fan structure 8 is specially provided inside the heating chamber 7, with a heating element 9 inside, which quickly heats the cold air into warm air and delivers it to the air outlet assembly 2. Furthermore, a storage assembly 10 is located below the heating assembly 1, allowing users to conveniently store the air outlet assembly 2 for easy transport.

[0031] The air outlet assembly 2 includes a second housing 11, with an air outlet 3 located at the front end of the second housing 11. A mesh cover 36 is provided on the air outlet 3. A second air inlet groove 13 is located at the bottom of the second housing 11, communicating with the fan structure 8. The inner wall of the fan structure 8 forms a volute cavity 14 and an air duct 15. The volute cavity 14 communicates with the heating chamber 7 through a rear opening, allowing cold air to directly enter the volute cavity 14 from the heating chamber 7. The air duct 15 communicates with the second air inlet groove 13, and the end of the air duct 15 furthest from the air outlet assembly 2 communicates with the volute cavity 14. A fan structure 16 is located inside the volute cavity 14, which effectively drives airflow through high-speed rotation, delivering the air from the heating chamber 7 to the air outlet assembly 2. A heating element 9 is located inside the air duct 15, enabling rapid heating of the passing airflow.

[0032] The second housing 11 is provided with a first air guide plate 17, the upper end of which is inclined forward. A second air guide plate 18 is connected to the first air guide plate 17. The first air guide plate 17 has an angle of 70° with the horizontal direction, and the second air guide plate 18 has an angle of 10° with the horizontal direction. The first air guide plate 17 and the second air guide plate 18 work together to adjust the speed and direction of the airflow, thereby guiding the hot air to the air outlet 3.

[0033] The first housing 4 has a movable groove 27 at its upper end, and an insert 28 is provided in the movable groove 27. The second housing 11 has a slot 29 at its bottom end corresponding to the insert 28. The insert 28 is connected to the first housing 4 through a folding part 30. The insert 28 can be folded along the folding part 30. A slot 31 is formed on one side of the folding part 30.

[0034] according to Figure 7 As shown, the first housing 4 houses a projection panel 19. Behind the projection panel 19 are the heating chamber 7 and the simulated flame chamber 6. Simulated charcoal 20 is positioned in front of the projection panel 19; its realistic shape enhances the visual flame atmosphere, creating a warm home environment for the user when the heater is operating. Inside the simulated flame chamber 6, a bracket 22 is installed. A movable rod 23 is mounted on the bracket 22, and its rotation is driven by a drive motor 24 on one side of the bracket 22. Furthermore, a set of light sources 25 is installed in front of the bracket 22, providing a stable and bright light source for the projection. A rotating reflector 26 is mounted on the movable rod 23, which guides light to the flame-shaped light-transmitting grooves 21 on the projection panel 19 through its rotation, forming a flame image with realistic dynamic effects. The flame-shaped light-transmitting grooves 21 on the projection panel 19, in conjunction with the light sources 25 inside the simulated flame chamber 6, can present dynamic flame shapes through light and shadow effects, further enhancing the simulation effect.

[0035] according to Figure 8 As shown, the storage assembly 10 includes a third housing 12, which has a storage cavity 33 inside for accommodating the second housing 11. A storage slot 34 is provided on the third housing 12 to ensure that the second housing 11 can pass smoothly through and enter the storage cavity 33.

[0036] When using this utility model, the insert 28 at the upper end of the first housing 4 is folded upward and inserted into the slot 29 at the bottom of the second housing 11. Then, the second housing 11 is pushed forward so that one end of the slot 29 is engaged in the slot 31, and the second housing 11 is installed on the first housing 4. When the device is started, the first air inlet 5 at the rear end of the first housing 4 begins to draw in cold air. The air enters the heating chamber 7, and the impeller structure 16 in the fan structure 8 rotates to drive the air flow and send the air to the air duct 15. The heating element 9 in the air duct 15 quickly heats the cold air. Then, the air enters the air outlet assembly 2 through the second air inlet 13. The second air guide plate 18 and the first air guide plate 17 guide the hot air to the air outlet 3 and discharge it from the air outlet 3, quickly raising the indoor temperature. Simultaneously, the drive motor 24 rotates the movable rod 23, and the light generated by the light source 25 is reflected by the rotating reflector 26 onto the flame-shaped light-transmitting groove 21 on the projection plate 19, forming a light and shadow projection similar to a burning flame. The simulated charcoal 20 serves as a foreground decoration, further enhancing the visual realism of the flame. When the device is not in use, the second housing 11 can be inserted into the storage cavity 33 through the storage slot 34 on the third housing 12, reducing the space occupied and facilitating movement and storage.

[0037] The beneficial effects of this utility model are:

[0038] This utility model has a compact structure and rich functions, and can provide efficient and uniform heating in a limited space, while satisfying both decorative and practical needs.

[0039] This utility model is easy to assemble and disassemble, and provides a stable mounting structure for the motor. Through reasonable interference fit, the installation of the upper and lower end covers is simpler and more efficient.

[0040] This invention creates a warm visual experience for users and enhances the aesthetics and comfort of the home environment.

[0041] The above description is only a preferred embodiment of the present utility model. Therefore, all equivalent changes or modifications made to the structure, features and principles described in the claims of the present utility model patent application are included in the scope of the present utility model patent application.

Claims

1. A novel tower heater, comprising a heating element, characterized in that: The heating component is detachably equipped with an air outlet component, which includes an air outlet. The heating component includes a first housing and a cover plate on the first housing. The rear end of the first housing is provided with a first air inlet slot. The first housing is provided with a simulated flame chamber and a heating chamber. The heating chamber is located above the simulated flame chamber and is separated from the simulated flame chamber by a baffle. The first air inlet slot is provided corresponding to the heating chamber. The heating chamber is provided with a fan structure, which is connected to the air outlet component. The fan structure is provided with a heating element. A storage component is also provided below the heating component.

2. The novel tower heater according to claim 1, characterized in that: The air outlet assembly includes a second housing, the air outlet is located at the front end of the second housing, a mesh cover is provided on the air outlet, a second air inlet groove is provided at the bottom end of the second housing, and the fan structure is connected to the second air inlet groove.

3. A novel tower heater according to claim 1, characterized in that: The storage assembly includes a third housing, which has a storage cavity for accommodating the second housing, and a storage slot on the third housing through which the second housing can pass.

4. A novel tower heater according to claim 1, characterized in that: A detachable connector is provided between the first housing and the second housing.

5. A novel tower heater according to claim 2, characterized in that: The first housing has a movable groove at its upper end, and an insert is provided in the movable groove. The second housing has a slot at its bottom end corresponding to the insert. The insert is connected to the first housing through a folding part. The insert can be folded along the folding part, and a slot is formed on one side of the folding part.

6. A novel tower heater according to claim 2, characterized in that: The inner wall of the fan structure surrounds and forms a volute cavity and an air duct. The rear end of the volute cavity is open and communicates with the heating chamber. The air duct communicates with the second air inlet slot. The end of the air duct away from the air outlet assembly communicates with the volute cavity. A fan wheel structure is provided inside the volute cavity. The heating element is located inside the air duct.

7. A novel tower heater according to claim 2, characterized in that: The second housing is provided with a first air guide plate, the upper end of the first air guide plate is inclined forward, and a second air guide plate is connected to the first air guide plate.

8. A novel tower heater according to claim 1, characterized in that: The first housing is equipped with a projection plate, the heating chamber and the simulated flame chamber are located behind the projection plate, and simulated charcoal is located in front of the projection plate.

9. A novel tower heater according to claim 8, characterized in that: The projection panel is provided with a flame-shaped light-transmitting groove.

10. A novel tower heater according to claim 1, characterized in that: The simulated flame chamber is equipped with a support frame, on which a movable rod is mounted. A drive motor is located on one side of the support frame, driving the movable rod to rotate. A light source is located in front of the support frame, and a rotating reflector is mounted on the movable rod.