Modularized heating tea table
By combining modular design with a temperature control device, and independently setting up a heating module and a simulated flame module, the problem of excessively high temperatures caused by the coffee table heating device is solved, and a safe and reliable heating function is achieved.
Patent Information
- Application Number
- CN202423212233.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-25
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2034-12-25
AI Technical Summary
The existing coffee table's heating device causes the tabletop to overheat, affecting the use of electronic devices.
The modular design separates the heating module from the simulated flame module. Only the heating module generates heat, and the heat distribution is controlled by a temperature control device to prevent heat from being transferred to the platform and base.
Temperature control of the tabletop and base plate was achieved, ensuring the normal operation of electronic devices and the independent function of modules, thus enhancing the practicality and safety of the coffee table.
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Figure CN223614383U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of furniture, and more particularly to a modular heated coffee table. Background Technology
[0002] A coffee table typically consists of a tabletop and legs. Sometimes, a shelf is installed under the tabletop. Although there are many styles of coffee tables available, they generally only focus on storage and decorative style, resulting in a relatively simple function that cannot meet people's diverse needs.
[0003] Chinese utility model patent CN201360709Y discloses a multifunctional coffee table, including a table body with a tabletop and legs; a heating device with simulated flames is installed under the tabletop. This utility model adds a heating function to the coffee table, beyond its original functions of placing items and decoration; the simulated flames also further enhance the decorative effect, increasing the coffee table's aesthetic appeal, interest, and practicality.
[0004] However, the heating element in this coffee table heats the entire table, resulting in a high temperature on the tabletop. Since the tabletop is usually used to place electronic devices such as remote controls, the heat will affect the operation of these devices. Utility Model Content
[0005] To address the aforementioned problems in the prior art, this invention provides a modular heated coffee table.
[0006] The above-mentioned problems of this utility model are solved by the following technical solution:
[0007] A modular heated coffee table includes an independently arranged tabletop, support legs on both sides below the tabletop, a simulated flame module and a heating module located between the support legs and below the tabletop; the support legs, simulated flame module and heating module are fixed by a back panel; the middle part of the support legs is provided with a mounting groove, and the simulated flame module and heating module are sequentially embedded into the mounting groove, leaving a storage space between the simulated flame module and the tabletop, and leaving a clearance space between the heating module and the bottom surface.
[0008] A further configuration of the above technical solution is as follows: the heating module includes a bottom shell with openings at the top and back, and an air outlet is provided on the front end face of the bottom shell; an airflow drive component and a heating component are arranged inside the bottom shell along the air outlet direction; a temperature control device is provided above the heating component.
[0009] A further provision of the above technical solution is that the temperature control device includes a temperature sensing sheet, which can come into contact with the hot airflow generated by the heating component, causing deformation, and the two contacts of the temperature control device disconnect.
[0010] A further configuration of the above technical solution is as follows: the upper contact and the lower contact on the temperature control device are arranged vertically, and the lower contact is arranged on the conductive sheet; the temperature sensing sheet is arranged above the conductive sheet, and one end of it is fixed to the main body of the temperature control device.
[0011] A further provision of the above technical solution is that the heating assembly includes an upper baffle, a lower baffle, and a heating element disposed between the upper baffle and the lower baffle;
[0012] The upper baffle is provided with a temperature measuring hole, and the temperature sensing element is located above the temperature measuring hole.
[0013] A further provision of the above technical solution is that a guide plate is provided on the upper baffle, the guide plate is fixed to the upstream end of the airflow on the upper baffle, and extends to the top of the upper baffle in an inclined direction.
[0014] A further provision of the above technical solution is that the simulated flame module includes a shell with openings on both the front and rear ends, and the bottom of the shell seals the upper opening of the bottom shell.
[0015] The bottom of the base shell and the lower part of the back plate are provided with a second air inlet and a first air inlet that are connected to the airflow drive assembly.
[0016] A further setting of the above technical solution is: the airflow drive assembly includes an airflow drive housing and a cross-flow fan located inside the airflow drive housing, and an air inlet groove is formed between the upper end of the airflow drive housing and the bottom housing;
[0017] An air outlet groove is formed on the side of the airflow drive housing opposite to the air inlet groove, and the guide plate is located at the part of the air outlet groove.
[0018] A further feature of the above technical solution is that an air outlet grille is provided on the front end face of the bottom shell.
[0019] A further provision of the above technical solution is that a heightening block is provided between the platform and the support leg.
[0020] Compared with the prior art, the beneficial effects of this utility model are as follows: each module of the coffee table is set independently, and only the heating module generates heat. Furthermore, the heating module is far away from the tabletop, so that the temperature is not easily transferred to the tabletop, and the tabletop can be used normally for placing items. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0022] Figure 2 This is a schematic diagram of the back structure of this utility model.
[0023] Figure 3 This is an exploded structural diagram of the simulated flame module and heating module.
[0024] Figure 4 This is a schematic diagram of the heating component.
[0025] Figure 5 This is a cross-sectional structural diagram of the temperature control device.
[0026] Figure 6 This is a cross-sectional structural diagram of the heating module.
[0027] The attached diagram is labeled: 100, tabletop;
[0028] 200. Supporting leg;
[0029] 300. Simulated flame module; 310. Housing;
[0030] 400. Heating module; 440. Bottom shell; 441. Air outlet; 410. Airflow drive assembly; 420. Heating assembly; 430. Air outlet grille; 423. Temperature control device; 423.1. Upper contact; 423.2. Lower contact; 423.3. Temperature sensing element; 423.4. Conductive element; 421. Upper baffle; 422. Lower baffle; 424. Heating element; 421.1. Temperature measuring hole; 442. Second air inlet; 412. Air inlet slot; 411. Air outlet slot; 425. Deflector plate;
[0031] 500, heightened blocks;
[0032] 600. Back panel; 601. First air inlet;
[0033] a. Avoidance space; b. Storage space. Detailed Implementation
[0034] To further illustrate the technical means and effects adopted by this utility model in order to achieve the intended utility model purpose, the following detailed description of the specific implementation methods, structure, features and effects of this utility model is provided in conjunction with the accompanying drawings and preferred embodiments.
[0035] like Figure 1-6 As shown, this embodiment discloses a modular heated coffee table.
[0036] A modular heated coffee table includes an independently arranged tabletop 100, support legs 200 located on both sides below the tabletop 100, a simulated flame module 300 and a heating module 400 located between the support legs 200 and below the tabletop; the support legs 200, the simulated flame module 300 and the heating module 400 are fixed by a back panel 600; the middle part of the support legs 200 is provided with a mounting groove, and the simulated flame module 300 and the heating module 400 are sequentially embedded into the mounting groove, so that a storage space b is left between the simulated flame module 300 and the tabletop 100, and an clearance space a is left between the heating module 400 and the bottom surface.
[0037] The above is the basic scheme of this embodiment.
[0038] Specific reference Figure 1 and Figure 2 As shown, the platform 100 is located at the top, and the support legs 200 are located below the platform 100 and on both sides of the bottom of the platform 100. There is an installation space between the two support legs 200. At the same time, in order to securely assemble, there are mounting grooves on the opposite surfaces of the two support legs 200. The simulated flame module 300 and the heating module 400 are arranged vertically to form a whole, and the two sides of the whole are embedded into the mounting grooves. In this way, the simulated flame module 300 and the heating module 400 are clamped between the two support legs 200.
[0039] Furthermore, since the mounting slot is located in the middle of the support leg 200, a storage space b is left between the simulated flame module 300 and the upper platform 100, which can hold commonly used items such as remote control and tissues; an clearance space a is also left between the heating module 400 and the bottom surface, so that consumers can put their feet into the clearance space a and bring their legs closer to the air outlet of the heating module 400.
[0040] In this embodiment, only the heating module 400 generates heat, and the simulated flame module 300 and the storage space b are separated between the heating module 400 and the table 100. Therefore, the heat from the heating module 400 cannot be transferred to the table 100, and the table 100 can be used to place items normally. At the same time, due to the setting of the clearance space a, the heat from the heating module 400 will not be directly transferred to the bottom plate, and the floor will not be damaged by heat.
[0041] Furthermore, in order to further keep the platform 100 away from the heat source, in this embodiment, a heightening block 500 is provided between the platform 100 and the support leg 200.
[0042] Specific reference Figure 2As shown, in this embodiment, the back panel 600 is an integral fixed plate. The backs of the support legs 200 on both sides, the flame simulation module, and the heating module 400 are all fixed on the back panel 600, thereby combining and fixing the various modules together to form a complete coffee table, which is convenient to move.
[0043] In this embodiment, the heating module 400 includes a bottom shell 440 with openings on the top and back, and an air outlet 441 is provided on the front end surface of the bottom shell 440; an airflow drive component 410 and a heating component 420 are arranged inside the bottom shell 440 along the air outlet direction; a temperature control device 423 is provided above the heating component 420.
[0044] Specific reference Figure 2 and Figure 3 As shown, a first air inlet 601 is provided on the back panel 600 at the part corresponding to the heating module 400. The first air inlet 601 is connected to the inside of the bottom shell 440. External air enters the bottom shell 440 through the first air inlet 601, and after passing through the airflow drive component 410 and the heating component 420 in sequence, hot air is blown out from the air outlet 441.
[0045] Based on the above settings, in this embodiment, the hot air is blown out towards the front of the coffee table, without affecting the temperature of the coffee table's tabletop 100 or its supporting legs, thus ensuring the usability of other modules.
[0046] The temperature control component is located above the heating component 420 and controls the temperature of the hot air generated by the heating component 420.
[0047] Based on the above settings, the part with the highest temperature inside the heating component 420 is the interior of the heating component 420. Furthermore, due to the movement of airflow, the internal temperature of the heating component 420 is also the most sensitive to changes. Therefore, the temperature control device 423 is placed above the heating component 420 to detect the outer periphery temperature of the hot air generated by the heating component 420, so as to avoid the circuit being damaged due to frequent switching on and off caused by excessively rapid temperature changes.
[0048] In this embodiment, an air outlet grille 430 is provided on the front end surface of the bottom shell 440.
[0049] The position of the air outlet grille 430 corresponds to the position of the air outlet 441. The hot air output from the air outlet 441 is blown out in multiple streams through the air outlet grille 430.
[0050] Specifically, in this embodiment, the temperature control device 423 includes a temperature sensing sheet 423.3, which can come into contact with the hot airflow generated by the heating component 420 and deform, causing the two contacts of the temperature control device 423 to disconnect.
[0051] Preferably, in this embodiment, the temperature sensing sheet 423.3 is a metal sheet that is easily deformed by heat.
[0052] The upper contact 423.1 and the lower contact 423.2 on the temperature control device 423 are arranged vertically, and the lower contact 423.2 is disposed on the conductive sheet 423.4; the temperature sensing sheet 423.3 is disposed above the conductive sheet 423.4, and one end of it is fixed to the main body of the temperature control device 423.
[0053] Specific reference Figure 4 and Figure 5 As shown, one end of the temperature sensing element 423.3 is fixed to the main body of the temperature control device 423. At room temperature, the temperature sensing element 423.3 has little or no bending. At this time, the lower contact 423.2 on the conductive sheet 423.4 contacts the upper contact 423.1 of the circuit, and the circuit is connected.
[0054] When the temperature of the hot air generated by the heating component 420 is too high, the temperature sensing element 423.3 deforms due to heat, and the middle part bends downward, pushing the conductive element 423.4 downward. This causes the lower contact 423.2 on the conductive element 423.4 to separate from the upper contact 423.1, and the circuit is broken.
[0055] In this embodiment, the heating assembly 420 includes an upper baffle 421, a lower baffle 422, and a heating element 424 disposed between the upper baffle 421 and the lower baffle 422;
[0056] The upper baffle 421 is provided with a temperature measuring hole 421.1, and the temperature sensing element 423.3 is located above the temperature measuring hole 421.1.
[0057] Most of the hot air generated by the heating component 420 is blocked between the upper baffle 421 and the lower baffle 422, which prevents the temperature control device 423 from being damaged by heat, leaving only the space for the temperature measuring hole 421.1 to be heated by the temperature sensing element 423.3.
[0058] Meanwhile, in order to avoid the cold air from affecting the temperature control device 423, in this embodiment, a guide plate 425 is provided on the upper baffle 421. The guide plate 425 is fixed to the upstream end of the airflow on the upper baffle 421 and extends to the top of the upper baffle 421 in an inclined direction.
[0059] Preferably, the upper end of the guide plate 425 is not lower than the temperature control device 423.
[0060] The airflow drive assembly 410 drives the internal airflow to form cold air, which is then input into the heating assembly 420. During the input process, because the openings of the heating assembly 420 and the airflow drive assembly 410 are not closed, some of the cold air moves upward toward the heating assembly 420, causing the temperature control device 423 to cool down. At this time, the temperature sensing plate 423.3 can come into contact with both the hot air below and the cold air above, resulting in inaccurate temperature sensing. Therefore, a deflector plate 425 is provided to guide the cold air blown upward toward the heating assembly 420 to the top of the temperature control device 423, thus preventing it from directly contacting the temperature control device 423 and allowing the temperature sensing plate 423.3 to properly sense the temperature of the hot air.
[0061] In this embodiment, the simulated flame module 300 includes a housing 310 with openings on both the front and rear ends, and the bottom of the housing 310 seals the upper opening of the bottom shell 440.
[0062] The bottom of the bottom shell 440 and the lower part of the back plate 600 are provided with a second air inlet 442 and a first air inlet 601 that are connected to the airflow drive assembly 410.
[0063] Based on the above settings, in this embodiment, the air inlet is only located at the position of the heating module 400, without affecting the simulated flame module 300. At the same time, the simulated flame module 300 and the heating module 400 are isolated by the outer shell 310. In other words, the simulated flame module 300 is basically not heated, thus ensuring that the interior of the simulated flame module 300 is in a normal operating state.
[0064] In this embodiment, the simulated flame module 300 is the same as the simulated flame device in the prior art, and its usage and effect are also the same, so it will not be described in detail here.
[0065] In this embodiment, the airflow drive assembly 410 includes an airflow drive housing and a cross-flow fan located inside the airflow drive housing. An air inlet slot 412 is formed between the upper end of the airflow drive housing and the bottom housing 440.
[0066] An air outlet slot 411 is formed on the side of the airflow drive housing opposite to the air inlet slot 412, and the guide plate 425 is located at the part of the air outlet slot 411.
[0067] Specific reference Figure 6 As shown, in this embodiment, the airflow drive housing and the cross-flow fan have the same structure as in the prior art, and the airflow movement direction is also the same; the airflow enters from one side of the cross-flow fan blades and is blown out to the other side as the blades move.
[0068] In this embodiment, the vertical width of the air outlet slot 411 is greater than the distance between the upper baffle and the lower baffle in the heating assembly 420. Therefore, the guide plate 425 is needed to guide the airflow above the air outlet slot 411 so that this part of the airflow moves above the temperature control device 423, thereby reducing the temperature impact on the temperature control device 423.
[0069] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any way. Although the present utility model has been disclosed above with reference to a preferred embodiment, it is not intended to limit the present utility model. Any person skilled in the art can make some modifications or alterations to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present utility model. Any simple modifications, equivalent changes and alterations made to the above embodiments based on the technical essence of the present utility model without departing from the scope of the present utility model shall still fall within the scope of the present utility model.
Claims
1. A modular heated coffee table, characterized in that: The device includes an independently arranged platform (100), support legs (200) located on both sides below the platform (100), a simulated flame module (300) and a heating module (400) located between the support legs (200) and below the platform. The support legs (200), the simulated flame module (300) and the heating module (400) are fixed by a back plate (600). The middle part of the support legs (200) is provided with an installation groove, and the simulated flame module (300) and the heating module (400) are sequentially embedded into the installation groove, so that a storage space (b) is left between the simulated flame module (300) and the platform (100), and a clearance space (a) is left between the heating module (400) and the bottom surface.
2. The modular heated coffee table according to claim 1, characterized in that: The heating module (400) includes a bottom shell (440) with openings on the top and back, and an air outlet (441) is provided on the front end face of the bottom shell (440); an airflow drive component (410) and a heating component (420) are provided inside the bottom shell (440) along the air outlet direction; a temperature control device (423) is provided above the heating component (420).
3. The modular heated coffee table according to claim 2, characterized in that: The temperature control device (423) includes a temperature sensing plate (423.3), which can come into contact with the hot airflow generated by the heating component (420) and deform, causing the two contacts of the temperature control device (423) to disconnect.
4. The modular heated coffee table according to claim 3, characterized in that: The upper contact (423.1) and lower contact (423.2) on the temperature control device (423) are arranged vertically, and the lower contact (423.2) is arranged on the conductive sheet (423.4); the temperature sensing sheet (423.3) is arranged above the conductive sheet (423.4), and one end of it is fixed to the body of the temperature control device (423).
5. The modular heated coffee table according to claim 3, characterized in that: The heating assembly (420) includes an upper baffle (421), a lower baffle (422), and a heating element (424) disposed between the upper baffle (421) and the lower baffle (422); The upper baffle (421) is provided with a temperature measuring hole (421.1), and the temperature sensing element (423.3) is located above the temperature measuring hole (421.1).
6. The modular heating coffee table according to claim 5, characterized in that: A guide plate (425) is provided on the upper baffle (421). The guide plate (425) is fixed to the upstream end of the airflow on the upper baffle (421) and extends to the top of the upper baffle (421) in an inclined direction.
7. The modular heated coffee table according to claim 2, characterized in that: The simulated flame module (300) includes a shell (310) with openings on both the front and rear ends, and the bottom of the shell (310) seals the upper opening of the bottom shell (440). The bottom of the bottom shell (440) and the lower part of the back plate (600) are provided with a second air inlet (442) and a first air inlet (601) that communicate with the airflow drive assembly (410).
8. The modular heated coffee table according to claim 6, characterized in that: The airflow drive assembly (410) includes an airflow drive housing and a cross-flow fan located inside the airflow drive housing. An air inlet slot (412) is formed between the upper end of the airflow drive housing and the bottom housing (440). An air outlet groove (411) is formed on the side of the airflow drive housing opposite to the air inlet groove (412), and the guide plate is located at the part of the air outlet groove (411).
9. The modular heated coffee table according to claim 2, characterized in that: An air outlet grille (430) is provided on the front end face of the bottom shell (440).
10. The modular heated coffee table according to claim 1, characterized in that: A heightening block (500) is provided between the platform (100) and the support leg (200).
Citation Information
Patent Citations
Multifunctional tea table
CN201360709Y