Heat insulation aroma burner
By using an insulated silicone frame and support structure in the aromatherapy diffuser, combined with an electric heating element and a thermostat, the problems of burns and heat loss caused by rapid heat conduction in existing aromatherapy diffusers are solved, achieving safe and efficient heating of aromatherapy products.
Patent Information
- Application Number
- CN202422764058.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-13
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2034-11-13
AI Technical Summary
Existing aromatherapy burners are prone to scalding users due to rapid heat conduction and significant heat loss. They also pose a risk of producing dense smoke and fire during combustion.
It adopts a heat-insulating silicone frame and support structure, keeping the pot body and the furnace body at a distance. Combined with electric heating element heating and temperature controller, the heat transfer to the furnace body is reduced through heat insulation material and temperature controller, avoiding burns and fires.
It effectively isolates the heat transfer between the pot body and the furnace body, reducing the risk of burns, minimizing heat loss, reducing the possibility of dense smoke and fire, and improving heating efficiency and safety.
Smart Images

Figure CN223542218U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of aromatherapy diffusers, and in particular relates to a heat-insulated aromatherapy diffuser. Background Technology
[0002] An aromatherapy burner is a device used to burn or heat incense and release its fragrance. It not only serves a decorative purpose but also improves the odor of the environment. Therefore, aromatherapy burners have a variety of uses, such as adding fragrance to a room, scenting clothes, serving as decoration, or for religious offerings. Currently, most aromatherapy burners are made of a single piece of ceramic. Therefore, the heat from burning or heating the incense is quickly conducted to the burner body, which can easily cause burns to the user and results in significant heat loss. Utility Model Content
[0003] The purpose of this utility model is to provide a heat-insulated aromatherapy diffuser to solve the technical problems described in the background art.
[0004] The heat-insulated aromatherapy diffuser includes a diffuser body with an opening at the top. A heat-insulating silicone frame is installed around the opening, and a pot for placing aromatherapy items is hung on the heat-insulating silicone frame. The pot is kept at a distance from the inner wall of the diffuser body. A bracket located inside the diffuser body and kept at a distance from the inner wall of the diffuser body is installed on the heat-insulating silicone frame. A heat source for heating the pot is installed on the bracket.
[0005] According to the described technical solution, the present invention achieves the following beneficial effects:
[0006] 1. When the heat source heats the pot body to release the aroma of the incense inside the pot, the pot body is fixed to the furnace body by hanging on the heat-insulating silicone frame. Therefore, there is heat-insulating silicone between the pot body and the furnace body. At the same time, there is also a distance between the interior of the pot body and the furnace body. Thus, the heat-insulating silicone prevents the pot body from transferring heat to the furnace body, avoiding the furnace body from easily burning the user, and also preventing the furnace body from dissipating the heat of the pot body and causing heat loss.
[0007] 2. When the heat source heats the pot, the bracket used to fix the heat source to the bottom of the pot is installed in the furnace body through a heat-insulating silicone frame. At the same time, there is a distance between the bracket and the inner wall of the furnace body. Therefore, the heat-insulating silicone can block the heat source and the bracket from transferring heat to the furnace body, preventing the furnace body from easily burning the user, and also preventing the furnace body from dissipating the heat of the pot body and causing heat loss.
[0008] 3. Since the heat source generates heat inside the furnace, and the heating element transfers the heat from the heat source to the aromatherapy materials through the pot body, rather than heating the aromatherapy materials by directly burning them, the production of dense smoke during the heating of the aromatherapy materials to release their fragrance can be reduced, thus protecting the environment.
[0009] 4. The heat source is located inside the furnace and generates heat without directly contacting the aromatherapy ingredients. Therefore, it can effectively reduce the possibility of the furnace tipping over and causing a fire.
[0010] To further optimize the above technical solutions, they can be combined with one or more of the following implementation methods without conflict.
[0011] In some embodiments, the heat source is an electric heating element, a temperature controller is installed on the bracket, a power supply assembly and a PCB control board are installed inside the furnace, the PCB control board is electrically connected to the heat source, the temperature controller and the power supply assembly, and a control switch is installed on the PCB control board;
[0012] According to the described technical solution, the present invention will further achieve the following beneficial effects:
[0013] 1. Compared to the traditional method of heating aromatherapy items by burning flames, using an electric heating element to heat aromatherapy items can effectively prevent the stove from tipping over and causing a fire;
[0014] 2. The thermostat is designed to control the heat output of the heat source, thereby preventing scorching and burning inside the tray;
[0015] 3. By controlling the heating source through the thermostat, it is possible to effectively prevent the tray, support and heating source from overheating and forcibly transferring heat to the furnace body, which could cause damage and burns to the user.
[0016] In some embodiments, the bracket is equipped with a pressure plate for attaching the heat source to the pot body;
[0017] According to the described technical solution, the present invention achieves the following beneficial effects:
[0018] 1. Ensure the heating source is in close contact with the pot body, thereby enabling the heating source to transfer heat to the pan more efficiently;
[0019] 2. During the process of heat transfer from the heat source to the pot body, heat loss can be reduced.
[0020] In some embodiments, the heat source and the bracket are isolated by heat insulation cotton;
[0021] According to the described technical solution, the present invention achieves the following beneficial effects:
[0022] 1. It can effectively reduce the transfer of heat from the heat source to the support, thereby better preventing the heat source from transferring heat to the furnace body and causing easy burns to users;
[0023] 2. The heat source can be kept warm by using heat insulation cotton, thereby improving the heat utilization rate when the heat source heats the pot body.
[0024] In some embodiments, the bottom plate of the furnace body is provided with a bottom cover, and the bottom cover is provided with vent holes;
[0025] According to the technical solution, during the heating of the pot body by the heat source, the interior of the furnace body can dissipate heat through the vents, thereby reducing the transfer of heat from the heat source, support, and tray to the furnace body through the air.
[0026] In some embodiments, the furnace body is provided with a furnace cover for covering the pot body, the furnace cover not contacting the pot body, and the furnace cover is provided with a vent and a lifting ring;
[0027] According to the described technical solution, the present invention further achieves the following beneficial effects:
[0028] 1. Since the stove lid covers the pot body and does not contact the pot body, it can prevent the user from accidentally touching the pot body and getting burned while the heat source is heating the pot body.
[0029] 2. The lifting ring makes it easy for users to lift or lower the furnace lid.
[0030] In some embodiments, the furnace body is provided with a partition wall that is kept at a distance from the inner wall of the furnace body, the partition wall surrounds a heat insulation cavity, and the bracket is installed in the heat insulation cavity and kept at a distance from the partition wall;
[0031] According to the technical solution, while the heat source heats the pot body, the partition wall can prevent the heat from the heat source, the support and the pot body from being transferred to the furnace body through the air. Attached Figure Description
[0032] To more clearly illustrate the specific embodiments of this utility model, the following will briefly explain the drawings and reference numerals used in the description of the specific embodiments.
[0033] Figure 1 This is a schematic diagram of the structure of this utility model;
[0034] Figure 2 This is a cross-sectional view of Example 1;
[0035] Figure 3 These are exploded views of Examples 1 and 2;
[0036] Figure 4 This is a cross-sectional view of Example 2.
[0037] Figure label:
[0038] 1. Furnace body; 11. Opening; 2. Insulating silicone frame; 3. Pot body; 4. Support; 41. Heating source; 42. Thermostat; 43. Pressure plate; 44. Insulating cotton; 5. PCB control board; 51. Power supply assembly; 52. Control switch; 6. Bottom cover; 61. Vent hole; 7. Furnace lid; 71. Dissipation hole; 72. Lifting ring; 8. Partition wall; 81. Insulation cavity. Detailed Implementation
[0039] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings.
[0040] Example 1
[0041] like Figures 1 to 3 As shown, this embodiment provides a heat-insulated aromatherapy diffuser, which includes a diffuser body 1. The bottom plate of the diffuser body 1 is provided with a bottom cover 6, and the bottom cover 6 is provided with ventilation holes 61.
[0042] The top of the furnace body 1 is provided with an opening 11, and a heat-insulating silicone frame 2 is installed around the opening 11. A pot body 3 for placing aromatherapy items is hung on the heat-insulating silicone frame 2, and the pot body 3 is kept at a distance from the inner wall of the furnace body 1.
[0043] The furnace body 1 is provided with a furnace cover 7 for covering the pot body 3. The furnace cover 7 does not contact the pot body 3. The furnace cover 7 is provided with a vent 71 and a lifting ring 72.
[0044] A bracket 4 is installed on the heat-insulating silicone frame 2, located inside the furnace body 1 and maintaining a distance from the inner wall of the furnace body 1. The heat source 41 is an electric heating element, which can be a resistance heating element or an electromagnetic heating element. The bracket 4 is equipped with a heat source 41 for heating the pot body 3. The bracket 4 is also equipped with a pressure plate 43 for attaching the heat source 41 to the pot body 3. The heat source 41 and the bracket 4 are isolated by heat-insulating cotton 44. A thermostat 42 is installed on the bracket 4. The thermostat 42 is used to monitor the temperature of the surrounding space and surrounding components. The thermostat 42 can be an electronic thermometer.
[0045] The furnace body 1 is equipped with a power supply component 51 and a PCB control board 5. The power supply component 51 can be a USB interface or a battery component that is connected to an external cable. The PCB control board 5 is electrically connected to the heat source 41, the temperature controller 42 and the power supply component 51. The PCB control board 5 is equipped with a control switch 52.
[0046] The following is a description of the operation of the heat-insulated aromatherapy diffuser described in this embodiment.
[0047] After the aromatherapy ingredients are placed inside the pot body 3, the stove lid 7 is placed over the pot body 3. Then, the control switch 52 inputs an operation command to the PCB control board 5, and the PCB control board 5 supplies power to the heat source 41. The heat emitted by the heat source 41 is transferred to the pot body 3, thereby heating the aromatherapy ingredients inside the pot body 3. At this time, the aromatherapy ingredients release a fragrant aroma, which is then diffused into the surrounding air from the vent 71 on the stove lid 7.
[0048] During the heat transfer process from the heat source 41 to the pot body 3, the temperature controller 42 monitors the temperature of the surrounding space and surrounding components to adjust and limit the power of the heat source 41.
[0049] During the heat transfer process from the heat source 41 to the pot body 3, the heat-insulating silicone prevents the pot body 3 from transferring heat to the furnace body 1.
[0050] During the heat transfer from the heat source 41 to the pot body 3, the interior of the furnace body 1 can dissipate heat through the vent 61, thereby reducing the transfer of heat from the heat source 41, the support 4, and the tray to the furnace body 1 through the air.
[0051] During the heating period, the heat source 41 is kept warm by the heat insulation cotton 44. At the same time, the heat insulation cotton 44 prevents the heat source 41 from transferring heat to the support 4, and the heat insulation silicone blocks the support 4 from transferring heat to the furnace body 1.
[0052] Example 2
[0053] like Figure 1 , 3 As shown in Figure 4, this embodiment provides a heat-insulated aromatherapy diffuser, which includes a diffuser body 1. The bottom plate of the diffuser body 1 is provided with a bottom cover 6, and the bottom cover 6 is provided with ventilation holes 61.
[0054] The top of the furnace body 1 is provided with an opening 11, and a heat-insulating silicone frame 2 is installed around the opening 11. A pot body 3 for placing aromatherapy items is hung on the heat-insulating silicone frame 2, and the pot body 3 is kept at a distance from the inner wall of the furnace body 1.
[0055] The furnace body 1 is provided with a furnace cover 7 for covering the pot body 3. The furnace cover 7 does not contact the pot body 3. The furnace cover 7 is provided with a vent 71 and a lifting ring 72.
[0056] A bracket 4 is installed on the heat-insulating silicone frame 2, located inside the furnace body 1 and maintaining a distance from the inner wall of the furnace body 1. The heat source 41 is an electric heating element, which can be a resistance heating element or an electromagnetic heating element. The bracket 4 is equipped with a heat source 41 for heating the pot body 3. The bracket 4 is also equipped with a pressure plate 43 for attaching the heat source 41 to the pot body 3. The heat source 41 and the bracket 4 are isolated by heat-insulating cotton 44. A thermostat 42 is installed on the bracket 4. The thermostat 42 is used to monitor the temperature of the surrounding space and surrounding components. The thermostat 42 can be an electronic thermometer.
[0057] The furnace body 1 is provided with a partition wall 8 that is at a distance from the inner wall of the furnace body 1. The partition wall 8 surrounds a heat insulation cavity 81. The bracket 4 is installed in the heat insulation cavity 81 and is at a distance from the partition wall 8.
[0058] The furnace body 1 is equipped with a power supply component 51 and a PCB control board 5. The power supply component 51 can be a USB interface or a battery component that is connected to an external cable. The PCB control board 5 is electrically connected to the heat source 41, the temperature controller 42 and the power supply component 51. The PCB control board 5 is equipped with a control switch 52.
[0059] The following is a description of the operation of the heat-insulated aromatherapy diffuser described in this embodiment.
[0060] After the aromatherapy ingredients are placed inside the pot body 3, the stove lid 7 is placed over the pot body 3. Then, the control switch 52 inputs an operation command to the PCB control board 5, and the PCB control board 5 supplies power to the heat source 41. The heat emitted by the heat source 41 is transferred to the pot body 3, thereby heating the aromatherapy ingredients inside the pot body 3. At this time, the aromatherapy ingredients release a fragrant aroma, which is then diffused into the surrounding air from the vent 71 on the stove lid 7.
[0061] During the heat transfer process from the heat source 41 to the pot body 3, the temperature controller 42 monitors the temperature of the surrounding space and surrounding components to adjust and limit the power of the heat source 41.
[0062] During the heat transfer process from the heat source 41 to the pot body 3, the heat-insulating silicone prevents the pot body 3 from transferring heat to the furnace body 1.
[0063] While the heat source 41 heats the pot body 3, the partition wall 8 can prevent the heat from the heat source 41, the support 4 and the pot body 3 from being transferred to the furnace body 1 through the air.
[0064] During the heat transfer from the heat source 41 to the pot body 3, the interior of the furnace body 1 can dissipate heat through the vent 61, thereby reducing the transfer of heat from the heat source 41, the support 4, and the tray to the furnace body 1 through the air.
[0065] During the heating period, the heat source 41 is kept warm by the heat insulation cotton 44. At the same time, the heat insulation cotton 44 prevents the heat source 41 from transferring heat to the support 4, and the heat insulation silicone blocks the support 4 from transferring heat to the furnace body 1.
Claims
1. A heat-insulated aromatherapy diffuser, comprising a diffuser body (1), characterized in that: The furnace body (1) has an opening (11) at the top. A heat-insulating silicone frame (2) is installed around the opening (11). A pot (3) for placing aromatherapy items is hung on the heat-insulating silicone frame (2). The pot (3) is kept at a distance from the inner wall of the furnace body (1). A bracket (4) is installed on the heat-insulating silicone frame (2) inside the furnace body (1) and at a distance from the inner wall of the furnace body (1). A heat source (41) for heating the pot (3) is installed on the bracket (4).
2. The heat-insulating aromatherapy diffuser according to claim 1, characterized in that: The heat source (41) is an electric heating element. A temperature controller (42) is installed on the bracket (4). A power supply assembly (51) and a PCB control board (5) are installed inside the furnace body (1). The PCB control board (5) is electrically connected to the heat source (41), the temperature controller (42), and the power supply assembly (51). A control switch (52) is installed on the PCB control board (5).
3. The heat-insulating aromatherapy diffuser according to claim 2, characterized in that: The bracket (4) is equipped with a pressure plate (43) for attaching the heat source (41) to the pot body (3).
4. A heat-insulating aromatherapy diffuser according to claim 3, characterized in that: The heat source (41) is isolated from the bracket (4) by heat insulation cotton (44).
5. A heat-insulating aromatherapy diffuser according to claim 1, characterized in that: The bottom plate of the furnace body (1) is provided with a bottom cover (6), and the bottom cover (6) is provided with a vent hole (61).
6. A heat-insulating aromatherapy diffuser according to claim 1, characterized in that: The furnace body (1) is provided with a furnace cover (7) for covering the pot body (3). The furnace cover (7) does not contact the pot body (3). The furnace cover (7) is provided with a vent (71) and a lifting ring (72).
7. A heat-insulating aromatherapy diffuser according to claim 1, characterized in that: The furnace body (1) is provided with a partition wall (8) that is at a distance from the inner wall of the furnace body (1). The partition wall (8) surrounds a heat insulation cavity (81). The bracket (4) is installed in the heat insulation cavity (81) and is at a distance from the partition wall (8).