Wax melting lamp

By designing a hollow lamp post and air outlet structure in the wax melting lamp, the problem of increased volume caused by improving the aroma diffusion efficiency of existing wax melting lamps has been solved, thus achieving effective aroma diffusion.

CN224056347UActive Publication Date: 2026-03-31邱宝田
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-02
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

The existing wax melting lamps have the problem of increasing size in the process of improving fragrance diffusion efficiency.

Method used

Design a wax melting lamp, wherein the lamp post is a hollow structure, the air outlet is lower than the bottom edge of the light-emitting component, the airflow generator is set on the wax cup holder, and the airflow is guided through the air inlet channel and the space inside the post to the space between the wax cup mouth and the light-emitting component, thereby improving the diffusion of aroma.

Benefits of technology

It achieves improved aroma diffusion efficiency and enhanced aroma diffusion effect without increasing volume.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224056347U_ABST
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Abstract

A wax melting lamp comprises a wax cup bearing seat, a lamp pole arranged on the wax cup bearing seat, a light-emitting assembly arranged at the tail end of the lamp pole and facing the wax cup bearing seat, and an air flow generating piece arranged on the wax cup bearing seat. The wax cup bearing seat is provided with an air inlet channel in which the air flow generating piece is arranged, the lamp pole is provided with at least one in-pole space communicated with the air inlet channel and an air outlet communicated with the in-pole space and facing the light-emitting assembly, and the horizontal height of the air outlet is at least lower than the bottommost edge of the light-emitting assembly.
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Description

Technical Field

[0001] This utility model relates to a wax melting lamp, and more particularly to a wax melting lamp that improves the efficiency of aroma diffusion. Background Technology

[0002] To improve the diffusion efficiency of incense, many manufacturers offer wax melting lamps with added fans, as shown in CN117752840A and CN221279442U.

[0003] The evaporation module of CN117752840A includes a fan drive module, which is located on the base and directs airflow from the base toward the outlet of the wax container. However, the airflow does not actually flow toward the user's location; instead, it diffuses upwards through the outlet, resulting in insufficient fragrance received by the user, who must rely on the convection capacity of the space in which the user is located.

[0004] Furthermore, CN221279442U provides a lighting lamp with a fragrance function, and a diffuser assembly is provided on the aromatherapy table. The diffuser assembly includes a support rod and a fan located at the top of the support rod. The diffuser assembly blows air toward the scented candle, allowing the fragrance to travel a greater distance. Although the airflow direction of the diffuser assembly in CN221279442U ensures that the user receives sufficient fragrance, the support rod and the lighting component for heating the candle are separately mounted on the aromatherapy table, increasing the required volume of the aromatherapy table. Utility Model Content

[0005] The main purpose of this invention is to solve the problem of increased volume caused by conventional wax melting lamps in order to improve fragrance diffusion efficiency.

[0006] To achieve the above objectives, this utility model provides a wax melting lamp, comprising a wax cup holder, a lamp post disposed on the wax cup holder, a light-emitting component disposed at the end of the lamp post and facing the wax cup holder, and an airflow generator disposed on the wax cup holder. The wax cup holder has an air inlet channel therein for the airflow generator to be disposed, and the lamp post has at least one internal space communicating with the air inlet channel and an air outlet communicating with the internal space and facing the light-emitting component, the horizontal height of the air outlet being at least lower than the bottom edge of the light-emitting component.

[0007] In one embodiment, the air intake channel is formed by a groove on the side of the wax cup holder that does not face the light-emitting component.

[0008] In one embodiment, the air inlet channel includes at least one notch located at the edge of the wax cup holder and communicating with the groove.

[0009] In one embodiment, the thickness of the airflow generating element is less than the groove depth.

[0010] In one embodiment, the light-emitting component includes a lampshade, and the horizontal height of the air outlet is at least below the bottom edge of the lampshade.

[0011] In one embodiment, the wax melting lamp includes a control module that connects the airflow generating element and the light-emitting component.

[0012] In one embodiment, the lamp post includes multiple rods, one of which, directly connected to the wax cup holder, has an internal space formed within the rod.

[0013] The present invention, through the aforementioned embodiments, has the following characteristics compared to conventional methods:

[0014] This utility model relates to a wax melting lamp. The lamp post has a hollow structure and is mounted on a wax cup holder. It also has an air outlet, which is lower than the bottom edge of the light-emitting component. When the wax cup holder contains a wax cup and wax, the air outlet receives airflow from the space inside the post. The air outlet guides the airflow to the space between the rim of the wax cup and the light-emitting component, thereby improving the problem of conventional wax melting lamps increasing their size to enhance aroma diffusion efficiency. Attached Figure Description

[0015] Figure 1 This is a structural schematic diagram (I) of an embodiment of the present utility model;

[0016] Figure 2 This is a structural schematic diagram (II) of an embodiment of the present utility model;

[0017] Figure 3 This is a cross-sectional schematic diagram of an embodiment of the present utility model;

[0018] Figure 4 This is a schematic diagram of the operation of an embodiment of the present utility model;

[0019] Figure 5 This is a schematic diagram of a unit according to an embodiment of the present utility model.

[0020] [Symbol Explanation]

[0021] 20: Wax melting lamp

[0022] 21: Wax Cup Stand

[0023] 211: Air Intake Channel

[0024] 212: Groove

[0025] 213: Through hole

[0026] 214: Gap

[0027] 22: Light pole

[0028] 221: Space inside the pole

[0029] 222: Air vent

[0030] 224: Wind Path

[0031] 225: Rod

[0032] 23: Light-emitting components

[0033] 231: Lampshade

[0034] 24: Airflow generating components

[0035] 25: Control Module

[0036] 40: Power supply

[0037] 50: Wax Cup

[0038] 51: Cup rim

[0039] 52: Interval

[0040] 60: Gap

[0041] 70: Electric wires Detailed Implementation

[0042] The detailed description and technical content of this utility model are now explained in conjunction with the accompanying drawings:

[0043] Please see Figures 1 to 4 This utility model provides a wax melting lamp 20, which includes a wax cup holder 21, a lamp post 22 disposed on the wax cup holder 21, and a light-emitting component 23 disposed at the end of the lamp post 22 and facing the wax cup holder 21. The wax cup holder 21 has a wax cup 50 disposed thereon. After the lamp post 22 is assembled on the wax cup holder 21, the end of the lamp post 22 faces the opening 51 of the wax cup 50, allowing the light-emitting component 23 to irradiate light towards the opening 51 and transfer heat to the wax in the wax cup 50, thereby gradually melting the wax and producing a fragrant gas. The fragrant gas diffuses into a space 52 between the opening 51 and the light-emitting component 23.

[0044] Continuing on the above, the wax melting lamp 20 has an airflow generating element 24 disposed on the wax cup holder 21, and the wax cup holder 21 has an air inlet channel 211 in which the airflow generating element 24 is disposed. Further, the lamp post 22 is partially hollow, and the lamp post 22 has at least one internal space 221 communicating with the air inlet channel 211, and an air outlet 222 communicating with the internal space 221 and facing the light-emitting component 23. The internal space 221 is connected to one end of the air inlet channel 211 to receive an airflow provided by the airflow generating element 24. The internal space 221 guides the airflow to exit from the air outlet 222. Specifically, the horizontal height of the air outlet 222 of this invention is at least lower than the bottom edge of the light-emitting component 23, so that the airflow provided by the air outlet 222 is not blown from the bottom of the wax cup to the mouth as in conventional wax melting lamps, but rather blown towards the interval 52.

[0045] The implementation of the wax melting lamp 20 of this utility model will now be described. First, it is assumed that the airflow generator 24 is not yet powered and therefore not activated, and the gas in the air inlet channel 211 and the inner space 221 is not propelled. For ease of subsequent explanation, an airflow path 224 is defined, sequentially passing through the air inlet channel 211, the inner space 221, and the air outlet 222. After receiving power, the airflow generator 24 is activated, drawing gas from the outside into the air inlet channel 211 and forming the airflow. Then, the airflow continues along the airflow path 224 into the inner space 221 and is blown into the section 52 through the air outlet 222 to guide the fragrant gas diffused from the cup opening 51.

[0046] In summary, the lamp post 22 of this utility model is hollow, and has an internal space 221 that connects to the air inlet channel 211. The air outlet 222 is located on the lamp post 22 and faces the interval 52, so as to improve the problem of increasing the volume of conventional wax lamps in order to improve the diffusion efficiency.

[0047] Please see Figures 2 to 4 In one embodiment, the air inlet channel 211 is formed by a groove 212 on the side of the wax cup holder 21 not facing the light-emitting component 23. Specifically, the air inlet channel 211 has a through hole 213 formed in the wax cup holder 21, which communicates with the groove 212, and the lamp post 22 is located at the corresponding position of the through hole 213. In another embodiment, the air inlet channel 211 includes at least one notch 214 located on the edge of the wax cup holder 21 and communicating with the groove 212. When the wax melting lamp 20 is placed on a table, the at least one notch 214 can be directly observed from the edge of the wax cup holder 21. The at least one notch 214 is the entrance of the air inlet channel 211 to provide gas from the outside into the air inlet channel 211.

[0048] Please see Figures 2 to 4In one embodiment, the thickness of the airflow generating element 24 is less than the groove depth of the groove 212. When the airflow generating element 24 is disposed in the air inlet channel 211, there is a gap 60 between the airflow generating element 24 and the bottom edge of the wax cup holder 21, which allows the bottom edge of the wax cup holder 21 to have space for air intake.

[0049] Continuing from the above, in one embodiment, the light-emitting component 23 includes a lampshade 231, and the horizontal height of the air outlet 222 is at least below the bottom edge of the lampshade 231. In this embodiment, the aforementioned interval 52 is defined between the lampshade 231 and the rim 51 of the wax cup 50.

[0050] Please see Figure 1 and Figure 5 In one embodiment, the wax melting lamp 20 includes a control module 25 connecting the airflow generator 24 and the light-emitting component 23. The control module 25 is connected to a power source 40 via an electrical line 70. When the control module 25 is activated, it receives power from the power source 40 and supplies power to the airflow generator 24 and the light-emitting component 23 to activate them. In another embodiment, the control module 25 may be mounted on the wax cup holder 21, and the power source 40 may be a battery directly mounted in the wax cup holder 21.

[0051] Please refer to the following: Figures 2 to 4 In one embodiment, the lamp post 22 includes a plurality of rods 225. Specifically, the lamp post 22 can be assembled from the plurality of rods 225. One end of one of the rods 225 is directly connected to the wax cup holder 21, forming an internal space 221 that communicates with the air inlet channel 211. Furthermore, one of the remaining rods 225 has an internal electrical wire 70 for electrically connecting the control module 25 and the light-emitting component 23.

Claims

1. A wax melting lamp comprising a wax cup holder, a lamp stem disposed on the wax cup holder, and a light emitting assembly disposed at a distal end of the lamp stem and facing the wax cup holder, wherein: the wax melting lamp has an air flow generator disposed on the wax cup holder, the wax cup holder has an air inlet channel for accommodating the air flow generator therein, the lamp stem has at least one stem inner space communicating with the air inlet channel, and an air outlet communicating with the stem inner space and facing the light emitting assembly, the air outlet is at least lower than a bottom edge of the light emitting assembly.

2. The fuse lamp of claim 1, wherein the air inlet channel is formed by a recess on a side of the wax cup holder not facing the light emitting assembly.

3. The fuse lamp of claim 2, wherein the air inlet channel comprises at least one notch at an edge of the wax cup holder and communicating with the recess.

4. The fuse lamp according to claim 2 or 3, characterized in that a thickness of the air flow generator is less than a depth of the recess.

5. The fuse lamp of claim 4, wherein the light emitting assembly comprises a lamp shade, and the air outlet is at least lower than a bottom edge of the lamp shade.

6. The fuse lamp of claim 5, wherein the wax melting lamp comprises a control module connecting the air flow generator and the light emitting assembly.

7. The fuse lamp of claim 1 wherein the fuse is a wire fuse. the lamp stem comprises a plurality of stem members, one of the stem members directly connecting the wax cup holder is shaped with the stem inner space.

8. The fuse lamp of claim 1 or 7, wherein the light emitting assembly comprises a lamp shade, and the air outlet is at least lower than a bottom edge of the lamp shade.

9. The fuse lamp of claim 1 or 7, wherein the wax melting lamp comprises a control module connecting the air flow generator and the light emitting assembly.

Citation Information

Patent Citations

  • Volatilizer control system and method thereof

    CN117752840A

  • Illuminating lamp with fragrance function

    CN221279442U