Simulation candle

By designing a translucent plastic candle shell and a simulated flame that can swing, the safety hazards and poor simulation effects of traditional candles have been solved, achieving a realistic simulation effect and environmentally friendly characteristics.

CN223985079UActive Publication Date: 2026-03-10YIWU SHENGDA CRAFTS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-30
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

Traditional candles pose safety hazards and are not environmentally friendly, while ordinary simulated candles have unsatisfactory simulation effects and cannot meet the needs of high-quality use.

Method used

Design a simulated candle, including a translucent plastic candle shell, a simulated groove, a swingable simulated flame, a light bulb, and a controller. The light bulb and fan blades are controlled by a pneumatic switch to simulate the burning effect of a real flame.

Benefits of technology

It has achieved safe and environmentally friendly simulated candles, with a visual and tactile similarity to real candles, and can realistically simulate the burning and jumping of flames, thus enhancing the simulation effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of candle processing. A simulation candle comprises a candle shell in a simulation candle shape, the surface of the shell is covered with a wax layer, a downwards-sunken simulation groove is integrally formed in the top of the candle shell, simulation flames capable of swinging freely are arranged in the middle of the simulation groove, and a bulb is arranged in the candle shell. The utility model provides a simulation candle which is convenient to process and manufacture, is closer to the effect of a real candle in hand feeling and vision, can simulate the effects of burning and jumping of real flames, is good in simulation effect, and is more environment-friendly and safer. The technical problems that in the prior art, when a traditional candle is used, potential safety hazards exist, environmental protection is not achieved, the simulation effect of a common simulation candle is not ideal, an ideal atmosphere cannot be created, and higher use requirements cannot be met are solved.
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Description

Technical Field

[0001] This utility model relates to the field of candle processing technology, and in particular to a simulated candle. Background Technology

[0002] With economic development and rising living standards, candles have become an indispensable tool for creating different atmospheres on important occasions and holidays.

[0003] Traditional candles have high-temperature flames, which not only increase the concentration of carbon dioxide in the air but also pose significant safety hazards. They have low resource utilization rates and do not meet the requirements of energy conservation and environmental protection. Furthermore, ordinary simulated candles do not achieve the desired effect and cannot simulate the effect of real candles, thus necessitating improvements. Utility Model Content

[0004] This utility model provides a simulated candle that is easy to process and manufacture, has a feel and appearance that are closer to a real candle, and can simulate the burning and jumping effect of a real flame. It has a good simulation effect and is more environmentally friendly and safer. It solves the technical problems of existing technologies, such as the safety hazards and lack of environmental protection of traditional candles, and the unsatisfactory simulation effect of ordinary simulated candles, which cannot create an ideal atmosphere and cannot meet higher usage requirements.

[0005] The above-mentioned technical problem of this utility model is solved by the following technical solution: a simulated candle, comprising a candle shell in the shape of a simulated candle, the surface of which is covered with a wax layer, and an irregularly shaped simulated groove integrally formed on the top of the candle shell with smooth edges; a simulated flame that can swing freely is provided in the middle of the simulated groove, and a counterweight base is integrally formed at the bottom of the simulated flame; a light bulb is provided inside the candle shell; a controller connected to the light bulb is provided inside the candle shell; a pneumatic switch is provided on the top surface of the candle shell; and a small fan blade is provided inside the candle shell, which is controlled by the controller. The simulated grooves are irregularly shaped and concave, giving them a visually melting effect for greater realism. The candle shell, through its simulated grooves and wax layer, achieves a realistic candle-like appearance and feel. The light bulb, combined with the translucent candle shell, creates a simulated flame that mimics a real flame, allowing it to sway from side to side. The counterweight base adds weight to the flame, enhancing its realism. The bulb, installed inside the candle shell and powered by an internal battery, is activated by blowing air into a pneumatic switch, extinguishing the bulb like blowing out a candle. A small fan, controlled by a controller, causes the simulated flame to sway from side to side along a thin wire, further enhancing its realism.

[0006] Preferably, the simulated groove has a mounting hole in the middle, and a thin wire is provided on the mounting hole. The simulated flame is sleeved and installed outside the thin wire. The thin wire is installed radially in the mounting hole in the middle of the simulated groove, and the simulated flame is installed on the thin wire, allowing the simulated flame to sway on the thin wire.

[0007] Preferably, the simulated flame has a sheet-like structure. The sheet-like structure of the simulated flame resembles the arc-shaped structure of a real flame, and when the simulated flame sways, it achieves the effect of simulating a real flame.

[0008] Preferably, the mass of the counterweight substrate is greater than the mass of the simulated flame.

[0009] Preferably, the candle casing is made of translucent plastic. The plastic casing ensures good light transmission, and its lightweight nature provides a better user experience.

[0010] Therefore, the simulated candle of this utility model has the following advantages: it is easy to process and manufacture, its feel and appearance are closer to the effect of a real candle, it can also simulate the effect of a real flame burning and jumping, its simulation effect is good, and it is more environmentally friendly and safe. Attached Figure Description

[0011] Figure 1 This is a three-dimensional structural schematic diagram of Embodiment 1 of the present invention, which describes a simulated candle.

[0012] Figure 2 yes Figure 1 A schematic diagram of the main structure.

[0013] Figure 3 yes Figure 1 A schematic diagram of the front sectional view of the structure.

[0014] Figure 4 yes Figure 1 A schematic diagram of the left-side view structure.

[0015] Figure 5 yes Figure 1 A top-view structural diagram.

[0016] In the picture, 1 is the candle shell, 2 is the wax layer, 3 is the simulated groove, 4 is the battery, 5 is the light bulb, 6 is the small fan blade, 7 is the pneumatic switch, 8 is the mounting hole, and 9 is the simulated flame. Detailed Implementation

[0017] The technical solution of the utility model will be further described in detail below through embodiments and in conjunction with the accompanying drawings.

[0018] Example:

[0019] like Figure 1 and 2As shown in Figures 3, 4, and 5, a simulated candle includes a candle shell 1 in the shape of a simulated candle. The candle shell 1 is made of translucent plastic material. The outer surface of the candle shell 1 is covered with a wax layer 2. The top of the candle shell 1 is integrally formed with a downwardly recessed simulated groove 3. The simulated groove 3 is irregularly shaped and has smooth edges.

[0020] The candle housing 1 contains a battery 4 and a light bulb 5. A small fan blade 6 is also installed on one side of the bottom of the candle housing 1. A pneumatic switch 7 is installed on the surface of the simulated groove 3 on the top of the candle housing 1. The pneumatic switch 7 can control the switching of the light bulb 5 and the small fan blade 6.

[0021] An installation hole 8 is provided in the middle of the simulated groove 3. A thin wire is installed radially inside the installation hole 8, and a simulated flame 9 is fitted and installed outside the thin wire.

[0022] The simulated flame 9 has a sheet-like structure, and the bottom of the simulated flame 9 is integrally formed with a counterweight plate. The mass of the counterweight plate is greater than the mass of the simulated flame 9.

[0023] The candle shell 1 achieves the effect of simulating a candle in terms of both appearance and feel through the simulated groove 3 and the wax layer 2 on the outer surface. When in use, the bulb 5 and the small fan blade 6 are turned on and off by blowing air into the pneumatic switch 7. The light emitted by the bulb 5, combined with the light-transmitting candle shell 1, can make the simulated flame 9 achieve an effect similar to a flame. Under the action of the small fan, the simulated flame 9 will swing left and right on the thin line, which can make the simulated flame 9 achieve a more realistic effect.

Claims

1. An artificial candle, characterized by: The simulated candle shape candle shell is covered with a wax layer, the top of the candle shell is integrally formed with a downward recessed simulated groove, the simulated groove is irregularly shaped, and the edge of the simulated groove is smooth; a freely swingable simulated flame is arranged in the middle of the simulated groove, and a counterweight bottom sheet is integrally formed at the bottom of the simulated flame; a bulb is arranged in the candle shell; a controller connected with the bulb is arranged in the candle shell, an air switch is arranged on the top surface of the candle shell, and a small fan blade is arranged in the candle shell and controlled by the controller.

2. A simulated candle according to claim 1, wherein: The middle of the simulated groove is provided with a mounting hole, and a thin wire is arranged on the mounting hole.

3. A simulated candle according to claim 1, wherein: The simulated flame is in a sheet structure.

4. The simulated candle of claim 1, wherein: The mass of the counterweight bottom sheet is greater than that of the simulated flame.

5. The simulated candle of claim 1, wherein: The candle shell is made of light-transmitting plastic material.