Simulation tree lamp

By employing a combination of hollow tree trunks and simulated tape in the simulated tree light, and incorporating internal power cables and covering connecting holes, the safety and simulation effect issues caused by irregular branch distribution are resolved, thus improving the safety and simulation effect of the tree light.

CN224094410UActive Publication Date: 2026-04-07LINHAI YINHE ELECTRIC LAMP
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-04
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

The irregular distribution of branches in existing simulated tree lights results in an external power supply structure for the light strings, affecting the realism of the bark texture and the safety of use, and also posing electrical safety hazards.

Method used

The tree trunk is constructed using multiple hollow tubes, and branches are secured by wrapping simulated tape around the trunk. Power cables are embedded within the trunk, and light strings are passed through connecting holes made in the side wall of the trunk. These connecting holes are then covered with simulated tape to prevent the cables from being exposed, thus improving the simulation effect and safety.

Benefits of technology

This technology enhances the realism of the bark texture in simulated tree lights, avoids safety hazards caused by exposed cables, extends service life, and improves safety during use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a simulation tree lamp, belongs to the technical field of simulation lamps, and mainly solves the problem of how to improve the safety and simulation effect of the tree lamp. A simulation tree lamp comprises a base, a hollow trunk and a plurality of branches, one end of each branch is fixed to the hollow trunk in the circumferential direction, each branch is wound with a lamp string, one end of each lamp string is connected with a power-on cable, the hollow trunk is provided with communicating holes allowing the lamp strings to penetrate through, and the communicating holes are formed in the connecting positions of the branches and the hollow trunk. Simulation adhesive tapes are wound on the trunk and the branches, the branches are wound and fixed to the hollow trunk through the simulation adhesive tapes, the simulation adhesive tapes cover the communicating holes and the lamp strings penetrating through the communicating holes, the trunk is formed by inserting pipes, an electrified cable is arranged in each pipe, and each electrified cable comprises a socket, a plug and a wire. And the length of the straightened electrified cable is greater than that of the pipe. And the use safety and the simulation effect are improved in a manner of internally arranging the joint and shielding the communication hole.
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Description

Technical Field

[0001] This utility model belongs to the technical field of simulation lighting fixtures, and specifically relates to a simulation tree light. Background Technology

[0002] Artificial tree lights, as a decorative lighting device, are widely used in festival decorations, commercial landscaping, and home beautification due to their combination of illumination and strong aesthetic appeal. Artificial tree lights typically consist of a base, trunk, and branches. LED light strings are installed on the branches to achieve the lighting effect, and power is supplied to the LED light strings via sockets and plugs. However, because the branches of artificial trees are distributed in various irregular patterns, embedding the light strings is difficult to manufacture. While the power supply structure for the light strings can be placed externally on the trunk or branch surface, the distribution of the branches causes the wires to become entangled as they extend to each branch. This excessive entanglement weakens the realism of the bark texture, not only disrupting the visual integrity of the artificial tree but also easily leading to poor contact under external force, thus reducing safety and lifespan. Furthermore, the lack of a shielding structure for the light strings further exacerbates electrical safety hazards. Utility Model Content

[0003] The purpose of this invention is to address the aforementioned problems in existing technologies by proposing a simulated tree light. The technical problem this invention aims to solve is: how to improve the safety and simulation effect of the tree light.

[0004] The objective of this utility model can be achieved through the following technical solution: A simulated tree light, comprising a base and a tree light body, wherein the tree light body comprises a hollow tree trunk and several branches, one end of each branch is circumferentially fixed to the hollow tree trunk, and each branch is wrapped with a string of lights, one end of which is connected to a power cable. The hollow tree trunk has a connecting hole for the light string to pass through, the connecting hole being located at the connection between the branch and the hollow tree trunk. Simulated tape is wrapped around both the tree trunk and the branches, which secures the branches to the hollow tree trunk and covers the connecting hole and part of the light string passing through it. The hollow tree trunk is formed by connecting several tubes, each tube containing a power cable. The power cable includes a socket, a plug, and a wire, and the length of the straightened power cable is greater than the length of the tube.

[0005] This application uses multiple hollow tubes to form a hollow tree trunk, and uses simulated tape to fix the branches to the hollow trunk for easy assembly and to cover the joints. The branches can be arranged in any way to enhance the simulation effect of the tree light. Furthermore, this application places the power cable for supplying the light strings inside the hollow trunk. A connecting hole is made in the side wall of the hollow trunk for the light strings to pass through, ensuring normal use of the tree light while preventing exposed wires, sockets, and plugs from affecting safety. The simulated tape wraps and binds the light strings and branches to the hollow trunk to prevent moisture from entering and causing the power cable to fail. In addition, the cable, when straightened, is longer than the tubes, providing sufficient slack for the sockets to separate from the plugs during disassembly, preventing damage to the wires during direct removal. Furthermore, the increased wire length prevents continuous stress on the wires during use, thus extending their lifespan.

[0006] In the aforementioned simulated tree light, the end of the branch fixed to the hollow trunk is the fixed end, and the fixed end, the connecting hole, and part of the light string are all wrapped and fixed to the hollow trunk with simulated tape.

[0007] In the aforementioned simulated tree lamp, the portion of the hollow tree trunk wrapped with branches, together with simulated tape, forms irregular bark.

[0008] In the aforementioned simulated tree light, when two adjacent pipes are joined together, the socket and plug are connected and suspended below the joint between the two pipes.

[0009] In the aforementioned simulated tree light, one end of the socket is connected to the plug via a wire.

[0010] In the aforementioned simulated tree light, the hollow tree trunk is inserted into a base, and the base has several reinforcing ribs evenly distributed around the circumference of the hollow tree trunk. By adding reinforcing ribs to the base, the stability of the hollow tree trunk is improved.

[0011] In the aforementioned simulated tree light, the light string is connected in parallel with the wire.

[0012] In the aforementioned simulated tree lamp, tree patterns are printed on the simulated tape.

[0013] Compared with the prior art, the present invention has the following advantages:

[0014] 1. Based on existing simulated tree lights, this application embeds the power cable inside a hollow tree trunk formed by the insertion of several pipes. While wrapping simulated tape, it also fixes the branches and covers the connecting holes through which the light strings pass, preventing moisture from entering through the connecting holes and affecting the normal use of the light strings. Furthermore, through the cooperation of simulated tape and branches, a design similar to tree knots is formed on the hollow tree trunk, enhancing the simulation effect.

[0015] 2. By ensuring that the length of the straightened power cable is greater than the length of the conduit, damage caused by prolonged cable straightening can be avoided when multiple conduits are connected. This also prevents damage to the socket and the other plug during disassembly, thus extending the service life. Attached Figure Description

[0016] Figure 1 This is an assembly diagram of the present invention;

[0017] Figure 2 This is a cross-sectional schematic diagram of one of the pipes in this utility model that has branches installed on it;

[0018] Figure 3 yes Figure 2 A magnified view of the connection point between the branch and the hollow trunk;

[0019] Figure 4 yes Figure 2 A magnified view of the socket and plug connection.

[0020] In the diagram, 1. Base; 1a. Reinforcing rib; 2. Hollow trunk; 2a. Pipe; 2a1. Connecting hole; 3. Branch; 3a. Fixing end; 4. String of lights; 5. Power cable; 5a. Socket; 5b. Plug; 5c. Wire; 6. Simulated tape; Detailed Implementation

[0021] The following are specific embodiments of the present invention, which are described in conjunction with the accompanying drawings. However, the present invention is not limited to these embodiments.

[0022] like Figure 1 and Figure 2 As shown, this application, as a simulated tree light, includes a hollow tree trunk 2 and several branches 3. One end of each branch 3 is fixed to the hollow tree trunk 2, and a string of lights 4 is provided on the branch 3. The hollow tree trunk 2 is formed by inserting two tubes 2a together. A power cable 5 is provided inside the tube 2a. The power cable 5 includes a socket 5a, a plug 5b, and a wire 5c. The lower tube 2a is fixed to a base 1. Several reinforcing ribs 1a are provided around the base 1. More importantly, the use of two hollow tubes 2a is only one embodiment of this utility model. Multiple hollow tubes 2a can also be stacked and connected to each other by inserting the power cables 5 inside the tubes 2a to power the simulated tree light.

[0023] It is worth mentioning that, such as Figure 2As shown, one end of the branch 3 is fixed to the outer surface of the pipe 2a, and one end of the light string 4 is fixed to the plug 5b in the power cable 5. The other end passes through the pipe 2a and is wrapped around the branch 3. The hollow pipe 2a has plug blocks and grooves at both ends. After the wire 5c in the power cable 5 is straightened, the plug 5b and the socket 5a in the power cable 5 are located outside the socket 5a block and the groove, respectively, and are connected to another power cable 5. At this time, the length of the power cable 5 is greater than the length of the pipe 2a, providing a movable margin for the installation and removal of the pipe 2a. The light string is connected in parallel with the wire.

[0024] like Figure 3 and Figure 4 As shown, a connecting hole 2a1 is provided on the pipe 2a. One end of the light string 4 is connected to the plug 5b of the power cable 5, and the other end passes through the connecting hole 2a1 and is wrapped around the branch 3. Simulation tape 6 is wrapped around the pipe 2a. One end of the branch 3 is a fixed end 3a. The fixed end 3a, the connecting hole 2a1, and part of the light string 4 are wrapped between the simulation tape 6 and the hollow pipe 2a, forming protruding tree knots after wrapping. Irregular bark is formed by wrapping the branch 3. The plug 5b on the power cable 5 is connected to the socket 5a on another charging cable. Tree patterns are printed on the simulation tape 6.

[0025] In summary, this application, as a type of simulated tree light, uses multiple hollow tubes 2a connected to each other to adjust the height of the simulated tree light. The multiple tubes 2a are connected to form a hollow tree trunk 2. Simulated tape 6 is wrapped around the hollow tree trunk 2 to cover the connection points between the tubes 2a, ensuring a realistic effect. Simultaneously, branches 3 located around the tubes 2a are fixed to the tree trunk. A string of lights 4 is wrapped around the branches 3 to form the simulated tree light. Furthermore, the light strings 4... The power cable 5 is installed inside the hollow tube 2a. While the tubes 2a are connected to each other, the plug 5b in the power cable 5 is plugged into the socket 5a in another power cable 5 to complete the power supply to the light string 4. In addition to avoiding damage caused by the power cable 5 being directly exposed to the tree light, a connecting hole 2a1 for the light string 4 to pass through is opened in the tube 2a. While wrapping the connecting hole 2a1 with simulated tape 6, the exposed area is further reduced, preventing moisture from entering the hollow tube 2a and corroding the connection, thus improving the safety of the simulated tree light.

[0026] It is worth mentioning that the length of the power cable 5 in this application is greater than the length of the pipe 2a. This causes a portion of the power cable 5 to bend when the user plugs in the two pipes 2a and the power cable 5, providing some leeway for plugging and unplugging when disassembling the tree light. This avoids damage to the wire 5c caused by plugging and unplugging the plug 5b and socket 5a when the wire 5c is shorter than or equal to the length of the pipe 2a. It also avoids damage or even breakage at the connection between the socket 5a and the wire 5c due to the continuous pulling force applied by the light strip and plug 5b during use, thus improving the service life. Furthermore, by setting a base 1 with reinforcing ribs 1a at the bottom, the hollow tree trunk 2 is prevented from tipping over, further improving the safety of use.

[0027] In addition, while using simulated tape 6 to fix the fixed end 3a of the branch 3, this application covers the connecting hole 2a1 and forms a protrusion on the pipe 2a by wrapping the fixed end 3a. Since the branch 3 is not evenly distributed on the hollow trunk 2, the protrusion formed by wrapping creates an irregular trunk, further enhancing the simulation effect. When two adjacent pipes 2a are connected, the socket 5a and the plug 5b are plugged in and connected, and hang below the joint of the two pipes 2a.

[0028] The specific embodiments described herein are merely illustrative examples illustrating the spirit of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to substitute them, without departing from the spirit of this utility model or exceeding the scope defined by the appended claims.

[0029] Although this document frequently uses terms such as 1. base; 1a. reinforcing rib; 2. hollow trunk; 2a. pipe; 2a1. connecting hole; 3. branch; 3a. fixing end; 4. light string; 5. power cable; 5a. socket; 5b. plug; 5c. wire; and 6. simulated tape, the possibility of using other terms is not excluded. The use of these terms is merely for the convenience of describing and explaining the essence of this utility model; interpreting them as any additional limitation would contradict the spirit of this utility model.

Claims

1. A simulated tree light, comprising a base (1) and a tree light body, the tree light body comprising a hollow tree trunk (2) and several branches (3), one end of each branch (3) being circumferentially fixed to the hollow tree trunk (2), each branch (3) having a string of lights (4) wrapped around it, one end of each string of lights (4) being connected to a power cable (5), characterized in that, The hollow tree trunk (2) has a connecting hole (2a1) for the light string (4) to pass through. The connecting hole (2a1) is located at the connection between the branch (3) and the hollow tree trunk (2). The tree trunk and the branch (3) are wrapped with simulated tape (6). The simulated tape (6) can wrap and fix the branch (3) to the hollow tree trunk (2) and cover the connecting hole (2a1) and part of the light string (4) passing through the connecting hole (2a1). The hollow tree trunk (2) is formed by inserting several tubes (2a). Each tube (2a) is provided with a power cable (5). The power cable (5) includes a socket (5a), a plug (5b) and a wire (5c). The length of the straightened power cable (5) is greater than the length of the tube (2a).

2. The simulated tree light according to claim 1, characterized in that, The end of the branch (3) fixed to the hollow trunk (2) is the fixed end (3a). The fixed end (3a), the connecting hole (2a1), and part of the light string (4) are all wrapped and fixed to the hollow trunk (2) with simulated tape (6).

3. The simulated tree light according to claim 2, characterized in that, The hollow trunk (2) with branches (3) wrapped around it forms irregular bark when combined with simulated tape (6).

4. The simulated tree light according to claim 3, characterized in that, When two adjacent pipes (2a) are joined together, the socket (5a) is plugged into the plug (5b) and hangs below the joint of the two pipes (2a).

5. The simulated tree light according to claim 4, characterized in that, One end of the socket (5a) is connected to the plug (5b) via a wire (5c).

6. The simulated tree light according to any one of claims 1-5, characterized in that, The hollow tree trunk (2) is inserted on the base (1), and the base (1) has a number of reinforcing ribs (1a) evenly arranged around the hollow tree trunk (2).

7. The simulated tree light according to claim 1, characterized in that, The light string (4) is connected in parallel with the wire (5c).

8. The simulated tree light according to claim 1, characterized in that, The simulated tape (6) is printed with tree patterns.