Diamond-shaped solar lamp convenient to install
Through the design of the dual-mode conversion unit and drill bit unit, the problem of slippage and low handle utilization during the solar lamp insertion process is solved, achieving stable installation and aesthetic effects.
Patent Information
- Application Number
- CN202422073264.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-26
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-08-26
AI Technical Summary
Existing temporary ground plug-in solar lamps are prone to slip during the insertion process and have low handle utilization, which affects the aesthetics.
The dual-mode conversion unit is adopted, including a sliding frame and a mounting handle, and the state of the mounting handle is switched through the up and down movement of the sliding frame, and used as a handle or a fixing mounting. It combines the drill unit and the pile driving unit to achieve stable insertion and fixation.
Easy to install, improves the utilization rate of handles, enhances the stability and aesthetics of the lamp post, does not require additional tools, and does not have abrupt appearance.
Smart Images

Figure CN223153477U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of lamps, in particular to a diamond-shaped solar lamp which is convenient to install. Background Art
[0002] Nowadays, with the rapid development of industry, solar lamps that utilize solar thermal radiation energy have been invented. Solar lamps can avoid the setting of external wires and do not need to worry about the power consumption of chemical batteries. Solar lamps only need to be set in an environment with good sunlight irradiation.
[0003] Due to the convenience of the installation environment of solar lamps, many ground-mounted solar lamps have been invented, including large street lamp types and portable ground-insertion types. Designing the solar lamp in the shape of a diamond not only has a beautiful appearance but also can scatter strange and good-looking light from the inside according to the shape of the diamond itself.
[0004] - The current temporary ground-insertion solar lamp consists of a lamp post and a lamp body located at the top of the lamp post. When in use, the bottom end of the lamp post is inserted into the ground. Without setting a handle, directly hold the lamp post by hand for downward insertion. With the same force applied, it is easy to slip and the insertion direction is likely to be inclined. For a lamp post with a handle, although it is convenient for insertion and installation operations, it affects the beauty and the utilization rate of the handle is low. Content of the Utility Model
[0005] The utility model aims to at least solve the problems of the single function and low utilization rate of the handle in the prior art.
[0006] This solution provides a diamond-shaped solar lamp which is convenient to install, and is achieved by the following specific technical means:
[0007] It includes a diamond lamp and a lamp post, and the diamond lamp is placed at the top end of the lamp post;
[0008] It further includes a dual-mode conversion unit. The dual-mode conversion unit includes a sliding frame and a mounting handle. The sliding frame is slidably sleeved outside the lamp post. One end of the mounting handle passes through a frame hole opened on the side wall of the sliding frame and is hinged to the lamp post wall. Through the up and down movement of the sliding frame, the upper and lower walls of the frame hole push and squeeze to drive the mounting handle to switch between a flat state and an upward inclined state. When the mounting handle is in the flat state, it is used as a handle for applying force when inserting the lamp post downward; when the mounting handle is in the upward inclined state, the end presses on the diamond lamp and is used as a fixed mounting part for the diamond lamp.
[0009] Preferred Technical Solution 1: A card slot is opened at the end of the mounting handle. When the end of the mounting handle contacts the wall of the diamond lamp, the convex rib on the side of the diamond lamp is snapped into the card slot.
[0010] Preferred Technical Solution 2: The drill bit unit is a conical drill bit formed by several triangular blocks. The top ends of the triangular blocks are hinged to the bottom end of the lamp post. A pile driving unit is connected inside the lamp post. The pile driving unit is connected to the top walls of multiple triangular blocks and is used to control the lateral spreading of multiple triangular blocks after they are inserted into the ground.
[0011] Preferred Technical Solution 3: The pile driving unit is located below the dual-mode conversion unit. The pile driving unit includes a pile driving handle and a pile driving column. The top end of the pile driving column is connected to the top wall of the lamp post through a set of springs and slides inside the lamp post. At the same time, a drill bit pushing convex block is fixed at the bottom end of the pile driving column. The bottom end of the drill bit pushing convex block passes through the bottom opening of the lamp post and closely adheres to the top wall of the triangular block. One end of the pile driving handle is hinged in a lamp post hole opened on the side wall of the lamp post and communicating with the inner cavity of the lamp post. A push rod is also hingedly connected to the middle of the pile driving handle. The push rod passes through the lamp post hole and enters the inner cavity of the lamp post to be hinged to the top end of the pile driving column.
[0012] Preferred Technical Solution 4: A clamping switch is connected to the bottom end of the lamp post wall. The clamping switch is used to lock the vertical placement state of the pile driving handle.
[0013] Preferred Technical Solution 5: A fastening slider is slidably sleeved outside the lamp post. The fastening slider is located below the clamping switch. When the fastening slider moves downward, its bottom end exceeds the top end of the triangular block. The top diameter of the conical drill bit formed by multiple triangular blocks is equal to the inner diameter of the bottom end of the fastening slider, so that the shape of the conical drill bit can be maintained when the fastening slider moves downward. When several triangular blocks drill the ground, the fastening slider plays a role in tightening the triangular blocks, preventing the several triangular blocks from separating due to insufficient connection strength with the bottom end of the lamp post during drilling. Sliding the fastening slider upward can release the triangular blocks.
[0014] Preferred Technical Solution 6: Fastening nuts are provided on the outer sides of both the sliding frame and the fastening slider.
[0015] Adopting the above structure enables this solution to have the following beneficial effects:
[0016] 1. It is convenient for installation. The bottom end of the lamp post is connected with a drill bit unit, which is convenient for the lamp post to drill into the ground. The function of the convertible form of the handle facilitates the fixation of the lamp post and the fixation between the lamp body and the lamp post.
[0017] 2. No additional tools are required. The cooperation of the drill bit unit and the pile driving unit is used to achieve the stable insertion of the lamp post.
[0018] 3. The appearance is not obtrusive. After the installation is completed, the handle can be converted into a fixed handle for fixing the diamond lamp, and the pile driving handle will also be pressed into the lamp post hole. Description of the Drawings
[0019] The accompanying drawings are used to provide a further understanding of the present utility model and form a part of the specification. Together with the embodiments of the present utility model, they are used to explain the present utility model and do not constitute a limitation to the present utility model. In the accompanying drawings:
[0020] Figure 1 It is a front elevation view of a diamond-shaped solar lamp for easy installation of the present utility model;
[0021] Figure 2 It is a usage diagram of a diamond-shaped solar lamp for easy installation of the present utility model;
[0022] Figure 3 It is a sectional view of a diamond-shaped solar lamp for easy installation of the present utility model;
[0023] Figure 4 It is a partial view A of a diamond-shaped solar lamp for easy installation of the present utility model;
[0024] Figure 5 It is a partial view B of a diamond-shaped solar lamp for easy installation of the present utility model;
[0025] Figure 6 It is a partial view C of a diamond-shaped solar lamp for easy installation of the present utility model.
[0026] Among them, 1. Diamond lamp, 2. Lamp post, 3. Dual-mode conversion unit, 4. Drill bit unit, 5. Piling unit, 6. Fastening nut, 101. Solar lamp, 201. Fastening slider, 301. Sliding frame, 302. Installation handle, 303. Frame hole, 401. Triangular block, 501. Piling handle, 502. Piling column, 503. Push rod, 504. Lamp post hole, 505. Clamping switch, 506. Drill bit pushing convex block, 507. Clamping teeth, 508. Sliding teeth. Detailed implementation manners
[0027] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments; based on the embodiments in the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0028] Please refer to Figure 1 - Figure 2 , a diamond-shaped solar lamp for easy installation, including a diamond lamp 1 and a lamp post 2. The diamond lamp 1 is placed at the top of the lamp post 2, and the diamond lamp 1 is a solar lamp 101 with a diamond lamp 1 shell;
[0029] It further includes a dual-mode conversion unit 3. The dual-mode conversion unit 3 includes a sliding frame 301 and a mounting handle 302. The sliding frame 301 is slidably sleeved outside the lamp post 2. One end of the mounting handle 302 passes through a frame hole 303 formed in the side wall of the sliding frame 301 and is hinged to the wall of the lamp post 2. By the up and down movement of the sliding frame 301, the upper and lower walls of the frame hole 303 push and drive the mounting handle 302 to switch between a flat state and an upwardly inclined state. When the sliding frame 301 moves upward, the bottom wall of the frame hole 303 pushes the mounting handle 302 upward. When the sliding frame 301 moves downward, the top wall of the frame hole 303 pushes the mounting handle 302 downward. The sliding between the sliding frame 301 and the lamp post 2 is a damping type; when the mounting handle 302 is in the flat state, it is used as a handle for applying force when inserting the lamp post 2 downward. Holding the flat handle facilitates applying force to insert the bottom end of the lamp post 2 into the ground for fixation. When the mounting handle 302 is in the upwardly inclined state, the end presses on the diamond lamp 1 and is used as a fixing and mounting part for the diamond lamp 1. By arranging multiple groups of mounting handles 302 on the circumferential side of the lamp post 2, the diamond lamp 1 can be pressed and fixed circumferentially. The number of the mounting handles 302 is at least two groups. Multiple groups of erected mounting handles 302 press and fix the diamond lamp 1 in the mounting groove at the top end of the lamp post 2. By converting the posture of the mounting handle 302, the usage mode of the mounting handle 302 is adjusted, improving the utilization rate of the mounting handle 302 and increasing the aesthetics. That is, it facilitates the installation of the lamp post 2 and also facilitates the assembly between the diamond lamp 1 and the lamp post 2 without using additional tools.
[0030] Please refer to Figure 1 - 4 , for the diamond-shaped solar lamp that is easy to install, a card slot is provided at the end of the mounting handle 302. When the end of the mounting handle 302 contacts the wall of the diamond lamp 1, the convex rib on the side of the diamond lamp 1 is snapped into the card slot. Utilizing the shape characteristics of the diamond lamp 1, the contact between the mounting handle 302 and the diamond lamp 1 is made more stable.
[0031] Please refer to Figure 1 - Figure 3 and Figure 5 - Figure 6 , for the diamond-shaped solar lamp that is easy to install, the drill bit unit 4 is used to insert into the ground to support and install the lamp post 2. The drill bit unit 4 is a conical drill bit surrounded by several triangular blocks 401. The top of the triangular block 401 is hinged to the bottom end of the lamp post 2. A pile driving unit 5 is connected inside the lamp post 2. The pile driving unit 5 is connected to the top walls of multiple groups of triangular blocks 401 and is used to control the lateral spreading of multiple groups of triangular blocks 401 after they are inserted into the ground;
[0032] The piling unit 5 is located below the dual-mode conversion unit 3. The piling unit 5 includes a piling handle 501 and a piling column 502. The top of the piling column 502 is connected to the top wall of the lamp post 2 through a group of springs and slides inside the lamp post 2. At the same time, a drill bit pushing protrusion 506 is fixed to the bottom end of the piling column 502. The bottom end of the drill bit pushing protrusion 506 passes through the bottom of the lamp post 2 and then clings to the top wall of the triangular block 401. One end of the piling handle 501 is hinged in a lamp post hole 504 opened on the side wall of the lamp post 2 and connected to the inner cavity of the lamp post 2. A push rod 503 is also hingedly connected to the middle part of the piling handle 501. The push rod 503 passes through the lamp post hole 504 and enters the lamp post 2 The inner cavity is hinged with the top of the pile driving column 502, and the triangular blocks 401 surrounding the conical drill bit are pushed down by the top drill bit to convert the mode into the triangular blocks 401 with the bottom open. Before the drill unit 4 is inserted into the ground, the pile driving handle 501 is initially horizontally unfolded. After being inserted into the ground, the pile driving handle 501 is pressed down into the lamp post hole 504, and the push rod 503 pushes the pile driving column 502 to slide down. The pile driving column 502 slides down and the drill bit pushes the protrusion 506 to move down. The drill bit pushes the protrusion 506 to open the triangular blocks 401. The opened triangular blocks 401 can enhance the firmness of the lamp post 2 after drilling into the ground.
[0033] Preferably, the pile driving column 502 and the drill pushing protrusion 506 are connected by a spring. When encountering a strong ground, forcibly pushing the triangular block 401 downward will damage the pile driving unit 5. The use of the spring can increase the buffer for the opening of the triangular block 401. Even if the triangular block 401 cannot be fully opened, the drill pushing protrusion 506 will exert a lasting external support force on the triangular block 401, which also increases the stability of the lamp post 2. The pile driving column 502 is slidably connected to the hollow inside the lamp post 2 by the spring. When the lamp post 2 is cancelled, the spring can reset the pile driving column 502. When the pile driving column 502 is reset, the drill pushing protrusion 506 connected to the bottom end of the pile driving column 502 by the spring will also be reset.
[0034] See also Figure 5, a diamond-shaped solar lamp that is easy to install, a card switch 505 is connected to the bottom end of the lamp post 2 wall, the card switch 505 includes a card tooth 507 fixedly connected to the top of the pile driving handle 501 and a sliding card tooth 508 located below the lamp post hole 504, the bottom wall of the lamp post hole 504 is opened and closed with a vertical channel, the bottom end of the sliding card tooth 508 slides into the vertical channel, and the top convex tooth moves downward and engages with the card tooth 507 on the pile driving handle 501 in the vertical state, the horizontal handle fixed at the bottom end of the sliding card tooth 508 passes through the wall of the lamp post 2, and the bottom end of the sliding card tooth 508 is connected to the bottom wall of the vertical channel. The two ends of the lever 508 are also connected by springs. When the engaged state needs to be released, the horizontal handle is first lifted to drive the sliding latch tooth 508 to move upward and stretch the group of springs, so that the convex tooth at the top of the sliding latch tooth 508 is disengaged from the engaging latch tooth 507. At this time, the piling handle 501 can be pulled out of the lamp post hole 504. When multiple sets of triangular blocks 401 need to be unfolded, the piling handle 501 in a flat state is placed vertically downward and retracted into the lamp post hole 504. At this time, the side inclined surface of the engaging latch tooth 507 contacts the side inclined surface of the convex tooth, so that the convex tooth moves upward until the convex tooth passes through the high end of the engaging latch tooth 507 and is engaged with the inner recess.
[0035] See also Figure 1 - Figure 3 , a diamond-shaped solar lamp that is easy to install, a fastening slider 201 is provided on the outer sliding sleeve of the lamp post 2, and the fastening slider 201 is located below the snap-on switch 505. When the fastening slider 201 moves downward, the bottom end exceeds the top end of the triangular block 401. When multiple sets of triangular blocks 401 form a conical drill bit, the top diameter is equal to the inner diameter of the bottom end of the fastening slider 201, so that the shape of the conical drill bit can be maintained when the fastening slider 201 moves downward. When several triangular blocks 401 drill the ground, the fastening slider 201 tightens the triangular blocks The function of 401 is to prevent several triangular blocks 401 from separating due to insufficient connection strength with the bottom of the lamp post 2 when drilling. Sliding up the fastening slider 201 can release the triangular block 401. Fastening nuts 6 are provided on the outer sides of the sliding frame 301 and the fastening slider 201. The fastening nuts 6 pass through the threaded holes on the sliding frame 301 and the fastening slider 201 and are inserted into the docking holes on the outer wall of the lamp post 2. The fastening nuts 6 can fix the positions of the sliding frame 301 and the fastening slider 201.
[0036] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A diamond-shaped solar lamp that is easy to install, comprising a diamond lamp (1) and a lamp post (2), wherein the diamond lamp (1) is placed on the top of the lamp post (2); characterized in that: It further includes a dual-mode conversion unit (3), the dual-mode conversion unit (3) includes a sliding frame (301) and a mounting handle (302), the sliding frame (301) is slidably sleeved outside the lamp post (2), one end of the mounting handle (302) passes through a frame hole (303) formed in the side wall of the sliding frame (301) and is hinged to the wall of the lamp post (2). By moving the sliding frame (301) up and down, the mounting handle (302) is driven to switch between a flat state and an upwardly inclined state. When the mounting handle is in the flat state, it is used as a handle for applying force when inserting the lamp post (2) downward. When the mounting handle (302) is in the upwardly inclined state, the end presses on the diamond lamp (1) and is used as a fixing member for the diamond lamp (1).
2. The diamond-shaped solar lamp according to claim 1, characterized in that: A card slot is formed at the end of the mounting handle (302). When the end of the mounting handle (302) contacts the wall of the diamond lamp (1), the convex rib on the side of the diamond lamp (1) is snapped into the card slot.
3. The diamond-shaped solar lamp according to claim 1, which is easy to install, is characterized in that: A drill bit unit (4) is provided at the bottom end of the lamp post (2) for inserting into the ground to support and install the lamp post (2).
4. The diamond-shaped solar lamp according to claim 3, which is easy to install, is characterized in that: The drill bit unit (4) is a conical drill bit surrounded by several triangular blocks (401). The top of the triangular block (401) is hinged to the bottom end of the lamp post (2). A pile driving unit (5) is connected inside the lamp post (2), and the pile driving unit (5) is connected to the top walls of multiple groups of triangular blocks (401) for controlling the lateral spreading of the multiple groups of triangular blocks (401) after being inserted into the ground.
5. The diamond-shaped solar lamp according to claim 1, wherein: A fastening nut (6) is provided on the sliding frame (301). The fastening nut (6) passes through a threaded hole formed in the wall of the sliding frame (301) and contacts the outer wall of the lamp post (2) to fix the position of the sliding frame (301) on the lamp post (2).
6. The diamond-shaped solar lamp according to claim 1, wherein: The diamond lamp (1) is a solar lamp (101) with a diamond lamp shell.
7. A diamond-shaped solar lamp that is easy to install according to claim 1, characterized in that: Multiple groups of the mounting handles (302) are distributed around the diamond lamp (1). The multiple groups of erected mounting handles (302) press and fix the diamond lamp (1) in the mounting groove at the top of the lamp post (2).