Anti-falling type three-legged floor lamp

By adding auxiliary feet and elastic parts to the feet of the three-legged floor lamp, the tripping problem caused by the gaps of the three-legged floor lamp is solved, providing more reaction time and improving stability and safety.

CN223153478UActive Publication Date: 2025-07-25DONGGUAN ZHONGYI TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422104387.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2025-07-25
Estimated Expiration
2034-08-29

AI Technical Summary

Technical Problem

When using the existing three-leg floor lamp, the space occupies a large amount of space, and the user may trip over the lamp when walking, causing it to fall.

Method used

Add auxiliary feet to the feet of the three-leg floor lamp, and connect the shielding part and the elastic member to make the auxiliary feet tilt when under force and expand the diameter of the shielding part, providing more reaction space and avoiding tilting.

Benefits of technology

By adding the design of auxiliary feet and elastic parts, users can get more reaction time when walking, avoiding foot tripping over the lamp, and improving the stability and safety of the three-leg floor lamp.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anti-falling type three-leg floor lamp which comprises three supporting legs arranged at equal intervals, a lamp body installed on the supporting legs and an auxiliary supporting leg arranged at the end, away from the lamp body, of any supporting leg. When the side edge of the auxiliary supporting leg is extruded, displacement is generated in the shielding part of the supporting leg, so that the shielding part elastically deforms corresponding to one side of the moving direction of the auxiliary supporting leg after the auxiliary supporting leg is stressed. The auxiliary supporting legs are additionally arranged on the supporting legs, and the auxiliary supporting legs are connected with the shielding parts and the elastic pieces on the supporting legs, so that when the auxiliary supporting legs are inclined due to stress, the shielding parts can deform under extrusion of the auxiliary supporting legs, the calibers of the shielding parts are enlarged, and the inclinable range of the auxiliary supporting legs is larger; the elastic piece can push the auxiliary supporting leg to move out of the inlet end of the shielding part, the length of the auxiliary supporting leg is increased, the auxiliary supporting leg makes contact with the ground, more reaction space is provided for a user, and it is avoided that when the user walks, the foot makes contact with the three-legged floor lamp, and then the floor lamp is stumbled.
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Description

Technical Field

[0001] The utility model relates to the technology in the field of floor lamps, in particular to a fall-proof three-legged floor lamp. Background Art

[0002] The use of lamps is indispensable in people's daily life. A lamp refers to an appliance that can transmit light, distribute, and change the light distribution of a light source, including all components required for fixing and protecting the light source except the light source, as well as the line accessories necessary for connecting to the power supply. Floor lamps are usually divided into upward-illuminating floor lamps and direct-illuminating floor lamps. They are generally arranged in the living room and rest areas and are used in combination with sofas and coffee tables to meet the needs of local lighting in the room and decorating the home environment.

[0003] For the three-legged floor lamp among floor lamps, it has three legs and uses the characteristic of stronger triangular stability to reduce the problem of tipping under the blowing of air currents when using the floor lamp. However, although the three-legged floor lamp has stronger stability due to the design of the three legs,

[0004] in daily use, there are gaps between the three legs of the floor lamp, and after it is placed on the ground, it occupies a large space. When a user walks, the foot may accidentally touch one of the three legs and trip over the three-legged floor lamp, causing damage to the three-legged floor lamp due to the collision with the ground. Summary of the Utility Model

[0005] In view of this, in view of the deficiencies existing in the prior art, the main purpose of the present utility model is to provide a fall-proof three-legged floor lamp, which solves the problem that there are gaps between the three legs of the floor lamp, and after it is placed on the ground, it occupies a large space. When a user walks, the foot may insert into the gap between the three legs and trip over one of the legs, causing the entire three-legged floor lamp to tip over.

[0006] To achieve the above purpose, the present utility model adopts the following technical solution: A fall-proof three-legged floor lamp includes three equally spaced legs and a lamp body installed on the legs, and an auxiliary leg provided at one end of any leg away from the lamp body;

[0007] When the side edge of the auxiliary leg is squeezed, it generates displacement in the shielding part of the leg, causing elastic deformation of one side of the shielding part corresponding to the moving direction of the auxiliary leg under force, so that the elastic member in the shielding part can drive the auxiliary leg to move out of the shielding part and increase the inclination angle.

[0008] Further, the shielding part is connected to one end of the leg relative to the auxiliary leg, and the shielding part includes at least two oppositely arranged blocking pieces.

[0009] Further, the blocking piece is inclined outward in the direction of the auxiliary leg, and one end of the auxiliary leg relative to the leg is inserted into the inner cavity of the shielding part.

[0010] Further, one end of the auxiliary support leg relative to the shielding portion is connected to the elastic member, and a smooth arc surface is provided at the connection between the auxiliary support leg and the elastic member.

[0011] Further, a guiding sliding groove is provided on the smooth arc surface, and the opposite end of the elastic member is slidably connected to the guiding sliding groove.

[0012] Further, the elastic member is a spring, one end of the spring is connected to the support leg, and the other end is connected to the auxiliary support leg.

[0013] Further, a cavity is provided at one end of the support leg relative to the auxiliary support leg, the spring is received in the cavity, and one end of the spring is connected to the inner wall of the cavity, and the other end is connected to the auxiliary support leg.

[0014] Further, the guiding sliding groove extends from one side of the smooth arc surface to the opposite side, multiple guiding sliding grooves are provided at equal intervals, and the multiple guiding sliding grooves communicate with each other at the center point of the auxiliary support leg.

[0015] Further, the lamp body includes an electrical component placement box connected to the support leg, a lamp shade mounted on the electrical component placement box, and a connecting frame for mounting the illuminating lamp.

[0016] Further, the connecting frame is installed inside the lamp shade, and the electrical component placement box is threadedly connected to the middle of the connecting frame.

[0017] Compared with the prior art, the present utility model has obvious advantages and beneficial effects. Specifically, as can be seen from the above technical solutions, by adding an auxiliary support leg to the support leg, the auxiliary support leg is connected to the shielding portion and the elastic member on the support leg. When the auxiliary support leg is stressed and tilted, the shielding portion can be deformed under the extrusion of the auxiliary support leg, and the diameter of the shielding portion is enlarged, so that the tiltable range of the auxiliary support leg is larger. As the auxiliary support leg tilts, the elastic member can push the auxiliary support leg to move outside the inlet end of the shielding portion, so that the length of the auxiliary support leg increases and contacts the ground, thereby providing more reaction space for the user and preventing the user from tripping over the tripod floor lamp when walking.

[0018] To more clearly illustrate the structural features and functions of the present utility model, the present utility model will be described in detail below with reference to the accompanying drawings and specific embodiments. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 is a perspective view of Embodiment 1 of the present utility model.

[0020] Figure 2 is an exploded view of Embodiment 1 of the present utility model.

[0021] Figure 3 is a connection diagram of the support leg and the auxiliary support leg of Embodiment 1 of the present utility model.

[0022] Figure 4 It is a three-dimensional diagram of the support leg of Example 1 of the present utility model.

[0023] Figure 5 It is a three-dimensional diagram of the auxiliary support leg of Example 1 of the utility model.

[0024] Figure 6 It is a cross-sectional view of the support leg of Example 1 of the utility model.

[0025] Description of the accompanying drawings:

[0026] 10 supporting feet, 11 shielding portion, 111 blocking sheet, 13 elastic member, 131 spring, 12 containing cavity;

[0027] 20 lamp body, 21 electrical component placement box, 22 lampshade, 23 connecting frame;

[0028] 30 auxiliary support foot, 31 smooth arc surface, 311 guide slide groove. DETAILED DESCRIPTION

[0029] Please refer to Figures 1-6 As shown, it shows the specific structure of the preferred first embodiment of the utility model, which is a drop-proof three-legged floor lamp, including three legs 10 arranged at equal intervals and a lamp body 20 installed on the legs 10, and an auxiliary leg 30 is provided at one end of any leg 10 away from the lamp body 20;

[0030] When the side edge of the auxiliary leg 30 is squeezed, it will be displaced in the shielding part 11 in the leg 10, so that the shielding part 11 will be elastically deformed on one side corresponding to the moving direction of the auxiliary leg 30 after the force is applied, so that the elastic member 13 in the shielding part 11 can drive the auxiliary leg 30 to move outside the shielding part 11 and increase the tilt angle. Compared with the existing three-legged floor lamp, which is erected on the ground by three legs 10, and the three legs 10 are an integrally formed rod body that cannot be bent, so that when the user's foot touches one of the three legs 10, it is easy to cause the entire three-legged floor lamp to fall over. In this tripod floor lamp, by adding an auxiliary leg 30 to the leg 10, when the user's foot touches one of the three legs 10, the auxiliary leg 30 will be squeezed, and the auxiliary leg 30 will be tilted and moved, so as to give the user enough reaction time to avoid the tripod floor lamp from falling over directly.

[0031] Specifically, there are three legs 10 for supporting the lamp body 20, and the three legs 10 are arranged in a triangle with equal spacing. The three legs 10 are placed upright on the ground. To prevent the user from tripping over the tripod floor lamp when the user touches one of the three legs 10 while walking, an auxiliary leg 30 is installed on one of the three legs 10. The auxiliary leg 30 is located at the lower end of the leg 10 and is used to support the tripod floor lamp. In addition, since there are three legs 10, in actual use, most tripod floor lamps have only one leg 10 close to the user's walking track, so there can be only one auxiliary leg 30 and it can be installed on the leg 10 close to the user's walking track. However, after the auxiliary leg 30 is installed on the leg, a height difference will be formed between the leg and the remaining two legs 10, and the tripod floor lamp cannot be used normally. For this reason, the length of the remaining two legs 10 is increased to make it the same as the length of the single leg 10 with the auxiliary leg 30 added.

[0032] In one embodiment, auxiliary legs 30 are installed on the three legs 10. After the auxiliary legs 30 are installed on the three legs 10, the user can place the tripod floor lamp at will.

[0033] like Figure 6 As shown, illustratively, the shielding portion 11 is connected to one end of the support leg 10 relative to the auxiliary support leg 30, and the shielding portion 11 includes at least two oppositely disposed blocking pieces 111. When the shielding portion 11 is the oppositely disposed blocking pieces 111, there is a gap between the two blocking pieces 111, and the blocking piece 111 with the gap is more likely to produce elastic deformation under the pressure of the auxiliary support leg 30, so that the auxiliary support leg 30 located between the blocking pieces 111 can be tilted at a larger angle, thereby providing the user with more reaction time instead of directly tripping over the tripod floor lamp.

[0034] like Figure 6 As shown, illustratively, the baffle 111 is tilted outwardly toward the auxiliary leg 30, and one end of the auxiliary leg 30 relative to the leg 10 is inserted into the inner cavity of the shielding portion 11. The baffle 111 is tilted outwardly toward the auxiliary leg 30, so that when the auxiliary leg 30 is squeezed, it is easier to squeeze the baffle 111 and make the baffle 111 tilted.

[0035] like Figure 6 As shown, illustratively, one end of the auxiliary leg 30 relative to the shielding portion 11 is connected to the elastic member 13, and a smooth arc surface 31 is provided at the connection between the auxiliary leg 30 and the elastic member 13. The surface of one end of the auxiliary leg 30 inserted in the inner cavity of the shielding portion 11 is provided with a smooth arc surface 31. By opening the smooth arc surface 31, when the auxiliary leg 30 is subjected to force, it is easier to tilt and it is easier to squeeze the baffle 111 to elastically deform, which not only expands the caliber of the shielding portion 11, but also makes the auxiliary leg 30 easier to tilt.

[0036] like Figure 5As shown, exemplarily, a guiding sliding groove 311 is provided on the smooth arc surface 31, and the opposite ends of the elastic member 13 are slidably connected to the guiding sliding groove 311. Since the supporting feet 10 and the elastic member 13 provided in the inner cavity of the supporting feet 10 are in a vertical state, but after the auxiliary supporting feet 30 inserted into the shielding portion 11 are subjected to force extrusion, they gradually change from longitudinal to transverse. This change will easily cause the elastic reset force exerted by the elastic member 13 to be unable to effectively push the auxiliary supporting feet 30 to move when the auxiliary supporting feet 30 and the supporting feet 10 are respectively fixed at both ends of the elastic member 13. For this reason, a guiding sliding groove 311 is opened at one end of the auxiliary supporting feet 30 corresponding to the elastic member 13. By opening the guiding sliding groove 311, the abutting end of the elastic member 13 moves in the guiding sliding groove 311 as the auxiliary supporting feet 30 move, so that when the auxiliary supporting feet 30 are tilted, the elastic member 13 can still effectively abut against the auxiliary supporting feet 30.

[0037] As Figure 6 shown, exemplarily, the elastic member 13 is a spring 131. One end of the spring 131 is connected to the supporting feet 10, and the other end is connected to the auxiliary supporting feet 30. When the three-legged floor lamp is in normal use, the spring 131 is in a compressed state after being extruded by the auxiliary supporting feet 30. After the side of the auxiliary supporting feet 30 is stressed, the spring 131 generates elastic reset and pushes the auxiliary supporting feet 30 to move outwards, so that the tilted auxiliary supporting feet 30 can still form a support with the ground.

[0038] A cavity 12 is provided at one end of the supporting feet 10 relative to the auxiliary supporting feet 30. The spring 131 is received in the cavity 12, and one end of the spring 131 is connected to the inner wall of the cavity 12, and the other end is connected to the auxiliary supporting feet 30. By opening the cavity 12, the length of the spring 131 can be increased and the length of the shielding portion 11 can be reduced, making the overall product more aesthetic. In addition, since the diameter of the shielding portion 11 is larger than that of the cavity 12, while facilitating the tilting of the auxiliary supporting feet 30, when the three-legged floor lamp is in normal use, the clamping of the inner wall of the shielding piece 111 on the auxiliary supporting feet 30 can also ensure the stability of the three-legged floor lamp during normal use.

[0039] As Figure 6 shown, exemplarily, the guiding sliding groove 311 extends from one side of the smooth arc surface 31 to the opposite side. A plurality of guiding sliding grooves 311 are provided and arranged at equal intervals, and the plurality of guiding sliding grooves 311 communicate with each other at the center point of the auxiliary supporting feet 30. When there are multiple guiding grooves 311 and the multiple guiding grooves 311 share a common center point, the tilting modes of the auxiliary supporting feet 30 can be covered as much as possible, so that users need to pay special attention to the position of the supporting feet 10 when placing the three-legged floor lamp.

[0040] The lamp body 20 includes an electrical component placement box 21 connected to the supporting feet 10, a lampshade 22 mounted on the electrical component placement box 21, and a connecting frame 23 for installing a lighting lamp.

[0041] The connecting frame 23 is installed inside the lampshade 22, and the electrical component placement box 21 is threadedly connected to the middle of the connecting frame 23.

[0042] In summary, the design focus of the present utility model lies in adding an auxiliary support leg 30 to the lower end of the support leg 10 that traditionally supports the lamp body 20, and adding an occlusion part 11 between the auxiliary support leg 30 and the support leg 10. The occlusion part 11 covers the upper end of the auxiliary support leg 30. One end of a spring 131 fixed to the lower end of the support leg 10 is slidably connected to the upper end of the auxiliary support leg 30 through a guiding chute 311. Between the spring 131 and the guiding chute 311, it can be through a slider, or the end of the spring 131 is inserted into the guiding chute 311 and adaptability improvements are made, so that the spring 131 can move along the guiding chute 311 but will not separate from the guiding chute 311. At this time, when the auxiliary support leg 30 is stressed and tilted, the spring 131 can be elastically reset to make the tilted auxiliary support leg 30 contact the ground as much as possible, so as to provide enough reaction time for the user to avoid the situation that when using a traditional three-legged floor lamp, the user's foot accidentally contacts the support leg 10 and directly trips over the floor lamp when walking, leaving insufficient reaction time for the user.

[0043] The above is only a preferred embodiment of the present utility model, and does not impose any limitation on the technical scope of the present utility model. Therefore, any minor modifications, equivalent changes, and decorations made to the above embodiments based on the technical essence of the present utility model still fall within the scope of the technical solution of the present utility model.

Claims

1. A fall-proof three-legged floor lamp, comprising three legs (10) arranged at equal intervals and a lamp body (20) installed on the legs (10), characterized in that: An auxiliary support leg (30) is provided at one end of any one of the support legs (10) away from the lamp body (20); When the side edge of the auxiliary support leg (30) is squeezed, a displacement is generated in the shielding part (11) of the support leg (10), causing elastic deformation of one side of the shielding part (11) corresponding to the moving direction of the auxiliary support leg (30) after being stressed, so that the elastic member (13) in the shielding part (11) can drive the auxiliary support leg (30) to move out of the shielding part (11) and increase the inclination angle.

2. The anti-falling three-legged floor lamp according to claim 1, characterized in that: The shielding part (11) is connected to one end of the support leg (10) relative to the auxiliary support leg (30), and the shielding part (11) includes at least two oppositely arranged retaining pieces (111).

3. The anti-falling three-legged floor lamp according to claim 2, characterized in that: The retaining piece (111) is inclined outward in the direction of the auxiliary support leg (30), and one end of the auxiliary support leg (30) relative to the support leg (10) is inserted into the inner cavity of the shielding part (11).

4. A fall-proof three-legged floor lamp according to claim 1, characterized in that: One end of the auxiliary support leg (30) relative to the shielding part (11) is connected to the elastic member (13), and a smooth arc surface (31) is provided at the connection between the auxiliary support leg (30) and the elastic member (13).

5. The anti-fall three-legged floor lamp according to claim 4, characterized in that: A guiding chute (311) is provided on the smooth arc surface (31), and the opposite end of the elastic member (13) is slidably connected to the guiding chute (311).

6. The anti-falling three-legged floor lamp according to claim 5, characterized in that: The elastic member (13) is a spring (131), one end of the spring (131) is connected to the support leg (10), and the other end is connected to the auxiliary support leg (30).

7. The anti-fall three-legged floor lamp according to claim 6, wherein: A receiving cavity (12) is provided at one end of the support leg (10) relative to the auxiliary support leg (30), the spring (131) is received in the receiving cavity (12), and one end of the spring (131) is connected to the inner wall of the receiving cavity (12), and the other end is connected to the auxiliary support leg (30).

8. The anti-falling three-legged floor lamp according to claim 5, characterized in that: The guiding chute (311) extends from one side of the smooth arc surface (31) to the opposite side, and there are multiple guiding chutes (311) arranged at equal intervals, and the multiple guiding chutes (311) communicate with each other at the center point of the auxiliary support leg (30).

9. The anti-falling three-legged floor lamp according to claim 1, characterized in that: The lamp body (20) includes an electrical component placement box (21) connected to the support leg (10), a lamp cover (22) installed on the electrical component placement box (21), and a connecting frame (23) for installing a lighting lamp.

10. A fall-proof three-legged floor lamp according to claim 9, characterized in that: The connecting frame (23) is installed inside the lamp cover (22), and the electrical component placement box (21) is threadedly connected to the middle of the connecting frame (23).