Stackable floor lamp

DE202026100456U1Active Publication Date: 2026-05-07OUYANG XIAOLING DONGGUAN CITY
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Patent Information

Authority / Receiving Office
DE · DE
Patent Type
Utility models
Current Assignee / Owner
OUYANG XIAOLING DONGGUAN CITY
Filing Date
2026-01-28
Publication Date
2026-05-07

AI Technical Summary

Technical Problem

Traditional floor lamps have fixed constructions that limit light direction and distribution, leading to uneven light distribution, glare, and shadows, and are cumbersome to disassemble and maintain.

Method used

A modular, pluggable floor lamp with a flexible, translucent lamp body and detachable lighting element that can be bent to any angle, featuring a cavity for light refraction and mixing, and a stable connection system for easy assembly and disassembly.

Benefits of technology

The lamp provides a uniform and softer lighting effect, reducing glare and shadows, improves visual comfort, extends lifespan, and reduces packaging and transport costs through flexibility and ease of handling.

✦ Generated by Eureka AI based on patent content.

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Abstract

A pluggable floor lamp (100), characterized in that it comprises a flexible lighting device (2000); wherein the flexible lighting device (2000) comprises a translucent lamp body (2001) and a lighting element (2002); the lamp body (2001) is a flexible, translucent tube, the lighting element (2002) comprises a flexible light panel (2101) and several LEDs (2102) electrically connected to the flexible light panel (2101), and the lighting element (2002) together with the lamp body (2001) can be bent at any angle.
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Description

TECHNICAL AREA

[0001] The present utility model relates to the technical field of lighting fixtures and in particular to a pluggable floor lamp. STATE OF THE ART

[0002] In modern lighting design, floor lamps are very popular due to their flexible design and multifunctionality. Traditional floor lamps typically have a fixed construction and, while offering basic lighting functions, have certain limitations in terms of adjusting the direction and distribution of the light. At the same time, disassembly and maintenance of traditional floor lamps are comparatively cumbersome, meaning users often have to invest more time and effort when changing bulbs or carrying out repairs.

[0003] To overcome these drawbacks, the modular floor lamp design was developed. Its modular design allows for easy disassembly and combination of individual lamp components. However, most modular floor lamps currently available on the market exhibit uneven light distribution and cannot provide a soft lighting effect.

[0004] Therefore, the present utility model proposes a novel, modular floor lamp. This floor lamp exhibits a more uniform and softer light effect, reduces glare and shadows, and thus improves light quality and visual comfort. Furthermore, the light element can bend to any angle along with the lamp body. This not only reduces damage and wear caused by the lamp's rigid shape during use but also extends its lifespan. In addition, the flexible lamp body can be rolled up for packaging, significantly reducing packaging volume and transport costs. CONTENTS OF THE INSTRUCTION MANUAL

[0005] To overcome the shortcomings of the prior art, this utility model offers a modular floor lamp. The floor lamp provides a more uniform and softer light effect, reduces glare and shadows, and thus improves light quality and visual comfort.

[0006] To solve this technical problem, the present utility model proposes the following technical solution.

[0007] The present utility model provides a pluggable floor lamp comprising a flexible lighting device; wherein the flexible lighting device comprises a translucent lamp body and a lighting element; the lamp body is a flexible, translucent tube, the lighting element comprises a flexible light plate and several LEDs electrically connected thereto, and the lighting element together with the lamp body can be bent at any angle.

[0008] As an improvement to the utility model, the lamp body has at least one mounting space, the lighting element is detachably mounted in the mounting space; the lamp body also has at least one cavity, the cavity is arranged parallel to the mounting space, light from the lighting element enters this cavity, is refracted and mixed there.

[0009] As an improvement to the utility model, both ends of the lamp body have openings, the openings are connected to the cavity, allowing the lighting element to be installed in the assembly space in a way that allows it to be disassembled through the openings.

[0010] As an improvement to the utility model, a first sealing cover and a second sealing cover are attached to both ends of the lamp body to seal the openings; the first sealing cover has a through-hole, the through-hole is connected to the mounting space, whereby the lighting element is removablely installed in the mounting space and led outwards through the through-hole to establish an electrical connection with an external power source.

[0011] As an improvement to the utility model, sealing pins are arranged on both the first and second sealing covers; the sealing pins are installed in the cavity to seal the cavity.

[0012] As an improvement to the utility model, the cavity is located on the outside of the mounting space; the outer wall of the cavity has an arc-shaped structure, allowing the light from the luminaire element to enter the cavity, where it is refracted and mixed before finally being emitted to the outside.

[0013] As an improvement to the utility model, the wall thickness of the outside of the mounting space is 0.1 mm to 100 mm, and the wall thickness of the outside of the cavity is 0.2 mm to 120 mm; in addition, the receiving area of ​​the cavity is larger than the receiving area of ​​the mounting space, which allows the light to be sufficiently refracted and mixed in the cavity.

[0014] As an improvement to the utility model, the floor lamp further comprises a support component; the flexible lighting device is detachably connected to the support component; the support component comprises at least one first support element and at least one second support element, the first support element and the second support element are detachably connected by a first connecting pin.

[0015] As an improvement to the utility model, the first support element and the second support element have hollow cylindrical structures; in each of the first support element and the second support element, a first partition wall is arranged, the first partition wall divides the interior of each of the first support element and the second support element into a first receiving space and a second receiving space; the lighting device is installed in the first receiving space in a demountable manner, with the outer wall of the lamp body abutting the inner wall of the first receiving space.

[0016] As an improvement to the utility model, first plug holes are formed at both ends of the second receiving space, the first connecting pin is inserted into the first plug holes, thereby detachably connecting the first support element and the second support element to each other.

[0017] As an improvement to the utility model, at least one fastening opening is provided at each end of the first partition wall, and a fastening element is arranged in the fastening opening; when the first connecting pin is inserted into the first socket hole, the fastening element rests against the first connecting pin and thus fixes the first connecting pin in the first socket hole.

[0018] As an improvement to the utility model, a first groove and a second groove are formed on the side of the first partition facing the second receiving space; one side of the first connecting pin has a first web and a second web; when the first connecting pin of the first support element is inserted into the first insertion hole of the second support element, the first web engages in the first groove and the second web engages in the second groove.

[0019] As an improvement to the utility model, both the first support element and the second support element have a mounting opening; the mounting opening is connected to the first receiving space, whereby the lamp body can be installed in the first receiving space in a way that allows it to be disassembled through the mounting opening.

[0020] As an improvement to the utility model, mounting strips are provided on both side walls of the first receiving space; the two side walls of the lamp body have mounting grooves corresponding to the mounting strips; the mounting strips snap into the mounting grooves in such a way that the lamp body is detachably connected to the first receiving space.

[0021] As an improvement to the utility model, the pluggable floor lamp further comprises a base, the base is detachably connected to the support component; the flexible lighting device is detachably connected to the support component and electrically connected to the base.

[0022] As an improvement to the utility model, the base has a mounting base plate, a central connecting column is attached to the mounting base plate, and the central connecting column is detachably connected to the support component via a second connecting pin.

[0023] As an improvement to the utility model, second plug holes are formed at both ends of the support component, the second connecting pin is inserted into a second plug hole, thereby allowing the base and the support component to be detachably connected to each other.

[0024] As an improvement to the utility model, the central connecting column has a hollow cylindrical structure; a second partition is arranged in the central connecting column, the second partition divides the interior of the central connecting column into a third receiving space and a fourth receiving space; the second connecting pin is arranged in the third receiving space and rests against the inner wall surfaces of the third receiving space;

[0025] As an improvement to the utility model, the flexible lighting device is removable and mounted in the support component, extending into the fourth receiving chamber to connect electrically to the base.

[0026] As an improvement to the utility model, a cover plate is provided at the upper end of the support component for sealing the support component. Advantageous effect of the utility model:

[0027] The utility model provides a modular floor lamp that incorporates a flexible lighting element. The lamp body is a flexible, translucent tube, and the lighting element comprises a flexible light panel and several electrically connected LEDs. The lighting element, together with the lamp body, can be bent to any desired angle. This floor lamp of the utility model exhibits a more uniform and softer lighting effect, reduces glare and shadows, and thus improves light quality and visual comfort. Furthermore, the lighting element can bend to any angle along with the lamp body. This not only reduces damage and wear caused by the lamp's rigid shape during use but also extends its lifespan. Additionally, the flexible lamp body can be rolled up for packaging, significantly reducing packaging volume and transport costs. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] To clarify the technical solutions in the embodiments of this utility model, the drawings required to describe these embodiments are briefly explained below. The drawings in the following description represent only a few embodiments of this utility model. A person skilled in the field can derive further drawings from these without inventive step.

[0029] The utility model is further explained below with reference to the drawings and examples of its implementation. Fig. Figure 1 is a schematic representation of the entire structure of the utility model. Fig. Figure 2 is a schematic representation of the structure of the cut along AA of the utility model. Fig. Figure 3 is an exploded view of the connection structure between the first support element and the second support element. Fig. Figure 4 is an enlarged schematic representation of the structure of area B in Fig. 3. Fig. Figure 5 is an exploded view of the connection structure between the flexible lighting device and the support component. Fig. Figure 6 is a schematic representation of the structure of the flexible lighting device. Fig. Figure 7 is an enlarged schematic representation of the structure of area C in Fig. 6. Fig. Figure 8 is an enlarged schematic representation of the structure of area D in Fig. 7. Fig. Figure 9 is an exploded view of the connection structure between the base and the support component. Fig. Figure 10 is a schematic representation of the structure of the base. DETAILED EXECUTION FORMS

[0030] See Fig.1-10. The present utility model discloses a pluggable floor lamp 100 comprising a support component 1000 and a flexible lighting device 2000 detachably connected to the support component 1000. The flexible lighting device 2000 comprises a translucent lamp body 2001 and a lighting element 2002. The lamp body 2001 has at least one mounting space 2003, and the lighting element 2002 is detachably mounted in the mounting space 2003. The lamp body 2001 also has at least one cavity 2004, which is arranged parallel to the mounting space 2003. Light from the lighting element 2002 enters this cavity 2004, is refracted there, and thus mixed. The support component 1000 and the flexible lighting device 2000 are detachably connected to one another.This allows the user to freely combine and disassemble components as needed, increasing application flexibility and ease of handling, thus meeting the requirements of different scenarios and environments. Furthermore, the light from the luminaire element 2002 is refracted and thus mixed by the cavity 2004. This provides a more uniform and softer lighting effect, effectively reduces light spots and shadows, and improves light quality and visual comfort. Additionally, the cavity 2004 in the lamp body 2001 reduces the weight of the lamp body 2001, thereby preventing it from falling off the support component 1000.

[0031] In the exemplary embodiment, the support component 1000 comprises at least one first support element 1001 and at least one second support element 1002, and the first support element 1001 and the second support element 1002 are detachably connected to each other by a first connecting pin 3000.

[0032] Specifically, the first support element 1001 and the second support element 1002 have hollow cylindrical structures. A first partition 1003 is arranged in each of the first support element 1001 and the second support element 1002. The first partition 1003 divides the interior of each of the first support element 1001 and the second support element 1002 into a first receiving chamber 1004 and a second receiving chamber 1005. The lighting device 2001 is installed in the first receiving chamber 1004 in a removable manner, with the outer wall of the lighting device 2001 abutting the inner wall of the first receiving chamber 1004. At both ends of the second receiving space 1005, first plug holes 1101 are formed, the first connecting pin 3000 is inserted into the first plug holes 1101, thereby detachably connecting the first support element 1001 and the second support element 1002 to each other.

[0033] In this embodiment, the first support element 1001 and the second support element 1002 are detachably connected to each other via the first connecting pin 3000. This allows the user to easily disassemble and combine the elements as needed. This makes installation, transport, and storage more flexible and user-friendly. Furthermore, the arrangement of the first partition 1003 allows the internal spaces of the first support element 1001 and the second support element 1002 to be fully utilized, resulting in a more compact overall structure for the floor lamp.

[0034] In the exemplary embodiment, at least one (preferably two) fastening openings 1102 are formed at each end of the first partition 1003, and a fastening element is arranged in the fastening opening 1102. When the first connecting pin 3000 is inserted into the first insertion hole 1101, the fastening element rests against the first connecting pin 3000 and thus secures the first connecting pin 3000 in the first insertion hole 1101. The fastening element can be a screw or a pin (one or more types). The arrangement of the fastening opening 1102 and the fastening element effectively prevents the first connecting pin 3000 from unintentionally detaching or loosening during the insertion process, thereby increasing the connection stability of the overall structure.

[0035] In the exemplary embodiment, a first groove 1103 and a second groove 1104 are formed on the side of the first partition 1003 facing the second receiving space 1005. One side of the first connecting pin 3000 has a first web 3001 and a second web 3002. When the first connecting pin 3000 of the first support element 1001 is inserted into the first insertion bore 1101 of the second support element 1002, the first web 3001 engages in the first groove 1103 and the second web 3002 engages in the second groove 1104. By forming a first groove 1103 and a second groove 1104 as well as a first web 3001 and a second web 3002, the webs and the grooves lock together when the first connecting pin 3000 of the first support element 1001 is inserted into the first insertion bore 1101 of the second support element 1002.This effectively ensures a stable connection between the first support element 1001 and the second support element 1002 and prevents loosening or detachment during use.

[0036] In the exemplary embodiment, both the first support element 1001 and the second support element 1002 have a mounting opening 1006. The mounting opening 1006 is connected to the first receiving space 1004, whereby the lighting device 2001 can be installed in the first receiving space 1004 in a manner that allows it to be removed via the mounting opening 1006.

[0037] Specifically, mounting strips 1007 are provided on each of the two side walls of the first receiving chamber 1004. The two side walls of the lamp body 2001 have mounting grooves 2005 that correspond to the mounting strips 1007. The mounting strips 1007 snap into the mounting grooves 2005 in such a way that the lamp body 2001 is detachably connected to the first receiving chamber 1004. The mounting strips 1007 snap into the mounting grooves 2005 on the lamp body 2001, which allows for particularly easy and quick installation and removal of the lamp body 2001. Furthermore, the locking mechanism between the mounting strips 1007 and the mounting grooves 2005 provides a stable connection, ensuring the stable fastening of the lamp body 2001 in the first receiving space 1004 after installation, effectively preventing loosening or detachment and thus increasing the stability and reliability of the entire construction.

[0038] In this embodiment, the lamp body 2001 is a flexible, translucent tube. The light source 2002 comprises a flexible light panel 2101 and several LEDs 2102 electrically connected to it. The light source 2002, together with the lamp body 2001, can be bent at any desired angle. The flexible, translucent tube reduces damage and wear that would otherwise occur with a rigid shape when using the lamp. This extends the lamp's service life and ensures its operational stability and durability during long-term use.

[0039] In the exemplary embodiment, both ends of the lamp body 2001 each have openings 2103. The openings 2103 are connected to the cavity 2004, allowing the light element 2002 to be easily installed and removed through these openings 2103. If the light element 2002 needs to be replaced or serviced, the user can quickly perform the operation via the openings 2103 without having to disassemble the entire device. This increases ease of use.

[0040] In the exemplary embodiment, a first sealing cover 2104 and a second sealing cover 2105 are attached to each end of the lamp body 2001 to seal the openings 2103. The first sealing cover 2104 and the second sealing cover 2105 effectively seal the openings 2103 at both ends of the lamp body 2001. This prevents the ingress of dust and foreign matter into the interior of the lamp body 2001, thereby protecting the light source 2002 and the internal structure, and extending the service life of the device. The first sealing cover 2104 has a through-hole 2106. The through-hole 2106 is connected to the mounting space 2103, allowing the light source 2002 to be detachably installed in the mounting space 2003 and guided outwards through the through-hole to establish an electrical connection with an external power source.

[0041] In the exemplary embodiment, sealing pins 2107 are arranged on both the first sealing cover 2104 and the second sealing cover 2105. The sealing pins 2107 are installed in the cavity 2004 to seal the cavity 2004. This prevents the ingress of dust, moisture, and foreign matter into the interior of the lamp body 2001. This avoids environmental influences on the light-emitting element 2002 and the internal circuitry. As a result, electrical malfunctions and safety risks caused by external factors are reduced, thus increasing operational safety.

[0042] In the exemplary embodiment, the wall thickness of the outer surface of the mounting space 2003 is 0.1 mm to 100 mm, and the wall thickness of the outer surface of the cavity 2004 is 0.2 mm to 120 mm. The cavity 2004 has a relatively large receiving volume, which allows light to be sufficiently refracted and mixed within the cavity 2004. This results in a more uniform and softer illumination effect. Furthermore, the outer wall of the cavity 2004 has an arched structure that can produce a multi-angled scattering effect of the light.

[0043] In another embodiment of the utility model, the pluggable floor lamp 100 further comprises a base 4000, the base 4000 being detachably connected to the support component 1000. The flexible lighting device 2000 is detachably connected to the support component 1000 and electrically connected to the base 4000. The detachable connection between the base 4000 and the support component 1000 allows the user to conveniently assemble and disassemble the floor lamp.

[0044] In the exemplary embodiment, the base 4000 has a mounting base plate 4001. A central connecting column 4002 is attached to the mounting base plate 4001. The central connecting column 4002 is detachably connected to the support component 1000 via a second connecting pin 4003. Specifically, second insertion holes 4004 are formed at each of the two ends of the support component 1000. The second connecting pin 4003 is inserted into the second insertion hole 4004 of the lower end of the support component 1000, thereby detachably connecting the base 4000 and the support component 1000. The central connecting column 4002 is connected to the support component 1000 via the second connecting pin 4003. This results in increased stability of the connection between the base 4000 and the support component 1000, prevents loosening or detachment during use and thus increases the stability and reliability of the entire construction.

[0045] In the exemplary embodiment, the central connecting column 4002 has a hollow cylindrical structure. A second partition 4101 is arranged within the central connecting column 4002. This partition divides the interior of the central connecting column 4002 into a third receiving space 4102 and a fourth receiving space 4103. The second connecting pin 4003 is located in the third receiving space 4102 and rests against the inner wall surfaces of this space. The flexible lighting device 2000 is detachably mounted in the support component 1000 and extends into the fourth receiving space 4103 to connect electrically to the base 4000. The design of the hollow cylindrical structure and the second partition 4101 allows for full utilization of the interior space.The third receiving chamber 4102 and the fourth receiving chamber 4103 can each accommodate different components, which optimizes the internal layout, reduces wasted space and thus increases the compactness and functionality of the device.

[0046] In the exemplary embodiment, a cover plate 4005 is provided at the upper end of the support component 1000 for sealing it. This effectively seals the support component 1000 to prevent the ingress of dust, moisture, and other contaminants into its interior. This protects the internal components and extends the service life of the device. Furthermore, it can improve the aesthetic appearance of the device.

[0047] The foregoing descriptions represent one or more embodiments provided in conjunction with the specific content. It is not assumed that the actual implementation of the utility model is limited exclusively to these descriptions. All approximations or correspondences with the methods, structures, etc., of this utility model, as well as all technical derivations or substitutions based on the concept of this utility model, are to be considered as falling within the scope of protection of this utility model.

Claims

[1] A stackable floor lamp (100), characterized by , that the flexible lighting device (2000) comprises; wherein the flexible lighting device (2000) comprises a translucent lamp body (2001) and a lighting element (2002); the lamp body (2001) is a flexible, translucent tube, the lighting element (2002) comprises a flexible light panel (2101) and several LEDs (2102) electrically connected to the flexible light panel (2101), and the lighting element (2002) together with the lamp body (2001) can be bent at any angle. [2] Stackable floor lamp (100) according to claim 1, characterized by, that the lamp body (2001) has at least one mounting space (2003), the luminaire element (2002) is detachably mounted in the mounting space (2003); the lamp body (2001) also has at least one cavity (2004), the cavity (2004) is arranged parallel to the mounting space (2003), light from the luminaire element (2002) enters this cavity (2004), is refracted and mixed there. [3] Stackable floor lamp (100) according to claim 2, characterized by , that both ends of the lamp body (2001) each have openings (2103), the openings (2103) are connected to the cavity (2004), whereby the luminaire element (2002) can be installed in the assembly space (2003) in a way that allows it to be removed through the openings (2103). [4] Stackable floor lamp (100) according to claim 3, characterized by, that at both ends of the lamp body (2001) a first sealing cover (2104) and a second sealing cover (2105) are attached to seal the openings (2103); the first sealing cover (2104) has a through-hole (2106), the through-hole (2106) is connected to the mounting space (2003), whereby the luminaire element (2002) is detachably installed in the mounting space (2003) and led outwards through the through-hole (2106) to establish an electrical connection with an external power source; that sealing pins (2107) are arranged on the first sealing cover (2104) and the second sealing cover (2105), the sealing pins (2107) are installed in the cavity (2004) to seal the cavity (2004). [5] Stackable floor lamp (100) according to claim 2, characterized by, that the cavity (2004) is located on the outside of the mounting space (2003), the outer wall of the cavity (2004) has an arc-shaped structure, allowing the light from the luminaire element (2002) to enter the cavity (2004), where it is refracted and mixed before finally being emitted to the outside; that the wall thickness of the outside of the mounting space (2003) is 0.1 mm to 100 mm, and the wall thickness of the outside of the cavity (2004) is 0.2 mm to 120 mm; furthermore, the receiving area of ​​the cavity (2004) is larger than the receiving area of ​​the mounting space (2003), allowing the light to be sufficiently refracted and mixed in the cavity (2004). [6] Stackable floor lamp (100) according to claim 2, characterized by, that the floor lamp (100) further comprises a support component (1000), the flexible lighting device (2000) is detachably connected to the support component (1000); the support component (1000) comprises at least one first support element (1001) and at least one second support element (1002), the first support element (1001) and the second support element (1002) are detachably connected by a first connecting pin (3000); that the first support element (1001) and the second support element (1002) have hollow cylindrical structures; a first partition (1003) is arranged in each of the first support element (1001) and the second support element (1002), the first partition (1003) dividing the interior of each of the first support element (1001) and the second support element (1002) into a first receiving space (1004) and a second receiving space (1005); the lighting device (2000) is installed in the first receiving space (1004) in a demountable manner, with the outer wall of the lamp body (2001) abutting the inner wall of the first receiving space (1004); that first plug holes (1101) are formed at both ends of the second receiving space (1005), the first connecting pin (3000) is inserted into the first plug holes (1101), thereby detachably connecting the first support element (1001) and the second support element (1002). [7] Stackable floor lamp (100) according to claim 6, characterized by, that at least one fastening opening (1102) is formed at each end of the first partition (1003), and that a fastening element is arranged in the fastening opening (1102); and that, when the first connecting pin (3000) is inserted into the first insertion hole (1101), the fastening element rests against the first connecting pin (3000) and fixes the first connecting pin (3000) in the first insertion hole (1101) in such a way; that on the side of the first partition (1003) facing the second receiving space (1005), a first groove (1103) and a second groove (1104) are formed; one side of the first connecting pin (3000) has a first web (3001) and a second web (3002);and that when the first connecting pin (3000) of the first support element (1001) is inserted into the first insertion hole (1101) of the second support element (1002), the first web (3001) engages in the first groove (1103) and the second web (3002) engages in the second groove (1104). [8] Stackable floor lamp (100) according to claim 7, characterized bythat both the first support element (1001) and the second support element (1002) have a mounting opening (1006); that the mounting opening (1006) is connected to the first receiving space (1004), whereby the lamp body (2001) is installed in the first receiving space (1004) in a way that allows it to be removed and installed through the mounting opening (1006); that mounting strips (1007) are formed on both side walls of the first receiving space (1004); that the two side walls of the lamp body (2001) have mounting grooves (2005) corresponding to the mounting strips (1007); that the mounting strips (1007) snap into the mounting grooves (2005) in such a way that the lamp body (2001) is detachably connected to the first receiving space (1004). [9] Stackable floor lamp (100) according to claim 8, characterized by, that the pluggable floor lamp (100) further comprises a base (4000), the base (4000) being detachably connected to the support component (1000); the flexible lighting device (2000) being detachably connected to the support component (1000) and electrically connected to the base (4000). [10] Stackable floor lamp (100) according to claim 9, characterized by , that the base (4000) has a mounting base plate (4001), a central connecting column (4002) is attached to the mounting base plate (4001), the central connecting column (4002) is detachably connected to the support component (1000) via a second connecting pin (4003); that at both ends of the support component (1000) second plug holes (4004) are formed, the second connecting pin (4003) is inserted into a second plug hole (4004), whereby the base (4000) and the support component (1000) are detachably connected to each other; that the central connecting column (4002) has a hollow cylindrical structure; a second partition (4101) is arranged in the central connecting column (4002), the second partition (4101) divides the interior of the central connecting column (4002) into a third receiving space (4102) and a fourth receiving space (4103); the second connecting pin (4003) is arranged in the third receiving space (4102) and rests against the inner wall surfaces of the third receiving space (4102); that the flexible lighting device (2000) is detachably mounted in the support component (1000) and extends into the fourth receiving space (4103) to connect electrically to the base (4000); that a cover plate (4005) is provided at the upper end of the support component (1000) for sealing the support component (1000).