A ceiling fan lamp which is convenient to disassemble and assemble
Patent Information
- Application Number
- CN202522191098.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-15
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-10-15
AI Technical Summary
[0005]本实用新型要解决的技术问题是提供一种拆装便捷的吊扇灯,通过设置将支架组件4、固定板以及锁定组件的配合,以克服现有技术中存在的吊扇灯体积过大,导致的运输不便、维护困难,以及连接稳定性可能受振动影响的问题
[0028]1、本申请的灯体由多个独立的灯源模块通过连接件可拆卸地连接成闭环结构,支架组件与灯源模块为了拆卸结构,极大地方便了产品的包装、运输和储存,有效降低了运输过程中因体积庞大或碰撞导致的损坏风险。
Smart Images

Figure CN224785982U_ABST
Abstract
Description
[Technical Field]
[0001] This utility model relates to the field of ceiling fan technology, specifically to a ceiling fan light that is easy to assemble and disassemble. [Background Technology]
[0002] Currently, ceiling fan lights on the market typically integrate lighting fixtures with ceiling fan functions to meet users' dual needs for air circulation and illumination. However, the existing ceiling fan lights mostly have a one-piece structure for the lamp body or a separate but fixed structure, resulting in a large product size, inconvenient packaging and transportation, and susceptibility to damage from collisions during transportation.
[0003] Therefore, solutions have emerged on the market that allow for the detachment of the lamp body and the fan body to address the aforementioned issues. For example, a split-type fan-lamp structure is disclosed in application number "202422336086.7". In this application, the light source is composed of several lamp body modules 3 assembled together, and the lamp body modules 3 are then connected to the mounting shell via support members 5. (See the appendix to the specification of this application.) Figures 1 to 3 As you can see, the lamp body module 3 and the support component 5 are connected by screws. Even if the lamp body module 3 and the support component 5 are connected after the factory installation, the structure is still relatively large and is prone to damage during transportation. If they are packaged separately, it will be more inconvenient for users to install.
[0004] In view of the above-mentioned technical problems, this utility model is proposed in this study. [Utility Model Content]
[0005] The technical problem to be solved by this utility model is to provide a ceiling fan light that is easy to assemble and disassemble. By setting up the bracket assembly 4, the fixing plate and the locking assembly, the problem of the existing ceiling fan light being too large, resulting in inconvenient transportation, difficult maintenance and the connection stability being affected by vibration is overcome.
[0006] To solve the above-mentioned technical problems, this utility model proposes a ceiling fan light that is easy to assemble and disassemble, comprising:
[0007] Hanger 1 is detachably connected to the ceiling;
[0008] The ceiling fan body 2 is located at the bottom of the bracket 1;
[0009] The lamp body 3 is composed of several lamp source modules 30, and any two adjacent lamp source modules 30 are detachably connected by connectors 31, so that all lamp source modules (30) are assembled together in a closed loop structure.
[0010] Multiple bracket assemblies 4, each bracket assembly 4 including a support member 40 and a mounting part 41, the mounting part 41 including a base plate 410, an inner side plate 411 and an outer side plate 412, the inner side plate 411 being connected to the inner side of the base plate 410, the outer side plate 412 being connected to the outer side of the base plate 410, the base plate 410, the inner side plate 411 and the outer side plate 412 forming a groove 413 for supporting the lamp body 3, the upper end of the support member 40 being detachably connected to the hanger 1 or the ceiling fan body 2, and the lower end of the support member 40 being connected to the upper end of the inner side plate 411;
[0011] The fixing plate 5 has an L-shaped structure and includes a first plate 50 and a second plate 51 that are perpendicular to each other. The first plate 50 is hinged to the top of the inner side plate 411 or the lower end of the support member 40 via a first axis A, so that the fixing plate 5 can rotate around the first axis A. This allows the fixing plate 5 to have a locked state for locking the lamp source module 30 in the groove 413, and an unlocked state for opening the groove 413 so that the lamp source module 30 can be detached from the groove 413. When the lamp body 3 is in the locked state, the second plate 51 rests on the outer side surface of the outer side plate 412.
[0012] The locking component 6 is detachably mounted on the second plate 51 and is used to fix the second plate 51 to the outer plate 412 when the lamp body 3 is in the locked state, thereby fixing the lamp body 3 in the groove 413.
[0013] As described above, in a ceiling fan light that is easy to install and remove, the locking component 6 includes:
[0014] A pin sleeve 60, wherein a cavity 600 is formed along its length direction, and when the lamp body 3 is in the locked state, the front part of the pin sleeve 60 can pass through the second plate 51 and the outer plate 412.
[0015] A plurality of springs 61, and a plurality of spring holes 610 communicating with the cavity 600 are formed circumferentially at the front part of the pin sleeve 60. The springs 61 are arranged in the spring holes 610 in a corresponding manner and can partially extend out or retract from the pin sleeve 60.
[0016] The elastic reset component 62 is movably disposed within the cavity 600 and is used to provide a force to the spring bead 61 to keep it extending outward, and the rear end of the elastic reset component 62 can extend movably beyond the rear end of the pin sleeve 60.
[0017] The clamping plate 63 is movably connected to the rear of the pin sleeve 60, and the clamping plate 63 is connected to the elastic reset assembly 62;
[0018] Pull ring 64 is connected to the rear end of the elastic reset assembly 62 and is used to drive the elastic reset assembly 62 to move within the cavity 600 to release the locking of the elastic reset assembly 62 on the spring bead 61, so that the front part of the spring bead 61 can retract into the spring hole 610.
[0019] When the lamp body 3 is in the locked state, the pin sleeve 60 passes through the second plate 51 and the outer plate 412. The spring bead 61 extends out and is clamped to the outside of the outer plate 412 under the action of the elastic reset component 62. At the same time, the clamping plate 63 cooperates with the spring bead 61 under the drive of the elastic reset component 62 to clamp the second plate 51 and the outer plate 412.
[0020] As described above, in a ceiling fan light that is easy to assemble and disassemble, the rear end of the pin sleeve 60 is formed with an opening 601 that connects to the cavity 600. A fixing cover 602 is provided at the opening 601. A through hole 603 is formed on the fixing cover 602 for the elastic reset component 62 to pass through. The rear end of the elastic reset component 62 movably passes through the through hole 603 of the fixing cover 602 and is connected to the pull ring 64.
[0021] As described above, a ceiling fan light that is easy to assemble and disassemble includes an elastic reset assembly 62 comprising a pin 620 and a spring 621. The front end of the pin 620 is formed with a relief groove 622 for the retraction of the spring bead 61, and the rear end of the pin 620 is formed with a pull handle 623 extending through a through hole 603. The spring 621 is sleeved on the pull handle 623, with one end of the spring 621 abutting against the rear end of the pin 620 and the other end of the spring 621 abutting against the fixing cover 602. The pull ring 64 is connected to the rear end of the pull handle 623.
[0022] As described above, a ceiling fan light that is easy to assemble and disassemble has a plurality of sliding grooves 624 forming around the periphery of the pin 620, and the sliding grooves 624 are arranged along the length direction of the pin 620. The clamping plate 63 has a plurality of sliding parts 630 forming on it, which extend into the sliding grooves 624 and slide in cooperation with the sliding grooves 624. The sliding parts 630 are located between the spring 621 and the end of the pin 620.
[0023] As described above, in a ceiling fan light that is easy to assemble and disassemble, a pressure plate 65 is also fitted onto the handle 623, and the pressure plate 65 is located between the spring 621 and the sliding part 630.
[0024] As described above, in a ceiling fan light that is easy to assemble and disassemble, the support member 40 is a hollow tubular structure, and the power cord of the lamp body 3 passes through one of the support members 40 and is electrically connected to an external power source.
[0025] As described above, the ceiling fan light is easy to assemble and disassemble, wherein the light source module 30 has an arc-shaped structure and the light body 3 has a circular ring structure.
[0026] As described above, in a ceiling fan light that is easy to assemble and disassemble, the connector 31 is a plug-in structure or a snap-fit structure.
[0027] Compared with existing technologies, this utility model of a ceiling fan light that is easy to assemble and disassemble has the following advantages:
[0028] 1. The lamp body of this application is composed of multiple independent lamp source modules that are detachably connected into a closed loop structure through connectors. The bracket assembly and lamp source modules are designed for disassembly, which greatly facilitates the packaging, transportation and storage of the product and effectively reduces the risk of damage caused by large size or collision during transportation.
[0029] 2. This application utilizes the groove in the bracket assembly to support the lamp body, and a locking assembly to secure the fixing plate. The fixing plate firmly confines the lamp body within the groove, effectively preventing loosening caused by vibrations from the ceiling fan and ensuring safety and stability during use. Furthermore, the spring-loaded locking mechanism and clamping plate work together to clamp the second plate of the fixing plate to the outer plate, adapting to objects of varying thicknesses and further enhancing the reliability of the locking mechanism.
[0030] 3. This application achieves locking by inserting the locking component into the second plate and the outer plate, and unlocking by pulling the pull ring, which facilitates users to quickly install or remove the lamp body. [Attached Image Description]
[0031] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings, wherein:
[0032] Figure 1 This is a schematic diagram of the structure of this utility model.
[0033] Figure 2 yes Figure 1 The enlarged structural diagram at point B is shown in the image.
[0034] Figure 3 This is another structural schematic diagram of the present invention.
[0035] Figure 4 yes Figure 3 The enlarged structural diagram at point C is shown in the image.
[0036] Figure 5 This is a structural schematic diagram of the support assembly in this utility model.
[0037] Figure 6 This is a schematic diagram of the lamp body in this utility model.
[0038] Figure 7 This is a schematic diagram of the locking component in this utility model.
[0039] Figure 8 This is an exploded structural diagram of the locking component in this utility model.
[0040] Figure 9 This is a cross-sectional view of the locking component in this utility model.
[0041] Figure 10 This is another cross-sectional view of the locking component in this utility model.
[0042] In the diagram: 1. Hanger;
[0043] 2. Ceiling fan body;
[0044] 3. Lamp body; 30. Lamp source module; 31. Connector;
[0045] 4. Bracket assembly; 40. Support component; 41. Mounting part; 410. Base plate; 411. Inner side plate; 412. Outer side plate; 413. Groove;
[0046] 5. Fixing plate; 50. First plate; 51. Second plate; 52. Rubber pad; A. First axis;
[0047] 6. Locking assembly; 60. Pin sleeve; 600. Cavity; 601. Opening; 602. Fixing cover; 603. Through hole; 61. Spring bead; 610. Spring hole; 62. Elastic reset assembly; 620. Pin; 621. Spring; 622. Clearance groove; 623. Pull handle; 624. Slide groove;
[0048] 63. Clamping plate; 630. Sliding part; 64. Pull ring; 65. Tableting plate.
Detailed Implementation Methods
[0049] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings.
[0050] like Figure 1-10 As shown, this utility model includes a ceiling fan light that is easy to assemble and disassemble, comprising a hanging bracket 1, a ceiling fan body 2, a lamp body 3, multiple support assemblies 4, a fixing plate 5, and a locking assembly 6. The hanging bracket 1 is detachably connected to the ceiling. The ceiling fan body 2 is located at the bottom of the hanging bracket 1. The lamp body 3 is composed of several light source modules 30, and any two adjacent light source modules 30 are detachably connected by a connector 31, so that all light source modules 30 are assembled together to form a closed loop structure. The light source modules 30 have an arc-shaped structure and are detachably connected by the connector 31. The light source modules 30 have an arc-shaped structure, and all light source modules 30 are assembled together to form a circular closed loop structure, thus making the lamp body 3 a circular structure. The connector 31 can be a plug-in structure or a snap-fit structure, such as a male and female plug or a buckle.
[0051] Each bracket assembly 4 includes a support member 40 and a mounting portion 41. The mounting portion 41 includes a base plate 410, an inner side plate 411, and an outer side plate 412. The base plate 410, the inner side plate 411, and the outer side plate 412 are integrally formed to form the mounting portion 41. The inner side plate 411 is connected to the inner side of the base plate 410, and the outer side plate 412 is connected to the outer side of the base plate 410. The base plate 410, the inner side plate 411, and the outer side plate 412 form a groove 413 for supporting the lamp body 3. The upper end of the support member 40 is detachably connected to the hanger 1 or the ceiling fan body 2, and the lower end of the support member 40 is connected to the upper end of the inner side plate 411.
[0052] like Figure 4 , Figure 5 As shown, the fixing plate 5 has an L-shaped structure, including a first plate 50 and a second plate 51 that are perpendicular to each other. The first plate 50 and the second plate 51 are integrally formed to form the fixing plate 5. The first plate 50 is hinged to the top of the inner side plate 411 or the lower end of the support member 40 via a first axis A, so that the fixing plate 5 can rotate around the first axis A. This allows the fixing plate 5 to have a locked state for locking the lamp source module 30 in the groove 413, and an unlocked state for opening the groove 413 so that the lamp source module 30 can be detached from the groove 413. When the lamp body 3 is in the locked state, the second plate 51 rests on the outer side surface of the outer side plate 412. The locking assembly 6 is detachably disposed on the second plate 51 and is used to fix the second plate 51 to the outer side plate 412 when the lamp body 3 is in the locked state, thereby fixing the lamp body 3 in the groove 413.
[0053] like Figure 2 , Figure 4 As shown, the connection between the light source modules 30 is embedded in the groove 413, and the groove 413 simultaneously supports the ends of adjacent light source modules 30. This provides additional support to the connection points of the light source modules 30, enhancing the stability of the connection. Furthermore, the bracket assembly 4 and the fixing plate 5 can conceal the connection positions of the light source modules 30, making the appearance more aesthetically pleasing.
[0054] In this embodiment, the lamp body 3 is formed by detachably connecting multiple lamp source modules 30. The bracket assembly 4 is detachably connected to the hanger 1 or the ceiling fan body 2, making the entire ceiling fan light modular in design, which facilitates packaging and transportation and prevents damage during transportation due to the large size of the entire product. The lamp body 3 is installed in the groove 413, and then the lamp body 3 is restricted in the groove 413 by the fixing plate 5. The second plate 51 is fixed together with the outer plate 412 by the locking assembly 6, thereby fixing the fixing plate 5 and restricting the lamp body 3 in the groove 413. In addition, in order to further restrict the lamp body 3 in the groove 413, a rubber pad 52 can be provided on the inner side of the first plate 50. When the lamp body 3 is in the locked state, the fixing plate 5 can press the lamp body 3 tightly in the groove 413 through the rubber pad 52, preventing the lamp body 3 from loosening due to vibration generated by the operation of the ceiling fan body 2.
[0055] When cleaning and maintenance of the entire ceiling fan light is required, the entire ceiling fan light can be disassembled, and then the locking assembly 6 can be removed, thus releasing the locking state of the fixing plate 5 relative to the outer plate 412. At this time, the fixing plate 5 can rotate around the first axis A, exposing the groove 413, and the light body 3 can be removed from the groove 413. It should be noted that the upper end of the support member 40 can be connected to the hanging bracket 1 or the ceiling fan body 2 by screws.
[0056] In this embodiment, the upper end of the bracket assembly 4 is preferably connected to the hanger 1. This reduces the problem of the lamp body 3 becoming loose due to the vibration generated by the ceiling fan body 2 being directly transmitted to the bracket assembly 4 during operation. Additionally, there are three bracket assemblies 4, and the upper end of the support member 40 in the bracket assembly 4 is fixed to the hanger 1 with screws.
[0057] like Figures 7 to 10 As shown in the figure, as a further embodiment, the locking component 6 includes a pin sleeve 60, a plurality of springs 61, an elastic reset component 62, a clamping plate 63, and a pull ring 64. The pin sleeve 60 has a cavity 600 formed along its length. When the lamp body 3 is in the locked state, the front part of the pin sleeve 60 can pass through the second plate 51 and the outer plate 412. It should be noted that the second plate 51 and the outer plate 412 are both provided with holes for the front part of the pin sleeve 60 to pass through, which are not shown in the figure. The front part of the pin sleeve 60 has a plurality of spring holes 610 formed circumferentially, which communicate with the cavity 600. The springs 61 are correspondingly arranged in the spring holes 610 and can partially extend or retract from the pin sleeve 60. The elastic reset component 62 is movably disposed in the cavity 600 and is used to provide a force to the springs 61 to keep them extended outward. The rear end of the elastic reset component 62 can movably extend out of the rear end of the pin sleeve 60.
[0058] The clamping plate 63 is movably connected to the rear of the pin sleeve 60 and is connected to the elastic reset assembly 62. The pull ring 64 is connected to the rear end of the elastic reset assembly 62 and is used to drive the elastic reset assembly 62 to move within the cavity 600 to release the locking of the elastic reset assembly 62 on the spring bead 61 so that the front of the spring bead 61 can retract into the spring hole 610.
[0059] When the lamp body 3 is in the locked state, the pin sleeve 60 passes through the second plate 51 and the outer plate 412. The spring bead 61 extends out and is clamped to the outside of the outer plate 412 under the action of the elastic reset component 62. At the same time, the clamping plate 63 cooperates with the spring bead 61 under the drive of the elastic reset component 62 to clamp the second plate 51 and the outer plate 412, thereby achieving a firm lock.
[0060] When it is necessary to release the locking state between the second plate 51 and the outer plate 412, by pulling the pull ring 64, the elastic reset component 62 moves within the cavity 600 to release the locking of the elastic reset component 62 on the spring bead 61, so that the front part of the spring bead 61 can retract into the spring hole 610. At this time, the spring bead 61 will not be stuck out of the inner side of the outer plate 412, and the entire locking component 6 can be pulled out from the second plate 51 and the outer plate 412, thereby releasing the locking state between the second plate 51 and the outer plate 412. Similarly, when fixing the second plate 51 and the outer plate 412, the pull ring 64 is also pulled to directly insert into the holes of the second plate 51 and the outer plate 412. After being pressed, the spring bead 61 retracts into the spring hole 610 until it is inserted in place. Then, the pull ring 64 is released, the elastic reset component 62 is reset, and the front part of the spring bead 61 can be pushed out of the spring hole 610. At the same time, it acts on the clamping plate 63. With the spring bead 61, the second plate 51 and the outer plate 412 are clamped between the spring bead 61 and the clamping plate 63. This can not only adapt to the fixed objects of different thicknesses, but also further increase the reliability of locking.
[0061] like Figures 7 to 10As shown, as a further embodiment, the rear end of the pin sleeve 60 is formed with an opening 601 that connects to the cavity 600. A fixing cover 602 is provided at the opening 601. A through hole 603 is formed on the fixing cover 602 for the elastic reset component 62 to pass through. The rear end of the elastic reset component 62 movably passes through the through hole 603 of the fixing cover 602 and is connected to the pull ring 64. The elastic reset assembly 62 includes a pin 620 and a spring 621. The front end of the pin 620 is formed with a relief groove 622 for the retraction of the spring bead 61. When the relief groove 622 is located at the position of the spring bead 61, the spring bead 61 can be retracted. The rear end of the pin 620 is formed with a pull handle 623 that passes through a through hole 603. The spring 621 is sleeved on the pull handle 623, and one end of the spring 621 abuts against the rear end of the pin 620, while the other end of the spring 621 abuts against the fixing cover 602. The pull ring 64 is connected to the rear end of the pull handle 623. The pin 620 has a plurality of grooves 624 forming a plurality of communicating cavities 600 on its periphery, and the grooves 624 are arranged along the length direction of the pin 620. The clamping plate 63 has a plurality of sliding parts 630 forming a plurality of sliding parts that extend into the grooves 624 and slide in cooperation with the grooves 624. The sliding parts 630 are located between the spring 621 and the end of the pin 620.
[0062] like Figure 9 As shown, when clamping the second plate 51 and the outer plate 412, the pin 620 is pushed to the front of the cavity 600 under the action of the spring 621. The outer periphery of the pin 620 abuts against the spring bead 61, causing the front of the spring bead 61 to extend out of the spring hole 610. At the same time, the spring 621 also pushes the sliding part 630, thereby causing the clamping plate 63 to move towards the spring bead 61, and then clamping the second plate 51 and the outer plate 412.
[0063] like Figure 10 As shown, when the second plate 51 and the outer plate 412 are needed, the pull ring 64 is pulled. The pull ring 64 then pulls the pin 620 through the pull handle 623. The pin 620 compresses the spring 621 and moves within the cavity 600, causing the clearance groove 622 to move to the spring bead 61. At this time, the spring bead 61 is in a state where it can retract into the spring hole 610. After being compressed by the second plate 51 and the outer plate 412, the spring bead 61 retracts into the spring hole 610. Therefore, the entire locking assembly 6 can be pulled out directly, which is convenient and quick.
[0064] For example, 8 to Figure 10As shown, as a further solution of this embodiment, in order to make the clamping plate 63 run more stably and smoothly, a pressure plate 65 is also sleeved on the pull handle 623. The pressure plate 65 is located between the spring 621 and the sliding part 630. When clamping the second plate 51 and the outer plate 412, the spring 621 will drive the pressure plate 65 to press against the sliding part 630. This can make the force transmission more uniform, and thus make the force on each sliding part 630 more balanced, thereby making the operation within the slide groove 624 smoother.
[0065] like Figure 8 As shown, as a further solution of this embodiment, in order to facilitate the assembly of the entire locking assembly 6, the fixing cover 602 is threadedly connected to the opening 601, the cross-section of the through hole 603 corresponds to the cross-section of the pull handle 623, and the cross-section of the pull handle 623 is non-circular, such as a regular hexagonal structure. When assembling the locking component 6, the spring 61 is first inserted into the spring hole 610. The spring 61 is partially exposed from the pin sleeve 60 but does not fall out of the spring hole 610. Then, the clamping plate 63, pressure plate 65, spring 621, and fixing cover 602 are sequentially placed on the pull handle 623. Finally, the pull ring 64 is installed on the pull handle 623. Then, the entire assembly is installed into the cavity 600, so that the fixing cover 602 abuts against the opening 601. Then, the pull ring 64 is rotated, and the pull handle 623 can drive the fixing cover 602 to rotate. Therefore, the fixing cover 602 and the opening 601 can be threaded together. There is no need to use another tool to lock the fixing cover 602 and the opening 601, which facilitates assembly and improves production efficiency. It should also be noted that the spring 61 can also be a steel ball. The way the steel ball cooperates with the spring hole 610 is a conventional technology in the field and will not be described in detail in this application. In addition, the pull ring 64 can be connected to the pull handle 623 by snap-fit.
[0066] As a further embodiment, the support member 40 is a hollow tubular structure, and the power cord of the lamp body 3 passes through one of the support members 40 and is electrically connected to an external power source. By making the support member 40 a hollow structure, the overall weight can be reduced, costs can be saved, and wiring can be facilitated, preventing the power cord from being exposed, making the entire product more concise and aesthetically pleasing. It should also be noted that adjacent lamp source modules 30 can be electrically connected via male and female plugs.
Claims
1. A ceiling fan light that is easy to assemble and disassemble, characterized in that... include: Hanger (1), which is detachably connected to the ceiling; The ceiling fan body (2) is located at the bottom of the bracket (1); The lamp body (3) is composed of several lamp source modules (30), and any two adjacent lamp source modules (30) are detachably connected by connectors (31), so that all lamp source modules (30) are assembled together in a closed loop structure. Multiple bracket assemblies (4), each bracket assembly (4) includes a support member (40) and a mounting part (41), the mounting part (41) includes a base plate (410), an inner side plate (411) and an outer side plate (412), the inner side plate (411) is connected to the inner side of the base plate (410), the outer side plate (412) is connected to the outer side of the base plate (410), the base plate (410), the inner side plate (411) and the outer side plate (412) form a groove (413) for supporting the lamp body (3), the upper end of the support member (40) is detachably connected to the hanger (1) or the ceiling fan body (2), and the lower end of the support member (40) is connected to the upper end of the inner side plate (411); A fixing plate (5) is L-shaped and includes a first plate (50) and a second plate (51) that are perpendicular to each other. The first plate (50) is hinged to the top of the inner side plate (411) or the lower end of the support member (40) via a first axis (A) so that the fixing plate (5) can rotate around the first axis (A). This allows the fixing plate (5) to have a locked state for locking the lamp source module (30) in the groove (413) and an unlocked state for opening the groove (413) so that the lamp source module (30) can be detached from the groove (413). When the lamp body (3) is in the locked state, the second plate (51) rests on the outer side of the outer side plate (412). A locking assembly (6) is detachably disposed on the second plate (51) for fixing the second plate (51) together with the outer plate (412) when the lamp body (3) is in the locked state, thereby fixing the lamp body (3) in the groove (413).
2. The ceiling fan light that is easy to assemble and disassemble according to claim 1, characterized in that... The locking component (6) includes: A pin sleeve (60) is formed with a cavity (600) along its length direction. When the lamp body (3) is in the locked state, the front part of the pin sleeve (60) can pass through the second plate (51) and the outer plate (412). A plurality of springs (61), the front part of the pin sleeve (60) is formed with a plurality of spring holes (610) communicating with the cavity (600) along the circumferential direction, the springs (61) are respectively arranged in the spring holes (610) and can partially extend out or retract from the pin sleeve (60). An elastic reset assembly (62) is movably disposed within the cavity (600) for providing a force to the spring bead (61) to keep it extended outward, and the rear end of the elastic reset assembly (62) is movably extended from the rear end of the pin sleeve (60). A clamping plate (63) is movably connected to the rear of the pin sleeve (60), and the clamping plate (63) is connected to the elastic reset assembly (62); Pull ring (64) is connected to the rear end of the elastic reset assembly (62) and is used to drive the elastic reset assembly (62) to move in the cavity (600) to release the locking of the elastic reset assembly (62) on the spring bead (61) so that the front part of the spring bead (61) can be retracted into the spring hole (610). When the lamp body (3) is in the locked state, the pin sleeve (60) passes through the second plate (51) and the outer plate (412), and the spring bead (61) extends out and is clamped to the outside of the outer plate (412) under the action of the elastic reset component (62). At the same time, the clamping plate (63) cooperates with the spring bead (61) under the drive of the elastic reset component (62) to clamp the second plate (51) and the outer plate (412).
3. A ceiling fan light that is easy to assemble and disassemble according to claim 2, characterized in that... The rear end of the pin sleeve (60) is formed with an opening (601) for communicating with the cavity (600). A fixing cover (602) is provided at the opening (601). A through hole (603) is formed on the fixing cover (602) for the elastic reset component (62) to pass through. The rear end of the elastic reset component (62) is movably passed through the through hole (603) of the fixing cover (602) and connected to the pull ring (64).
4. A ceiling fan light that is easy to assemble and disassemble according to claim 3, characterized in that... The elastic reset assembly (62) includes a pin (620) and a spring (621). The front end of the pin (620) is formed with a relief groove (622) for the retraction of the spring bead (61). The rear end of the pin (620) is formed with a pull handle (623) that passes through a through hole (603). The spring (621) is sleeved on the pull handle (623), and one end of the spring (621) abuts against the rear end of the pin (620). The other end of the spring (621) abuts against the fixing cover (602). The pull ring (64) is connected to the rear end of the pull handle (623).
5. A ceiling fan light that is easy to assemble and disassemble according to claim 4, characterized in that... The pin (620) has a plurality of grooves (624) forming a plurality of communicating cavities (600) on its periphery, and the grooves (624) are arranged along the length direction of the pin (620). The clamping plate (63) has a plurality of sliding parts (630) forming a plurality of sliding parts that extend into the grooves (624) and slide in cooperation with the grooves (624). The sliding parts (630) are located between the spring (621) and the end of the pin (620).
6. A ceiling fan light that is easy to assemble and disassemble according to claim 5, characterized in that... A pressure plate (65) is also sleeved on the handle (623), and the pressure plate (65) is located between the spring (621) and the sliding part (630).
7. A ceiling fan light that is easy to assemble and disassemble according to claim 1, characterized in that... The support member (40) is a hollow tubular structure, and the power line of the lamp body (3) passes through one of the support members (40) and is electrically connected to an external power source.
8. A ceiling fan light that is easy to assemble and disassemble according to claim 1, characterized in that... The light source module (30) has an arc-shaped structure, and the lamp body (3) has a circular ring structure.
9. A ceiling fan light that is easy to assemble and disassemble according to claim 1, characterized in that... The connector (31) is a plug-in structure or a snap-fit structure.
Citation Information
Patent Citations
Split type fan lamp structure
CN223242724U