Ceiling lamp mounting structure, ceiling lamp and mounting method of ceiling lamp
By incorporating rotatable and connecting components, the ceiling light is installed in a balanced state, solving the problem of complex installation of existing ceiling lights. This enables efficient and safe installation and disassembly by a single person, reducing costs.
Patent Information
- Application Number
- CN202110692421.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-06-22
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2041-06-22
AI Technical Summary
The installation process of existing ceiling lights is complicated, requires the assistance of multiple people, and is difficult and expensive to install, as well as inconvenient to maintain and clean.
It adopts a rotatable rotating component and a connecting component, which can be detachably connected to achieve a balanced installation of the ceiling light, and can be installed and disassembled by a single person.
It improves the visibility and safety of the installation process, reduces the difficulty and cost of installation, enables efficient installation and disassembly by a single person, and avoids damage to the ceiling light structure.
Smart Images

Figure CN113251359B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of lighting device technology, and in particular to a ceiling light mounting structure, a ceiling light, and a ceiling light mounting method. Background Technology
[0002] Ceiling lights have become the most common type of indoor lighting fixture due to their space-saving design and ability to provide natural light. They are widely used in homes, offices, entertainment venues, and other settings.
[0003] Ceiling lights currently available on the market typically consist of a base, a light source, and a lampshade. During installation, most require first removing the lampshade, or both the lampshade and the light source, then fixing the base to the wall or ceiling, connecting the light source, and finally reinstalling the lampshade on the base. Because ceiling lights cover a large area with extremely poor visibility, and because it involves working at height, the installation process is complex, requiring multiple people to complete. This results in high installation difficulty and cost, and low efficiency. Furthermore, the inconvenience of installation and disassembly makes subsequent maintenance and cleaning of ceiling lights time-consuming and labor-intensive for workers.
[0004] In view of this, it is indeed necessary to provide a ceiling light mounting structure, a ceiling light, and a ceiling light mounting method to solve the above problems. Summary of the Invention
[0005] The purpose of this invention is to provide a balanced ceiling light installation structure that can at least meet one of the following objectives: high visibility, high safety, high efficiency, and single-person installation and disassembly.
[0006] To achieve the above objectives, the present invention provides a ceiling light mounting structure, comprising: a base frame assembly and a connecting assembly, wherein the base frame assembly includes a mounting portion fixedly connected to a mounting wall and a rotating assembly rotatably connected to the mounting portion; the connecting assembly is fixedly connected to the light fixture body, and the rotating assembly is detachably connected to the connecting assembly.
[0007] As a further improvement of the present invention, the connecting assembly includes a first connecting structure and a second connecting structure rotatably connected to the first connecting structure. The first connecting structure is fixedly connected to the lamp body and detachably connected to the mounting part, and the second connecting structure is detachably connected to the rotating assembly.
[0008] As a further improvement of the present invention, the rotating assembly includes a support rod and two rotating parts symmetrically arranged on both sides of the support rod, and the connecting assembly includes a first connecting structure and two second connecting structures symmetrically arranged on both sides of the first connecting structure, wherein the second connecting structures are detachably connected to the rotating parts.
[0009] As a further improvement of the present invention, the second connecting structure is locked to the corresponding rotating part.
[0010] As a further improvement of the present invention, two sets of rotating components are provided, and the two sets of rotating components are symmetrically arranged at both ends of the mounting portion along a first direction. Two sets of connecting components are provided, and the two sets of connecting components are arranged on both sides of the lamp body along a second direction perpendicular to the first direction. Two second connecting structures in each set of connecting components are respectively locked to the rotating portions of the two rotating components. As a further improvement of the present invention, the first connecting structure includes a first locking portion, which includes a mounting bracket and a first locking plate device and a first unlocking device disposed on the mounting bracket. The mounting bracket is rotatably connected to the second connecting portion, the first locking plate device is locked to the mounting portion, and the first unlocking device is used to release the locking connection between the locking portion and the mounting portion. The mounting portion is provided with a first locking stop corresponding to the first locking plate device, and the first locking plate device passes through the first locking stop and is locked to the mounting portion.
[0011] As a further improvement of the present invention, the second connection structure includes a second locking part, the second locking part includes a second locking plate device and a second unlocking device. The rotating part is provided with a second locking port and an unlocking port respectively corresponding to the positions of the second locking plate device and the second unlocking device. The second locking plate device passes through the second locking port and is locked to the rotating part. Pressing the second unlocking device away from the unlocking port releases the locking connection between the second locking part and the rotating part.
[0012] As a further improvement of the present invention, the second connecting portion further includes a guide portion, the guide portion having an inclined guide surface that slopes inward from one end near the second locking portion to the end away from the second locking portion.
[0013] Another object of the present invention is to provide a ceiling light having the aforementioned ceiling light mounting structure.
[0014] To achieve the above objectives, the present invention provides a ceiling light, including a lamp body and the aforementioned ceiling light mounting structure, wherein the connecting component of the ceiling light mounting structure is fixedly mounted on the lamp body.
[0015] The third objective of this invention is to provide an installation method for a balanced ceiling light that is highly visible, safe, efficient, and can be installed and disassembled by a single person.
[0016] To achieve the above objectives, the present invention provides a method for installing a ceiling light, the method comprising:
[0017] S1: Fix the base frame assembly to the mounting wall, and rotate the rotating assembly away from the mounting wall so that the rotating assembly forms an installation angle with the mounting part;
[0018] S2: Rotate the second connecting structure of the connecting assembly that is fixedly connected to the lamp body to the position corresponding to the rotating assembly, and lift the lamp body towards the rotating assembly, so that the second connecting structure is locked to the rotating part of the rotating assembly;
[0019] S3: Connect the lamp body to the mains power supply;
[0020] S4: Push the lamp body toward the base frame assembly so that the first connection structure of the connection assembly is locked with the mounting part.
[0021] The beneficial effects of this invention are as follows: Compared with the prior art, this invention, by setting a rotatable rotating component and a connecting component, with the rotating component and the connecting component being detachably connected, allows the ceiling light of this invention to achieve a balanced state during installation. This frees up the hands for mains power installation and offers advantages such as high visibility, high safety, high efficiency, and the ability to be installed and disassembled by a single person. The entire installation process does not require disassembling the ceiling light, thus preserving its structure and preventing damage. Furthermore, the ceiling light installation structure and the ceiling light itself can be independently designed and sold, improving the versatility of each component and reducing the cost of the ceiling light. Attached Figure Description
[0022] Figure 1 This is a perspective view of the ceiling light installation structure according to Embodiment 1 of the present invention.
[0023] Figure 2 yes Figure 1 Exploded view of the mid-frame assembly.
[0024] Figure 3 yes Figure 1 A 3D view of the connecting component in another state.
[0025] Figure 4 yes Figure 3 Exploded view of the structure.
[0026] Figure 5 yes Figure 1 A magnified view of a portion of the image.
[0027] Figure 6 This is a perspective view of the ceiling light according to Embodiment 1 of the present invention.
[0028] Figure 7 yes Figure 6 A 3D view of the ceiling light during balanced installation.
[0029] Figure 8 yes Figure 6 Enlarged view of a local structure.
[0030] Figure 9 This is a perspective view of the ceiling light installation structure according to Embodiment 2 of the present invention.
[0031] Figure 10 yes Figure 9 Exploded view of the mid-frame assembly.
[0032] Figure 11 yes Figure 9 Exploded view of the connecting components.
[0033] Figure 12 yes Figure 9 The ceiling light installation structure and assembly diagram of the main body of the light fixture are shown in the figure.
[0034] Figure 13 yes Figure 12 Exploded view of the first locking part.
[0035] Figure 14 yes Figure 9 The diagram shows the structure of the base frame assembly and connecting assembly of the ceiling light, which are locked together.
[0036] Figure 15 yes Figure 14 An enlarged view of the local structure.
[0037] Figure 16 This is a perspective view of the ceiling light according to Embodiment 2 of the present invention.
[0038] Figure 17 yes Figure 16 A magnified view of the local structure. Detailed Implementation
[0039] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be described in detail below with reference to the accompanying drawings and specific embodiments.
[0040] It should be noted that, in order to avoid obscuring the present invention with unnecessary details, only the structures and / or processing steps closely related to the present invention are shown in the accompanying drawings, while other details that are not closely related to the present invention are omitted.
[0041] Additionally, it should be noted that the terms “comprising,” “including,” or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0042] Example 1
[0043] Please see Figure 1-5 As shown, this is a ceiling light mounting structure 1 provided in Embodiment 1 of the present invention. The ceiling light mounting structure 1 includes a base frame assembly 11 and a connecting assembly 12. The base frame assembly 11 includes a mounting part 111 fixedly connected to a mounting wall and a rotating assembly 112 rotatably connected to the mounting part 111. The connecting assembly 12 includes a first connecting structure 121 and a second connecting structure 122 rotatably connected to the first connecting structure 121. The first connecting structure 121 is fixedly connected to the lamp body 2 and detachably connected to the mounting part 111. The second connecting structure 122 is detachably connected to the rotating assembly 112. It is understood that the mounting wall can be a wall, a suspended ceiling, or a ceiling, and this application does not limit this. This ceiling light mounting structure 1 has a simple design and low cost. It avoids disassembling the lamp body 2 during the installation of the ceiling light 100, providing professional protection for the ceiling light 100. Moreover, the ceiling light 100 can achieve a balanced state during the installation process. Installers can install and disassemble the ceiling light 100 by themselves. The installation process has high visibility, high safety, and high efficiency.
[0044] Furthermore, the mounting part 111 is made of conventional sheet metal and can be manufactured into the required shape, such as round or square, according to customer requirements and installation environment; this application does not impose any limitations on this. Preferably, the mounting part 111 is formed into an I-shaped structure using sheet metal as the raw material. The mounting part 111 is fixedly mounted on the mounting wall by screws or other fasteners. The end of the mounting part 111 facing away from the mounting wall extends downward to form a side wall, which is used to accommodate the rotating component 112 within the mounting part 111, so that the lamp body 2 can be tightly mounted on the base frame assembly 11.
[0045] The rotating assembly 112 is movably riveted to the mounting portion 111 via movable rivets and damping washers, allowing the rotating assembly 112 to rotate away from the mounting wall, forming an installation angle with the mounting portion 111. This facilitates the installation of the rotating assembly 112 and the connecting assembly 12 and improves the visibility of the installation process. Preferably, the rotating assembly 112 can form a 90° angle with the mounting portion 111. Further, the rotating assembly 112 includes a support rod 1121 and two rotating portions 1122 symmetrically arranged on both sides of the support rod 1121. The rotating portions 1122 have a hollow structure and are symmetrically connected to both sides of the support rod 1121. Preferably, the rotating portions 1122 are composed of two square tube welded parts assembled by welding or riveting. At the end of the rotating portion 1122, there is a second locking stop 113 and an unlocking port 114 that cooperate with the second locking plate device 141 and the second unlocking device 142, for engaging or disengaging from the connecting assembly 12.
[0046] Please see Figure 3-5As shown, the connecting component 12 includes a first connecting structure 121 and two second connecting structures 122 symmetrically arranged on both sides of the first connecting structure 121. The connecting component 12 is fixedly connected to the lamp body 2 through the first connecting structure 121 and is detachably connected to the mounting part 111 through the first connecting structure 121. The connecting component 12 is detachably connected to the rotating part 1122 through the second connecting structures 122.
[0047] Preferably, the first connecting structure 121 includes a first locking portion 13, which includes a mounting bracket 131, a decorative cover 132, a first locking plate device 133, and a first unlocking device 134. The first locking plate device 133 and the first unlocking device 134 are housed within the receiving space formed by the mounting bracket 131 and the decorative cover 132. The decorative cover 132 has a first clearance groove 135 and a second clearance groove 136 corresponding to the positions of the first locking plate device 133 and the first unlocking device 134, respectively, to allow space for the locking connection of the first locking plate device 133 and the first unlocking device 134. The mounting portion 111 has a first locking stop 1111 corresponding to the first locking plate device 133, and the first locking plate device 133 passes through the first clearance groove 135 and locks into the first locking stop 1111 on the mounting portion 111.
[0048] Preferably, the first locking plate device 133 includes a locking plate bracket, a first locking plate 137, a first return spring 138, and a locking plate mounting plate. The locking plate bracket is fixedly connected to the mounting bracket 131 by fasteners such as rivets or bolts. The first locking plate 137 is located above the locking plate bracket and is held and fixed by the locking plate mounting plate and the locking plate bracket. The first return spring 138 is disposed on the locking plate mounting plate, so that the first locking plate 137 maintains the tendency to return to the initial position. When the first locking plate 137 passes through the first clearance groove 135 and abuts and presses against the first locking stop 1111, the first locking plate 137 slides outward along the receiving space until the first locking plate 137 and the first locking stop 1111 form a locking engagement. As the first locking plate 137 maintains its tendency to return to the initial position under the reset action of the first reset spring 138, the first locking plate 137 and the first locking stop 1111 form a self-locking effect without the action of external force, so as to realize the locking connection between the first connecting structure 121 and the mounting part 111, thereby realizing the stable connection between the connecting assembly 12 and the base frame assembly 11.
[0049] To facilitate disassembly, a first unlocking device 134 is provided on the lock plate mounting plate. Preferably, the first unlocking device 134 is a first disassembly button. In other embodiments, other structures may also be used, and this application does not limit this. During disassembly, only a pushing force towards the second clearance groove 136 needs to be applied to the first disassembly button, i.e., pushing or pressing the first disassembly button, to control the separation of the first lock plate 137 from the first locking stop 1111 and release the self-locking. To make it easier for the first lock plate 137 to separate from the first locking stop 1111, a slope is set at the position of the first lock plate 137 near the first locking stop 1111. Under the guiding action of the slope, the first lock plate 137 can be squeezed and pushed more easily by the disassembly button, thereby more easily separating from the first locking stop 1111, so as to release the locking connection between the first locking part 13 and the mounting part 111, realizing a quick disassembly function, which can be installed and disassembled by a single person.
[0050] The second connecting structure 122 includes a second locking part 14, which includes a second locking plate device 141 and a second unlocking device 142. The rotating part 1122 has a second locking stop 113 and an unlocking port 114 corresponding to the positions of the second locking plate device 141 and the second unlocking device 142, respectively. The second locking plate device 141 passes through the second locking stop 113 and is locked to the rotating part 1122. Pressing the second unlocking device 142 away from the unlocking port 114 releases the locking connection between the second locking part 14 and the rotating part 1122. The second connecting structure 122 also includes a rotating part 125 and a guide part 126. The rotating part 125 is rotatably connected to the first connecting structure 121. Preferably, the rotating part 125 is rotatably connected to the mounting bracket 131 of the first connecting structure 121 via a fastener. This fastener can be a screw or a rivet, etc., and this application does not limit this. The rotating part 125 and the mounting bracket are rotatably connected, allowing the second connecting structure 122 and the first connecting structure 121 to be rotatably connected. Since the first connecting structure 121 is used to fix the lamp body 2, the second connecting structure 122 can rotate relative to the first connecting structure 121 to form an installation angle to cooperate with the rotating component 112. This makes the connection process between the connecting component 12 and the rotating component 112 highly visible and easy to operate.
[0051] Furthermore, the rotating part 125 and the guide part 126 are hollow structures, and the second locking part 14 is located between the rotating part 125 and the guide part 126, with the rotating part 125 and the guide part 126 fixedly connected. Preferably, the rotating part 125 is provided with a bayonet, and the guide part 126 is provided with a corresponding hook, the hook cooperating with the bayonet to fix the guide part 126 on the rotating part 125. The guide part 126 is provided with an inclined guide surface, which slopes inward from the end near the second locking part 14 to the end away from the second locking part 14, to guide the locking connection between the second connecting structure 122 and the rotating part 122, thereby achieving a stable connection between the connecting assembly 12 and the base frame assembly 11.
[0052] Preferably, the second locking device 141 includes an inverted locking plate and a second return spring. When the second connecting structure 122 is guided by the guide portion 126 and engages with the rotating portion 1122, the inverted locking plate abuts and presses against the second locking stop 113, thereby undergoing elastic deformation until the inverted locking plate is engaged in the second locking stop 113. At this time, under the reset action of the second return spring, the inverted locking plate maintains the tendency to return to the initial position. Without the action of external force, the inverted locking plate and the second locking stop 113 form a self-locking effect, so as to realize the locking connection between the second connecting structure 122 and the rotating component 112, thereby realizing the stable connection between the connecting component 12 and the base frame component 11.
[0053] To facilitate disassembly, the second locking part 14 also includes a second unlocking device 142. Preferably, the second unlocking device 142 is a second disassembly button. Of course, other structures are also possible in other embodiments, and this application does not limit this. When the inverted locking plate engages with the second locking stop 113, the second disassembly button also enters the unlocking port 114 of the rotating part 1122 with external force. When disassembling, simply push or press the second disassembly button to control the inverted locking plate to separate from the second locking stop 113, release the self-locking, and thereby release the locking connection between the second locking part 14 and the rotating part 1122, realizing a quick disassembly function that can be installed and disassembled by a single person.
[0054] Preferably, by providing a first locking part 13 and a second locking part 14 on the connecting component 12, the connecting component 12 and the base frame component 11 can be double-locked, effectively improving the connection stability between the lamp body 2 and the ceiling light mounting structure 1, and preventing the lamp body 2 from falling and causing a safety accident. It is understood that in other embodiments of this application, the connecting component 12 and the base frame component 11 can also be detachably connected in other ways, such as threaded connection or snap-fit connection, etc., and this application does not impose any limitations on this.
[0055] The rotating assembly 112 and the connecting assembly 12 are detachably connected via the rotating part 1122 and the second connecting structure 122. The number of rotating assemblies 112 and connecting assemblies 12 can be set according to customer needs and installation environment, and this application does not limit this.
[0056] It is understood that both the rotating component 112 and the connecting component 12 can be provided in one set. The two second connecting structures 122 of the connecting component 12 are respectively locked to the two rotating parts 1122 of the rotating component 112. When installing the ceiling light 100, the base frame assembly 11 is first fixedly installed on the mounting wall, the first connecting structure 121 of the connecting component 12 is fixedly connected to the lamp body 2, and then the two second connecting structures 122 of the connecting component 12 are locked to the two rotating parts 1122 of the rotating component 112 in the base frame assembly 11. After the lamp body 2 is stable, the mains power is connected. After the mains power is connected, the first connecting structure 121 of the connecting component 12 is locked to the mounting part 111 of the base frame assembly 11 to complete the installation of the ceiling light 100.
[0057] In other embodiments, two sets of rotating components 112 may be provided, symmetrically arranged at both ends of the mounting portion 111. Two sets of connecting components 12 are also provided, with each set of connecting components 12 having two second connecting structures 122 that are respectively locked to the two rotating portions 1122 of the rotating component 112. During the installation process of this first embodiment, the ceiling light 100 can achieve a balanced state, allowing installers to work with their hands free, resulting in high safety and efficiency.
[0058] Preferably, in Embodiment 1, two sets of rotating components 112 are provided, symmetrically arranged at both ends of the mounting portion 111 along a first direction. Two sets of connecting components 12 are also provided, arranged on both sides of the lamp body 2 along a second direction perpendicular to the first direction. Two second connecting structures 122 in each connecting component 12 are respectively locked to the rotating portions 1122 of the two rotating components 112. In other words, one second connecting structure 122 in each connecting component 12 is locked to one rotating portion 1122 of one rotating component 112, and the other second connecting structure 122 is locked to one rotating portion 1122 of the other rotating component 112. This arrangement allows the ceiling light 100 to achieve a balanced state during installation, preventing scratches to the lamp body 2 that could affect the aesthetics of the ceiling light 100. Simultaneously, it frees the installer's hands for connecting to mains power, resulting in high safety and efficiency.
[0059] To overcome the inconvenience of installation and maintenance of existing ceiling lights 100, the ceiling light installation structure 1 and the ceiling light 100 of the present invention can be set up and sold independently, thereby improving the versatility of each part of the structure and reducing the cost of the ceiling light 100.
[0060] Please see Figure 6-8 As shown, a ceiling light 100 according to a preferred embodiment of the present invention is provided. The ceiling light 100 includes a lamp body 2 and the aforementioned ceiling light mounting structure 1. The connecting component 12 in the ceiling light mounting structure 1 is fixedly mounted on the lamp body 2. The connecting component 12 and the lamp body 2 can be separate or integrated; this application does not impose any limitation on this.
[0061] Preferably, the connecting component 12 is integrally formed with the lamp body 2. Specifically, the lamp body 2 is provided with a mounting groove 21, and the connecting component 12 is fixedly installed in the mounting groove 21, forming an integral part with the lamp body 2. By integrating the connecting component 12 with the lamp body 2, costs can be saved, the reliability of the connection between the connecting component 12 and the lamp body 2 can be improved, the safety of the ceiling light 100 installation process can be improved, and the service life of the ceiling light 100 can be extended.
[0062] This invention provides an installation method for a ceiling light 100 that features high visibility, high safety, high efficiency, and can be installed and disassembled by a single person. This installation method utilizes the aforementioned ceiling light 100 and includes the following steps:
[0063] S1: Fix the base frame assembly 11 to the mounting wall, and rotate the rotating assembly 112 away from the mounting wall so that the rotating assembly 112 and the mounting part 111 form an installation angle. Before detachably connecting the rotating assembly 112 and the connecting assembly 12, adjust the angle between the rotating assembly 112 and the mounting part 111. Preferably, the rotating assembly 112 and the mounting part 111 can form a 90° angle to facilitate the installer to carry out the next installation step.
[0064] S2: Rotate the second connecting structure 122 of the connecting assembly 12, which is fixedly connected to the lamp body 2, to the position of the corresponding rotating assembly 112, and lift the lamp body 2 towards the rotating assembly 112, so that the second connecting structure 122 is locked to the rotating part 1122 of the rotating assembly 112.
[0065] The second connecting structure 122 of the ceiling light 100 is rotated to a position corresponding to the rotating component 112, and the second connecting structure 122 is locked to the rotating component 112 by the action of the guide part 126 on the second connecting structure 122.
[0066] At this point, the connections can be made according to the number of rotating components 112 and connecting components 12. Preferably, two sets of rotating components 112 and connecting components 12 are provided, and the two sets of rotating components 112 are symmetrically arranged at both ends of the mounting part 111 along the first direction. The two sets of connecting components 12 are arranged on both sides of the lamp body 2 along a second direction perpendicular to the first direction. The two second connecting structures 122 in one set of connecting components 12 are respectively locked and connected to the rotating parts 1122 of the two rotating components 112. The other set of connecting components 12 is locked and connected to the remaining rotating parts 1122 of the two rotating components 112. When both sets of connecting components 12 and both sets of rotating components 112 have been locked and connected, the ceiling light 100 reaches a balanced state, and a safety check can be performed on the ceiling light 100, such as whether the connecting components 12 and rotating components 112 are locked in place, thus improving the safety of the ceiling light 100 installation process.
[0067] S3: Connect the main body 2 of the light fixture to the mains power. Since the ceiling light 100 has reached a balanced state, the installer can free their hands to install the mains power. The entire installation process is highly visible and safe. One person can connect the mains power without the need for additional assistants to pass items or for the installer to go up and down multiple times. The operation is simple, efficient, and saves manpower.
[0068] It is understood that after the two second connecting structures 122 in one set of connecting components 12 are respectively locked to the rotating parts 1122 of the two rotating components 112, and after checking that the locking is in place, hands can be freed to perform mains power installation work. After the mains power is supplied, the other set of connecting components 12 is then locked to the remaining rotating parts 1122 of the two rotating components 112. This application does not limit this.
[0069] S4: Push the lamp body 2 toward the base frame assembly 11 so that the first connecting structure 121 of the connecting assembly 12 is locked with the mounting part 111, thus completing the installation of the ceiling light 100.
[0070] Example 2
[0071] Please refer to Figure 9-17As shown, this is a ceiling light mounting structure 1' according to Embodiment 2 of the present invention. The ceiling light mounting structure 1' includes a base frame assembly 11' and a connecting assembly 12'. The base frame assembly 11' includes a mounting part 111' fixedly connected to the mounting wall and a rotating assembly 112' rotatably connected to the mounting part 111'. The connecting assembly 12' is fixedly connected to the main body of the light fixture, and the rotating assembly 112' is detachably connected to the connecting assembly 12'. Unlike Embodiment 1, in Embodiment 2, a support assembly 113' is provided between the mounting part 111' and the rotating assembly 112'. Under the action of the support assembly 113', the rotating assembly 112' can rotate away from the mounting wall, so that the rotating assembly 112' and the mounting part 111' form an angle, which facilitates the installation of the rotating assembly 112' and the connecting assembly 12' and improves the visibility of the ceiling light 100' installation process.
[0072] Furthermore, the support assembly 113' includes a connecting rod 1131' and a sliding portion 1132', and the rotating assembly 112' is provided with a sliding rail 1121'. One end of the connecting rod 1131' is connected to the base frame assembly 11', and the other end is slidably connected to the rotating assembly 112' through the cooperation of the sliding portion 1132' and the sliding rail 1121'. The sliding rail 1121' includes a first limiting portion 1123' and a second limiting portion 1124'. The sliding portion 1132' slides from the first limiting portion 1123' to the second limiting portion 1124', so that the rotating assembly 112' is close to the base frame assembly 11'. When the sliding part 1132' is located at the first limiting part 1123' of the sliding track 1121', the mounting part 111' and the rotating component 112' form the maximum angle. At this time, the base frame assembly 11' is brought close to the connecting component 12' on the lamp body 2', improving the visibility and convenience of the ceiling light 100' installation process. After the base frame assembly 11' and the connecting component 12' are fixedly connected, the sliding part 1132' is pushed to slide from the first limiting part 1123' to the second limiting part 1124', so that the rotating component 112' gradually approaches the base frame assembly 11', and the connecting rod 1131' is gradually housed in the mounting part 111'. The angle between the mounting part 111' and the rotating component 112' gradually decreases, thereby facilitating the locking connection between the lamp body 2' and the mounting part 111' to complete the installation of the ceiling light 100'.
[0073] Please see Figure 13 and combined Figure 16-17As shown, in Embodiment 2, the first locking part 13' is located on the lamp body 2', and the end of the mounting part 111' away from the rotating component 112' (i.e., the position corresponding to the first locking part 13') is bent inward to form a fastening part 114' that engages with the first locking part 13'. Specifically, the fastening part 114' is provided with a first locking stop 1141' and a slot 1142' corresponding to the first locking part 13'. The first locking part 13' includes a lock body bottom shell 211', a lock body top shell 212', and a first locking plate device 133' and a first unlocking device 134' housed between the lock body bottom shell 211' and the lock body top shell 212'. The lock body top shell 212' is provided with an opening, through which the first locking plate device 133' and the first unlocking device 134' pass and engage with the corresponding first locking stop 1141' and slot 1142' on the fastening part 114'. The first locking device 133' is inserted into the first locking stop 1141' to lock the first locking part 13' and the fastening part 114' together. The first unlocking device 134' is pressed towards the slot 1142' to release the locking connection between the first locking part 13' and the fastening part 114'. By setting the locking engagement between the first locking part 13' and the fastening part 114', the lamp body 2' can be detachably mounted on the base frame assembly 11', facilitating installation and disassembly by installers.
[0074] Preferably, the first locking device 133' and the first unlocking device 134' in Embodiment 2 have the same structure as the first locking device 133 and the first unlocking device 134 in Embodiment 1. This application will not repeat the details here. It can be understood that the first locking device 133' and the first unlocking device 134' in Embodiment 2 may also have different structures from the first locking device 133 and the first unlocking device 134 in Embodiment 1. This application does not limit this.
[0075] Furthermore, the connecting component 12' is fixedly installed on the lamp body 2', and the rotating component 112' is detachably connected to the connecting component 12'. In embodiment two, the connecting component 12' is a hollow structure, including a flat tube structure 121' and hook-shaped structures 122' symmetrically arranged on both sides of the flat tube structure 121', with an installation groove 123' between the hook-shaped structures 122' and the flat tube structure 121'. The inner diameter of the flat tube structure 121' is larger than the outer diameter of the rotating component 112', so that the rotating component 112' can be freely inserted into the flat tube structure 121' of the connecting component 12'. By setting the connecting component 12' with a hollow structure, especially the hollow flat tube structure 121', the rotating component 112' can be inserted into the flat tube structure 121' of the connecting component 12', making the rotating component 112' and the connecting component 12' detachably connected, thus facilitating the installation and removal of the ceiling light 100'. Furthermore, the connecting assembly 12' also includes a cover 124', which is snap-fitted to one end of the connecting assembly 12'. Specifically, the cover 124' is snap-fitted to the flat tube structure 121' of the connecting assembly 12', and the cover 124' and the flat tube structure 121' are limited and fixed by a hook structure 122'. By providing the cover 124', dust or moisture is prevented from entering the flat tube structure 121', thereby improving the service life of the ceiling light mounting structure 1'. Fasteners pass through the mounting groove 123' of the connecting assembly 12', fixing the connecting assembly 12' to the lamp body 2'.
[0076] Unlike Embodiment 1, the second locking part 14' and the guide part 126' are disposed on the rotating assembly 112'. The guide part 126' is disposed at the end of the rotating assembly 112', and the second locking part 14' is disposed between the guide part 126' and the rotating part 1122'. The guide part 126' and the rotating part 1122' are fixedly connected. Preferably, the end of the rotating part 1122' is provided with a bayonet, and the guide part 126' is provided with a corresponding hook. The hook and the bayonet cooperate to fix the guide part 126' on the rotating part 1122' of the rotating assembly 112'. The guide part 126' is provided with an inclined guide surface, which is inclined inward from the end near the rotating part 1122' to the end away from the rotating part 1122', in order to guide the locking connection between the rotating assembly 112' and the connecting assembly 12', thereby realizing a stable connection between the connecting assembly 12' and the base frame assembly 11'.
[0077] Please see Figure 15 and combined Figure 12As shown in Figure 14, the second locking part 14' includes a second locking plate device 141' and a second unlocking device 142'. The flat tube structure 121' of the connecting assembly 12' is provided with a second locking stop 1211' and an unlocking port 1212' respectively corresponding to the positions of the second locking plate device 141' and the second unlocking device 142'. The second locking plate device 141' passes through the second locking stop 1211' to lock the second locking part 14' to the connecting assembly 12'. The second unlocking device 142' is pressed away from the unlocking port 1212' in the direction close to the unlocking port 1212' to release the locking connection between the second locking part 14' and the connecting assembly 12'.
[0078] Preferably, the second locking device 141' and the second unlocking device 142' in Embodiment 2 have the same structure as the second locking device 141 and the second unlocking device 142 in Embodiment 1. This application will not elaborate further here. It is understood that the second locking device 141' and the second unlocking device 142' in Embodiment 2 may also have different structures from the second locking device 141 and the second unlocking device 142 in Embodiment 1. This application does not limit this.
[0079] Furthermore, two sets of rotating components 112' are provided, symmetrically arranged on both sides of the mounting portion 111'. Two sets of connecting components 12' are also provided accordingly, with each set of rotating components 112' detachably connected to its corresponding connecting component 12'. By providing two sets of rotating components 112' and connecting components 12', the connection stability of the ceiling light mounting structure 1' is improved, thereby enhancing the safety of the ceiling light 100' installation process.
[0080] Please see Figure 12-17 As shown, this is a ceiling light 100' according to Embodiment 2 of the present invention. The ceiling light 100' has a ceiling light mounting structure 1' according to Embodiment 2 of the present invention. The connecting component 12' in the ceiling light mounting structure 1' is fixedly mounted on the light fixture body 2'. The connecting component 12' and the light fixture body 2' can be separate or integrated; this application does not impose any limitation on this. The connecting component 12' is fixedly mounted on the light fixture body 2' using fasteners, thus integrating the connecting component 12' with the light fixture body 2'. This configuration saves costs, improves the reliability of the connection between the connecting component 12' and the light fixture body 2', enhances the safety of the ceiling light 100' installation process, and extends the service life of the ceiling light 100'.
[0081] The present invention further provides an installation method for a ceiling light 100' that features high visibility, high safety, high efficiency, and can be installed and disassembled by a single person. This installation method is applied to the ceiling light 100' in Embodiment 2 of the present invention, and the installation method for the ceiling light 100' includes:
[0082] S1: Fix the base frame assembly 11' to the mounting wall, and rotate the rotating assembly 112' away from the mounting wall to form an installation angle between the rotating assembly 112' and the mounting part 111'. Before detachably connecting the rotating assembly 112' to the connecting assembly 12', slide the sliding part 1132' on the support member to the first limiting part 1123' of the sliding track 1121'. At this time, the rotating assembly 112' forms the maximum included angle with the mounting part 111' under the action of the connecting rod 1131'. By adjusting the angle between the rotating assembly 112' and the mounting part 111' through the connecting rod 1131' and the sliding part 1132' on the support assembly 113', the visibility of the ceiling light 100' installation can be improved, making it easier for installers to carry out the next installation work.
[0083] S2: Align the connecting component 12' on the lamp body 2' with the rotating component 112' and push it upwards to a certain position, then automatically lock it. First, fix the connecting component 12' on the lamp body 2', then push the lamp body 2' so that the connecting component 12' corresponds to the position of the rotating component 112'. Under the guidance of the guide part 126' on the rotating component 112', the rotating component 112' is inserted into the connecting component 12'. The rotating component 112' and the connecting component 12' are locked together by the second locking part 14' on the rotating component 112', so as to realize the locking connection between the lamp body 2' and the ceiling light mounting structure 1'.
[0084] S3: Connect to mains power. Since the main body 2' of the ceiling light 100' is already locked to the base assembly 11', installers can free their hands to install the mains power and conduct safety checks. The entire installation process is highly visible and safe, allowing for single-person connection to the mains power without the need for additional personnel to pass items or for installers to repeatedly climb up and down for installation. It is simple to operate, highly efficient, and saves manpower.
[0085] S4: Push the lamp body 2' towards the base frame assembly 11' so that the first locking part 13' on the lamp body 2' is locked and connected with the fastening part 114' on the base frame assembly 11', thus completing the installation of the ceiling light 100'.
[0086] The installation method for the ceiling light 100' described in this application requires no disassembly of the ceiling light 100' during the entire installation process, thus effectively preserving the structure of the ceiling light 100' and preventing damage. Maintaining balance during installation allows for safety checks and connection to mains power, enhancing the safety of the installation process. Installation and disassembly can be performed by a single person without the need for additional personnel to pass items or for the installer to repeatedly climb up and down the wall. The operation is simple, efficient, and saves manpower.
[0087] In summary, the ceiling light mounting structure 1, the ceiling light 100 having the mounting structure 1, and the installation method of the ceiling light 100 of the present invention, by setting a rotatable rotating component 112 and a connecting component 12, with the rotating component 112 and the connecting component 12 being detachably connected, enable the ceiling light 100 of the present invention to achieve a balanced state during installation, freeing up the hands for mains power installation. It has the advantages of high visibility, high safety, high efficiency, and single-person installation and disassembly. The entire installation process does not require disassembling the ceiling light 100, effectively maintaining the structure of the ceiling light 100 and preventing damage. Furthermore, the ceiling light mounting structure 1 and the ceiling light 100 of the present invention can be independently set up and sold, improving the versatility of each part of the structure and reducing the cost of the ceiling light 100.
[0088] The above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention.
Claims
1. A ceiling light mounting structure, characterized in that, include: A base frame assembly and a connecting assembly, the base frame assembly including a mounting part fixedly connected to a mounting wall and a rotating assembly rotatably connected to the mounting part; The mounting portion extends downward from one end away from the mounting wall to form a side wall, which is used to house the rotating component within the mounting portion; the connecting component is fixedly connected to the lamp body, and the rotating component is detachably connected to the connecting component; The connecting component includes a first connecting structure and a second connecting structure rotatably connected to the first connecting structure. The first connecting structure is fixedly connected to the lamp body, and the second connecting structure is detachably connected to the rotating component. The first connecting structure includes a first locking part, which includes a mounting bracket and a first locking plate device and a first unlocking device disposed on the mounting bracket. The mounting bracket is rotatably connected to the second connecting structure. The first locking plate device is locked to the mounting part. The first unlocking device is used to release the locking connection between the locking part and the mounting part. The mounting part is provided with a first locking slot corresponding to the first locking plate device. The first locking plate device passes through the first locking slot and is locked to the mounting part.
2. The ceiling light mounting structure according to claim 1, characterized in that: The first connection structure is detachably connected to the mounting part.
3. The ceiling light mounting structure according to claim 2, characterized in that: The rotating assembly includes a support rod and two rotating parts symmetrically arranged on both sides of the support rod. The connecting assembly includes a first connecting structure and two second connecting structures symmetrically arranged on both sides of the first connecting structure. The second connecting structures are detachably connected to the rotating parts.
4. The ceiling light mounting structure according to claim 3, characterized in that: The second connection structure is respectively connected to the corresponding rotating part latch.
5. The ceiling light mounting structure according to claim 3, characterized in that: Two sets of rotating components are provided, and the two sets of rotating components are symmetrically arranged at both ends of the mounting part along the first direction. Two sets of connecting components are provided, and the two sets of connecting components are arranged on both sides of the lamp body along the second direction perpendicular to the first direction. The two second connecting structures in each set of connecting components are respectively locked to the rotating parts of the two rotating components.
6. The ceiling light mounting structure according to claim 3, characterized in that: The second connection structure includes a second locking part, which includes a second locking plate device and a second unlocking device. The rotating part is provided with a second locking port and an unlocking port corresponding to the positions of the second locking plate device and the second unlocking device, respectively. The second locking plate device passes through the second locking port and is locked to the rotating part. Pressing the second unlocking device away from the unlocking port releases the locking connection between the second locking part and the rotating part.
7. The ceiling light mounting structure according to claim 6, characterized in that: The second connection structure also includes a guide portion, which has an inclined guide surface that slopes inward from one end near the second locking portion to the end away from the second locking portion.
8. A ceiling light, characterized in that: The lamp includes a lamp body and a ceiling lamp mounting structure as described in any one of claims 1-7, wherein the connecting components of the ceiling lamp mounting structure are fixedly mounted on the lamp body.
9. A method for installing a ceiling light, using the ceiling light installation structure according to any one of claims 1-7, characterized in that, The ceiling light installation method includes: S1: Fix the base frame assembly to the mounting wall, and rotate the rotating assembly away from the mounting wall so that the rotating assembly forms an installation angle with the mounting part; S2: Rotate the second connecting structure of the connecting assembly that is fixedly connected to the lamp body to the position corresponding to the rotating assembly, and lift the lamp body towards the rotating assembly, so that the second connecting structure is locked to the rotating part of the rotating assembly; S3: Connect the lamp body to the mains power supply; S4: Push the lamp body toward the base frame assembly so that the first connection structure of the connection assembly is locked with the mounting part.
Citation Information
Patent Citations
Light -emitting diode (LED) panel lamp
CN206846508U
Anticorrosion LED projecting lamp
CN208735378U
Ceiling lamp mounting structure and ceiling lamp
CN215215926U