Track hoisting device and track lighting system
By using the flip-up and pitch-up adjustment mechanisms of the track hoisting device, the problem of traditional track lighting systems being unable to freely adjust angles has been solved, enabling multi-dimensional flexible layout and angle adjustment of the lighting track, thus improving user experience and system functionality.
Patent Information
- Application Number
- PCT/CN2025/088720
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-04-25
- Filing Date
- 2025-04-14
- Publication Date
- 2025-10-30
AI Technical Summary
Traditional track lighting systems use fixed installation methods, which cannot be freely adjusted in angle, limiting the flexible layout of the lighting track and the adjustability of the light direction, and failing to meet diverse spatial lighting needs.
A track hoisting device is provided, including a hoisting mechanism, a flipping adjustment mechanism, and a pitch adjustment mechanism. The horizontal rotation and vertical pitch adjustment of the lighting track are realized through connecting components and a rotating shaft structure. The guide ribs and threaded holes ensure a stable connection and enable multi-dimensional angle adjustment.
It enables flexible angle adjustment of the lamp track, improving the user experience and the practicality of the lighting system, and meeting the lighting needs of different occasions.
Smart Images

Figure CN2025088720_30102025_PF_FP_ABST
Abstract
Description
Track hoisting device and track lighting system
[0001] Cross-reference to related applications
[0002] This application claims priority to Chinese patent application No. 2024208876893, filed on April 25, 2024, entitled “Rail hoisting device and track lighting system”, which is incorporated herein by reference in its entirety. Technical Field
[0003] This application relates to the field of lighting fixtures technology, and in particular to a track hoisting device and a track lighting system. Background Technology
[0004] Most mainstream track lighting systems on the market today use fixed installations, which presents certain limitations in practical applications. Traditional fixed tracks cannot be freely adjusted in angle, which not only restricts the flexible layout of the lighting tracks but also greatly limits the adjustability of the lighting direction, failing to fully adapt to diverse spatial lighting needs and visual experience requirements. For example, in certain specific settings such as exhibition halls, art galleries, or spaces requiring frequent scene changes, users may want to adjust the light angle according to changes in the exhibit content or event theme to create an ideal lighting atmosphere. Furthermore, in the home decoration field, with the development of modern interior design concepts, people are increasingly focusing on the combination of personalization and functionality, leading to a growing demand for track lighting systems that can easily adjust the lighting angle and range. Summary of the Invention
[0005] This application provides a track hoisting device and a track lighting system to solve the problem that the fixed installation method of track lighting systems in the traditional technology makes it impossible to freely adjust the angle.
[0006] This application provides a track hoisting device, comprising:
[0007] Lifting mechanism;
[0008] At least one mounting module, the mounting module including a tilt adjustment mechanism and a pitch adjustment mechanism, the tilt adjustment mechanism including a connecting component and a rotating shaft structure, the connecting component being adapted to connect to a lighting track, the rotating shaft structure having a horizontal axis of rotation, one end of the rotating shaft structure being connected to the connecting component, the connecting component being adapted to rotate vertically about the rotating shaft structure's axis of rotation, and the pitch adjustment mechanism connecting the hoisting mechanism and the rotating shaft structure, being adapted to adjust the pitch angle of the tilt adjustment mechanism.
[0009] According to the track hoisting device provided in this application, the connecting assembly includes:
[0010] The front cover has a first side provided with a plug-in structure, which is adapted to be plugged into the lamp track and fixed by bolts. The second side of the front cover has a first flat hole, which is adapted to be plugged into the rotating shaft structure.
[0011] The mounting terminal is fixedly disposed on the first side of the front end cover and is provided with a terminal probe, which is adapted to be electrically connected to the lamp track.
[0012] According to the present application, a track hoisting device is provided, wherein the plug-in structure includes a guide rib, the extension direction of the guide rib is parallel to the rotation axis of the rotating shaft structure, the guide rib is provided with at least one threaded hole, the guide rib is adapted to be plugged into the lamp track, and is fixed to the lamp track by a threaded part that mates with the threaded hole.
[0013] According to the track hoisting device provided in this application, the pitch adjustment mechanism includes:
[0014] The first mounting base is connected to the rotating shaft structure;
[0015] Second mounting base;
[0016] A pitch adjustment arm, the first end of which is rotatably connected to the first mounting base, and the second end of which is rotatably connected to the second mounting base. The rotation axis between the pitch adjustment arm and the first mounting base and between the pitch adjustment arm and the second mounting base is horizontal and perpendicular to the rotation axis of the rotating shaft structure.
[0017] The connecting seat is located on the side of the second mounting seat away from the pitch adjustment arm, and is connected to the second mounting seat and the hoisting mechanism respectively.
[0018] According to a track hoisting device provided in this application, the first mounting base includes:
[0019] The first base body is provided with a second flat hole and a first mounting groove. The second flat hole is inserted into the rotating shaft structure, and the first mounting groove is located on the side of the first base body away from the rotating shaft structure.
[0020] A first top cover is detachably connected to the first base body, and the first top cover is provided with a second mounting groove corresponding to the first mounting groove.
[0021] The first end of the pitch adjustment arm is rotatably disposed between the first base and the first top cover, and the pitch adjustment arm is adapted to rotate within the first mounting slot and the second mounting slot.
[0022] According to a track hoisting device provided in this application, the second mounting base includes:
[0023] The second body is equipped with a third mounting slot and a positioning post;
[0024] The second top cover is detachably connected to the second base body, and the second top cover is provided with a fourth mounting groove corresponding to the third mounting groove;
[0025] The second end of the pitch adjustment arm is rotatably disposed between the second base and the second top cover, and the pitch adjustment arm is adapted to rotate within the third mounting slot and the fourth mounting slot;
[0026] A positioning arm is provided on one side of the connecting seat. The positioning arm is located between the second seat body and the second top cover. The positioning arm is provided with a positioning hole, which is inserted into the positioning post.
[0027] According to the track hoisting device provided in this application, the pitch adjustment arm includes a rotating arm and a first bracket and a second bracket respectively rotatably disposed at both ends of the rotating arm. The first bracket is fixedly connected to the first mounting base, and the second bracket is fixedly connected to the second mounting base.
[0028] According to the rail hoisting device provided in this application, the hoisting mechanism includes:
[0029] Suspension wire assembly;
[0030] A connecting column assembly is fixedly connected to the suspension wire assembly;
[0031] A first end cap is detachably installed on the top of the connecting column assembly, and a first mounting ring is provided on the lower side of the first end cap;
[0032] The second end cap is detachably installed at the bottom of the connecting column assembly, and a second mounting ring is provided on the upper side of the second end cap;
[0033] An arc-shaped plate is provided on the upper side of the end of the pitch adjustment mechanism that is away from the tilt adjustment mechanism, and the arc-shaped plate is located between the first mounting ring and the connecting column assembly;
[0034] An arc-shaped groove is provided on the lower side of the end of the pitch adjustment mechanism that is away from the tilt adjustment mechanism, and the arc-shaped groove is inserted into the second mounting ring.
[0035] According to the present application, a track hoisting device is provided, wherein multiple installation modules are provided, and the multiple installation modules are arranged at equal angles around the hoisting mechanism in the circumferential direction.
[0036] This application also provides a track lighting system, including a lighting track and a track hoisting device as described above.
[0037] The track hoisting device provided in this application realizes the installation of the lighting track through the hoisting mechanism and the installation module. The flip adjustment mechanism and the pitch adjustment mechanism realize the vertical rotation and pitch adjustment of the lighting track, respectively. Thus, the angle of the lighting track can be flexibly adjusted as needed to meet different usage requirements and improve the user experience.
[0038] Furthermore, the track lighting system provided in this application also possesses the various advantages described above due to the track hoisting device described above. Attached Figure Description
[0039] To more clearly illustrate the technical solutions in this application or conventional technology, the drawings used in the description of the embodiments or conventional technology will be briefly introduced below. Obviously, the drawings described below are some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0040] Figure 1 is one of the overall structural schematic diagrams of the track hoisting device provided in the embodiments of this application;
[0041] Figure 2 is a second schematic diagram of the overall structure of the track hoisting device provided in the embodiment of this application;
[0042] Figure 3 is an exploded view of the track hoisting device provided in an embodiment of this application;
[0043] Figure 4 is one of the schematic diagrams of the front cover structure in the track hoisting device provided in the embodiments of this application;
[0044] Figure 5 is a second schematic diagram of the front cover structure in the track hoisting device provided in the embodiment of this application;
[0045] Figure 6 is a schematic diagram of the combined structure of the front end cover and the mounting terminal in the track hoisting device provided in the embodiment of this application;
[0046] Figure 7 is an exploded view showing the installation position of the rotating shaft structure in the track hoisting device provided in the embodiment of this application;
[0047] Figure 8 is a structural schematic diagram of the first base in the track hoisting device provided in the embodiment of this application;
[0048] Figure 9 is an exploded view of the pitch adjustment arm in the track hoisting device provided in the embodiment of this application;
[0049] Figure 10 is a schematic diagram of the cooperation structure between the pitch adjustment arm and the first base in the track hoisting device provided in the embodiment of this application;
[0050] Figure 11 is a schematic diagram of the cooperation structure between the pitch adjustment arm and the first mounting base in the track hoisting device provided in the embodiment of this application;
[0051] Figure 12 is a schematic diagram of the second base structure in the track hoisting device provided in the embodiment of this application;
[0052] Figure 13 is a schematic diagram of the cooperation structure between the pitch adjustment arm and the second base in the track hoisting device provided in the embodiment of this application;
[0053] Figure 14 is a schematic diagram of the connecting seat structure in the track hoisting device provided in the embodiment of this application;
[0054] Figure 15 is a schematic diagram of the cooperation structure between the connecting seat and the second seat body in the track hoisting device provided in the embodiment of this application;
[0055] Reference numerals: 100, hoisting mechanism; 110, hoisting wire assembly; 120, connecting column assembly; 121, cylinder; 122, third end cap; 130, first end cap; 131, first mounting ring; 140, second end cap; 141, second mounting ring; 200, mounting module; 210, rotating shaft structure; 220, connecting assembly; 221, front end cap; 222, First flat hole; 223, Guide rib; 224, Wire hole; 225, Mounting terminal; 226, Terminal probe; 230, First mounting base; 231, First base body; 232, Second flat hole; 233, First mounting groove; 234, First top cover; 235, Second mounting groove; 236, First screw post; 240, Second mounting base; 241, Second base body; 242, Third mounting groove; 243, Positioning post; 244, Second screw post; 245, Second top cover; 246, Fourth mounting groove; 250, Pitch adjustment arm; 251, Rotating arm; 252, First bracket; 253, Second bracket; 254, Gasket; 260, Connecting seat; 261, Positioning arm; 262, Positioning hole; 263, Arc plate; 264, Arc groove; 265, Mounting arm. Detailed Implementation
[0056] To make the objectives, technical solutions, and advantages of this application clearer, the technical solutions of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0057] The track hoisting device of this embodiment is described below with reference to Figures 1 to 15. This track hoisting device is suitable for track lighting systems and can realize the function of hoisting the lighting tracks in the track lighting system.
[0058] Referring to Figures 1 to 3, the track hoisting device according to this embodiment includes a hoisting mechanism 100 and at least one installation module 200. The installation module 200 includes a tilt adjustment mechanism and a pitch adjustment mechanism. The tilt adjustment mechanism includes a connecting component 220 and a rotating shaft structure 210. The connecting component 220 is adapted to connect with the lighting track. The rotation axis of the rotating shaft structure 210 is horizontal, and one end of the rotating shaft structure 210 is connected to the connecting component 220. The connecting component 220 is adapted to rotate vertically about the rotation axis of the rotating shaft structure 210. The pitch adjustment mechanism connects the hoisting mechanism 100 and the rotating shaft structure 210 and is adapted to adjust the pitch angle of the tilt adjustment mechanism.
[0059] In this embodiment, the hoisting mechanism 100 is configured to be fixed to the lower side of a building or support structure by means of riveting, bolting, welding, etc. Each mounting module 200 can install a lighting track via its connecting assembly 220. The lighting track can be vertically rotated via a flip-adjustment mechanism, and the tilt angle of the flip-adjustment mechanism and the lighting track can be adjusted via a pitch adjustment mechanism to meet different usage requirements.
[0060] Referring to Figures 2 to 6, in some embodiments of this application, the connecting component 220 includes a front cover 221 and a mounting terminal 225. The first side of the front cover 221 is provided with a plug-in structure, which is adapted to be plugged into the lamp track and fixed by bolts. The second side of the front cover 221 is provided with a first flat hole 222, which is adapted to be plugged into the rotating shaft structure 210. The mounting terminal 225 is fixedly disposed on the first side of the front cover 221 and is provided with a terminal probe 226, which is adapted to be electrically connected to the lamp track.
[0061] Specifically, the connecting component 220 in this embodiment mainly includes a front cover 221 and a mounting terminal 225. The front cover 221, as the core component connecting the lamp track and the rotating shaft structure 210, has a guide-function insertion structure on one side. This structure is precisely aligned and fitted into the square lamp track, and is secured using bolts of specific specifications (e.g., Phillips head countersunk screws), ensuring a stable and tight mechanical connection between the track and the connecting device. On the other side of the front cover 221, a dedicated first flat hole 222 is provided. This first flat hole 222 is configured to accommodate the rotating shaft structure 210. When the rotating shaft structure 210 is inserted into the first flat hole 222, it ensures that the track can rotate flexibly in the horizontal plane to meet the needs of different lighting angles. Furthermore, the mounting terminal 225, installed on the same side of the front cover 221 (i.e., the side in contact with the lamp track), is an important electrical interface component, which includes pre-set terminal probes 226. These copper terminal probes 226 can make good contact with the conductive copper strip inside the track, ensuring low-resistance and high-efficiency current transmission. They also enable convenient conductive connections during rapid assembly, eliminating the need for cumbersome wiring processes and greatly improving installation efficiency and operational safety.
[0062] The connecting component 220 involved in this application, through the ingenious combination of mechanical and electrical connection technologies, not only ensures the robust assembly of the track system, but also endows it with flexible adjustment characteristics, thereby effectively solving the problem that traditional fixed tracks cannot rotate, and greatly enhancing the practicality of lighting equipment in practical applications.
[0063] Optionally, to facilitate wiring connections and management between the installation terminal 225 and lighting fixtures or other electrical equipment, the front cover 221 is provided with a wire hole 224. The wire hole 224 not only provides a passage for the wires but also ensures that the wires are protected within the track system, preventing safety hazards such as wire wear or short circuits caused by movement or rotation.
[0064] Optionally, the front cover 221 is provided with a threaded hole, and the mounting terminal 225 is fixed to the front cover 221 by a screw passing through the threaded hole.
[0065] In some embodiments of this application, the plug-in structure includes a guide rib 223. The extension direction of the guide rib 223 is parallel to the rotation axis of the rotating shaft structure 210. The guide rib 223 is provided with at least one threaded hole, preferably two or more. The guide rib 223 is adapted to be plugged into the lamp track and fixed to the lamp track by a threaded part that mates with the threaded hole.
[0066] In this embodiment, the guide rib 223 extends parallel to the rotation axis of the rotating shaft structure 210, ensuring accurate alignment and guiding the track smoothly into the predetermined position when the connecting device is docked with the square lamp track. The guide rib 223 has at least one threaded hole, more preferably two or more threaded holes, configured to receive screws or other matching threaded fasteners. During actual installation, by screwing the threaded fasteners into the threaded holes on the guide rib 223, the front end cover 221 can be firmly and stably fixed to the lamp track, thus achieving a stable and precise mechanical connection. This ensures that the track will not loosen or shift after connection, and simplifies the assembly process, allowing users to complete the operation quickly and efficiently during installation and disassembly, while ensuring the stability and safety of the entire lighting system. Furthermore, due to the cooperation between the guide rib 223 and the rotating shaft structure 210, the track can maintain a reliable connection with the connecting component 220 even when rotating in multiple dimensions, meeting lighting needs in different directions and angles, greatly improving the user experience and the flexibility of system functions.
[0067] Referring to Figures 8 to 13, in some embodiments of this application, the pitch adjustment mechanism includes a first mounting base 230, a second mounting base 240, a pitch adjustment arm 250, and a connecting base 260. The first mounting base 230 is connected to the rotating shaft structure 210; the first end of the pitch adjustment arm 250 is rotatably connected to the first mounting base 230, and the second end of the pitch adjustment arm 250 is rotatably connected to the second mounting base 240. The rotation axes between the pitch adjustment arm 250 and the first mounting base 230, and between the pitch adjustment arm 250 and the second mounting base 240, are horizontal and perpendicular to the rotation axis of the rotating shaft structure 210. The connecting base 260 is located on the side of the second mounting base 240 opposite to the pitch adjustment arm 250, and is connected to both the second mounting base 240 and the hoisting mechanism 100.
[0068] In some embodiments of this application, the first mounting base 230 includes a first base body 231 and a first top cover 234.
[0069] The first base 231 is provided with a second flat hole 232, which is inserted into the rotating shaft structure 210. This allows the connecting assembly 220 to rotate relative to the first base 231 via the rotating shaft structure 210. Specifically, the rotating shaft structure 210 includes a first insertion part, a second insertion part, and an intermediate shaft that is rotatably connected to the first insertion part and the second insertion part respectively. The first insertion part is inserted into the first flat hole 222, and the second insertion part is inserted into the second flat hole 232. The structure of the flat hole can prevent the first insertion part and the second insertion part from rotating on their own.
[0070] Optionally, one end of the first plug portion located in the first flat hole 222 and / or one end of the second plug portion located in the second flat hole 232 are fixed by bolts passing through the countersunk hole.
[0071] It is worth noting that the relative rotation between the intermediate shaft and the first and second insertion parts has a certain resistance. The angle can be fixed by manually rotating the shaft.
[0072] The first top cover 234 and the first base 231 are detachably connected, and the connection method can be bolt fixing, snap-fit, or adhesive bonding. Optionally, the first base 231 and the first top cover 234 are respectively provided with a first screw post 236, and the first base 231 and the first top cover 234 are fixedly connected by screws that are threaded to the first screw post 236.
[0073] The first base 231 is also provided with a first mounting groove 233, which is located on the side of the first base 231 opposite to the rotating shaft structure 210. The first top cover 234 is provided with a second mounting groove 235 corresponding to the first mounting groove 233. After the first top cover 234 and the first base 231 are connected, the first mounting groove 233 and the second mounting groove 235 are aligned. The first end of the pitch adjustment arm 250 is rotatably disposed between the first base 231 and the first top cover 234, and the pitch adjustment arm 250 is adapted to rotate within the first mounting groove 233 and the second mounting groove 235. The first end of the pitch adjustment arm 250 can be embedded in the continuous channel formed by the first mounting groove 233 and the second mounting groove 235 and rotate freely, thus enabling flexible adjustment of the lamp track in the vertical direction, meeting the multi-dimensional needs for lighting angles in different occasions, and further improving the functionality and user experience of the square track multi-dimensional rotation quick-connect connection device.
[0074] In some embodiments of this application, the second mounting base 240 includes a second base body 241 and a second top cover 245. The second top cover 245 is detachably connected to the second base body 241, and the connection method can be bolt fixing, snap-fitting or adhesive bonding, etc.
[0075] The second base 241 is provided with a third mounting groove 242, and the second top cover 245 is provided with a fourth mounting groove 246 corresponding to the third mounting groove 242. The second end of the pitch adjustment arm 250 is rotatably disposed between the second base 241 and the second top cover 245, and the pitch adjustment arm 250 is adapted to rotate within the third mounting groove 242 and the fourth mounting groove 246. This provides a spatial basis for the pitch adjustment arm 250 to rotate, allowing the second end of the pitch adjustment arm 250 to rotate flexibly within the third mounting groove 242 and the fourth mounting groove 246, thereby realizing the vertical adjustment function of the lamp track.
[0076] Referring to Figure 14, the second base 241 is also equipped with a positioning post 243, and a positioning arm 261 is provided on one side of the connecting seat 260. The positioning arm 261 is located between the second base 241 and the second top cover 245, and the positioning arm 261 is provided with a positioning hole 262, which is inserted into the positioning post 243. When the device is assembled, the positioning arm 261 is clamped between the second top cover 245 and the second base 241, and the positioning post 243 is inserted into the positioning hole 262. This ensures that the entire hoisting track system maintains precise axial positioning while undergoing pitch adjustment, avoiding instability or loosening caused by angle changes, and further improving the safety and user experience of the entire device.
[0077] Referring to Figures 14 and 15, in some embodiments of this application, the second base 241 and the second top cover 245 are provided with a second screw post 244, and the second top cover 245 and the second base 241 are fixed by screws that are threadedly connected to the second screw post 244.
[0078] Furthermore, the connecting seat 260 is provided with a mounting arm 265, which has a through hole. The mounting arm 265 is located between the second screw post 244 of the second top cover 245 and the second screw post 244 of the second seat 241, and is configured such that the screws that fix the second top cover 245 and the second seat 241 pass through the through hole of the mounting arm 265. In this way, when the second seat 241 and the second top cover 245 are fixed with screws, the screws will pass through the through hole of the mounting arm 265, thereby making the connection between the connecting seat 260 and the second mounting seat 240 more stable.
[0079] Referring back to Figures 8 to 13, in some embodiments of this application, the pitch adjustment arm 250 includes a rotating arm 251 and a first bracket 252 and a second bracket 253 respectively rotatably disposed at both ends of the rotating arm 251. The first bracket 252 is fixedly connected to the first mounting base 230, and the second bracket 253 is fixedly connected to the second mounting base 240.
[0080] Optionally, the first bracket 252 and the rotating arm 251, as well as the second bracket 253 and the rotating arm 251, are connected by screws. Circular gaskets 254, such as nylon gaskets, are provided between the first bracket 252 and the rotating arm 251, between the first bracket 252 and the head of the screw, between the second bracket 253 and the rotating arm 251, and between the second bracket 253 and the head of the screw. By adding gaskets 254, the requirement for relative rotation between the rotating arm 251 and the first bracket 252 and the second bracket 253 can be met.
[0081] Optionally, the first mounting slot 233, the second mounting slot 235, the third mounting slot 242, and the fourth mounting slot 246 are each provided with a positioning slot configured to mate with the gasket 254. This positioning slot is a semi-circular groove. The positioning function can be achieved by the cooperation between the positioning slot and the gasket 254, thereby increasing the stability of the structure.
[0082] It is worth noting that the scheme of connecting the first bracket 252 and the rotating arm 251, as well as the second bracket 253 and the rotating arm 251, with the addition of a washer 254, can also prevent the pitch angle from changing on its own due to factors such as gravity when it is adjusted to a suitable position by utilizing the preload of the screws and the friction of the washer 254.
[0083] Optionally, the first bracket 252 is provided with a through hole, which is located between the first screw post 236 of the first base 231 and the first screw post 236 of the first top cover 234, and is configured such that the screws connecting the first base 231 and the first top cover 234 pass through the through hole of the first bracket 252.
[0084] Optionally, the second bracket 253 is provided with a through hole, which is located between the second screw post 244 of the second seat 241 and the second screw post 244 of the second top cover 245, and is configured such that the screws connecting the second seat 241 and the second top cover 245 pass through the through hole of the first bracket 252.
[0085] Referring to Figures 3 and 14, in some embodiments of this application, the hoisting mechanism 100 includes a hoisting wire assembly, a connecting column assembly, a first end cap 130, and a second end cap 140. The connecting column assembly is fixedly connected to the hoisting wire assembly. The first end cap 130 is detachably installed on the top of the connecting column assembly, and a first mounting ring 131 is provided on the lower side of the first end cap 130. The second end cap 140 is detachably installed on the bottom of the connecting column assembly, and a second mounting ring 141 is provided on the upper side of the second end cap 140. An arc-shaped plate 263 is provided on the upper side of the end of the pitch adjustment mechanism away from the tilt adjustment mechanism (i.e., the connecting seat 260), and the arc-shaped plate 263 is located between the first mounting ring 131 and the connecting column assembly. An arc-shaped groove 264 is provided on the lower side of the end of the pitch adjustment mechanism away from the tilt adjustment mechanism (i.e., the connecting seat 260), and the arc-shaped groove 264 is inserted into the second mounting ring 141.
[0086] In this embodiment, the connecting column assembly, the first end cap 130, and the second end cap 140 jointly achieve a detachable connection with the pitch adjustment mechanism, allowing the number of installation modules 200 to be increased or decreased according to actual usage requirements. Furthermore, the installation angle of the pitch adjustment mechanism can be flexibly adjusted. On the one hand, the orientation can be adjusted according to site requirements; on the other hand, it facilitates flexible adjustment of the included angle between adjacent installation modules 200 when increasing or decreasing the number of installation modules 200.
[0087] Optionally, the first end cap 130 and / or the second end cap 140 are threadedly connected to the connecting post assembly.
[0088] Optionally, the connecting column assembly includes a cylindrical portion 121 and a third end cap 122. The third end cap 122 has an axial through hole, through which the suspension wire assembly passes. The radial dimension of the lower end of the suspension wire assembly is larger than the radial dimension of the axial through hole. The third end cap 122 is threadedly connected to the cylindrical portion 121, thereby achieving a detachable and fixed connection between the suspension wire assembly and the connecting column assembly. Of course, a detachable and fixed connection between the suspension wire assembly and the connecting column assembly can also be achieved through methods such as threaded connection, snap-fit, bonding, or welding.
[0089] Referring to Figures 2 and 3, in some embodiments of this application, multiple installation modules 200 are provided, arranged at equal angles around the hoisting mechanism 100. To achieve more flexible and multi-dimensional track layout and lighting installation, the design employs a method where multiple installation modules 200 are evenly distributed around the hoisting mechanism 100. These installation modules 200 surround the hoisting mechanism 100 at specific angular intervals, allowing the entire track system to accommodate lighting equipment at different spatial positions and angles according to actual needs. Each installation module 200 has independent connection, fixing, and rotation functions, enabling rapid docking with the track and free horizontal swing via a precision rotating shaft structure 210; simultaneously, vertical tilt adjustment of the track can be achieved via the pitch adjustment arm 250 and its associated first mounting base 230, second mounting base 240, and other components. This design allows each track segment to be independently adjusted to its ideal position and angle, ensuring that the lighting fixtures can provide illumination from any direction, meeting diverse lighting layout requirements in different situations.
[0090] In addition, the circumferential and equidistant arrangement of multiple mounting modules 200 not only enhances the flexibility of the system, but also improves the overall aesthetics and space utilization. This allows users to easily and quickly adjust the layout of each track according to changes in the actual space size, shape, and lighting requirements, further improving the functionality of the device and the user experience.
[0091] This application also provides a track lighting system, including a lamp track and the aforementioned track hoisting device.
[0092] Optionally, the lighting track is a square track. As the carrier of the entire lighting system, the lighting track, through its connection with the track hoisting device, enables rapid installation, disassembly, and flexible adjustment of the lighting fixtures.
[0093] The track lighting system provided in this application achieves the installation of the lighting track through a track hoisting device. The vertical rotation and pitch adjustment of the lighting track are realized by the flip adjustment mechanism and the pitch adjustment mechanism, respectively. Thus, the angle of the lighting track can be flexibly adjusted as needed to meet different usage requirements and improve the user experience.
[0094] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.
Claims
1. A track hoisting device, comprising: Lifting mechanism (100); At least one mounting module (200) includes a tilt adjustment mechanism and a pitch adjustment mechanism. The tilt adjustment mechanism includes a connecting component (220) and a rotating shaft structure (210). The connecting component (220) is adapted to connect to a lighting track. The rotating shaft structure (210) has a horizontal axis of rotation. One end of the rotating shaft structure (210) is connected to the connecting component (220). The connecting component (220) is adapted to rotate vertically about the axis of rotation of the rotating shaft structure (210). The pitch adjustment mechanism connects the hoisting mechanism (100) and the rotating shaft structure (210) and is adapted to adjust the pitch angle of the tilt adjustment mechanism.
2. The track hoisting device according to claim 1, wherein, The connection component (220) includes: The front cover (221) has a first side provided with a plug-in structure, which is suitable for plugging into the lamp track and fixing it with bolts. The second side of the front cover (221) is provided with a first flat hole (222), which is suitable for plugging into the rotating shaft structure (210). Mounting terminal (225) is fixedly disposed on the first side of the front end cover (221) and provided with terminal probe (226), the terminal probe (226) being adapted to be electrically connected to the lamp track.
3. The track hoisting device according to claim 2, wherein, The plug-in structure includes a guide rib (223), the extension direction of which is parallel to the rotation axis of the rotating shaft structure (210). The guide rib (223) is provided with at least one threaded hole. The guide rib (223) is adapted to be plugged into the lamp track and fixed to the lamp track by a threaded part that engages with the threaded hole.
4. The track hoisting device according to any one of claims 1 to 3, wherein, The pitch adjustment mechanism includes: The first mounting base (230) is connected to the rotating shaft structure (210); Second mounting base (240); A pitch adjustment arm (250) is provided, with its first end rotatably connected to the first mounting base (230) and its second end rotatably connected to the second mounting base (240). The rotation axes between the pitch adjustment arm (250) and the first mounting base (230) and between the pitch adjustment arm (250) and the second mounting base (240) are horizontal and perpendicular to the rotation axis of the rotating shaft structure (210). The connecting seat (260) is located on the side of the second mounting seat (240) away from the pitch adjustment arm (250) and is connected to the second mounting seat (240) and the hoisting mechanism (100) respectively.
5. The track hoisting device according to claim 4, wherein, The first mounting base (230) includes: The first base (231) is provided with a second flat hole (232) and a first mounting groove (233). The second flat hole (232) is inserted into the rotating shaft structure (210). The first mounting groove (233) is located on the side of the first base (231) away from the rotating shaft structure (210). The first top cover (234) is detachably connected to the first base (231), and the first top cover (234) is provided with a second mounting groove (235) corresponding to the first mounting groove (233); The first end of the pitch adjustment arm (250) is rotatably disposed between the first base (231) and the first top cover (234), and the pitch adjustment arm (250) is adapted to rotate within the first mounting groove (233) and the second mounting groove (235).
6. The track hoisting device according to claim 4, wherein, The second mounting base (240) includes: The second base (241) is provided with a third mounting groove (242) and a positioning post (243); The second top cover (245) is detachably connected to the second base (241), and the second top cover (245) is provided with a fourth mounting groove (246) corresponding to the third mounting groove (242); The second end of the pitch adjustment arm (250) is rotatably disposed between the second base (241) and the second top cover (245), and the pitch adjustment arm (250) is adapted to rotate within the third mounting slot (242) and the fourth mounting slot (246); A positioning arm (261) is provided on one side of the connecting seat (260). The positioning arm (261) is located between the second seat body (241) and the second top cover (245). The positioning arm (261) is provided with a positioning hole (262), which is inserted into the positioning post (243).
7. The track hoisting device according to claim 4, wherein, The pitch adjustment arm (250) includes a rotating arm (251) and a first bracket (252) and a second bracket (253) respectively rotatably disposed at both ends of the rotating arm (251). The first bracket (252) is fixedly connected to the first mounting base (230), and the second bracket (253) is fixedly connected to the second mounting base (240).
8. The track hoisting device according to claim 1, wherein, The hoisting mechanism (100) includes: Suspension wire assembly; A connecting column assembly is fixedly connected to the suspension wire assembly; A first end cap (130) is detachably installed on the top of the connecting column assembly, and a first mounting ring (131) is provided on the lower side of the first end cap (130). The second end cap (140) is detachably installed at the bottom end of the connecting column assembly, and a second mounting ring (141) is provided on the upper side of the second end cap (140). An arc-shaped plate (263) is provided on the upper side of the end of the pitch adjustment mechanism away from the tilt adjustment mechanism. The arc-shaped plate (263) is located between the first mounting ring (131) and the connecting column assembly. An arc-shaped groove (264) is provided on the lower side of the end of the pitch adjustment mechanism away from the tilt adjustment mechanism, and the arc-shaped groove (264) is inserted into the second mounting ring (141).
9. The track hoisting device according to claim 1, wherein, Multiple installation modules (200) are provided, and the multiple installation modules (200) are arranged at equal angles around the hoisting mechanism (100) in the circumferential direction.
10. A track lighting system, comprising a lighting track and a track hoisting device as described in any one of claims 1 to 9.
Citation Information
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