Garment suspension type storage track device
By designing mounting bracket components, quick-assembly and disassembly components, and main body connecting components, the garment hanging storage track device can be quickly installed, disassembled, and spliced with tracks. This solves the problem of low efficiency in connecting garment hanging panels and tracks in existing technologies and improves the system's adaptability and safety.
Patent Information
- Application Number
- CN202511484142.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-17
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2045-10-17
AI Technical Summary
In existing garment hanging storage rail devices, the connection method between the garment hanging panels and the main rail body results in low assembly and disassembly efficiency and poses safety risks, making it difficult to adapt to the frequent adjustment needs of garment storage.
It adopts mounting bracket components, quick-assembly components and main body connection components. The engagement and disengagement of the docking blocks and docking seats are controlled by an electric telescopic rod, so as to realize the quick installation and disassembly of the clothes hanging board. The design of the connecting plug and slot enables the easy splicing of the track.
It improves the efficiency and safety of assembling and disassembling clothes racks, ensures the structural continuity and adaptability of the track, reduces operational complexity and safety risks, and adapts to business needs that require frequent adjustments.
Smart Images

Figure CN120986933A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of logistics and warehousing technology, and in particular to a garment hanging storage track device. Background Technology
[0002] In the field of apparel warehousing, garment hanging storage rail devices have become the mainstream equipment in mid-to-high-end apparel warehousing (such as brand apparel warehouses and e-commerce apparel sorting centers) because they can realize "hanging storage and convenient retrieval" of garments and avoid stacking and wrinkles. Its core function is to build a storage frame through the main rail and use garment hanging components to realize the batch hanging of garments. The reliability of the connection between the garment hanging components and the main rail, the efficiency of disassembly and assembly, and the load-bearing stability directly determine the operational efficiency and safety of the warehousing system. In the existing design, the connection between the garment hanging panels and the main track body is mostly achieved by "bolt through fixing" or "welding positioning". If bolt fixing is used, manual use of wrenches and other tools is required to tighten the bolts one by one. Disassembling and assembling a single garment hanging panel is time-consuming, and the bolts are prone to rust after long-term use. The rust needs to be treated during disassembly, which further extends the maintenance time. If welding positioning is used, the garment hanging panel and the main track body form a fixed connection. When the garment hanging panel needs to be replaced due to wear and deformation, it needs to be separated by cutting equipment. This is not only complicated to operate, but may also damage the main track structure, leading to an increased risk of the entire track being scrapped. This results in low efficiency in disassembling and assembling garment hanging panels, slow emergency replacement of faulty garment hanging panels, increased safety risks and economic losses, and is difficult to adapt to the business characteristics of "frequent adjustment and dynamic response" in clothing warehousing. To address this issue, a garment hanging storage track device was designed. Summary of the Invention
[0003] The purpose of this invention is to solve the problems in the prior art by proposing a garment hanging storage track device.
[0004] To achieve the above objectives, the present invention adopts the following technical solution: A garment hanging storage track device includes a track body, a garment hanging board on the track body, a plurality of garment hanger hanging holes evenly opened at one end of the garment hanging board, and also includes an installation bracket assembly, a quick disassembly assembly and a main body connecting assembly disposed on the top of the track body. The mounting bracket assembly includes mounting columns that are uniformly and fixedly connected to the top of the track body. A mounting top plate is fixedly connected to the top of the mounting columns, and eight sets of mounting through holes are opened on the top of the mounting top plate. The quick-assembly assembly includes a docking guide rail fixedly connected inside the main track body. A docking slider is symmetrically slidably connected to the outer side of the docking guide rail. A docking block is fixedly connected to one end of the docking slider, and the docking block is slidably connected to the main track body. A docking seat is fixedly connected to the top of the clothes hanging panel. A seat mating groove that mates with the docking seat is opened inside the main track body. A seat mating groove that mates with the docking block is opened at one end of the docking seat. The main connecting assembly includes a connecting plug fixedly connected to one end of the track body, and a connecting slot that mates with the connecting plug is provided at the other end of the track body.
[0005] Preferably, a drive guide rail is fixedly connected inside the track body, a drive slider is slidably connected to the outside of the drive guide rail, a linkage rod is symmetrically rotatably connected to the top of the drive slider, and the other end of the linkage rod is rotatably connected to the docking slider.
[0006] Preferably, the track body has a first guide groove and a second guide groove inside that cooperate with the docking slider and the driving slider.
[0007] Preferably, an electric telescopic rod is installed inside the track body, a drive rod is fixedly connected to the top end of the electric telescopic rod, and the other end of the drive rod is fixedly connected to the drive slider.
[0008] Preferably, one end of the connector plug has a plug mating groove, the inside of the track body is slidably connected to a connecting block that mates with the plug mating groove, the inner surface of the track body is rotatably connected to a bidirectional lead screw, the two outer ends of the bidirectional lead screw are symmetrically connected to a linkage slider by threads, one end of the linkage slider is fixedly connected to a first hinge seat, the end of the connecting block near the bidirectional lead screw is fixedly connected to a second hinge seat, the two second hinge seats are respectively rotatably connected to a first transmission link and a second transmission link, and the other ends of the first transmission link and the second transmission link are respectively rotatably connected to two sets of first hinge seats.
[0009] Preferably, one end of the connecting block is fixedly connected to an annular baffle, and the interior of the track body is provided with a baffle groove that cooperates with the annular baffle.
[0010] Preferably, a drive handwheel is fixedly connected to the top end of the bidirectional lead screw.
[0011] Preferably, the outer side of the drive handwheel is fixedly connected with anti-slip protrusions.
[0012] Preferably, a limiting insert block is fixedly connected to the top of the clothes hanging board, and a limiting insert groove that cooperates with the limiting insert block is opened on the bottom surface of the track body.
[0013] Preferably, one end of the hanging panel is fixedly connected with several sets of protective rings around the holes that mate with the hanging holes of the clothes hanger.
[0014] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. Flexible and stable installation, adaptable to various storage structures and provides reliable support. This invention significantly improves the adaptability and structural rigidity of the entire system by adding mounting bracket components. Eight sets of mounting through holes on the mounting top plate can flexibly match the pre-embedded structures of different warehouse tops or walls, enabling rapid installation without modifying the components themselves, effectively improving the deployment efficiency of the system in different storage environments. Simultaneously, three sets of brackets are evenly distributed along the main track, effectively distributing the track and the garment load it bears to the main warehouse structure, fundamentally preventing mid-section sagging or installation tilting of long-distance tracks, ensuring long-term track straightness. This structural advantage provides a solid and stable installation foundation for subsequent key functions such as the assembly of garment hanging panels and the extension and splicing of tracks.
[0015] 2. The clothes rack is easy and efficient to assemble and disassemble, with a low operating threshold and strong safety. This invention introduces a quick-assembly / disassembly assembly, which uses an electric telescopic rod to control the engagement and disengagement of the docking blocks and docking seats, enabling rapid installation and removal of the garment hanging panel. This design significantly reduces assembly / disassembly time and improves daily operational efficiency. Simultaneously, the limiting insert blocks and slots within the assembly allow for pre-positioning of the garment hanging panel during initial installation, avoiding repeated adjustments and further simplifying the operation process. This reduces the technical requirements for operators, allowing even non-professionals to easily assemble and disassemble the panel. Furthermore, the quick-assembly / disassembly assembly is strategically arranged in three groups along the garment hanging panel, enabling them to share the weight of the clothing and preventing stress concentration at a single point from causing component deformation or accidental detachment of the hanging panel, greatly enhancing the safety and reliability of garment storage.
[0016] 3. The track assembly is simple and reliable, easy to expand, and maintains structural continuity. Through the design of the main connecting component, this invention achieves simple and reliable splicing between multiple track segments. During the splicing process, the operator can first insert the connecting plug into the corresponding slot for initial alignment, and then lock it by turning the handwheel to drive the transmission mechanism. The entire process requires no complex tools and is easy to operate on-site. This component utilizes the self-locking characteristic of the screw drive to ensure that the track is firmly connected and without loosening after splicing, effectively guaranteeing the overall straightness and structural continuity of the extended track. This meets the flexible adjustment needs of track length for warehouses of different sizes and provides good scalability and adaptability for system layout. Attached Figure Description
[0017] Figure 1This is an overall schematic diagram of the present invention; Figure 2 This is a schematic diagram of the structure of the clothes hanging board in this invention; Figure 3 In this invention Figure 2 Enlarged structural diagram at point A; Figure 4 This is a schematic diagram of the docking guide rail structure in this invention; Figure 5 This is a schematic diagram of the connector structure in this invention; Figure 6 This is a schematic diagram of the connecting block in this invention; Figure 7 This is a schematic diagram of the linkage slider in this invention; In the picture: 1. Track body; 2. Clothes hanging board; 21. Clothes hanger mounting hole; 22. Limiting insert block; 23. Limiting insert groove; 24. Hole perimeter protective ring; 3. Install the bracket assembly; 31. Install the uprights; 32. Install the top plate; 33. Install the through holes; 4. Quick-assembly / disassembly components; 41. Docking guide rail; 42. Docking slider; 43. Docking block; 44. Docking seat; 45. Seat mating groove; 46. Block mating groove; 47. Drive guide rail; 48. Drive slider; 49. Linkage rod; 410. First guide groove; 411. Second guide groove; 412. Electric telescopic rod; 413. Drive rod; 5. Main connecting assembly; 51. Connecting plug; 52. Connecting slot; 53. Plug mating groove; 54. Connecting block; 55. Two-way lead screw; 56. Linkage slider; 57. First hinge seat; 58. Second hinge seat; 59. First transmission link; 510. Second transmission link; 511. Annular baffle; 512. Baffle groove; 513. Drive handwheel; 514. Anti-slip protrusion. Detailed Implementation
[0018] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.
[0019] Examples, such as Figure 1 As shown; A garment hanging storage track device includes a track body 1, a garment hanging board 2 is provided on the track body 1, and a plurality of garment hanger hanging holes 21 are evenly opened at one end of the garment hanging board 2.
[0020] In this implementation plan: In the prior art, clothes are hung using a hanging board 2 and hanger holes 21. In this existing design, the connection between the hanging board and the track body is mostly achieved by "bolt through fixing" or "welding positioning". If bolt fixing is used, manual use of wrenches and other tools is required to tighten each bolt one by one. Disassembling and assembling a single hanging board is time-consuming, and the bolts are prone to rust after long-term use. Additional rust removal is required during disassembly, further extending maintenance time. If welding positioning is used, the hanging board and the track body form a fixed connection. When the hanging board needs to be replaced due to wear or deformation, it needs to be separated by cutting equipment. This is not only complicated to operate, but may also damage the track body structure, increasing the risk of the entire track being scrapped. This results in low efficiency of hanging board disassembly and assembly, slow emergency replacement of faulty hanging boards, and increased safety risks and economic losses. It is difficult to adapt to the business characteristics of "frequent adjustment and dynamic response" in clothing warehousing. In terms of usage, this problem is obviously a real and difficult problem to solve. Therefore, in order to solve this technical problem, this application document adds an installation bracket assembly 3, a quick disassembly assembly 4, and a main body connection assembly 5.
[0021] Furthermore: This application incorporates the aforementioned prior art, such as Figures 1 to 7 As shown: In conjunction with the above: a garment hanging storage track device further includes a mounting bracket assembly 3, a quick-assembly assembly 4, and a main body connection assembly 5 disposed on the surface of the track body 1; Mounting bracket assembly 3 is uniformly and fixedly connected to mounting columns 31 on the top of the track body 1. Mounting top plate 32 is fixedly connected to the top of mounting column 31. Eight sets of mounting through holes 33 are opened on the top of mounting top plate 32. The quick-assembly assembly 4 includes a docking guide rail 41 fixedly connected inside the track body 1. A docking slider 42 is symmetrically slidably connected to the outside of the docking guide rail 41. A docking block 43 is fixedly connected to one end of the docking slider 42, and the docking block 43 is slidably connected to the track body 1. A docking seat 44 is fixedly connected to the top of the clothes hanging board 2. A seat mating groove 45 that mates with the docking seat 44 is opened inside the track body 1. A seat mating groove 46 that mates with the docking block 43 is opened at one end of the docking seat 44. The main connecting component 5 includes a connecting plug 51 fixedly connected to one end of the track body 1, and a connecting slot 52 that mates with the connecting plug 51 is provided at the other end of the track body 1.
[0022] In this implementation plan: the track body 1 is fixedly connected to the mounting column 31, and the other end of the mounting column 31 is fixed to the mounting top plate 32. Through the eight sets of mounting through holes 33 on the top of the mounting top plate 32, fasteners (such as bolts) are used to connect the mounting top plate 32 to the warehouse top or wall and other fixed structures, so as to achieve stable installation of the track body 1 in the storage space. This allows the track body 1 to be flexibly fixed according to the storage space and adapt to different warehouse structures. The quick-release assembly 4 enables the detachable connection between the clothes hanging board 2 and the track body 1. First, align the docking bracket 44 at the top of the clothes hanging board 2 with the bracket mating groove 45 inside the track body 1, and insert the docking bracket 44 into the bracket mating groove 45 to complete the initial positioning of the clothes hanging board 2. Then, push the docking slider 42 to slide along the docking guide rail 41. The docking slider 42 drives the docking block 4. 3. Synchronous sliding allows the docking block 43 to embed into the block mating groove 46, locking the garment hanging board 2 and the track body 1. The hanger hanging hole 21 is used to hang the hanger that carries the garment. By enabling the quick installation and removal of the garment hanging board 2, it is convenient for the maintenance, replacement or adjustment of the position of the garment hanging board 2. At the same time, it ensures the stability of the connection between the garment hanging board 2 and the track body 1 and prevents the garment hanging board 2 from falling off. The main body connecting component 5 realizes the splicing of multiple sections of the track body 1. Align the connecting plug 51 at one end of one section of the track body 1 with the connecting slot 52 at the other end of another section of the track body 1, and insert the connecting plug 51 into the connecting slot 52 to complete the initial docking of the two sections of the track body 1, laying the foundation for subsequent locking. This enables the splicing of multiple sections of the track body 1, and the track length can be extended according to storage needs, improving the spatial adaptability of the track device.
[0023] It should be noted that: there are three sets of mounting bracket assembly 3 and quick-release assembly 4. All three sets of mounting bracket assembly 3 and quick-release assembly 4 are installed inside the track body 1. The three sets of mounting bracket assembly 3 evenly distribute the load of the track body 1 and the garment, avoiding sagging in the middle and tilting at the ends of the long track, and ensuring the straightness of the track. The three sets of quick-release assembly 4 can jointly bear the weight of the hanging board 2 and the garment, avoiding the force concentration of a single quick-release assembly 4, which may cause deformation of the docking block 43, breakage of the docking seat 44, or bending of the hanging board 2, and prevent the garment from tilting and slipping.
[0024] Furthermore: like Figure 3 and Figure 4 As shown: In an optional embodiment, a drive guide rail 47 is fixedly connected inside the track body 1, a drive slider 48 is slidably connected to the outside of the drive guide rail 47, a linkage rod 49 is symmetrically rotatably connected to the top of the drive slider 48, and the other end of the linkage rod 49 is rotatably connected to the docking slider 42.
[0025] In this embodiment: the drive guide rail 47 is fixed inside the track body 1, the drive slider 48 is slidably engaged with the drive guide rail 47, and the two ends of the linkage rod 49 are rotatably connected to the drive slider 48 and the docking slider 42 respectively. When the drive slider 48 slides linearly along the drive guide rail 47, the drive slider 48 will drive one end of the linkage rod 49 to move synchronously. The linkage rod 49 transmits power through rotation, pulling or pushing the docking slider 42 connected to its other end to slide along the docking guide rail 41. Since the two sets of docking sliders 42 are symmetrically arranged, and the two sets of linkage rods 49 are symmetrically connected to the top two ends of the drive slider 48, the unidirectional sliding of the drive slider 48 can drive the two sets of docking sliders 42 to move symmetrically closer or further away along the docking guide rail 41, ensuring that the docking blocks 43 driven by the two sets of docking sliders 42 can be synchronously inserted into or disengaged from the block engagement groove 46 of the docking seat 44, avoiding uneven force on the hanging board 2 and installation offset due to one end being stuck.
[0026] Furthermore: like Figure 3 As shown: In an optional embodiment, the interior of the track body 1 is provided with a first guide groove 410 and a second guide groove 411 that cooperate with the docking slider 42 and the driving slider 48, respectively.
[0027] In this embodiment: when the docking slider 42 slides along the docking guide rail 41, the first guide groove 410 restricts the movement direction of the docking slider 42, allowing the docking slider 42 to slide only along the extension direction of the first guide groove 410 (which is consistent with the guidance of the docking guide rail 41). When the driving slider 48 slides along the driving guide rail 47, the second guide groove 411 restricts the movement direction of the driving slider 48, allowing the driving slider 48 to slide only along the extension direction of the second guide groove 411 (which is consistent with the guidance of the driving guide rail 47). The first guide groove 410 and the second guide groove 411 provide dual guidance and limitation for the docking slider 42 and the driving slider 48, respectively, to prevent the slider from shifting laterally or flipping due to vibration, force or other factors during the sliding process, ensuring the accuracy of the slider's movement trajectory, avoiding problems such as the linkage 49 getting stuck and the docking block 43 not being able to align with the block mating groove 46 caused by slider shifting, improving transmission stability and component mating accuracy, reducing abnormal friction between the slider and the guide rail, and extending the service life of the docking slider 42, the driving slider 48, the docking guide rail 41, and the driving guide rail 47.
[0028] Furthermore: like Figure 4 As shown: In an optional embodiment, an electric telescopic rod 412 is installed inside the track body 1. A drive rod 413 is fixedly connected to the top end of the electric telescopic rod 412, and the other end of the drive rod 413 is fixedly connected to the drive slider 48.
[0029] In this embodiment: the electric telescopic rod 412 is installed inside the track body 1. The piston rod of the electric telescopic rod 412 is fixedly connected to one end of the drive rod 413, and the other end of the drive rod 413 is fixedly connected to the drive slider 48. When the electric telescopic rod 412 receives a control signal, its piston rod extends or retracts, driving the drive rod 413 to move in a straight line. The drive rod 413 transmits the power of the electric telescopic rod 412 to the drive slider 48, pushing or pulling the drive slider 48 to slide along the drive guide rail 47 and the second guide groove 411. The drive slider 48 then drives the docking slider 42 to slide along the docking guide rail 41 and the first guide groove 410 through the linkage rod 49, finally realizing the engagement or disengagement of the docking block 43 and the docking seat 44.
[0030] Furthermore: like Figures 5 to 7 As shown: In an optional embodiment, one end of the connector plug 51 is provided with a plug mating groove 53, and the inside of the track body 1 is slidably connected with a connecting block 54 that mates with the plug mating groove 53. The inside of the track body 1 is rotatably connected with a bidirectional lead screw 55, and the two ends of the bidirectional lead screw 55 are symmetrically connected with linkage sliders 56 by threads. One end of the linkage slider 56 is fixedly connected with a first hinge seat 57, and the end of the connecting block 54 near the bidirectional lead screw 55 is fixedly connected with a second hinge seat 58. The two second hinge seats 58 are respectively rotatably connected with a first transmission link 59 and a second transmission link 510. The other ends of the first transmission link 59 and the second transmission link 510 are respectively rotatably connected to two sets of first hinge seats 57.
[0031] In this embodiment: the bidirectional lead screw 55 is rotatably connected inside the track body 1, the linkage slider 56 is threadedly connected to the bidirectional lead screw 55, the first hinge seat 57 is fixed to one end of the linkage slider 56, and the second hinge seat 58 is fixed to the end of the connecting block 54 near the bidirectional lead screw 55. The first transmission connecting rod 59 and the second transmission connecting rod 510 are rotatably connected to the first hinge seat 57 and the second hinge seat 58 respectively. When the bidirectional lead screw 55 rotates, the two sets of linkage sliders 56 will move closer to or further away from the bidirectional lead screw 55. The first hinge 57 moves synchronously, and the first hinge 57 transmits power through the first transmission link 59 and the second transmission link 510 to push or pull the second hinge 58, thereby causing the connecting block 54 to slide along the outside of the track body 1. When the connecting plug 51 of one section of the track body 1 is inserted into the connecting slot 52 of the other section, the connecting block 54 slides into the plug mating groove 53 of the connecting plug 51 to lock the two sections of the track body 1. Conversely, when the connecting block 54 disengages from the plug mating groove 53, the lock can be released.
[0032] like Figure 6 and Figure 7 As shown: In an optional embodiment, one end of the connecting block 54 is fixedly connected to an annular baffle 511, and the interior of the track body 1 is provided with a baffle groove 512 that cooperates with the annular baffle 511.
[0033] In this embodiment: the annular baffle 511 is fixed to one end of the connecting block 54. The baffle groove 512 opened inside the track body 1 is structurally matched with the annular baffle 511. When the connecting block 54 slides along the outside of the track body 1, the annular baffle 511 will slide synchronously in the baffle groove 512 to prevent the connecting block 54 from deviating when sliding and to ensure that it is accurately aligned with the plug mating groove 53. When the annular baffle 511 slides to both ends of the baffle groove 512, it will be blocked by the end of the groove, which limits the sliding stroke of the connecting block 54 and prevents the connecting block 54 from falling off the track body 1 due to excessive sliding.
[0034] like Figure 6 and Figure 7 As shown: In an optional embodiment, a drive handwheel 513 is fixedly connected to the top end of the bidirectional lead screw 55.
[0035] In this embodiment, the drive handwheel 513 is fixed to the top of the bidirectional lead screw 55. The operator can transmit the hand torque to the bidirectional lead screw 55 by rotating the drive handwheel 513. The operator can rotate the bidirectional lead screw 55 without the aid of tools, which reduces the difficulty of operation.
[0036] like Figure 6 and Figure 7 As shown: In an optional embodiment, the outer side of the drive handwheel 513 is fixedly connected with an anti-slip protrusion 514.
[0037] In this embodiment, the anti-slip protrusion 514 is fixed on the outside of the drive handwheel 513. When the operator holds the drive handwheel 513 and rotates it, the anti-slip protrusion 514 increases the friction between the skin of the hand and the drive handwheel 513, preventing relative slippage between the hand and the handwheel due to sweat, oil, or the smoothness of the handwheel.
[0038] like Figure 2 As shown: In an optional embodiment, a limiting insert block 22 is fixedly connected to the top of the clothes hanging board 2, and a limiting insert groove 23 that cooperates with the limiting insert block 22 is opened on the bottom surface of the track body 1.
[0039] In this embodiment: the limiting insert block 22 is fixed on the surface of the clothes hanging board 2, and the limiting insert groove 23 opened on the surface of the track body 1 is structurally matched with the limiting insert block 22 (the limiting insert block 22 can be embedded in the limiting insert groove 23). When installing the clothes hanging board 2, the limiting insert block 22 of the clothes hanging board 2 is first aligned with the limiting insert groove 23 of the track body 1. The limiting insert block 22 and the limiting insert groove 23 cooperate to provide initial positioning for the clothes hanging board 2, so as to avoid the clothes hanging board 2 from shifting left and right or shaking back and forth during the installation process, and to ensure that the docking card 44 is accurately aligned with the card mating groove 45, thereby improving the mating accuracy of the quick disassembly and assembly component 4.
[0040] like Figure 4 As shown: In an optional embodiment, one end of the hanging panel 2 is fixedly connected with a plurality of protective rings 24 around the holes that cooperate with the hanging holes 21 of the clothes hangers.
[0041] In this embodiment, the periphery protection ring 24 is fixed to one end of the hanging board 2 and surrounds the edge of the hanger hanging hole 21. When the hanger hook carrying the garment is inserted into the hanger hanging hole 21, the hanger hook contacts the periphery protection ring 24 instead of directly contacting the edge of the hanger hanging hole 21 of the hanging board 2. During the hanging process, when the hanger shakes, the periphery protection ring 24 buffers the collision force between the hanger hook and the hanging board 2, and at the same time avoids the hanger hook from rubbing against the edge of the hanger hanging hole 21 for a long time, thus extending the service life of the hanging board 2 and the hanger.
[0042] Working principle: The operator attaches the mounting plate 32 to the fixed structure of the warehouse top or wall, aligning the eight sets of mounting through holes 33 at one end of the mounting plate 32 with the reserved holes on the fixed structure. Bolts or other fasteners are passed through the mounting through holes 33 to lock the mounting plate 32 to the fixed structure. The three sets of mounting bracket assemblies 3 provide "three-point support," ensuring stable fixation of the track body 1 within the storage space and preventing deviation or shaking. The operator holds the garment hanging board 2, aligning the limiting insert block 22 at the top of the garment hanging board 2 with the limiting insert groove 23 at the bottom of the track body 1, and slowly pushes the garment hanging board 2 until the limiting insert block 22 is fully embedded in the limiting insert groove 23. At this point, the garment hanging board 2 is initially positioned, and its top docking seat 44 is precisely aligned with the track body. The bottom surface of the mounting slot 45 prepares for subsequent locking. The electric telescopic rod 412 inside the track body 1 is activated. Upon receiving a control signal, the piston rod of the electric telescopic rod 412 retracts, causing the drive rod 413, fixed to the piston rod, to move linearly. The drive rod 413 transmits power to the drive slider 48 fixed at the other end, pushing the drive slider 48 to slide along the drive guide rail 47 inside the track body 1 (the drive slider 48 is simultaneously limited by the second guide groove 411, moving only along the guide direction to avoid deviation). When the drive slider 48 slides, two sets of linkage rods 49 symmetrically rotated at one end are simultaneously pulled. The other end of the linkage rod 49 is rotatably connected to the docking slider 42. Because the two sets of docking sliders 42 are symmetrically slidably connected to the docking guide rail 41... On the outer side, and with the linkage 49 symmetrically distributed, the unidirectional sliding of the drive slider 48 is converted into the "symmetrical approaching movement" of two sets of docking sliders 42 along the docking guide rail 41 through the linkage 49 (the docking sliders 42 are simultaneously limited by the first guide groove 410 to ensure accurate movement trajectory). When the docking sliders 42 approach along the docking guide rail 41, the docking blocks 43 fixed on their outer side slide synchronously with the docking sliders 42, gradually embedding into the block mating groove 46 at one end of the docking seat 44 at the top of the hanging board 2. When the docking blocks 43 are fully engaged in the block mating groove 46, the electric telescopic rod 412 stops moving, and the hanging board 2 is securely connected to the track body 1 through the synchronous locking of three sets of quick-release components 4. At this time, the hanger hanging hole 21 at one end of the hanging board 2 can be used to hang clothes. When the track length needs to be extended, the operator aligns the connector 51 at one end of one section of track body 1 (the section to be spliced) with the connector slot 52 at the other end of another section of track body 1 (the fixed section), and slowly pushes the section to be spliced until the connector 51 is fully inserted into the connector slot 52. The two sections of track body 1 are initially joined, forming a preliminary continuous track shape. The operator then rotates the drive handwheel 513, which drives the bidirectional lead screw 55 to rotate inside the track body 1. When the bidirectional lead screw 55 rotates, the two sets of linkage sliders 56 connected by symmetrical threads on its outer side move closer to each other along the bidirectional lead screw 55. The linkage sliders 56 drive the first hinge seat 57 to move synchronously. The first hinge seat 57 transmits power through the first transmission link 59 and the second transmission link 510.Pushing or pulling the second hinge seat 58 causes the connecting block 54 to slide along the inside of the track body 1, ultimately allowing the connecting block 54 to fully engage with the plug groove 53 at one end of the connecting plug 51. The two sections of the track body 1 are locked, forming a stable, continuous track. When the operator hangs the garment hanger hook on the hanger hole 21 at one end of the hanging board 2, the hanger hook contacts the protective ring 24 on the outside of the hanger hole 21, rather than directly touching the hanging board 2 body. This prevents the hook from rubbing against the edge of the hanger hole 21 for extended periods, protecting the hanging board 2 and the hanger, and extending their service life.
[0043] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A garment hanging storage track device, comprising a track body (1), wherein a garment hanging board (2) is provided on the track body (1), and a plurality of garment hanger hanging holes (21) are evenly provided at one end of the garment hanging board (2), characterized in that: It also includes a mounting bracket assembly (3), a quick-release assembly (4), and a main body connection assembly (5) disposed on the top of the track body (1); The mounting bracket assembly (3) includes mounting columns (31) that are uniformly fixedly connected to the top of the track body (1), and a mounting top plate (32) is fixedly connected to the top of the mounting column (31). The top of the mounting top plate (32) is provided with eight sets of mounting through holes (33). The quick assembly / disassembly assembly (4) includes a docking guide rail (41) fixedly connected inside the track body (1), a docking slider (42) symmetrically slidably connected to the outside of the docking guide rail (41), a docking block (43) fixedly connected to one end of the docking slider (42), and the docking block (43) slidably connected to the track body (1). A docking seat (44) is fixedly connected to the top of the clothes hanger (2). A seat mating groove (45) that mates with the docking seat (44) is opened inside the track body (1). A block mating groove (46) that mates with the docking block (43) is opened at one end of the docking seat (44). The main connecting component (5) includes a connecting plug (51) fixedly connected to one end of the track body (1), and a connecting slot (52) that mates with the connecting plug (51) is provided at the other end of the track body (1).
2. The garment hanging storage track device according to claim 1, characterized in that: The track body (1) is fixedly connected to a drive guide rail (47), and a drive slider (48) is slidably connected to the outside of the drive guide rail (47). A linkage rod (49) is symmetrically rotatably connected to the top of the drive slider (48), and the other end of the linkage rod (49) is rotatably connected to the docking slider (42).
3. The garment hanging storage track device according to claim 2, characterized in that: The track body (1) has a first guide groove (410) and a second guide groove (411) inside, which cooperate with the docking slider (42) and the driving slider (48).
4. The garment hanging storage track device according to claim 3, characterized in that: An electric telescopic rod (412) is installed inside the track body (1). A drive rod (413) is fixedly connected to the top of the electric telescopic rod (412), and the other end of the drive rod (413) is fixedly connected to the drive slider (48).
5. The garment hanging storage track device according to claim 4, characterized in that: One end of the connector plug (51) is provided with a plug mating groove (53). The inside of the track body (1) is slidably connected with a connecting block (54) that mates with the plug mating groove (53). The inner surface of the track body (1) is rotatably connected with a bidirectional lead screw (55). The two ends of the bidirectional lead screw (55) are symmetrically connected with a linkage slider (56) by threads. One end of the linkage slider (56) is fixedly connected with a first hinge seat (57). The end of the connecting block (54) near the bidirectional lead screw (55) is fixedly connected with a second hinge seat (58). The two second hinge seats (58) are respectively rotatably connected with a first transmission link (59) and a second transmission link (510). The other ends of the first transmission link (59) and the second transmission link (510) are respectively rotatably connected to the two sets of first hinge seats (57).
6. The garment hanging storage track device according to claim 5, characterized in that: One end of the connecting block (54) is fixedly connected to an annular baffle (511), and the inside of the track body (1) is provided with a baffle groove (512) that cooperates with the annular baffle (511).
7. The garment hanging storage track device according to claim 6, characterized in that: The top end of the bidirectional lead screw (55) is fixedly connected to a drive handwheel (513).
8. The garment hanging storage track device according to claim 7, characterized in that: The outer side of the drive handwheel (513) is fixedly connected with anti-slip protrusions (514).
9. The garment hanging storage track device according to claim 8, characterized in that: The top of the hanging board (2) is fixedly connected to a limiting insert block (22), and the bottom surface of the track body (1) is provided with a limiting insert groove (23) that cooperates with the limiting insert block (22).
10. The garment hanging storage track device according to claim 9, characterized in that: One end of the hanging board (2) is fixedly connected with several sets of protective rings (24) around the holes that cooperate with the hanging holes (21) of the clothes hanger.
Citation Information
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