Aluminum material storage shelf
By introducing support bases, partition support vertical plates and drive components into the aluminum storage shelves, parallel placement and convenient retrieval of aluminum profiles are achieved, solving the problems of low space utilization and inconvenient retrieval during aluminum storage, and improving safety and stability.
Patent Information
- Application Number
- CN202421738957.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-22
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-07-22
AI Technical Summary
Existing aluminum storage racks have low space utilization, inconvenience in picking up goods, and lack of safety when storing aluminum profiles.
An aluminum storage shelf is designed, which adopts a support base, a partition support vertical plate, a displacement adjustment rod and a sliding placement support component, combined with a drive component and a motor drive to achieve parallel placement of aluminum profiles and convenient retrieval.
It improves space utilization, reduces floor space, facilitates the picking operation of aluminum profiles, and enhances safety and stability.
Smart Images

Figure CN223341532U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of aluminum material storage shelves, in particular to an aluminum material storage shelf. Background Art
[0002] Aluminum storage racks are a type of warehouse rack specifically used to store aluminum profiles. They can effectively manage and protect aluminum profiles while improving storage space utilization and operational efficiency.
[0003] Aluminum profiles are long, and to prevent them from rolling during storage, they need to be placed on the ground with limit columns on both sides. After storing aluminum profiles on aluminum storage shelves, in order to improve space utilization and reduce space occupation, the stored aluminum profile cargo racks will be arranged and stacked in sequence. When it is necessary to pick up the aluminum profiles on one of the stacked aluminum shelves, it is inconvenient to retrieve, cumbersome to use, and not very safe. Utility Model Content
[0004] The purpose of the present invention is to provide an aluminum material storage shelf to solve the problems raised in the above background technology.
[0005] To achieve the above objectives, the present invention provides the following technical solutions:
[0006] An aluminum material storage shelf comprises a support base, wherein the bottom of both sides of the support base are provided with integral displacement sliding assemblies, a plurality of partition support vertical plates are evenly arranged just above the top of the support base, a displacement adjustment rod is provided on the top of the support base on one side of each partition support vertical plate, each displacement adjustment rod is parallel to the shorter side of the support base, and a sliding placement support assembly for supporting the placement of aluminum materials is symmetrically provided on the top of the displacement adjustment rod on both sides of each partition support vertical plate;
[0007] Each displacement adjustment rod has sliding grooves symmetrically provided on both sides through the top. The sliding grooves are arranged in a cross-shaped structure with an open top. The sliding placement support assembly is slidably located inside each of the sliding grooves.
[0008] As a preferred solution of the present invention, the sliding placement support assembly includes a driving assembly and a placement rack for placing aluminum materials in parallel, the placement rack includes a sliding rod matching the middle structure of the slide groove, the sliding rod slides in the middle of the slide groove, limiting columns are provided on the top of both sides of the sliding rod, and a supporting cross bar is provided between the two limiting columns located parallel to the top of the sliding rod, and the aluminum materials are placed in parallel on multiple supporting cross bars.
[0009] As a preferred solution of the present utility model, the driving assembly includes a sliding screw, an active bevel gear, a driven bevel gear and a driving connecting rod, the two ends of the sliding screw are installed in parallel in each of the slide grooves at the bottom of the slide rod through a first bearing support seat, the driven bevel gear is fixed to the end of the sliding screw outside each slide groove, the active bevel gear is connected with a connecting shaft passing through the inside, and the connecting shaft is fixed to the support base outside each slide groove through a second bearing fixing seat, the active bevel gear is meshed with the driven bevel gear, and the driving connecting rod is used to connect multiple connecting shafts.
[0010] As a preferred solution of the present invention, a sliding block is slidably provided on the sliding screw rod inside each sliding groove, and the top of the sliding block is fixed to the bottom of the sliding rod above it.
[0011] As a preferred solution of the present invention, the overall displacement sliding assembly includes displacement grooves opened on the bottom ground on both sides of the support base, and each displacement groove is provided with a sliding guide rail. The bottom of both sides of the support base is connected to the top of the guide rail slider on the sliding guide rail.
[0012] As a preferred solution of the present invention, the end portion of the connecting shaft close to one end of the support base is connected to a displacement drive motor through a coupling.
[0013] Compared with the prior art, the beneficial effects of the present invention are:
[0014] In response to the problems raised in the background technology, the present application sets up aluminum storage shelves, which have high space utilization, reduce space occupation, facilitate the retrieval of aluminum profiles on the aluminum shelves, and facilitate the placement and storage of profiles. By setting up an overall displacement sliding component, it is easy to move the stored profiles for subsequent retrieval.
[0015] By arranging a driving assembly at the bottom of the placement rack for placing the aluminum profile, it is easy to move the placement rack located above the support base, thereby preventing the inconvenience of limiting the positions of both sides of the aluminum profile to prevent it from rolling during storage;
[0016] The displacement adjustment rod and the sliding support assembly can be arranged upward according to the number of profiles and the floor space to improve the utilization rate. When the sliding support assembly is arranged upward, it is convenient to take out the aluminum profile and prevent the upper and lower layers from blocking each other.
[0017] The storage areas on both sides are separated by a partition support plate above the support base, which not only improves the separation and storage of different types of aluminum profiles, but also improves stability;
[0018] When it is necessary to pick up the aluminum profile on the top of one side of the supporting cross bar, the displacement drive motor drives the connecting shaft to rotate, further driving the active bevel gear on the connecting shaft to rotate the driven bevel gear connected to the end of the sliding screw rod, further driving the sliding screw rod to rotate. Multiple connecting shafts are connected by driving connecting rods, driving multiple sliding screw rods to rotate. At the same time as the sliding screw rod rotates, the sliding block on it drives the sliding rod to slide outside the slide groove, driving the aluminum profile on the top of the supporting cross bar to slide and displace, so as to take out the aluminum profile. The structure is simple and the operation is convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 This is a three-dimensional diagram of the overall structure of the utility model;
[0020] Figure 2 This is a schematic diagram of the connection structure between the displacement adjustment rod and the placement rack of the utility model;
[0021] Figure 3 For this utility model Figure 3 Enlarged view of area A in the middle;
[0022] Figure 4 This is a side view of the connection between the sliding screw and the placement rack of the utility model.
[0023] In the figure: 1. Support base; 2. Partition support vertical plate; 3. Displacement adjustment rod; 31. Slide groove; 4. Placement rack; 41. Slide rod; 42. Limit column; 43. Support cross bar; 44. Sliding screw; 441. First bearing support seat; 45. Sliding block; 46. Active bevel gear; 461. Connecting shaft; 462. Second bearing fixing seat; 47. Driven bevel gear; 48. Driving connecting rod; 5. Displacement slide groove; 51. Guide rail slider. DETAILED DESCRIPTION
[0024] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the embodiments of the present invention.
[0025] Example
[0026] The displacement drive motor in this application document adopts a conventional model in the prior art, and is controlled by a controller. The control circuit of the controller can be implemented by simple programming by technicians in this field, which is common knowledge in this field, so this application document will not explain it in detail.
[0027] See also Figure 1-4The utility model provides a technical solution: an aluminum material storage shelf, comprising a support base 1, with integral displacement sliding components arranged at the bottom of both sides of the support base 1, and a plurality of partition support vertical plates 2 are evenly arranged just above the top of the support base 1, and a displacement adjustment rod 3 is arranged on the top of the support base 1 on one side of each partition support vertical plate 2, and each displacement adjustment rod 3 is parallel to the shorter side of the support base 1, and a sliding placement support component for supporting the placement of aluminum materials is symmetrically arranged on the top of the displacement adjustment rod 3 on both sides of each partition support vertical plate 2; the integral displacement sliding component includes a displacement slide 5 opened on the ground at the bottom of both sides of the support base 1, and a sliding guide rail is arranged inside each displacement slide 5, and the bottom of both sides of the support base 1 is connected to the top of the guide rail slider 51 on the sliding guide rail.
[0028] It should be noted that, in this embodiment, the overall displacement sliding assembly is provided to facilitate displacement of the stored profiles to facilitate subsequent retrieval.
[0029] The bottom of both sides of the support base 1 is connected to the top of the guide rail slider 51 on the sliding guide rail. The sliding guide rail is installed in the displacement slide groove 5 opened on the ground. The overall sliding position facilitates the position to be moved back and forth and stacked, reducing the floor space and improving space utilization.
[0030] See also Figure 2 、 3 and 4, each displacement adjustment rod 3 is symmetrically provided with a slide groove 31 on both sides through the top, and the slide groove 31 is a cross-shaped structure with an opening at the top, and the sliding placement support assembly slides inside each slide groove 31; the sliding placement support assembly includes a driving assembly and a placement rack 4 for placing the aluminum material in parallel, and the placement rack 4 includes a slide rod 41 that matches the middle structure of the slide groove 31, and the slide rod 41 slides in the middle of the slide groove 31. Limiting columns 42 are provided on the top of both sides of the slide rod 41, and a supporting cross bar 43 is provided between the two limiting columns 42 located parallel to the top of the slide rod 41. The aluminum material is placed parallel to multiple supporting cross bars 43; the driving assembly includes a sliding screw 44, an active bevel gear 46, a driven bevel gear 47 and a driving connecting rod 48. The two sides of the sliding screw 44 are provided with a plurality of supporting cross bars 43. The end is installed parallel to each slide groove 31 at the bottom of the slide rod 41 through the first bearing support seat 441, and the driven bevel gear 47 is fixed to the end of the sliding screw rod 44 outside each slide groove 31. The active bevel gear 46 is connected with a connecting shaft 461 through the inside, and the connecting shaft 461 is fixed to the support base 1 outside each slide groove 31 through the second bearing fixing seat 462. The active bevel gear 46 is meshed and connected with the driven bevel gear 47. The driving connecting rod 48 is used to connect multiple connecting shafts 461; a sliding block 45 is slidingly set on the sliding screw rod 44 inside each slide groove 31, and the top of the sliding block 45 is fixed to the bottom of the slide rod 41 above it; the end of the connecting shaft 461 near one end of the support base 1 is connected to the displacement drive motor through a coupling.
[0031] It should be noted that, in this embodiment, a driving assembly is provided at the bottom of the placement rack 4 for placing the aluminum profile, so as to facilitate the displacement of the placement rack 4 located above the support base 1, thereby preventing the inconvenience of taking the aluminum profile by limiting the positions on both sides of the aluminum profile to prevent it from rolling during storage. When placing the aluminum profile, the aluminum profile is placed between the limiting columns 42 on both sides of the top of at least two supporting cross bars 43. The supporting cross bars 43 provide support, and the limiting columns 42 on both sides provide limit, thereby preventing the aluminum profile from rolling and improving safety.
[0032] Furthermore, the displacement adjustment rod 3 and the sliding placement support assembly can be arranged upward according to the number of profiles and the floor space, thereby improving utilization. When the sliding placement support assembly is arranged upward, it is convenient to remove the aluminum profile and prevent the upper and lower layers from blocking each other.
[0033] Furthermore, the support base 1 is separated by a partition support plate 2 to separate the storage areas on both sides, which not only improves the separation and storage of different types of aluminum profiles, but also improves stability;
[0034] Furthermore, when it is necessary to pick up the aluminum profile on the top of the supporting cross bar 43 on one side, the displacement drive motor is started to rotate forward, and the displacement drive motor drives the connecting shaft 461 to rotate, further driving the active bevel gear 46 on the connecting shaft 461 to engage and connect with the driven bevel gear 47 at the end of the sliding screw 44, further driving the sliding screw 44 to rotate, and multiple connecting shafts 461 are connected by the driving connecting rod 48, driving multiple sliding screws 44 to rotate. At the same time as the sliding screw 44 rotates, the sliding block 45 on it drives the sliding rod 41 to slide outside the sliding groove 31, driving the aluminum profile on the top of the supporting cross bar 43 to slide and displace, and the aluminum profile is taken out. The structure is simple and the operation is convenient;
[0035] After the goods are picked up, the displacement drive motor is started to rotate in the opposite direction. The displacement drive motor drives the connecting shaft 461 to rotate, further driving the active bevel gear 46 on the connecting shaft 461 to rotate and the driven bevel gear 47 connected to the end of the sliding screw 44 that is engaged with each other, further driving the sliding screw 44 to rotate. Multiple connecting shafts 461 are connected by driving the connecting rod 48, driving multiple sliding screws 44 to rotate. While the sliding screw 44 rotates, the sliding block 45 on it drives the slide bar 41 to slide inward inside the slide groove 31, driving the sliding displacement of the aluminum profile at the top of the supporting cross bar 43 to reset. After the reset is completed, the displacement drive motor is turned off.
[0036] The working process of this utility model:
[0037] During use, when it is necessary to pick up the aluminum profile on the top of one side supporting cross bar 43, the displacement drive motor is started to rotate forward, and the displacement drive motor drives the connecting shaft 461 to rotate, further driving the active bevel gear 46 on the connecting shaft 461 to engage and connect with the driven bevel gear 47 at the end of the sliding screw 44, further driving the sliding screw 44 to rotate, and multiple connecting shafts 461 are connected by driving the connecting rod 48, driving multiple sliding screws 44 to rotate. At the same time as the sliding screw 44 rotates, the sliding block 45 on it drives the sliding rod 41 to slide outside the sliding groove 31, driving the aluminum profile on the top of the supporting cross bar 43 to slide and displace, and the aluminum profile is taken out. The structure is simple and the operation is convenient;
[0038] After the goods are picked up, the displacement drive motor is started to rotate in the opposite direction. The displacement drive motor drives the connecting shaft 461 to rotate, further driving the active bevel gear 46 on the connecting shaft 461 to rotate and the driven bevel gear 47 connected to the end of the sliding screw 44 that is engaged with each other, further driving the sliding screw 44 to rotate. Multiple connecting shafts 461 are connected by driving the connecting rod 48, driving multiple sliding screws 44 to rotate. While the sliding screw 44 rotates, the sliding block 45 on it drives the slide bar 41 to slide inward inside the slide groove 31, driving the sliding displacement of the aluminum profile at the top of the supporting cross bar 43 to reset. After the reset is completed, the displacement drive motor is turned off.
[0039] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An aluminum material storage rack, comprising a support base (1), characterized in that: The bottom of both sides of the support base (1) is provided with an integral displacement sliding assembly, a plurality of partition support vertical plates (2) are evenly arranged just above the top of the support base (1), a displacement adjustment rod (3) is provided on the top of the support base (1) on one side of each partition support vertical plate (2), each displacement adjustment rod (3) is parallel to the shorter side of the support base (1), and a sliding placement support assembly for supporting the placement of aluminum materials is symmetrically provided on the top of the displacement adjustment rod (3) on both sides of each partition support vertical plate (2); Each displacement adjustment rod (3) has sliding grooves (31) symmetrically provided on both sides through the top. The sliding grooves (31) are arranged in a cross-shaped structure with an open top. The sliding placement support assembly is slidably located inside each sliding groove (31).
2. The aluminum material storage rack according to claim 1, characterized in that: The sliding placement support assembly includes a driving assembly and a placement rack (4) for placing aluminum materials in parallel. The placement rack (4) includes a sliding rod (41) that matches the middle structure of the slide groove (31). The sliding rod (41) slides in the middle of the slide groove (31). Limiting columns (42) are set on the top of both sides of the sliding rod (41). A supporting cross bar (43) is set between the two limiting columns (42) located parallel to the top of the sliding rod (41). The aluminum materials are placed in parallel on multiple supporting cross bars (43).
3. The aluminum material storage rack according to claim 2, characterized in that: The driving assembly includes a sliding screw (44), an active bevel gear (46), a driven bevel gear (47) and a driving connecting rod (48). The two ends of the sliding screw (44) are parallelly installed in each of the sliding grooves (31) at the bottom of the sliding rod (41) through a first bearing support seat (441). The driven bevel gear (47) is fixed to the end of the sliding screw (44) outside each sliding groove (31). The active bevel gear (46) is connected with a connecting shaft (461) running through the inside. The connecting shaft (461) is fixed on the support base (1) outside each sliding groove (31) through a second bearing fixing seat (462). The active bevel gear (46) is meshed and connected with the driven bevel gear (47). The driving connecting rod (48) is used to connect multiple connecting shafts (461).
4. The aluminum material storage rack according to claim 3, characterized in that: A sliding block (45) is provided on the sliding screw rod (44) inside each sliding groove (31) and is slidably provided thereon. The top of the sliding block (45) is fixed to the bottom of the sliding rod (41) above it.
5. The aluminum material storage rack according to claim 1, characterized in that: The integral displacement sliding assembly comprises displacement chutes (5) provided on the bottom ground of both sides of the support base (1), each displacement chutes (5) being provided with a sliding guide rail inside, and the bottoms of both sides of the support base (1) being connected to the tops of the guide rail sliders (51) on the sliding guide rails.
6. The aluminum material storage rack according to claim 3, characterized in that: The end of the connecting shaft (461) close to one end of the support base (1) is connected to a displacement drive motor via a coupling.