Treading type logistics goods shelf
By designing the pull-pull lower pedal foot assembly and the upper pedal foot assembly, the problem of inconvenient access to the top layer of the logistics shelf is solved, and convenient access and efficient space utilization are achieved.
Patent Information
- Application Number
- CN202422183743.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-06
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-09-06
AI Technical Summary
The top-layer boards of existing logistics shelves need to use tools when storing or removing goods, which is inconvenient to use.
The pull-pull lower pedal foot assembly and upper pedal foot assembly are designed to form a pedal step to facilitate storage and access to top-level goods.
It realizes convenient storage and access of top-level goods, improves space utilization and convenience of use, and enhances the reliability and safety of trampling.
Smart Images

Figure CN223059762U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of shelves, and specifically relates to a pedal-type logistics shelf. Background Art
[0002] Logistics shelves refer to equipment used for storing, organizing, and managing goods in a logistics warehousing system. They are an important part of warehouses and distribution centers, helping to improve storage efficiency, speed up the turnover of goods, and ensure the safe storage and accurate sorting of goods.
[0003] In the existing patent literature, in a patent with a publication number of CN 219895031 and a name of "Shelf", the patent is provided with multiple upper and lower layers of shelves for storing goods. However, in the actual use process, since the topmost shelf is too high, tools such as stools need to be used for stepping when storing or taking goods, resulting in very inconvenient use. Summary of the Utility Model
[0004] The technical problem to be solved by the utility model is to provide a pedal-type logistics shelf. The shelf is provided with a pull-out lower pedal support foot assembly and an upper pedal support foot assembly. When it is impossible to store or remove the goods on the topmost storage shelf board, the lower pedal support foot assembly and the upper pedal support foot assembly can be pulled outwards to form a "step" that can be stepped on, and the storage or removal of the goods on the topmost storage shelf board can be successfully completed, which is very convenient in application.
[0005] To solve the above technical problems, the technical solution of the utility model is realized as follows:
[0006] A pedal-type logistics shelf includes a support assembly, and multiple storage shelf boards are welded and fixed on the support assembly; the support assembly is welded and fixed by a cross beam and a vertical beam, and the interiors of the cross beam and the vertical beam are both hollow cavities. The vertical beam located at the front side is provided with a vertically arranged avoidance groove, and a lower pedal support foot assembly and an upper pedal support foot assembly that are received in the hollow cavity are slidably installed in the avoidance groove, wherein the lower pedal support foot assembly is located below the upper pedal support foot assembly; the lower pedal support foot assembly includes a lower leg frame, and a first pedal is fixedly installed on the vertical frame of the lower leg frame, and the lower leg frame supports on the ground; the upper pedal support foot assembly includes an upper leg frame, and a second pedal is welded and fixed on the vertical frame of the upper leg frame, and the upper leg frame supports on the lower leg frame.
[0007] Adopting the above scheme, the shelf is provided with a pull-out lower pedal support foot assembly and an upper pedal support foot assembly. When it is impossible to store or remove the goods on the topmost storage shelf board, the lower pedal support foot assembly and the upper pedal support foot assembly can be pulled outwards to form a "step" that can be stepped on, and the storage or removal of the goods on the topmost storage shelf board can be successfully completed, which is very convenient in application.
[0008] As a preferred embodiment of a stepped logistics shelf, both the lower leg frame and the upper leg frame are L-shaped leg frames; the horizontal frames of the lower leg frame and the upper leg frame are both received in the hollow cavity of the cross beam, and the vertical frames of the lower leg frame and the upper leg frame are both received in the hollow cavity of the cross beam.
[0009] With the above solution, in order to facilitate the storage of the lower leg frame and the upper leg frame, both the lower leg frame and the upper leg frame are designed to be L-shaped, and the lower leg frame and the upper leg frame can be stored in the support assembly by means of pulling, greatly improving the space utilization rate.
[0010] As a preferred embodiment of a stepped logistics shelf, a triangular rib 1 for supporting the first pedal is also welded and fixed on the vertical frame of the lower leg frame; a triangular rib 2 for supporting the second pedal is also welded and fixed on the vertical frame of the upper leg frame.
[0011] With the above solution, in order to improve the reliability of the first pedal and the second pedal, triangular ribs 1 and 2 are added at the bottoms of the first pedal and the second pedal to improve the reliability of the first pedal and the second pedal.
[0012] As a preferred embodiment of a stepped logistics shelf, a side support foot parallel to it is welded and fixed on one side of the bottom of the vertical frame of the lower leg frame, and a soft rubber support is adhesively fixed together with the bottom of the vertical frame of the upper leg frame; wherein, a plurality of anti-slip grooves linearly arranged along its length direction are provided on the lower surface of the rubber support.
[0013] With the above solution, in order to improve the stability of the lower leg frame during support, a side support foot is reinforced on one side of the lower leg frame, and a rubber support is installed at its bottom to increase the friction between it and the ground.
[0014] As a preferred embodiment of a stepped logistics shelf, an adsorption cavity is provided in the middle of the lower surface of the rubber support, the inside of the side support foot is hollow and communicates with the adsorption cavity; an air extraction screw is in threaded sealing fit inside the side support foot.
[0015] With the above solution, in order to improve the adsorption between the rubber support and the ground, by rotating the air extraction screw upward, the air pressure in the adsorption cavity becomes smaller at this time, which will cause the rubber support to be firmly adsorbed on the ground, thus ensuring the safety of the staff when stepping on it.
[0016] As a preferred embodiment of a stepped logistics shelf, an elastic bolt is slidably installed at the bottom of the vertical frame of the upper leg frame. A sliding seat is welded and fixed on the side wall of the elastic bolt. The sliding seat is located in a slideway opened on the side wall of the upper leg frame. The sliding seat is slidably installed on a guiding shaft welded and fixed on the outer side wall of the upper leg frame. A spring for pushing the sliding seat to move downward is sleeved on the guiding shaft. Among them, a plurality of uniformly distributed first sockets are opened on the transverse frame of the lower leg frame, and a plurality of uniformly distributed second sockets are opened on the transverse frame of the upper leg frame. The plug of the elastic bolt is a round head.
[0017] With the above scheme, in order to improve the safety between each stepped foot component after superposition, the plug of the elastic bolt can be inserted into the first socket or the second socket. When the elastic bolt is inserted into the first socket, the lower stepped foot component and the upper stepped foot component are fixed to each other at this time. When the elastic bolt is inserted into the second socket, the two upper stepped foot components are fixed to each other at this time.
[0018] After adopting the above technical scheme, the beneficial effects of the utility model are as follows:
[0019] 1. By setting a pull-out lower stepped foot component and an upper stepped foot component, when the goods on the top layer storage rack board cannot be stored or taken down, the lower stepped foot component and the upper stepped foot component can be pulled outwards to form a "step" that can be stepped on, and the storage or removal of the goods on the top layer storage rack board can be successfully completed, which is very convenient in application.
[0020] 2. In order to facilitate the storage of the lower leg frame and the upper leg frame, both the lower leg frame and the upper leg frame are designed as L-shaped, and the lower leg frame and the upper leg frame can be stored in the bracket assembly by pulling, greatly improving the space utilization rate.
[0021] 3. In order to improve the reliability of the first pedal and the second pedal, triangular ribs one and two are added to the bottom of the first pedal and the second pedal to improve the reliability of the first pedal and the second pedal.
[0022] 4. In order to improve the stability of the lower leg frame during support, a side support foot is reinforced on one side of the lower leg frame, and a rubber support is installed at its bottom to increase the friction between it and the ground.
[0023] 5. In order to improve the adsorption between the rubber support and the ground, by rotating the air extraction screw upwards, the air pressure in the adsorption cavity becomes smaller at this time, which will make the rubber support firmly adsorbed on the ground, thus ensuring the safety of the staff when stepping on it.
[0024] 6. To enhance the safety between the respective stepping foot components after stacking, the plug of the elastic pin can be inserted into the first jack or the second jack; when the elastic pin is inserted into the first jack, the lower stepping foot component and the upper stepping foot component are fixed to each other at this time; when the elastic pin is inserted into the second jack, the two upper stepping foot components are fixed to each other at this time. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0026] Figure 1 It is a three-dimensional structure diagram when the lower stepping foot component and the upper stepping foot component in the present invention are stored;
[0027] Figure 2 It is a three-dimensional structure diagram when the lower stepping foot component and the upper stepping foot component in the present invention are stepped on;
[0028] Figure 3 It is Figure 1 a state diagram of the middle bracket component, the lower stepping foot component, and the upper stepping foot component at this time;
[0029] Figure 4 It is Figure 2 a state diagram of the middle bracket component, the lower stepping foot component, and the upper stepping foot component at this time;
[0030] Figure 5 It is Figure 3 a three-dimensional structure diagram of the middle bracket component;
[0031] Figure 6 It is Figure 3 a three-dimensional structure of the lower stepping foot component Figure 1 ;
[0032] Figure 7 It is Figure 3 a three-dimensional structure of the lower stepping foot component Figure 2 ;
[0033] Figure 8 It is for showing Figure 6 a three-dimensional structure diagram of part of the internal situation;
[0034] Figure 9 It is Figure 3 a three-dimensional structure of the upper stepping foot component Figure 1 ;
[0035] Figure 10 For Figure 3 the three-dimensional structure of the upper stepping foot component Figure 2 ;
[0036] Figure 11 To show Figure 9 the three-dimensional structure diagram of some internal situations in
[0037] Markings in the figure: 1 - Bracket assembly; 101 - Cross beam; 102 - Vertical beam; 103 - Avoidance groove; 2 - Shelf board; 3 - Lower stepping foot component; 301 - Lower leg frame; 302 - First pedal; 303 - First triangular rib; 304 - Side support foot; 305 - Rubber support; 306 - Anti-slip groove; 307 - Adsorption cavity; 308 - Air extraction screw; 309 - First jack; 4 - Upper stepping foot component; 401 - Upper leg frame; 402 - Second pedal; 403 - Second triangular rib; 404 - Elastic bolt; 405 - Slide seat; 406 - Slideway; 407 - Guide shaft; 408 - Spring; 409 - Second jack. Specific embodiments
[0038] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the scope of protection of the present invention.
[0039] As Figures 1 to 11 shown, a stepped logistics shelf is used for temporarily storing medium and small-sized logistics goods. It includes a bracket assembly 1, and multiple shelf boards 2 are welded and fixed on the bracket assembly 1; the bracket assembly 1 is welded and fixed by a cross beam 101 and a vertical beam 102. The interiors of the cross beam 101 and the vertical beam 102 are both hollow cavities. The vertical beam 102 located on the front side is provided with a vertically arranged avoidance groove 103. A lower stepping foot component 3 and an upper stepping foot component 4 that are received in the hollow cavity are slidably installed in the avoidance groove 103, wherein the lower stepping foot component 3 is located below the upper stepping foot component 4; the lower stepping foot component 3 includes a lower leg frame 301, and a first pedal 302 is fixedly installed on the vertical frame of the lower leg frame 301, and the lower leg frame 301 supports on the ground; the upper stepping foot component 4 includes an upper leg frame 401, and a second pedal 402 is welded and fixed on the vertical frame of the upper leg frame 401, and the upper leg frame 401 supports on the lower leg frame 301.
[0040] By providing a pull-out lower stepping foot component 3 and an upper stepping foot component 4, when it is impossible to store or remove the goods on the top shelf board 2, the lower stepping foot component 3 and the upper stepping foot component 4 can be pulled outwards to form a "step" that can be stepped on, enabling the smooth storage or removal of the goods on the top shelf board 2, which is very convenient in application.
[0041] As Figures 6 to 7 , Figures 9 to 10 shown, the lower leg frame 301 and the upper leg frame 401 are both L-shaped leg frames; the horizontal frames of the lower leg frame 301 and the upper leg frame 401 are both received in the hollow cavity of the cross beam 101, and the vertical frames of the lower leg frame 301 and the upper leg frame 401 are both received in the hollow cavity of the cross beam 101. To facilitate the storage of the lower leg frame 301 and the upper leg frame 401, the lower leg frame 301 and the upper leg frame 401 are both designed as L-shaped, and the lower leg frame 301 and the upper leg frame 401 can be received in the bracket assembly 1 by pulling, greatly improving the space utilization rate.
[0042] As Figure 7 , Figure 10 shown, a triangular rib 303 for supporting the first pedal 302 is also welded and fixed on the vertical frame of the lower leg frame 301; a triangular rib 403 for supporting the second pedal 402 is also welded and fixed on the vertical frame of the upper leg frame 401. To improve the reliability of the first pedal 302 and the second pedal 402, triangular ribs 303 and 403 are added at the bottoms of the first pedal 302 and the second pedal 402 to enhance the reliability of the first pedal 302 and the second pedal 402.
[0043] As Figures 6 to 8 shown, a side support foot 304 parallel to it is welded and fixed on one side of the bottom of the vertical frame of the lower leg frame 301, and a soft rubber support 305 is adhesively fixed to the bottom of the side support foot 304 and the bottom of the vertical frame of the upper leg frame 401; among them, a plurality of anti-slip grooves 306 are linearly arranged along the length direction on the lower surface of the rubber support 305. To improve the stability of the lower leg frame 301 during support, a side support foot 304 is reinforced on one side of the lower leg frame 301, and a rubber support 305 is installed at its bottom to increase the friction between it and the ground.
[0044] As Figures 6 to 8 shown, an adsorption cavity 307 is opened in the middle of the lower surface of the rubber support 305, the inside of the side support foot 304 is hollow and communicates with the adsorption cavity 307; an air extraction screw 308 is threadedly sealed and fitted inside the side support foot 304. To improve the adsorption between the rubber support 305 and the ground, by rotating the air extraction screw 308 upwards, the air pressure in the adsorption cavity 307 becomes smaller at this time, which will cause the rubber support 305 to be firmly adsorbed on the ground, thus ensuring the safety of the staff when stepping on it.
[0045] As Figures 9 to 11 shown, an elastic bolt 404 is slidably installed at the bottom of the vertical frame of the upper leg frame 401. A sliding seat 405 is welded and fixed on the side wall of the elastic bolt 404. The sliding seat 405 is located in a slideway 406 opened on the side wall of the upper leg frame 401. The sliding seat 405 is slidably installed on a guide shaft 407 welded and fixed on the outer side wall of the upper leg frame 401. A spring 408 for pushing the sliding seat 405 to move downward is sleeved on the guide shaft 407. Among them, a plurality of uniformly distributed first sockets 309 are opened on the transverse frame of the lower leg frame 301, and a plurality of uniformly distributed second sockets 409 are opened on the transverse frame of the upper leg frame 401. The plug of the elastic bolt 404 is a round head. In order to improve the safety between the respective stepping foot components after superposition, the plug of the elastic bolt 404 can be inserted into the first socket 309 or the second socket 409. When the elastic bolt 404 is inserted into the first socket 309, the lower stepping foot component 3 and the upper stepping foot component 4 are fixed to each other at this time. When the elastic bolt 404 is inserted into the second socket 409, the two upper stepping foot components 4 are fixed to each other at this time.
[0046] The working principle of the present utility model:
[0047] In application, the goods shelf is placed in a logistics warehouse and is used for temporarily storing medium and small-sized logistics goods.
[0048] When storing or removing goods, especially the goods on the top layer storage shelf board 2, if it is inconvenient to access, the lower stepping foot component 3 and the upper stepping foot component 4 can be pulled outwards to form a "step" that can be stepped on, and the storage or removal of the goods on the top layer storage shelf board 2 can be successfully completed, which is very convenient in application.
[0049] When pulling out the lower stepping foot component 3 and the upper stepping foot component 4 outwards, first pull out the lower stepping foot component 3 outwards. After the position of the lower leg frame 301 is determined, by rotating the air extraction screw 308 upwards, the air pressure in the adsorption cavity 307 becomes smaller at this time, which will cause the rubber support 305 to firmly adsorb on the ground, thus ensuring the safety of the staff when stepping on. Finally, all the upper stepping foot components 4 are pulled outwards in sequence, and the elastic bolt 404 is inserted into the first socket 309. At this time, the lower stepping foot component 3 and the upper stepping foot component 4 are fixed to each other. The elastic bolt 404 is inserted into the second socket 409. At this time, the two upper stepping foot components 4 are fixed to each other. Then the staff will be safer when staying and stepping on.
[0050] The above is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included in the protection scope of the present utility model.
Claims
1. A trampling-type logistics shelf, comprising a bracket assembly (1), on which a plurality of storage shelf boards (2) are fixedly installed; It is characterized in that: The bracket assembly (1) is fixedly formed by a cross beam (101) and a vertical beam (102). The interiors of both the cross beam (101) and the vertical beam (102) are hollow cavities. The vertical beam (102) located on the front side is provided with a vertically arranged avoidance groove (103). A lower trampling foot component (3) and an upper trampling foot component (4) that are received in the hollow cavity are slidably installed in the avoidance groove (103), and the lower trampling foot component (3) is located below the upper trampling foot component (4); The lower trampling foot component (3) includes a lower leg frame (301). A first pedal (302) is fixedly installed on the vertical frame body of the lower leg frame (301), and the lower leg frame (301) supports on the ground; The upper trampling foot component (4) includes an upper leg frame (401). A second pedal (402) is fixedly installed on the vertical frame body of the upper leg frame (401), and the upper leg frame (401) supports on the lower leg frame (301); 2. The pedal-operated logistics shelf according to claim 1, wherein: Both the lower leg frame (301) and the upper leg frame (401) are L-shaped leg frames; the transverse frame bodies of the lower leg frame (301) and the upper leg frame (401) are both received in the hollow cavity of the cross beam (101), and the vertical frame bodies of the lower leg frame (301) and the upper leg frame (401) are both received in the hollow cavity of the cross beam (101); 3. The pedal-operated logistics shelf according to claim 2, characterized in that: A first triangular rib (303) for supporting the first pedal (302) is also fixedly installed on the vertical frame body of the lower leg frame (301); a second triangular rib (403) for supporting the second pedal (402) is also fixedly installed on the vertical frame body of the upper leg frame (401); 4. The pedal-operated logistics shelf according to claim 3, wherein: A side support foot (304) parallel to it is fixedly installed on one side of the bottom of the vertical frame body of the lower leg frame (301). A soft rubber support (305) is jointly fixedly installed on the side support foot (304) and the bottom of the vertical frame body of the upper leg frame (401); 5. The pedal-operated logistics shelf according to claim 4, characterized in that: A plurality of anti-slip grooves (306) linearly arranged along its length direction are formed on the lower surface of the rubber support (305); 6. The pedal-operated logistics shelf according to claim 5, characterized in that: An adsorption cavity (307) is formed in the middle of the lower surface of the rubber support (305). The interior of the side support foot (304) is hollow and communicates with the adsorption cavity (307); an air extraction screw (308) is in threaded sealing fit with the interior of the side support foot (304); 7. The pedal-operated logistics shelf according to any one of claims 1-6, characterized in that: An elastic plug (404) is slidably installed at the bottom of the vertical frame body of the upper leg frame (401). A sliding seat (405) is fixedly connected to the side wall of the elastic plug (404). The sliding seat (405) is located in a sliding groove (406) formed on the side wall of the upper leg frame (401). The sliding seat (405) is slidably installed on a guide shaft (407) fixed to the outer side wall of the upper leg frame (401). A spring (408) for pushing the sliding seat (405) to move downward is sleeved on the guide shaft (407); 8. The pedal-operated logistics shelf according to claim 7, characterized in that: A plurality of uniformly distributed first jacks (309) are formed in the transverse frame of the lower leg support (301), and a plurality of uniformly distributed second jacks (409) are formed in the transverse frame of the upper leg support (401).
9. The pedal-operated logistics shelf according to claim 8, characterized in that: The plug of the elastic bolt (404) can be inserted into the first jack (309) or the second jack (409). When the elastic bolt (404) is inserted into the first jack (309), the lower stepping foot assembly (3) and the upper stepping foot assembly (4) are fixed to each other at this time. When the elastic bolt (404) is inserted into the second jack (409), the two upper stepping foot assemblies (4) are fixed to each other at this time.
10. The pedal-operated logistics shelf according to claim 9, wherein: The plug of the elastic bolt (404) is a round head.
Citation Information
Patent Citations
Goods shelf
CN219895031U