Material box type goods shelf
By using modular design and snap-fit connection for bin racks, the problems of long construction time, high cost and poor flexibility of existing bin racks are solved, enabling rapid installation, low-cost construction and flexible layout adjustment, thus improving warehouse management efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-16
- Publication Date
- 2026-03-31
AI Technical Summary
Existing warehouse racks have long installation and construction times, high costs, poor flexibility, difficult maintenance and upkeep, and high renovation costs.
The system adopts a detachable snap-fit connection method, with the first guide component directly snapped onto the crossbeam. Combined with modular design and automated prefabrication, it enables rapid assembly and disassembly of the frame. The detachable connection and fixation of the guide component to the frame simplifies the construction and maintenance process.
Significantly shorten the construction cycle, reduce labor and operating costs, improve flexibility and ease of maintenance, minimize the impact on warehouse operations, quickly adapt to new demands, and reduce renovation costs and maintenance time.
Smart Images

Figure CN224061722U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a goods shelf technical field especially is a kind of material box type goods shelf. BACKGROUND
[0002] The existing material box warehouse goods shelf adopts beam, column, multiple guide pieces and the like components integral type welding. It is welded into frame body by beam and column, then guide piece is respectively welded by multiple components, then guide piece is welded and fixed with frame body. It has the following problems: long installation construction time, high construction cost;Poor flexibility. INVENTION CONTENTS
[0003] Therefore, the utility model wants to solve the technical problem in prior art.
[0004] To solve the above technical problems, the utility model provides a kind of material box type goods shelf, comprising:
[0005] Frame body includes two beams, column and multiple corbels;The end of beam is equipped with the column extending vertically;Multiple corbels are arranged at intervals, and corbel is connected between two beams;
[0006] Multiple first guide pieces are arranged at intervals on frame body;First guide piece includes first base plate, two first buckles and first side baffle;First base plate is clamped between adjacent two corbels;Two ends of first base plate are respectively bent downward to form first buckle, and two first buckles are respectively clamped on two beams;Two sides of first base plate are respectively bent upward to form first side baffle;The front end of first base plate is equipped with first opening;
[0007] Wherein, the placement space is formed between adjacent two first guide pieces.
[0008] In an embodiment of the utility model, the application further includes two second guide pieces, and is respectively arranged at the two ends of frame body;Second guide piece includes second base plate, two second buckles and second side baffle;Second base plate is clamped between corbel and column;Two ends of second base plate are respectively bent downward to form second buckle, and two second buckles are respectively clamped on two beams;The side of second base plate close to first guide piece is bent upward to form second side baffle;The front end of second base plate is equipped with second opening.
[0009] In an embodiment of the utility model, first guide piece further includes end baffle, and the tail end of first side baffle is bent outward to form end baffle.
[0010] In an embodiment of the utility model, the included angle β of end baffle and first side baffle is 90 °.
[0011] In an embodiment of the utility model, first guide piece still include front end baffle, be located first opening, the end of first side baffle forms front end baffle and bends inwards.
[0012] In an embodiment of the utility model, the included angle γ between the front end baffle and the first side baffle is 15°-30°.
[0013] In an embodiment of the utility model, the middle part of the first base plate extends outward to form two clamping plates, and the two clamping plates are respectively arranged on the adjacent two brackets.
[0014] In an embodiment of the utility model, the middle part of the first side baffle is provided with a notch.
[0015] In an embodiment of the utility model, at the notch, the end of the first side baffle is bent inward to form a middle baffle.
[0016] In an embodiment of the utility model, the included angle α between the first clasp and the first base plate is 88°-90°.
[0017] The above technical solution of the utility model has the following advantages compared with the prior art:
[0018] The material box type shelf disclosed by the utility model adopts the first guide piece directly clamped on the cross beam, so that the detachable connection and fixing of the first guide piece and the frame body are realized. During on-site construction, the first guide piece prefabricated in the factory only needs to be simply spliced and fixed with the frame body, and the installation process is like building blocks, which has low construction difficulty and greatly shortens the construction period. The labor cost is low, the influence on warehouse operation is reduced, the operation cost is indirectly reduced, the first guide piece can be reused, and the cost is saved. In addition, since the first guide piece and the frame body of the application adopt the clamping type connection mode, when the layout of the shelf needs to be adjusted or replaced, the module can be easily disassembled and reassembled, quickly adapt to new requirements, have high flexibility, and have low transformation cost. Secondly, if a first guide piece fails, the damaged first guide piece can be directly replaced, which is convenient for maintenance, reduces maintenance cost and time, and is relatively simple for daily maintenance. ACCURACY
[0019] In order to make the content of the utility model more easily understood clearly, the utility model is further described in detail below according to the specific embodiments of the utility model and in combination with the drawings, wherein:
[0020] Figure 1 is a structural schematic view of a material box type shelf in preferred embodiments of the utility model;
[0021] Figure 2 is Figure 1 a structural schematic view of a material box type shelf in which a material box is placed;
[0022] Figure 3 is Figure 1 a structural schematic view of a first guide in a bin type shelf;
[0023] Figure 4 is Figure 1 a structural schematic view of a second guide in a bin type shelf;
[0024] Description of the Drawings: 100, shelf body; 110, cross beam; 120, stand column; 130, corbel;
[0025] 200, first guide; 210, first base plate; 211, clamping plate; 212, reinforcing rib plate; 220, first buckle; 230, first side stop edge; 231, notch; 232, middle stop edge; 240, end stop edge; 250, first opening; 260, placement space; 270, front end stop edge;
[0026] 300, bin;
[0027] 400, second guide; 410, second base plate; 420, second buckle; 430, second side stop edge; 440, second opening; 450, avoidance hole. DETAILED DESCRIPTION
[0028] The present application will be further described below in conjunction with the drawings and specific embodiments, so that those skilled in the art can better understand the present application and implement it. However, the embodiments are not intended to limit the present application.
[0029] In some comparative examples, the bin type shelf adopts an integrated welding process. The following problems exist:
[0030] 1. Long construction period and high construction cost: A medium-sized warehouse may require 15-20 days, and the warehouse needs to be partially or completely stopped during construction; professional welders are required to operate during the construction process, and professional welding equipment is required, which results in high construction cost; during the welding process, high temperature may cause local deformation of the shelf, affecting the guiding accuracy.
[0031] 2. Poor flexibility and high modification cost: Once installed, it is difficult to make large-scale adjustments. If the structure or position needs to be changed, the shelf needs to be cut and re-welded, which not only increases the cost, but also may affect the overall strength and stability of the shelf.
[0032] 3. Difficulty in maintenance and high cost: Once the weld joint has a serious problem, it is difficult to repair, and professional personnel are required to perform welding repair, which may affect the overall structure and guiding accuracy of the shelf.
[0033] In order to solve the above problems, refer to Figures 1-4The utility model embodiment provides a kind of material box type goods shelves, comprising:
[0034] Frame body 100, including two beams 110, multiple columns 120 and multiple corbels 130;The end of beam 110 is equipped with vertically extending column 120;Multiple corbels 130 are arranged at intervals, and corbel 130 is connected between two beams 110;
[0035] Multiple first guides 200 are arranged at intervals on frame body 100 along the extension direction of beam 110;First guide 200 includes first base plate 210, two first buckles 220 and first side curb 230;First base plate 210 is clamped between two adjacent corbels 130;Two ends of first base plate 210 are bent downward to form first buckle 220 respectively, and two first buckles 220 are clamped on two beams 110 respectively;Two sides of first base plate 210 are bent upward to form first side curb 230 respectively;The front end of first base plate 210 is equipped with first opening 250;First guide 200 can be prefabricated in factory using automation equipment.
[0036] Among them, the placing space 260 is formed between two adjacent first guides 200.
[0037] Specifically, the first guide 200 is directly clamped on the beam 110 in the application, so as to realize the detachable connection and fixation of the first guide 200 and the frame body 100. Wherein, the first side curb 230 of the first guide 200 can guide the material box 300 to move along the fixed path when the material box 300 is placed in the placing space 260, thereby playing a guiding role, preventing the material box 300 from deviating when being placed, ensuring that the material box 300 can be accurately and smoothly placed in the placing space 260, realizing accurate positioning, and facilitating the storage and management of the material box 300 and goods. In addition, the first side curb 230 can also provide support force for the side surface of the material box 300, which can prevent the material box 300 from tilting to the side surface when the material box 300 is subjected to lateral force, and keep the material box 300 stable.
[0038] When the application is constructed on site, only the first guide 200 prefabricated in the factory needs to be simply spliced and fixed with the frame body 100, and the installation process is like building blocks, with low construction difficulty and greatly shortened construction period; The labor cost is low, which reduces the influence on warehouse operation and indirectly reduces the operation cost; The first guide 200 can be reused, saving cost. In addition, since the first guide 200 and the frame body 100 of the application adopt the clamping type connection mode, when the layout of the goods shelf needs to be adjusted or replaced, they can be easily disassembled and reassembled, quickly adapt to new needs, have high flexibility and low modification cost. Secondly, if a first guide 200 fails, the damaged first guide 200 can be directly replaced, which is convenient for maintenance, reduces maintenance cost and time, and is relatively simple for daily maintenance.
[0039] Therefore, the application has short construction period and high flexibility, realizes cost reduction and efficiency improvement in warehouse management, and can respond to market changes faster.
[0040] Since the placement space 260 is formed between the two adjacent first guide members 200, the interval between the side of the first guide member 200 at the two ends of the rack body 100 and the end of the rack body 100 is wasted. To solve this problem, further, the application also includes two second guide members 400 arranged at the two ends of the rack body 100; the second guide member 400 includes a second base plate 410, two second buckles 420 and a second side stop 430; the second base plate 410 is clamped between the corbel 130 and the column 120; the two ends of the second base plate 410 are respectively bent downward to form the second buckles 420, and the two second buckles 420 are respectively buckled on the two cross beams 110; the side of the second base plate 410 close to the first guide member 200 is bent upward to form the second side stop 430; and the front end of the second base plate 410 is provided with a second opening 440.
[0041] Specifically, a second guide member 400 is clamped at each of the two end positions of the rack body 100, so that a placement space 260 is additionally arranged between the second guide member 400 and the first guide member 200 adjacent thereto, thereby increasing the storage positions of the material boxes 300; the structure of the application is more compact, and the utilization rate of the application is improved.
[0042] In some embodiments, the first guide member 200 and the second guide member 400 are formed by bending sheet metal. During the bending process, the equipment requirements are not high, and the bending integrated molding can be easily realized, greatly reducing the production difficulty. During the bending process, the following matters need to be paid attention to: the bending radius should be appropriate and uniform, which not only improves the product quality, but also simplifies the production process. Using simple straight-line bending for rapid prototyping reduces unnecessary procedures and reduces the requirement for workers' technical level, making production more efficient and convenient. Precise control of bending parameters ensures product quality and production efficiency. For example, with the help of automatic equipment, the operator only needs to input the basic parameters such as material thickness and bending angle, and the equipment can automatically calculate and adjust the optimal bending pressure and speed. The application of automatic equipment greatly simplifies the operation process, even for inexperienced workers, they can easily complete the production task, effectively improving the production efficiency and stability of product quality.
[0043] Further, the first guide member 200 also includes a terminal stop 240, and the tail end of the first side stop 230 is bent outward to form the terminal stop 240. In the case where the application also includes the second guide member 400: the second guide member 400 also includes a terminal stop 240, and the tail end of the second side stop 430 is bent outward to form the terminal stop 240.
[0044] Specifically, the end stop 240 can limit the placement of the bin 300 into the placement space 260, avoiding the risk of the bin 300 being placed too close to the end, or falling backward due to external force or operation error. In addition, the end of the bin 300 can be used as a signal to indicate whether the bin 300 is placed, so that the operator can quickly take and place the bin 300.
[0045] If the angle β between the end stop 240 and the first side stop 230 is less than 90 degrees, although it can limit the bin 300, it will waste space and increase the volume of the shelf. Therefore, in order to solve this problem, further, the angle β between the end stop 240 and the first side stop 230 of the present embodiment is 90°. In the case where the present application also includes a second guide 400: the angle between the second end stop 240 and the second side stop 430 is also 90°. Specifically, the setting of the 90° angle in the present embodiment can limit the box while reducing the volume of the shelf.
[0046] If the bin 300 is directly placed from the first opening 250, on the one hand, it will be inconvenient to place, and on the other hand, the bin 300 will often collide with the front end of the first side stop 230, causing damage to the bin 300. In order to solve this problem, further, the first guide 200 of the present embodiment also includes a front stop 270; the end of the first side stop 230 is bent inward to form the front stop 270. Specifically, the front stop 270 can guide the bin 300 when placing, making it more convenient to place the bin 300, and reducing the collision between the bin 300 and the first side stop 230, reducing the damage to the bin 300.
[0047] Similarly, in the case where the present application also includes a second guide 400: the second guide 400 also includes a front stop 270; the end of the second side stop 430 is bent inward to form the front stop 270 thereof. The front stop 270 of the second guide 400 has the same effect as described above, and will not be described here.
[0048] Further, the angle γ between the front stop 270 and the first side stop 230 is 15°-30°. In the case where the present application also includes a second guide 400: the angle between the front stop 270 and the second side stop 430 is also 15°-30°. Specifically, the guiding effect of the front stop 270 in this angle range is better.
[0049] Further, the two sides of the middle part of the first substrate 210 extend outward to form clamping plates 211, and the two clamping plates 211 are respectively clamped on the two adjacent brackets 130. In the case where the second guide 400 is also included in the present application: the side of the second substrate 410 extending outward toward the first guide 200 also forms a clamping plate 211. Specifically, the present embodiment limits the first guide 200 by clamping the two clamping plates 211 between the two adjacent brackets 130, so as to avoid the first guide 200 from moving along the length direction of the cross beam 110, thereby ensuring the stability and reliability of the magazine 300 when the magazine 300 is stored. The clamping plate 211 on the second guide 400 has the same effect as the clamping plate 211 on the first guide 200, and will not be described here again.
[0050] Further, the two sides of the middle part of the first substrate 210 extend outward to form clamping plates 211, and the two clamping plates 211 are respectively clamped on the two adjacent brackets 130. In the case where the second guide 400 is also included in the present application: the side of the second substrate 410 extending outward toward the first guide 200 also forms a clamping plate 211. Specifically, the present embodiment limits the first guide 200 by clamping the two clamping plates 211 between the two adjacent brackets 130, so as to avoid the first guide 200 from moving along the length direction of the cross beam 110, thereby ensuring the stability and reliability of the magazine 300 when the magazine 300 is stored. The clamping plate 211 on the second guide 400 has the same effect as the clamping plate 211 on the first guide 200, and will not be described here again.
[0051] Further, the middle part of the first side stop 230 is provided with a notch 231. In the case where the second guide 400 is also included in the present application: the middle part of the second side stop 430 is also provided with a notch 231. Specifically, in order to reduce the weight of the entire device of the present application, the notch 231 is formed on the first side stop 230.
[0052] In some embodiments, the clamping plate 211 is arranged at the notch 231.
[0053] Further, at the notch 231, the ends of the first side stop 230 are respectively bent inward to form a middle stop 232. In the case where the second guide 400 is also included in the present application: at the notch 231 of the second guide 400, the ends of the second side stop 430 are also bent inward to form a middle stop 232. Specifically, the middle stop 232 of the present embodiment is bent inward from the first side stop 230, so that when the magazine 300 is taken out or placed, the magazine 300 can be guided when passing through the notch 231, thereby ensuring the quick and smooth taking and placing of the magazine 300.
[0054] Further, the angle α between the first clasp 220 and the first substrate 210 is 88°-90°. In some embodiments, the two ends of the first substrate 210 are arranged on the upper surface of the cross beam 110, and then the first clasp 220 is buckled at the outer side wall of the cross beam 110. The first clasp 220 of the present embodiment is 88°-90°, which on the one hand facilitates the installation of clamping, and on the other hand can ensure the stability and reliability of the clamping connection.
[0055] In some embodiments, the uprights 120 are welded to the cross beams 110. At the positions where the two are welded, there are welds that protrude from the upper surface of the cross beams 110. Therefore, in order to ensure that the second base plate 410 can be horizontally placed on the cross beams 110, the two ends of the second base plate 410 on the side facing the uprights 120 are respectively provided with avoiding holes 450.
[0056] The guide (the first guide 200 and the second guide 400) of the present application has a simple structure design. It is formed by bending a modular component. The main body is made of high-quality aluminum alloy or carbon structural steel, which has both durability and lightness. When installing, no connecting components such as screws are needed. It can be directly fixed to the cross beams 110 and brackets 130 of the shelf without the need for large-scale disassembly or modification of the shelf.
[0057] From the construction point of view, the installation project is extremely simple, and the construction personnel can quickly complete the installation. Due to the modular component design, direct clamping installation greatly shortens the construction period. According to actual project verification, for a medium-sized vertical warehouse, it only takes 3-5 days to complete the installation of all shelf guides, which greatly saves the time cost and effectively reduces the impact on the daily operation of the vertical warehouse compared to traditional complex modification projects.
[0058] After installation, the guide can accurately guide the goods handling equipment, reduce the positioning difficulty of the operator, improve the accuracy of the bin 300 and goods storage and retrieval, effectively avoid misoperation, and significantly improve the overall operation efficiency of the vertical warehouse.
[0059] The present application has the following advantages:
[0060] 1. High construction efficiency: The first guide 200 and the second guide 400 can be prefabricated in the factory, and only simple splicing is needed at the construction site to complete the installation, which has low construction difficulty. With the help of conventional tools, ordinary workers can complete the installation, which greatly shortens the construction period. For example, it only takes 3-5 days to install the modular guide in a medium-sized warehouse, which effectively reduces the impact on the daily operation of the warehouse.
[0061] 2. High flexibility: When the warehouse business changes and the shelf layout needs to be adjusted or the guide needs to be replaced, it can be easily disassembled and reassembled to quickly adapt to new needs. In addition, if new functional modules such as sensors and auxiliary positioning devices need to be added, they can also be easily integrated.
[0062] 3. Low cost: The short construction period and low labor cost reduce the impact on the operation of the warehouse, which indirectly reduces the operating cost. At the same time, some components can be reused, which saves a certain cost.
[0063] 4. Maintenance and service: when a module fails, the damaged part can be replaced directly, the maintenance is convenient, and the maintenance cost and time are reduced. During daily maintenance, the inspection and maintenance of each part are relatively simple.
[0064] Obviously, the above embodiments are only examples for clearly illustrating, and are not limitation to the embodiments. Other different forms of changes or variations can be made on the basis of the above description for those skilled in the art. Here, all the embodiments are not required to be exhausted, and the obvious changes or variations derived therefrom are still within the protection scope of the utility model.
Claims
1. A bin shelving system, characterized by: The utility model relates to a kind of frame body and first guiding piece, second guiding piece, and the frame body comprises two beams, column and multiple corbels;The end of the beam is equipped with vertical column extending;Multiple corbels are arranged at intervals, and the corbel is connected between the two beams. The first guiding piece comprises first base plate, two first buckles and first side baffle edge;The first base plate is clamped between two adjacent corbels;Two ends of the first base plate are respectively bent downward to form first buckle, and two first buckles are respectively buckled on two beams;Two sides of the first base plate are respectively bent upward to form the first side baffle edge;The front end of the first base plate is equipped with first opening. Wherein, the placing space is formed between two adjacent first guiding pieces. The second guiding piece comprises second base plate, two second buckles and second side baffle edge;The second base plate is clamped between the corbel and the column;Two ends of the second base plate are respectively bent downward to form second buckle, and two second buckles are respectively buckled on two beams;The side of the second base plate close to the first guiding piece is bent upward to form the second side baffle edge;The front end of the second base plate is equipped with second opening.
2. The bin shelving of claim 1, wherein: The first guiding piece further comprises end baffle edge, and the tail end of the first side baffle edge is bent outward to form end baffle edge.
3. The bin shelving of claim 1, wherein: The included angle between the end baffle edge and the first side baffle edge is 90 °.
4. The bin shelving of claim 3, wherein: The first guiding piece further comprises front end baffle edge, and the end of the first side baffle edge is bent inward to form the front end baffle edge.
5. The bin shelving of claim 1, wherein: The included angle γ between the front end baffle edge and the first side baffle edge is 15 °-30 °.
6. The bin shelving of claim 5, wherein: The middle part of the first base plate is provided with clamping plate extending outward on both sides, and two clamping plates are respectively abutted on two adjacent corbels.
7. The bin shelving of claim 1, wherein: The middle part of the first side baffle edge is provided with notch.
8. The bin shelving of claim 1, wherein: The end of the first side baffle edge is bent inward to form middle baffle edge at the notch.
9. The bin shelving of claim 8, wherein: The included angle α between the first buckle and the first base plate is 88 °-90 °.
10. The bin shelving of claim 1, wherein: