Material box type three-dimensional warehouse
By using screw connections between the beams and columns and designing a supporting structure, the problems of insufficient structural rigidity and high welding costs in the bin-type automated storage system were solved, achieving higher stability and lower manufacturing costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-13
- Publication Date
- 2026-03-24
AI Technical Summary
The existing bin-type automated warehouse lacks continuous support at the connection between the beams and columns, resulting in insufficient structural rigidity and the risk of goods tilting or slipping. Furthermore, the welding process increases costs and material consumption.
The connecting beams and columns are connected by bolts, combined with the support structure, to replace the traditional welded corner brackets, improve the overall rigidity and optimize the load distribution of goods. The use of detachable connecting sleeves and bolts simplifies the installation process.
It improves the overall rigidity and cargo load-bearing stability of the bin-type automated storage and retrieval system, reduces the risk of welding deformation and manufacturing costs, and improves installation efficiency.
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Figure CN224029877U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of automated storage and retrieval systems (AS / RS), specifically a bin-type AS / RS. Background Technology
[0002] In the logistics and warehousing sector, bin-type automated storage and retrieval systems (AS / RS) are commonly used to store goods in order to improve warehouse space utilization and management efficiency. Existing bin-type AS / RS typically include multiple rows of racks, such as... Figure 1 The shelving 100 consists of multiple sets of opposing uprights 110 and beams 200 connecting each set of uprights 110. Each set of uprights 110 includes two opposing uprights 110 and multiple horizontal braces 120 and diagonal braces 130 between the two uprights 110. The beams 200 adopt a multi-segment structure. Each beam segment 200 has hanging corners 300 welded to both ends, and is connected to the two uprights 110 on the same side of the two adjacent sets of uprights 110 through the hanging corners 300. The two sides of the middle upright 110 are connected to the hanging corners 300 on the opposite side of the adjacent beams 200. Goods are stored on the two beams 200 between the two adjacent sets of uprights 110.
[0003] However, this structure has significant drawbacks: First, because the hanging corners 300 at the ends of each segmented beam 200 are connected to the corresponding uprights 110 separately, the lack of continuous support results in insufficient overall structural rigidity of the rack 100, which easily leads to stress concentration under dynamic load conditions, affecting the stability of the storage system; Second, the design of independently splicing the hanging corners 300 of the multi-segmented beams 200 to the corresponding uprights 110 creates installation gaps between adjacent beams 200, resulting in uneven stress after goods are placed, which may cause the goods to tilt or slip; In addition, the process of welding the hanging corners 300 separately for each segment of beam 200 not only increases welding time but also reduces material utilization, significantly increasing manufacturing costs. Utility Model Content
[0004] To address the technical problems existing in the background art, this utility model provides a bin-type automated storage and retrieval system.
[0005] The technical solution of this utility model is as follows:
[0006] A bin-type automated storage and retrieval system includes multiple rack bodies arranged side by side. Each rack body includes multiple upright groups arranged side by side. Each upright group includes two upright bodies arranged opposite each other and a support beam located between the two upright bodies.
[0007] Furthermore, connecting beams are provided on both sides of the main body of the shelf, and connecting holes are provided on the connecting beams corresponding to the through holes on the outer side of each column body, allowing screws to pass through.
[0008] Further, the connecting beams are in a multi-section structure, opposite ends of adjacent two connecting beams in each section of the connecting beams are detachably connected, and a support structure for supporting goods is further arranged between the adjacent two column groups.
[0009] Through the above structural design, not only the overall rigidity of the material box type stereoscopic warehouse is improved, and the goods bearing distribution is optimized, but also the traditional welding hanging corner process is replaced, the welding deformation risk is reduced, the welding material consumption is reduced, and the manufacturing cost is reduced.
[0010] As an implementation manner, a connecting sleeve is arranged between the opposite ends of the adjacent two connecting beams, the two connecting beams are respectively inserted into two ends of the connecting sleeve, and are detachably connected with the connecting sleeve through bolts, the connecting beams are quickly inserted through the connecting sleeve, the installation efficiency is improved, and flexible recombination of the goods shelf body is facilitated.
[0011] In order to facilitate manufacturing and installation, the cross-sectional shape of the connecting sleeve is the same as the outer shape of the connecting beam, the connecting beam is a square tube, and mounting holes for the bolts to pass through are arranged on the connecting sleeve and the connecting beam, and the mounting holes on the connecting sleeve are long strip holes arranged along the length direction of the connecting beam.
[0012] In order to increase the support area of the goods shelf body for supporting goods, the support structure comprises two supports arranged opposite to each other, one side of the two supports away from each other is connected with the column body of the column group on the two sides respectively, and the upper side of the two supports is a horizontal plane flush with each other.
[0013] Specifically, the support is a long strip plate structure in the shape of "7", the vertical section of the support is connected with the column body, and the horizontal section is located on the upper side of the vertical section.
[0014] In some embodiments, in order to improve the support strength of the support for supporting goods, a plurality of triangular reinforcing plates are further fixed to the inner side of the support along the length direction of the support, the reinforcing plate comprises two mutually perpendicular edges, the two perpendicular edges are respectively attached to the vertical section and the horizontal section of the support, and the reinforcing plate is welded with the support.
[0015] The utility model discloses a material box type stereoscopic warehouse, which has the following beneficial effects: through the cooperation connection of the connecting beam connecting hole, the screw rod and the column body and the structural design of the support structure, the overall rigidity of the material box type stereoscopic warehouse is improved, the goods bearing distribution is optimized, the traditional welding hanging corner process is replaced, the welding deformation risk is reduced, the welding material consumption is reduced, and the manufacturing cost is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0016] In the drawings:
[0017] Figure 1 For the prior art;
[0018] Figure 2A forward schematic view of the material box type stereoscopic warehouse of the utility model;
[0019] Figure 3 For Figure 2 A enlarged schematic view in the direction of A;
[0020] Figure 4 For Figure 2 A enlarged schematic view in the direction of B;
[0021] Figure 5 A structure schematic view of the support of the utility model;
[0022] Figure 6 A use schematic view of the utility model.
[0023] The components represented by the reference numerals in the drawings are:
[0024] 100, shelf; 110, stand column; 120, cross brace; 130, inclined brace; 200, cross beam; 300, hanging corner;
[0025] 1, shelf main body; 11, stand column group; 111, stand column main body; 12, connecting beam; 13, connecting sleeve; 131, mounting hole; 14, support; 141, vertical section; 142, horizontal section; 143, reinforcing plate. DETAILED DESCRIPTION
[0026] In combination Figure 2 , the utility model provides a kind of material box type stereoscopic warehouse, including multiple side-by-side arranged shelf main body 1, shelf main body 1 includes multiple juxtaposed stand column group 11, stand column group 11 includes two stand column main bodies 111 of opposite arrangement and the support beam between two stand column main bodies 111, wherein support beam includes cross brace beam and inclined brace beam, its stand column main body 111 and the structure and connecting structure of cross brace beam and inclined brace beam can adopt the structure of stand column 110, cross brace 120 and inclined brace 130 in Figure 1 .
[0027] As the core technical concept of the utility model, two sides of shelf main body 1 are also provided with connecting beam 12, connecting hole capable of being passed through by screw rod is provided on the through hole corresponding to the outer side of each stand column main body 111 of connecting beam 12, and the shape of the through hole on the outer side of stand column main body 111 can be any kind of through hole capable of being passed through by screw rod, when installing, the both ends of screw rod are passed out from the opposite sides of stand column main body 111 and connecting beam 12, and locking nut is also provided for locking.
[0028] In combination Figure 2 With Figure 3 , connecting beam 12 is multi-section structure, the opposite ends of adjacent two connecting beams 12 in each section connecting beam 12 can be detachably connected, and support structure for supporting goods is also provided between adjacent two stand column groups 11.
[0029] For the connection of the two adjacent connecting beams 12, the connecting sleeve 13 is provided between the opposite ends of the two adjacent connecting beams 12, the two connecting beams 12 are inserted into the two ends of the connecting sleeve 13 respectively, and the two connecting beams 12 are detachably connected with the connecting sleeve 13 through bolts, so that the connecting beams 12 are quickly inserted through the connecting sleeve 13, the installation efficiency is improved, and the flexible reorganization of the shelf main body 1 is facilitated. Figure 3 Specifically, the connecting sleeve 13 is provided between the opposite ends of the two adjacent connecting beams 12, the two connecting beams 12 are inserted into the two ends of the connecting sleeve 13 respectively, and the two connecting beams 12 are detachably connected with the connecting sleeve 13 through bolts, so that the connecting beams 12 are quickly inserted through the connecting sleeve 13, the installation efficiency is improved, and the flexible reorganization of the shelf main body 1 is facilitated.
[0030] In order to facilitate manufacturing and installation, the connecting beam 12 is a square tube, the cross-sectional shape is rectangular, the cross-sectional shape of the connecting sleeve 13 is rectangular and the same as the outer shape of the connecting beam 12, and the connecting sleeve 13 and the connecting beam 12 are provided with mounting holes 131 for the bolts to pass through, and the mounting holes 131 on the connecting sleeve 13 are long strip holes arranged along the length direction of the connecting beam 12, so as to facilitate installation and adjustment.
[0031] For the support structure, in combination Figure 4 Specifically, the support structure is vertically provided along the column main body 111, and each group of support structures comprises two oppositely arranged supports 14, the sides of the two supports 14 away from each other are connected with the column main bodies 111 of the two side column groups 11 respectively, and the upper sides of the two supports 14 are horizontal planes flush with each other, thereby increasing the support area of the shelf main body 1 for supporting goods and improving the stability of the shelf main body 1 for carrying goods.
[0032] Specifically, Figure 6 is a partial structure diagram of the single column column group 11 in the single row shelf main body 1, wherein the support beam is not shown, and in Figure 6 It can be seen that the support 14 is a "7" shaped long strip plate structure, the vertical section 141 of which is connected with the column main body 111 through bolts, and the horizontal section 142 is located on the upper side of the vertical section 141, and in use, the goods are placed on the upper side of the horizontal section 142 of the two supports 14.
[0033] In combination Figure 5 In some embodiments, in order to improve the support strength of the support 14 for supporting goods, a plurality of triangular reinforcing plates 143 are further fixed to the inner side of the support 14 along the length direction of the support 14, the reinforcing plate 143 comprises two mutually perpendicular edges, the two perpendicular edges are respectively attached to the vertical section 141 and the horizontal section 142 of the support 14, the reinforcing plate 143 is welded with the support 14, and the welding is intermittent, so as to reduce the overall heat input and reduce the risk of deformation by reducing the welding length.
[0034] The utility model discloses a material box type stereoscopic warehouse, through above -mentioned structure design, not only improved the overall rigidity of material box type stereoscopic warehouse, optimized goods carrying distribution, especially through connecting beam 12 connecting hole and screw rod and column main body 111's cooperation connection, replaced traditional welding hanging angle 300 technology, reduced welding deformation risk, reduced welding material consumption simultaneously, reduced manufacturing cost.
Claims
1. A bin-type automated storage and retrieval system, comprising multiple rack bodies (1) arranged side by side, each rack body (1) comprising multiple upright groups (11) arranged side by side, each upright group (11) comprising two opposing upright bodies (111) and a support beam disposed between the two upright bodies (111), characterized in that: The main body of the shelf (1) is also provided with connecting beams (12) on both sides. The connecting beams (12) are provided with connecting holes that allow screws to pass through the through holes on the outside of each column body (111). The connecting beam (12) is a multi-segment structure, and the opposite ends of two adjacent connecting beams (12) in each segment can be detachably connected; A support structure for supporting goods is also provided between two adjacent column groups (11).
2. The bin-type automated storage and retrieval system as described in claim 1, characterized in that, A connecting sleeve (13) is provided between the opposite ends of two adjacent connecting beams (12). The two connecting beams (12) are respectively inserted into the two ends of the connecting sleeve (13) and are detachably connected to the connecting sleeve (13) by bolts.
3. A bin-type automated storage and retrieval system as described in claim 2, characterized in that, The cross-sectional shape of the connecting sleeve (13) is the same as that of the connecting beam (12).
4. A bin-type automated storage and retrieval system as described in claim 3, characterized in that, The connecting beam (12) is a square tube.
5. A bin-type automated storage and retrieval system as described in claim 4, characterized in that, The connecting sleeve (13) and the connecting beam (12) are provided with mounting holes (131) for the bolts to pass through. The mounting holes (131) on the connecting sleeve (13) are elongated holes arranged along the length of the connecting beam (12).
6. A bin-type automated storage and retrieval system as described in any one of claims 1-5, characterized in that, The support structure includes two supports (14) arranged opposite to each other. The two supports (14) are respectively connected to the column bodies (111) of the two side column groups (11) on opposite sides, and the upper sides of the two supports (14) are horizontal planes that are flush with each other.
7. A bin-type automated storage and retrieval system as described in claim 6, characterized in that, The support (14) is a long strip-shaped structure in the shape of a "7". Its vertical section (141) is connected to the main body of the column (111), and its horizontal section (142) is located on the upper side of the vertical section (141).
8. A bin-type automated storage and retrieval system as described in claim 7, characterized in that, Multiple triangular reinforcing plates (143) are also fixed to the inner side of the support (14) along its length.
9. A bin-type automated storage and retrieval system as described in claim 8, characterized in that, The reinforcing plate (143) includes two mutually perpendicular sides, and the two perpendicular sides are respectively attached to the vertical section (141) and the horizontal section (142) of the support (14).
10. A bin-type automated storage and retrieval system as described in claim 9, characterized in that, The reinforcing plate (143) is welded to the support (14).