Quickly-assembled storage rack
The design of detachable uprights and load-bearing side beams solves the problem of traditional shelving structures being difficult to adjust, enabling flexible adjustment and quick assembly/disassembly. This improves the stability and adaptability of the shelving, making it suitable for scenarios requiring frequent adjustments.
Patent Information
- Application Number
- CN202421986132.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-16
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-08-16
AI Technical Summary
Traditional shelving units have a fixed structure, are not easy to adjust, are difficult to accommodate large or irregularly shaped items, are complicated to assemble and disassemble, and have limited application range.
The design features detachable columns and load-bearing side beams, with a secure connection achieved through pin and screw positioning holes. Combined with inserts and positioning screws, it ensures quick installation and disassembly, adapting to adjustments for different heights and positions.
The shelves are designed for flexible adjustment and quick assembly/disassembly, improving stability and adaptability, making them suitable for frequently changing usage scenarios, and enhancing load-bearing capacity.
Smart Images

Figure CN223574935U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of warehousing and logistics, and particularly relates to a quick-assembly storage rack. BACKGROUND
[0002] In the field of industrial production and logistics transportation, storage racks, as an important warehousing and transportation tool, are widely used in the production and manufacturing process of various machines and equipment. Especially when handling large and bulky accessories such as engines, reducers, and other heavy parts, the use of storage racks is particularly important.
[0003] However, most traditional storage racks are designed with fixed structures, which limits their flexibility to some extent. The limitations of traditional storage racks mainly lie in the following aspects: (1) The structure of traditional storage racks is usually fixed and not easy to adjust, which makes it difficult to place large or irregularly shaped objects. (2) Due to the limitations of the structure of the storage rack, large or heavy objects often need to be placed from the side, which not only increases the difficulty of operation, but also may lead to unstable placement, affecting work efficiency. (3) The disassembly process of traditional storage racks is usually complex and requires the use of tools, which is not convenient for scenarios that frequently change usage requirements. (4) Fixed-structure storage racks often have difficulty in flexible adjustment when facing objects of different sizes or weights, limiting their application range.
[0004] In order to solve the above problems and improve the flexibility and efficiency of the storage rack, a quick-assembly storage rack is needed, which can be quickly installed and disassembled, and the position and size of the storage surface can be flexibly adjusted according to actual needs. SUMMARY
[0005] Therefore, the utility model provides a quick-assembly storage rack to solve the problem of fixed structure and difficulty in adjustment of the storage rack in the prior art.
[0006] In order to achieve the above purpose, the utility model provides the following technical scheme:
[0007] According to the first aspect of the utility model, a quick-assembly storage rack is provided, which includes a storage rack body, the storage rack body includes a plurality of columns and a load-bearing side beam, the columns are vertically arranged at each corner end of the storage rack body, the load-bearing side beam is vertically arranged beside the columns, and the columns and the load-bearing side beam are detachably connected.
[0008] Further, the load-bearing side beam includes a first load-bearing rod and a second load-bearing rod, the first load-bearing rod and the second load-bearing rod are respectively arranged on the two vertical sides of the storage rack body to form a support storage surface.
[0009] Further, the first bearing rod is fixed on the shelf main body through the first connecting piece at both ends, and the second bearing rod is fixed on the shelf main body through the second connecting piece at both ends.
[0010] Further, the upright is provided with a plurality of pin shaft positioning holes and screw positioning holes, the pin shaft positioning holes are matched and connected with the first connecting piece, and the screw positioning holes are matched and connected with the second connecting piece.
[0011] Further, the first connecting piece comprises:
[0012] The upright connecting part is fixedly connected with the first bearing rod at one end, and is attached to both sides of the upright;
[0013] The connecting pin is arranged through the pin shaft positioning holes on the upright connecting part and the upright; and
[0014] The insertion piece is arranged on the opposite side of the first bearing rod and is arranged in the insertion part of the connecting pin extending out of the upright connecting part and the upright.
[0015] Further, the second connecting piece comprises a fixed plate and a positioning screw, the fixed plate is arranged at both ends of the second connecting piece, and the positioning screw is arranged through the screw positioning holes on the fixed plate and the upright.
[0016] Further, the insertion piece is arranged in a right-angled trapezoidal shape, and the insertion part is provided with a limiting hole matched with the insertion piece in a right-angled trapezoidal shape.
[0017] Further, the second connecting piece further comprises a positioning nut, the positioning nut is arranged on the opposite side of the fixed plate, and the positioning nut is threadedly connected with the end of the positioning screw extending out of the screw positioning hole on the fixed plate and the upright.
[0018] Further, the base is arranged below the upright, and the base is fixed to the upright and the bearing side beam at the bottom end of the shelf main body.
[0019] Further, the base comprises a bottom plate and a side plate, and the side plate is arranged in parallel on the bottom plate.
[0020] The utility model has the advantages of:
[0021] 1. The detachable connection between the upright and the bearing side beam ensures that the user can flexibly adjust the structure of the shelf according to actual needs, such as increasing or reducing the number of bearing side beams, changing the height of the shelf, etc. This design not only ensures the stability and carrying capacity of the shelf, but also improves its flexibility and adaptability, which is very suitable for scenarios that require frequent adjustment of the shelf structure.
[0022] 2. The combination of the first connecting member and the second connecting member in the present application makes the connection between the load-bearing side beam and the column stable and easy to disassemble. Users can adjust the height and position of the load-bearing side beam through simple operations to adapt to the placement requirements of items of different heights. In addition, when it is necessary to adjust the shelf structure or completely disassemble it, the fixing of the connecting members can be easily released to achieve rapid assembly and disassembly.
[0023] 3. The base design in the present application enhances the overall stability of the shelf and provides a stable foundation. The bottom plate and side plate structure of the base further enhances the structural stability of the shelf, ensuring that the shelf can stably carry heavy objects. In addition, the reinforced design of the first connecting member and the second connecting member ensures the stable connection between the load-bearing side beam and the column, improving the overall stability and carrying capacity of the shelf. BRIEF DESCRIPTION OF DRAWINGS
[0024] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following will briefly introduce the drawings needed to be used in the description of the embodiments or the prior art. Obviously, the drawings described below are only exemplary, and for those skilled in the art, other drawings can be obtained from the provided drawings without creative labor.
[0025] The structures, proportions, sizes, etc. shown in the specification are only used to cooperate with the content disclosed in the specification for understanding and reading by those skilled in the art, and are not used to limit the implementation conditions of the present application, so they do not have technical significance. Any modification of structure, change of proportion relationship or adjustment of size, without affecting the effects and purposes that the present application can produce, should still fall within the scope of the technical content disclosed by the present application.
[0026] Figure 1 A front view structural diagram of the quick-mounting shelf provided by the present application is shown in the following figure:
[0027] Figure 2 A side view structural diagram of the quick-mounting shelf provided by the present application is shown in the following figure:
[0028] Figure 3 A column connection part schematic diagram provided by the present application is shown in the following figure:
[0029] Figure 4 A first connecting member provided by the present application is shown in the following figure: Figure 2 An enlarged schematic view of position A in the above figure is shown in the following figure:
[0030] Figure 5 A second connecting member provided by the present application is shown in the following figure: Figure 2 An enlarged schematic view of position B in the above figure is shown in the following figure:
[0031] Figure 6 The utility model provides a Figure 2 Amplification schematic view at C;
[0032] Figure 7 The utility model provides a connecting pin structure schematic view;
[0033] Figure 8 The utility model provides a insert piece structure schematic view;
[0034] In the drawing: 1. The storage rack main body; 11. The stand; 111. Pin shaft positioning hole; 112. Screw positioning hole; 12. Bearing side beam; 121. First bearing rod; 122. Second bearing rod; 123. First connecting piece; 1231. Stand connecting portion; 1232. Connecting pin; 1233. Insert piece; 1234. Limiting hole; 124. Second connecting piece; 1241. Fixed plate; 1242. Positioning screw; 1243. Positioning nut; 13. Base; 131. Bottom plate; 132. Side plate. DETAILED DESCRIPTION
[0035] The following specific embodiments illustrate the embodiments of the utility model, and those skilled in the art can easily understand other advantages and effects of the utility model from the disclosed content of the specification. Obviously, the described embodiments are part of the embodiments of the utility model, not all. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the scope of protection of the utility model.
[0036] The application provides a quick-mounting storage rack, which is suitable for scenes requiring frequent adjustment of the structure of the storage rack. Figure 1 And Figure 2 As shown in the drawings, the storage rack comprises a storage rack main body 1, which is composed of a plurality of stands 11 and bearing side beams 12. The stands 11 are vertically arranged at each corner end of the storage rack main body 1 to ensure the stability and support capacity of the entire storage rack structure. The stands 11 are usually made of solid and durable materials, such as steel or high-strength aluminum alloy, to ensure that they can withstand the pressure of heavy objects. The bearing side beams 12 are vertically arranged beside the stands 11 and form a vertical relationship with the stands 11 to provide a support surface for placing objects. The stands 11 and the bearing side beams 12 are detachably connected, and users can flexibly adjust the structure of the storage rack according to actual needs, such as increasing or reducing the number of bearing side beams 12 and changing the height of the storage rack.
[0037] This design not only ensures the stability and carrying capacity of the storage rack, but also improves its flexibility and adaptability, which is very suitable for scenes requiring frequent adjustment of the structure of the storage rack. As a preferred embodiment, the stands 11 and the bearing side beams 12 in the application are both made of square steel.
[0038] Specifically, the load-bearing side beam 12 is an important component of the quick-mounting shelving, used to form a support shelf surface to ensure that the goods can be stably placed on the shelving. The load-bearing side beam 12 includes a first load-bearing rod 121 and a second load-bearing rod 122, which are respectively arranged on the two vertical side surfaces of the shelving body 1, and together form a support shelf surface. As shown in Figure 2 and Figure 3 shown, the first load-bearing rod 121 is connected with the column 11 through a first connecting piece 123, and the second load-bearing rod 122 is connected with the column 11 through a second connecting piece 124. The first connecting piece 123 and the second connecting piece 124 ensure the stable connection between the load-bearing side beam 12 and the column 11, and also facilitate disassembly and position adjustment. The first connecting piece 123 can adjust the height of the first load-bearing rod 121 as needed to adapt to the placement needs of goods of different heights.
[0039] The column 11 is one of the key components of the quick-mounting shelving, used to provide vertical support and carry the load-bearing side beam 12. In order to ensure that the load-bearing side beam 12 can be stably connected to the column 11, a plurality of pin positioning holes 111 and screw positioning holes 112 are arranged on the column 11. As shown in Figure 3 shown, the plurality of pin positioning holes 111 arranged at equal intervals on the column 11 are located at different height positions of the column 11 to adapt to the different installation height requirements of the load-bearing side beam 12. The pin positioning hole 111 is used to cooperate with the connecting pin 1232 in the first connecting piece 123 to ensure the stable connection between the first load-bearing rod 121 and the column 11.
[0040] The plurality of screw positioning holes 112 arranged at equal intervals on the column 11 are also located at different height positions of the column 11 to adapt to the different installation height requirements of the load-bearing side beam 12. The screw positioning hole 112 is used to cooperate with the positioning screw 1242 in the second connecting piece 124 to ensure the stable connection between the second load-bearing rod 122 and the column 11.
[0041] As shown in Figure 4 shown, the first connecting piece 123 includes a column connecting portion 1231, a connecting pin 1232 and a tab 1233. The column connecting portion 1231 is fixedly connected with the first load-bearing rod 121 at one end, and is attached to the two sides of the column 11 at the other end to ensure the stability of the connection. The column connecting portion 1231 is used to connect the first load-bearing rod 121 and the column 11 to ensure the stable connection between the load-bearing rod and the column 11.
[0042] As shown in Figure 7As shown, the connecting pin 1232 penetrates the pin shaft positioning hole 111 on the column connecting part 1231 and the column 11. The role of the connecting pin 1232 is to fix the column connecting part 1231 on the column 11, ensuring that a stable connection is formed between the first bearing rod 121 and the column 11. The insert piece 1233 is located on the opposite side of the first bearing rod 121 and is inserted into the insertion part of the connecting pin 1232 extending out of the column connecting part 1231 and the column 11, further enhancing the stability of the connection and preventing the connecting pin 1232 from loosening or shifting during use. This design not only ensures a stable connection between the first bearing rod 121 and the column 11, but also improves the overall stability and load-bearing capacity of the shelf, making it suitable for scenarios that require frequent adjustment of the shelf structure.
[0043] As shown in Figure 8 The insert piece 1233 is arranged in a right-angled trapezoidal shape, which ensures that the insert piece 1233 can be stably inserted into the insertion part while providing good limiting action. The insert piece 1233 further enhances the stability of the connection between the first bearing rod 121 and the column 11, preventing the connecting pin 1232 from loosening or shifting during use.
[0044] The insertion part is located at the part of the connecting pin 1232 extending out of the column connecting part 1231 and the column 11, and the insertion part is provided with a right-angled trapezoidal limiting hole 1234 matched with the insert piece 1233. The limiting hole 1234 cooperates with the insert piece 1233 to ensure that the insert piece 1233 can be stably inserted and fixed on the connecting pin 1232, further enhancing the stability of the connection.
[0045] This design not only ensures a stable connection between the first bearing rod 121 and the column 11, but also improves the overall stability and load-bearing capacity of the shelf, making it very suitable for scenarios that require frequent adjustment of the shelf structure.
[0046] As shown in Figure 5 The second connecting piece 124 includes a fixed plate 1241 and a positioning screw 1242. The fixed plate 1241 is arranged at both ends of the second connecting piece 124 and is made of a strong and durable material. The fixed plate 1241 is used to connect the second bearing rod 122 with the column 11, ensuring a stable connection between the bearing rod and the column 11. The positioning screw 1242 penetrates the fixed plate 1241 and the screw positioning hole 112 on the column 11, fixing the fixed plate 1241 on the column 11 and ensuring a stable connection between the second bearing rod 122 and the column 11. This design not only ensures a stable connection between the second bearing rod 122 and the column 11, but also improves the overall stability and load-bearing capacity of the shelf, making it very suitable for scenarios that require frequent adjustment of the shelf structure.
[0047] The second connecting piece 124 further comprises a positioning nut 1243 arranged at the opposite side of the fixing plate 1241, and the end of the positioning nut 1243 is threadedly connected with the positioning screw 1242 extending out of the screw positioning hole 112 on the column 11. The positioning nut 1243 is used in cooperation with the positioning screw 1242, and the connection stability between the second bearing rod 122 and the column 11 can be further enhanced by screwing the positioning nut 1243, so as to ensure the stable connection between the bearing rod and the column 11.
[0048] The base 13 is an important component of the quick-mounting storage rack, and is used for enhancing the overall stability of the storage rack and providing a stable base. Figure 1 As shown in the drawings, the base 13 is arranged below the column 11, and the base 13 fixes the column 11 and the bearing side beam 12 at the bottom end of the storage rack main body 1.
[0049] The base 13 comprises a bottom plate 131 and a side plate 132, and details are shown in the drawings. Figure 6 The side plate 132 is arranged in parallel on the bottom plate 131. The bottom plate 131 provides a stable base for the storage rack, so as to ensure the stability of the entire storage rack structure. The side plate 132 is arranged in parallel on the bottom plate 131 and is connected perpendicularly to the bottom plate 131, and is usually made of a firm and durable material, and plays a fixing and limiting role on the column 11 and the bearing side beam 12 at the bottom end of the storage rack main body 1, so as to further enhance the structural stability of the base 13 and also provide additional support.
[0050] The use process of the embodiment of the utility model is as follows:
[0051] 1. Assemble the base 13: arrange the base 13 below the column 11, ensure that the bottom plate 131 provides a stable base for the storage rack, then arrange the side plate 132 in parallel on the bottom plate 131 and connect it perpendicularly to the bottom plate 131, so as to ensure the structural stability of the base 13.
[0052] 2. Assemble the column 11: arrange the column 11 upright at each corner end of the storage rack main body 1, so as to ensure the stability and support capacity of the entire storage rack structure, then fix the column 11 on the base 13, so as to ensure the stable connection between the column 11 and the base 13.
[0053] 3. Install the first bearing rod 121: connect the first bearing rod 121 with the column 11 through the first connecting piece 123, ensure that the column connecting part 1231 is fixedly connected with the first bearing rod 121 and is attached to the two sides of the column 11, then pass the connecting pin 1232 through the pin shaft positioning hole 111 on the column connecting part 1231 and the column 11, then insert the insertion piece 1233 into the insertion part extending out of the column connecting part 1231 and the column 11 from the connecting pin 1232, so as to further enhance the stability of the connection.
[0054] 4. Install the second bearing rod 122: connect the second bearing rod 122 with the column 11 through the second connecting piece 124, then set the fixing plate 1241 on both ends of the second bearing rod 122, make sure the fixing plate 1241 is aligned with the screw positioning hole 112 on the column 11, pass the positioning screw 1242 through the fixing plate 1241 and the screw positioning hole 112 on the column 11, and fix the positioning screw 1242 with the positioning nut 1243, to ensure the stable connection between the second bearing rod 122 and the column 11.
[0055] 5. Adjust the height and position: adjust the height and position of the bearing side beam 12 according to the needs of placing different height objects, when the shelf structure needs to be adjusted, first pull out the plug-in piece 1233, pull out the connecting pin 1232, release the fixation of the first connecting piece 123, adjust the first bearing rod 121 to the desired position, then pass the connecting pin 1232 through the column connecting part 1231 and the pin shaft positioning hole 111 on the column 11, then insert the plug-in piece 1233 into the connecting pin 1232 extending out of the column connecting part 1231 and the plug-in part of the column 11, to fix the first bearing rod 121 and the column 11, after the adjustment is completed, the shelf can stably carry objects.
[0056] 6. Disassembly stage: when the shelf needs to be removed, first release the fixation of the first connecting piece 123 and the second connecting piece 124, then disassemble the column 11 and the bearing side beam 12 in reverse order, for storage or reassembly.
[0057] Although the utility model has been described in detail above with general description and specific embodiments, some modifications or improvements can be made on the basis of the utility model, which is obvious to those skilled in the art. Therefore, these modifications or improvements made on the basis of not deviating from the spirit of the utility model, all belong to the scope of protection required by the utility model.
Claims
1. A quick-mounting shelf, characterized in that, The shelf body includes a plurality of columns and a load-bearing side beam, the columns are vertically arranged at each corner end of the shelf body, the load-bearing side beam is vertically arranged beside the columns, and the columns and the load-bearing side beam are detachably connected; The load-bearing side beam includes a first load-bearing rod and a second load-bearing rod, the first load-bearing rod and the second load-bearing rod are arranged on the two vertical sides of the shelf body to form a support shelf surface; The first load-bearing rod is fixed on the shelf body through a first connecting piece at both ends, and the second load-bearing rod is fixed on the shelf body through a second connecting piece at both ends; The column is provided with a plurality of pin positioning holes and screw positioning holes, the pin positioning holes are matched and connected with the first connecting piece, and the screw positioning holes are matched and connected with the second connecting piece; The column connecting part is fixedly connected with the first load-bearing rod at one end, and is attached to the two sides of the column; The connecting pin penetrates the pin positioning holes on the column connecting part and the column; The insertion piece is located on the opposite side of the first load-bearing rod and is inserted into the insertion part of the connecting pin extending out of the column connecting part and the column; The second connecting piece includes a fixed plate and a positioning screw, the fixed plate is arranged at both ends of the second connecting piece, and the positioning screw penetrates the fixed plate and the screw positioning hole on the column.
2. The quick-mounting shelf according to claim 1, wherein The insertion piece is arranged in a right-angled trapezoidal shape, and the insertion part is provided with a limiting hole in a right-angled trapezoidal shape matched with the insertion piece.
3. The quick-mounting shelf according to claim 1, wherein The second connecting piece further includes a positioning nut, the positioning nut is arranged on the opposite side of the fixed plate, and the positioning nut is threadedly connected with the end of the positioning screw extending out of the fixed plate and the screw positioning hole on the column.
4. The quick-mounting shelf according to claim 3, wherein It also includes a base, the base is arranged below the column, and the base fixes the column and the load-bearing side beam at the bottom end of the shelf body.
5. The quick-mounting shelf according to claim 4, wherein The base includes a bottom plate and a side plate, the side plate is arranged parallel to the bottom plate.