Connector, container and combined container

By installing connectors, including connecting bodies and fixing bodies, at the interval between the column and the first connecting beam, the problem of inconvenient container connection is solved, and the stability and safety are improved.

CN223792227UActive Publication Date: 2026-01-13HUIZHOU SINGAMAS ENERGY EQUIP CO LTD
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Patent Information

Application Number
CN202520479322.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-19
Publication Date
2026-01-13
Estimated Expiration
2035-03-19

AI Technical Summary

Technical Problem

Existing standard corner fittings are not convenient for connecting containers, affecting the stability and ease of connection of less-than-container-load (LCL) shipments.

Method used

Design a connector, located at the interval between the column and the first connecting beam, including a connecting body and a fixing body. The connecting body and the fixing body have connecting holes on their opposite parts. The fixing body is located below the connecting body. The connecting holes are covered when containers are stacked, reducing the risk of corrosion.

Benefits of technology

It improves the installation stability of connectors, reduces the operational difficulty of LCL (Less than Container Load) connections, and enhances the safety and stability of containers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a connector which is applied to a container, the container comprises a stand column and a first connecting beam, an interval is formed between the first connecting beam and the stand column, a connector is arranged at the interval, and the connector comprises a connecting body and a fixing body; the connecting body is provided with a positioning part and a connecting part; the positioning part covers the end face of the stand column, and the connecting part is connected with the positioning part and located at the interval between the stand column and the first connecting beam. The fixing body is located below the connecting part and connected with the connecting part, the stand column and the first connecting beam. A connecting hole is formed in the part, opposite to the fixed body, of the connecting body, and the connecting hole is configured to be connected with the spliced container. The connector is arranged at the interval between the stand column and the first connecting beam, so that the installation stability of the connector is improved; the fixing body is arranged below the connecting part of the connecting body, and an operation space for splicing the container is reserved between the fixing body and the connecting part, so that the operation difficulty of splicing the container is reduced; when the containers are stacked up and down, the connecting holes are shielded and are not prone to corrosion.
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Description

TECHNICAL FIELD

[0001] The present application relates to the container technical field, especially to a connector, a container and a combined container. BACKGROUND

[0002] With the diversification of the use of containers, containers are not simply used for cargo transportation. A plurality of containers can be manufactured into movable simple buildings, such as container houses, container toilets, warehouses, etc., by arranging and stacking. Using containers for houses, toilets, warehouses, etc. has the advantages of convenient transportation, quick installation, strong integrity, superior anti-seismic performance, etc. However, when the containers are connected, the existing standard corner fittings are not convenient for connection operation, which causes great inconvenience to the connection of the containers, and is not conducive to the stability of the connected containers.

[0003] Therefore, it is necessary to improve the prior art. CONTENT OF THE UTILITY MODEL

[0004] The present application aims to at least solve one of the technical problems existing in the prior art, and provides a connector, a container and a combined container. The connector is arranged at an interval between a stand and a first connecting beam, that is, the connector is connected with both the stand and the first connecting beam, which is conducive to the improvement of the installation stability of the connector. In addition, the connector includes oppositely arranged connecting bodies and fixing bodies, and has a simple structure. The fixing body is arranged below the connecting portion of the connecting body, and an operation space for connecting containers is left between the fixing body and the connecting portion, which reduces the operation difficulty of the connection of the containers. The connecting hole is arranged at the opposite part of the connecting body and the fixing body, and the connecting hole is blocked when the containers are stacked up and down, and is not easy to be corroded.

[0005] According to an aspect of the present application, the present application provides a connector applied to a container, the container including a stand and a first connecting beam perpendicular to the stand. In the radial direction of the stand, the first connecting beam and the stand are arranged with an interval, and a connector is arranged at the interval. The connector includes a connecting body and a fixing body. The connecting body is provided with a positioning portion and a connecting portion. The positioning portion is arranged on the end surface of the stand in the axial direction of the stand. The connecting portion is connected with the positioning portion and is located at the interval between the stand and the first connecting beam. The fixing body is located below the connecting portion and is connected with the connecting portion, the stand and the first connecting beam. The opposite part of the connecting body and the fixing body is provided with a connecting hole, and the connecting hole is configured for the connection of the containers.

[0006] In one embodiment, the surface of the connecting body away from the stand is a first surface, the outer surface of the first connecting beam connected with the connecting body is a second surface, and the first surface is flush with the second surface.

[0007] In one embodiment, the positioning portion is provided with an angle piece hole.

[0008] In one embodiment, the fixing body comprises a support portion and a bottom plate; the bottom plate is arranged opposite to the connecting portion of the connecting body; the support portion is located between the bottom plate and the connecting portion; wherein the support portion, the bottom plate, the connecting portion and the column enclose a recess with an opening facing outward.

[0009] In one embodiment, the support portion comprises a first reinforcing plate and a second reinforcing plate; the first reinforcing plate is arranged on the end surface of the first connecting beam close to the column; the first reinforcing plate is perpendicular to the second reinforcing plate.

[0010] In one embodiment, the edges of the fixing body, the column and the first connecting beam are wedge-shaped.

[0011] In one embodiment, a nut is further included; the positioning portion is arranged on the third surface of the column; the third surface is provided with the nut at the position of the angle piece hole.

[0012] According to another aspect of the present application, a container is provided, comprising the connector as described in any one of the preceding embodiments; the container further comprises a column and a first connecting beam perpendicular to the column; wherein, in the radial direction of the column, the first connecting beam is spaced apart from the column, and the space is provided with the connector.

[0013] According to another aspect of the present application, a combined container is provided, comprising a connecting assembly and at least two containers as described in the preceding embodiments; the two containers are arranged side by side, and the adjacent connectors are connected by the connecting assembly; wherein the connecting assembly comprises a connecting bolt, a connecting nut and a connecting plate; the connecting plate is provided with two matching holes; the connecting holes of the adjacent connectors are arranged opposite to the two matching holes respectively; the connecting bolt passes through the matching holes and the connecting holes opposite to the matching holes, and is screwed with the connecting nut.

[0014] In one embodiment, the positioning portion is provided with an angle piece hole; the connecting plate is further provided with two limiting holes; in the radial direction of the column, the angle piece holes of the adjacent connectors are arranged opposite to the two limiting holes respectively; the connecting assembly further comprises a positioning pin; the positioning pin is inserted into the opposite angle piece holes and limiting holes.

[0015] The beneficial effects of the present application are: a new connector is designed for container stacking, the connector is arranged at the interval between the stand column and the first connecting beam, that is, the connector is connected with both the stand column and the first connecting beam, which is conducive to the improvement of the stability of the connector installation; in addition, the connector comprises oppositely arranged connecting bodies and fixing bodies, and the structure is simple; the fixing body is arranged below the connecting part of the connecting body, and an operation space for container stacking is left between the fixing body and the connecting part, which reduces the operation difficulty of stacking connection; the connecting hole is arranged at the opposite part of the connecting body and the fixing body, and the connecting hole is blocked when the containers are stacked up and down, and is not easy to be corroded. BRIEF DESCRIPTION OF DRAWINGS

[0016] The technical solutions and other beneficial effects of the present application will become apparent from the following detailed description of the specific embodiments of the present application in conjunction with the accompanying drawings.

[0017] Figure 1 is a connector schematic diagram provided by an embodiment of the present application.

[0018] Figure 2 is a container schematic diagram provided by an embodiment of the present application.

[0019] Figure 3 is a connector assembly and container connection schematic diagram provided by an embodiment of the present application.

[0020] Figure 4 is a combined container schematic diagram provided by an embodiment of the present application.

[0021] Figure 5 is another combined container schematic diagram provided by an embodiment of the present application.

[0022] In the drawings:

[0023] 10, connector; 11, connecting body; 111, positioning part; 1111, corner piece hole; 1112, third surface; 112, connecting part; 1121, connecting hole; 113, first surface; 12, fixing body; 121, bottom plate; 122, support part; 1221, first reinforcing plate; 1222, second reinforcing plate; 13, nut;

[0024] 20, container; 21, stand column; 22, first connecting beam; 221, second surface; 23, second connecting beam; 231, fourth surface;

[0025] 30, groove;

[0026] 40, connecting assembly; 41, connecting bolt; 42, connecting nut; 43, connecting plate; 431, matching hole; 432, limiting hole; 44, positioning pin;

[0027] 50, base. DETAILED DESCRIPTION

[0028] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the present application.

[0029] In the description of the present application, it should be noted that, unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connecting" should be understood in a broad sense, for example, can be fixed connection, can also be detachable connection, or integrally connected; can be mechanical connection, can also be electrical connection or can communicate with each other; can be directly connected, or indirectly connected through an intermediate medium, can be the internal connection of two elements or the interaction relationship between two elements. For a person of ordinary skill in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0030] The connector, container and combined container in the present application will be described in detail below with reference to the drawings and specific embodiments.

[0031] With the diversified development of the use of containers, containers are not simply used for cargo transportation. The present inventors have found that, in order to meet the use requirements, the container needs to meet the convenient connection operation of the container connection operation, and also needs to ensure the safety and stability of the container installation and transportation. In this case, a connector that facilitates connection operation and improves the stability of the container connection operation is needed.

[0032] In order to solve the above technical problems, the present application provides a connector applied to a container, the container comprising a vertical column and a first connecting beam perpendicular to the vertical column, wherein, in the radial direction of the vertical column, the first connecting beam and the vertical column are provided with a gap, and a connector is arranged at the gap, the connector comprising a connecting body and a fixing body; the connecting body is provided with a positioning portion and a connecting portion; the positioning portion is arranged on the end surface of the vertical column in the axial direction of the vertical column, and the connecting portion is connected to the positioning portion and located at the gap between the vertical column and the first connecting beam; the fixing body is located below the connecting portion and connected to the connecting portion, the vertical column and the first connecting beam; the part opposite to the connecting body and the fixing body is provided with a connecting hole, and the connecting hole is configured as the connection of the container connection.

[0033] Specifically, the connecting holes arranged at the connecting body and the opposite part (connecting part) of the fixing body are used for splicing between containers, the connecting body and the fixing body are arranged at intervals, an operation space is left for container splicing connection, and the operation difficulty of splicing connection is reduced; the connector is simple in structure, is conducive to reducing production cost, and the connector is arranged between the stand column and the first connecting beam, the connector is connected with the stand column and the first connecting beam, and the stability of the connector is improved. The following will be described in detail.

[0034] Reference Figure 1 is a structural schematic view of the connector 10, in Figure 1 order to facilitate the description of the structure of the connector 10, a dashed line is used to divide the structure functionally, but in the actual production and use process, the specific operation operation of the dashed line is not involved. In Figure 2 , the connector 10 is applied to the container 20, the container 20 includes a stand column 21 and a first connecting beam 22 perpendicular to the stand column 21, wherein, in the radial direction of the stand column 21, the first connecting beam 22 is arranged at an interval with the stand column 21, a connector 10 is arranged at the interval, the connector 10 includes a connecting body 11 and a fixing body 12; the connecting body 11 is provided with a positioning part 111 and a connecting part 112; the positioning part 111 is arranged on the end face of the stand column 21 in the axial direction of the stand column 21, the connecting part 112 is connected with the positioning part 111 and is located at the interval between the stand column 21 and the first connecting beam 22; the fixing body 12 is located below the connecting part 112 and is connected with the connecting part 112, the stand column 21 and the first connecting beam 22; the opposite part of the connecting body 11 and the fixing body 12 is provided with a connecting hole 1121, and the connecting hole 1121 is configured to connect the container 20.

[0035] In the embodiment, the connecting portion 112 of the connecting body 11 is connected to the positioning portion 111, and is arranged at an interval between the upright column 21 and the first connecting beam 22, that is, one end of the connecting portion 112 away from the positioning portion 111 is connected to the end surface of the first connecting beam 22 facing the upright column 21, and the positioning portion 111 covers the end surface of the upright column 21 (the end surface in the axial direction of the upright column 21). When the connecting body 11 is subjected to force (hoisting or other external force), the bottom of the connecting body 11 (the portion of the connecting body 11 connected to the upright column 21, the same below) and the side surface of the connecting body 11 (the portion of the connecting body 11 connected to the first connecting beam 22, the same below) will all have a restraining effect on the connecting body 11, the area of the connecting body 11 (the area connected to the container 20) that is constrained is increased, and the connecting body 11 is fixed in multiple directions, the connecting body 11 is constrained in multiple directions, and the stability of the connecting body 11 (the connector 10) mounted on the container 20 is improved. In addition, the fixing body 12 is further connected to the lower portion of the connecting body 11, and the fixing body 12 is further connected to the upright column 21 and the first connecting beam 22. The connecting area of the connector 10 and the container 20 is increased, the restraining direction of the connector 10 is increased, and the stability of the connector 10 mounted on the container 20 is further improved.

[0036] During hoisting of the container 20, the container 20 will sway, and the direction of the force of the hook on the connector 10 will change dynamically. Since the bottom of the connecting body 11 is welded to the upright column 21, the side surface of the connecting body 11 is welded to the first connecting beam 22, and the bottom of the connecting body 11 is further connected to the container 20 through the fixing body 12, the connector 10 is constrained in multiple directions, which is conducive to improving the stability of the connector 10 mounted on the container 20. During hoisting of the container 20, the connector 10 is not easy to separate from the container 20, and the safety during hoisting of the container 20 is improved. In addition, the connector 10 is arranged at an interval between the upright column 21 and the first connecting beam 22, which is equivalent to the connector 10 being clamped at the interval, and the stability and reliability of the connector 10 mounted on the container 20 are improved, that is, the safety during hoisting of the container 20 is improved.

[0037] When the connector 10 is only connected and fixed to the end surface of the upright column 21 (the end surface in the axial direction of the upright column 21, the same below), the connector 10 is only constrained in one direction. During hoisting of the container 20, since the side surface of the connector 10 is not constrained (not connected to the first connecting beam 22), the connector 10 is more likely to separate from the upright column 21, and the safety during hoisting of the container 20 is reduced.

[0038] The connecting body 11 (connecting part 112) is provided with a connecting hole 1121 on the part opposite to the fixing body 12. The connecting hole 1121 is used to connect and install the container 20 (including but not limited to the connection between the container 20 and the base 50, the consolidation connection between multiple containers 20, etc.). Since the fixing body 12 is located below the connecting part 112 of the connecting body 11, there is an operating space between the fixing body 12 and the connecting part 112, which reduces the difficulty of connecting the container 20.

[0039] It should be noted that the fixing body 12 is located below the connecting part 112. Figure 1 In terms of vertical positioning, when connector 10 is located at the bottom of container 20, fixing body 12 is located above connecting part 112, as shown below. Figure 5 As shown, when containers 20 are stacked, the connection holes 1121 on the connector 10 at the bottom of the container 20 are not exposed and are not easily corroded, which is conducive to the stability of the connection between the containers 20.

[0040] In some embodiments, the connection between the connecting portion 112 and the first connecting beam 22 may also be that the connecting portion 112 is connected to the top surface of the first connecting beam 22. Figure 2 (Perspective), but not limited to this.

[0041] See Figure 2 The surface of the connector 11 facing away from the column 21 is the first surface 113, and the outer surface of the first connecting beam 22 is connected to the connector 11. Figure 2 From the perspective of the first connecting beam 22, the top surface is the second surface 221, and the first surface 113 is flush with the second surface 221.

[0042] The first surface 113 is flush with the first surface 113, which makes the top (or bottom) of the container 20 more flat. When stacking the containers 20, it is beneficial to improve the stability of the upper container 20. Alternatively, when the container 20 is installed on the base 50, the bottom of the container 20 fits well with the base 50, which is beneficial to the stability of the container 20 installation.

[0043] In some embodiments, the container 20 further includes a second connecting beam 23. The second connecting beam 23, the column 21, and the first connecting beam 22 are perpendicular to each other. The top surface of the second connecting beam 23 is a fourth surface 231, which is flush with the first surface 113, thus improving the flatness of the top (or bottom) of the container 20. At the same time, when the first surface 113 is flush with the fourth surface 231, the end of the second connecting beam 23 (the end of the second connecting beam 23 in the axial direction) is partially connected to the column 21 and partially connected to the connecting body 11, which increases the constraint direction of the connecting body 11 and improves the stability of the connection between the connecting body 11 and the container 20.

[0044] It is worth mentioning that in some embodiments, the eight vertices of the container 20 are provided with the connector 10, forming a new type of container 20 box type, and the first surface 113, the second surface 221 and the fourth surface 231 at each vertex of the container 20 are flushly arranged; when the plurality of new containers 20 are stacked and / or connected side by side into a combined container, the adhesion between adjacent containers 20 can be better, and the stability of the combined container is improved.

[0045] Referring to Figure 1 and Figure 2 , the positioning part 111 is provided with an angle piece hole 1111, which can be used to install a lifting ring to realize the lifting operation of the container 20; for example, the angle piece hole 1111 is a threaded hole, and the lifting ring can be directly screwed in the angle piece hole 1111.

[0046] In some embodiments, the surface of the positioning part 111 covering the column 21 is a third surface 1112, and the third surface 1112 is provided with a nut 13 at the position of the angle piece hole 1111, and the lifting ring can be screwed with the nut 13 to realize the installation of the lifting ring. The nut 13 is pre-installed on the third surface 1112, which can facilitate the installation and disassembly of the lifting ring.

[0047] It should be noted that the positioning part 111 covers the end surface of the column 21, that is, the contact area between the positioning part 111 and the column 21 is large, and the angle piece hole 1111 is arranged on the positioning part 111 (the lifting ring is installed on the positioning part 111), which can ensure the reliability of the connection between the positioning part 111 and the column 21 during the lifting of the container 20; of course, in the actual container 20 product, the stress direction of the positioning part 111, the center of gravity of the container 20 and other factors should also be considered during the lifting of the container 20, and in some embodiments, the specific position of the angle piece hole 1111 on the positioning part 111 can be adjusted to change the stress condition of the positioning part 111 during lifting.

[0048] Referring to Figure 1 and Figure 2 , the fixed body 12 includes a support part 122 and a bottom plate 121; the bottom plate 121 is arranged opposite to the connecting part 112 of the connecting body 11; the support part 122 is located between the bottom plate 121 and the connecting part 112; wherein the support part 122, the bottom plate 121, the connecting part 112 and the column 21 form a recess 30 with an opening facing outward.

[0049] The support part 122, the bottom plate 121, the connecting part 112 and the column 21 surround the formed recess 30 to provide an operation space for the installation of the container 20, and reduce the difficulty of the connection operation; when the container 20 is installed by the connecting bolt 41 and the connecting nut 42, the connecting nut 42 may fall off when being screwed with the connecting bolt 41, and the connecting nut 42 will fall into the recess 30, avoiding the situation that the connecting nut 42 falls outside the container 20 and cannot be found, which is beneficial to the improvement of the connection efficiency of the container 20.

[0050] In some embodiments, the bottom of the recess 30 can be inclined, which can timely drain the liquid entering the recess 30 and avoid corrosion of the connecting bolt 41 and the connecting nut 42 when used outdoors.

[0051] Referring to Figure 1 and Figure 2 , the support part 122 includes a first reinforcing plate 1221 and a second reinforcing plate 1222; the first reinforcing plate 1221 is arranged on the end face of the first connecting beam 22 close to the column 21; and the first reinforcing plate 1221 is perpendicular to the second reinforcing plate 1222.

[0052] The first reinforcing plate 1221 is arranged on the end face of the first connecting beam 22 close to the column 21, that is, the first reinforcing plate 1221 blocks the end face of the first connecting beam 22 close to the column 21 to avoid water vapor entering the inside of the first connecting beam 22 and causing corrosion; the first reinforcing plate 1221 is perpendicular to the second reinforcing plate 1222, which ensures that the recess 30 has a regular shape, provides more operation space for the installation of the container 20, and the perpendicularity of the first reinforcing plate 1221 and the second reinforcing plate 1222 is beneficial to the stability of the overall structure of the connector 10.

[0053] In an embodiment, the edges of the fixed body 12 and the column 21 and the first connecting beam 22 are wedge-shaped, which is beneficial to welding work, improves the welding quality between the fixed body 12 and the column 21 and the first connecting beam 22, and further improves the stability of the connector 10 installed on the container 20.

[0054] Referring to Figure 2 , on the other hand, the application also relates to a container 20, which includes any one of the connectors 10 mentioned in the foregoing embodiments, and the container 20 further includes a column 21 and a first connecting beam 22 perpendicular to the column 21, wherein, in the radial direction of the column 21, the first connecting beam 22 is spaced apart from the column 21, and the connector 10 is arranged at the spacing.

[0055] On the other hand, this application also relates to a combined container, including a connecting component 40 and at least two of the aforementioned containers 20, the two containers 20 being arranged side by side, and adjacent connectors 10 being connected as one unit through the connecting component 40; wherein, the connecting component 40 includes a connecting bolt 41, a connecting nut 42 and a connecting plate 43, the connecting plate 43 having two mating holes 431, and the connecting holes 1121 of adjacent connectors 10 being respectively arranged opposite to the two mating holes 431; the connecting bolt 41 passes through the mating hole 431 and the connecting hole 1121 opposite to the mating hole 431, and is screwed to the connecting nut 42.

[0056] It should be noted that the connecting plate 43 not only connects the side-by-side containers 20 into one unit, but also functions as a gasket, which can improve the tightness of the screw connection between the connecting bolt 41 and the connecting nut 42.

[0057] See Figure 4 Two containers 20 are arranged side by side on a base 50, which can be a ground foundation, etc. A connecting plate 43 is placed between the bottom of the container 20 and the base 50. The two mating holes 431 on the connecting plate 43 are respectively set opposite to the connecting holes 1121 of the adjacent connectors 10 on the two containers 20. The connecting bolts 41 are passed through the connecting holes 1121, the mating holes 431 and the mounting holes on the base 50 (not shown in the figure) in sequence, and are screwed on by the connecting nuts 42. The side by side containers 20 are connected into one unit, and the containers 20 are connected to the base 50.

[0058] In some embodiments, the side-by-side containers 20 do not need to be connected to the base 50; instead, the side-by-side containers 20 can be connected as a single unit at the top of the container 20 via a connecting assembly 40. For example, Figure 3 As shown ( Figure 3 The middle indicates a container 20), and the connecting plate 43 is placed on top of the container 20 arranged side by side. Similarly, the mating hole 431 on the connecting plate 43 is aligned with the connecting hole 1121 of the connector 10, and the connection between the side by side containers 20 is achieved by screwing the connecting bolt 41 and the connecting nut 42 together.

[0059] In some embodiments, the mating hole 431 on the connecting plate 43 may be elongated, providing assembly allowance and improving assembly efficiency.

[0060] In some embodiments, the container 20 can also be stacked vertically, see reference. Figure 5Four containers 20 are arranged transversely and longitudinally, the connecting plate 43 is clamped between the containers 20 arranged in a stack, the connecting holes 1121 on the connectors 10 in the two containers 20 arranged in a stack are arranged oppositely, and the matching holes 431 on the connecting plate 43 are arranged oppositely, the connecting bolt 41 is sequentially inserted through the connecting hole 1121 of the top connector 10, the matching hole 431, and the connecting hole 1121 of the bottom connector 10, and is screwed with the connecting nut 42, so that the four containers 20 are connected as a whole.

[0061] In some embodiments, the connecting plate 43 is further provided with two limiting holes 432, and the connecting assembly 40 further includes a positioning pin 44; when the containers 20 are arranged side by side, the two limiting holes 432 are arranged oppositely with the corner piece holes 1111 on the connectors 10 adjacent to each other, the positioning pin 44 is inserted into the limiting hole 432 and the corner piece hole 1111, so as to limit the relative position between the connecting plate 43 and the container 20; by inserting the positioning pin 44 into the limiting hole 432 and the corner piece hole 1111, the relative arrangement of the connecting hole 1121 and the matching hole 431 can be ensured, the connecting bolt 41 can be sequentially inserted into the connecting hole 1121 and the matching hole 431, and the splicing efficiency of the container 20 is improved; similarly, when the containers 20 are arranged in a stack, the positioning pin 44 is inserted into the corner piece holes 1111 of the two connectors 10 and the limiting hole 432 of the connecting plate 43 (as shown in Figure 3

[0062] It should be noted that in some embodiments, the nut 13 is arranged at the position where the positioning part 111 covers the surface (the third surface 1112) of the stand column 21, the outer diameter of the positioning pin 44 is greater than the inner diameter of the nut 13, and the outer diameter of the positioning pin 44 is less than the hole diameter of the corner piece hole 1111; the positioning pin 44 can be smoothly inserted into the corner piece hole 1111 and supported by the nut 13 without falling off, and the nut 13 can be connected with the lifting ring to realize the lifting of the container 20, and can also support the positioning pin 44; in some embodiments, the positioning pin 44 can also be inserted into the corner piece hole 1111 by other means, which is not limited thereto.

[0063] It is worth mentioning that the nut 13 can be arranged only on the connector 10 at the top of the container 20, and the corner piece hole 1111 of the connector 10 at the bottom of the upper container 20 only needs to be sleeved on the positioning pin 44, and the corner piece hole 1111 of the connector 10 at the top of the lower container 20 is provided with the nut 13 to ensure that the positioning pin 44 does not fall off, thereby reducing the use of the nut 13 and reducing the production cost.

[0064] ​The technical scheme provided in the embodiment of the application is used to connect the connector 10 with the stand 21 and the first connecting beam 22, which is conducive to improving the stability of the connector 10. In addition, the connector 10 comprises the oppositely arranged connecting body 11 and the fixed body 12, and has a simple structure. The fixed body 12 is arranged below the connecting portion 112 of the connecting body 11, and an operation space for splicing the containers 20 is left between the fixed body 12 and the connecting portion 112, thereby reducing the operation difficulty of splicing. The connecting hole 1121 is arranged at the opposite part of the connecting body 11 and the fixed body 12, and the connecting hole 1121 is shielded and not easy to be corroded when the containers 20 are stacked up and down.

[0065] In various embodiments of the present application, the terms or descriptions of different embodiments are consistent and can be mutually referred to if there is no special description and logical conflict, and the technical features in different embodiments can be combined to form new embodiments according to their inherent logical relationship. In the present application, "at least one" means one or more, and "multiple" means two or more.

[0066] It can be understood that the various numbers involved in the embodiments of the present application are only used for differentiation for convenience of description, and do not limit the scope of the embodiments of the present application. The size of the serial number of the above processes does not mean the order of execution, and the execution order of the processes should be determined according to their functions and inherent logic.

[0067] The connector, the container and the combined container provided in the embodiments of the present application are described in detail above, and the principles and implementation manners of the present application are described by applying specific examples. The above description of the embodiments is only used to help understand the present application and its core idea; meanwhile, for those skilled in the art, according to the idea of the present application, the specific implementation manner and application range can be changed, and the above description should not be understood as limiting the present application.

Claims

1. A connector characterized by comprising: The application is applied to a container, which comprises a column and a first connecting beam perpendicular to the column, wherein, in the radial direction of the column, the first connecting beam is spaced apart from the column, and a connector is arranged at the interval, the connector comprising: a connecting body provided with a positioning part and a connecting part; the positioning part covers the end surface of the column in the axial direction of the column; the connecting part connects the positioning part and is located at the interval between the column and the first connecting beam; and a fixing body located below the connecting part and connected with the connecting part, the column and the first connecting beam; the part opposite to the connecting body of the fixing body is provided with a connecting hole configured to connect the container.

2. The connector of claim 1, wherein the surface of the connecting body away from the column is a first surface; the outer surface of the first connecting beam connected with the connecting body is a second surface; the first surface is flush with the second surface.

3. The connector of claim 1, wherein the positioning part is provided with an angle piece hole.

4. The connector of any one of claims 1, 2 or 3, wherein the fixing body comprises a support part and a bottom plate; the bottom plate is arranged opposite to the connecting part of the connecting body; the support part is located between the bottom plate and the connecting part; wherein the support part, the bottom plate, the connecting part and the column form an outwardly open groove.

5. The connector of claim 4, wherein the support part comprises a first reinforcing plate and a second reinforcing plate; the first reinforcing plate covers the end surface of the first connecting beam close to the column; the first reinforcing plate is perpendicular to the second reinforcing plate.

6. The connector of claim 1, wherein the edges of the fixing body lapping with the column and the first connecting beam are wedge-shaped.

7. The connector of claim 3, further comprising a nut, the surface of the positioning part covering the column is a third surface; the third surface is provided with the nut at the position of the angle piece hole. The container comprises a column and a first connecting beam perpendicular to the column, wherein, in the radial direction of the column, the first connecting beam is spaced apart from the column, and the connector is arranged at the interval.

8. A container characterized by The combination container comprises a connecting assembly and at least two containers as claimed in claim 8; 9. A combination container, characterised in that, two of the containers are arranged side by side, and adjacent connectors are connected as a whole by the connecting assembly; wherein the connecting assembly comprises a connecting bolt, a connecting nut and a connecting plate, the connecting plate is provided with two matching holes, the connecting holes of adjacent connectors are arranged opposite to the two matching holes respectively; the connecting bolt passes through the matching holes and the connecting holes opposite to the matching holes and is screwed with the connecting nut.

10. The combination container of claim 9, wherein the positioning part is provided with an angle piece hole. ​ The connecting plate is further provided with two limiting holes, which are respectively arranged opposite to the corner piece hole and the limiting hole adjacent to the corner piece hole in the radial direction of the stand column. The connecting assembly further comprises a positioning pin, which is inserted into the corner piece hole and the limiting hole arranged opposite to each other.