Battery conveying device
By incorporating a support structure and locking components into the battery delivery device, the problem of poor stability during battery delivery is solved, achieving stable battery delivery and reducing replacement costs.
Patent Information
- Application Number
- CN202423104631.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-12-16
AI Technical Summary
In existing technologies, battery transport is unstable, especially when the tooling is suspended in the air and supported by the forklift's forks, resulting in unstable transport.
A battery delivery device is designed, including a delivery fixture, a support structure, and a locking assembly. By setting the support structure below the delivery fixture and locking it to the delivery fixture using the locking assembly, the support strength and connection stability are enhanced, and the components are easy to disassemble and replace.
It improves the stability of the battery transport process, reduces replacement costs, minimizes the risk of damage to the support structure, and does not require modification of the traditional transport tooling structure, adapting to container slots of different heights.
Smart Images

Figure CN223591722U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to battery technology field especially relates to a battery conveying device. BACKGROUND
[0002] In the production process of the battery energy storage container, the battery needs to be assembled into the container, but the tool for feeding the battery into the container in the related art is usually suspended, which leads to poor stability during the battery conveying process. SUMMARY
[0003] The utility model discloses a battery conveying device, which is used to convey the battery to the container or pull the battery out of the container.
[0004] To achieve the above-mentioned purpose, the battery conveying device is used to convey the battery to the container or pull the battery out of the container. The battery conveying device includes a conveying tool, a support structure, and a locking assembly. The support structure has a support platform, which is arranged below the conveying tool. The locking assembly is connected with the conveying tool and the support structure to lock the support structure and the conveying tool.
[0005] The utility model technical scheme sets the support structure below the conveying tool, and connects the support structure and the conveying tool through the locking assembly to lock them. The support structure can effectively and stably support the conveying tool, so that the conveying tool has a more stable state when conveying the battery.
[0006] In an embodiment, the locking assembly includes a receiving member and a fastener. The receiving member is connected with the support structure. The fastener is fastened with the receiving member and used to fasten the conveying tool and the support structure.
[0007] In this way, the conveying tool and the support structure can be connected without structural damage to the support structure. The receiving member enhances the support strength, increases the connection space when the support structure and the conveying tool are connected, and facilitates user operation. In addition, the receiving member can be easily detached from the support structure, so that when the locking assembly is damaged, the corresponding parts in the locking assembly can be replaced directly, reducing the risk of replacing the entire support structure and thus reducing the replacement cost.
[0008] In an embodiment, the support structure includes a column assembly and a support beam assembly connected with the column assembly. The receiving member includes a sleeve part and a connecting plate. The sleeve part is provided with a sleeve hole, and at least part of the support beam assembly passes through the sleeve hole. The connecting plate is connected to the sleeve part, and the fastener is connected to the connecting plate.
[0009] In this way, the sleeve part can effectively bear the support beam, and the support structure and the receiving member can be conveniently connected, thereby reducing the risk of opening holes in the support structure. In addition, the receiving member and the support beam assembly can be detachably connected or the receiving member can slide relative to the support beam assembly to flexibly change the position of the receiving member on the support structure. By connecting the connecting plate to the sleeve part and fastening the connecting plate with the fastener, the fastener can be directly connected to the support structure, thereby reducing the damage to the support structure and increasing the connection space of the fastener.
[0010] In an embodiment, the support beam assembly includes a first beam and a second beam. The first beam is arranged at an angle to the conveying direction of the conveying tool, and the first beam is provided with at least two first beams arranged along the conveying direction of the conveying tool. The second beam is connected at an angle to the first beam, and at least one of the first beam and the second beam is connected to the column assembly.
[0011] In this way, the strength of the support beam assembly is improved, and the sleeve hole can be sleeved with different first beams, thereby achieving the effect of adjusting the position of the conveying tool along the conveying direction of the conveying tool.
[0012] In an embodiment, the support beam assembly is connected to the column assembly in a liftable manner.
[0013] In this way, the height of the support beam assembly can be adjusted, and the height of the conveying tool can be changed to adapt to the delivery of the battery into the different height slots of the container.
[0014] In an embodiment, the locking assembly further includes a pressing assembly arranged opposite to the receiving member. The fastener also connects the pressing assembly, and the conveying tool is pressed against the support structure by the pressing assembly.
[0015] In this way, the damage risk of the conveying tool and the support structure is reduced, the locking area of the support structure and the conveying tool is increased, and the user operation is facilitated.
[0016] In an embodiment, the conveying tool is provided with a plug hole, and the pressing assembly includes a plug and a pressing plate. Part of the plug is inserted into the plug hole, and the other part of the plug extends out of the plug hole. The pressing plate is located outside the plug hole and is pressed against the side of the plug away from the receiving member, and the fastener is fastened to the pressing plate.
[0017] In this way, the risk of the crimping assembly moving relative to the conveying tool is reduced, so that the crimping assembly can be effectively limited, and the battery conveying device can be directly used in a conventional conveying tool that can be inserted by a fork arm of a forklift, and the channel for inserting the fork arm in the conveying tool can be directly used as the insertion hole in the embodiment, so that the structure of the conventional conveying tool does not need to be changed.
[0018] In an embodiment, the insertion holes are arranged in parallel and at least two insertion holes are arranged along the conveying direction of the conveying tool.
[0019] In this way, the installation stability of the conveying tool is improved.
[0020] In an embodiment, the battery conveying device further comprises a reinforcing assembly arranged above the conveying tool. One end of the reinforcing assembly is connected to the support structure, and the other end is connected to the container.
[0021] In this way, the risk of the support structure toppling is reduced.
[0022] In an embodiment, the reinforcing assembly is detachably connected to the container.
[0023] In this way, the reinforcing assembly and the container can be detachably connected, so that the reinforcing assembly of the battery conveying device can be connected to different containers without affecting the subsequent normal use of the container.
[0024] In an embodiment, the reinforcing assembly comprises a fixed cross beam and a connecting cross beam. The fixed cross beam is detachably connected to the container. The connecting cross beam is arranged at an angle to the fixed cross beam. One end of the connecting cross beam is connected to the support structure, and the other end extends towards the fixed cross beam and is fixedly connected to the fixed cross beam.
[0025] In this way, the structure of the reinforcing assembly is more stable, and the cost is lower.
[0026] In an embodiment, the conveying tool comprises a conveying mechanism and an emergency stop switch, and the emergency stop switch is electrically connected to the conveying mechanism.
[0027] In this way, when the battery conveying fails, the conveying mechanism can be stopped by pressing the emergency stop switch.
[0028] In an embodiment, the conveying tool further comprises a prompt element, and the prompt element is electrically connected to the emergency stop switch.
[0029] In this way, after the user presses the emergency stop switch, the control prompting element is also started, and the user can be reminded by the prompting element that the current battery conveying device is in a state of stopping conveying batteries. BRIEF DESCRIPTION OF DRAWINGS
[0030] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained according to the structures shown in these drawings without creative labor.
[0031] Figure 1 A three-dimensional structural schematic view of an embodiment of the battery conveying device provided by the present application after being connected with the container;
[0032] Figure 2 For Figure 1 A local enlarged view of position A in FIG. 1;
[0033] Figure 3 For Figure 1 A local enlarged view of position B in FIG. 1;
[0034] Figure 4 A structural schematic view of an embodiment of the conveying tool of the battery conveying device provided by the present application.
[0035] Explanation of reference numerals:
[0036] 100, conveying tool; 110, conveying mechanism; 120, bracket; 121, plug-in hole;
[0037] 200, support structure; 210, column assembly; 220, support beam assembly; 221, first beam; 222, second beam;
[0038] 300, locking assembly; 310, receiving member; 311, sleeve portion; 311a, sleeve hole; 312, connecting plate; 320, crimping assembly; 321, plug-in member; 322, crimping plate; 330, fastener;
[0039] 400, reinforcing assembly; 410, fixed beam; 420, connecting beam;
[0040] 500, emergency stop switch;
[0041] 600, prompting element;
[0042] 1, container; 10, hoisting device.
[0043] The purposes, functional features and advantages of the utility model will be further described in combination with embodiments with reference to the drawings. DETAILED DESCRIPTION
[0044] The technical solutions in the embodiments of the utility model will be clearly and completely described in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.
[0045] It should be noted that if the embodiments of the utility model involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative position relationship, movement condition, etc. between components in a certain posture, and if the certain posture changes, the directional indications also change accordingly.
[0046] In addition, if the embodiments of the utility model involve descriptions of "first", "second", etc., the descriptions of "first", "second", etc. are only for description purposes, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first" and "second" can explicitly or implicitly include at least one feature. In addition, "and / or" or "and / or" appearing throughout the text means that the three parallel schemes are included, for example, "A and / or B" includes A scheme, or B scheme, or A and B simultaneously satisfy the scheme. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of the ordinary skill in the art, and when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the utility model.
[0047] At present, from the development of market situation, the application of power batteries is more and more extensive. The power battery is not only applied to the energy storage power supply system of water power, fire power, wind power and solar power station, but also is widely applied to electric bicycles, electric motorcycles, electric vehicles and other electric vehicles, military equipment, aerospace and other fields. With the continuous expansion of the application field of power battery, the market demand is also increasing.
[0048] For example, in the production process of battery energy storage container, it is needed to assemble the battery into the container. However, the tool for feeding the battery into the container in the prior art generally has a bracket and a conveying mechanism arranged on the bracket. A channel is arranged on the bracket for inserting the fork arm of a forklift. The fork arm is lifted by the forklift controller, so as to realize the effect of lifting the tool to feed the battery into different positions of the container. However, when the tool is supported by the fork arm of the forklift, the tool is in a suspended state, which causes poor stability during the battery conveying process.
[0049] In order to improve the stability during the battery conveying process, the utility model provides a battery conveying device.
[0050] Please refer to Figure 1 and Figure 2 In an embodiment of the utility model, the battery conveying device is used to convey the battery to the container 1 or pull the battery out of the container 1. The battery conveying device comprises a conveying tool 100, a support structure 200 and a locking assembly 300. The support structure 200 has a support platform arranged below the conveying tool 100. The locking assembly 300 is connected with the conveying tool 100 and the support structure 200, so as to lock the support structure 200 and the conveying tool 100.
[0051] The conveying tool 100 is the main part used to convey the battery. The conveying tool 100 can feed the battery into the container 1 or pull the battery out of the container 1. The conveying tool 100 at least comprises a conveying mechanism 110. The conveying mechanism 110 can comprise an execution component used to carry and drive the battery to move, such as a belt, a chain wheel, a conveying roller and the like, to realize the conveying effect of the battery. The conveying mechanism 110 can also comprise a driving source used to drive the movement of the execution component. The driving source can comprise a motor or a transmission component in transmission connection with the motor to change the transmission ratio and provide a suitable speed to convey the battery. In actual application, the container 1 has a slot for inserting the battery. The slot can be arranged in one row or multiple rows in the height direction. After the conveying tool 100 is aligned with one slot of the container 1, the battery can be conveyed into the container 1.
[0052] The support structure 200 refers to a structure for supporting the conveying tool 100. The support structure 200 can be a frame structure or a support table, etc. For example, when the support structure 200 is a frame structure, the frame structure can include a plurality of columnar bodies, a plurality of cross beams connected to the plurality of columnar bodies, the cross beams being connected to the columnar bodies, and the cross beams can include a first cross beam 221 extending in a first direction and a second cross beam 222 extending in a second direction arranged in a cross manner. The cross beams can be welded to the columnar bodies or can be detachably connected to the columnar bodies. The cross beams can be adjusted in the height direction to adjust the installation position, thereby achieving the lifting effect of the conveying tool 100. When the support structure 200 is a support table, the support table can be a rectangular or circular table. The support table has a support body and a table top provided on the support body, and the support body can be a tripod structure or a columnar body structure, etc. The table top can be fixedly connected to the support body or can be lifted relative to the support body by a lifting device. The support structure 200 is provided below the conveying tool 100, which refers to the state of the conveying tool 100 normally conveying the battery, and the support structure 200 is provided on the side of the conveying tool 100 close to the ground.
[0053] The locking assembly 300 refers to an assembly for locking the conveying tool 100 and the support structure 200. The locking assembly 300 can be achieved by screw locking, bolt locking, rivet locking, or mortise and tenon joint locking, etc. For example, when the locking assembly 300 includes a bolt, the bolt can be provided through the conveying tool 100 at one end and through the support structure 200 at the other end, thereby achieving the connection effect of the two. Alternatively, the locking assembly 300 can include an adapter and a connecting piece, the adapter being connected to the support structure 200 at one end through the connecting piece and being connected to the conveying tool 100 at the other end through the connecting piece. Specifically, when the locking assembly 300 is connected to the support structure 200, it can be connected to the top of the support structure 200 or can be connected to the side of the support structure 200. Similarly, when the locking assembly 300 is connected to the conveying tool 100, it can be connected to the bottom member of the conveying tool 100 or can be connected to the side member of the conveying tool 100, etc., as long as it can achieve the effect of locking the support structure 200 and the conveying tool 100 through the locking assembly 300.
[0054] When the locking assembly 300 is connected with the conveying tool 100, the locking assembly 300 can only include a plurality of connecting bolts or connecting screws which are directly connected with the support structure 200 and the conveying tool 100; or the locking assembly 300 includes a pressing plate 322 which is pressed on a side of the conveying tool 100 away from the support structure 200, and the pressing plate 322 is connected with the support structure 200 through a connecting piece; or the locking assembly 300 includes a receiving piece 310 which receives the support structure 200, and the receiving piece 310 is directly connected with the support structure 200 through a connecting piece. Of course, the locking assembly 300 can also include both the pressing assembly 320 which is used to press the conveying tool 100 and the receiving piece 310 which is used to receive the support structure 200, and the pressing assembly 320 and the receiving assembly are directly connected through the fastener 330.
[0055] The technical scheme of the utility model connects one side of the locking assembly 300 with the conveying tool 100 and the other side with the support structure 200 to lock the support structure 200 and the conveying tool 100, so that the support structure 200 can effectively and stably support the conveying tool 100, thereby making the conveying tool 100 have a more stable state when conveying the battery.
[0056] Please refer to Figure 1 and Figure 2 In an embodiment of the utility model, the locking assembly 300 includes the receiving piece 310 and the fastener 330. The receiving piece 310 is connected with the support structure 200. The fastener 330 is fastened with the receiving piece 310 and is used to fasten the conveying tool 100 and the support structure 200.
[0057] The receiving member 310 can be at least one of a plate, a block or a sleeve, and is used to support the support structure 200. For example, when the support structure 200 includes a support beam, the receiving member 310 can be sleeve-shaped or can be provided with a block or a plate connected to the sleeve, and the sleeve is provided for the support beam. Of course, when the support structure 200 includes a support beam, and the cross section of the support beam is square, the receiving member 310 can only include a plate or a block, and the plate or the block is connected to the support beam, so that the conveying tool 100 can be connected to the receiving member 310. When the receiving member 310 is connected to the support structure 200, it can be connected by sleeving, clamping or abutting upwardly against the support structure 200. When the support structure 200 includes a support table, the receiving member 310 can be provided below the support table, and the receiving member 310 can be provided below the support table. Alternatively, the receiving member 310 can be partially provided below the support table and partially protrude from the support table, and the fastener 330 can be fastened to the receiving member 310 through the support table, or can be fastened to the part of the receiving member 310 protruding from the support table.
[0058] The fastener 330 can be a fastening screw, a fastening bolt or a clamping member. When the fastener 330 is connected to the receiving member 310, it can be connected by welding, screwing or clamping. When the fastener 330 is used to fasten the conveying tool 100 to the support structure 200, it can be directly fastened to the conveying tool 100, thereby achieving the effect of fastening the conveying tool 100 to the support structure 200, for example, by screwing or bolting. Alternatively, in order to reduce the process of opening holes in the conveying tool 100, a pressing member can be provided on the side of the conveying tool 100 away from the support structure 200, and the fastener 330 is fastened to the pressing member, thereby indirectly pressing and fastening the conveying tool 100 to the support structure 200 under the fastening action of the fastener 330. Specifically, the pressing member can be provided with a threaded hole, and the fastener 330 is a screw or a bolt, which is screwed into the threaded hole. Alternatively, the pressing member can be provided with a through hole, and the fastener 330 is a bolt, which is locked and fastened by a nut after being inserted into the through hole.
[0059] By including the locking assembly 300 with the receiving member 310 and the fastener 330, the receiving member 310 is connected with the support structure 200, the fastener 330 is fastened with the receiving member 310, and is used to fasten the conveying tool 100 with the support structure 200, so that when the conveying tool 100 is connected with the support structure 200, the support structure 200 can not be structurally damaged, and the arrangement of the receiving member 310 strengthens the support strength and increases the connection space when the support structure 200 is connected with the conveying tool 100, thereby facilitating user operation. In addition, such an arrangement also enables the receiving member 310 to be easily detachable with the support structure 200, so that when the locking assembly 300 is damaged, the corresponding parts in the locking assembly 300 can be directly replaced, reducing the risk of replacing the entire support structure 200, thereby reducing the replacement cost.
[0060] Please refer to Figure 1 and Figure 2 In an embodiment of the present application, the support structure 200 includes a column assembly 210 and a support beam assembly 220 connected with the column assembly 210. The receiving member 310 includes a sleeve part 311 and a connecting plate 312, the sleeve part 311 is provided with a sleeve hole 311a, and at least part of the support beam assembly 220 passes through the sleeve hole 311a. The connecting plate 312 is connected to the sleeve part 311, and the fastener 330 is connected to the connecting plate 312.
[0061] The sleeve part 311 refers to a component that can pass at least part of the support beam assembly of the support structure 200. Specifically, the sleeve hole 311a on the sleeve part 311 is used to pass at least part of the support beam assembly. The shape of the sleeve hole 311a can be circular, rectangular or other shapes. The shape of the sleeve hole 311a can be the same as or different from the cross-sectional shape of the part of the support beam assembly used to pass the sleeve hole 311a, as long as it can pass at least part of the support beam assembly.
[0062] The connecting plate 312 refers to a component for connecting with the fastener 330. The connecting plate 312 can be rectangular, circular or other shapes. The connecting plate 312 can be a metal plate or a plastic plate with high strength, etc. The connecting plate 312 can be integrally formed, welded, clamped or screwed with the sleeve part 311. The connecting plate 312 is provided to facilitate the connection of the fastener 330 with the receiving member 310 of the locking assembly 300. The connecting plate 312 can be provided with a threaded hole, and one end of the fastener 330 is screwed with the threaded hole. Or the connecting plate 312 is provided with a through hole, and one end of the fastener 330 is inserted into the through hole and screwed with a nut. Or the connecting plate 312 and one end of the fastener 330 can be connected by welding, clamping, etc. The connecting plate 312 is provided on one side of the sleeve part 311, which can be provided on the top or bottom of the sleeve part 311. Of course, on the basis of facilitating the connection of the connecting plate 312 with the fastener 330, the connecting plate 312 can also be provided on the side wall of the sleeve part 311. The connecting plate 312 can be a flat plate, a curved plate or a folded plate, etc., as long as it can achieve the effect of connecting with the fastener 330.
[0063] By providing the receiving member 310 with the sleeve part 311 and the connecting plate 312, the sleeve part 311 has a sleeve hole 311a, and at least part of the support beam assembly 220 of the support structure 200 is inserted into the sleeve hole 311a, so that the sleeve part 311 can effectively bear the support beam, and the support structure 200 and the receiving member 310 are connected conveniently, reducing the risk of opening holes in the support structure 200. In this way, the receiving member 310 and the support beam assembly 220 can be detachably connected, or the receiving member 310 slides relative to the support beam assembly 220 to change the position of the receiving member 310 on the support structure 200, thereby achieving the effect of flexibly adjusting the position of the conveying tool 100 on the support structure 200, which is more conducive to effectively aligning the conveying tool 100 with the slot opening in the container 1 for mounting the battery. By providing the connecting plate 312 on one side of the sleeve part 311, and connecting one end of the fastener 330 with the connecting plate 312, the direct connection of the fastener 330 with the support structure 200 can be reduced, thereby reducing the damage to the support structure 200 and increasing the connection space of the fastener 330.
[0064] Please refer to Figure 1 and Figure 2In an embodiment of the present application, the support beam assembly 220 comprises a first beam 221 and a second beam 222. The first beam 221 is arranged at an angle with the conveying direction of the conveying tool 100, and the first beam 221 is provided with at least two sleeve holes 311a. The first beam 221 is provided with at least two, and the at least two first beams 221 are arranged along the conveying direction of the conveying tool 100. The second beam 222 is connected to the first beam 221 at an angle, and at least one of the first beam 221 and the second beam 222 is connected to the column assembly 210.
[0065] The first beam 221 can be a cylindrical rod or a prismatic rod. The material of the first beam 221 can be metal or other high-strength plastic material. The first beam 221 is arranged at an angle with the conveying direction of the conveying tool 100, for example, it can be arranged perpendicular to the conveying direction of the conveying tool 100, or it can be arranged at an acute angle or an obtuse angle with the conveying direction of the conveying tool 100. The first beam 221 is provided with a sleeve hole 311a, which can change the sleeve position along the extension direction of the first beam 221, thereby achieving the effect of changing the installation position of the tool perpendicular to the conveying direction of the conveying tool 100. The first beam 221 can be provided with two, three or more sleeve holes 311a, which can be matched with different first beams 221 to achieve flexible adjustment of the position of the conveying tool 100 along its conveying direction, thereby achieving the effect of flexible adjustment of the distance between the conveying tool 100 and the cabinet door of the container 1.
[0066] The second beam 222 can be a cylindrical rod or a prismatic rod. The material of the first beam 221 can be metal or other high-strength plastic material. The second beam 222 is arranged at an angle with the first beam 221, and the extension direction of the second beam 222 can be parallel to the conveying direction of the conveying tool 100 or arranged at an acute angle or an obtuse angle with the conveying direction of the conveying tool 100. Specifically, the first beam 221 can be connected to the column assembly 210, or the second beam 222 can be connected to the column assembly 210, or both the first beam 221 and the second beam 222 can be connected to the column assembly 210. When the first beam 221 and / or the second beam 222 are connected to the column assembly 210, they can be welded, bolted or connected by a strap.
[0067] By including the support beam assembly 220 including the first beam 221 and the second beam 222 connected at an angle, the strength of the support beam assembly 220 is improved, so that the structure of the support beam assembly 220 is relatively stable. By arranging the at least two first beams 221 along the conveying direction of the conveying tool 100, and the extension direction of the first beam 221 is arranged at an angle with the conveying direction of the conveying tool 100, and the first beam 221 is provided with a sleeve hole 311a, so that the sleeve hole 311a can be sleeved with different first beams 221, and the position of the conveying tool 100 along the conveying direction of the conveying tool 100 can be adjusted, and the distance between the conveying tool 100 and the cabinet door of the container 1 can be adjusted.
[0068] Please refer to Figure 1 and Figure 2 In an embodiment of the present application, the support beam assembly 220 is connected to the column assembly 210 in a lifting manner.
[0069] Specifically, the column assembly 210 can be spaced apart in the height direction and provided with a plurality of connecting holes, and the support beam assembly 220 is connected to different connecting holes through a connecting piece to achieve the height adjustment effect of the support beam. Alternatively, the support beam assembly 220 can be sleeved with the sleeve on the column assembly 210, and then the sleeve is locked on the column assembly 210 by the positioning locking piece (such as a screw or a bolt), so that the position of the sleeve on the column assembly 210 can be changed by loosening the positioning locking piece, and the support beam assembly 220 is connected to the sleeve, and then the height of the support beam assembly 220 is adjusted by adjusting the position of the sleeve on the column assembly 210. When the height of the support beam assembly 220 is adjusted, the sleeve can be further locked on the column assembly 210 by tightening the positioning locking piece, so as to ensure that the support beam assembly 220 has good support stability for the conveying tool 100.
[0070] By connecting the support beam assembly to the column assembly 210 in a lifting manner, the height of the support beam assembly can be adjusted, and the height of the conveying tool 100 can be changed to adapt to conveying the battery into the different height slots of the container 1.
[0071] Please refer to Figure 1 and Figure 2 In an embodiment of the present application, the locking assembly 300 further comprises a crimping assembly 320, and the crimping assembly 320 is arranged opposite to the receiving piece 310. The fastener 330 also connects the crimping assembly 320, and the conveying tool 100 is pressed to the support structure 200 through the crimping assembly 320.
[0072] The crimping assembly 320 can include at least one of a crimping plate 322, a crimping block or crimping strip, a crimping beam, etc. When the crimping assembly 320 is used to press the conveying tool 100 against the support structure 200, the conveying tool 100 can be effectively pressed against the support structure 200 by the crimping assembly 320 when there is no excessive space on the conveying tool 100, and the fastener 330 is connected to the crimping assembly 320 below, so as to achieve the effect that the conveying tool 100 can be pressed against the support structure 200 to be locked together without damaging the conveying tool 100. Moreover, the locking space of the conveying tool 100 and the support structure 200 is increased by arranging the crimping assembly 320.
[0073] By arranging the crimping assembly 320 opposite to the receiving member 310, the fastener 330 is also connected to the crimping assembly 320, and the conveying tool 100 is pressed against the support structure 200 by the crimping assembly 320, so that the locking assembly 300 does not need to directly penetrate the fastener 330 through the conveying tool 100 and the support structure 200 when locking the support structure 200 and the conveying tool 100, thereby reducing the risk of damage to the conveying tool 100 and the support structure 200. At the same time, such an arrangement also increases the locking area when the support structure 200 and the conveying tool 100 are locked together, reduces the risk of limited locking space when the conveying tool 100 and the support structure 200 are directly locked by the fastener 330, and is thus beneficial to user operation.
[0074] Please refer to Figure 1 and Figure 2 In an embodiment of the present application, the conveying tool 100 is provided with a plug-in hole 121, and the crimping assembly 320 includes a plug-in member 321 and a crimping plate 322. Part of the plug-in member 321 is inserted into the plug-in hole 121, and the other part extends out of the plug-in hole 121. The crimping plate 322 is located outside the plug-in hole 121 and is crimped to the side of the plug-in member 321 away from the receiving member 310, and the fastener 330 is fastened to the crimping plate 322.
[0075] The plug-in hole 121 can be a rectangular hole, a circular hole or a hole of other shapes. The conveying tool 100 can include a conveying mechanism 110, and the plug-in hole 121 can be arranged on the conveying mechanism 110. Alternatively, the conveying tool 100 further includes a bracket 120 connected to the bottom or side of the conveying mechanism 110, and the bracket 120 is provided with the plug-in hole 121.
[0076] The plug-in part 321 can be a plug-in rod, a plug-in strip or a plug-in block, etc. The plug-in part 321 is partially inserted into the plug-in hole 121, and the plug-in hole 121 can effectively limit the plug-in part 321. The cross-sectional shape of the plug-in part 321 can be rectangular, semicircular, circular or other shapes. The cross-sectional shape of the plug-in part 321 can be adapted to the shape of the plug-in hole 121 or can be different. The material of the plug-in part 321 can be metal or plastic.
[0077] The crimping plate 322 can be a flat plate, a curved plate or a plate with a broken line shape. The crimping plate 322 can be made of metal or plastic.
[0078] In this way, the risk of moving the crimping assembly 320 relative to the conveying tool 100 is reduced, so that the crimping assembly 320 can be effectively limited, thereby ensuring the stability of the conveying tool 100 connected to the support structure 200. In addition, in this way, when the locking assembly 300 locks the support structure 200 and the conveying tool 100, the conveying tool 100 does not need to be directly connected to the fastener 330, thereby reducing the risk of structural damage to the conveying tool 100. The battery conveying device can be directly used for a conventional conveying tool 100 that can be inserted by a fork arm of a forklift. The channel for inserting the fork arm in the conveying tool 100 can be directly used as the plug-in hole 121 in the embodiment, so that the structure of the conventional conveying tool 100 does not need to be changed.
[0079] Please refer to Figure 1 , Figure 2 and Figure 4 , further, the plug-in hole 121 is arranged in parallel with at least two plug-in holes 121 along the conveying direction of the conveying tool 100.
[0080] In this way, the plug-in part 321 can be inserted into the at least two plug-in holes 121, and the crimping plate 322 can be crimped on the side of the plug-in part 321 away from the support structure 200, and the fastener 330 can be connected to the receiving part 310. That is, the conveying tool 100 can be locked to the support structure 200 by at least two locking assemblies 300, thereby improving the installation stability of the conveying tool 100.
[0081] Please refer to Figure 1 and Figure 3 In an embodiment of the present application, the battery conveying device further comprises a reinforcing assembly 400 arranged above the conveying tool 100. One end of the reinforcing assembly 400 is connected to the support structure 200, and the other end is connected to the container 1.
[0082] It can be understood that when the battery is pulled out from the container 1 by the conveying tool 100, due to the friction between the battery and the container 1, when the conveying tool 100 is higher, in order to overcome the friction between the battery and the container 1, it may cause the support structure 200 to fall during operation.
[0083] The reinforcing assembly 400 refers to an assembly used to reinforce the support structure 200 to reduce the risk of falling in the above-mentioned scenario. The reinforcing assembly 400 can include at least one of a reinforcing plate, a reinforcing beam, or a reinforcing rope.
[0084] By arranging the reinforcing assembly 400 above the conveying tool 100, one end of the reinforcing assembly 400 is connected to the support structure 200, and the other end is connected to the container 1, so that in the case of falling of the support structure 200 due to overcoming the friction between the battery and the container 1, the reinforcing assembly 400 can have a pulling force on the support structure 200 in the opposite direction of the falling direction, thereby reducing the risk of falling of the support structure 200.
[0085] Please refer to Figure 1 and Figure 3 In an embodiment of the present application, the reinforcing assembly 400 is detachably connected to the container 1.
[0086] Specifically, the reinforcing assembly 400 and the container 1 can be detachably connected by screw connection, bolt connection, plug-in connection or clamping connection.
[0087] In this way, the reinforcing assembly 400 and the container 1 can be detachably connected, so that the reinforcing assembly 400 of the battery conveying device can be connected to different containers 1 without affecting the subsequent transportation of the container 1 to other locations for normal use.
[0088] Please refer to Figure 1 and Figure 3 In an embodiment of the present application, the reinforcing assembly 400 includes a fixed cross beam 410 and a connecting cross beam 420, and the fixed cross beam 410 is detachably connected to the container 1. The connecting cross beam 420 is arranged at an angle with the fixed cross beam 410. One end of the connecting cross beam 420 is connected to the support structure 200, and the other end extends towards the fixed cross beam 410 and is fixedly connected to the fixed cross beam 410.
[0089] The fixed crossbeam 410 refers to the crossbeam used to fix it to the container 1. The fixed crossbeam 410 can be a solid beam or a hollow beam, and its cross-sectional shape can be rectangular, semi-circular, other polygonal, or I-shaped. When the fixed crossbeam 410 is fixedly connected to the container 1, it can be detachably connected by screws, bolts, plugs, or clips. It is understood that when the fixed crossbeam 410 and the container 1 are connected using these methods, the fixed crossbeam 410 can be removed from the container 1, thus not affecting the normal use of the container 1 after the battery is installed. This also allows the battery conveying device of this invention to be adapted to convey batteries to different containers 1. As is well known to those skilled in the art, the top of the container 1 usually has a lifting device 10. To reduce the risk of damage to the main body of the container 1, the fixed crossbeam 410 can be connected to the lifting device 10.
[0090] The connecting beam 420 refers to the beam used to connect the fixed beam 410 and the supporting structure 200. The connecting beam 420 can be a solid beam or a hollow beam, and its cross-sectional shape can be rectangular, semi-circular, or other polygonal. When connecting the connecting beam 420 to the fixed beam 410, the connecting beam 420 can be connected using the aforementioned locking assembly 300, or it can be fixed by welding or snap-fitting. The extending direction of the fixed beam 410 can be at an angle to the extending direction of the connecting beam 420, meaning that the fixed beam 410 can be perpendicular to the connecting beam 420, at an acute angle, or at an obtuse angle.
[0091] By detachably connecting the fixed crossbeam 410 to the container 1, and setting the connecting crossbeam 420 at an angle to the fixed crossbeam 410; with one end of the connecting crossbeam 420 connected to the support structure 200 and the other end extending toward the fixed crossbeam 410 and fixedly connected to the fixed crossbeam 410, the structure of the reinforcing component 400 is made more stable, and the reinforcing component 400 is easy to detach from the container 1, thereby enabling the reinforcing component 400 of the battery conveying device to be connected to different containers 1 without affecting the subsequent normal use of the container 1.
[0092] like Figure 4 As shown, in one embodiment of the present invention, the conveying fixture 100 includes a conveying mechanism 110 and an emergency stop switch 500, the emergency stop switch 500 being electrically connected to the conveying mechanism 110.
[0093] The conveying mechanism 110 is a mechanism used to push and pull the battery. The conveying mechanism 110 may include a driving component such as a motor or cylinder to drive the battery to move toward or away from the container 1.
[0094] The emergency stop switch 500 is a control component for stopping the driving member of the conveying mechanism 110. The emergency stop switch 500 can be a button switch, a lever switch or a touch switch.
[0095] By electrically connecting the emergency stop switch 500 with the conveying mechanism 110, when the battery conveying device fails, the conveying mechanism 110 can be stopped by pressing the emergency stop switch 500, thereby reducing the power consumption of the conveying mechanism 110 or reducing the risk of battery conveying error.
[0096] As shown in Figure 4 Further, the conveying tool 100 is further provided with a prompt component 600, and the prompt component 600 is electrically connected with the emergency stop switch 500.
[0097] The prompt component 600 is a device for alarming after the conveying mechanism 110 stops, which is used to remind the user that the conveying state of the current battery conveying device is in a stop failure state. The prompt component 600 can be a light alarm device or a sound alarm device. For example, the prompt component 600 is a signal lamp or a buzzer.
[0098] By electrically connecting the prompt component 600 with the emergency stop switch 500, when the user presses the emergency stop switch 500, the prompt component 600 is also controlled to start, thereby reminding the user that the current battery conveying device is in a state of stopping conveying the battery through the prompt component 600.
[0099] The above is only an exemplary embodiment of the present application, and does not limit the patent scope of the present application. Any equivalent structural transformation or direct / indirect application in other related technical fields within the technical concept of the present application is included in the patent protection scope of the present application.
Claims
1. A battery conveying device for conveying batteries to or from a container; characterized in that, The battery delivery device includes: Conveying fixtures; A support structure, wherein the support structure is disposed below the conveying fixture; and A locking assembly is connected to the conveying fixture and the support structure to lock the support structure to the conveying fixture.
2. The battery delivery device as described in claim 1, characterized in that, The locking assembly includes: A receiving component, which is connected to the supporting structure; and Fasteners are fastened to the receiving component and used to secure the conveying fixture to the support structure.
3. The battery delivery device as described in claim 2, characterized in that, The supporting structure includes a column assembly and a supporting beam assembly connecting the column assembly, and the receiving component includes: The sleeve portion, wherein the sleeve portion is provided with a socket hole; at least a portion of the support beam assembly passes through the socket hole; and A connecting plate is connected to the sleeve portion, and the fastener is connected to the connecting plate.
4. The battery delivery device as described in claim 3, characterized in that, The supporting beam assembly includes: At least two first crossbeams are arranged along the conveying direction of the conveying fixture, and the extending direction of the first crossbeams is set at an angle to the conveying direction of the conveying fixture. The first crossbeams pass through the socket holes. The second crossbeam is connected at an angle to the first crossbeam, and at least one of the first crossbeam and the second crossbeam is connected to the column assembly.
5. The battery delivery device as described in claim 3, characterized in that, The supporting beam assembly is vertically and flexibly connected to the column assembly.
6. The battery delivery device as described in claim 2, characterized in that, The locking assembly further includes a crimping assembly, which is disposed opposite to the receiving member. The fastener is also connected to the crimping assembly and uses the crimping assembly to press the conveying fixture against the support structure.
7. The battery delivery device as described in claim 6, characterized in that, The conveying fixture is provided with a plug-in hole, and the crimping assembly includes: A connector, wherein a portion of the connector is inserted into the connector hole, and another portion extends out of the connector hole; and A crimping plate is located outside the insertion hole and is crimped onto the side of the insertion member away from the receiving member, and the fastener is securely connected to the crimping plate.
8. The battery delivery device as claimed in claim 7, characterized in that, At least two insertion holes are arranged side by side, and at least two insertion holes are arranged along the conveying direction of the conveying fixture.
9. The battery delivery device as claimed in claim 1, characterized in that, The battery conveying device also includes a reinforcement component, which is located above the conveying fixture; one end of the reinforcement component is connected to the support structure, and the other end is used to connect to the container.
10. The battery delivery device as claimed in claim 9, characterized in that, The reinforcement components are detachably connected to the container.
11. The battery delivery device as claimed in claim 10, characterized in that, The reinforcement components include: A fixed crossbeam, which is detachably connected to the container; and A connecting beam is provided, which is set at an angle to the fixed beam; one end of the connecting beam is connected to the supporting structure, and the other end extends toward the fixed beam and is fixedly connected to the fixed beam.
12. The battery delivery device according to any one of claims 1 to 11, characterized in that, The conveying fixture includes a conveying mechanism and an emergency stop switch, the emergency stop switch being electrically connected to the conveying mechanism.
13. The battery delivery device as claimed in claim 12, characterized in that, The conveying device is equipped with a warning device, which is electrically connected to the emergency stop switch.