Track translation type heavy metal plate stacking frame

The design of the track-moving heavy-duty sheet metal stacking rack solves the problems of low flexibility and low space utilization of fixed stacking racks, realizes flexible adjustment and automated operation, adapts to the storage needs of sheet metal parts of different specifications, and reduces equipment dependence and operating costs.

CN224014405UActive Publication Date: 2026-03-20SHANDONG SHUNQUAN SENHE STEEL PROCESSING CO LTD
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Patent Information

Application Number
CN202520660733.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-09
Publication Date
2026-03-20
Estimated Expiration
2035-04-09

AI Technical Summary

Technical Problem

Existing fixed heavy sheet metal stacking racks have poor flexibility, low space utilization, poor adaptability, difficulty in quickly responding to production needs, and high dependence on hoisting equipment.

Method used

It adopts a track-sliding design, including X- and Y-axis telescopic plates, a moving drive mechanism, and clamping components. Combined with height telescopic tubes and storage boxes, it enables flexible adjustment and automated operation of the stacking rack.

Benefits of technology

It improves the flexibility and space utilization of stacking racks, reduces reliance on hoisting equipment, lowers operational difficulty and operating costs, and meets the storage needs of sheet metal parts of different sizes and quantities.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of stacking frames, and particularly relates to a rail translation type heavy metal plate stacking frame which comprises X-direction telescopic plates and Y-direction telescopic plates, the two ends of each X-direction telescopic plate are fixedly connected with one side of the corresponding Y-direction telescopic plate, the number of the X-direction telescopic plates is multiple, and first electric sliding rails are arranged between the X-direction telescopic plates. A plurality of height telescopic pipes are symmetrically arranged above the X-direction telescopic plate, mounting holes are formed in the top ends of the height telescopic pipes, a top plate is arranged above the mounting holes in a penetrating and inserting mode through pin shafts, a moving driving mechanism is arranged above the top plate, a clamping assembly is arranged below the moving driving mechanism, and moving wheels are arranged below the Y-direction telescopic plate. Through innovation in multiple aspects of flexible adjustment, automatic operation, stability enhancement, space optimization and the like, the sheet metal part storage device can meet the storage requirements of sheet metal parts of different specifications, the manual operation difficulty is reduced through the automatic function, and meanwhile the safety and stability in the storage process are ensured.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of stacking frame, especially relates to a track translation type heavy metal plate stacking frame. BACKGROUND

[0002] The metal plate stacking frame is a device for storing and stacking heavy metal plates, which is usually made of steel structure and is a fixed heavy metal plate stacking frame, and its main function is to provide a stable storage space for heavy metal plates to avoid deformation or dumping of the metal plates during stacking.

[0003] Although the fixed heavy metal plate stacking frame is widely used in heavy metal plate storage, it has the following shortcomings:

[0004] 1. Poor flexibility, in the production process, the storage and retrieval of metal plates usually need to rely on hoisting equipment (such as a crane or a forklift), which has low operation flexibility and is inconvenient to operate. For small workshops or places with limited space, the installation and operation of hoisting equipment are limited, further increasing the operation difficulty and making it difficult to quickly respond to production needs;

[0005] 2. Low space utilization, the fixed stacking frame cannot adjust the storage space according to the actual needs, resulting in low space utilization. For example, when the space around the stacking frame is not fully utilized, it will cause space waste. Since the stacking frame is fixed, it cannot dynamically adjust the storage area according to the size and quantity of the metal plates, resulting in unreasonable space allocation;

[0006] 3. Poor adaptability, the design of the fixed stacking frame is usually for metal plates of specific size and weight, and it is difficult to adapt to the storage needs of metal plates of different specifications. When the production needs change (such as the size of the metal plates changes), the fixed stacking frame cannot meet the new storage requirements, resulting in the fixed stacking frame being unable to be used and causing idle waste. INVENTION CONTENTS

[0007] The utility model aims at providing a track translation type heavy metal plate stacking frame to solve the problems existing in the prior art.

[0008] In order to achieve the above purpose, the utility model adopts the technical scheme of a track translation type heavy metal plate stacking frame, which comprises an X-direction telescopic plate and a Y-direction telescopic plate, the two ends of the X-direction telescopic plate are fixedly connected with one side of the Y-direction telescopic plate, the X-direction telescopic plate is provided with a plurality of first electric sliding rails between the X-direction telescopic plates, a plurality of height telescopic pipes are symmetrically arranged above the X-direction telescopic plate, a mounting hole is formed at the top end of the height telescopic pipe, a top plate is arranged above the mounting hole through a pin shaft, a moving driving mechanism is arranged above the top plate, a clamping assembly is arranged below the moving driving mechanism, and a moving wheel is arranged below the Y-direction telescopic plate.

[0009] As preferred, the moving driving mechanism comprises a second electric slide rail, a first electric cylinder, an adapter plate and a second electric cylinder, the second electric slide rail is arranged above and adjacent to the side edge of the top plate, the first electric cylinder is symmetrically arranged on the second electric slide rail, one side of the adapter plate is connected with the output end of the first electric cylinder, and the second electric cylinder is arranged through the adapter plate from top to bottom.

[0010] As preferred, the clamping assembly comprises a clamping plate, a threaded rod and a moving plate, the clamping plate is arranged below the second electric cylinder and the clamping plate is in L shape, the threaded rod is threadedly connected with the clamping plate, and one side of the moving plate is ball-jointed with one end of the threaded rod.

[0011] As preferred, a plurality of through holes are arranged on the side of the height telescopic pipe, and a protection rod is arranged in the through hole.

[0012] As preferred, a side protection plate is arranged on the side of the X-direction telescopic plate, a bearing frame is arranged on the side, away from the X-direction telescopic plate, of the Y-direction telescopic plate, a storage box is arranged above the bearing frame, and the storage box is connected with the bearing frame through a second fixing bolt.

[0013] As preferred, a stabilizing shell is arranged above the first electric cylinder, and the stabilizing shell is connected with the second electric slide rail through a first fixing bolt.

[0014] As preferred, a plurality of insertion holes are arranged on the top plate, and an insertion plate is arranged in the insertion hole.

[0015] As preferred, a plurality of spring shock absorbers are arranged above the X-direction telescopic plate, and a clamping plate is arranged above the spring shock absorber.

[0016] As preferred, a friction pad is arranged above the first electric slide rail.

[0017] Compared with the prior art, the utility model has the advantages and positive effects that,

[0018] The utility model discloses a kind of rail translation type heavy metal sheet stacking racks, including rack body, rack body is provided with X direction telescopic plate, Y direction telescopic plate and height telescopic pipe, rack body is provided with movable wheel, movable wheel is connected with movable drive mechanism, movable drive mechanism is connected with clamping assembly, rack body is provided with second electric slide rail, second electric slide rail is connected with clamping assembly, rack body is provided with storage box, storage box is connected with second fixed peg, second fixed peg is connected with bearing frame, bearing frame is connected with height telescopic pipe.

[0019] In summary, through flexible structure and automation function, the flexibility, space utilization and adaptability of the stacking rack are significantly improved, while the operation difficulty and operating cost are reduced, which is an efficient, economical and practical technical solution. BRIEF DESCRIPTION OF DRAWINGS

[0020] In order to more clearly illustrate the technical solutions of the embodiments of the utility model, the following will be a brief introduction to the drawings needed in the embodiment description. Obviously, the drawings in the following description are some embodiments of the utility model, and those skilled in the art can also obtain other drawings according to these drawings without creative labor.

[0021] Figure 1 It is a front view perspective view of a rail translation type heavy metal sheet stacking rack.

[0022] Figure 2 It is a rear view perspective view of a rail translation type heavy metal sheet stacking rack.

[0023] Figure 3 It is a bottom view perspective view of a rail translation type heavy metal sheet stacking rack.

[0024] Figure 4 It is a mounting structure schematic view of a clamping plate.

[0025] Figure 5 It is a mounting structure schematic view of a first sliding rail.

[0026] Figure 6 Enlarged view of the structure of the clamping assembly.

[0027] In the above figures, 1, X-direction telescopic plate, 2, Y-direction telescopic plate, 3, side guard plate, 4, bearing frame, 5, height telescopic pipe, 6, first electric sliding rail, 7, friction pad, 8, spring shock absorber, 9, lap plate, 10, through hole, 11, protection rod, 12, mounting hole, 13, moving wheel, 14, top plate, 15, pin shaft, 16, insertion port, 17, insertion plate, 18, second electric sliding rail, 19, first electric cylinder, 20, stabilizing shell, 21, first fixed bolt, 22, second electric cylinder, 23, adapter plate, 24, clamping assembly, 2401, clamping plate, 2402, threaded rod, 2403, moving plate, 25, storage box, 26, second fixed bolt. DETAILED DESCRIPTION

[0028] In order to more clearly understand the above objectives, features and advantages of the present application, the present application will be further described below in conjunction with the drawings and examples. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.

[0029] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application, but the present application can also be practiced without the specific details, which are different from the description, therefore, the present application is not limited to the specific embodiments disclosed in the following description.

[0030] Example 1, as Figures 1-6As shown, the following will be specifically described in detail the design of the key components: a track translation type heavy sheet metal stacking frame, comprising an X-direction telescopic plate 1 and a Y-direction telescopic plate 2, the two ends of the X-direction telescopic plate 1 are fixedly connected with one side of the Y-direction telescopic plate 2, the X-direction telescopic plate 1 is provided with a plurality of X-direction telescopic plates 1 and a first electric sliding rail 6 is arranged between the X-direction telescopic plates 1, a friction pad 7 is arranged above the first electric sliding rail 6, a plurality of height telescopic pipes 5 are symmetrically arranged above the X-direction telescopic plate 1, mounting holes 12 are formed at the top ends of the height telescopic pipes 5, a top plate 14 is penetratingly arranged above the mounting holes 12 through a pin shaft 15, a moving driving mechanism is arranged above the top plate 14, a clamping assembly 24 is arranged below the moving driving mechanism, moving wheels 13 are arranged below the Y-direction telescopic plate 2, the design of the moving wheels 13 facilitates flexible movement of the whole, the moving driving mechanism comprises a second electric sliding rail 18, a first electric cylinder 19, an adapter plate 23 and a second electric cylinder 22, the second electric sliding rail 18 is arranged above the top plate 14 and close to the side edge of the top plate 14, the first electric cylinder 19 is symmetrically arranged on the second electric sliding rail 18, one side of the adapter plate 23 is connected with the output end of the first electric cylinder 19, the second electric cylinder 22 is penetratingly arranged in the adapter plate 23, the clamping assembly 24 comprises a clamping plate 2401, a threaded rod 2402 and a moving plate 2403, the clamping plate 2401 is arranged below the second electric cylinder 22 and the clamping plate 2401 is in L shape, the threaded rod 2402 is threadedly connected with the clamping plate 2401, one side of the moving plate 2403 is ball-jointed with one end of the threaded rod 2402, the design of the ball joint prevents the moving plate 2403 from rotating with the threaded rod 2402, a plurality of spring dampers 8 are arranged above the X-direction telescopic plate 1, a clamping plate 9 is placed above the spring dampers 8, the clamping plate 9 is laid flat to facilitate movement of the clamping plate 9, first, the sizes of the X-direction telescopic plate 1, the Y-direction telescopic plate 2 and the height telescopic pipe 5 are reasonably adjusted according to the needs of the sheet metal part, after the sizes are adjusted, a clamping plate 9 is selected and placed above the spring dampers 8 and the friction pad 7, the spring dampers 8 play a damping and buffering role to prevent the first electric sliding rail 6 from being damaged by excessive pressure, the first electric sliding rail 6 is started to be in contact with the clamping plate 9 through the friction pad 7, the movement of the first electric sliding rail 6 can drive the clamping plate 9 above to move, the clamping plate 9 is realized to be sent in and out, the clamping assembly 24 is driven by the moving driving mechanism to operate the sheet metal, the sheet metal on the clamping plate 9 can be put in and taken out, which saves human resources, the first electric cylinder 19 moves under the action of the second electric sliding rail 18, after being adjusted to a position, the first electric cylinder 19 drives the adapter plate 23 to move forward and backward, the second electric cylinder 22 also determines the position with the forward and backward movement of the adapter plate 23, after the position is determined, the second electric cylinder 22 adjusts the height of the clamping assembly 24, the clamping assembly 24 clamps and fixes the sheet metal, the movement of the moving plate 2403 can be adjusted by adjusting the threaded rod 2402, the movement of the moving plate 2403 is driven by the movement of the threaded rod 2402,Because the threaded rod 2402 and the moving plate 2403 are ball-jointed, the moving plate 2403 will not rotate with the threaded rod 2402, and the adjusting movement of the moving plate 2403 can further improve the clamping effect on the sheet metal.

[0031] Further, a plurality of through holes 10 are formed on the side of the height telescopic pipe 5, and a protection rod 11 is inserted into the through holes 10. The design of the protection rod 11 can further protect the sheet metal between the height telescopic pipes 5 and further avoid the side sliding phenomenon. A side guard plate 3 is arranged on the side of the X-direction telescopic plate 1 close to the height telescopic pipe 5. The design of the side guard plate 3 further prevents the sheet metal from sliding from the side. A bearing frame 4 is arranged on the side of the Y-direction telescopic plate 2 away from the X-direction telescopic plate 1. A storage box 25 is placed above the bearing frame 4. The storage box 25 is connected with the bearing frame 4 through a second fixing bolt 26. The bearing frame 4 plays a bearing role. The storage box 25 is used for storing small and medium-sized sheet metals and provides reasonable space utilization planning. In addition, the storage box 25 can be separated from the bearing frame 4 by detaching the second fixing bolt 26. Such a design can ensure that the clamping plate 9 is smoothly sent in and out, and improve the flexibility of use.

[0032] Further, a stabilizing shell 20 is sleeved on the first electric cylinder 19. The stabilizing shell 20 is connected with the second electric slide rail 18 through a first fixing bolt 21. After the first electric cylinder 19 is positioned, the position is temporarily fixed because only forward and backward telescopic adjustment is needed. The stabilizing shell 20 is sleeved on the first electric cylinder 19. The stabilizing shell 20 is connected and fixed with the second electric slide rail 18 through the first fixing bolt 21, which further ensures the stability and safety during operation. The stabilizing shell 20 can be detached by detaching the first fixing bolt 21, which facilitates the movement of the first electric cylinder 19. A plurality of insertion holes 16 are formed on the top plate 14. An insertion plate 17 is inserted into the insertion hole 16. Such a design mainly improves the adaptability to different sheet metals. If the sheet metal is relatively small in size, the insertion plate 17 can be inserted into the insertion hole 16 to divide the space and divide the storage area into multiple areas, which can be flexibly adjusted. The design of the track translation type heavy sheet metal stacking rack improves the functionality and practicability of the stacking rack through flexible adjustment, automation, stability enhancement, and space optimization. It not only can adapt to the storage needs of sheet metal parts of different specifications, but also reduces the difficulty of manual operation through the automation function, while ensuring the safety and stability of the storage process.

[0033] The contents not described in detail in the present description belong to the prior art known to those skilled in the art.

[0034] The above merely describes preferred embodiments of the present application, and is not intended to limit the present application in other forms, and any skilled person in the art can modify or change the above disclosed technical content to equivalent embodiments applied to other fields with equivalent changes, but any simple modification, equivalent change and modification made to the above embodiments according to the technical essence of the present application without departing from the technical scheme of the present application still falls within the protection scope of the present application.

Claims

1. A track-track sliding heavy-duty sheet metal stacking rack, characterized in that, It includes an X-axis telescopic plate and a Y-axis telescopic plate. The two ends of the X-axis telescopic plate are fixedly connected to one side of the Y-axis telescopic plate. Multiple X-axis telescopic plates are provided, and a first electric slide rail is provided between the X-axis telescopic plates. Multiple height telescopic tubes are symmetrically arranged above the X-axis telescopic plates. The top of the height telescopic tubes has a mounting hole. A top plate is provided above the mounting hole through a pin. A moving drive mechanism is provided above the top plate. A clamping assembly is provided below the moving drive mechanism. A moving wheel is provided below the Y-axis telescopic plate.

2. The track-mounted heavy-duty sheet metal stacking rack according to claim 1, characterized in that, The moving drive mechanism includes a second electric slide rail, a first electric cylinder, a transition plate, and a second electric cylinder. The second electric slide rail is located above the top plate and near the side of the top plate. The first electric cylinder is symmetrically arranged on the second electric slide rail. One side of the transition plate is connected to the output end of the first electric cylinder. The second electric cylinder is arranged vertically through the transition plate.

3. The track-moving heavy-duty sheet metal stacking rack according to claim 2, characterized in that, The clamping assembly includes a clamping plate, a threaded rod, and a movable plate. The clamping plate is located below the second electric cylinder and is L-shaped. The threaded rod is threadedly connected to the clamping plate. One side of the movable plate is ball-jointed with one end of the threaded rod. The ball-joint design prevents the movable plate from rotating with the threaded rod.

4. The track-moving heavy-duty sheet metal stacking rack according to claim 3, characterized in that, The height telescopic tube has multiple through holes on its periphery, and protective rods are inserted into the through holes.

5. A track-mounted heavy-duty sheet metal stacking rack according to claim 4, characterized in that, A side guard plate is provided on the side of the X-direction telescopic plate near the height telescopic tube, and a support frame is provided on the side of the Y-direction telescopic plate away from the X-direction telescopic plate. A storage box is placed on top of the support frame, and the storage box is connected to the support frame by a second fixing bolt.

6. A track-mounted heavy-duty sheet metal stacking rack according to claim 5, characterized in that, A stabilizing shell is fitted on top of the first electric cylinder, and the stabilizing shell is connected to the second electric slide rail through a first fixing bolt.

7. A track-mounted heavy-duty sheet metal stacking rack according to claim 6, characterized in that, The top plate has multiple through holes, and insert plates are inserted into the through holes.

8. A track-mounted heavy-duty sheet metal stacking rack according to claim 7, characterized in that, Multiple spring shock absorbers are installed above the X-direction telescopic plate, and a mounting plate is placed above the spring shock absorbers.

9. A track-mounted heavy-duty sheet metal stacking rack according to claim 8, characterized in that, A friction pad is provided above the first electric slide rail.