Steel pipe stacking device

Through the modularly designed steel pipe stacking device, the problems of stainless steel pipe storage stability and low space utilization are solved, efficient and safe steel pipe storage and access are achieved, and manpower and material resources are saved.

CN223130681UActive Publication Date: 2025-07-22CHONGQING RUNFENG PIPE IND CO LTD
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Patent Information

Application Number
CN202422386959.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-29
Publication Date
2025-07-22
Estimated Expiration
2034-09-29

AI Technical Summary

Technical Problem

The existing stainless steel pipe stacking devices have problems such as poor stability, low space utilization, inconvenient storage and access, and time-consuming and labor-intensive.

Method used

A steel pipe stacking device including a multi-hole movable connector, adjustable hole, a primary telescopic bracket, a secondary telescopic bracket, a grooved bottom plate, a directional wheel, an undirected wheel, a brake pad, a short transverse bracket, a long transverse bracket, a fork hole and an anti-slip rubber pad is designed. Through modular design and adjustable components, multi-layer stacking, stable support and convenient access are achieved.

Benefits of technology

It improves the stability and space utilization of steel pipe storage, reduces manpower and material investment, simplifies the storage and access process, and ensures safety and flexibility.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of stainless steel pipe stacking, and discloses a steel pipe stacking device which comprises a porous movable connecting piece, adjustable holes, a first-stage telescopic support, a second-stage telescopic support, a groove bottom plate, directional wheels, non-directional wheels, brake pads, short transverse supports, long transverse supports, fork holes and anti-skid rubber pads. The groove bottom plate is provided with a groove and a movable connecting piece, the bottom of the secondary telescopic support is connected with the groove bottom plate through the movable connecting piece, the short transverse support and the long transverse support are fixed to the porous movable connecting piece through rivets, anti-skid rubber pads are arranged above the short transverse support and the long transverse support, fork holes are formed below the short transverse support and the long transverse support, and directional wheels and non-directional wheels are arranged below the groove bottom plate. And the non-directional wheel is provided with a brake pad. Meanwhile, anti-toppling and anti-sliding safety devices and the like are designed, so that the placement stability is improved, and the safety of equipment and personnel can be effectively protected. In addition, the pulleys installed at the bottom of the device can effectively save manpower, and the device is simple and convenient to assemble and more convenient to carry after being disassembled.
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Description

Technical Field

[0001] The utility model relates to the technical field of steel pipe stacking, in particular to a steel pipe stacking device. Background Technique

[0002] At present, stainless steel pipes are hollow long round steel materials, which are mainly widely used in industrial conveying pipelines such as petroleum, chemical industry, medical treatment, food, light industry, mechanical instruments, etc. and mechanical structure components. In addition, when the bending and torsional strength are the same, the weight is lighter, so they are also widely used in the manufacture of mechanical parts and engineering structures, and are also commonly used as furniture and kitchen utensils. Before use, stainless steel pipes need to be stored with the help of a stacking device to facilitate taking when used later. However, there are still some deficiencies in the existing stainless steel pipe stacking devices.

[0003] For the current construction status, a large number of steel pipes are randomly stacked or simply stacked on scaffolds. However, due to the large number of steel pipes, a large number of support frames need to be erected. The non-standard erection and demolition work of the frames takes a certain amount of time resources, and the stability of the support frames is difficult to guarantee. Moreover, moving the stacked steel pipes to a designated location at the construction site is time-consuming and laborious. The traditional stacking method may lead to inconvenient access, increasing labor and time costs. In addition, the steel pipes are easy to roll on the support frames. Therefore, the technical background of the steel pipe stacking device covers multiple aspects such as stability requirements, space utilization rate, access efficiency, and protection of steel pipes, and a steel frame placement device that saves space, construction manpower and material resources, and is safe and stable at the same time is designed to solve the above problems. Content of the Utility Model

[0004] The purpose of the utility model is to provide a steel frame placement device that saves space, construction manpower and material resources, and is safe and stable at the same time to solve the problems put forward in the above background technique.

[0005] To achieve the above purpose, the utility model provides the following technical solution: A steel pipe stacking device, including a porous movable connector, adjustable holes, a first-level telescopic bracket, a second-level telescopic bracket, a grooved bottom plate, directional wheels, non-directional wheels, brake pads, short transverse brackets, long transverse brackets, fork holes and anti-slip rubber pads. The grooved bottom plate is provided with grooves and movable connectors. The bottom of the second-level telescopic bracket is connected to the grooved bottom plate through a movable connector. The short transverse bracket and the long transverse bracket are fixed to the porous movable connector by rivets. The grooved bottom plate is provided with directional wheels and non-directional wheels below, and the non-directional wheels are provided with brake pads.

[0006] Preferably, the first-level connection hole and the second-level connection hole of the movable connector are respectively connected to the short transverse bracket and the long transverse bracket by rivets.

[0007] Preferably, anti-slip rubber pads are provided above the short transverse bracket and the long transverse bracket.

[0008] Preferably, fork holes are provided below the short transverse bracket and the long transverse bracket.

[0009] Preferably, the height of the first-stage telescopic bracket and the second-stage telescopic bracket can be adjusted.

[0010] Preferably, the first-stage telescopic bracket and the second-stage telescopic bracket are connected to the card slots of the movable connector and can be further stacked.

[0011] Preferably, the porous movable connector is provided with card slots that can just hold the bracket.

[0012] Preferably, an anti-slip rubber pad is provided above the multi-bracket, and inclined holes are provided on the anti-slip rubber pad.

[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0014] The bottom is provided with pulleys, which can play a good role in transportation and reduce the labor of workers.

[0015] A groove is provided on the bottom plate of the groove to prevent the steel pipe from rolling during transportation, thereby increasing the safety of workers during use.

[0016] In order to improve the space utilization rate, the steel pipe stacking device adopts a variety of space optimization technologies. For example, a multi-layer shelf structure is designed, and high-density storage is achieved by increasing the number of shelves and adjusting the shelf spacing.

[0017] Fork holes are added below the bracket and the bottom plate of the groove, and mechanical equipment such as forklifts is used for the access operation of steel pipes to reduce the labor input; a reasonable access channel and shelf layout are designed to ensure the smooth progress of the access operation. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic structural diagram of the present utility model.

[0019] Figure 2 It is a schematic structural diagram of the porous movable connector.

[0020] Figure 3 It is a top view of the bottom plate of the groove.

[0021] In the figure: porous movable connector 1, adjustable hole 2, first-stage telescopic bracket 3, second-stage telescopic bracket 4, bottom plate of the groove 5, directional wheel 6, non-directional wheel 7, brake pad 8, short transverse bracket 9, long transverse bracket 10, fork hole 11, anti-slip rubber pad 12, card slot 101, first-stage connection hole 102, second-stage connection hole 103, rivet 104, movable connector 51, groove 52. DETAILED DESCRIPTION OF THE INVENTION

[0022] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0023] Please refer to Figures 1 to 3 , the present utility model provides a technical solution: a steel pipe stacking device, including a porous movable connector 1, adjustable holes 2, a first-level telescopic bracket 3, a second-level telescopic bracket 4, a groove bottom plate 5, directional wheels 6, non-directional wheels 7, brake pads 8, short transverse brackets 9, long transverse brackets 10, fork holes 11 and anti-slip rubber pads 12. The groove bottom plate 5 is provided with a groove 52 and a movable connector 51. The other end of the second-level telescopic bracket 4 is inserted into the porous movable connector 1, and one end of the first-level telescopic bracket 3 is also inserted into the porous movable connector 1. The bottom of the second-level telescopic bracket 4 is connected to the groove bottom plate 5 through the movable connector 51. The short transverse bracket 9 and the long transverse bracket 10 are fixed to the porous movable connector 1 by rivets 104. Directional wheels 6 and non-directional wheels 7 are provided under the groove bottom plate 5. The non-directional wheel 7 is provided with a brake pad 8, and the brake pad 8 is a simple foot-operated brake plate structure, which is convenient for maintaining the stability of the overall device. A relevant brake structure can also be set on the directional wheel 6. The upper surface of the groove bottom plate 5 is provided with a plurality of V-shaped grooves, and the main purpose is also to improve the placement of steel pipes on the groove bottom plate 5. This layer can be used to place large steel pipes, and the bottom layer has more stable load-bearing capacity.

[0024] An anti-slip rubber pad 12 is provided above the short transverse bracket 9 and the long transverse bracket 10. The rubber anti-slip pad 12 is in a serrated or grooved shape, mainly for bearing the placement of steel pipes, avoiding direct contact between the steel pipe body and the bracket, causing wear, and preventing the steel pipe from sliding.

[0025] The porous movable connector 1 includes a card slot 101, a first-level connection hole 102 and a second-level connection hole 103. The second-level connection hole 103 is connected to the short transverse bracket 9 by a rivet 104, and the first-level connection hole 102 and the long transverse bracket 10 are connected by a rivet 104. Through the combination of the short transverse bracket 9, the long transverse bracket 10 and the porous movable connector 1, a stacking frame can be formed. Among them, the card slot 101 is an installation slot that penetrates up and down, and the ends of the first-level telescopic bracket 3 and the second-level telescopic bracket 4 are correspondingly inserted into the corresponding card slots 101 to form a vertical bracket structure. This device is composed of the above-mentioned multi-layer stacking frames through the vertical first-level telescopic bracket 3 and the second-level telescopic bracket 4 to jointly form a multi-layer stacking device.

[0026] There are fork holes 11 under the short horizontal bracket 9 and the long horizontal bracket 10. The fork holes 11 facilitate the cooperation with the fork arms of the forklift, making it convenient for the forklift to pick up and place each stacked frame, so as to facilitate the transportation of steel pipes.

[0027] The first-stage telescopic bracket 3 and the second-stage telescopic bracket 4 can adjust the height. The first-stage telescopic bracket 3 and the second-stage telescopic bracket 4 are both arranged in a structure of umbrella rod telescoping, so as to achieve the telescopic adjustment required by this application, thereby changing the device space size and selectively stacking more steel pipes.

[0028] The first-stage telescopic bracket 3 and the second-stage telescopic bracket 4 are both connected to the card slots and can be further stacked. Considering the stability of the device in practice, stacking three layers is sufficient.

[0029] In actual use, install the second-stage telescopic bracket 4 on the movable connecting piece 51 from the bottom to form a frame, then place the steel pipes in the grooves 52 in the groove bottom plate 5 and stack them layer by layer. If there are a large number of steel pipes, the adjustable holes on the first-stage telescopic bracket 3 and the second-stage telescopic bracket 4 can be adjusted to expand the space for placing more steel pipes, and the number of layers can be adjusted according to actual needs. There are fork holes 11 on each short horizontal bracket 9 and long horizontal bracket 10, which is for the convenience of installation and disassembly of steel pipes. In addition, directional wheels 6 and non-directional wheels 7 are added under the groove bottom plate 5 of this new utility model to move the device to a certain place for placement, and then brake the brake pads 8 to fix the device. At the same time, when it is necessary to move or adjust the position of the steel pipes, the roller system can be used to assist the operation. In addition, the multi-layer design makes the storage of steel pipes more orderly and efficient. Each layer can store and take out steel pipes independently without interference. At the same time, the multi-layer structure can also be expanded or adjusted according to actual needs to meet the steel pipe storage needs of different scales and types. This utility model aims to provide a steel pipe storage solution with a stable structure, flexible movement, easy loading and unloading, and effective use of space. By adopting a modular design and adjustable components, this device can meet the stacking requirements of steel pipes of different specifications and quantities.

[0030] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A steel pipe stacking device, comprising a porous movable connector (1), an adjustable hole (2), a first-stage telescopic bracket (3), a second-stage telescopic bracket (4), a groove bottom plate (5), a directional wheel (6), an undirectional wheel (7), a brake pad (8), a short transverse bracket (9), a long transverse bracket (10), a fork hole (11) and an anti-slip rubber pad (12), characterized in that: The groove bottom plate (5) is provided with a groove (52) and a movable connecting piece (51). One end of the secondary telescopic bracket (4) is connected to the groove bottom plate (5) through the movable connecting piece (51), and the other end of the secondary telescopic bracket (4) is inserted into the porous movable connecting piece (1). One end of the primary telescopic bracket (3) is also inserted into the porous movable connecting piece (1). The short transverse bracket (9) and the long transverse bracket (10) are fixed to the porous movable connecting piece (1) by rivets (104). A directional wheel (6) and a non-directional wheel (7) are provided under the groove bottom plate (5), and a brake pad (8) is provided on the non-directional wheel (7).

2. The steel pipe stacking device according to claim 1, characterized in that: The porous movable connecting piece (1) includes a card slot (101), a primary connecting hole (102), and a secondary connecting hole (103). The secondary connecting hole (103) is connected to the short transverse bracket (9) by a rivet (104), and the primary connecting hole (102) and the long transverse bracket (10) are connected by a rivet (104).

3. A steel pipe stacking device according to claim 1, characterized in that: An anti-slip rubber pad (12) is provided above the short transverse bracket (9) and the long transverse bracket (10).

4. A steel pipe stacking device according to claim 1, characterized in that: Fork holes (11) are provided below the short transverse bracket (9) and the long transverse bracket (10).

5. A steel pipe stacking device according to claim 1, characterized in that: The height of the primary telescopic bracket (3) and the secondary telescopic bracket (4) can be adjusted.

6. The steel pipe stacking device according to claim 1, characterized in that: Both the primary telescopic bracket (3) and the secondary telescopic bracket (4) are connected to the card slot (101).