Engineering construction management steel bar storage rack

By designing a detachable rebar storage rack, the problem of large space occupation in existing rebar storage technologies has been solved, enabling multi-layer storage and model management, and saving construction site space.

CN223589380UActive Publication Date: 2025-11-25JIANGSU CAPITAL ECOLOGICAL ENVIRONMENT CO LTD
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Patent Information

Application Number
CN202423076483.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2025-11-25
Estimated Expiration
2034-12-13

AI Technical Summary

Technical Problem

The existing steel bar storage racks cannot be spliced ​​vertically, resulting in steel bar storage occupying a large area of ​​the construction site and failing to make full use of the space perpendicular to the ground.

Method used

A steel bar storage rack comprising a first frame and a second frame is designed. The first frame consists of a first horizontal bar and a vertical bar. The second frame is detachably connected to the first vertical bar via a plug-in part and is fixed using a locking assembly. This design allows for multi-layer stacking of steel bars, saving ground space.

Benefits of technology

It enables multi-layer storage of reinforcing bars, saving ground space, improving storage efficiency, and adapting to the management needs of different types of reinforcing bars.

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Abstract

The utility model discloses an engineering construction management reinforcing steel bar storage rack which comprises at least two first rack bodies which are arranged in parallel and used for storing reinforcing steel bars. The first frame body comprises a first transverse rod and two first vertical rods, the two first vertical rods are vertically arranged on the first transverse rod, and a storage space for storing reinforcing steel bars is formed between the two first vertical rods; the two first vertical rods are hollow pipe bodies, the second frame body comprises two inserting parts matched with the first vertical rods, and the second frame body is detachably connected with the two first vertical rods through the inserting parts. And the reinforcing steel bars are continuously stacked on the second frame body, so that the reinforcing steel bars can be stacked higher, and the ground space is saved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to technical fields, concretely is a kind of engineering construction management reinforcing bar storage rack. BACKGROUND

[0002] Modern industrial production, construction engineering usually need a large number of reinforcing bars to support and reinforce the processing object, so reinforcing bar needs to be cut to meet production, engineering needs, and the reinforcing bar cut needs to be placed on the storage rack for storage.

[0003] However, the existing storage rack mostly includes a horizontal rod and at least two vertical rods, the two vertical rods are perpendicular to the horizontal rod, and the storage space for storing reinforcing bars is formed between the two vertical rods. Multiple storage racks are arranged side by side to carry reinforcing bars, the two vertical rods limit the reinforcing bars, the horizontal rod supports the reinforcing bars away from the ground to prevent them from getting wet, and it is also convenient to bundle lifting ropes, etc. Then on the construction site, the existing storage rack cannot be vertically spliced, which results in the need for a large amount of construction site area for reinforcing bars, and the space perpendicular to the ground is not fully utilized for storage and management of reinforcing bars. Therefore, we provide a kind of engineering construction management reinforcing bar storage rack. UTILITY MODEL CONTENT

[0004] In view of the deficiencies of the prior art, the utility model provides a kind of engineering construction management reinforcing bar storage rack, to solve the problems raised in the above background art.

[0005] To achieve the above purpose, the utility model is realized by the following technical scheme: a kind of engineering construction management reinforcing bar storage rack, including at least two first rack bodies, two the first rack body is arranged side by side, for storing reinforcing bars;Further including at least two second rack bodies, the first rack body includes first horizontal rod and two first vertical rods, two the first vertical rod is vertically arranged on the first horizontal rod, and the storage space for storing reinforcing bars is formed between two the first vertical rod;Two the first vertical rod is hollow pipe body, the second rack body includes two with the first vertical rod matching plug-in part, the second rack body is through the plug-in part and two the first vertical rod form detachable connection.

[0006] Preferably, the locking assembly comprises two mounting seats, two locking rods, a hook, a hanging ring, a torsion spring and a hinged shaft; the two mounting seats are fixedly installed on the first vertical rod, the two hinged shafts are fixedly connected with the two mounting seats respectively, the two hinged shafts pass through the locking rod and are rotationally connected with the locking rod, the torsion spring is sleeved on the hinged shaft and connected with the mounting seat at one end and with the locking rod at the other end, so as to provide torsional force for the locking rod, one end of the locking rod is provided with a locking hook, and a locking hole for the locking hook to extend into is formed in the side wall of the first vertical rod; the lower end of the insertion part is connected with a locking block through a connecting part, a recess for locking the locking hook is formed between the connecting part and the locking block, and one end of the hook is movably connected with the end of the locking rod away from the locking hook.

[0007] Preferably, the first frame body further comprises at least one partition, the partition is fixedly connected with the first horizontal rod, and the partition is used for separating the storage space.

[0008] Preferably, the upper end of the partition is provided with two limiting pieces.

[0009] Preferably, the second frame body further comprises a second horizontal rod and two second vertical rods, the two second vertical rods are vertically arranged on the second horizontal rod, and a storage space for storing steel bars is formed between the two second vertical rods.

[0010] Beneficial effects

[0011] The utility model provides a kind of engineering construction management steel bar storage rack, when using, at least two first frame bodies are placed side by side, and using crane, bundle steel bar is lifted and placed into storage space, when the number of steel bar stored in storage space reaches threshold value, the insertion part of second frame body is inserted into the two first vertical rods of first frame body, steel bar can be continued to be stacked on second frame body, in turn, steel bar can be stacked higher, and ground space is saved. BRIEF DESCRIPTION OF DRAWINGS

[0012] Figure 1 It is the three-dimensional structure schematic view of the utility model described one kind of engineering construction management steel bar storage rack.

[0013] Figure 2 It is the first frame body and second frame body connection structure schematic view of the utility model described one kind of engineering construction management steel bar storage rack.

[0014] Figure 3 It is the first frame body and second frame body of the utility model described one kind of engineering construction management steel bar storage rack Exploded structure schematic view.

[0015] Figure 4The utility model discloses a local section structure schematic diagram of the first frame body and the second frame body connecting structure of engineering construction management steel bar storage frame.

[0016] Figure 5 The utility model discloses an explosion structure schematic diagram of the locking assembly of engineering construction management steel bar storage frame.

[0017] Mark explanation

[0018] 1-first frame body, 11-first cross rod, 12-first vertical rod, 121-lock hole, 13-separator, 131-limiting sheet, 2-second frame body, 21-inserting part, 211-lock block, 212-connecting part, 22-second cross rod, 23-second vertical rod, 3-steel bar, 4-locking assembly, 41-mounting seat, 42-locking rod, 421-lock hook, 44-hanging ring, 45-torsion spring, 46-hinge shaft. Specific implementation

[0019] The technical scheme in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model and not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative work belong to the scope of the utility model.

[0020] Please refer to Figures 1-5 The utility model provides a kind of engineering construction management steel bar storage frame, including at least two first frame body 1, two described first frame body 1 are arranged side by side, for storing steel bar 3;Further include at least two second frame body 2, the first frame body 1 includes first cross rod 11 and two first vertical rod 12, two described first vertical rod 12 is vertically arranged on the first cross rod 11, two described first vertical rod 12 form the storage space of storage steel bar 3 between;Two described first vertical rod 12 are hollow pipe body, the second frame body 2 includes two with the matching inserting part 21 of first vertical rod 12, the second frame body 2 is formed with two described first vertical rod 12 by the inserting part 21 with the detachable connection.

[0021] When using, at least two first frame body 1 are placed side by side, and using crane, bundle steel bar 3 is lifted and placed into storage space, when the quantity of steel bar 3 stored in storage space reaches threshold value, the inserting part 21 of second frame body 2 is inserted to two first vertical rod 12 of first frame body 1, steel bar 3 can be continued to be stacked on second frame body 1, and then steel bar can be stacked higher, save ground space.

[0022] In the embodiment, the locking assembly 4 comprises two mounting seats 41, two locking rods 42, a hook 43, a hanging ring 44, a torsion spring 45 and a hinged shaft 46. The two mounting seats 41 are fixedly installed on the first vertical rod 12. The two hinged shafts 46 are fixedly connected with the two mounting seats 41 respectively. The two hinged shafts 46 pass through the locking rods 42 and are rotationally connected with the locking rods 42. The torsion spring 45 is sleeved on the hinged shaft 46 and has one end connected with the mounting seat 41 and the other end connected with the locking rod 42, so as to provide torsional force for the locking rod 42. One end of the locking rod 42 is provided with a locking hook 421. The side wall of the first vertical rod 12 is provided with a locking hole 121 for the locking hook 421 to extend into. The lower end of the insertion part 21 is connected with a locking block 211 through a connecting part 212. The connecting part 212 and the locking block 211 form a recessed part for locking the locking hook 421. One end of the hook 43 is movably connected with the end of the locking rod 42 away from the locking hook 421.

[0023] Further, when the second frame body 2 is installed, the insertion part 21 is inserted into the first vertical rod 12. The locking block 211 is provided with a guide inclined surface. When the insertion part 21 is inserted, the lower side of the locking block 211 is in contact with the locking hook 421 first, and the two locking hooks 421 are away from each other. The locking rod 42 rotates relative to the hinged shaft 46, and at the same time, the torsion spring 42 is compressed. When the locking block 211 passes through the two locking hooks 421, the locking rod 42 is reset under the action of the torsion spring 45, and the two locking hooks 421 extend into the recessed part between the connecting part 212 and the locking block 211 to lock the insertion part 21. At this time, the locking rod 42 is in an inclined state, as shown in FIG. 6. Further, the second frame body 2 is prevented from being separated from the first vertical rod 12. Then, the reinforcing steel bars can be stacked on the second frame body 2. Figure 4 Further, when the second frame body 2 is installed, the insertion part 21 is inserted into the first vertical rod 12. The locking block 211 is provided with a guide inclined surface. When the insertion part 21 is inserted, the lower side of the locking block 211 is in contact with the locking hook 421 first, and the two locking hooks 421 are away from each other. The locking rod 42 rotates relative to the hinged shaft 46, and at the same time, the torsion spring 42 is compressed. When the locking block 211 passes through the two locking hooks 421, the locking rod 42 is reset under the action of the torsion spring 45, and the two locking hooks 421 extend into the recessed part between the connecting part 212 and the locking block 211 to lock the insertion part 21. At this time, the locking rod 42 is in an inclined state, as shown in FIG. 6. Further, the second frame body 2 is prevented from being separated from the first vertical rod 12. Then, the reinforcing steel bars can be stacked on the second frame body 2.

[0024] Further, when the second frame body 2 is installed, the insertion part 21 is inserted into the first vertical rod 12. The locking block 211 is provided with a guide inclined surface. When the insertion part 21 is inserted, the lower side of the locking block 211 is in contact with the locking hook 421 first, and the two locking hooks 421 are away from each other. The locking rod 42 rotates relative to the hinged shaft 46, and at the same time, the torsion spring 42 is compressed. When the locking block 211 passes through the two locking hooks 421, the locking rod 42 is reset under the action of the torsion spring 45, and the two locking hooks 421 extend into the recessed part between the connecting part 212 and the locking block 211 to lock the insertion part 21. At this time, the locking rod 42 is in an inclined state, as shown in FIG. 6. Further, the second frame body 2 is prevented from being separated from the first vertical rod 12. Then, the reinforcing steel bars can be stacked on the second frame body 2.

[0025] Further, when the second frame body 2 is installed, the insertion part 21 is inserted into the first vertical rod 12. The locking block 211 is provided with a guide inclined surface. When the insertion part 21 is inserted, the lower side of the locking block 211 is in contact with the locking hook 421 first, and the two locking hooks 421 are away from each other. The locking rod 42 rotates relative to the hinged shaft 46, and at the same time, the torsion spring 42 is compressed. When the locking block 211 passes through the two locking hooks 421, the locking rod 42 is reset under the action of the torsion spring 45, and the two locking hooks 421 extend into the recessed part between the connecting part 212 and the locking block 211 to lock the insertion part 21. At this time, the locking rod 42 is in an inclined state, as shown in FIG. 6. Further, the second frame body 2 is prevented from being separated from the first vertical rod 12. Then, the reinforcing steel bars can be stacked on the second frame body 2. Further, when the second frame body 2 is installed, the insertion part 21 is inserted into the first vertical rod 12. The locking block 211 is provided with a guide inclined surface. When the insertion part 21 is inserted, the lower side of the locking block 211 is in contact with the locking hook 421 first, and the two locking hooks 421 are away from each other. The locking rod 42 rotates relative to the hinged shaft 46, and at the same time, the torsion spring 42 is compressed. When the locking block 211 passes through the two locking hooks 421, the locking rod 42 is reset under the action of the torsion spring 45, and the two locking hooks 421 extend into the recessed part between the connecting part 212 and the locking block 211 to lock the insertion part 21. At this time, the locking rod 42 is in an inclined state, as shown in FIG. 6. Further, the second frame body 2 is prevented from being separated from the first vertical rod 12. Then, the reinforcing steel bars can be stacked on the second frame body 2.

[0026] In the embodiment, the first frame body 1 further comprises at least one partition 13, the partition 13 is fixedly connected with the first cross rod 11, and the partition 13 is used for separating the storage space. Since the models of the applied steel bars 3 may be different during the construction process, in order to facilitate taking and management, the partition 13 separates the storage space of the first frame body 1 into multiple parts, and different models of steel bars 3 can be placed in each storage part, so as to facilitate the differentiation and management.

[0027] In the embodiment, the upper end of the partition 13 is provided with two limiting sheets 131. The limiting sheet 13 is used for limiting the second cross rod of the second frame body 2 during splicing, and has a certain stabilizing effect.

[0028] In the embodiment, the second frame body 2 further comprises a second cross rod 22 and two second vertical rods 23, the two second vertical rods 23 are vertically arranged on the second cross rod 22, and a storage space for storing the steel bars 3 is formed between the two second vertical rods 23.

[0029] It should be noted that the relational terms such as first and second and the like in this text are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply that there is any such actual relationship or order between these entities or operations.

Claims

1. A construction management reinforcing steel storage rack, comprising at least two first rack bodies (1), two said first rack bodies (1) are arranged side by side, and used for storing reinforcing steel (3); characterized in that, The first frame body (1) comprises a first horizontal rod (11) and two first vertical rods (12), the two first vertical rods (12) are vertically arranged on the first horizontal rod (11), and a storage space for storing steel bars (3) is formed between the two first vertical rods (12); the two first vertical rods (12) are hollow pipe bodies, the second frame body (2) comprises two plug-in parts (21) matched with the first vertical rods (12), and the second frame body (2) is detachably connected with the two first vertical rods (12) through the plug-in parts (21).

2. The reinforced storage rack of claim 1, wherein, The locking assembly (4) comprises two mounting seats (41), two lock rods (42), a hook (43), a hanging ring (44), a torsion spring (45) and a hinged shaft (46); the two mounting seats (41) are fixedly installed on the first vertical rods (12), the two hinged shafts (46) are fixedly connected with the two mounting seats (41) respectively, the two hinged shafts (46) pass through the lock rod (42) and are rotationally connected with the lock rod (42), the torsion spring (45) is sleeved on the hinged shaft (46), one end of the torsion spring (45) is connected with the mounting seat (41), the other end of the torsion spring (45) is connected with the lock rod (42), the torsion spring (45) is used for providing torsional force for the lock rod (42), one end of the lock rod (42) is provided with a lock hook (421), and a lock hole (121) for the lock hook (421) to extend into is formed in the side wall of the first vertical rod (12); the lower end of the plug-in part (21) is connected with a lock block (211) through a connecting part (212), a recessed part for locking the lock hook (421) is formed between the connecting part (212) and the lock block (211), and one end of the hook (43) is movably connected with the end of the lock rod (42) away from the lock hook (421).

3. The construction management rebar storage rack of claim 1, wherein, The first frame body (1) further comprises at least one partition piece (13), the partition piece (13) is fixedly connected with the first horizontal rod (11), and the partition piece (13) is used for separating the storage space.

4. The construction management rebar storage rack of claim 3, wherein, The upper end of the partition piece (13) is provided with two limiting pieces (131).

5. The construction management rebar storage rack of claim 1, wherein, The second frame body (2) further comprises a second horizontal rod (22) and two second vertical rods (23), the two second vertical rods (23) are vertically arranged on the second horizontal rod (22), and a storage space for storing steel bars (3) is formed between the two second vertical rods (23).