Bundled reinforcing steel bar storage rack with telescopic and isolation functions

By designing an adjustable I-shaped steel structure storage rack, the existing steel bar storage rack has solved the problems of short service life and poor adaptability, and the reuse and convenient movement of the bracket are achieved.

CN223132704UActive Publication Date: 2025-07-22SHANXI ELECTRIC POWER CONSTR CO LTD (CEEC)
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422190964.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-07
Publication Date
2025-07-22
Estimated Expiration
2034-09-07

AI Technical Summary

Technical Problem

The existing steel bar storage racks have problems such as short service time, not heavy pressure resistance and difficulty in repeating turnover during use, especially when storing steel bars of different specifications.

Method used

A storage frame consisting of the left I-shaped steel longitudinal beam base, the middle I-shaped steel longitudinal beam base, the right I-shaped steel longitudinal beam base and the I-shaped steel column are designed. By setting up steel bar pulling rods and columns, an adjustable bracket structure is formed to achieve telescopic and isolation functions, and meet the storage needs of steel bars of different specifications.

Benefits of technology

It realizes the repeated turnover and utilization of the bracket, adapts to the storage of steel bars of different specifications, and improves the service life and convenience of the bracket.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223132704U_ABST
    Figure CN223132704U_ABST
Patent Text Reader

Abstract

The utility model discloses a bundled reinforcing steel bar storage rack with telescopic and isolation functions. The bundled reinforcing steel bar storage rack solves the problem of how to develop a support which has certain strength, can meet storage of reinforcing steel bars of different specifications and can be repeatedly used. Comprising a left I-shaped steel longitudinal beam base (1), a middle I-shaped steel longitudinal beam base (2), a right I-shaped steel longitudinal beam base (3) and I-shaped steel stand columns, and the left I-shaped steel longitudinal beam base (1), the middle I-shaped steel longitudinal beam base (2) and the right I-shaped steel longitudinal beam base (3) are arranged in parallel at intervals in the left-to-right direction. A left front I-shaped steel stand column (4) and a left rear I-shaped steel stand column (5) are arranged on the top end face of a top flange plate of a left I-shaped steel longitudinal beam base (1), and a first steel bar pulling and connecting rod (10) is arranged between the left front I-shaped steel stand column (4) and a middle front I-shaped steel stand column (6). The distance can be adjusted at will according to the length of steel bars, and moving and carrying are convenient.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to a rack for storing steel bars, in particular to a bundled steel bar storage rack with telescopic and isolation functions. Background Art

[0002] In a construction site, there is a steel bar storage area for storing bundled steel bars used in construction. These steel bars are processed and then used in the construction project. The existing steel bar storage area is set up through the following process: First, the ground of the storage area is leveled, and then the leveled ground is compacted by a roller or a rammer, and then hardened with concrete of a certain strength. Then, according to the length of the steel bars, lines are drawn at a certain distance from both ends and in the middle on the compacted ground. At the places where the lines are drawn, 240 or 370 brick piers of a certain height are built. After the construction is completed, water is sprinkled for curing for a certain period of time, and then the surface is plastered with cement mortar to prevent rain, snow from eroding and damaging the brick piers, so as to obtain the brick piers for placing bundled steel bars. In the above process, the construction of the brick piers not only consumes certain materials and labor, but also after several uses, the brick piers will be deformed and damaged under the heavy pressure of the steel bars. This kind of brick pier type bundled steel bar support has the defects of short service life and needs to be demolished after use. How to develop a support with a certain strength, capable of storing different specifications of steel bars and can be reused is a problem that needs to be solved on site. Summary of the Invention

[0003] The utility model provides a bundled steel bar storage rack with telescopic and isolation functions, and solves the technical problem of how to develop a support with a certain strength, capable of storing different specifications of steel bars and can be reused.

[0004] The utility model solves the above technical problems through the following technical solutions:

[0005] A bundled steel bar storage rack with telescopic and isolation functions, comprising a left I-beam longitudinal beam base, a middle I-beam longitudinal beam base, a right I-beam longitudinal beam base and I-beam columns. The left I-beam longitudinal beam base, the middle I-beam longitudinal beam base and the right I-beam longitudinal beam base are arranged at intervals parallel to each other in the left-to-right direction. On the top end surface of the top flange plate of the left I-beam longitudinal beam base, a left front I-beam column and a left rear I-beam column are respectively arranged. On the top end surface of the top flange plate of the middle I-beam longitudinal beam base, a middle front I-beam column and a middle rear I-beam column are respectively arranged. On the top end surface of the top flange plate of the right I-beam longitudinal beam base, a right front I-beam column and a right rear I-beam column are respectively arranged. A first steel bar connecting rod is arranged between the left front I-beam column and the middle front I-beam column. A second steel bar connecting rod is arranged between the middle front I-beam column and the right front I-beam column. A third steel bar connecting rod is arranged between the left rear I-beam column and the middle rear I-beam column. A fourth steel bar connecting rod is arranged between the middle rear I-beam column and the right rear I-beam column.

[0006] Both the left front I-beam column and the middle front I-beam column are arranged with their flange plates facing the due front direction. At the upper end of the front side flange plate of the left front I-beam column, a first pair of vertical insertion cylinders are arranged. At the upper end of the front side flange plate of the middle front I-beam column, a second pair of vertical insertion cylinders are arranged. A first steel bar connecting rod is movably connected between the first pair of vertical insertion cylinders and the second pair of vertical insertion cylinders.

[0007] A left middle I-beam column is arranged at the middle position of the left I-beam longitudinal beam base. A middle middle I-beam column is arranged at the middle position of the middle I-beam longitudinal beam base. A right middle I-beam column is arranged at the middle position of the right I-beam longitudinal beam base. A fifth steel bar connecting rod is arranged between the left middle I-beam column and the middle middle I-beam column. A sixth steel bar connecting rod is arranged between the middle middle I-beam column and the right middle I-beam column. Bundled steel bars are arranged between the left I-beam longitudinal beam base, the middle I-beam longitudinal beam base and the right I-beam longitudinal beam base. The bundled steel bars are limited within the space enclosed by the left rear I-beam column, the middle rear I-beam column, the right rear I-beam column, the left middle I-beam column, the middle middle I-beam column, the right middle I-beam column, the third steel bar connecting rod, the fourth steel bar connecting rod, the fifth steel bar connecting rod and the sixth steel bar connecting rod.

[0008] The utility model can place the I-beam longitudinal beam bases at intervals according to the length of the bundled steel bars, and insert the steel bar connecting rods into the vertical insertion cylinders on the corresponding I-beam columns, so that a batch of steel bars bundled with hoop bands can be stored on the rack; greatly improving the turnover utilization times of the rack, and at the same time, the distance can be adjusted arbitrarily according to the length of the steel bars, which is convenient for moving and handling. Brief Description of the Drawings

[0009] Figure 1 is a schematic structural diagram of the utility model;

[0010] Figure 2 It is a schematic structural view of the present utility model when storing steel bars. Specific embodiments

[0011] The present utility model will be described in detail below with reference to the accompanying drawings:

[0012] A bundled steel bar storage rack with telescopic and isolation functions, including a left I-beam longitudinal beam base 1, a middle I-beam longitudinal beam base 2, a right I-beam longitudinal beam base 3 and I-beam columns. The left I-beam longitudinal beam base 1, the middle I-beam longitudinal beam base 2 and the right I-beam longitudinal beam base 3 are arranged at intervals parallel to each other in the left-to-right direction. The I-beam longitudinal beam bases are horizontally placed on the ground, that is, one end flange plate is abutted against the ground, the web is in the middle, and the other end flange plate is placed on the top surface. On the top surface of the top flange plate of the left I-beam longitudinal beam base 1, a left front I-beam column 4 and a left rear I-beam column 5 are respectively arranged. The I-beam columns are vertically placed and welded on the top flange plate of the left I-beam longitudinal beam base 1, and the flange plates of the I-beam columns face forward. On the top surface of the top flange plate of the middle I-beam longitudinal beam base 2, a middle front I-beam column 6 and a middle rear I-beam column 7 are respectively arranged. On the top surface of the top flange plate of the right I-beam longitudinal beam base 3, a right front I-beam column 8 and a right rear I-beam column 9 are respectively arranged. A first steel bar connecting rod 10 is arranged between the left front I-beam column 4 and the middle front I-beam column 6. A second steel bar connecting rod 11 is arranged between the middle front I-beam column 6 and the right front I-beam column 8. A third steel bar connecting rod 12 is arranged between the left rear I-beam column 5 and the middle rear I-beam column 7. A fourth steel bar connecting rod 13 is arranged between the middle rear I-beam column 7 and the right rear I-beam column 9. The steel bar connecting rods are all horizontally arranged to form the side enclosures of the rack.

[0013] Both the left front I-beam column 4 and the middle front I-beam column 6 are arranged with their flange plates facing the due front direction. At the upper end of the front flange plate of the left front I-beam column 4, a first pair of vertical insertion cylinders 14 is arranged. At the upper end of the front flange plate of the middle front I-beam column 6, a second pair of vertical insertion cylinders 15 is arranged. A first steel bar connecting rod 10 is movably connected between the first pair of vertical insertion cylinders 14 and the second pair of vertical insertion cylinders 15; both ends of the steel bar connecting rod are provided with 90-degree bent heads, and the steel bar connecting rod is inserted into the vertical insertion cylinder through the 90-degree bent heads.

[0014] A left middle I-beam column 16 is provided at the middle position of the left I-beam longitudinal beam base 1, a middle middle I-beam column 17 is provided at the middle position of the middle I-beam longitudinal beam base 2, a right middle I-beam column 18 is provided at the middle position of the right I-beam longitudinal beam base 3, a fifth steel bar tie rod 19 is provided between the left middle I-beam column 16 and the middle middle I-beam column 17, and a sixth steel bar tie rod 20 is provided between the middle middle I-beam column 17 and the right middle I-beam column 18; Bundled steel bars 21 are provided between the left I-beam longitudinal beam base 1, the middle I-beam longitudinal beam base 2 and the right I-beam longitudinal beam base 3, and the bundled steel bars 21 are limited within the space enclosed by the left rear I-beam column 5, the middle rear I-beam column 7, the right rear I-beam column 9, the left middle I-beam column 16, the middle middle I-beam column 17, the right middle I-beam column 18, the third steel bar tie rod 12, the fourth steel bar tie rod 13, the fifth steel bar tie rod 19 and the sixth steel bar tie rod 20; The longitudinal division space of the I-beam longitudinal beam base can be determined according to the thickness of the bundled steel bars 21.

Claims

1. A bundled steel bar storage rack with telescopic and isolation functions, comprising a left I-beam longitudinal beam base (1), a middle I-beam longitudinal beam base (2), a right I-beam longitudinal beam base (3) and I-beam columns, characterized in that, The left I-beam longitudinal beam base (1), the middle I-beam longitudinal beam base (2) and the right I-beam longitudinal beam base (3) are arranged at intervals parallel to each other in the left-to-right direction. On the top end faces of the top flange plates of the left I-beam longitudinal beam base (1), a left front I-beam column (4) and a left rear I-beam column (5) are respectively arranged. On the top end faces of the top flange plates of the middle I-beam longitudinal beam base (2), a middle front I-beam column (6) and a middle rear I-beam column (7) are respectively arranged. On the top end faces of the top flange plates of the right I-beam longitudinal beam base (3), a right front I-beam column (8) and a right rear I-beam column (9) are respectively arranged. A first steel bar connecting rod (10) is arranged between the left front I-beam column (4) and the middle front I-beam column (6). A second steel bar connecting rod (11) is arranged between the middle front I-beam column (6) and the right front I-beam column (8). A third steel bar connecting rod (12) is arranged between the left rear I-beam column (5) and the middle rear I-beam column (7). A fourth steel bar connecting rod (13) is arranged between the middle rear I-beam column (7) and the right rear I-beam column (9).

2. The bundled steel bar storage rack with telescopic and isolation functions according to claim 1, characterized in that, Both the left front I-beam column (4) and the middle front I-beam column (6) are arranged with their flange plates facing the due front direction. At the upper end of the front side flange plate of the left front I-beam column (4), a first pair of vertical insertion cylinders (14) are arranged. At the upper end of the front side flange plate of the middle front I-beam column (6), a second pair of vertical insertion cylinders (15) are arranged. The first steel bar connecting rod (10) is movably connected between the first pair of vertical insertion cylinders (14) and the second pair of vertical insertion cylinders (15).

3. The bundled steel bar storage rack with telescopic and isolation functions according to claim 2, characterized in that, A left middle I-beam column (16) is arranged at the middle position of the left I-beam longitudinal beam base (1). A middle middle I-beam column (17) is arranged at the middle position of the middle I-beam longitudinal beam base (2). A right middle I-beam column (18) is arranged at the middle position of the right I-beam longitudinal beam base (3). A fifth steel bar connecting rod (19) is arranged between the left middle I-beam column (16) and the middle middle I-beam column (17). A sixth steel bar connecting rod (20) is arranged between the middle middle I-beam column (17) and the right middle I-beam column (18). Bundled steel bars (21) are arranged between the left I-beam longitudinal beam base (1), the middle I-beam longitudinal beam base (2) and the right I-beam longitudinal beam base (3). The bundled steel bars (21) are limited within the space enclosed by the left rear I-beam column (5), the middle rear I-beam column (7), the right rear I-beam column (9), the left middle I-beam column (16), the middle middle I-beam column (17), the right middle I-beam column (18), the third steel bar connecting rod (12), the fourth steel bar connecting rod (13), the fifth steel bar connecting rod (19) and the sixth steel bar connecting rod (20).