Steel tube bundle structure components and steel tube bundle structure devices

By opening groove-accommodating steel pipes on the support columns, the problem of insufficient grip of traditional steel pipe bundle members is solved, and higher stability is achieved.

CN112049326BActive Publication Date: 2025-07-25BAZHOU YADESHENG METAL PRODUCTS CO LTD
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Patent Information

Application Number
CN202010969250.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-09-15
Publication Date
2025-07-25
Estimated Expiration
2040-09-15

AI Technical Summary

Technical Problem

The number of steel pipes in the traditional steel pipe bundle components decreases near the support column, resulting in a decrease in grip and affecting stability.

Method used

A recess is set up on the support column to accommodate part of the steel pipe, so that the support column overlaps the adjacent steel pipe part, and increase the number of steel pipes.

Benefits of technology

The number of connection points between the steel pipe and the ground is increased, and the grip and stability of the steel pipe bundling assembly is improved.

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Abstract

The present application provides a steel tube bundle structure component and a steel tube bundle structure device. The above-mentioned steel tube bundle structure component includes a mounting plate, a support column, and a plurality of bundling members; the support column is disposed adjacent to the end of the mounting plate, and the support column is connected to the mounting plate; the plurality of bundling members are evenly distributed on the mounting plate, and each bundling member includes a plurality of steel tubes, and the plurality of steel tubes are all connected to the mounting plate, and the steel tubes and the support column are on the same side of the mounting plate, and at least part of the steel tubes of at least one bundling member are disposed adjacent to the support column; the support column is provided with a receiving groove, the opening direction of the receiving groove faces a steel tube, and at least part of the steel tube adjacent to the support column is received in the receiving groove. By providing a receiving groove on the support column, the receiving groove is used to receive part of the steel tubes therein, increasing the number of steel tubes installed on the mounting plate, thereby increasing the grip between the steel tube bundle structure component and the ground and improving the stability of the steel tube bundle structure component on the ground.
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Description

Technical Field

[0001] The present invention relates to the technical field of building steel structures, and particularly to a steel tube bundle structure component and a steel tube bundle structure device. Background Art

[0002] With the rapid development of building technology, the concrete pouring and forming technology has become the mainstream. By using molds matching the building, the rapid pouring and forming of building walls can be realized. In order to ensure the seismic performance of the building after forming, during the pouring process, through some specific molds, pouring is carried out at positions such as supports and beam-column joints. For example, the traditional pouring mold is provided with a plurality of steel tube structures on a fixing plate to form a steel tube bundle member, so that when pouring at the support position or the joint position, the mold always remains in a stable state, improving the stability.

[0003] However, in addition to the steel tubes that are easy to insert, the traditional steel tube bundle member is also provided with support columns for supporting the steel tube bundle member. In order to avoid the overlap of the positions of the steel tubes and the support columns, that is, to provide a reserved installation position for the support columns, the number of steel tubes will be reduced at the position close to the support columns. For example, at a preset spacing, N steel tubes can be installed on the fixing plate, but actually only at most N - 2 steel tubes are installed, reducing the number of steel tubes used for connection with the ground, thereby reducing the connection strength between the steel tube bundle member and the ground, and further reducing the grip of the steel tube bundle member. Summary of the Invention

[0004] An object of the present invention is to overcome the deficiencies in the prior art and provide a steel tube bundle structure component and a steel tube bundle structure device that improve the grip.

[0005] The object of the present invention is achieved by the following technical solutions:

[0006] A steel tube bundle structure component includes: a mounting plate, a support column, and a plurality of bundling members; the support column is disposed at an end adjacent to the mounting plate, and the support column is connected to the mounting plate; the plurality of bundling members are evenly distributed on the mounting plate, each bundling member includes a plurality of steel tubes, and the plurality of steel tubes are all connected to the mounting plate. The steel tubes and the support column are on the same side of the mounting plate, and at least one of the bundling members has steel tubes disposed adjacent to the support column; the support column is provided with a receiving groove, the opening direction of the receiving groove faces one of the steel tubes, and at least a part of the steel tube adjacent to the support column is received in the receiving groove.

[0007] In one embodiment, the distance that the steel tube protrudes from the mounting plate is greater than the distance that the support column protrudes from the mounting plate.

[0008] In one of the embodiments, the support column includes a column body and a support plate, the support plate is connected to the mounting plate via the column body, and the accommodating groove is provided on the support plate.

[0009] In one of the embodiments, the projection of the column on the mounting plate is located within the projection of the support plate on the mounting plate.

[0010] In one embodiment, the column includes a first support plate and a second support plate, the first support plate and the second support plate are both connected to the mounting plate, one side of the first support plate is connected to one side of the second support plate, a groove is formed between the first support plate and the second support plate, and the opening direction of the groove is the same as the opening direction of the accommodating groove.

[0011] In one embodiment, the column includes a plurality of telescopic columns connected in sequence.

[0012] In one embodiment, the support column further includes a stabilizing pad connected to a side of the support plate facing away from the column.

[0013] In one of the embodiments, the opening direction of the accommodating groove is perpendicular to the axial direction of the steel pipe.

[0014] In one embodiment, the steel pipe includes a plurality of telescopic tube bodies connected in sequence.

[0015] A steel pipe bundle structure device comprises: a concrete column pipe and the steel pipe bundle structure assembly described in any of the above embodiments, wherein the concrete column pipe has an injection hole, the injection hole is connected to the interior of the concrete column pipe, and the concrete column pipe is connected to a side of the mounting plate away from the steel pipe.

[0016] Compared with the prior art, the present invention has at least the following advantages:

[0017] By opening an accommodating groove on the supporting column, the accommodating groove is used to accommodate part of the steel pipe therein, that is, part of the steel pipe adjacent to the supporting column is accommodated in the accommodating groove, so that the supporting column overlaps with the steel pipe part adjacent to its position, so that the steel pipe is arranged at the position adjacent to the supporting column, and then more steel pipes are arranged at the end position of the mounting plate, thereby increasing the number of steel pipes installed on the mounting plate, thereby increasing the number of connection points between the steel pipe bundle structure assembly and the ground, and then increasing the grip between the steel pipe bundle structure assembly and the ground, and improving the stability of the steel pipe bundle structure assembly on the ground. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] To more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for the embodiments. It should be understood that the following drawings only show some embodiments of the present invention, and thus should not be regarded as limiting the scope. For those of ordinary skill in the art, without creative efforts, other related drawings can also be obtained based on these drawings.

[0019] Figure 1 It is a schematic diagram of a steel tube bundle structure component in an embodiment;

[0020] Figure 2 It is Figure 1 A schematic diagram of another perspective of the steel tube bundle structure component shown;

[0021] Figure 3 It is Figure 2 An enlarged schematic diagram at A1 of the steel tube bundle structure component shown;

[0022] Figure 4 It is Figure 1 An enlarged schematic diagram at A2 of the steel tube bundle structure component shown. Detailed implementation manners

[0023] To facilitate the understanding of the present invention, the following will describe the present invention more comprehensively with reference to the relevant drawings. The preferred embodiments of the present invention are shown in the drawings. However, the present invention can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present invention more thorough and comprehensive.

[0024] It should be noted that when an element is referred to as "fixed to" another element, it can be directly on the other element or there may also be an intermediate element. When an element is considered to be "connected" to another element, it can be directly connected to the other element or there may be an intermediate element at the same time. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are only for the purpose of illustration and do not represent the only embodiments.

[0025] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those of ordinary skill in the technical field to which the present invention belongs. The terms used in the description of the present invention herein are only for the purpose of describing specific embodiments and are not intended to limit the present invention. The term "and / or" used herein includes any and all combinations of one or more of the related listed items.

[0026] The present invention relates to a steel tube bundle structure component. In one embodiment, the steel tube bundle structure component includes a mounting plate, a support column, and a plurality of bundling members. The support column is disposed adjacent to an end of the mounting plate, and the support column is connected to the mounting plate. The plurality of bundling members are evenly distributed on the mounting plate. Each bundling member includes a plurality of steel tubes. The plurality of steel tubes are all connected to the mounting plate, and the steel tubes and the support column are on the same side of the mounting plate. At least one of the steel tubes of the bundling member is disposed adjacent to the support column. The support column is provided with a receiving groove. The opening direction of the receiving groove faces one of the steel tubes, and at least a part of the steel tube adjacent to the support column is received in the receiving groove. By providing the receiving groove on the support column, the receiving groove is used to receive a part of the steel tubes therein, that is, a part of the steel tube adjacent to the support column is received in the receiving groove, so that the support column and a part of the steel tube adjacent to its position overlap, thereby enabling the steel tubes to be disposed at a position adjacent to the support column, and further enabling more steel tubes to be disposed at the end position of the mounting plate, increasing the number of steel tubes mounted on the mounting plate, thereby increasing the number of connection points between the steel tube bundle structure component and the ground, and further increasing the grip between the steel tube bundle structure component and the ground, and improving the stability of the steel tube bundle structure component on the ground.

[0027] Please refer to Figure 1 , which is a three-dimensional schematic diagram of the steel tube bundle structure component according to an embodiment of the present invention.

[0028] The steel tube bundle structure component 10 according to an embodiment includes a mounting plate 100, a support column 200, and a plurality of bundling members 300. The support column 200 is disposed adjacent to an end of the mounting plate 100, and the support column 200 is connected to the mounting plate 100. The plurality of bundling members 300 are evenly distributed on the mounting plate 100. Each bundling member 300 includes a plurality of steel tubes 310. The plurality of steel tubes 310 are all connected to the mounting plate 100, and the steel tubes 310 and the support column 200 are on the same side of the mounting plate 100. At least one of the steel tubes 310 of the bundling member 300 is disposed adjacent to the support column 200. Please refer to Figure 2 and Figure 3 , the support column 200 is provided with a receiving groove 210. The opening direction of the receiving groove 210 faces one of the steel tubes 310, and at least a part of the steel tube 310 adjacent to the support column 200 is received in the receiving groove 210.

[0029] In this embodiment, by forming a receiving groove 210 on the support column 200, the receiving groove 210 is used to receive a part of the steel pipe 310 therein, that is, a part of the steel pipe 310 adjacent to the support column 200 is received in the receiving groove 210, so that the support column 200 partially overlaps with the steel pipe 310 adjacent to its position. Thus, the steel pipe 310 is arranged at a position adjacent to the support column 200, and further, the steel pipe 310 is arranged at the end position of the mounting plate 100, increasing the number of steel pipes 310 mounted on the mounting plate 100. Thereby, the number of connection points between the steel pipe bundle structure assembly 10 and the ground is increased, and further, the grip between the steel pipe bundle structure assembly 10 and the ground is increased, improving the stability of the steel pipe bundle structure assembly 10 on the ground.

[0030] In one embodiment, please refer to Figure 1 , the distance that the steel pipe 310 protrudes from the mounting plate 100 is greater than the distance that the support column 200 protrudes from the mounting plate 100. In this embodiment, the steel pipe 310 is used to be inserted into the ground. Through contact with the ground, the steel pipe 310 is connected to the ground in a plug-in manner. When the steel pipe 310 is inserted into the ground, the distance that the steel pipe 310 protrudes from the ground decreases, that is, the height of the steel pipe 310 on the ground decreases. At this time, in order to facilitate the stable setting of the mounting plate 100, that is, to keep the mounting plate 100 parallel to the ground, the support column 200 abuts against the ground, and the support columns 200 at multiple end positions of the mounting plate 100 jointly hold against the ground, so that the mounting plate 100 is jointly supported by multiple support columns 200. In this way, setting the distance that the steel pipe 310 protrudes from the mounting plate 100 to be greater than the distance that the support column 200 protrudes from the mounting plate 100 makes the length of the steel pipe 310 greater than the length of the support column 200, facilitating the support column 200 to directly abut against the ground after the steel pipe 310 is inserted into the ground to a certain depth, realizing the simultaneous insertion of the steel pipe 310 into the ground and the abutment of the support column 200 against the ground, and facilitating the installation and fixation of the steel pipe bundle structure assembly 10.

[0031] In one embodiment, please refer to Figure 1 and Figure 4, the support column 200 includes a column body 220 and a support plate 230. The support plate 230 is connected to the mounting plate 100 through the column body 220, and the accommodation groove 210 is formed on the support plate 230. In this embodiment, the column body 220 is located between the support plate 230 and the mounting plate 100, that is, one end of the column body 220 is connected to the support plate 230, and the other end of the column body 220 is connected to the mounting plate 100. Moreover, the support plate 230 and the mounting plate 100 are arranged in parallel. When the support plate 230 abuts against the ground, the mounting plate 100 remains parallel to the ground. The accommodation groove 210 formed on the support plate 230 is used to accommodate the steel pipe 310 adjacent to the column body 220, so that the support plate 230 partially overlaps with the steel pipe 310 adjacent to the column body 220, thereby adding a steel pipe 310 to the position where the steel pipe 310 was not originally provided at the end of the mounting plate 100, and further increasing the number of the steel pipes 310, improving the grip of the steel pipe bundle structure assembly 10.

[0032] Furthermore, the projection of the column body 220 on the mounting plate 100 is located within the projection of the support plate 230 on the mounting plate 100. In this embodiment, the end surface of the column body 220 is located within one side surface of the support plate 230, that is, the edge of the support plate 230 protrudes from the column body 220, which means that the area of the surface of the support plate 230 close to the mounting plate 100 is larger than the end area of the column body 220. In this way, the area of the support plate 230 increases, so that the contact area between the support plate 230 and the ground increases, thereby improving the stability of the support plate 230 on the ground, and further improving the stability of the steel pipe bundle structure assembly 10 on the ground.

[0033] Furthermore, please refer to Figure 1 and Figure 4, the column body 220 includes a first support plate 222 and a second support plate 224. Both the first support plate 222 and the second support plate 224 are connected to the mounting plate 100. One side edge of the first support plate 222 is connected to one side edge of the second support plate 224. A groove is formed between the first support plate 222 and the second support plate 224, and the opening direction of the groove is the same as the opening direction of the accommodating groove 210. In this embodiment, the first support plate 222 and the second support plate 224 are connected by their side edges. For example, the side edge of the first support plate 222 is connected to the side edge of the second support plate 224. Moreover, the first support plate 222 and the second support plate 224 are perpendicularly arranged, that is, the included angle between the first support plate 222 and the second support plate 224 is 90 degrees. In this way, the space formed between the first support plate 222 and the second support plate 224 corresponds to the accommodating groove 210, and the opening direction of the groove is the same as the opening direction of the accommodating groove 210, that is, the openings of the groove and the accommodating groove 210 both face the steel pipe 310. That is to say, both the groove and the accommodating groove 210 can be used to accommodate the steel pipe 310 adjacent to the column body 220, so that the groove cooperates with the accommodating groove 210 to jointly accommodate the steel pipe 310 adjacent to the column body 220, thereby making the groove cooperate with the accommodating groove 210 to overlap with the steel pipe 310 adjacent to the column body 220, facilitating the arrangement of the steel pipe 310 at a position close to the column body 220, and thus facilitating the installation of more steel pipes 310 at a position originally close to the column body 220 where no steel pipe 310 is provided, improving the convenience of adding and installing the steel pipe 310.

[0034] In one embodiment, the column further includes a plurality of telescopic columns connected in sequence. In this embodiment, the column is arranged parallel to the steel pipe. When the steel pipe is vertically inserted into the ground, the column is used to support the whole steel pipe bundle structure component, that is, the column provides the supporting force required by the steel pipe bundle structure component. When the placement position of the steel pipe bundle structure component is uneven, for example, the area where the steel pipe bundle structure component is placed is a mountainous area with uneven ground, in order to ensure that the mounting plate of the steel pipe bundle structure component remains flat, by adjusting the length of the column, that is, adjusting the distance between the support plate of the column and the ground, that is, adjusting through the telescopic distance of the telescopic column, so that the total length of the column changes, thereby facilitating the adjustment of the height of the column, and further facilitating the column to be applicable to different placement areas, so that the column can achieve flat placement of the mounting plate on different uneven ground, improving the applicability of the steel pipe bundle structure component. In another embodiment, the number of columns on the mounting plate is multiple. By adjusting the telescopic length of the telescopic column, the length of the column changes, and moreover, according to actual needs, the lengths of the columns can be adjusted separately to achieve different length adjustments for different columns.

[0035] In one embodiment, the support column further includes a stabilizing pad, and the stabilizing pad is connected to the side of the support plate facing away from the column. In this embodiment, the stabilizing pad is connected to the support plate. When the column supports on the ground, the stabilizing pad is located between the support plate and the ground, and the stabilizing pad enhances the stability of the support plate on the ground, so that the column stably supports on the ground, thereby enabling the steel pipe bundle structure component to be stably placed on the ground, improving the stability of the steel pipe bundle structure component.

[0036] In one embodiment, please refer to Figure 1 and Figure 4 , the opening direction of the receiving groove 210 is perpendicular to the axial direction of the steel pipe 310. In this embodiment, the receiving groove 210 is used to receive at least part of the steel pipe 310 adjacent to the support column 200, so that the steel pipe 310 adjacent to the support column 200 forms partial overlap with the support column 200. In order to facilitate the installation of the steel pipe 310 adjacent to the support column 200 on the mounting plate 100, the opening of the receiving groove 210 is set perpendicular to the axial direction of the steel pipe 310, so that the steel pipe 310 adjacent to the support column 200 is vertically arranged in the receiving groove 210, that is, the steel pipe 310 adjacent to the support column 200 is parallel to the column 220, thereby increasing the number of steel pipes 310 per unit area adjacent to the support column 200 and further improving the grip of the steel pipe bundle structure component 10.

[0037] In one embodiment, the steel pipe includes a plurality of telescopically connected pipe bodies. In this embodiment, the steel pipe is used to be inserted into the ground, and by varying the insertion depth of the steel pipe into the ground, the grip between the steel pipe and the ground is changed. When there are depressions on the ground, some of the steel pipes in the partial area on the mounting plate cannot be inserted into the ground, that is, there is a gap between this part of the steel pipe and the ground, which also means that the length of this part of the steel pipe is smaller. To facilitate the steel pipe to be applicable to different sunken ground, the steel pipe is configured to include a structure of a plurality of telescopically connected pipe bodies, so that the overall length of the steel pipe can be adjusted. Thus, when the steel pipe is inserted into the sunken ground, by elongating the length of the telescopic pipe body, it is convenient to increase the length of the steel pipe, thereby facilitating each steel pipe to be inserted into the ground and further improving the grip of the steel pipe bundle structure assembly.

[0038] It can be understood that the bundle member 300 mounted on the mounting plate 100 includes a plurality of steel pipes 310. Among them, the steel pipes 310 of each bundle member 300 are evenly distributed on the mounting plate 100. For example, the plurality of steel pipes 310 of each bundle member 300 are arranged in an array on the mounting plate 100. When the mounting plate 100 moves towards the ground, that is, when the steel pipe 310 is inserted into the ground, since the steel pipe 310 is inserted into the ground by a direct insertion method, the steel pipe 310 makes a rigid collision with the sand on the ground. Without strong overall mechanical strength, each steel pipe 310 will deflect at different angles, that is, each steel pipe 310 will incline to different degrees after being inserted into the ground, which also means that after each steel pipe 310 is inserted into the ground, the angle between the steel pipe 310 and the ground is not perpendicular. In this case, it will cause the area of the mounting plate 100 corresponding to the steel pipe 310 with an excessive inclination angle to incline, making the mounting plate 100 unable to maintain stability, thereby reducing the stability of the mounting plate 100.

[0039] To improve the overall mechanical strength of the bundle member 300, that is, to reduce the probability of the steel pipe 310 inclining, which also means to improve the mechanical strength between each steel pipe 310, each bundle member 300 includes a first steel pipe 312, a second steel pipe 314, a third steel pipe 316, and a fourth steel pipe 318. The first steel pipe 312, the second steel pipe 314, the third steel pipe 316, and the fourth steel pipe 318 are evenly distributed and connected to the mounting plate 100; please refer to Figure 1 and Figure 2, the steel tube bundle component 10 further includes a plurality of reinforcing members 400. Each reinforcing member 400 corresponds to a bundling member 300. Each reinforcing member 400 includes a first reinforcing connecting rod 410, a second reinforcing connecting rod 420, a third reinforcing connecting rod 430, and a fourth reinforcing connecting rod 440. The first reinforcing connecting rod 410 is respectively connected to the first steel tube 312 and the second steel tube 314. The second reinforcing connecting rod 420 is respectively connected to the second steel tube 314 and the third steel tube 316. The third reinforcing connecting rod 430 is respectively connected to the third steel tube 316 and the fourth steel tube 318. The fourth reinforcing connecting rod 440 is respectively connected to the fourth steel tube 318 and the first steel tube 312. In this embodiment, the first steel tube 312, the second steel tube 314, the third steel tube 316, and the fourth steel tube 318 are connected by the reinforcing member 400. The first steel tube 312 is respectively connected to the second steel tube 314 and the fourth steel tube 318 through the first reinforcing connecting rod 410 and the fourth reinforcing connecting rod 440. The second steel tube 314 is respectively connected to the first steel tube 312 and the third steel tube 316 through the first reinforcing connecting rod 410 and the second reinforcing connecting rod 420. The third steel tube 316 is respectively connected to the second steel tube 314 and the fourth steel tube 318 through the second reinforcing connecting rod 420 and the third reinforcing connecting rod 430. The fourth steel tube 318 is respectively connected to the third steel tube 316 and the first steel tube 312 through the third reinforcing connecting rod 430 and the fourth reinforcing connecting rod 440. In this way, each steel tube 310 is respectively connected to two reinforcing connecting rods, and moreover, each steel tube 310 is respectively connected to another two steel tubes 310 through two reinforcing connecting rods, so that the steel tubes 310 are connected to each other. Thus, the steel tubes 310 are connected through different reinforcing connecting rods, and further, the steel tubes 310 intersect with each other, improving the connection strength between the steel tubes 310, thereby improving the overall mechanical strength of the bundling member 300, and further reducing the probability of excessive inclination of each steel tube 310.

[0040] Further, since the length of the steel tube 310 is not fixed, in order to ensure the mechanical strength between the steel tubes 310 of each bundling member 300, by adjusting the position of the reinforcing connecting rod, the position where the reinforcing connecting rod enhances the mechanical strength changes, so as to be applicable to the enhancement of the mechanical strength of steel tubes 310 with different lengths. Please refer to Figure 1 and Figure 2The steel tube bundle structure assembly 10 further includes a plurality of guiding members 500. Each guiding member 500 corresponds to a bundling member 300. Each guiding member 500 includes a first guiding rod 510, a second guiding rod 520, and a third guiding rod 530. The first guiding rod 510, the second guiding rod 520, and the third guiding rod 530 are all connected to the mounting plate 100. The first reinforcing connecting rod 410 is provided with a first guiding hole, the second reinforcing connecting rod 420 is provided with a second guiding hole, the third reinforcing connecting rod 430 is provided with a third guiding hole, and the fourth reinforcing connecting rod 440 is provided with a fourth guiding hole. The first guiding rod 510 is inserted into the first guiding hole, the second guiding rod 520 is respectively inserted into the second guiding hole and the fourth guiding hole, and the third guiding rod 530 is inserted into the third guiding hole. In this embodiment, the first reinforcing connecting rod 410 moves along the axial direction of the first guiding rod 510. When keeping the first reinforcing connecting rod 410 parallel to the mounting plate 100, it is convenient to adjust the position of the first reinforcing connecting rod 410. The second reinforcing connecting rod 420 and the fourth reinforcing connecting rod 440 move along the axial direction of the second guiding rod 520. When keeping the second reinforcing connecting rod 420 and the fourth reinforcing connecting rod 440 parallel to the mounting plate 100, it is convenient to adjust the positions of the second reinforcing connecting rod 420 and the fourth reinforcing connecting rod 440. The third reinforcing connecting rod 430 moves along the axial direction of the third guiding rod 530. When keeping the third reinforcing connecting rod 430 parallel to the mounting plate 100, it is convenient to adjust the position of the third reinforcing connecting rod 430. In this way, the distance between the steel tubes 310 is controlled and maintained by the reinforcing connecting rods, and the positions of the reinforcing connecting rods are adjusted by the corresponding guiding rods, which is convenient for the reinforcing connecting rods to adjust their positions according to actual needs.

[0041] Further, the steel tube bundle structure component further includes a positioning pin component. The positioning pin component includes a first positioning pin, a second positioning pin, a third positioning pin, and a fourth positioning pin. The first reinforcing connecting rod is further provided with a first positioning hole communicating with the first guiding hole. The first positioning pin is inserted into the first positioning hole and connected to the first guiding rod. The second reinforcing connecting rod is further provided with a second positioning hole communicating with the second guiding hole. The second positioning pin is inserted into the second positioning hole and connected to the second guiding rod. The third reinforcing connecting rod is further provided with a third positioning hole communicating with the third guiding hole. The third positioning pin is inserted into the third positioning hole and connected to the third guiding rod. The fourth reinforcing connecting rod is further provided with a fourth positioning hole communicating with the fourth guiding hole. The fourth positioning pin is inserted into the fourth positioning hole and connected to the fourth guiding rod. In this way, when each positioning pin is inserted into the corresponding positioning hole, each reinforcing connecting rod is fixed to the corresponding guiding rod, realizing the position positioning of the reinforcing connecting rod on the guiding rod, facilitating the fixing of each reinforcing connecting rod at a specified position, thereby facilitating the strength enhancement of different positions of the steel tube, and further facilitating the corresponding adjustment of the mechanical strength of the steel tube according to actual needs.

[0042] In the above embodiment, the number of steel tubes in the bundling member is adjusted according to the actual construction needs. For example, the number of steel tubes is 3, placed in an equilateral triangle; or, the number of steel tubes is 4, placed in a square; or, the number of steel tubes is 5, placed in a pentagram; or, the number of steel tubes is 6, placed in a regular hexagon. As for other numbers and the shapes formed by the placement, they will not be elaborated here, and the reinforcing connecting rods and guiding rods used thereon are adjusted correspondingly.

[0043] The present application also provides a steel pipe bundle structure device, comprising: a concrete column pipe and a steel pipe bundle structure assembly described in any of the above embodiments, wherein the concrete column pipe has an injection hole, the injection hole is connected to the interior of the concrete column pipe, and the concrete column pipe is connected to a side of the mounting plate away from each of the steel pipes. In this embodiment, the steel pipe bundle structure assembly comprises a mounting plate, a support column, and a plurality of clustering members. The support column is arranged adjacent to the end of the mounting plate, and the support column is connected to the mounting plate. A plurality of the clustering members are evenly distributed on the mounting plate. Each of the clustering members comprises a plurality of steel pipes. The plurality of steel pipes are all connected to the mounting plate, and the steel pipes and the support column are located on the same side of the mounting plate. The steel pipe of at least one of the clustering members is arranged adjacent to the support column. The support column is provided with a receiving groove. The opening direction of the receiving groove faces one of the steel pipes, and at least a portion of the steel pipe adjacent to the support column is accommodated in the receiving groove. By opening an accommodating groove on the supporting column, the accommodating groove is used to accommodate part of the steel pipe therein, that is, part of the steel pipe adjacent to the supporting column is accommodated in the accommodating groove, so that the supporting column overlaps with the steel pipe part adjacent to its position, so that the steel pipe is arranged at the position adjacent to the supporting column, and then more steel pipes are arranged at the end position of the mounting plate, thereby increasing the number of steel pipes installed on the mounting plate, thereby increasing the number of connection points between the steel pipe bundle structure assembly and the ground, and then increasing the grip between the steel pipe bundle structure assembly and the ground, and improving the stability of the steel pipe bundle structure assembly on the ground.

[0044] The above-mentioned embodiments only express several implementation methods of the present invention, and the descriptions thereof are relatively specific and detailed, but they cannot be understood as limiting the scope of the invention patent. It should be pointed out that, for ordinary technicians in this field, several variations and improvements can be made without departing from the concept of the present invention, and these all belong to the protection scope of the present invention. Therefore, the protection scope of the patent of the present invention shall be subject to the attached claims.

Claims

1. A steel tube bundle structure component, characterized in that, Comprising: Mounting plate, Support column, the support column is disposed adjacent to an end of the mounting plate, and the support column is connected to the mounting plate; A plurality of bundling members, the plurality of bundling members are uniformly distributed on the mounting plate, each bundling member includes a plurality of steel pipes, the plurality of steel pipes are all connected to the mounting plate, the steel pipes and the support column are on the same side of the mounting plate, and at least one of the steel pipes of the bundling member is disposed adjacent to the support column; The support column is provided with a receiving groove, an opening direction of the receiving groove faces one of the steel pipes, and at least a part of the steel pipe adjacent to the support column is received in the receiving groove; a distance that the steel pipe protrudes from the mounting plate is greater than a distance that the support column protrudes from the mounting plate, the support column includes a column body and a support plate, the support plate is connected to the mounting plate through the column body, the receiving groove is opened on the support plate, a projection of the column body on the mounting plate is located within a projection of the support plate on the mounting plate, the column body includes a first support plate and a second support plate, both the first support plate and the second support plate are connected to the mounting plate, one side of the first support plate is connected to one side of the second support plate, a groove is formed between the first support plate and the second support plate, an opening direction of the groove is the same as an opening direction of the receiving groove, the column body further includes a plurality of telescopic columns connected in sequence, the support column further includes a stabilizing pad, the stabilizing pad is connected to a side of the support plate facing away from the column body, the opening direction of the receiving groove is perpendicular to an axial direction of the steel pipe, and the steel pipe includes a plurality of telescopic pipe bodies connected in sequence; Wherein, each bundling member includes a first steel pipe, a second steel pipe, a third steel pipe and a fourth steel pipe, the first steel pipe, the second steel pipe, the third steel pipe and the fourth steel pipe are uniformly distributed and connected to the mounting plate; the steel pipe bundle structure assembly further includes a plurality of reinforcing members, each reinforcing member corresponds to a bundling member, each reinforcing member includes a first reinforcing connecting rod, a second reinforcing connecting rod, a third reinforcing connecting rod and a fourth reinforcing connecting rod, the first reinforcing connecting rod is respectively connected to the first steel pipe and the second steel pipe, the second reinforcing connecting rod is respectively connected to the second steel pipe and the third steel pipe, the third reinforcing connecting rod is respectively connected to the third steel pipe and the fourth steel pipe, and the fourth reinforcing connecting rod is respectively connected to the fourth steel pipe and the first steel pipe; In addition, the steel pipe bundle structure assembly further includes a plurality of guiding members, each guiding member corresponding to a bundling member. Each guiding member includes a first guiding rod, a second guiding rod, and a third guiding rod, and the first guiding rod, the second guiding rod, and the third guiding rod are all connected to the mounting plate. The first reinforcing connecting rod is provided with a first guiding hole, the second reinforcing connecting rod is provided with a second guiding hole, the third reinforcing connecting rod is provided with a third guiding hole, and the fourth reinforcing connecting rod is provided with a fourth guiding hole. The first guiding rod is inserted into the first guiding hole, the second guiding rod is respectively inserted into the second guiding hole and the fourth guiding hole, and the third guiding rod is inserted into the third guiding hole.

2. A steel pipe bundle structure device, characterized in that, Comprising: A concrete column pipe and the steel pipe bundle structure assembly according to claim 1, wherein the concrete column pipe has an injection hole which is communicated with the inside of the concrete column pipe, and the concrete column pipe is connected to the side of the mounting plate facing away from each steel pipe.

Citation Information

Patent Citations

  • Disclosed are steel pipe bundle assembly and steel pipe bundle device

    CN212613377U