Steel structure foundation and building
Through the combined structure of steel pipes and steel plates, combined with cutting-edge design and through holes and plum blossom-shaped holes, the problem of temporary building foundations being unable to be reused is solved, construction efficiency and material utilization are improved, costs are reduced, and the stability and bearing capacity of the structure are enhanced.
Patent Information
- Application Number
- CN202422423241.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-10-08
AI Technical Summary
The existing temporary building foundations cannot be reused, the construction process is inefficient, the maintenance time is long, and the cost is high.
It adopts a combined structure of steel pipes and steel plates. The bottom end of the steel pipe is provided with a pointed end. Through holes are arranged at intervals along the length of the pipe body. The through holes are designed to be plum blossom-shaped. The steel plate is provided with circular holes and rectangular through holes. The steel pipe is hot-dip galvanized.
It improves the material turnover rate and construction efficiency, reduces sinking resistance, reduces construction costs, enhances the stability and bearing capacity of the structure, and extends its service life.
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Figure CN223343308U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of steel structures, in particular to a steel structure foundation and a building. Background Art
[0002] In engineering construction projects, temporary engineering construction is required in the early stages of the project, including temporary fencing, temporary gates, etc.
[0003] Temporary structure foundations are usually constructed using brick masonry or reinforced concrete foundation casting.
[0004] However, the existing foundations have problems such as non-reusability, low construction efficiency, long maintenance time and high cost. Utility Model Content
[0005] In view of this, the utility model provides a steel structure foundation and a building to solve the problem that the existing foundation cannot be reused.
[0006] In the first aspect, the utility model provides a steel structure foundation, including a steel pipe and a steel plate, wherein the steel plate is connected to the top end of the steel pipe, the bottom end of the steel pipe has a tip structure, and the pipe body of the steel pipe has a plurality of through holes arranged at intervals along the length direction of the steel pipe.
[0007] The utility model provides a steel structure foundation, which adopts a combined structure of steel pipes and steel plates. When used for the construction of temporary buildings such as temporary fences and temporary gates, the turnover rate of the steel structure foundation can be improved, and the utilization rate of materials can also be improved. The pointed structure provided at the bottom end of the steel pipe is also conducive to reducing the sinking resistance, making it easier for the steel structure foundation to sink to the predetermined position during the installation process, thereby improving construction efficiency. In addition, the multiple through holes provided at intervals along the length direction of the steel pipe also help to clean the soil inside the pipe during the sinking process, thereby further promoting the sinking of the steel structure. The use of this steel structure foundation fundamentally solves the problem of uneven foundation settlement that occurs in the later stages of construction of traditional temporary buildings, meets the construction needs in response to the demolition and turnover of temporary buildings, and indirectly improves construction efficiency and controls construction costs.
[0008] Optionally, the utility model provides a steel structure foundation, wherein the through hole is a plum blossom hole.
[0009] By adopting a plum blossom-shaped opening design for the multiple through-holes around the steel pipe, the resistance of the soil inside the pipe to the pipe can be more effectively dispersed during the sinking process. This unique shape allows soil to pass through the holes more smoothly as the steel pipe sinks, thereby reducing soil accumulation and compression within the pipe, lowering the resistance to the steel pipe's sinking, achieving a better soil cleansing effect, and making it easier for the steel foundation's cutting edge structure to reach the intended installation location, thereby shortening construction time and improving efficiency. Furthermore, the plum blossom-shaped through-hole design significantly reduces the amount of material used in the steel foundation, reducing material costs.
[0010] Optionally, the utility model provides a steel structure foundation, wherein the plurality of through holes are arranged at intervals around the circumference of the steel pipe.
[0011] By setting multiple through holes at circumferential intervals around the steel pipe, the forces on the steel pipe in all directions during the sinking process can be made more uniform. The uniform distribution of through holes can effectively disperse stress and avoid stress concentration in a specific area, thereby improving the stability of the entire structure. At the same time, the circumferential setting of through holes also helps to clean the soil. During the sinking process of the steel structure foundation, the soil in the steel pipe can be discharged from the through holes in time to avoid accumulation inside the steel pipe, thereby effectively reducing the sinking resistance of the steel structure foundation and improving construction efficiency. In addition, without affecting the strength of the steel structure foundation, setting through holes can reduce the weight of the steel structure, optimize the material distribution of the steel pipe, reduce the dead weight of the entire steel structure foundation, improve material utilization, and thus save the construction cost of the infrastructure.
[0012] Optionally, the utility model provides a steel structure foundation, wherein the tip structure includes a triangular tip extending downward.
[0013] The triangular tip design, with its extended tip structure, concentrates force when driving the steel foundation into the ground. The sharp angle of the tip allows for easier penetration of the soil, reducing penetration resistance, making the installation process more efficient and faster, and reducing construction difficulty and time costs. Furthermore, the triangular tip enhances the stability of the steel foundation. Once driven into the ground, it penetrates deeper into harder soil layers, providing a secure anchor point for the steel foundation. This provides greater stability when subjected to vertical and horizontal forces, and reduces displacement and swaying of the steel foundation. Furthermore, the triangular tip helps improve the bearing capacity of the steel foundation. Because the tip penetrates deep into solid ground and tightly bonds with the surrounding soil, it better distributes and transfers loads from the superstructure, fully utilizing the soil's bearing capacity and ensuring the safety and stability of the steel structure. Furthermore, the triangular tip design also reduces material costs. During the design and manufacture of the steel foundation, the diameter or thickness of the steel pipe can be appropriately reduced, thereby reducing material usage and optimizing costs.
[0014] Optionally, the utility model provides a steel structure foundation, wherein the steel plate has a circular hole matching the inner diameter of the steel pipe.
[0015] By preserving circular holes in the steel plate that match the inner diameter of the steel pipe, the steel pipe can be precisely positioned when connected to the steel plate. During installation, the steel pipe can be easily inserted into the circular holes, ensuring that the various components of the steel structure foundation can be quickly aligned during assembly, thereby reducing installation errors and improving construction efficiency. This precise connection method also helps to ensure the stability and reliability of the entire steel structure foundation. Furthermore, the design of the reserved circular holes ensures closer contact between the steel pipe and the steel plate, allowing for more efficient load transfer after connection, thereby improving the overall load-bearing capacity of the steel structure.
[0016] Optionally, the utility model provides a steel structure foundation, wherein the steel plate is rectangular and is provided with through holes for passing screws.
[0017] By providing rectangular steel plates, when the steel structure foundation is subjected to external loads, the four sides of the rectangle can evenly disperse the stress, allowing the external load to be more evenly transferred to the steel pipe and the entire foundation structure, thereby improving the bearing capacity of the steel structure foundation and ensuring the overall stability of the steel structure foundation. In addition, rectangular steel plates are easy to process and manufacture, which can reduce the difficulty and cost of processing. At the same time, by providing through holes in the steel plates, screws and other connectors can be smoothly passed through to achieve a firm connection between the steel plate and other structural components. When the enclosure foundation is installed later, the columns in the enclosure foundation need to be fixed with screws and through holes, and the relative position of the connection can be flexibly adjusted by adjusting the position of the screws in the through holes to meet different installation requirements. This connection method is simple and reliable, and can effectively fix different components together, thereby ensuring the overall stability of the steel structure.
[0018] Optionally, in the steel structure foundation provided by the present invention, the through holes are strip-shaped holes.
[0019] By setting the through hole as a strip hole, its width matches the size of the screws for fixing the connection, and the length can be adjusted according to the position of the subsequent installation of other structural components. In this way, the position of the screws can be adjusted according to actual needs during the installation process to compensate for possible dimensional errors to adapt to different installation scenarios and connection requirements. At the same time, the strip hole can increase the contact area between the screw and the steel plate, thereby dispersing the stress at the connection point, reducing local stress concentration, and thus improving the stability and reliability of the connection structure. The strip hole can also limit the slippage of the screw to a certain extent, making the connection more secure. In addition, during the use of the steel structure foundation, if the connection part needs to be fine-tuned or the screws need to be replaced, the design of the strip hole can be easily achieved without dismantling the entire structure.
[0020] Optionally, the utility model provides a steel structure foundation, wherein the through holes are multiple and are arranged at the four corners of the steel plate.
[0021] By setting multiple through holes at the four corners of the steel plate, screw connections can be made from multiple positions, making the fixation of the steel structure foundation more reliable. In the actual use of the steel structure foundation, whether it needs to withstand vertical pressure or horizontal tension, the stress can be effectively dispersed through multiple connection points to avoid local excessive force causing loose connections or damage. At the same time, the through holes arranged at the four corners also make the installation of the steel structure foundation more convenient and quick. The installer can align the through holes and the screw holes of the connecting parts from different angles, thereby saving installation time. In addition, in some complex installation scenarios, when it is necessary to connect to superstructures of different shapes and sizes, the multiple through holes at the four corners can select appropriate connection points according to the specific actual situation, thereby ensuring the reliability and stability of the steel structure foundation installation, and also improving the versatility of the steel structure foundation.
[0022] Optionally, the utility model provides a steel structure foundation, wherein the steel pipe is a hot-dip galvanized steel pipe, and the diameter of the steel pipe is 48-100 mm; the steel plate is a hot-dip galvanized steel plate, and the steel plate is a square plate of 200*200 mm.
[0023] Hot-dip galvanizing steel pipes and plates improves the corrosion resistance and durability of steel structure foundations, reducing maintenance and replacement costs. The zinc coating on the surface of hot-dip galvanized steel plates blocks contact with corrosive media, slowing corrosion and extending service life. The zinc coating on the surface of hot-dip galvanized steel pipes protects the internal steel, preventing rust and perforation during long-term use, ensuring the stability and reliability of the steel structure foundation. Furthermore, the hot-dip galvanizing treatment does not significantly affect the strength of the steel plates and pipes. Hot-dip galvanized steel plates, measuring 200 x 200 mm, offer sufficient rigidity and strength to withstand the various pressures and loads experienced by steel structure foundations. Hot-dip galvanized steel pipes, ranging in diameter from 48 to 100 mm, are also highly strong and adjustable in diameter, providing stable support for the steel structure foundation. Furthermore, the hot-dip galvanized steel plates and pipes have a smooth, uniform surface with a silvery-gray metallic luster, creating a visually appealing aesthetic.
[0024] In a second aspect, the present invention further provides a building comprising a building body and the above-mentioned steel structure foundation.
[0025] The building provided by the present invention includes a steel structure foundation, which has the same effect as the above-mentioned steel structure foundation and will not be described in detail here. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] In order to more clearly illustrate the specific implementation methods of the utility model or the technical solutions in the prior art, the drawings required for use in the specific implementation methods or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are some implementation methods of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0027] Figure 1 This is an elevation view of a steel structure foundation according to an embodiment of the present utility model;
[0028] Figure 2 This is a top view of a steel structure foundation according to an embodiment of the present utility model.
[0029] Description of reference numerals:
[0030] 1. Steel pipe; 2. Steel plate; 3. Tip structure; 4. Through hole; 5. Round hole; 6. Transparent hole. DETAILED DESCRIPTION
[0031] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the embodiments described are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without making creative efforts shall fall within the scope of protection of the present invention.
[0032] The following combination Figures 1 to 2 , describing the embodiments of the present utility model.
[0033] like Figure 1 As shown, a specific implementation method of a steel structure foundation provided in this embodiment includes a steel pipe 1 and a steel plate 2, the steel plate 2 is connected to the top end of the steel pipe 1, the bottom end of the steel pipe 1 has a tip structure 3, and the pipe body of the steel pipe 1 has a plurality of through holes 4 arranged at intervals along the length direction of the steel pipe 1.
[0034] This embodiment utilizes a combination of steel pipe 1 and steel plate 2 as a temporary steel structure foundation, improving the turnover rate when constructing temporary structures such as temporary enclosures and gates. This means the foundation can be reused for different temporary projects, reducing resource waste and improving material utilization. Furthermore, the steel pipe 1 features a pointed structure 3 at its bottom end, effectively reducing sinking resistance and making it easier for the steel structure to sink to its intended location during installation. This eliminates the need for excessive manpower and material resources to overcome sinking difficulties, further improving construction efficiency. Furthermore, multiple through-holes 4 spaced along the length of the steel pipe 1 facilitate soil removal during the sinking process, further facilitating the steel structure's sinking, making the installation process smoother and reducing construction time and costs. This steel structure foundation fundamentally addresses the problem of uneven foundation settlement that can occur in the later stages of traditional temporary structures. It also meets construction requirements during temporary building demolition and re-use, ensuring the reliability of the temporary structure. The high turnover rate and ease of sinking of this steel structure foundation indirectly reduce material loss and construction time, thereby reducing construction costs.
[0035] like Figure 1 As shown, this is a specific implementation of a steel structure foundation provided by this embodiment, and the through hole 4 is a plum blossom hole.
[0036] This embodiment utilizes a plum blossom-shaped opening design for the multiple through holes 4 around the steel pipe 1, allowing the steel pipe 1 to more effectively disperse the resistance of the soil within the pipe to the steel pipe 1 during the sinking process. The unique shape design allows the soil to pass through the through holes 4 more smoothly during the sinking process of the steel pipe 1, thereby reducing the accumulation and squeezing of soil within the pipe, thereby reducing the resistance of the steel pipe 1 during sinking and achieving a better soil cleaning effect. This in turn makes it easier for the tip structure 3 of the steel structure foundation to reach the predetermined installation position, thereby shortening construction time and improving construction efficiency. In addition, the plum blossom-shaped through hole 4 design greatly saves the material consumption of the steel structure foundation, thereby reducing material costs.
[0037] like Figure 1 As shown, this is a specific implementation of a steel structure foundation provided by this embodiment, in which a plurality of through holes 4 are arranged at intervals in the circumferential direction around the steel pipe 1 .
[0038] In this embodiment, a plurality of through holes 4 are arranged at intervals around the steel pipe 1 in a circumferential direction, so that the forces in all directions to which the steel pipe 1 is subjected during the sinking process are more uniform. The uniform distribution of the through holes 4 can also effectively disperse the stress and avoid the stress concentration in a specific area, thereby improving the stability of the entire structure. In addition, the circumferential arrangement of the through holes 4 is also helpful for soil purification. During the sinking process of the steel structure foundation, the soil in the steel pipe 1 can be discharged from the through holes 4 in a timely manner to avoid accumulation inside the steel pipe 1, thereby effectively reducing the sinking resistance of the steel structure foundation and improving construction efficiency. In addition, without affecting the strength of the steel structure foundation, the provision of the through holes 4 can reduce the weight of the steel structure, optimize the material distribution of the steel pipe 1, thereby reducing the dead weight of the entire steel structure foundation, improving the utilization rate of materials, and saving the construction cost of the infrastructure.
[0039] Of course, the above description is not restrictive. In some alternative embodiments, the circumferential spacing of the through holes 4 around the steel pipe 1 can be replaced by the through holes 4 being arranged in a matrix on the circumference of the steel pipe 1. This neat layout is more conducive to clearing the soil during the sinking process of the steel structure foundation, thereby reducing sinking resistance, improving construction efficiency, and further reducing construction costs.
[0040] like Figure 1 As shown, this is a specific implementation of a steel structure foundation provided in this embodiment, and the tip structure 3 includes a triangular tip extending downward.
[0041] When the steel structure foundation is driven into the ground, the sharp angle of the triangular tip of the tip structure provided in this embodiment can concentrate the force, break the soil more easily, reduce the resistance during the driving process, and make the installation process of the steel structure more efficient and quick, thereby reducing the construction difficulty and time cost. At the same time, the triangular tip can also enhance the stability of the steel structure foundation. After the steel structure foundation is driven into the ground, the triangular tip can penetrate into the harder soil layer, providing a more solid anchor point for the entire steel structure foundation. This deep underground anchoring effect makes the steel structure foundation more stable when it is subjected to vertical and horizontal forces, reducing the displacement and shaking risks of the steel structure foundation. The triangular tip also helps to improve the bearing capacity of the steel structure foundation. Since it can penetrate into more solid strata, the steel structure foundation can better disperse and transmit the load transmitted from the upper structure. Through close integration with the surrounding soil, the triangular tip can give full play to the bearing capacity of the soil, thereby ensuring the safety and stability of the steel structure. In addition, the triangular tip design also saves material costs to a certain extent. Due to its efficient penetration and stability, the diameter or thickness of the steel pipe 1 can be appropriately reduced when designing and manufacturing the steel structure foundation, thereby reducing the amount of material used and achieving cost optimization.
[0042] like Figure 2As shown, this is a specific implementation of a steel structure foundation provided in this embodiment, in which the steel plate 2 has a circular hole 5 that matches the inner diameter of the steel pipe 1 .
[0043] In this embodiment, a circular hole 5 matching the inner diameter of the steel pipe 1 is reserved on the steel plate 2, so that the steel pipe 1 can be precisely positioned when connected to the steel plate 2. During the installation process, the steel pipe 1 can be easily inserted into the circular hole 5, ensuring that the various components of the steel structure foundation can be quickly aligned during assembly, reducing installation errors and improving construction efficiency. At the same time, this precise connection method also helps to ensure the stability and reliability of the entire steel structure foundation. In addition, the design of the reserved circular hole 5 makes the contact between the steel pipe 1 and the steel plate 2 closer. After the steel pipe 1 is inserted into the circular hole 5, it can be fixed by welding or bolting, thereby enhancing the connection strength between the two, promoting the transfer of loads, and improving the overall bearing capacity of the steel structure.
[0044] like Figure 2 As shown, this is a specific implementation of a steel structure foundation provided in this embodiment. The steel plate 2 is rectangular and is provided with through holes 6 for passing screws.
[0045] In this embodiment, by providing a rectangular steel plate 2, when the steel structure foundation is subjected to an external load, the four sides of the rectangle can evenly disperse the stress, so that the external load can be more evenly transferred to the steel pipe 1 and the entire foundation structure, thereby improving the bearing capacity of the steel structure foundation and ensuring the overall stability of the steel structure foundation. In addition, the rectangular steel plate 2 is also easy to process and manufacture, which can reduce the processing difficulty and cost. At the same time, by providing a through hole 6 on the steel plate 2, screws and other connecting parts can be smoothly passed through to achieve a firm connection between the steel plate 2 and other structural components. When the enclosure foundation is installed at a later stage, the columns in the enclosure foundation need to be fixed to the through hole 6 by screws, and the relative position of the connection can be flexibly adjusted by adjusting the position of the screw in the through hole 6 to adapt to different installation requirements. This connection method is simple and reliable, and can effectively fix different components together, thereby ensuring the overall stability of the steel structure.
[0046] Of course, the above description is not restrictive, and in some alternative embodiments, the screw connection can also be replaced by a bolt connection. In some cases, the bolt connection can provide greater tightening force than the screw connection and is also easier to install and disassemble.
[0047] like Figure 2 As shown, this is a specific implementation of a steel structure foundation provided by this embodiment, and the through hole 6 is a strip-shaped hole.
[0048] This embodiment sets the through hole 6 as a strip hole, wherein the width of the strip hole matches the size of the screw for fixing the connection, and the length of the strip hole is adjusted according to the position of the subsequent installation of other structural components, thereby ensuring that during the installation process, the position of the screw in the strip hole can be adjusted according to actual needs, compensating for possible dimensional errors, and thus better adapting to different installation scenarios and connection requirements. In addition, the strip hole can make the contact area between the screw and the steel plate 2 larger, thereby dispersing the stress at the connection part, reducing local stress concentration, and improving the stability and reliability of the entire connection structure. The strip hole can also limit the slippage of the screw to a certain extent, making the connection more secure, especially when subjected to external forces, and can better maintain the stability of the connection. In addition, during the use of the steel structure foundation, if the connection part needs to be fine-tuned or the screw needs to be replaced, the design of the strip hole can be more conveniently implemented without disassembling the entire structure.
[0049] like Figure 2 As shown, this is a specific implementation of a steel structure foundation provided by this embodiment, and there are multiple through holes 6 set at the four corners of the steel plate 2.
[0050] This embodiment arranges multiple through holes 6 at the four corners of the steel plate 2, which can realize screw connection from multiple positions, making the fixation of the steel structure foundation more reliable. In the actual use of the steel structure foundation, whether it is subjected to vertical pressure or horizontal tension, the stress can be effectively dispersed through multiple connection points, thereby avoiding local excessive force causing loose connection or damage. At the same time, the arrangement of the through holes 6 at the four corners makes the steel structure foundation more convenient and quick during the installation process. The installer can easily align the through holes 6 and the screw holes on the connecting parts from different angles, thereby saving installation time. In addition, in some complex installation scenarios, it may be necessary to connect with superstructures of different shapes and sizes. The multiple through holes 6 located at the four corners can select appropriate connection points according to the specific situation, thereby ensuring the reliability and stability of the steel structure foundation installation, and also improving the versatility of the steel structure foundation.
[0051] like Figure 2 As shown, this is a specific implementation of a steel structure foundation provided in this embodiment. The steel pipe 1 adopts a hot-dip galvanized steel pipe 1, and the diameter of the steel pipe 1 is 48-100 mm; the steel plate 2 adopts a hot-dip galvanized steel plate 2, and the steel plate 2 is a square plate of 200*200 mm.
[0052] This embodiment improves the corrosion resistance and durability of the steel structure foundation by hot-dip galvanizing the steel pipe 1 and steel plate 2, reducing maintenance and replacement costs. The zinc layer formed on the surface of the hot-dip galvanized steel plate 2 can effectively block contact between air, moisture, and other corrosive media and the steel, slowing the corrosion rate of the steel plate 2 to a certain extent, thereby extending its service life. The zinc layer on the surface of the hot-dip galvanized steel pipe 1 protects the steel inside the steel pipe 1 from corrosion, ensuring that the steel pipe 1 will not rust or perforate during long-term use, thereby ensuring the stability and reliability of the steel structure foundation. Moreover, the strength of the hot-dip galvanized steel plate 2 and the hot-dip galvanized steel pipe 1 is not significantly affected after the hot-dip galvanizing treatment. The hot-dip galvanized steel plate 2 adopts a square plate with a specification of 200*200mm, which has sufficient rigidity and strength to withstand the various pressures and loads borne by the steel structure foundation. The hot-dip galvanized steel pipe 1 has a diameter of 48-100mm, which also has high strength. The diameter of the steel pipe 1 can be adjusted according to actual needs, thereby providing stable support for the steel structure foundation. In addition, the steel plate 2 and the steel pipe 1 after hot-dip galvanizing have a smooth and uniform zinc layer surface, showing a silver-grey metallic luster and having a certain aesthetic appeal.
[0053] In a second aspect, this embodiment further provides a building, comprising a building body and the above-mentioned steel structure foundation.
[0054] Because the building provided in this embodiment includes a steel structure foundation and has the same effect as the steel structure foundation, it will not be described in detail here.
[0055] Although the embodiments of the present invention have been described with reference to the accompanying drawings, those skilled in the art may make various modifications and variations without departing from the spirit and scope of the present invention, and such modifications and variations are all within the scope of the present invention.
Claims
1. A steel structure foundation, characterized in that: include: A steel pipe (1) and a steel plate (2), wherein the steel plate (2) is connected to the top end of the steel pipe (1), the bottom end of the steel pipe (1) has a tip structure (3), and the pipe body of the steel pipe (1) has a plurality of through holes (4) arranged at intervals along the length direction of the steel pipe (1).
2. The steel structure foundation according to claim 1, characterized in that: The through hole (4) is a plum blossom hole.
3. The steel structure foundation according to claim 1, characterized in that: The plurality of through holes (4) are arranged at intervals around the circumference of the steel pipe (1).
4. The steel structure foundation according to claim 1, characterized in that: The tip structure (3) comprises a triangular tip extending downward.
5. The steel structure foundation according to claim 1, characterized in that: The steel plate (2) has a circular hole (5) that matches the inner diameter of the steel pipe (1).
6. The steel structure foundation according to claim 1, characterized in that: The steel plate (2) is rectangular and is provided with a through hole (6) for passing a screw.
7. The steel structure foundation according to claim 6, characterized in that: The through hole (6) is a strip-shaped hole.
8. The steel structure foundation according to claim 6, characterized in that: The through holes (6) are multiple and are arranged at the four corners of the steel plate (2).
9. The steel structure foundation according to any one of claims 1 to 8, characterized in that: The steel pipe (1) is a hot-dip galvanized steel pipe (1), and the diameter of the steel pipe (1) is 48-100 mm; the steel plate (2) is a hot-dip galvanized steel plate (2), and the steel plate (2) is a square plate of 200*200 mm.
10. A building, characterized in that include: A building body and a steel structure foundation according to any one of claims 1 to 9.