Column foot structure and bracket assembly

CN224742125UActive Publication Date: 2026-09-11HEFEI SUNGROW RENEWABLE ENERGY SCI & TECH CO LTD
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Patent Information

Application Number
CN202522076141.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-25
Publication Date
2026-09-11
Estimated Expiration
2035-09-25

AI Technical Summary

Technical Problem

[0003]然而,现有的柱脚结构大多由板件和管材焊接加工形成,所需要的焊接工序较为繁琐,导致支架组件的施工效率较低

Benefits of technology

[0017]本申请提供的多个实施例中通过采用第一柱脚分体和第二柱脚分体组合形成柱脚结构,可以利用第一抱箍件和第二抱箍件的拼接即可完成柱脚结构的加工制作,利用第一抱箍件和第二抱箍件拼接将第一槽体和第二槽体拼合形成供立柱插接固定的插接孔,保障柱脚结构对立柱的固定支撑作用。相较利用板件和管材焊接加工制作柱脚的方式,利用第一抱箍件与第二抱箍件的拼接形成柱脚结构,可以有效减少柱脚结构的焊接加工工序,实现柱脚结构更便捷的加工制作,提高支架组件在施工现场的装配效率,进一步提高了柱脚结构的实用性和可靠性。

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Abstract

The embodiment of the application discloses a column foot structure and a support assembly, and relates to the technical field of supports, wherein the column foot structure comprises a first column foot part, a second column foot part and a connecting bolt, the first column foot part comprises a first base plate and a first hoop part, the first hoop part is connected to the first base plate, the first hoop part comprises a first hoop body and a first flange, and the first hoop body is provided with a first groove; the second column foot part comprises a second base plate and a second hoop part, the second hoop part is connected to the second base plate, the second hoop part comprises a second hoop body and a second flange, and the second hoop body is provided with a second groove; the first hoop part is matched and spliced with the second hoop part, the first flange is matched with the second flange in opposition, the first groove and the second groove are spliced to form an insertion hole, and the insertion hole is used for inserting a stand column; and the connecting bolt is used for fastening the first flange and the second flange. The technical scheme provided by the embodiment of the application aims to realize convenient assembly of the column foot structure.
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Description

Technical Field

[0001] The embodiments in this application relate to the field of support technology, and in particular to a column base structure and support assembly. Background Technology

[0002] In related technologies, support brackets using columns as the main support structure are widely used in the installation of various equipment, such as mounting brackets for photovoltaic modules. These brackets can be anchored to mounting surfaces such as the ground or building walls using column base structures, allowing the columns to be inserted into the column base structure and ensuring their stable support function.

[0003] However, most existing column base structures are formed by welding plates and pipes, which requires a relatively complicated welding process, resulting in low construction efficiency of the support components. Utility Model Content

[0004] This application provides several embodiments of a column base structure and a support assembly, which aim to facilitate the assembly of the column base structure and improve the construction efficiency of the support assembly.

[0005] One embodiment of this application proposes a column base structure including a first column base component and a second column base component. The first column base component includes a first base plate, a first clamping member, and connecting bolts. The first clamping member is connected to the first base plate and includes a first clamping body and first flanges respectively connected to both sides of the first clamping body. The first clamping body has a first groove. The second column base component includes a second base plate and a second clamping member. The second clamping member is connected to the second base plate and includes a second clamping body and second flanges respectively connected to both sides of the second clamping body. The second clamping body has a second groove. The first clamping member and the second clamping member are fitted together, with the two first flanges and the two second flanges fitting one-to-one. The first groove and the second groove are joined together to form an insertion hole for inserting the column. Connecting bolts are used to fasten the first flanges and the second flanges.

[0006] In one embodiment, the first column base segment further includes a first reinforcing rib, which connects the first base plate and the first clamp; the second column base segment further includes a second reinforcing rib, which connects the second base plate and the second clamp.

[0007] In one embodiment, the first clamp is provided with a first pin, which protrudes from the inner wall of the first groove and is used to insert into the limiting hole on the periphery of the column; and / or, the second clamp is provided with a second pin, which protrudes from the inner wall of the second groove and is used to insert into the limiting hole on the periphery of the column.

[0008] In one embodiment, the first clamp is provided with a first pin, and the second clamp is provided with a second pin, wherein the first pin and the second pin are coaxially arranged.

[0009] In one embodiment, the first pin has a male connector at one end and the second pin has a female connector at one end, and the male connector and the female connector engage in a snap-fit ​​connection.

[0010] In one embodiment, the first pin passes through a first connecting hole, and a first plug protrudes from the end of the first pin; the second pin passes through a second connecting hole, and a second plug protrudes from the end of the second pin; the first connecting hole and the second connecting hole are connected, the first plug is inserted into the second connecting hole, the second plug is inserted into the first connecting hole, and the first plug and the second plug are offset from each other.

[0011] In one embodiment, the column base structure further includes a limiting bolt, which is inserted through the outer periphery of the first clamp and the outer periphery of the second clamp, and fastens the first clamp, the second clamp and the column.

[0012] In one embodiment, the first base plate and the second base plate are joined together. The first base plate has a first mounting groove on the side facing the second base plate, and the second base plate has a second mounting groove on the side facing the first base plate. The first mounting groove and the second mounting groove are joined together to form a first mounting hole that penetrates the first base plate and the second base plate.

[0013] In one embodiment, the first base plate is provided with a second mounting hole, which penetrates the first base plate; the second base plate is provided with a third mounting hole, which penetrates the second base plate, and the third mounting hole is an elongated hole extending along a first direction.

[0014] In one embodiment, the column base structure further includes a base plate, wherein the first seat plate and the second seat plate are disposed on the base plate and respectively connected to the base plate.

[0015] In one embodiment, a fixed anchor bolt is protruding from the base plate, the fixed anchor bolt passing through the first base plate and the second base plate. The column base structure also includes an anchor bolt nut, which is sleeved on the outer periphery of the fixed anchor bolt and threadedly connected to the fixed anchor bolt. The anchor bolt nut presses against the first base plate and the second base plate.

[0016] Embodiments of this application also propose a support assembly, the support assembly including a column and a column base structure, the column base structure being the column base structure described above, and the column being inserted into the column base structure.

[0017] In the various embodiments provided in this application, a column base structure is formed by combining a first column base component and a second column base component. The column base structure can be fabricated simply by splicing the first and second clamping components. The first and second grooves are then joined together using the first and second clamping components to form insertion holes for fixing the column, ensuring the column base structure provides stable support for the column. Compared to fabricating column bases by welding plates and pipes, using the splicing of the first and second clamping components to form the column base structure effectively reduces welding steps, making the fabrication of the column base structure more convenient, improving the assembly efficiency of the support components on the construction site, and further enhancing the practicality and reliability of the column base structure. Attached Figure Description

[0018] To more clearly illustrate the technical solutions in the embodiments or prior art of this application, the drawings used in the description of the embodiments or prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0019] Figure 1 This is a partial structural diagram of an embodiment of the support assembly provided in this application;

[0020] Figure 2 A schematic diagram of an embodiment of the column base structure provided in this application;

[0021] Figure 3 for Figure 2 Exploded view of the first embodiment of the column base structure;

[0022] Figure 4 for Figure 2 Exploded view of the second embodiment of the column base structure;

[0023] Figure 5 for Figure 2 Exploded view of the third embodiment of the column base structure;

[0024] Figure 6 for Figure 2 Exploded view of the fourth embodiment of the column base structure;

[0025] Figure 7 for Figure 2 Exploded view of the fifth embodiment of the column base structure;

[0026] Figure 8 A schematic diagram of another embodiment of the column base structure provided in this application;

[0027] Figure 9 for Figure 8 A cross-sectional view of an embodiment of the column base structure.

[0028] Explanation of icon numbers:

[0029] 100. Column base structure; 1. Insertion hole; 10a. First groove; 30a. Second groove; 3. First mounting hole; 10b. First mounting groove; 30b. Second mounting groove; 10. First column base body; 11. First base plate; 111. Second mounting hole; 13. First clamp; 131. First clamp body; 133. First flange; 135. First pin; 1351. Male connector; 1353. First connection hole; 1355. First plug; 15. 1. Reinforcing rib; 30. Second column base; 31. Second base plate; 311. Third mounting hole; 33. Second clamp; 331. Second clamp body; 333. Second flange; 335. Second pin; 3351. Female connector; 3353. Second connecting hole; 3355. Second plug; 35. Second reinforcing rib; 50. Base plate; 51. Fixed anchor bolt; 53. Anchor bolt nut; 70. Connecting bolt; 90. Limiting bolt; 200. Column; 21. Limiting hole. Detailed Implementation

[0030] The technical solutions of this application will be clearly and completely described below with reference to the accompanying drawings of several embodiments. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.

[0031] It should be noted that if directional indications (such as up, down, left, right, front, back, etc.) are involved in multiple embodiments of this application, the directional indications are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indications will also change accordingly.

[0032] Furthermore, if multiple embodiments of this application involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text implies three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed in this application.

[0033] In related technologies, bracket assemblies using columns as the main support are widely used in the installation of various equipment, such as mounting brackets for photovoltaic modules, relays, grid-connected boxes, and other electrical equipment. Bracket assemblies can be anchored to mounting surfaces such as the ground or building walls using column base structures, allowing the columns to be inserted into the column base structure and ensuring stable support. However, most existing column base structures are formed by welding plates and pipes, requiring complex welding processes, resulting in low construction efficiency for bracket assemblies.

[0034] It should be noted that in most existing technologies, the sleeve is welded to the base plate, and reinforcing ribs are welded to the periphery of the base plate and the sleeve to complete the construction of the entire column base. This requires a large amount of welding on-site, and the welding is difficult, reducing the assembly efficiency of the support components. To address these issues, this application proposes a column base structure 100.

[0035] Please see Figure 1 , Figure 2 and Figure 6 In one embodiment of this application, the column base structure 100 includes a first column base segment 10 and a second column base segment 30. The first column base segment 10 includes a first base plate 11 and a first clamping member 13. The first clamping member 13 is connected to the first base plate 11 and has a first groove 10a. The second column base segment 30 includes a second base plate 31 and a second clamping member 33. The second clamping member 33 is connected to the second base plate 31 and has a second groove 30a. The first clamping member 13 and the second clamping member 33 are joined together, and the first groove 10a and the second groove 30a are joined together to form an insertion hole 1 for the column 200 to be inserted.

[0036] In this application, a first column base segment 10 is integrally formed on a first base plate 11 using a first clamping member 13, and a second column base segment 30 is integrally formed on a second base plate 31 using a second clamping member 33. The first clamping member 13 and the second clamping member 33 can be two semi-cylinders or two triangular frames that can be assembled to form a cylindrical structure, allowing the first column base segment 10 and the second column base segment 30 to be assembled using the first clamping member 13 and the second clamping member 33 to form an integral column base structure 100. The first base plate 11 and the second base plate 31 ensure stable anchoring support for the column base structure 100. At this time, the first clamping member... The first groove 10a formed by the recess on one side of the first clamp 13 and the second groove 30a formed by the recess on one side of the second clamp 33 can be connected with the first clamp 13 and the second clamp 33 to form a plug hole 1, so that the support assembly can insert the column 200 into the plug hole 1. Under the support of the first clamp 13 and the second clamp 33 by the first base plate 11 and the second base plate 31 respectively, the first clamp 13 and the second clamp 33 stably and tightly hold and fix the end of the column 200, ensuring the stable support of the column base structure 100 on the column 200, so that the support assembly can stably support the equipment installed above it.

[0037] The first column base component 10 can be integrally cast from the first base plate 11 and the first clamping component 13, or the first clamping component 13 can be welded and fixed to the first base plate 11 in the production workshop to form an integral first column base component 10. Similarly, the second column base component 30 can be integrally cast from the second base plate 31 and the second clamping component 33, or the second clamping component 33 can be welded and fixed to the second base plate 31 in the production workshop to form an integral second column base component 30. Furthermore, in the assembly construction site of the support assembly, the first column base component 10 and the second column base component 30 can be spliced ​​together to form a complete column base structure 100. Compared with the method of welding pipes and plates to form column bases on the construction site, this can effectively reduce the welding process on the construction site, realize faster assembly of the support assembly, and further improve the construction efficiency of the support assembly.

[0038] The first clamping member 13 and the second clamping member 33 can be respectively provided with opposite flange structures, and the two flanges can be spliced ​​and installed by bolts being inserted and tightened; or a fastener can be provided on the first clamping member 13 and another fastener can be provided on the second clamping member 33. When the first clamping member 13 and the second clamping member 33 are spliced ​​together, the two fasteners can be locked together to achieve a tight splicing and installation of the first column base 10 and the second column base 30; of course, the first clamping member 13 and the second clamping member 33 can also be spliced ​​together, and the first column base 10 and the second column base 30 can be stably spliced ​​by welding the opposite sides of the first clamping member 13 and the second clamping member 33. Since only welding is required on both sides of the first clamping member 13 and the second clamping member 33 to complete the processing, the welding processing steps of the column base structure 100 can be effectively reduced, and the overall assembly and construction efficiency can be improved.

[0039] In one embodiment of this application, a column base structure 100 is formed by combining a first column base component 10 and a second column base component 30. The column base structure 100 can be fabricated simply by splicing a first clamping member 13 and a second clamping member 33. The first groove 10a and the second groove 30a are then joined together using the first clamping member 13 and the second clamping member 33 to form an insertion hole 1 for the column 200 to be inserted and fixed, ensuring the column base structure 100 provides fixed support for the column 200. Compared to the method of fabricating column bases by welding plates and pipes, using the splicing of the first clamping member 13 and the second clamping member 33 to form the column base structure 100 effectively reduces the welding process, making the fabrication of the column base structure 100 more convenient, improving the assembly efficiency of the support components on the construction site, and further enhancing the practicality and reliability of the column base structure 100.

[0040] See Figures 1 to 3 In one embodiment of this application, the first clamping member 13 includes a first clamping body 131 and first flanges 133 respectively connected to both sides of the first clamping body 131, and the first clamping body 131 is provided with a first groove 10a; the second clamping member 33 includes a second clamping body 331 and second flanges 333 respectively connected to both sides of the second clamping body 331, and the second clamping body 331 is provided with a second groove 30a; the two first flanges 133 and the two second flanges 333 are matched one to one, and the column base structure 100 also includes a connecting bolt 70, which fastens the first flanges 133 and the second flanges 333.

[0041] In this embodiment, the two first flanges 133 are symmetrically arranged with the first clamp body 131 as the center of symmetry and are at the same height as the first clamp body 131. Similarly, the two second flanges 333 are symmetrically arranged with the second clamp body 331 as the center of symmetry and are at the same height as the second clamp body 331. When assembling the first column base 10 and the second column base 30, the first clamp member 13 and the second clamp member 33 are joined together, allowing the first groove 10a and the second groove 30a within the first clamp body 131 and the second clamp body 331 to form the insertion hole 1. The two first flanges 133 are respectively fitted against the two second flanges 333 or arranged opposite each other with a certain gap.

[0042] Through holes that connect and cooperate can be provided on the first flange 133 and the second flange 333. After the first clamp 13 and the second clamp 33 are spliced ​​together, the connecting bolt 70 can be used to pass through the corresponding through holes of the first flange 133 and the second flange 333. The nut of the connecting bolt 70 can be abutted against the first flange 133 and the nut of the connecting bolt 70 can be abutted against the second flange 333, so that the connecting bolt 70 can fasten the first flange 133 and the second flange 333, and realize the fastening splicing of the first clamp 13 and the second clamp 33.

[0043] By setting first flanges 133 and second flanges 333 on both sides of the first clamp body 131 and the second clamp body 331 respectively for relative cooperation, and using connecting bolts 70 to fasten the first flanges 133 and the second flanges 333, the first flanges 133 and the second flanges 333 can be used to effectively increase the cooperation and splicing area of ​​the first clamp 13 and the second clamp 33, further improving the overall structural stability of the column base structure 100. In addition, the use of bolt fastening can better improve the assembly convenience of the column base structure 100 and further improve the construction efficiency of the support assembly.

[0044] See Figure 1 and Figure 6 In one embodiment of this application, the first column base 10 further includes a first reinforcing rib 15, which connects the first base plate 11 and the first clamp 13; the second column base 30 further includes a second reinforcing rib 35, which connects the second base plate 31 and the second clamp 33.

[0045] In this embodiment, the first reinforcing rib 15 can be disposed on the outer periphery of the first clamp 13. The first reinforcing rib 15 connects the first clamp 13 and the first base plate 11, thereby improving the overall structural strength of the first column base segment 10 and its load-bearing capacity. This allows the column base structure 100 to provide more stable support for the column 200, further enhancing the overall structural stability and reliability of the column base structure 100. The first reinforcing rib 15 can be integrally cast with the first clamp 13 and the first base plate 11, or it can be welded to the first clamp 13 and the first base plate 11 in the production workshop.

[0046] Similarly, the second reinforcing rib 35 can be set on the outer periphery of the second clamp 33. Connecting the second clamp 33 and the second base plate 31 with the second reinforcing rib 35 can better improve the overall structural strength of the second column base segment 30 and enhance its load-bearing capacity, allowing the column base structure 100 to provide more stable support for the column 200, further improving the overall structural stability and reliability of the column base structure 100. The second reinforcing rib 35 can be integrally cast with the second clamp 33 and the second base plate 31, or it can be welded to the second clamp 33 and the second base plate 31 in the production workshop.

[0047] See Figure 2 and Figure 5 In one embodiment of this application, the first clamp 13 is provided with a first pin 135, which protrudes from the inner wall of the first groove 10a and is used to insert into the limiting hole 21 on the periphery of the column 200; and / or, the second clamp 33 is provided with a second pin 335, which protrudes from the inner wall of the second groove 30a and is used to insert into the limiting hole 21 on the periphery of the column 200.

[0048] It is understandable that the first column base component 10 and the second column base component 30, which are assembled by separate splicing, form the column base structure 100. A pin can be set on the inner wall of the insertion hole 1. When assembling the column base structure 100, the first clamping member 13 and the second clamping member 33 can be moved relative to each other from both sides of the column 200 to fit around the end of the column 200 for installation. In this way, the pin can be used to connect with the limiting hole 21 on the periphery of the column 200 in the insertion hole 1, which helps to improve the connection stability and reliability between the column base structure 100 and the column 200, prevent the column 200 from detaching from the column base structure 100, and further improve the support provided by the column base structure 100 to the column 200.

[0049] In some embodiments, the first clamping member 13 may have a first pin 135 protruding from the inner wall of the first groove 10a, so that the first pin 135 engages with the limiting hole 21 on the periphery of the column 200. During the assembly of the column base structure 100, a portion of the structure at the end of the column 200 may be inserted into the first groove 10a, allowing the first pin 135 to engage with the limiting hole 21 on the periphery of the column 200. Then, the second clamping member 33 may be fitted onto another portion of the structure at the end of the column 200 using the second groove 30a, allowing the first clamping member 13 and the second clamping member 33 to engage and splice. This achieves the assembly of the column base structure 100 and the installation of the column 200 with the column base structure 100. The engagement of the first pin 135 with the column 200 further improves the connection stability between the column base structure 100 and the column 200, and also further improves the overall assembly efficiency of the bracket assembly.

[0050] Similarly, in some embodiments, the second clamp 33 can be provided with a second pin 335 protruding from the inner wall of the second groove 30a, so that the second pin 335 can be engaged with the limiting hole 21 on the periphery of the column 200. During the assembly of the column base structure 100, a part of the structure at the end of the column 200 can be inserted into the second groove 30a, so that the second pin 335 can be engaged with the limiting hole 21 on the periphery of the column 200. Then, the first clamp 13 can be fitted with another part of the structure at the end of the column 200 through the first groove 10a, so that the first clamp 13 and the second clamp 33 can be engaged, thereby realizing the assembly of the column base structure 100 and the engagement of the column 200 and the column base structure 100. Under the engagement of the second pin 335 and the column 200, the connection stability between the column base structure 100 and the column 200 is further improved, and the overall assembly efficiency of the bracket assembly can be further improved.

[0051] Furthermore, in some embodiments, the first clamping member 13 may be provided with a first pin 135 protruding on the inner wall of the first groove 10a, and the second clamping member 33 may be provided with a second pin 335 protruding on the inner wall of the second groove 30a. In this case, the periphery of the column 200 may be provided with limiting holes 21 that engage with the first pin 135 and the second pin 335, respectively, so that the first clamping member 13 and the second clamping member 33 can be respectively sleeved on the ends of the column 200 from opposite sides. During the process of moving and assembling the first column foot component 10 and the second column foot component 30, the first pin 135 and the second pin 335 are respectively inserted into the limiting holes 21 on the periphery of the column 200, thereby realizing the assembly of the column foot structure 100 and the installation of the column foot structure 100 with the column 200. With the cooperation and insertion of the first pin 135 and the second pin 335 with the column 200, the column base structure 100 can be inserted and secured to the periphery of the column 200 from two directions. This helps to better prevent the column 200 from detaching from the column base structure 100, ensures a more stable support for the column 200, and further improves the overall structural stability and reliability of the bracket assembly.

[0052] See Figure 2 and Figure 5 In one embodiment of this application, the first clamp 13 is provided with a first pin 135, and the second clamp 33 is provided with a second pin 335. The first pin 135 and the second pin 335 are coaxially arranged.

[0053] In this embodiment, when the first clamp 13 is provided with a first pin 135 and the second clamp 33 is provided with a second pin 335, the first pin 135 and the second pin 335 can be respectively disposed on the inner walls of the first groove 10a and the second groove 30a opposite to each other, so that the first pin 135 and the second pin 335 are coaxially disposed. In this way, the first pin 135 and the second pin 335 can be inserted into the outer walls of the opposite sides of the column 200, so that the column 200 can more evenly transfer the load force to the column base structure 100, further improving the supporting effect of the column base structure 100 on the column 200.

[0054] See Figure 5 and Figure 6 In one embodiment of this application, the end of the first pin 135 is provided with a male connector 1351, and the end of the second pin 335 is provided with a female connector 3351. The male connector 1351 and the female connector 3351 are engaged and snapped together.

[0055] In this embodiment, the male end connector 1351 can be a groove structure, and the female end connector 3351 can be a corresponding boss structure. When the first pin 135 and the second pin 335 are respectively inserted into the limiting holes 21 on opposite sides of the column 200, the boss structure and the groove structure can be interlocked inside the column 200, so that the first pin 135 and the second pin 335 can form a whole with the splicing of the first clamp 13 and the second clamp 33, further improving the overall structural strength of the column base structure 100. Alternatively, the male connector 1351 can be an elastic hook, and the female connector 3351 can be another symmetrical elastic hook. When the first pin 135 and the second pin 335 are respectively inserted into the limiting holes 21 on opposite sides of the column 200, the two elastic hooks can first deform and avoid each other, and when the first clamp 13 and the second clamp 33 are joined together, the two elastic hooks can be engaged and hooked together, so that the first pin 135 and the second pin 335 are connected to form a whole, so that the column base structure 100 can provide better support for the column 200.

[0056] Furthermore, by using the male end connector 1351 and the female end connector 3351 to connect the first pin 135 and the second pin 335 to form a whole, the overall structural strength of the column base structure 100 can be better enhanced, so that the column base structure 100 can more stably support the column 200, and further improve the practicality and reliability of the column base structure 100.

[0057] See Figure 7 In one embodiment of this application, a first pin 135 is provided through a first connecting hole 1353, and a first plug 1355 protrudes from the end of the first pin 135; a second pin 335 is provided through a second connecting hole 3353, and a second plug 3355 protrudes from the end of the second pin 335; the first connecting hole 1353 and the second connecting hole 3353 are connected, the first plug 1355 is inserted into the second connecting hole 3353, the second plug 3355 is inserted into the first connecting hole 1353, and the first plug 1355 and the second plug 3355 are offset.

[0058] In this embodiment, the ends of the first pin 135 and the second pin 335 can be respectively provided with staggered first plugs 1355 and second plugs 3355. At this time, by providing a first connecting hole 1353 in the first pin 135 and a second connecting hole 3353 in the second pin 335, when the first pin 135 and the second pin 335 are respectively inserted into the limiting holes 21 on opposite sides of the column 200, with the cooperation and splicing of the first clamp 13 and the second clamp 33, the first plug 1355 can be inserted into the second connecting hole 3353, and the second plug 3355 can be inserted into the first connecting hole 1353. This allows the first pin 135 and the second pin 335 to cooperate and connect to form a whole, thereby better enhancing the overall structural strength of the column base structure 100, so that the column base structure 100 can more stably support the column 200, and further improve the practicality and reliability of the column base structure 100.

[0059] See Figure 8 and Figure 9 In one embodiment of this application, the column base structure 100 further includes a limiting plug 90, which is inserted through the outer periphery of the first clamp 13 and the outer periphery of the second clamp 33, and fastens the first clamp 13, the second clamp 33 and the column 200.

[0060] In this embodiment, through holes can be provided on the outer surfaces of the first clamp 13 and the second clamp 33 facing away from each other, and a through hole connected to the through hole can be provided on the column 200, with the through hole extending through both opposite sides of the column 200. Thus, when the first column base detachment 10 and the second column base detachment 30 are assembled to form the column base structure 100, and the column 200 is inserted into the insertion hole 1 of the column base structure 100, the limiting bolt 90 can be inserted through the through hole on the outer periphery of the first clamp 13, passing through the through hole of the column 200 and the through hole on the outer periphery of the second clamp 33. The nut at one end of the limiting bolt 90 abuts against the outer wall of the first clamp 13, and the other end of the limiting bolt 90 is threaded. The nut abuts against the outer wall of the second clamp 33, thereby allowing the limiting bolt 90 to pass through and connect the first clamp 13, the column 200, and the second clamp 33. The limiting bolt 90 can also be used to fasten the first clamp 13, the second clamp 33, and the column 200, which helps to better enhance the overall structural strength of the column base structure 100, prevent the column 200 from detaching from the column base structure 100, and further improve the supporting effect of the column base structure 100 on the column 200.

[0061] See Figure 3 , Figure 4 and Figure 6In one embodiment of this application, a first base plate 11 and a second base plate 31 are joined together. The side of the first base plate 11 facing the second base plate 31 is provided with a first mounting groove 10b, and the side of the second base plate 31 facing the first base plate 11 is provided with a second mounting groove 30b. The first mounting groove 10b and the second mounting groove 30b are joined together to form a first mounting hole 3 that penetrates the first base plate 11 and the second base plate 31.

[0062] In this embodiment, the first mounting groove 10b can be recessed on the side surface of the first base plate 11, and the second mounting groove 30b can be recessed on the side surface of the second base plate 31. When the first column base component 10 and the second column base component 30 are assembled, the first base plate 11 and the second base plate 31 can be joined together, so that the first mounting groove 10b and the second mounting groove 30b can be combined to form a first mounting hole 3, which is beneficial to use fasteners such as bolts and self-tapping screws to pass through the first mounting hole 3 to fix the first base plate 11 and the second base plate 31 to the ground, wall or other mounting surfaces, so as to achieve a stable installation of the column base structure 100.

[0063] Furthermore, when the column base structure 100 is provided with a base plate 50 to meet the assembly requirements of uneven mounting surfaces, a fixing anchor bolt 51 can be provided on the base plate 50 through a first mounting hole 3 formed by the combination of the first mounting groove 10b and the second mounting groove 30b. The anchor bolt nut 53, which is threadedly connected to the fixing anchor bolt 51, is pressed onto the first seat plate 11 and the second seat plate 31, so that the first seat plate 11 and the second seat plate 31 are fixed on the base plate 50, ensuring the supporting role of the column base structure 100 on the column 200, and further improving the structural stability and reliability of the column base structure 100.

[0064] See Figure 2 , Figure 3 and Figure 6 In one embodiment of this application, the first base plate 11 is provided with a second mounting hole 111, which penetrates the first base plate 11; the second base plate 31 is provided with a third mounting hole 311, which penetrates the second base plate 31, and the third mounting hole 311 is an elongated hole extending along a first direction.

[0065] In this embodiment, by providing a through second mounting hole 111 on the first base plate 11, fasteners such as bolts and self-tapping screws can be used to connect to the mounting surface such as the ground or wall through the second mounting hole 111, so that the first base plate 11 can be fastened to the mounting surface by the fasteners, thereby achieving a stable installation of the first base plate 11 and further improving the overall structural stability of the bracket assembly.

[0066] Similarly, by providing a through third mounting hole 311 on the second base plate 31, fasteners such as bolts and self-tapping screws can be used to connect to the mounting surface such as the ground or wall through the third mounting hole 311, so that the second base plate 31 can be fastened to the mounting surface by the fasteners, thereby achieving a stable installation of the second base plate 31 and further improving the overall structural stability of the bracket assembly.

[0067] By making the third mounting hole 311 an elongated hole extending along the first direction, which can be the direction in which the second column base 30 and the first column base 10 move and assemble relative to each other, the third mounting hole 311 can be used to allow the second base plate 31 to be pre-installed on the mounting surface, and the third mounting hole 311 can be used to guide the second base plate 31 to move along the first direction to splice with the first base plate 11. Specifically, during the assembly of the column base structure 100, the first base plate 11 can be installed on the mounting surface through the second mounting hole 111, and the second base plate 31 can be pre-installed on the mounting surface through the third mounting hole 311. That is, the fastener can be passed through the third mounting hole 311 to limit and connect the second base plate 31 to the mounting surface, but the fastener is not pressed tightly on the second base plate 31, so that the second base plate 31 can slide along the first direction. In this way, the column base structure 100 can be pre-installed according to the set installation position during the construction process. Then, the columns 200 of the mounting bracket are placed one by one between the first clamp 13 and the second clamp 33 of each column base structure 100. After the mounting bracket is arranged, the second base plate 31 is slid along the first direction so that the first column base split 10 and the second column base split 30 are spliced ​​and fixed to the column 200. This allows for fine-tuning of the installation position of the second column base 30 when the mounting bracket deviates from its designed position. This ensures a stable connection between the first column base 10 and the second column base 30, further improving the practicality and structural reliability of the column base structure 100.

[0068] Furthermore, when a second pin 335 is provided in the second groove 30a of the second clamp 33 to engage with the column 200, a third mounting hole 311 with an elongated hole shape can be used to guide the second column base 30 through the fastener, allowing the second pin 335 to engage more stably with the limiting hole 21 on the periphery of the column 200, further improving the assembly convenience and reliability of the column base structure 100. That is, as... Figure 4As shown, during the assembly process, the column 200 can be first installed in the first groove 10a. After the mounting bracket is arranged, the second clamp 33 inserts the second pin 335 into the corresponding limiting hole 21 of the column 200. The second column foot segment 30 moves along the first direction to insert the second pin 335 into the limiting hole 21. Under the guidance of the third mounting hole 311, the second column foot segment 30 can be prevented from shifting during movement, preventing the second pin 335 from getting stuck and potentially affecting the tight splicing of the second column foot structure 100 and the first column foot structure 100. This ensures that the first column foot segment 10 and the second column foot segment 30 can be stably spliced ​​and fixed to the column 200, achieving the desired effect. Figure 1 The stable assembly form shown.

[0069] Understandably, when the column base structure 100 is provided with a base plate 50 to meet the assembly requirements of uneven mounting surfaces, several fixing anchors 51 can be provided on the base plate 50, which are respectively inserted through the first mounting hole 3, the second mounting hole 111 and the third mounting hole 311. The anchor nuts 53, which are threadedly connected to the fixing anchors 51, are pressed onto the first seat plate 11 and the second seat plate 31, so that the first seat plate 11 and the second seat plate 31 are fixed on the base plate 50, ensuring the supporting role of the column base structure 100 on the column 200, and further improving the structural stability and reliability of the column base structure 100.

[0070] See Figure 3 and Figure 4 In one embodiment of this application, the column base structure 100 further includes a base plate 50, a first seat plate 11 and a second seat plate 31 are disposed on the base plate 50 and are respectively connected to the base plate 50.

[0071] In this embodiment, the base plate 50 can be an integral plate structure with an area larger than that of the first base plate 11 and the second base plate 31. The base plate 50 can be used to anchor the first base plate 11 and the second base plate 31. The integral base plate 50 can also be used to stably install the column base structure 100 on uneven mounting surfaces, making the column base structure 100 adaptable to various installation environments and further improving the practicality and structural reliability of the column base structure 100.

[0072] The first base plate 11 and the second base plate 31 can be fixedly installed on the base plate 50 using fasteners such as bolts and clips; or the first base plate 11 and the second base plate 31 can be fastened to the base plate 50 using self-tapping screws, so as to ensure the stable installation of the first base plate 11 and the second base plate 31 with the base plate 50, and further improve the overall structural stability and reliability of the column base structure 100.

[0073] See Figure 3 and Figure 4In one embodiment of this application, a fixed anchor bolt 51 is protruding on the base plate 50. The fixed anchor bolt 51 passes through the first base plate 11 and the second base plate 31. The column base structure 100 also includes an anchor bolt nut 53. The anchor bolt nut 53 is sleeved on the outer periphery of the fixed anchor bolt 51 and is threadedly connected to the fixed anchor bolt 51. The anchor bolt nut 53 presses against the first base plate 11 and the second base plate 31.

[0074] In this embodiment, mounting holes can be provided through the first base plate 11 and the second base plate 31. By setting a fixing anchor 51 on the base plate 50, the fixing anchor 51 can pass through the mounting holes of the first base plate 11 and the second base plate 31. The anchor nut 53 is threadedly connected to the fixing anchor 51 above the first base plate 11 and the second base plate 31, so that the anchor nut 53 can press and fix the first base plate 11 and the second base plate 31 onto the base plate 50, thereby achieving a stable installation of the base plate 50 with the first base plate 11 and the second base plate 31, and further improving the overall structural stability and reliability of the column base structure 100.

[0075] By using fixed anchor bolts 51 to pass through the first base plate 11 and the second base plate 31, and using anchor bolt nuts 53 to connect with the fixed anchor bolts 51 to fix the first base plate 11 and the second base plate 31, the column base structure 100 can be assembled more conveniently, the assembly difficulty of the column base structure 100 can be reduced, and the overall assembly and construction efficiency of the support assembly can be further improved.

[0076] See Figure 3 and Figure 8 In some embodiments, the first base plate 11 has a first mounting groove 10b on the side facing the second base plate 31, and the second base plate 31 has a second mounting groove 30b on the side facing the first base plate 11. When the first column base 10 and the second column base 30 are spliced, the first base plate 11 and the second base plate 31 can be spliced ​​together, so that the first mounting groove 10b and the second mounting groove 30b can be spliced ​​together to form a first mounting hole 3 penetrating the first base plate 11 and the second base plate 31. At this time, the base plate 50 can be provided with a fixing anchor 51 passing through the first mounting hole 3, and the anchor nut 53 is threadedly connected to the fixing anchor 51, and the anchor nut 53 presses the first base plate 11 and the second base plate 31 so that the first base plate 11 and the second base plate 31 can be stably installed on the base plate 50.

[0077] When the first base plate 11 is provided with a second mounting hole 111 that passes through the first base plate 11, the base plate 50 can be provided with a fixing anchor 51 that passes through the second mounting hole 111, and the first base plate 11 can be pressed by the anchor nut 53 that is threadedly connected to the fixing anchor 51, so as to fix the first base plate 11 on the base plate 50.

[0078] When the second base plate 31 has a third mounting hole 311 penetrating the second base plate 31, the base plate 50 can be provided with a fixing anchor 51 passing through the third mounting hole 311, and the second base plate 31 can be pressed by the anchor nut 53 threadedly connected to the fixing anchor 51, so as to fix the second base plate 31 on the base plate 50. At this time, the third mounting hole 311 can be set as an elongated hole. During the assembly process, the first base plate 11 and the second base plate 31 can be pre-installed and fixed on the base plate 50 by using the mounting hole. During the pre-installation, the fixing anchor 51 can pass through the mounting hole and the anchor nut 53 can be installed on the fixing anchor 51, but the anchor nut 53 is not pressed tightly against the first base plate 11 and the second base plate 31. Then, the pre-installed column base structure 100 is first installed in the designed installation position, and the column 200 of the mounting bracket is first placed on the pre-installed column base structure 10. In step 0, after the mounting bracket is arranged, the second base plate 31 is moved closer to the first base plate 11 along the first direction. At this time, the third mounting hole 311 can be used to guide the movement of the second base plate 31, prevent the second base plate 31 from shifting, and enable the second column foot split 30 to make a certain positional adjustment according to the actual installation position of the column 200, so that the second column foot split 30 and the first column foot split 10 can be stably spliced ​​and fixed to the column 200, further improving the practicality and structural reliability of the column foot structure 100.

[0079] This application also proposes a support assembly, which includes a column 200 and a column base structure 100. The specific structure of the column base structure 100 is as described in the above embodiments. Since this support assembly adopts all the technical solutions of all the above embodiments, it has at least all the beneficial effects brought about by the technical solutions of the above embodiments, which will not be described in detail here.

[0080] The above description is merely an exemplary embodiment of this application and does not limit the patent scope of this application. Any equivalent structural transformations made based on the technical concept of this application and the contents of the specification and drawings of this application, or direct / indirect applications in other related technical fields, are included within the patent protection scope of this application.

Claims

1. A column foot structure (100), characterized in that, include: The first column base segment (10) includes a first base plate (11) and a first clamping member (13). The first clamping member (13) is connected to the first base plate (11). The first clamping member (13) includes a first clamping body (131) and first flanges (133) respectively connected to both sides of the first clamping body (131). The first clamping body (131) is provided with a first groove (10a). The second column base segment (30) includes a second base plate (31) and a second clamping member (33). The second clamping member (33) is connected to the second base plate (31). The second clamping member (33) includes a second clamping body (331) and second flanges (333) respectively connected to both sides of the second clamping body (331). The second clamping body (331) is provided with a second groove (30a). The first clamping member (13) and the second clamping member (33) are spliced ​​together. The two first flanges (133) and the two second flanges (333) are matched one to one. The first groove (10a) and the second groove (30a) are spliced ​​together to form an insertion hole (1). The insertion hole (1) is used for the column (200) to be inserted. as well as A connecting bolt (70) is used to fasten the first flange (133) and the second flange (333).

2. The prop structure (100) according to claim 1, characterized in that The first column base segment (10) also includes a first reinforcing rib (15), which connects the first base plate (11) and the first clamp (13); The second column base segment (30) also includes a second reinforcing rib (35), which connects the second base plate (31) and the second clamp (33).

3. The prop structure (100) according to claim 1, characterized in that The first clamp (13) is provided with a first pin (135), which protrudes from the inner wall of the first groove (10a) and is used to insert into the limiting hole (21) on the periphery of the column (200). And / or, the second clamp (33) is provided with a second pin (335), which protrudes from the inner wall of the second groove (30a) to be inserted into the limiting hole (21) on the periphery of the column (200).

4. The prop structure (100) according to claim 3, characterized in that The first clamp (13) is provided with a first pin (135), and the second clamp (33) is provided with a second pin (335). The first pin (135) and the second pin (335) are coaxially arranged.

5. The prop structure (100) according to claim 4, characterized in that The first pin (135) has a male connector (1351) at its end, and the second pin (335) has a female connector (3351) at its end. The male connector (1351) and the female connector (3351) are engaged and snapped together.

6. The prop structure (100) according to claim 4, characterized in that The first pin (135) is provided with a first connecting hole (1353) through it, and the end of the first pin (135) is provided with a first plug (1355); The second pin (335) is provided with a second connecting hole (3353) through it, and the end of the second pin (335) is provided with a second plug (3355); The first connecting hole (1353) is connected to the second connecting hole (3353), the first plug (1355) is inserted into the second connecting hole (3353), the second plug (3355) is inserted into the first connecting hole (1353), and the first plug (1355) and the second plug (3355) are offset.

7. The prop structure (100) according to claim 1, characterized in that The column base structure (100) also includes a limiting plug (90), which is inserted into the outer periphery of the first clamp (13) and the outer periphery of the second clamp (33), and fastens the first clamp (13), the second clamp (33) and the column (200).

8. The prop structure (100) according to claim 1, characterized in that The first base plate (11) and the second base plate (31) are joined together. The first base plate (11) has a first mounting groove (10b) on the side facing the second base plate (31), and the second base plate (31) has a second mounting groove (30b) on the side facing the first base plate (11). The first mounting groove (10b) and the second mounting groove (30b) are joined together to form a first mounting hole (3) that penetrates the first base plate (11) and the second base plate (31).

9. The prop structure (100) according to claim 8, characterized in that The first base plate (11) is provided with a second mounting hole (111), and the second mounting hole (111) penetrates the first base plate (11); The second base plate (31) is provided with a third mounting hole (311), which penetrates the second base plate (31) and is an elongated hole extending along the first direction.

10. The prop structure (100) according to claim 1, characterized in that The column base structure (100) also includes a base plate (50), on which the first seat plate (11) and the second seat plate (31) are disposed and connected to the base plate (50).

11. The prop structure (100) according to claim 10, characterized in that The base plate (50) is provided with a fixed anchor bolt (51) protruding through the first base plate (11) and the second base plate (31). The column base structure (100) also includes an anchor bolt nut (53). The anchor bolt nut (53) is sleeved on the outer periphery of the fixed anchor bolt (51) and is threadedly connected to the fixed anchor bolt (51). The anchor bolt nut (53) presses against the first base plate (11) and the second base plate (31).

12. A stent assembly characterized by, The support assembly includes a column (200) and a column base structure (100), wherein the column base structure (100) is the column base structure (100) according to any one of claims 1 to 11, and the column (200) is inserted into the column base structure (100).