A truss support system based on green steel structure building
Through the innovative design of the base components, support components and truss mounting components of the green steel structure building, the problem of slow construction progress of the traditional truss support system has been solved, rapid assembly and stable positioning have been achieved, and construction efficiency has been improved.
Patent Information
- Application Number
- CN202411945672.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2044-12-27
AI Technical Summary
The truss support system of traditional green steel structure buildings requires a large number of bolt connections when set up on site, which slows down the construction process and affects convenience.
The structural design adopts base components, support components and truss mounting components. Through the coordination of components such as limit plates, guide slides, guide slides and sleeves, rapid assembly and positioning can be achieved, reducing the use of bolts.
It realizes the rapid on-site assembly of green steel structure building trusses, improves construction convenience and stability, and reduces construction time and limitations.
Smart Images

Figure CN119553866B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of green steel structure building construction, in particular to a truss support system based on green steel structure building. Background Art
[0002] Green steel structure buildings are an energy-saving, environmentally friendly, recyclable and highly advantageous engineering structure. The core feature of green steel structure buildings lies in their use of lightweight and high-strength steel, which accelerates construction and provides favorable conditions for achieving high efficiency and energy conservation.
[0003] Green steel structure buildings, with their unique advantages and broad application prospects, have become an indispensable and important choice in the field of modern architecture. They not only conform to the concept of green development and sustainable development, but also provide people with a healthy, practical and efficient way to utilize space, achieving harmonious coexistence with nature.
[0004] Among them, the trusses of green steel structure buildings need to be positioned through a support system during the installation process. However, when the support system in traditional technology is set up on site, a large number of bolts are required to connect the components. The use of too many bolts makes the on-site preparation time-consuming, which greatly affects the overall convenience.
[0005] To this end, the present invention provides a truss support system based on a green steel structure building to solve the above problems. Summary of the Invention
[0006] In view of the deficiencies of the prior art, the present invention provides a truss support system based on a green steel structure building to solve the above problems.
[0007] To achieve the above objectives, the present invention is implemented through the following technical solutions: A truss support system based on a green steel structure building, comprising:
[0008] The base assembly includes a stabilizing base plate and an assembly pin A, and the middle portion of the top of the stabilizing base plate is fixedly connected to the assembly pin A;
[0009] A support assembly, comprising a limit plate, a limit slot A and a guide slide bar, wherein the four end corners of the limit plate are provided with a limit slot A, the interior of each limit slot A is fixedly connected to a guide slide bar, the outer side of each guide slide bar is slidably connected to a support column, a guide assembly is provided in the middle of the limit plate, and the guide assembly is used to lock the position of the support column, the top end of each support column is fixedly connected to an assembly pin B, and the bottom end of each support column is provided with a receiving slot A spliced with the assembly pin B;
[0010] A truss mounting assembly is used to cooperate with the support assembly and the base assembly to support the truss. The truss mounting assembly includes an assembly plate and a sleeve. The middle part of the bottom end of the assembly plate is fixedly connected with a sleeve that cooperates with the assembly pin B. The top end of the assembly plate is provided with a positioning assembly, and the positioning assembly is used to position the truss.
[0011] The top end of the locking plate is provided with a locking groove, and one end of the locking ring is slidably connected to the inner wall of the locking groove, and the locking ring is further provided with a positioning screw at one end of the locking plate near the locking groove, and the middle of the limit plate is fixedly connected to the support frame, and the top end of the support frame is provided with an anti-sway component, and the anti-sway component is used to cooperate with the assembly pin B and the storage slot A to form a splicing between the two support columns.
[0012] The top end of the linkage rod is fixedly connected to the adjusting base, and the bottom end of the linkage rod is clamped with the linkage rod.
[0013] The outer side of the bottom end of the supporting column is fixedly connected to the limiting seat, and the inner side of the limiting seat is fixedly connected to the limiting light rod. The limiting light rod is slidably connected with a displacement plate A. The end of the adjustment plate away from the linkage shaft is rotatably connected to a push plate, and the end of the push plate away from the adjustment plate is also rotatably connected to the displacement plate A. The side of the displacement plate A close to the supporting column is fixedly connected to a stabilizing rod, and the side of the supporting column close to the stabilizing rod is provided with an avoidance hole for the stabilizing rod to pass through.
[0014] The top of described two bosses is fixedly provided with the movable frame, and the two bosses are connected with the movable frame in a fixed manner.
[0015] Preferably, a rotating shaft is provided at one end of the top of the eccentric plate away from the linkage rod, and one end of the linkage plate close to the eccentric plate is assembled on the rotating shaft.
[0016] Preferably, the top end of the linkage rod is fixedly connected to a locking plate, the edge of the top of the locking plate is fixedly connected to a plurality of locking columns, the edge of the locking plate is provided with locking holes corresponding to the locking columns one by one, and the locking plate is connected to the locking columns through the locking holes.
[0017] Preferably, a linear slider is fixedly connected to the top end of the linkage shaft, and the linkage shaft is slidably connected to the linear guide rail via the linear slider, and the cross-sectional shapes of the linear slider and the linear guide rail are both I-shaped.
[0018] Preferably, both sides of the linkage shaft are fixedly connected with limit strips, the top and bottom ends of the locking seat are also provided with limit slots corresponding to the limit strips, and the limit strips are also slidably connected inside the corresponding limit slots.
[0019] Preferably, the positioning plate is an arc-shaped structure, and anti-slip grooves are provided on the inner side of the positioning plate.
[0020] Preferably, a U-shaped frame is fixedly connected to one side of the stabilization plate, and a handle is rotatably connected to the side of the U-shaped frame away from the stabilization plate, and the end of the handle close to the threaded rod is also fixedly connected to the threaded rod.
[0021] Beneficial effects
[0022] The present invention provides a truss support system based on green steel structure buildings. Compared with the existing technology, it has the following advantages:
[0023] This truss support system based on green steel structure buildings can be quickly assembled and used on site without the help of bolts through the structural coordination of base components, support components and truss mounting components, which greatly shortens the time spent on site preparation and greatly improves the convenience of overall application.
[0024] This truss support system based on green steel structure buildings can easily adjust the spacing of supporting columns according to the specifications of the trusses through the structural coordination of the guiding components, thereby reducing the limitations of the overall application.
[0025] The truss support system based on the green steel structure building can lock the position of the sleeve while clamping the truss through the structural coordination of the positioning components, making the whole more stable. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 It is a schematic diagram of the present invention as a whole;
[0027] Figure 2 It is an isolated view of the base assembly, support assembly and truss mounting assembly of the present invention;
[0028] Figure 3 is a schematic diagram of a base assembly of the present invention;
[0029] Figure 4 is a schematic diagram of a support assembly of the present invention;
[0030] Figure 5 This is a schematic diagram of the separation structure of the guide slide bar and the support column of the present invention;
[0031] Figure 6 It is a schematic diagram of the assembly of the truss mounting assembly of the present invention;
[0032] Figure 7 This is a schematic diagram of the connection structure between the adjustment plate and the push plate of the present invention;
[0033] Figure 8 Schematic diagram of the connection structure between the displacement plate A and the pushing plate of the present invention;
[0034] Figure 9 Schematic diagram of the assembly structure of the displacement plate B of the present invention;
[0035] Figure 10 Schematic diagram of the transmission structure of the threaded rod of the present invention;
[0036] Figure 11 It is a schematic diagram of the splicing between multiple groups of support components of the present invention.
[0037] In the figure, 1, base assembly; 2, support assembly; 3, truss mounting assembly; 4, stabilizing bottom plate; 5, assembly pin A; 6, limit plate; 7, limit slot A; 8, guide slide; 9, support column; 10, guide assembly; 11, assembly pin B; 12, storage slot A; 13, assembly plate; 14, sleeve; 15, positioning assembly; 16, linkage rod; 17, eccentric plate; 18, linkage plate; 19, locking ring; 20, matching lock seat; 21, matching lock slot; 22, positioning screw; 23, support frame; 24, displacement shaft; 25, Locking plate; 26. Transmission plate; 27. Limiting slot B; 28. Transmission screw; 29. Linear guide; 30. Extension seat; 31. Linkage shaft; 32. Adjustment plate; 33. Limiting seat; 34. Limiting light rod; 35. Displacement plate A; 36. Pushing plate; 37. Stabilizing rod; 38. Avoidance hole; 39. Limiting slide rail; 40. Displacement plate B; 41. Positioning plate; 42. Assembly ear; 43. Guide plate; 44. Guide slot; 45. Stabilizing plate; 46. Threaded rod; 47. Pushing rack; 48. Stabilizing column; 49. Linkage pin. DETAILED DESCRIPTION
[0038] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only 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 ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0039] Example 1:
[0040] See also Figure 1-11 , a truss support system based on green steel structure building, including:
[0041] The base assembly 1 includes a stabilizing base plate 4 and an assembly pin A5. The middle portion of the top of the stabilizing base plate 4 is fixedly connected to the assembly pin A5.
[0042] Support assembly 2, support assembly 2 includes a limit plate 6, a limit slot A7 and a guide slide 8. The four end corners of the limit plate 6 are provided with a limit slot A7, the interior of each limit slot A7 is fixedly connected to a guide slide 8, and the outer side of each guide slide 8 is slidably connected to a support column 9. A guide assembly 10 is provided in the middle of the limit plate 6, and the guide assembly 10 is used to lock the position of the support column 9. The top of each support column 9 is fixedly connected to an assembly pin B11, and the bottom end of each support column 9 is provided with a receiving groove A12 spliced with the assembly pin B11;
[0043] The truss mounting assembly 3 is used to cooperate with the support assembly 2 and the base assembly 1 to support the truss. The truss mounting assembly 3 includes an assembly plate 13 and a sleeve 14. The middle of the bottom end of the assembly plate 13 is fixedly connected to the sleeve 14 that cooperates with the assembly pin B11. The top end of the assembly plate 13 is provided with a positioning assembly 15, which is used to position the truss.
[0044] The guide assembly 10 includes a linkage rod 16, an eccentric plate 17, a linkage plate 18, a locking ring 19, a locking seat 20, a locking slot 21 and a positioning screw 22. The middle part of the top of the limit plate 6 is rotatably connected to the linkage rod 16, and the outer side of the bottom end of the linkage rod 16 is fixedly connected to the eccentric plate 17 corresponding to the support column 9. The middle part of the support column 9 is rotatably connected to the linkage plate 18, and the end of the linkage plate 18 away from the support column 9 is also rotatably connected to the corresponding eccentric plate 17. The outer side of one of the support columns 9 is also fixedly connected. There is a locking ring 19, and the end of the limit plate 6 close to the locking ring 19 is fixedly connected to a lock seat 20, and the top of the lock seat 20 is provided with a lock groove 21, and one end of the locking ring 19 is also slidably connected to the inside of the lock groove 21. The end of the locking ring 19 close to the lock groove 21 is also provided with a positioning screw 22. The middle part of the limit plate 6 is fixedly connected to a support frame 23, and the top of the support frame 23 is provided with an anti-sway component. The anti-sway component is used to cooperate with the assembly pin B11 and the receiving groove A12 to form a splicing between the two support columns 9;
[0045] In this embodiment, a rotating shaft is provided at one end of the top of the eccentric plate 17 away from the linkage rod 16, and an end of the linkage plate 18 close to the eccentric plate 17 is assembled on the rotating shaft. By setting the rotating shaft, the linkage plate 18 can be stably assembled with the eccentric plate 17 by means of the rotating shaft, and the smoothness of the assembly of the linkage plate 18 between the support column 9 and the eccentric plate 17 can be ensured.
[0046] The anti-sway assembly includes a displacement shaft 24, a locking plate 25, a transmission plate 26, a limit slot B27, a transmission screw 28 and a linear guide rail 29. The middle part of the top of the support frame 23 is vertically slidably connected to the displacement shaft 24, the bottom end of the displacement shaft 24 is fixedly connected to the locking plate 25, and the bottom end of the locking plate 25 is connected to the linkage rod 16 by a card. The top of the displacement shaft 24 is fixedly connected to the transmission plate 26, and the four end corners of the transmission plate 26 are provided with a limit slot B27, and the support column 9 is also slidably connected to the corresponding Inside the limiting through slot B27, the middle part of the transmission plate 26 is rotatably connected to a transmission screw 28, and the bottom end of the transmission screw 28 is also threadedly connected to the support frame 23. The four end corners of the bottom end of the transmission plate 26 are fixedly connected to linear guide rails 29. The outer side of each support column 9 is fixedly connected to an extension seat 30. The middle part of the extension seat 30 is vertically slidably connected to a linkage shaft 31, and the top end of the linkage shaft 31 is also slidably connected to the outer side of the linear guide rail 29. The bottom end of the linkage shaft 31 is fixedly connected to an adjustment plate 32.
[0047] In this embodiment, the top of the linkage rod 16 is fixedly connected to a locking plate, and the edge of the top of the locking plate is fixedly connected to a plurality of locking posts. The edge of the locking plate 25 is provided with locking holes corresponding to the locking posts, and the locking plate 25 is connected to the locking posts through the locking holes. By utilizing the structure of the locking posts and the locking holes, when the displacement shaft 24 slides downward, the locking posts will penetrate the locking holes, thereby ensuring the connection stability between the locking plate 25 and the linkage rod 16. When the locking plate 25 is connected to the locking posts, the displacement shaft 24 is linearly displaced, thereby limiting the rotation of the linkage rod 16 and preventing the linkage rod 16 from rotating.
[0048] In this embodiment, a linear slider is fixedly connected to the top of the linkage shaft 31, and the linkage shaft 31 is slidably connected to the linear guide rail 29 through the linear slider. The cross-sectional shapes of the linear slider and the linear guide rail 29 are both I-shaped. The arrangement of the linear slider enables the linkage shaft 31 to form a stable assembly with the linear slider and the linear guide rail 29. The I-shaped structural characteristics ensure that the linear slider will not fall off the linear guide rail 29 when sliding on the linear guide rail 29.
[0049] In other embodiments, the cross-sectional shape of the linear guide rail 29 and the linear slider may also be a dovetail shape;
[0050] The outer side of the bottom end of the support column 9 is fixedly connected to the limit seat 33, and the inner side of the limit seat 33 is fixedly connected to the limit light rod 34. The limit light rod 34 is slidably connected to the displacement plate A35. The end of the adjustment plate 32 away from the linkage shaft 31 is rotatably connected to the push plate 36, and the end of the push plate 36 away from the adjustment plate 32 is also rotatably connected to the displacement plate A35. The side of the displacement plate A35 close to the support column 9 is fixedly connected to the stabilizing rod 37. The side of the support column 9 close to the stabilizing rod 37 is provided with an avoidance hole 38 for the stabilizing rod 37 to pass through;
[0051] Furthermore, both sides of the linkage shaft rod 31 are fixedly connected to limit strips, and the top and bottom ends of the lock seat 20 are also provided with limit grooves corresponding to the limit strips, and the limit strips are also slidably connected to the corresponding limit grooves. By utilizing the structural cooperation between the limit strips and the limit grooves, the displacement of the linkage shaft rod 31 can be limited during the sliding process of the linkage shaft rod 31 along the extension seat 30, thereby preventing the linkage shaft rod 31 from rotating at the extension seat 30, thereby ensuring the stability of the linkage shaft rod 31 during displacement;
[0052] Example 2:
[0053] See also Figure 1-11, this embodiment provides a technical solution based on the first embodiment: the positioning assembly 15 includes a limited slide rail 39, a displacement plate B40, a positioning plate 41, an assembly ear 42, a guide plate 43 and a guide groove 44, both ends of the top of the assembly plate 13 are fixedly connected to the limited slide rail 39, both ends of the limited slide rail 39 are slidably connected to the displacement plate B40, the tops of the two displacement plates B40 are fixedly connected to the positioning plate 41, one end of the two displacement plates B40 is fixedly connected to the assembly ear 42, the end of the assembly ear 42 away from the displacement plate B40 is fixedly connected to the guide plate 43, and the middle of the guide plate 43 is fixedly connected to the guide plate 43. A guide groove 44 is provided at the bottom, and one end of the assembly plate 13 near the assembly ear 42 is fixedly connected to a stabilizing plate 45. A threaded rod 46 is rotatably connected to one side of the stabilizing plate 45. The outer side of the threaded rod 46 is threadedly connected to a pushing rack 47. The bottom end of the stabilizing plate 45 is laterally slidably connected to a stabilizing column 48. Through holes are provided at positions corresponding to the sleeve 14 and the assembly pin B11 and the stabilizing column 48. The end of the stabilizing column 48 near the pushing rack 47 is also connected to the pushing rack 47. Both ends of the top of the pushing rack 47 are fixedly connected to linkage pins 49, and the two linkage pins 49 are movably connected to the inside of the two guide grooves 44 respectively.
[0054] Here, the positioning plate 41 is an arc-shaped structure, and the inner side of the positioning plate 41 is provided with anti-slip grooves. The shape characteristics of the positioning plate 41 can increase the contact range between the positioning plate 41 and the truss. In addition, the anti-slip grooves can increase the friction force when the positioning plate 41 contacts the truss, preventing the truss from moving at the positioning plate 41, thereby ensuring the application effect of the positioning plate 41.
[0055] In this embodiment, the anti-slip pattern may be in the shape of a "<" or a wave shape;
[0056] In this embodiment, a U-shaped frame is fixedly connected to one side of the stabilizing plate 45, and a handle is rotatably connected to the side of the U-shaped frame away from the stabilizing plate 45. The end of the handle close to the threaded rod 46 is also fixedly connected to the threaded rod 46. The setting of the handle allows people to easily rotate the threaded rod 46, thereby improving the transmission effect of the threaded rod 46. In other embodiments, a handle can also be vertically slidably connected to the handle, and the outer side of the handle is provided with an anti-slip sleeve.
[0057] Meanwhile, the contents not described in detail in this specification belong to the prior art known to those skilled in the art.
[0058] Working principle: First, move the assembly pin A5 into the bottom-level storage groove A12. According to the height of the truss, the support columns 9 are spliced. First, the storage groove A12 of another set of support columns 9 is placed on the outside of the assembly pin B11 located below it, thereby forming an assembly between the two sets of support columns 9. Then, rotate the transmission screw 28. Under the connection between the transmission screw 28 and the support frame 23, the transmission screw 28 can drive the transmission plate 26 to vertically move under the limit of the displacement shaft 24, and at the same time, push the linkage shaft 31 through the linear guide 29, so that the linkage shaft 31 follows the displacement under the support of the extension seat 30;
[0059] Since the push plate 36 is assembled between the adjustment plate 32 and the displacement plate A35, when the linkage shaft 31 is displaced, the adjustment plate 32 can push the push plate 36, and the displacement plate A35 is pushed by the push plate 36 to move linearly under the limit of the limit light rod 34, so that the stabilizing rod 37 is close to the support column 9 until the stabilizing rod 37 passes through the avoidance hole 38 and fits tightly with the assembly pin B11 in the receiving groove A12, thereby locking the assembly pin B11 inside the receiving groove A12;
[0060] The assembly pin A5 can be locked in position by rotating the transmission screw 28 at the support column 9 connected thereto so that the corresponding stabilizing rod 37 passes through the avoidance hole 38 and fits tightly with the assembly pin A5;
[0061] The assembling plate 13 is put on the uppermost assembling pin B11 through the sleeve 14, forming the initial assembly between the assembling pin B11 and the sleeve 14, and then the truss is hoisted between the two positioning plates 41, and the threaded rod 46 is rotated at the same time, and the threaded rod 46 is matched with the connection of the pushing rack 47, so that the pushing rack 47 can be displaced along the pushing rack 47, and the stabilizing column 48 is pushed toward the sleeve 14 through the pushing rack 47, so that the stabilizing column 48 moves into the through hole, and the sleeve 14 is limited to prevent the sleeve 14 from uncontrollable movement. Under the connection between the pushing rack 47 and the linkage pin 49, the linkage pin 49 can follow the displacement of the pushing rack 47 to push the guide groove 44. Due to the inclined setting of the guide plate 43, the two displacement plates B40 can be driven to move toward each other under the limit of the limiting slide rail 39, so as to clamp the truss laterally between the two positioning plates 41 and effectively support the truss. Figure 11 As shown;
[0062] Before the support columns 9 are spliced, the positioning screws 22 can be loosened to disengage the positioning screws 22 from the locking seats 20, thereby reducing the friction of the sliding of the support columns 9. Subsequently, any one of the support columns 9 can be pulled to displace the support columns 9 under the guidance of the guide slide rods 8, and the eccentric plate 17 can be pulled by the linkage plate 18 at the displaced support column 9. Since the eccentric plate 17 is supported by the linkage rod 16, the remaining eccentric plates 17 can be driven to rotate by means of the linkage rod 16, so as to push the remaining support columns 9 through the remaining eccentric plates 17, so as to cause multiple support columns 9 to be displaced at the same time, thereby adjusting the distance between the multiple support columns 9 to meet the support requirements of trusses of different widths.
[0063] After adjustment, tighten the positioning screw 22 so that the positioning screw 22 fits tightly with the locking seat 20 to initially lock the position of the support column 9. When the locking plate 25 is subsequently connected to the linkage rod 16, the linkage rod 16 will be restricted by the locking plate 25 and cannot rotate, thereby further locking the position of the support column 9 and ensuring the stability of the adjustment of the support column 9.
[0064] In summary, the truss support system based on the green steel structure building, through the structural coordination of the base component 1, the support component 2 and the truss mounting component 3, can be quickly assembled and used on site without the aid of bolts, which greatly shortens the time spent on site preparation and greatly improves the convenience of the overall application.
[0065] The truss support system based on the green steel structure building can conveniently adjust the spacing of the support columns 9 according to the specifications of the truss through the structural coordination of the guide assembly 10, thereby reducing the limitations of the overall application.
[0066] The truss support system based on the green steel structure building can lock the position of the sleeve 14 while clamping the truss through the structural coordination of the positioning component 15, making the whole more stable.
[0067] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.
[0068] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A truss support system based on a green steel structure building, characterized by: include: A base assembly (1), the base assembly (1) comprising a stabilizing base plate (4) and an assembly pin A (5), wherein the middle portion of the top end of the stabilizing base plate (4) is fixedly connected to the assembly pin A (5); A support assembly (2), the support assembly (2) comprising a limit plate (6), a limit slot A (7) and a guide slide (8), the limit plate (6) is provided with a limit slot A (7) at each of its four end corners, the interior of each limit slot A (7) is fixedly connected to a guide slide (8), the outer side of each guide slide (8) is slidably connected to a support column (9), a guide assembly (10) is provided in the middle of the limit plate (6), the guide assembly (10) is used to lock the position of the support column (9), the top end of each support column (9) is fixedly connected to an assembly pin B (11), and the bottom end of each support column (9) is provided with a receiving slot A (12) spliced with the assembly pin B (11); A truss mounting assembly (3), the truss mounting assembly (3) is used to cooperate with the support assembly (2) and the base assembly (1) to support the truss, the truss mounting assembly (3) includes an assembly plate (13) and a sleeve (14), the middle of the bottom end of the assembly plate (13) is fixedly connected to the sleeve (14) that cooperates with the assembly pin B (11), and the top end of the assembly plate (13) is provided with a positioning assembly (15), and the positioning assembly (15) is used to position the truss; The guide assembly (10) includes a linkage rod (16), an eccentric plate (17), a linkage plate (18), a locking ring (19), a locking seat (20), a locking slot (21) and a positioning screw (22). The middle part of the top of the limit plate (6) is rotatably connected to the linkage rod (16), the outer side of the bottom end of the linkage rod (16) is fixedly connected to the eccentric plate (17) corresponding to the support column (9), the middle part of the support column (9) is rotatably connected to the linkage plate (18), and the end of the linkage plate (18) away from the support column (9) is also rotatably connected to the corresponding eccentric plate (17), and the outer side of one of the support columns (9) is also fixedly connected to the A locking ring (19) is connected, and one end of the limiting plate (6) close to the locking ring (19) is fixedly connected to a locking seat (20), and a locking groove (21) is provided at the top of the locking seat (20), and one end of the locking ring (19) is also slidably connected to the inside of the locking groove (21), and a positioning screw (22) is also provided at one end of the locking ring (19) close to the locking groove (21), and the middle part of the limiting plate (6) is fixedly connected to a support frame (23), and the top of the support frame (23) is provided with an anti-sway component, and the anti-sway component is used to cooperate with the assembly pin B (11) and the receiving groove A (12) to form a splicing between the two supporting columns (9).
2. The truss support system based on green steel structure building according to claim 1 is characterized by: The anti-sway assembly includes a displacement shaft (24), a locking plate (25), a transmission plate (26), a limiting slot B (27), a transmission screw (28) and a linear guide rail (29). The middle part of the top of the support frame (23) is vertically slidably connected to the displacement shaft (24), the bottom end of the displacement shaft (24) is fixedly connected to the locking plate (25), and the bottom end of the locking plate (25) is snap-connected to the linkage rod (16). The top end of the displacement shaft (24) is fixedly connected to the transmission plate (26), and the four end corners of the transmission plate (26) are all provided with limiting slots B (27), and the support column (9) is also slidably connected to the Inside the corresponding limiting slot B (27), the middle part of the transmission plate (26) is rotatably connected to a transmission screw (28), and the bottom end of the transmission screw (28) is also threadedly connected to the support frame (23), and the four end corners of the bottom end of the transmission plate (26) are fixedly connected to linear guide rails (29), and the outer side of each support column (9) is fixedly connected to an extension seat (30), and the middle part of the extension seat (30) is vertically slidably connected to a linkage shaft (31), and the top end of the linkage shaft (31) is also slidably connected to the outer side of the linear guide rail (29), and the bottom end of the linkage shaft (31) is fixedly connected to an adjustment plate (32); The outer side of the bottom end of the support column (9) is fixedly connected to a limit seat (33), the inner side of the limit seat (33) is fixedly connected to a limit light rod (34), and a displacement plate A (35) is slidably connected to the limit light rod (34). The end of the adjustment plate (32) away from the linkage shaft (31) is rotatably connected to a push plate (36), and the end of the push plate (36) away from the adjustment plate (32) is also rotatably connected to the displacement plate A (35). The displacement plate A (35) is fixedly connected to a stabilizing rod (37) on the side close to the support column (9), and an avoidance hole (38) for the stabilizing rod (37) to pass through is opened on the side of the support column (9) close to the stabilizing rod (37).
3. The truss support system based on green steel structure building according to claim 1 is characterized by: The positioning assembly (15) includes a limited slide rail (39), a displacement plate B (40), a positioning plate (41), an assembly ear (42), a guide plate (43) and a guide slot (44). Both ends of the top of the assembly plate (13) are fixedly connected to the limited slide rail (39). Both ends of the limited slide rail (39) are slidably connected to the displacement plate B (40). The tops of the two displacement plates B (40) are fixedly connected to the positioning plate (41). One end of the two displacement plates B (40) is fixedly connected to the assembly ear (42). The end of the assembly ear (42) away from the displacement plate B (40) is fixedly connected to the guide plate (43) at an angle. The middle of the guide plate (43) is provided with a guide slot (44). One end of the assembly plate (13) near the assembly ear (42) is fixedly connected to a stabilizing plate (45), one side of the stabilizing plate (45) is rotatably connected to a threaded rod (46), the outer side of the threaded rod (46) is threadedly connected to a push rack (47), the bottom end of the stabilizing plate (45) is laterally slidably connected to a stabilizing column (48), the sleeve (14) and the assembly pin B (11) are provided with through holes at positions corresponding to the stabilizing column (48), the end of the stabilizing column (48) near the push rack (47) is also connected to the push rack (47), both ends of the top of the push rack (47) are fixedly connected to linkage pins (49), and the two linkage pins (49) are movably connected to the inside of the two guide slots (44) respectively.
4. The truss support system based on green steel structure building according to claim 1 is characterized by: A rotating shaft is provided at one end of the top of the eccentric plate (17) away from the linkage rod (16), and an end of the linkage plate (18) close to the eccentric plate (17) is assembled on the rotating shaft.
5. The truss support system based on green steel structure building according to claim 2 is characterized in that: The top end of the linkage rod (16) is fixedly connected to a locking disk, the edge of the top of the locking disk is fixedly connected to a plurality of locking columns, the edge of the matching lock disk (25) is provided with matching lock holes corresponding to the locking columns, and the matching lock disk (25) is connected to the locking columns via the matching lock holes.
6. The truss support system based on green steel structure building according to claim 2 is characterized by: A linear slider is fixedly connected to the top end of the linkage shaft (31), and the linkage shaft (31) is slidably connected to the linear guide rail (29) via the linear slider, and the cross-sections of the linear slider and the linear guide rail (29) are both I-shaped.
7. The truss support system based on green steel structure building according to claim 2 is characterized by: Both sides of the linkage shaft (31) are fixedly connected to limit bars, and the top and bottom ends of the locking seat (20) are also provided with limit slots corresponding to the limit bars, and the limit bars are also slidably connected inside the corresponding limit slots.
8. The truss support system based on green steel structure building according to claim 3 is characterized by: The positioning plate (41) is an arc-shaped structure, and anti-slip grooves are provided on the inner side of the positioning plate (41).
9. The truss support system based on green steel structure building according to claim 3 is characterized by: One side of the stabilizing plate (45) is fixedly connected to a U-shaped frame, and the side of the U-shaped frame away from the stabilizing plate (45) is rotatably connected to a handle, and the end of the handle close to the threaded rod (46) is also fixedly connected to the threaded rod (46).
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Steel structure truss supporting structure
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