Assembled building support base

By designing a stabilizing device and a compacting device on the prefabricated building support seat, the problem of unstable support seat connection in the prior art is solved, and higher stability and load-bearing capacity are achieved.

CN119686437BActive Publication Date: 2025-05-13贵州装备制造职业学院

Patent Information

Application Number
CN202510214996.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2025-05-13
Estimated Expiration
2045-02-26

AI Technical Summary

Technical Problem

The existing prefabricated building support seats have poor stability when connecting to the ground through bolt fixation. Over time, the bolts may loosen due to vibration, temperature changes or load changes, resulting in unstable connections and affecting the stability of the support seats.

Method used

A prefabricated building support seat is designed, using stabilization and compaction devices. The stabilization device includes fixing nails, embedded cylinders, through-hole discs, oblique chutes, slide columns, push plates and triangle snaps, and triangle teeth. Through the cooperation of these components, ensure that the fixing nails and cross nails are stably inserted into the ground to avoid loosening. The compacting device uses components such as rotating rods, cams, groove plates, sliders and compacting plates to drive the compacting plates to compact the ground around the support base, improving the load-bearing capacity and stability of the ground.

Benefits of technology

Through the design of the stabilization device and the compaction device, the stability of the support seat and the ground connection is ensured, the unstable problem caused by loose bolts is avoided, and the overall stability and load-bearing capacity of the support seat are improved. In addition, the compaction device can fill the voids of the soil layer, reduce soil looseness, and further improve the load-bearing capacity of the ground.

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Abstract

The present invention discloses an assembled building support seat, and relates to the technical field of assembled buildings. The present invention includes a support seat, a mounting tube is fixed on the top of the support seat, and a stabilizing device is arranged at the four corners of the support seat, and the stabilizing device includes a fixing nail and an embedded tube, the embedded tube is fixed to the bottom of the support seat, the fixing nail is plugged into the top of the embedded tube, and a circular groove for accommodating the fixing nail is provided on the top of the support seat. The present invention, through the arrangement of the stabilizing device, enables the fixing nail, the embedded tube, the through-hole plate, the inclined groove, the sliding column, and the push plate to cooperate to drive the cross nail to be inserted into the ground laterally, thereby ensuring that the embedded tube stably fixes the support seat, and then continues to drive the fixing nail into the ground, so that the fixing nail fixes the position of the push plate through the through-hole plate and the inclined groove, thereby ensuring the stability of the cross nail being nailed into the ground.
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Description

Technical Field

[0001] The invention relates to the technical field of assembled buildings, in particular to an assembled building support seat. Background Art

[0002] The prefabricated building support is a basic component used in prefabricated building structures to carry and support prefabricated components. It is usually made of steel or concrete and has high load-bearing capacity and stability. The support plays a role in positioning, supporting and reinforcing components during the installation process, which helps to improve construction efficiency, reduce on-site construction difficulties, and ensure the safety and stability of the structure.

[0003] The Chinese patent with patent announcement number CN221001379U discloses an assembled building support seat, which belongs to the field of building support seats. An assembled building support seat includes a support seat, a ring frame is connected and fixedly arranged on the support seat, a mobile seat is slidably arranged on the ring frame, a safety monitoring mechanism is slidably arranged on the mobile seat, an assembly hole is opened on the support seat, a plurality of ribs are connected and fixedly arranged on the support seat, and a plurality of mounting holes are opened through the support seat. By setting a safety monitoring mechanism, the motor can drive the mobile seat to perform a circular movement, so that the camera can perform a circular detection on the support seat. At the same time, under the action of the contact inclined guide plate and the spring, the safety monitoring mechanism will be automatically moved out and stored when in use and not in use, which is convenient for realizing the protection of the camera and ensuring timely monitoring of the outer wall of the support seat.

[0004] However, the current building support base has the following problems: the stability of the building support base connected to the ground by bolts is poor. Over time, the bolts may loosen due to vibration, temperature changes or load changes, resulting in an unstable connection and affecting the stability of the support base. Therefore, we propose an assembled building support base. Summary of the invention

[0005] In view of the deficiencies in the prior art, the present invention provides an assembled building support base, which solves the problems raised in the above-mentioned background technology.

[0006] To achieve the above objectives, the present invention is implemented through the following technical solutions: an assembled building support seat, comprising a support seat, an assembly cylinder is fixed on the top of the support seat, and stabilization devices are arranged at the four corners of the support seat, the stabilization device comprises fixing nails and embedded cylinders, the embedded cylinders are fixed to the bottom of the support seat, the fixing nails are inserted into the top of the embedded cylinders, a circular groove for accommodating the fixing nails is provided on the top of the support seat, a through-hole disk is rotatably installed on the top of the inner wall of the embedded cylinder, four inclined grooves are evenly arranged on the top circumference of the through-hole disk, four push plates are evenly slidably installed on the bottom circumference of the inner wall of the embedded cylinder, a spring is provided between the push plate and the inner wall of the embedded cylinder, and a plurality of push plates are fixed on the side of the push plate away from the center of the embedded cylinder The top of the push plate is fixed with a sliding column, and the sliding column is slidably installed in the inside of the inclined groove. The outside of the fixing nail is provided with a groove, and the inner side of the through-hole plate is fixed with a convex block matching the groove of the fixing nail. The outer wall of the embedded cylinder is provided with a circular hole for accommodating the cross nail, and the circumferential surface of the cross nail is arranged in an annular wavy shape, and the fixing nail is inserted into the embedded cylinder, and the groove of the fixing nail coincides with the convex block of the through-hole plate, and the fixing nail is rotated, and the fixing nail drives the through-hole plate to rotate, and the through-hole plate drives the inclined groove to rotate, and the inclined groove pushes the sliding column to drive the push plate to move in a direction away from the center of the embedded cylinder, and the push plate drives the cross nail to move out of the circular hole of the embedded cylinder. At this time, the cross nail is inserted horizontally into the ground, and then the fixing nail continues to be nailed into the ground, and the position of the fixing nail is fixed.

[0007] According to the above technical solution, the stabilizing device includes a plurality of triangular teeth and a triangular buckle. A sliding groove is opened on the top outer wall of the fixing nail. The triangular buckle is slidably installed inside the sliding groove of the fixing nail, and a spring is provided between the triangular buckle and the inner wall of the sliding groove of the fixing nail. The circumference of the plurality of triangular teeth is evenly fixed on the inner wall of the circular groove of the support seat. The inclined surface of the triangular teeth is arranged toward the rotation direction of the through-hole disk. After the fixing nail is fixed, the fixing nail will be in the circular groove of the support seat, and the fixing nail will drive the vertical surface of the triangular buckle to counteract the vertical surface of the triangular tooth, so that the triangular tooth limits the position of the fixing nail through the triangular buckle.

[0008] According to the above technical solution, a cross groove is provided on the top of the support seat, and a tamping device is arranged at the support seat, and the tamping device includes a rotating rod and a slide plate. The rotating rod is rotatably installed at the bottom of the inner wall of the cross groove of the support seat through a bracket, a cam is fixed on the outside of the rotating rod, and the slide plate is slidably installed inside the cross groove of the support seat, a through groove plate is fixed on the top of the slide plate, and the cam is located inside the through groove plate. Tamping plates are fixed on both sides of the slide plate. After the support seat is fixed, the rotating rod is driven to rotate by a motor, and the rotating rod drives the cam to rotate. The cam rotates inside the through groove plate, and the cam pushes the through groove plate to drive the slide plate to move back and forth up and down along the cross groove of the support seat, and the slide plate drives the tamping plate to move back and forth up and down.

[0009] The U-shaped frame is fixed with a plurality of movable frames and a plurality of movable frames are installed on the movable frame to move upward.

[0010] According to the above technical solution, one-way bearings for limiting the one-way rotation of the shaft rod are fixed on both sides of the lower inner wall of the U-shaped frame. Every time the slide plate drives the tamping plate to move downward, the U-shaped frame is pulled toward the support seat by the hinged rod, and the U-shaped frame drives the soil-turning blades to move through the rotating wheel and the shaft rod. At this time, the one-way bearing will limit the rotation trajectory of the shaft rod.

[0011] According to the above technical scheme, a dehumidification device is provided at the four corners below the assembly cylinder, and the dehumidification device includes a folding bag, the folding bag is fixed to the bottom of the inner wall of the cross groove of the support seat, the top of the folding bag is fixed with a pressure plate, the pressure plate is fixed to the outer wall of the through-groove plate, a one-way air inlet nozzle is fixed to the outer wall below the folding bag, a folding tube is fixed on the top of the pressure plate, the top of the folding tube passes through the bottom of the assembly cylinder, the folding tube is a one-way air outlet structure, a drain port is provided in the middle of the bottom of the inner wall of the assembly cylinder, the one-way air inlet nozzle is used to control the one-way air intake of the folding bag, and the folding tube is used to control the one-way air outlet of the folding bag, each time the through-groove plate moves upward, the through-groove plate drives the pressure plate to move upward, the pressure plate drives the folding bag to stretch, and the folding bag is replenished with air through the one-way air inlet nozzle, and when the through-groove plate moves downward, the through-groove plate drives the pressure plate to squeeze the folding bag, and the air in the folding bag is injected into the assembly cylinder through the folding tube.

[0012] The present invention provides an assembled building support base, which has the following beneficial effects:

[0013] (1) The present invention sets a stabilizing device so that the fixing nail, embedded tube, through-hole plate, inclined groove, sliding column and push plate cooperate to drive the cross nail to be inserted into the ground horizontally, thereby ensuring that the embedded tube can stably fix the support seat, and then continue to drive the fixing nail into the ground, so that the fixing nail can fix the position of the push plate through the through-hole plate and the inclined groove, thereby ensuring the stability of the cross nail being driven into the ground; at the same time, the triangular buckle and the triangular tooth cooperate to limit the position of the fixing nail, thereby avoiding the problem that the fixing nail is loosened and twisted due to external force, affecting the stability of the cross nail being driven into the ground.

[0014] (2) The present invention sets a compacting device so that the rotating rod, cam and through-groove plate cooperate to drive the compacting plate to compact the ground around the support seat. By compacting the ground, the ground in the area where the support seat is located will become more solid, thereby increasing the bearing capacity of the support seat and improving the stability of the support seat; at the same time, the slide plate, hinged rod, U-shaped frame, support seat, telescopic rod, rotating wheel and shaft rod cooperate to drive the soil turning blades to push the soil into the area below the compacting plate, thereby filling the gaps in the soil layer around the support seat and reducing the looseness of the soil. As the soil density increases, the bearing capacity of the ground is improved, providing the support seat with stronger support force and stability, and avoiding the instability of the support seat caused by soft ground.

[0015] (3) The present invention provides a dehumidification device so that the through-groove plate, the pressure plate, the folding bag, and the one-way air inlet nozzle cooperate to drive the air in the folding bag to be injected into the assembly cylinder through the folding tube. When the assembly cylinder is damp, the air in the folding bag enters the assembly cylinder, which can promote the air circulation inside the assembly cylinder and increase the ventilation effect. This helps to accelerate the discharge of moisture and prevent moisture accumulation, keeping the assembly cylinder dry, which helps to extend the service life of the assembly cylinder and other components. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 The present invention is schematically shown as a whole Figure 1 ;

[0017] Figure 2 The present invention is schematically shown as a whole Figure 2 ;

[0018] Figure 3 A partial cross-sectional view of the stabilizing device of the present invention Figure 1 ;

[0019] Figure 4 For the present invention Figure 3 A schematic diagram of the structure at A;

[0020] Figure 5 A partial cross-sectional view of the stabilizing device of the present invention Figure 2 ;

[0021] Figure 6 is a schematic diagram of a compaction device of the present invention;

[0022] Figure 7 For the present invention Figure 6 A schematic diagram of the structure at B;

[0023] Figure 8 is a schematic diagram of a dehumidification device of the present invention;

[0024] Fig. 9 It is a schematic diagram of the structure of the inclined slot and the sliding column of the present invention.

[0025] In the figure: 1. support seat; 2. assembly tube; 3. stabilizing device; 31. fixing nail; 32. embedded tube; 33. through-hole plate; 34. push plate; 35. cross nail; 36. inclined groove; 37. sliding column; 38. triangular teeth; 39. triangular buckle; 4. tamping device; 41. rotating rod; 42. cam; 43. through-groove plate; 44. slide plate; 45. tamping plate; 46. telescopic rod; 47. U-shaped frame; 48. hinged rod; 49. rotating wheel; 410. shaft rod; 411. soil-turning blade; 412. one-way bearing; 5. dehumidification device; 51. folding bag; 52. one-way air inlet nozzle; 53. pressure plate; 54. folding tube. DETAILED DESCRIPTION

[0026] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0027] See also Figure 1 - Fig. 9 One embodiment of the present invention is: an assembled building support seat, comprising a support seat 1, a mounting tube 2 is fixed on the top of the support seat 1, and a stabilizing device 3 is arranged at the four corners of the support seat 1, the stabilizing device 3 comprises a fixing nail 31 and an embedded tube 32, the embedded tube 32 is fixed to the bottom of the support seat 1, the fixing nail 31 is plugged into the top of the embedded tube 32, a circular groove for accommodating the fixing nail 31 is opened on the top of the support seat 1, a through-hole plate 33 is rotatably installed on the top of the inner wall of the embedded tube 32, and four inclined grooves 36 (such as Figure 5As shown in the figure, four push plates 34 are evenly slidably installed on the bottom circumference of the inner wall of the embedded tube 32, a spring is arranged between the push plate 34 and the inner wall of the embedded tube 32, a plurality of cross nails 35 are fixed on the side of the push plate 34 away from the center of the embedded tube 32, a slide column 37 is fixed on the top of the push plate 34, and the slide column 37 is slidably installed inside the inclined groove 36, a groove is provided on the outside of the fixing nail 31, a convex block matching the groove of the fixing nail 31 is fixed on the inner side of the through-hole plate 33, and a groove is provided on the outer wall of the embedded tube 32. A circular hole is provided for accommodating the cross nail 35, and the circumferential surface of the cross nail 35 is arranged in an annular wavy shape. Through the arrangement of the above structure, the cross nail 35 is inserted horizontally into the ground, thereby ensuring that the embedded tube 32 stably fixes the support seat 1, and then the fixing nail 31 continues to be nailed into the ground. The position of the fixing nail 31 is fixed, so that the fixing nail 31 fixes the position of the push plate 34 through the through-hole plate 33 and the inclined groove 36, thereby ensuring the stability of the cross nail 35 nailed into the ground.

[0028] The stabilizing device 3 includes a plurality of triangular teeth 38 and triangular buckles 39. A sliding groove is provided on the top outer wall of the fixing nail 31. The triangular buckle 39 is slidably installed inside the sliding groove of the fixing nail 31, and a spring is provided between the triangular buckle 39 and the inner wall of the sliding groove of the fixing nail 31. A plurality of triangular teeth 38 are evenly fixed on the inner wall of the circular groove of the support seat 1. The inclined surface of the triangular teeth 38 is arranged toward the rotation direction of the through-hole disk 33. Through the arrangement of the above structure, the triangular teeth 38 limit the position of the fixing nail 31 through the triangular buckle 39, thereby avoiding the problem that the fixing nail 31 is loosened and twisted due to external force, affecting the stability of the cross nail 35 nailed into the ground.

[0029] A cross groove is provided on the top of the support seat 1, and a tamping device 4 is provided at the support seat 1. The tamping device 4 includes a rotating rod 41 and a slide plate 44. The rotating rod 41 is rotatably installed at the bottom of the inner wall of the cross groove of the support seat 1 through a bracket, a cam 42 is fixed to the outside of the rotating rod 41, and the slide plate 44 is slidably installed inside the cross groove of the support seat 1, and a through groove plate 43 is fixed to the top of the slide plate 44, and the cam 42 is located inside the through groove plate 43. Tamping plates 45 are fixed on both sides of the slide plate 44. Through the arrangement of the above structure, the tamping plates 45 tamp the ground around the support seat 1. By tamping the ground, the ground in the area where the support seat 1 is located will be more solid, thereby increasing the bearing capacity of the support seat 1 and improving the stability of the support seat 1.

[0030] The compacting device 4 also includes four telescopic rods 46, the fixed ends of the four telescopic rods 46 are respectively fixed to the outer walls of both sides of the support seat 1, and the telescopic ends of two adjacent telescopic rods 46 are fixed with U-shaped frames 47. A shaft rod 410 is rotatably installed on the inner wall below the U-shaped frame 47, and a rotating wheel 49 is fixed at both ends of the shaft rod 410. A soil turning blade 411 is evenly fixed on the circumference of the middle outer wall of the shaft rod 410. A hinged rod 48 is hinged on one side of the U-shaped frame 47 close to the support seat 1, and the hinged rod 48 is away from the support seat 1. One end of the U-shaped frame 47 is hinged to the top of the slide plate 44. Through the arrangement of the above structure, the rotating wheel 49 drives the turning blades 411 to rotate through the shaft rod 410. The turning blades 411 push the soil into the area below the tamping plate 45, thereby filling the gaps in the soil layer around the support seat 1 and reducing the looseness of the soil. As the soil density increases, the bearing capacity of the ground is improved, providing the support seat 1 with stronger support force and stability, and avoiding the instability of the support seat 1 caused by the soft ground.

[0031] One-way bearings 412 for limiting the one-way rotation of the shaft 410 are fixed on both sides of the lower inner wall of the U-shaped frame 47. Through the arrangement of the above-mentioned structure, the one-way bearings 412 will limit the rotation trajectory of the shaft 410, so that the rotating wheel 49 will not rotate due to the friction between the ground. At this time, the soil-turning blades 411 directly push the soil to gather in the area below the compacting plate 45.

[0032] The fixing pin 31 is then inserted into the fixing pin 31 so that the groove of the fixing pin 31 coincides with the protrusion of the through hole plate 33. The fixing pin 31 is rotated, and the fixing pin 31 drives the through hole plate 33 to rotate. The through hole plate 33 drives the inclined slot 36 to rotate. The inclined slot 36 pushes the sliding post 37 to drive the push plate 34 to move in the direction away from the center of the embedded tube 32. The push plate 34 drives the cross pin 35 to move out of the circular hole of the embedded tube 32. At this time, the cross pin 35 is inserted horizontally into the ground, thereby ensuring that the embedded tube 32 is stably fixed to the support seat 1. Subsequently, the fixing pin 31 continues to be nailed into the ground, and the position of the fixing pin 31 is fixed, so that the fixing pin 31 fixes the position of the push plate 34 through the through hole plate 33 and the inclined slot 36, thereby ensuring the stability of the cross pin 35 nailed into the ground. After the fixing pin 31 is fixed, the fixing pin 31 will be in the circular groove of the support seat 1 The fixing nail 31 will drive the vertical surface of the triangular buckle 39 to abut against the vertical surface of the triangular tooth 38, so that the triangular tooth 38 limits the position of the fixing nail 31 through the triangular buckle 39, thereby avoiding the fixing nail 31 to be loosened and twisted due to external force, affecting the stability of the cross nail 35 being nailed into the ground. Finally, one end of the building support column is placed in the assembly tube 2, and the building support column and the assembly tube 2 are connected by bolts to achieve the installation of the building support column. It should be noted that when disassembly is required, the fixing nail 31 is pulled out upward, the fixing nail 31 drives the triangular buckle 39 to stagger with the triangular tooth 38, and the fixing nail 31 is rotated, the fixing nail 31 drives the through-hole disk 33 to drive the inclined groove 36 to rotate in the opposite direction, and the inclined groove 36 pushes the sliding column 37 to drive the push plate 34 to move in the direction of the center of the embedded tube 32. At this time, the cross nail 35 is no longer inserted into the ground. At this time, the fixing nail 31 is continued to be pulled out, and the disassembly operation of the support seat 1 can be achieved.

[0033] After the support base 1 is fixed, the motor drives the rotating rod 41 to rotate, and the rotating rod 41 drives the cam 42 to rotate. The cam 42 rotates inside the through-slot plate 43, and the cam 42 pushes the through-slot plate 43 to drive the slide plate 44 to move back and forth along the cross groove of the support base 1, and the slide plate 44 drives the tamping plate 45 to move back and forth up and down, so that the tamping plate 45 tamps the ground around the support base 1. By tamping the ground, the ground in the area where the support base 1 is located will be more solid, thereby increasing the bearing capacity of the support base 1 and improving the stability of the support base 1; every time the slide plate 44 drives the tamping plate 45 to move upward, the slide plate 44 pushes the U-shaped frame 47 to move away from the support base 1 through the hinged rod 48, and the U-shaped frame 47 drives the telescopic end of the telescopic rod 46 to stretch, and the U-shaped frame 47 drives the rotating wheel 49 to move accordingly. Under the action of the friction between the rotating wheel 49 and the ground, The turning wheel 49 drives the tilling blades 411 to rotate through the shaft 410, and the tilling blades 411 push the soil into the area below the tamping plate 45, thereby filling the gaps in the soil layer around the support seat 1 and reducing the looseness of the soil. As the soil density increases, the bearing capacity of the ground is improved, providing the support seat 1 with a stronger supporting force and stability, and avoiding the instability of the support seat 1 caused by the loose ground. Every time the slide plate 44 drives the tamping plate 45 to move downward, the U-shaped frame 47 is pulled toward the direction of the support seat 1 through the hinge rod 48. The U-shaped frame 47 drives the tilling blades 411 to move along through the turning wheel 49 and the shaft 410. At this time, the one-way bearing 412 will limit the rotation trajectory of the shaft 410, so that the turning wheel 49 will not rotate due to the friction between the ground. At this time, the tilling blades 411 directly push the soil to gather in the area below the tamping plate 45.

[0034] See also Figure 1 - Figure 8On the basis of the above embodiment, in another embodiment of the present invention, a dehumidification device 5 is provided at each of the four corners below the assembly cylinder 2, and the dehumidification device 5 comprises a folding capsule 51, which is fixed to the bottom of the inner wall of the cross groove of the support seat 1, and a pressing plate 53 is fixed to the top of the folding capsule 51, and the pressing plate 53 is fixed to the outer wall of the through-groove plate 43, and a one-way air inlet nozzle 52 is fixed to the outer wall below the folding capsule 51, and a folding tube 54 is fixed to the top of the pressing plate 53, and the top of the folding tube 54 passes through the bottom of the assembly cylinder 2, and the folding tube 54 is a one-way air outlet structure, and a drainage port is provided in the middle of the bottom of the inner wall of the assembly cylinder 2, and the one-way air inlet nozzle 52 is fixed to the outer wall below the folding capsule 51. The air inlet nozzle 52 is used to control the one-way air intake of the folding bag 51, and the folding tube 54 is used to control the one-way air outlet of the folding bag 51. Through the arrangement of the above-mentioned structure, the through-groove plate 43 drives the pressure plate 53 to squeeze the folding bag 51, and the air in the folding bag 51 is injected into the assembly tube 2 through the folding tube 54. When the assembly tube 2 is damp, the air in the folding bag 51 enters the assembly tube 2, which can promote the air circulation inside the assembly tube 2 and increase the ventilation effect. This helps to accelerate the discharge of moisture, prevent moisture accumulation, keep the assembly tube 2 dry, and help to extend the service life of the assembly tube 2 and other components.

[0035] During use, each time the through-groove plate 43 moves upward, the through-groove plate 43 drives the pressure plate 53 to move upward, and the pressure plate 53 drives the folding bag 51 to stretch, and the folding bag 51 is replenished with air through the one-way air inlet nozzle 52. When the through-groove plate 43 moves downward, the through-groove plate 43 drives the pressure plate 53 to squeeze the folding bag 51, and the air in the folding bag 51 is injected into the assembly tube 2 through the folding tube 54. When the assembly tube 2 is damp, the air in the folding bag 51 enters the assembly tube 2, which can promote the air circulation inside the assembly tube 2 and increase the ventilation effect. This helps to accelerate the discharge of moisture, while preventing moisture accumulation, keeping the assembly tube 2 dry, and helping to extend the service life of the assembly tube 2 and other components.

[0036] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.

Claims

1. An assembled building support base, comprising a support base (1), a mounting tube (2) being fixed to the top of the support base (1), characterized in that: The four corners of the support seat (1) are each provided with a stabilizing device (3), the stabilizing device (3) comprising a fixing nail (31) and an embedded tube (32), the embedded tube (32) being fixed to the bottom of the support seat (1), the fixing nail (31) being plugged into the top of the embedded tube (32), the top of the support seat (1) being provided with a circular groove for accommodating the fixing nail (31), the top of the inner wall of the embedded tube (32) being rotatably provided with a through-hole disk (33), the through-hole disk (33) being Four inclined grooves (36) are evenly arranged on the top circumference of the embedded tube (33); four push plates (34) are evenly and slidably installed on the bottom circumference of the inner wall of the embedded tube (32); a spring is provided between the push plate (34) and the inner wall of the embedded tube (32); a plurality of cross nails (35) are fixed on the side of the push plate (34) away from the center of the embedded tube (32); a sliding column (37) is fixed on the top of the push plate (34); and the sliding column (37) is slidably installed inside the inclined groove (36); A cross groove is formed on the top of the support seat (1). A tamping device (4) is provided on the support seat (1). The tamping device (4) comprises a rotating rod (41) and a slide plate (44). The rotating rod (41) is rotatably mounted on the bottom of the inner wall of the cross groove of the support seat (1) through a bracket. A cam (42) is fixed to the outside of the rotating rod (41). The slide plate (44) is slidably mounted inside the cross groove of the support seat (1). A through-groove plate (43) is fixed to the top of the slide plate (44). The cam (42) is located inside the through-groove plate (43). Tamping plates (45) are fixed on both sides of the slide plate (44).

2. The assembled building support base according to claim 1, characterized in that: The fixing pin (31) is provided with a groove on its exterior, and a protrusion matching the groove of the fixing pin (31) is fixed on the interior of the through-hole plate (33).

3. The assembled building support base according to claim 1, characterized in that: A circular hole for accommodating a transverse nail (35) is provided on the outer wall of the embedded cylinder (32), and the circumferential surface of the transverse nail (35) is arranged in an annular wave shape.

4. The assembled building support base according to claim 1, characterized in that: The stabilizing device (3) comprises a plurality of triangular teeth (38) and a triangular buckle (39); a sliding groove is provided on the top outer wall of the fixing nail (31); the triangular buckle (39) is slidably mounted inside the sliding groove of the fixing nail (31); a spring is provided between the triangular buckle (39) and the inner wall of the sliding groove of the fixing nail (31); and a plurality of triangular teeth (38) are evenly fixed on the inner wall of the circular groove of the support seat (1) in a circumferential manner.

5. The assembled building support base according to claim 4, characterized in that: The inclined surface of the triangular tooth (38) is arranged toward the rotation direction of the through-hole disk (33).

6. The assembled building support base according to claim 1, characterized in that: The compacting device (4) further comprises four telescopic rods (46), the fixed ends of the four telescopic rods (46) being respectively fixed to the outer walls on both sides of the support seat (1), the telescopic ends of two adjacent telescopic rods (46) being fixed with a U-shaped frame (47), a shaft rod (410) being rotatably mounted on the inner wall below the U-shaped frame (47), a rotating wheel (49) being fixed to both ends of the shaft rod (410), soil turning blades (411) being evenly fixed on the circumference of the middle outer wall of the shaft rod (410), a hinged rod (48) being hingedly connected to one side of the U-shaped frame (47) close to the support seat (1), and one end of the hinged rod (48) away from the U-shaped frame (47) being hingedly connected to the top of the slide plate (44).

7. The assembled building support base according to claim 6, characterized in that: One-way bearings (412) for limiting the one-way rotation of the shaft rod (410) are fixed on both sides of the lower inner wall of the U-shaped frame (47).

8. The assembled building support base according to claim 1, characterized in that: Dehumidification devices (5) are provided at the four corners below the assembly cylinder (2), and the dehumidification device (5) comprises a folding capsule (51), the folding capsule (51) is fixed to the bottom of the inner wall of the cross groove of the support seat (1), a pressure plate (53) is fixed to the top of the folding capsule (51), the pressure plate (53) is fixed to the outer wall of the through-groove plate (43), a one-way air inlet nozzle (52) is fixed to the outer wall below the folding capsule (51), a folding tube (54) is fixed to the top of the pressure plate (53), the top of the folding tube (54) passes through the bottom of the assembly cylinder (2), the folding tube (54) is a one-way air outlet structure, and a drainage port is provided in the middle of the bottom of the inner wall of the assembly cylinder (2).

9. The assembled building support base according to claim 8, characterized in that: The one-way air inlet nozzle (52) is used to control the one-way air inlet of the folding bag (51), and the folding tube (54) is used to control the one-way air outlet of the folding bag (51).

Citation Information

Patent Citations

  • Assembled building support base

    CN221001379U

  • Water conservancy project dam anti-seepage ecological protection structure

    CN118207834A

  • Fabricated building supporting seat

    CN220815071U

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