Green temporary building assembled building with recyclable spiral anchor foundation

By adopting a recyclable helical anchor foundation design in prefabricated green temporary buildings, and utilizing components such as helical anchors, quick-release bolts, and solar panels, the problems of unstable installation and resource waste in prefabricated green temporary buildings have been solved. This has achieved stable connection, rapid disassembly, and environmentally friendly power supply, thereby improving resource utilization and environmental protection.

CN122071882APending Publication Date: 2026-05-22SHAOXING DAMING ELECTRICITY CONSTRUCT CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHAOXING DAMING ELECTRICITY CONSTRUCT CO LTD
Filing Date
2024-11-20
Publication Date
2026-05-22

AI Technical Summary

Technical Problem

Existing green temporary buildings using prefabricated structures suffer from problems such as unstable construction and installation, serious waste of resources, inability to assemble and disassemble, and severe environmental damage.

Method used

The green temporary prefabricated building adopts a recyclable spiral anchor foundation, which includes an adjustable and removable anchor structure, a removable and removable splicing plate structure, an adjustable environmentally friendly power supply plate structure, and a non-destructive foldable tread structure. It achieves stable connection, quick disassembly, and environmentally friendly power supply through components such as spiral anchors, quick-release bolts, and solar panels.

Benefits of technology

It enables stable installation and rapid dismantling of buildings, saves resources, reduces environmental damage, and improves the reuse rate of resources and environmental protection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of building equipment, and particularly relates to a green temporary building assembled building with a recyclable spiral anchor foundation. An assembled building for green temporary construction of a recyclable spiral anchor foundation comprises an upper assembly type container (1), a lower assembly type container (2), a connecting vertical plate (3), a house enclosure frame (4), a foundation (5), an adjustable dismounting and mounting anchor rod structure (6) and a detachable mounting splice plate structure (7). The upper assembly type container (1) is arranged on the upper portion of the lower assembly type container (2), and the lower assembly type container (2) is arranged on the lower portion of the upper assembly type container (1). A connecting vertical plate (3) is in bolted connection with the right side between the upper assembly type container (1) and the lower assembly type container (2); and the right part of the connecting vertical plate (3) is in bolted connection with a house enclosure frame (4).
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Description

Technical Field

[0001] This invention belongs to the field of building equipment technology, specifically relating to a green temporary prefabricated building with a recyclable spiral anchor foundation. Background Technology

[0002] Prefabricated container-style standardized containers are used as temporary office buildings and living quarters. Excavator spiral anchor foundation technology is applied to the temporary office buildings (using prefabricated containers) in an elevated manner to reduce the damage to farmland caused by the large-scale hardening of traditional temporary construction sites and to eliminate the need for land reclamation work after the project is completed.

[0003] Currently, prefabricated buildings are widely used in green temporary construction. However, existing prefabricated buildings for green temporary construction still suffer from problems such as unstable construction and installation leading to serious resource waste, inability to assemble and disassemble, poor green and environmentally friendly effects, and serious environmental damage.

[0004] Therefore, it is essential to invent a green temporary prefabricated building with a recyclable spiral anchor foundation. Summary of the Invention

[0005] The purpose of this invention is to provide a green temporary prefabricated building with a recyclable helical anchor foundation to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, the present invention provides the following technical solution:

[0007] A green temporary prefabricated building with a recyclable spiral anchor foundation includes an upper prefabricated container (1), a lower prefabricated container (2), a connecting upright (3), a house frame (4), a foundation (5), an adjustable and detachable anchor structure (6), a detachable splicing plate structure (7), an adjustable environmentally friendly power supply plate structure (8), and a non-destructive foldable pedal structure (9). The upper prefabricated container (1) is located on the upper part of the lower prefabricated container (2). The connecting upright (3) is bolted to the right side of the upper prefabricated container (1) and the lower prefabricated container (2). The house frame (4) is bolted to the right side of the connecting upright (3).

[0008] The foundation (5) is equipped with an adjustable and detachable anchor structure (6); the upper assembled container (1) and the lower assembled container (2) are connected by a detachable splicing plate structure (7); the adjustable environmentally friendly power supply board structure (8) is connected to the house frame (4); the non-destructible foldable pedal structure (9) is connected to the house frame (4).

[0009] The adjustable and detachable anchor bolt structure (6) includes a height adjustment disc (61), an adjustment screw (62), an adjustment nut (63), a connecting flange (64), and a recyclable spiral anchor bolt (65). The four corners of the lower part of the height adjustment disc (61) are all welded with adjustment screws (62). The outer wall of the adjustment screw (62) is threaded with a pair of adjustment nuts (63). The outer side of the adjustment screws (62) is sleeved with a connecting flange (64). The connecting flange (64) is threaded to the upper end of the recyclable spiral anchor bolt (65).

[0010] Preferably, the detachable splicing panel structure (7) includes mounting holes (71), mounting plates (72), upper detachable splicing base (73), lower detachable splicing base (74), quick-release bolts (75) and quick-release nuts (76). The mounting holes (71) are located on the left and right sides inside the mounting plate (72). The mounting plates (72) are welded to the upper left and right sides of the upper detachable splicing base (73) and the lower left and right sides of the lower detachable splicing base (74). The upper detachable splicing base (73) and the lower detachable splicing base (74) are connected by quick-release bolts (75). The quick-release bolts (75) and the quick-release nuts (76) are threaded together.

[0011] Preferably, the adjustable environmentally friendly power supply board structure (8) includes a power supply board (81), a mounting frame (82), a movable plate (83), a U-shaped bracket (84), an adjusting push rod (85), and a connecting seat (86). The power supply board (81) is bolted to the inside of the mounting frame (82) at equal intervals from left to right. The mounting frame (82) is screwed to the middle part of the upper surface of the movable plate (83). The right side of the movable plate (83) is axially connected to the upper part of the inner side of the U-shaped bracket (84). One end of the adjusting push rod (85) is axially connected to the inside of the connecting seat (86), and the other end is axially connected to the left side of the inside of the movable plate (83).

[0012] Preferably, the non-destructible foldable pedal structure (9) includes a connecting seat (91), a main folding pedal (92), an anti-slip pad (93), a secondary folding pedal (94), and a side guard plate (95). The connecting seat (91) is axially connected to the left end of the main folding pedal (92). The upper surface right side of both the main folding pedal (92) and the secondary folding pedal (94) is screwed with the anti-slip pad (93). The side guard plate (95) is axially connected to the front and rear surfaces between the main folding pedal (92) and the secondary folding pedal (94).

[0013] Preferably, the adjusting nut (63) is disposed on the upper and lower sides of the connecting flange (64).

[0014] Preferably, the height adjustment discs (61) are all bolted to the four bottom corners of the lower assembled container (2).

[0015] Preferably, the recyclable helical anchor (65) uses multiple stainless steel helical anchors and is screwed into the foundation (5).

[0016] Preferably, the upper disassembly and splicing base (73) is bolted to the front and rear surfaces of the lower side of the upper assembled container (1) by means of mounting plate (72); the lower disassembly and splicing base (74) is bolted to the front and rear surfaces of the upper part of the lower assembled container (2) by means of mounting plate (72).

[0017] Compared with the prior art, the beneficial effects of the present invention are:

[0018] (1) The present invention provides a green temporary prefabricated building with a recyclable spiral anchor foundation. In the present invention, the height adjustment plate, adjustment screw, adjustment nut, connecting flange and recyclable spiral anchor are convenient to install, efficient and time-saving. By loosening the adjustment nut, the height of the adjustment screw can be adjusted. After determining the position between the height adjustment plate and the connecting flange, the adjustment nut can be locked. Then the recyclable spiral anchor can be screwed into the foundation to carry out the installation operation.

[0019] (2) The present invention provides a green temporary prefabricated building with a recyclable spiral anchor foundation. In the present invention, the installation holes, installation plates, upper disassembly splicing seats, lower disassembly splicing seats, quick-release bolts and quick-release nuts are set up to facilitate the disassembly of the upper and lower prefabricated containers and facilitate installation. The installation and fixing operation can be carried out with the upper and lower prefabricated containers by using the installation holes and installation plates in conjunction with the bolts. Then, the upper and lower disassembly splicing seats in conjunction with the quick-release bolts and quick-release nuts can be used for quick installation and disassembly operations. The use cost is low and the reuse rate is high.

[0020] (3) The present invention provides a green temporary building with a recyclable spiral anchor foundation. In the present invention, the setting of the power supply board, the mounting frame, the movable plate, the U-shaped bracket, the adjusting push rod and the connecting seat is conducive to green environmental protection and saving electricity. By adjusting the position of the adjusting push rod inside the connecting seat, the tilt position of the movable plate inside the U-shaped bracket can be changed, and the power supply board inside the mounting frame can perform photoelectric conversion operation, saving electricity and being green, environmentally friendly and pollution-free.

[0021] (4) The present invention provides a green temporary building with a recyclable spiral anchor foundation. In the present invention, the connecting seat, main folding pedal, anti-slip mat, secondary folding pedal and side guard plate are significantly beneficial to environmental protection. There is no need to build steps, which is environmentally friendly and economical. You can step in through the main folding pedal and secondary folding pedal. The anti-slip mat can be used for anti-slip operation. The side guard plate ensures the support stability, which is convenient to operate. There is no need to build additional steps, which is economical and environmentally friendly.

[0022] (5) The present invention provides a green temporary building with a recyclable spiral anchor foundation. In the present invention, the setting of the upper and lower prefabricated containers is conducive to environmental protection and high recycling value. Ordinary asbestos tile boxes are basically all construction waste after being scrapped. After the containers are scrapped, more than 70% of the steel part of the building can be taken back to the steelmaking furnace for recycling and steelmaking, thus saving resources.

[0023] (6) The present invention provides a green temporary building with a recyclable spiral anchor foundation. In the present invention, the setting of the connecting plate and the house frame is conducive to installation and connection and easy to operate. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the structure of the present invention.

[0025] Figure 2 This is a schematic diagram of the adjustable and detachable anchor bolt structure of the present invention.

[0026] Figure 3 This is a structural schematic diagram of the detachable and installable splicing panel structure of the present invention.

[0027] Figure 4 This is a schematic diagram of the adjustable environmentally friendly power supply board structure of the present invention.

[0028] Figure 5 This is a schematic diagram of the non-destructible foldable pedal structure of the present invention.

[0029] In the diagram: 1. Upper prefabricated container; 2. Lower prefabricated container; 3. Connecting upright; 4. House frame; 5. Foundation; 6. Adjustable and detachable anchor bolt structure; 61. Height adjustment disc; 62. Adjusting screw; 63. Adjusting nut; 64. Connecting flange; 65. Recyclable spiral anchor bolt; 7. Detachable splicing plate structure; 71. Mounting hole; 72. Mounting plate; 73. Upper detachable splicing seat; 74. Lower detachable splicing seat; 75. Quick-release bolt; 76. Quick-release nut; 8. Adjustable environmentally friendly power supply board structure; 81. Power supply board; 82. Mounting frame; 83. Movable plate; 84. U-shaped bracket; 85. Adjusting push rod; 86. Connecting seat; 9. Non-destructive foldable pedal structure; 91. Connecting seat; 92. Main folding pedal; 93. Anti-slip mat; 94. Secondary folding pedal; 95. Side guard plate. Detailed Implementation

[0030] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0031] The present invention will now be described in detail with reference to the accompanying drawings, as shown below. Figure 1 and attached Figure 2 As shown, a green temporary prefabricated building with a recyclable spiral anchor foundation includes an upper prefabricated container 1, a lower prefabricated container 2, a connecting upright 3, a building frame 4, and a foundation 5. The upper prefabricated container 1 is located on top of the lower prefabricated container 2. The connecting upright 3 is bolted to the right side of the upper prefabricated container 1 and the lower prefabricated container 2. The building frame 4 is bolted to the right side of the connecting upright 3. This design is environmentally friendly and has a high residual value. Ordinary asbestos tile boxes are basically all construction waste after being scrapped, while more than 70% of the steel parts of the container building can be recycled and used for steelmaking after the container is scrapped, thus saving resources.

[0032] One type of green temporary prefabricated building with a recyclable spiral anchor foundation also includes an adjustable and detachable anchor bolt structure 6, a detachable and detachable splicing plate structure 7, an adjustable and environmentally friendly power supply plate structure 8, and a non-destructive foldable step structure 9. The adjustable and detachable anchor bolt structure 6 is installed inside the foundation 5; the upper prefabricated container 1 and the lower prefabricated container 2 are connected by the detachable and detachable splicing plate structure 7; the adjustable and environmentally friendly power supply plate structure 8 is connected to the building frame 4; and the non-destructive foldable step structure 9 is connected to the building frame 4.

[0033] The adjustable and detachable anchor bolt structure 6 includes a height adjustment disc 61, an adjustment screw 62, an adjustment nut 63, a connecting flange 64, and a recyclable spiral anchor bolt 65. Adjustment screws 62 are welded to the four lower corners of the height adjustment disc 61. Pairs of adjustment nuts 63 are threaded onto the outer walls of the adjustment screws 62. A connecting flange 64 is sleeved on the outer side of the adjustment screws 62. The connecting flange 64 is threaded onto the upper end of the recyclable spiral anchor bolt 65. By loosening the adjustment nut 63, the height of the adjustment screw 62 can be adjusted. After determining the position between the height adjustment disc 61 and the connecting flange 64, the adjustment nut 63 can be tightened, and then the recyclable spiral anchor bolt 65 can be screwed into the foundation 5 for installation.

[0034] In this implementation plan, in conjunction with the appendix Figure 3 As shown, the detachable and installable splicing panel structure 7 includes mounting holes 71, mounting plates 72, an upper detachable splicing base 73, a lower detachable splicing base 74, quick-release bolts 75, and quick-release nuts 76. The mounting holes 71 are located on the left and right sides inside the mounting plate 72. The mounting plates 72 are welded to the upper left and right sides of the upper detachable splicing base 73 and the lower left and right sides of the lower detachable splicing base 74. The upper detachable splicing base 73 and the lower detachable splicing base 74 are connected by quick-release bolts 75. The quick-release bolts 75 and quick-release nuts 76 are threaded together. The mounting holes 71 and the mounting plate 72, along with the bolts, allow for installation and fixing with the upper assembled container 1 and the lower assembled container 2. The upper detachable splicing base 73 and the lower detachable splicing base 74, along with the quick-release bolts 75 and quick-release nuts 76, enable quick installation and disassembly. This design features low cost and high reusability.

[0035] In this implementation plan, in conjunction with the appendix Figure 4 As shown, the adjustable environmentally friendly power supply board structure 8 includes a power supply board 81, a mounting frame 82, a movable plate 83, a U-shaped bracket 84, an adjusting push rod 85, and a connecting seat 86. The power supply board 81 is bolted to the inside of the mounting frame 82 at equal intervals from left to right. The mounting frame 82 is screwed to the middle part of the upper surface of the movable plate 83. The right side of the movable plate 83 is axially connected to the upper inner side of the U-shaped bracket 84. One end of the adjusting push rod 85 is axially connected to the inside of the connecting seat 86, and the other end is axially connected to the left side of the movable plate 83. By adjusting the position of the adjusting push rod 85 inside the connecting seat 86, the tilt position of the movable plate 83 inside the U-shaped bracket 84 can be changed. This allows the power supply board 81 inside the mounting frame 82 to perform photoelectric conversion, saving electricity and being green, environmentally friendly, and pollution-free.

[0036] In this implementation plan, in conjunction with the appendix Figure 5As shown, the non-destructive foldable pedal structure 9 includes a connecting seat 91, a main folding pedal 92, an anti-slip pad 93, a secondary folding pedal 94, and side guards 95. The inner side of the connecting seat 91 is pivotally connected to the left end of the main folding pedal 92. The upper surface right side of both the main folding pedal 92 and the secondary folding pedal 94 is screwed with the anti-slip pad 93. The side guards 95 are pivotally connected to the front and rear surfaces between the main folding pedal 92 and the secondary folding pedal 94. The main folding pedal 92 and the secondary folding pedal 94 can be used for stepping, the anti-slip pad 93 provides anti-slip operation, and the side guards 95 ensure support stability, making operation convenient and eliminating the need for additional construction, thus saving resources and being environmentally friendly.

[0037] In this embodiment, specifically, the adjusting nut 63 is disposed on the upper and lower sides of the connecting flange 64.

[0038] In this embodiment, specifically, the height adjustment discs 61 are all bolted to the four bottom corners of the lower assembled container 2.

[0039] In this embodiment, specifically, the recyclable helical anchor 65 uses multiple stainless steel helical anchors and is screwed into the foundation 5.

[0040] In this embodiment, specifically, the upper disassembly and splicing base 73 is bolted to the front and rear surfaces of the lower side of the upper assembled container 1 using mounting plates 72; the lower disassembly and splicing base 74 is bolted to the front and rear surfaces of the upper part of the lower assembled container 2 using mounting plates 72.

[0041] In this embodiment, specifically, the connecting seat 86 and the U-shaped bracket 84 are bolted to the middle parts of the left and right sides of the top of the house frame 4.

[0042] In this implementation plan, specifically, the house frame 4 is a U-shaped aluminum alloy frame.

[0043] In this implementation scheme, specifically, the adjusting push rod 85 is a three-stage stainless steel telescopic rod.

[0044] In this embodiment, specifically, the connecting seat 91 is bolted to the front and rear parts of the lower right side of the house frame 4.

[0045] In this embodiment, specifically, both the main folding pedal 92 and the secondary folding pedal 94 are made of aluminum alloy plate.

[0046] In this embodiment, specifically, the anti-slip pad 93 is a rubber pad.

[0047] In this embodiment, specifically, the power supply board 81 is a solar panel, and the wires are connected to the internal equipment of the lower assembled container 2.

[0048] In this implementation plan, specifically, the upper assembled container 1 and the lower assembled container 2 are containers with built-in thermal insulation rock wool layers.

[0049] Working principle:

[0050] In this invention, by loosening the adjusting nut 63, the height of the adjusting screw 62 can be adjusted. Once the position between the height adjusting disc 61 and the connecting flange 64 is determined, the adjusting nut 63 can be tightened. Then, the recyclable spiral anchor rod 65 is screwed into the foundation 5 for installation. The upper assembled container 1 and the lower assembled container 2 can be installed and fixed using bolts through the mounting holes 71 and mounting plate 72. Finally, quick-release bolts 75 and quick-release nuts 76 are used with the upper disassembly and splicing base 73 and lower disassembly and splicing base 74 for rapid installation. The installation and disassembly process is simple, with low operating costs and high reusability. By adjusting the position of the push rod 85 inside the connecting seat 86, the tilt position of the movable plate 83 inside the U-shaped bracket 84 can be changed. Photoelectric conversion can be performed through the power supply plate 81 inside the mounting frame 82, saving electricity and being green, environmentally friendly, and pollution-free. It can be stepped into through the main folding pedal 92 and the secondary folding pedal 94. The anti-slip pad 93 provides anti-slip operation, and the side guard plate 95 ensures support stability. It is easy to operate, requires no additional construction, and is economical and environmentally friendly.

[0051] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A green temporary prefabricated building with a recyclable helical anchor foundation, characterized in that: The green temporary prefabricated building with recyclable spiral anchor foundation includes an upper prefabricated container (1), a lower prefabricated container (2), a connecting upright plate (3), a house frame (4), a foundation (5), an adjustable and detachable anchor bolt structure (6), a detachable and detachable splicing plate structure (7), an adjustable environmentally friendly power supply plate structure (8), and a non-destructive foldable pedal structure (9). The upper prefabricated container (1) is located on the upper part of the lower prefabricated container (2). The connecting upright plate (3) is bolted to the right side of the upper prefabricated container (1) and the lower prefabricated container (2). The house frame (4) is bolted to the right side of the connecting upright plate (3). The foundation (5) is equipped with an adjustable and detachable anchor structure (6); the upper assembled container (1) and the lower assembled container (2) are connected by a detachable splicing plate structure (7); the adjustable environmentally friendly power supply board structure (8) is connected to the house frame (4); the non-destructible foldable pedal structure (9) is connected to the house frame (4). The adjustable and detachable anchor bolt structure (6) includes a height adjustment disc (61), an adjustment screw (62), an adjustment nut (63), a connecting flange (64), and a recyclable spiral anchor bolt (65). The four corners of the lower part of the height adjustment disc (61) are all welded with adjustment screws (62). The outer wall of the adjustment screw (62) is threaded with a pair of adjustment nuts (63). The outer side of the adjustment screws (62) is sleeved with a connecting flange (64). The connecting flange (64) is threaded to the upper end of the recyclable spiral anchor bolt (65).

2. The green temporary prefabricated building with a recyclable helical anchor foundation according to claim 1, characterized in that: The detachable splicing panel structure (7) includes mounting holes (71), mounting plates (72), upper detachable splicing base (73), lower detachable splicing base (74), quick-release bolts (75) and quick-release nuts (76). The mounting holes (71) are located on the left and right sides inside the mounting plate (72). The mounting plates (72) are welded to the upper left and right sides of the upper detachable splicing base (73) and the lower left and right sides of the lower detachable splicing base (74). The upper detachable splicing base (73) and the lower detachable splicing base (74) are connected by quick-release bolts (75). The quick-release bolts (75) and the quick-release nuts (76) are threaded together.

3. A green temporary prefabricated building with a recyclable helical anchor foundation as described in claim 1, characterized in that: The adjustable environmentally friendly power supply board structure (8) includes a power supply board (81), a mounting frame (82), a movable plate (83), a U-shaped bracket (84), an adjusting push rod (85), and a connecting seat (86). The power supply board (81) is bolted to the inside of the mounting frame (82) at equal intervals from left to right. The mounting frame (82) is screwed to the middle part of the upper surface of the movable plate (83). The right side of the movable plate (83) is axially connected to the upper part of the inner side of the U-shaped bracket (84). One end of the adjusting push rod (85) is axially connected to the inside of the connecting seat (86), and the other end is axially connected to the left side of the inside of the movable plate (83).

4. A green temporary prefabricated building with a recyclable helical anchor foundation as described in claim 1, characterized in that: The non-destructible foldable pedal structure (9) includes a connecting seat (91), a main folding pedal (92), an anti-slip pad (93), a secondary folding pedal (94), and a side guard plate (95). The connecting seat (91) is axially connected to the left end of the main folding pedal (92). The upper surface right side of the main folding pedal (92) and the secondary folding pedal (94) are screwed with anti-slip pads (93). The side guard plates (95) are axially connected to the front and rear surfaces between the main folding pedal (92) and the secondary folding pedal (94).

5. A green temporary prefabricated building with a recyclable helical anchor foundation as described in claim 1, characterized in that: The adjusting nut (63) is located on the upper and lower sides of the connecting flange (64).

6. A green temporary prefabricated building with a recyclable helical anchor foundation as described in claim 1, characterized in that: The height adjustment discs (61) are all bolted to the four corners of the bottom of the lower assembled container (2).

7. A green temporary prefabricated building with a recyclable helical anchor foundation as described in claim 1, characterized in that: The recyclable helical anchor (65) uses multiple stainless steel helical anchors and is screwed into the foundation (5).

8. A green temporary prefabricated building with a recyclable helical anchor foundation according to claim 1, characterized in that: The upper disassembly and splicing base (73) is bolted to the front and rear surfaces of the lower side of the upper assembled container (1) by mounting plate (72); the lower disassembly and splicing base (74) is bolted to the front and rear surfaces of the upper part of the lower assembled container (2) by mounting plate (72).