Building aluminum formwork stabilizing device
By designing an aluminum formwork stabilization device including supporting top rod, top plate, fixed ring and oblique rod, the problem of single support method and insufficient support area is solved, and a more stable support effect and space saving function is achieved.
Patent Information
- Application Number
- CN202510463106.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2025-06-24
AI Technical Summary
The traditional aluminum formwork has a single support method and limited support area, which leads to the aluminum formwork being easily deformed and displaced during construction, affecting the quality of concrete pouring.
A stable device for building aluminum formwork is designed, including supporting top rod, top plate 1, fixing ring and oblique rod. Through the expansion and retraction of the oblique rod, the support area is increased or reduced, and through the coordination of the connecting rod and the fixing plate, the support force is effectively transmitted.
By expanding the support area, the device enhances the support stability of the aluminum formwork, reduces safety hazards caused by unstable support during construction, and saves space for storage when not needed.
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Figure CN120193658A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of construction equipment, and particularly relates to a stabilizing device for building aluminum formwork. Background Art
[0002] Aluminum formwork is a building material used in construction and engineering, usually used in the formwork support system for concrete masonry. It is made of aluminum alloy, with the characteristics of high strength and light weight, making it easy to handle and install at the construction site. Moreover, compared with traditional wooden formwork, aluminum formwork has a longer service life and a higher reuse rate. Building formwork is a device used to assist in the setting and solidification of concrete when building houses. Among them, there is a type of aluminum formwork that can be recycled, achieving the effect of energy conservation and environmental protection. When using aluminum formwork, support jacks and top plates are required to support the aluminum formwork.
[0003] The traditional support method for aluminum formwork is often relatively single, mostly using simple support jacks or bracket structures, and only relying on a few support points to support the aluminum formwork, with a limited support area. This leads to the aluminum formwork being prone to deformation and displacement due to uneven stress during construction operations such as concrete pouring, affecting the quality of concrete pouring. Summary of the Invention
[0004] Technical Problems to be Solved
[0005] Aiming at the deficiencies of the prior art, the present invention provides a stabilizing device for building aluminum formwork, which solves the technical problems of the traditional single support method for aluminum formwork and limited support area.
[0006] Technical Solutions
[0007] To achieve the above objectives, the present invention is realized through the following technical solutions:
[0008] A stabilizing device for building aluminum formwork includes a support jack, a first top plate, and a fixing ring. The first top plate is installed at the top of the support jack, the fixing ring is fixedly installed on the upper part of the support jack, and inclined rods are arranged on both sides of the fixing ring. The top ends of the two inclined rods are both installed with second top plates, and the two second top plates are symmetrically distributed with the midpoint of the first top plate as the center. When more stable support for the aluminum formwork is required, the inclined rods are rotated and unfolded around the first connecting shaft. Since the top ends of the two inclined rods are both installed with second top plates, and the two second top plates are symmetrically distributed with the midpoint of the first top plate as the center, the unfolded inclined rods can enable the second top plates and the first top plate to jointly support the aluminum formwork, increasing the support area for the aluminum formwork;
[0009] Both ends of the fixed ring are fixedly connected with connecting pieces. One end of each inclined rod is fixedly connected with a first connecting shaft. Each inclined rod is rotatably connected to the connecting piece through the first connecting shaft. A connecting rod is installed on each inclined rod. A group of fixing plates for fixing the connecting rod are fixedly installed on the upper part of the supporting top rod. The fixing plates are located above the fixed ring. Two connecting parts for storing the inclined rods are fixedly installed on the supporting top rod. Grooves are formed on both opposite sides of the two connecting parts. When the inclined rods are not needed for support, the inclined rods can be rotated and retracted around the first connecting shaft. Two connecting parts are fixedly installed on the supporting top rod. Grooves are formed on both opposite sides of the two connecting parts. The retracted inclined rods and connecting rods can be placed in the grooves for storage. When in a relatively small space, the second top plate is not used for support, and it can be used according to the actual situation.
[0010] Preferably: A connecting sleeve is fixedly installed in the middle of the bottom end of the first top plate. The connecting sleeve is sleeved on the top of the supporting top rod. A fixed seat is fixedly installed at the bottom end of the supporting top rod.
[0011] Preferably: One end of each connecting rod is fixedly connected with a second connecting shaft. Each connecting rod is rotatably connected to the inclined rod through the second connecting shaft. The other end of the connecting rod is inserted between the fixing plates.
[0012] Preferably: Bolts II are screwed into the fixing plates. The connecting rods are threadedly fixed to the fixing plates through the bolts II. The two connecting rods are both perpendicular to the supporting top rod. Each inclined rod is inclined. After the inclined rod is unfolded to an appropriate angle, the bolts II on the fixing plates can be screwed in by rotation to threadedly fix the connecting rods to the fixing plates, thereby restricting the position of the inclined rod and ensuring that the inclined rod can stably provide a supporting force for the aluminum formwork. Because the connecting rods are perpendicular to the supporting top rod and the inclined rods are inclined, such a structure can enable the inclined rods to effectively transmit the supporting force to the supporting top rod and enhance the overall supporting stability.
[0013] Preferably: A receiving groove adapted to the inclined rod is formed on the bottom surface of each connecting rod. The connecting rod is rotatably sleeved on the surface of the inclined rod with the second connecting shaft as the axis.
[0014] Preferably: Grooves are formed on the bottom surface of each second top plate. A convex block is fixedly installed at the top end of each inclined rod. Each convex block is respectively inserted into the groove. Bolts I are screwed into the second top plate. The inclined rod is threadedly fixed to the second top plate through the bolts I. Grooves are formed on the bottom surface of the second top plate. The convex blocks at the top ends of the inclined rods are inserted into the grooves, which is convenient for positioning and installing the second top plate. The inclined rod is threadedly fixed to the second top plate through the bolts I, and the second top plate can be replaced. The first top plate is sleeved on the top of the supporting top rod through the connecting sleeve, and the first top plate can be replaced, making it more convenient to use.
[0015] Preferably, an adjusting part is arranged on the outer surface of the supporting ejector rod. The adjusting part includes an adjusting thread, an adjusting sleeve, a connecting part, a fastening part and a fastening handle. The adjusting thread is arranged on the outer surface of the supporting ejector rod. The adjusting sleeve is divided into two parts. The inner threads which are used in cooperation and adapted to the adjusting thread are arranged inside the two adjusting sleeves. The connecting parts which are used in cooperation are arranged on the same side of the two adjusting sleeves. The fastening parts which are used in cooperation are arranged on the other side of the two adjusting sleeves. The two fastening parts are fastened and unlocked through the fastening handle.
[0016] Preferably, the cross sections of the two adjusting sleeves are both semi-circular. The connecting part is used to support the connection of the two adjusting sleeves and provide an opening and closing function. The fastening handle can control the fastening part to be locked and fixed on the surface of the supporting ejector rod by pressing down.
[0017] Beneficial effects
[0018] First, the device supports the aluminum formwork jointly through the first top plate and the second top plate, expanding the supporting area. The cooperating structure of the inclined rod, the connecting rod and the supporting ejector rod enables the inclined rod to effectively transfer the supporting force to the supporting ejector rod, forming a stable supporting system, greatly improving the supporting stability of the aluminum formwork and reducing the potential safety hazards caused by unstable support during the construction process.
[0019] Second, when the inclined rod is not needed for support, it can be rotated and retracted around the connecting shaft and stored in the card slot of the connecting part of the supporting ejector rod, saving space and facilitating use under different site conditions. At the same time, the first top plate can be replaced through the connecting sleeve, and the second top plate can be conveniently replaced by being connected to the inclined rod through bolts. This not only improves the versatility of the device, but also reduces the cost of replacing the whole device due to component damage, enhancing the convenience and economy of use. Description of the drawings
[0020] The above description is only an overview of the technical solution of the present invention. In order to be able to understand the technical means of the present invention more clearly and implement it in accordance with the content of the description, the following further details the preferred embodiments of the present invention in conjunction with the drawings as follows.
[0021] Figure 1 It is the overall structure diagram of the building construction aluminum formwork stabilizing device of the present invention;
[0022] Figure 2 It is the structure diagram of the connecting rod of the present invention;
[0023] Figure 3 It is the structure diagram of the fixing ring of the present invention;
[0024] Figure 4 It is the sectional structure diagram of the second top plate of the present invention;
[0025] Figure 5This is an enlarged structural diagram of the adjustment part of the present invention.
[0026] Legend: 1. Support top rod; 11. Fixed seat; 2. First top plate; 21. Connecting sleeve; 3. Fixed ring; 31. Connecting piece; 4. Diagonal rod; 41. First connecting shaft; 42. Convex block; 5. Second top plate; 51. Groove; 52. First bolt; 6. Connecting rod; 61. Second connecting shaft; 62. Accommodating groove; 7. Fixed plate; 71. Second bolt; 8. Connecting part; 81. Card slot; 9. Adjustment part; 91. Adjustment thread; 92. Adjustment sleeve; 93. Connecting piece; 94. Fastening piece; 95. Fastening handle. Specific implementation manner
[0027] In the embodiment of the present application, by providing a stable device for building aluminum formwork, the problems of single support method and limited support area of traditional aluminum formwork are effectively solved. The device supports the aluminum formwork jointly by the first top plate and the second top plate, expanding the support area. The cooperation structure of the diagonal rod, the connecting rod and the support top rod enables the diagonal rod to effectively transmit the support force to the support top rod, forming a stable support system, greatly improving the support stability of the aluminum formwork, and reducing the safety hazards caused by unstable support during the construction process. When the diagonal rod support is not needed, it can be rotated and retracted around the connecting shaft and stored in the card slot of the connecting part of the support top rod, saving space and facilitating use under different site conditions. At the same time, the first top plate can be replaced through the connecting sleeve, and the second top plate can be conveniently replaced by connecting with the diagonal rod through bolts. This not only improves the versatility of the device, but also reduces the cost of replacing the whole device due to component damage, and improves the convenience and economy of use.
[0028] Example 1: As Figure 1 , Figure 2 , Figure 3 and Figure 4 shown, the technical solution in the embodiment of the present application effectively solves the technical problems of single support method and limited support area of traditional aluminum formwork. The general idea is as follows:
[0029] In view of the problems existing in the prior art, the present invention provides a stabilizing device for building aluminum formwork, which includes a supporting top rod 1, a first top plate 2 and a fixing ring 3. The first top plate 2 is installed at the top of the supporting top rod 1, and the fixing ring 3 is fixedly installed on the upper part of the supporting top rod 1. Oblique rods 4 are arranged on both sides of the fixing ring 3. The tops of the two oblique rods 4 are both installed with second top plates 5, and the two second top plates 5 are symmetrically distributed with the midpoint of the first top plate 2 as the center. Both ends of the two sides of the fixing ring 3 are fixedly connected with connecting pieces 31. One end of each oblique rod 4 is fixedly connected with a first connecting shaft 41, and each oblique rod 4 is rotatably connected with the connecting piece 31 through the first connecting shaft 41. A connecting rod 6 is installed on each oblique rod 4. A group of fixing plates 7 for fixing the connecting rod 6 are fixedly installed on the upper part of the supporting top rod 1. The fixing plates 7 are located above the fixing ring 3. Two connecting parts 8 for storing the oblique rods 4 are fixedly installed on the supporting top rod 1. Card slots 81 are opened on the two opposite sides of the two connecting parts 8. A connecting sleeve 21 is fixedly installed in the middle of the bottom end of the first top plate 2. The connecting sleeve 21 is sleeved on the top of the supporting top rod 1. A fixing seat 11 is fixedly installed at the bottom end of the supporting top rod 1. One end of each connecting rod 6 is fixedly connected with a second connecting shaft 61, and each connecting rod 6 is rotatably connected with the oblique rod 4 through the second connecting shaft 61. The other end of the connecting rod 6 is inserted between the fixing plates 7. A second bolt 71 is screwed into the fixing plate 7, and the connecting rod 6 is threadedly fixed to the fixing plate 7 through the second bolt 71. The two connecting rods 6 are both arranged perpendicular to the supporting top rod 1. Each oblique rod 4 is obliquely arranged. A receiving groove 62 adapted to the oblique rod 4 is opened on the bottom surface of each connecting rod 6. The connecting rod 6 is rotatably sleeved on the surface of the oblique rod 4 with the second connecting shaft 61 as the axis. A groove 51 is opened on the bottom surface of each second top plate 5. A convex block 42 is fixedly installed at the top of each oblique rod 4. Each convex block 42 is respectively inserted into the groove 51. A first bolt 52 is screwed into the second top plate 5, and the oblique rod 4 is threadedly fixed to the second top plate 5 through the first bolt 52;
[0030] First, place the support top rod 1 at a suitable support position through the fixed seat 11 at its bottom end to ensure stability. At this time, the first top plate 2 is sleeved on the top of the support top rod 1 through the connecting sleeve 21 in the middle of its bottom end, providing an initial support for the upper aluminum formwork. The fixing ring 3 is fixedly installed on the upper part of the support top rod 1, and its two sides are rotatably connected to the first connecting shaft 41 of the inclined rod 4 through the connecting member 31. When more stable support for the aluminum formwork is required, rotate the inclined rod 4 around the first connecting shaft 41 to unfold it. Since the top ends of the two inclined rods 4 are both equipped with the second top plates 5, and the two second top plates 5 are symmetrically distributed with the midpoint of the first top plate 2 as the center, the unfolded inclined rod 4 can enable the second top plates 5 and the first top plate 2 to jointly support the aluminum formwork, increasing the support area for the aluminum formwork. The connecting rod 6 installed on each inclined rod 4 has one end rotatably connected to the inclined rod 4 through the second connecting shaft 61, and the other end is inserted between the fixing plates 7. The fixing plates 7 are fixedly installed on the upper part of the support top rod 1 and above the fixing ring 3. When the inclined rod 4 is unfolded to an appropriate angle, the connecting rod 6 can be threadedly fixed to the fixing plate 7 by rotating and screwing the second bolt 71 into the fixing plate 7, thereby restricting the position of the inclined rod 4 and ensuring that the inclined rod 4 can stably provide a supporting force for the aluminum formwork. Because the connecting rod 6 is arranged perpendicular to the support top rod 1 and the inclined rod 4 is inclined, such a structure can enable the inclined rod 4 to effectively transfer the supporting force to the support top rod 1, enhancing the overall supporting stability. The bottom surface of the connecting rod 6 is provided with a receiving groove 62 adapted to the inclined rod 4, and the connecting rod 6 is rotatably sleeved on the surface of the inclined rod 4 with the second connecting shaft 61 as the axis, facilitating the storage of the connecting rod 6;
[0031] When the inclined rod 4 is not needed for support, the inclined rod 4 can be rotated around the first connecting shaft 41 to be retracted. Two connecting parts 8 are fixedly installed on the support top rod 1, and clamping grooves 81 are opened on the two opposite surfaces of the two connecting parts 8. The retracted inclined rod 4 and the connecting rod 6 can be placed in the clamping grooves 81 for storage. When in a relatively small space and the second top plate 5 is not used for support, it can be used according to the actual situation;
[0032] A groove 51 is opened on the bottom surface of the second top plate 5, and the convex block 42 at the top end of the inclined rod 4 is inserted into the groove 51, facilitating the positioning and installation of the second top plate 5. The inclined rod 4 is threadedly fixed to the second top plate 5 through the first bolt 52, enabling the replacement of the second top plate 5. The first top plate 2 is sleeved on the top of the support top rod 1 through the connecting sleeve 21, enabling the replacement of the first top plate 2, making it more convenient to use.
[0033] Embodiment 1: The technical solution in this embodiment is as follows: An adjustment part 9 is provided on the outer surface of the support ejector rod 1. The adjustment part 9 includes an adjustment thread 91, an adjustment sleeve 92, a connecting part 93, a fastening part 94, and a fastening handle 95. The adjustment thread 91 is provided on the outer surface of the support ejector rod 1. The adjustment sleeve 92 is divided into two parts. Internal threads that are used in cooperation and are adapted to the adjustment thread 91 are provided in the two adjustment sleeves 92. Connecting parts 93 that are used in cooperation are provided on the same side of the two adjustment sleeves 92. Fastening parts 94 that are used in cooperation are provided on the other side of the two adjustment sleeves 92. The two fastening parts 94 are controlled for fastening and unlocking through the fastening handle 95. The cross-sections of the two adjustment sleeves 92 are both semi-circular. The connecting part 93 is used to support the connection of the two adjustment sleeves 92 and provide an opening and closing function. The fastening handle 95 can control the fastening part 94 to be locked and fixed on the surface of the support ejector rod 1 by pressing down;
[0034] When using the adjustment part 9, due to the existence of the adjustment thread 91 and the internal threads in the two adjustment sleeves 92, first rotate the two adjustment sleeves 92 to move the adjustment sleeves 92 up and down to a suitable position, and then press the fastening handle 95. Due to the existence of the fastening part 94, it can be ensured that the two adjustment sleeves 92 and the support ejector rod 1 achieve an interference fit effect, that is, they will not move without unlocking, so as to achieve the purpose of stress adjustment of the support ejector rod 1.
[0035] Working principle:
[0036] First step, first, place the support jack 1 at a suitable support position through the fixing base 11 at its bottom end to ensure stability. At this time, the first top plate 2 is sleeved on the top of the support jack 1 through the connecting sleeve 21 in the middle of the bottom end, providing an initial support for the upper aluminum formwork. The fixing ring 3 is fixedly installed on the upper part of the support jack 1, and its two sides are rotatably connected to the first connecting shaft 41 of the inclined rod 4 through the connecting member 31. When more stable support for the aluminum formwork is required, rotate the inclined rod 4 around the first connecting shaft 41 to unfold it. Since the top plates 5 are installed at the top ends of both inclined rods 4, and the two top plates 5 are symmetrically distributed with the midpoint of the first top plate 2 as the center, the unfolded inclined rod 4 can enable the top plates 5 and the first top plate 2 to jointly support the aluminum formwork, increasing the support area for the aluminum formwork. The connecting rod 6 installed on each inclined rod 4 has one end rotatably connected to the inclined rod 4 through the second connecting shaft 61, and the other end is inserted between the fixing plates 7. The fixing plates 7 are fixedly installed on the upper part of the support jack 1 and above the fixing ring 3. When the inclined rod 4 is unfolded to an appropriate angle, the connecting rod 6 can be threadedly fixed to the fixing plate 7 by rotating and screwing the second bolt 71 into the fixing plate 7, thereby restricting the position of the inclined rod 4 and ensuring that the inclined rod 4 can stably provide support force for the aluminum formwork. Because the connecting rod 6 is arranged perpendicular to the support jack 1 and the inclined rod 4 is inclined, such a structure can enable the inclined rod 4 to effectively transmit the support force to the support jack 1, enhancing the overall support stability. The bottom surface of the connecting rod 6 is provided with a receiving groove 62 adapted to the inclined rod 4, and the connecting rod 6 is rotatably sleeved on the surface of the inclined rod 4 with the second connecting shaft 61 as the axis, facilitating the storage of the connecting rod 6. This device jointly supports the aluminum formwork through the first top plate 2 and the top plates 5, expanding the support area. The cooperation structure of the inclined rod 4, the connecting rod 6 and the support jack 1 enables the inclined rod 4 to effectively transmit the support force to the support jack 1, forming a stable support system, greatly improving the support stability for the aluminum formwork and reducing potential safety hazards caused by unstable support during construction;
[0037] Second step, when the inclined rod 4 is not needed for support, the inclined rod 4 can be rotated around the first connecting shaft 41 to be retracted. Two connecting parts 8 are fixedly installed on the support jack 1, and clamping grooves 81 are opened on the two opposite surfaces of the two connecting parts 8. The retracted inclined rod 4 and the connecting rod 6 can be placed in the clamping grooves 81 for storage. When in a relatively small space, the top plates 5 are not used for support, and it can be used according to the actual situation;
[0038] Third step, a groove 51 is opened on the bottom surface of the top plate 5, and the convex block 42 at the top end of the inclined rod 4 is inserted into the groove 51, facilitating the positioning and installation of the top plate 5. The inclined rod 4 is threadedly fixed to the top plate 5 through the first bolt 52, enabling the replacement of the top plate 5. The first top plate 2 is sleeved on the top of the support jack 1 through the connecting sleeve 21, enabling the replacement of the first top plate 2, making it more convenient to use.
[0039] This technical solution supports the aluminum formwork jointly by the first top plate 2 and the second top plate 5, expanding the support area. The cooperation structure of the inclined rod 4, the connecting rod 6 and the support jack 1 enables the inclined rod 4 to effectively transfer the supporting force to the support jack 1, forming a stable support system, greatly improving the support stability of the aluminum formwork, reducing the potential safety hazards caused by unstable support during the construction process. And during the idle period, it can be rotated and retracted around the connecting shaft and stored in the card slot of the connecting part of the support jack 1, saving space and facilitating use under different site conditions. At the same time, the first top plate 2 can be replaced through the connecting sleeve, and the second top plate 5 can be conveniently replaced by connecting with the inclined rod 4 through bolts. This not only improves the versatility of the device, but also reduces the cost of replacing the whole device due to component damage, enhancing the convenience and economy of use.
[0040] Finally, it should be noted that: Obviously, the above embodiments are only examples for clearly illustrating the present invention, rather than limitations on the implementation manners. For those of ordinary skill in the art, other different forms of changes or modifications can be made based on the above description. It is not necessary and impossible to enumerate all the implementation manners here. And the obvious changes or modifications derived therefrom still fall within the protection scope of the present invention.
Claims
1. A device for stabilizing an aluminum formwork for building construction, comprising a supporting top rod (1), a top plate (2) and a fixing ring (3), characterized in that: The top plate 1 (2) is mounted on the top of the supporting top rod (1), the fixing ring (3) is fixedly mounted on the upper part of the supporting top rod (1), inclined rods (4) are arranged on both sides of the fixing ring (3), top plates 2 (5) are mounted on the top ends of the two inclined rods (4), and the two top plates 2 (5) are symmetrically distributed with the midpoint of the top plate 1 (2) as the center; Wherein, both side ends of the fixing ring (3) are fixedly connected with a connecting piece (31), one end of each of the inclined rods (4) is fixedly connected with a connecting shaft (41), each of the inclined rods (4) is rotatably connected to the connecting piece (31) via the connecting shaft (41), and a connecting rod (6) is installed on each of the inclined rods (4); A group of fixing plates (7) for fixing the connecting rod (6) are fixedly mounted on the upper part of the supporting top rod (1), and the fixing plates (7) are located above the fixing ring (3). Two connecting parts (8) for receiving the inclined rod (4) are fixedly mounted on the supporting top rod (1), and the two connecting parts (8) are provided with slots (81) on two opposite sides thereof.
2. A building aluminum formwork stabilizing device according to claim 1, characterized in that: A connecting sleeve (21) is fixedly mounted in the middle of the bottom end of the top plate (2), and the connecting sleeve (21) is sleeved on the top of the supporting top rod (1); Wherein, a fixing seat (11) is fixedly mounted on the bottom end of the supporting top rod (1).
3. A building construction aluminum formwork stabilizing device according to claim 2, characterized in that: One end of each connecting rod (6) is fixedly connected to a second connecting shaft (61), and each connecting rod (6) is rotatably connected to the inclined rod (4) via the second connecting shaft (61); The other end of the connecting rod (6) is inserted between the fixing plates (7).
4. A building construction aluminum formwork stabilizing device according to claim 3, characterized in that: The fixing plate (7) is rotatably screwed with a second bolt (71), and the connecting rod (6) is threadedly fixed to the fixing plate (7) via the second bolt (71); Wherein, the two connecting rods (6) are arranged perpendicularly to the supporting top rod (1), and each of the inclined rods (4) is arranged obliquely.
5. A building construction aluminum formwork stabilizing device according to claim 4, characterized in that: The bottom surface of each connecting rod (6) is provided with a receiving groove (62) adapted to the inclined rod (4), and the connecting rod (6) is rotatably sleeved on the surface of the inclined rod (4) with the second connecting shaft (61) as the axis.
6. A building construction aluminum formwork stabilizing device according to claim 5, characterized in that: The bottom surface of each of the second top plates (5) is provided with a groove (51), and the top end of each of the inclined rods (4) is fixedly provided with a protrusion (42), and each of the protrusions (42) is respectively inserted into the groove (51); Wherein, a bolt (52) is rotatably screwed into the top plate (5), and the inclined rod (4) is threadedly fixed to the top plate (5) via the bolt (52).
7. A building construction aluminum formwork stabilizing device according to claim 6, characterized in that: The outer surface of the support push rod (1) is provided with an adjustment part (9), and the adjustment part (9) includes an adjustment thread (91), an adjustment sleeve (92), a connecting piece (93), a fastener (94) and a tightening hand (95). The adjustment thread (91) is provided on the outer surface of the support push rod (1), and the adjustment sleeve (92) is divided into two parts. The two adjustment sleeves (92) are provided with internal threads that are used in conjunction with and are compatible with the adjustment thread (91). The same side of the two adjustment sleeves (92) is provided with a connecting piece (93) used in conjunction with, and the other side of the two adjustment sleeves (92) is provided with a fastener (94) used in conjunction with, and the two fasteners (94) are tightened and unlocked by the tightening hand (95).
8. A building construction aluminum formwork stabilizing device according to claim 7, characterized in that: The transverse surfaces of the two adjusting sleeves (92) are both semi-annular, the connecting piece (93) is used to support the connection of the two adjusting sleeves (92) and provide an opening and closing function, and the tightening hand (95) can control the fastener (94) to be locked and fixed on the surface of the supporting top rod (1) by pressing down.