CN221399747U - Supporting device for engineering - Google Patents

Supporting device for engineering Download PDF

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Publication number
CN221399747U
CN221399747U CN202323590675.XU CN202323590675U CN221399747U CN 221399747 U CN221399747 U CN 221399747U CN 202323590675 U CN202323590675 U CN 202323590675U CN 221399747 U CN221399747 U CN 221399747U
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CN
China
Prior art keywords
plate
rods
supporting
wall
support column
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CN202323590675.XU
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Chinese (zh)
Inventor
林若冰
李晓娟
洪小吉
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Xiamen Phzcio Group Co ltd
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Xiamen Phzcio Group Co ltd
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Priority to CN202323590675.XU priority Critical patent/CN221399747U/en
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Abstract

The application discloses a supporting device for engineering, which relates to the technical field of construction engineering, and comprises a supporting plate, a protection plate which is enclosed on the peripheral side of the top surface of the supporting plate, and a supporting column which is fixed at the bottom of the supporting plate, wherein the bottom of the supporting column is fixedly connected with a universal wheel; a connecting plate is fixed on the peripheral side wall of the support column, a plurality of through holes with vertical axes are formed in the connecting plate, and reinforcing rods are connected in the through holes in a sliding manner; the support column is provided with a plurality of tight supporting rods in a sliding manner, the moving direction of the tight supporting rods is perpendicular to the moving direction of the reinforcing rods, the tight supporting rods are in one-to-one correspondence with the tight supporting rods, a movable cavity is formed in the support column, a driving piece capable of sliding to simultaneously drive the plurality of tight supporting rods to move so as to tightly support the corresponding reinforcing rods is arranged in the movable cavity, and a control piece for driving the driving piece to slide is arranged on the support column. The application has the effect of enabling the supporting device to be more convenient to stably fix on uneven ground.

Description

Supporting device for engineering
Technical Field
The application relates to the technical field of building engineering construction, in particular to a supporting device for engineering.
Background
At present, in building engineering construction, corresponding construction work is often required to be performed on an outer wall, a beam and a column, and when working personnel are required to work at a higher position, a supporting device is required to be provided so that the working personnel can stand to work.
The related art discloses a supporting device for engineering in China patent document with an authorized bulletin number of CN 218758598U. Including backup pad, a plurality of guard plates of enclosing in backup pad week side, be fixed in the many support columns of backup pad bottom, the support column bottom is provided with universal wheel and fixed establishment, and wherein fixed establishment is including fixing the slip dish in the support bottom, and fix many bracing pieces on the slip dish, threaded connection has the bolt on the bracing piece, can support tight ground through rotating the bolt to play the effect of strengthening strutting arrangement, and make strutting arrangement can be through the steady fixed position at ground unevenness of bolt.
However, in the above scheme, when the bolt is in an uneven place, a plurality of bolts need to be turned one by one, and the operation process is complicated.
Disclosure of utility model
In order to enable the supporting device to be stably fixed on uneven ground more conveniently, the application provides the supporting device for engineering.
The application provides a supporting device for engineering, which adopts the following technical scheme:
The supporting device for the engineering comprises a supporting plate, a protection plate which is enclosed on the peripheral side of the top surface of the supporting plate, and a supporting column which is fixed at the bottom of the supporting plate, wherein the bottom of the supporting column is fixedly connected with a universal wheel;
A connecting plate is fixed on the peripheral side wall of the support column, a plurality of through holes with vertical axes are formed in the connecting plate, and reinforcing rods are connected in the through holes in a sliding manner;
The support column is provided with a plurality of tight supporting rods in a sliding manner, the moving direction of the tight supporting rods is perpendicular to the moving direction of the reinforcing rods, the tight supporting rods are in one-to-one correspondence with the reinforcing rods, a movable cavity is formed in the support column, driving parts capable of sliding to simultaneously drive the plurality of tight supporting rods to move to tightly support the corresponding reinforcing rods are arranged in the movable cavity, and the support column is provided with a control part for driving the driving parts to slide.
Through adopting above-mentioned technical scheme, during the use, can rely on the gravity gliding butt to subaerial of stiffening rod, need not the position of manual adjustment stiffening rod, the rethread control piece control driving piece removes, and the driving piece removes and supports tight stiffening rod with many tight strip one-to-one of drive to lock the position of stiffening rod, the operation process is comparatively convenient, and work efficiency is higher.
Optionally, the driving piece includes the awl piece of vertical slip in the activity intracavity, awl piece along vertical direction diameter taper, a plurality of support tight pole butt in awl piece outer wall, the control is used for the drive the awl piece removes.
Through adopting above-mentioned technical scheme, the awl piece outer wall forms the direction inclined plane, when control drive awl piece downwardly moving, the awl piece can give a plurality of stiffening rod horizontal direction's component to make many stiffening rods can remove, and when awl piece position is fixed, the awl piece also can give the stiffening rod holding power, thereby supports tight stiffening rod.
Optionally, the control piece be threaded connection in the first bolt of support column outer wall, the awl piece top is provided with the guide block, be provided with the guide surface with first bolt butt on the guide block.
Through adopting above-mentioned technical scheme, through rotating first bolt, the guide surface on the first bolt promotion guide block to can drive the awl piece and remove, and because the screw thread self-locking nature of first bolt, make the awl piece be difficult for reverse removal.
Optionally, a tension spring is connected between the top wall of the movable cavity and the conical block, and when the abutting rod abuts against the reinforcing rod, the tension spring stores elastic potential energy.
Through adopting above-mentioned technical scheme, when first bolt reverse rotation, the awl piece can upwards be pulled through the pulling force of extension spring to make the awl piece reset, make the tight pole of support no longer support tight stiffening rod, thereby be convenient for remove and reset the stiffening rod.
Optionally, be fixed with the extension board on the tight pole outer wall of support, the extension board is located movable intracavity, and is provided with the elastic component between extension board and the movable intracavity wall, when the tight pole of support supports tightly the reinforcing rod, the elastic component stores elastic potential energy.
Through adopting above-mentioned technical scheme, when the awl piece rises, through the elastic potential energy of the storage of elastic component for support tight pole and can move towards the activity chamber direction, the removal of reinforcing rod of being convenient for, and can provide holding power to the awl piece by the elasticity of elastic component.
Optionally, the outer coaxial slip cap of support column is equipped with the movable plate, the stiffening rod wears to locate the movable plate, and the stiffening rod top is provided with the expansion head that can offset with the movable plate top surface, the movable plate can be fixed in the support column outer wall after vertical slip.
Through adopting above-mentioned technical scheme, when supporting tight pole no longer supports tight stiffening rod, upwards will remove the board, can simultaneously or offset with the enlarged footing of many stiffening rods in proper order to finally remove the position of co-altitude with many stiffening rods simultaneously, and remove the board and can fix after removing, thereby fix many stiffening rods lifting back, the operation is more convenient and fast.
Optionally, a second bolt is screwed on the moving plate and is tightly connected with the outer wall of the support column.
Through adopting above-mentioned technical scheme, when rotating second bolt and supporting column outer wall, can fix the movable plate.
Optionally, a yielding hole for the tight supporting rod to pass through is formed in the moving plate.
Through adopting above-mentioned technical scheme, in the movable plate removal in-process, support tight pole can follow the hole of stepping down and pass through to reduce the interference that supports tight pole to the movable plate removal.
In summary, the present application includes at least one of the following beneficial effects:
1. When the device is used, the device can slide downwards to be abutted to the ground by means of the gravity of the reinforcing rod, the position of the reinforcing rod does not need to be manually adjusted, the driving piece is controlled to move by the control piece, the driving piece moves to drive the plurality of abutting strips to abut against the reinforcing rod in a one-to-one correspondence manner, and therefore the position of the reinforcing rod is locked, the operation process is convenient, and the working efficiency is higher;
2. Through setting up the movable plate, can remove the stiffening rod simultaneously or in proper order and fix many stiffening rods in higher position, the use of being convenient for next time also is convenient for strutting arrangement's removal.
Drawings
FIG. 1 is a schematic overall structure of an embodiment of the present application;
FIG. 2 is a schematic view showing a partial structure of a reinforcing structure according to an embodiment of the present application;
fig. 3 is a schematic view showing a partial cross-sectional structure of a reinforcing structure according to an embodiment of the present application.
Reference numerals illustrate: 1. a support plate; 11. a protection plate; 2. a support column; 21. a movable cavity; 211. a tension spring; 212. a spring; 22. a tightening rod; 221. an extension plate; 23. a connecting plate; 24. perforating; 3. a universal wheel; 25. a first bolt; 4. a moving plate; 41. a second bolt; 42. a relief hole; 5. a reinforcing rod; 51. enlarging the head; 6. a cone block; 61. a guide block; 62. a guide surface.
Detailed Description
The application is described in further detail below with reference to fig. 1-3.
Referring to fig. 1 and 2, the supporting device for engineering disclosed by the embodiment of the application comprises a mounting supporting plate 1, wherein a circle of protection plates 11 are fixedly connected to the peripheral side of the top surface of the supporting plate 1, the rectangular protection plates 11 are enclosed on the peripheral side of the supporting plate 1, the protection plates 11 are provided with doors capable of being opened and closed, and a cat ladder (not shown in the figure) is fixed, so that an operator can conveniently climb onto the supporting plate 1 to work. Four support columns 2 are fixed on the bottom of the support plate 1, and universal wheels 3 capable of rotating are fixed on the bottoms of the four support columns 2, so that the support device can move through the universal wheels 3, but the support device is not stable enough because the universal wheels 3 are arranged when an operator works, and therefore a reinforcing structure is arranged on the support columns 2.
Referring to fig. 2 and 3, the reinforcing structure includes a connecting plate 23 fixed at the bottom of the outer wall of the support column 2, and a plurality of perforations 24 are formed on the connecting plate 23, in this embodiment, four perforations 24 are taken as an example, and ninety degrees intervals are disposed on the circumferential side of the axis of the support column 2. The reinforcing rod 5 is penetrated in the perforation 24, and the bottom of the reinforcing rod 5 can be propped against the ground after moving downwards by means of gravity, so that an additional supporting effect is provided for the supporting column 2.
The inner wall of the support column 2 in the area above the connecting plate 23 is provided with a movable cavity 21, a driving piece is vertically connected in the movable cavity 21 in a sliding manner, and an operating piece capable of driving the driving piece to vertically move downwards is arranged on the support column 2. The support column 2 is horizontally and slidably connected with a plurality of abutting rods 22, and the abutting rods 22 are four in number and are in one-to-one correspondence with the side walls of the abutting reinforcing rods 5, so that the positions of the reinforcing rods 5 are fixed. One end of each abutting rod 22 is penetrated in the movable cavity 21 and can be driven to move simultaneously with the vertical movement of the driving piece.
Referring to fig. 2 and 3, the driving member is a cone block 6 slidably connected in the movable cavity 21, the outer diameter of the cone block 6 gradually decreases from the top to the bottom, and four abutting rods 22 abut against the outer wall of the cone block 6, so that when the cone block 6 moves downward, the abutting rods 22 can be driven by the component force of the outer wall of the cone block 6 to move horizontally and abut against the reinforcing rods 5. The top surface of the cone block 6 is fixedly connected with a guide block 61, and one side of the guide block 61 is provided with an inclined guide surface 62. The control piece is the first bolt 25 that threaded connection is in support column 2, and first bolt 25 tip is located movable cavity 21 and with guide surface 62 looks butt for when first bolt 25 continues to move towards guide block 61 direction, first bolt 25 can rely on guide surface 62 to promote awl piece 6 and remove, and because first bolt 25 threaded connection's auto-lock nature, makes awl piece 6 be difficult for resetting when first bolt 25 stops rotating. A tension spring 211 is fixedly connected between the top wall of the movable cavity 21 and the top of the cone block 6, when the abutting rod 22 abuts against the reinforcing rod 5, the tension spring 211 is stretched to store elastic potential energy, and when the first bolt 25 is reversely rotated after the work is completed, the cone block 6 can be lifted and reset.
Referring to fig. 2 and 3, the abutment rod 22 is fixedly connected with an extension plate 221 on the outer wall of the movable cavity 21, and an elastic member is arranged between the extension plate 221 and the inner wall of the movable cavity 21, and is a spring 212 sleeved outside the abutment rod 22. By providing the spring 212, when the abutting rod 22 abuts against the reinforcing rod 5, the spring 212 is compressed to store elastic potential energy, and when the first bolt 25 is reversely rotated after the work is completed, the abutting rod 22 can be separated from the reinforcing rod 5 through the spring 212 and partially retracted into the movable cavity 21, so that the reinforcing rod 5 can be conveniently moved.
Referring to fig. 2 and 3, the connecting plate 23 abuts against the moving plate 4, the moving plate 4 is sleeved outside the supporting column 2, and through holes through which the reinforcing rods 5 pass are formed in a one-to-one correspondence. The top of the reinforcing rod 5 is fixedly connected with an enlarged head 51, and the outer diameter of the enlarged head 51 is larger than the diameter of the through hole. The moving plate 4 is connected with a second bolt 41 in a threaded manner, the axial direction of the second bolt 41 is the radial direction of the moving plate 4, and the end part can abut against the outer wall of the support column 2, so that the position of the moving plate 4 is locked after the moving plate 4 moves.
When the abutting rod 22 is not abutted against the reinforcing rods 5 any more, the moving plate 4 is upwards and can be abutted against the enlarged heads 51 of the reinforcing rods 5 simultaneously or sequentially, so that the reinforcing rods 5 can be finally moved to the position with the same height simultaneously, the moving plate 4 can be fixed after being moved, the reinforcing rods 5 are lifted and fixed, and the operation is more convenient and quick.
Four abdication holes 42 are formed in the moving plate 4, and when the moving plate 4 moves upwards, the supporting rod 22 and even the part of the first bolt 25 located outside the support column 2 can pass through the abdication holes 42, so that the influence on the movement of the moving plate 4 is reduced.
The implementation principle of the supporting device for engineering provided by the embodiment of the application is as follows: after the support device is moved to the designated position, the second bolt 41 can be rotated, the moving plate 4 is moved to abut against the connecting plate 23, at the moment, the four reinforcing rods 5 can slide downwards to the bottom to abut against the ground by means of gravity, even the bottom of the reinforcing rods 5 can be inserted into the ground by applying force when the reinforcing rods are on the ground, at the moment, the first bolt 25 is rotated again, so that the first bolt 25 drives the cone block 6 to move downwards, and then the plurality of abutting rods 22 are driven to slide to abut against the reinforcing rods 5 in a one-to-one correspondence manner, thereby locking the positions of the reinforcing rods 5, and the support device is connected more stably.
When the supporting device needs to be moved, the supporting rod 22 and the conical block 6 can be reset by rotating the first bolt 25, the supporting rod 22 does not support the reinforcing rod 5, the second bolt 41 is rotated again, the moving plate 4 is lifted, the moving plate 4 drives the reinforcing rods 5 to lift to be separated from the ground, and the second bolt 41 is rotated to lock the positions of the moving plate 4 and the reinforcing rods 5.
The above embodiments are not intended to limit the scope of the present application, so: all equivalent changes in structure, shape and principle of the application should be covered in the scope of protection of the application.

Claims (8)

1. The supporting device for engineering comprises a supporting plate (1), a protection plate (11) enclosed on the periphery of the top surface of the supporting plate (1), and a supporting column (2) fixed at the bottom of the supporting plate (1), wherein the bottom of the supporting column (2) is fixedly connected with a universal wheel (3),
A connecting plate (23) is fixed on the peripheral side wall of the supporting column (2), a plurality of through holes (24) with vertical axes are formed in the connecting plate (23), and reinforcing rods (5) are connected in the through holes (24) in a sliding mode;
The support column (2) is connected with a plurality of tight rods (22) in a sliding manner, the moving direction of the tight rods (22) is perpendicular to the moving direction of the reinforcing rods (5), the tight rods (22) are in one-to-one correspondence with the reinforcing rods (5), a movable cavity (21) is formed in the support column (2), a driving piece capable of sliding to simultaneously drive the tight rods (22) to move to tightly correspond to the reinforcing rods (5) is arranged in the movable cavity (21), and a driving piece capable of sliding to the driving piece is arranged on the support column (2).
2. An engineering support device according to claim 1, wherein: the driving piece comprises a conical block (6) vertically sliding in the movable cavity (21), the diameter of the conical block (6) is gradually reduced along the vertical direction, a plurality of abutting rods (22) are abutted to the outer wall of the conical block (6), and the control piece is used for driving the conical block (6) to move.
3. An engineering support device according to claim 2, wherein: the control piece is a first bolt (25) which is connected with the outer wall of the supporting column (2) in a threaded mode, a guide block (61) is arranged at the top of the conical block (6), and a guide surface (62) which is abutted to the first bolt (25) is arranged on the guide block (61).
4. A support device for engineering according to claim 3, wherein: a tension spring (211) is connected between the top wall of the movable cavity (21) and the conical block (6), and when the abutting rod (22) abuts against the reinforcing rod (5), the tension spring (211) stores elastic potential energy.
5. An engineering support device according to claim 2, wherein: an extension plate (221) is fixed on the outer wall of the abutting rod (22), the extension plate (221) is located in the movable cavity (21), an elastic piece is arranged between the extension plate (221) and the inner wall of the movable cavity (21), and when the abutting rod (22) abuts against the reinforcing rod (5), elastic potential energy is stored in the elastic piece.
6. The engineering support device according to claim 5, wherein: the support column (2) is equipped with movable plate (4) outward coaxial slip cap, reinforcing rod (5) wear to locate movable plate (4), and reinforcing rod (5) top is provided with enlarged footing (51) that can offset with movable plate (4) top surface, movable plate (4) can be fixed in support column (2) outer wall after vertical slip.
7. The engineering support device according to claim 6, wherein: the movable plate (4) is in threaded connection with a second bolt (41) which is used for being tightly connected with the outer wall of the support column (2).
8. The engineering support device according to claim 6, wherein: and a yielding hole (42) for the passing of the abutting rod (22) is formed in the moving plate (4).
CN202323590675.XU 2023-12-27 2023-12-27 Supporting device for engineering Active CN221399747U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202323590675.XU CN221399747U (en) 2023-12-27 2023-12-27 Supporting device for engineering

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202323590675.XU CN221399747U (en) 2023-12-27 2023-12-27 Supporting device for engineering

Publications (1)

Publication Number Publication Date
CN221399747U true CN221399747U (en) 2024-07-23

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ID=91914463

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202323590675.XU Active CN221399747U (en) 2023-12-27 2023-12-27 Supporting device for engineering

Country Status (1)

Country Link
CN (1) CN221399747U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN119216391A (en) * 2024-11-04 2024-12-31 本龙控股集团有限公司 Wire drawing equipment for welding tin wire

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN119216391A (en) * 2024-11-04 2024-12-31 本龙控股集团有限公司 Wire drawing equipment for welding tin wire

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