CN220928610U - Reinforced bearing frame - Google Patents

Reinforced bearing frame Download PDF

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Publication number
CN220928610U
CN220928610U CN202322737226.7U CN202322737226U CN220928610U CN 220928610 U CN220928610 U CN 220928610U CN 202322737226 U CN202322737226 U CN 202322737226U CN 220928610 U CN220928610 U CN 220928610U
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China
Prior art keywords
movable
fixed
hook
component
bearing frame
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Application number
CN202322737226.7U
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Chinese (zh)
Inventor
李彩忠
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Zhejiang Xingyang Construction Engineering Co ltd
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Zhejiang Xingyang Construction Engineering Co ltd
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Priority to CN202322737226.7U priority Critical patent/CN220928610U/en
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Publication of CN220928610U publication Critical patent/CN220928610U/en
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Abstract

The utility model discloses a reinforced bearing frame which comprises a supporting component and a hook component, wherein a bearing plate is arranged at the top end of the supporting component, a movable component is arranged in the supporting component, one side of the movable component is provided with the hook component, the hook component comprises a fixed frame, a fixed block, a movable rod and a hook, the bottom end of the fixed frame is provided with the fixed block, the movable rod is arranged in the fixed frame, and one side of the movable rod is provided with the hook. This reinforced bearing frame has a set of fixed block with the bottom mounting of mount, and the inside of fixed block is the fretwork form, takes the inside movable rod of mount, hangs the movable rod and detains inside the fixed block of another group of mount bottom in top to fix the movable rod in the bottom of two sets of mounts, thereby reach the purpose of reinforcement, enlarge the whole area of bearing that the bearing frame both sides supported, thereby avoid bearing frame appear turning on one's side the phenomenon of empting at the in-process of using, supplementary bearing frame safe in utilization.

Description

Reinforced bearing frame
Technical Field
The utility model relates to the technical field of bearing frames, in particular to a reinforced bearing frame.
Background
In the building construction process, because the heights of floors are different, when in construction, the positions of constructors are required to be continuously adjusted, the bearing frame structure is related to a high-rise building in the construction process, the constructors stand on the bearing frame, the construction operation at a high building can be completed in an auxiliary mode, the integral supporting strength of the bearing frame is high, the bearing frame can be pushed to be used in a building construction site, and the operation is flexible.
The self structure of the building construction bearing frame on the market is flexible, the position is convenient to move, time and labor are saved during adjustment, the using position is flexible, but the stability of the movable bearing frame during static use is also problematic, the structural strength between the side upright posts is insufficient, the inclination is easy to occur, and the situation of fracture possibly occurs between the upright posts, so that the danger coefficient of the working of a user is increased.
Disclosure of utility model
The present utility model is directed to a reinforced carrier for solving the above-mentioned problems.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a reinforced bearing frame, includes supporting component and couple subassembly, supporting component's top is provided with the loading board, and supporting component's inside is provided with movable subassembly, one side of movable subassembly is provided with the couple subassembly, the couple subassembly includes mount, fixed block, movable rod and couple, and the bottom of mount is provided with the fixed block, the inside of mount is provided with the movable rod, and one side of movable rod is provided with the couple.
Further, the supporting component is connected with the bearing plate, and the movable component is connected with the supporting component in an embedded mode.
Further, the hook component is connected with the movable component in a buckling way, and the bottom end of each group of supporting components is provided with an equal number of hook components.
Further, the movable rods are connected with the fixed block through the hooks in a buckling way, and two groups of movable rods are symmetrically arranged in the fixing frame.
Further, the supporting component comprises upright posts, reinforcing rods and fixed bottoms, wherein the reinforcing rods are arranged in the two groups of upright posts, and the fixed bottoms are arranged at the bottom ends of the upright posts.
Further, a group of reinforcing rods are arranged in the two groups of upright posts, and the upright posts and the fixed bottom are integrated.
Further, the movable assembly comprises a placing rod, a movable shaft, a first fixed hook and a second fixed hook, wherein the movable shaft is arranged on two sides of the interior of the placing rod, the first fixed hook is arranged on one side of the movable shaft, and the second fixed hook is arranged on the other side of the movable shaft.
Further, the first fixed hook is connected with the movable shaft through a rotating shaft, and two groups of movable shafts are embedded and installed on two sides of the placing rod.
Compared with the prior art, the utility model has the beneficial effects that: the movable rod is hung and buckled inside the fixed block at the bottom end of the other group of fixed frames at the top end, so that the movable rod is fixed at the bottom ends of the two groups of fixed frames, the aim of reinforcement is fulfilled, the whole stress area supported by two sides of the bearing frame is enlarged, the phenomenon that the bearing frame is overturned in a side turning manner in the using process is avoided, and the safety use of the bearing frame is assisted.
The strength between two sets of stand columns is increased through the multiunit reinforcing rod that adds to establish, can effectively carry out structural reinforcement to the stand, guarantees the stability of bearing frame, avoids the user when using the loading board, removes to the side easily, is unfavorable for the steady construction of staff to use, effectively ensures the personal safety of user when using.
Will carry out angular adjustment through the loose axle with placing the pole, through detaining the inside at the fixed block with two sets of fixed hook, consolidate equipment, first fixed hook and second fixed hook all are triangle-shaped structure each other, can effectively carry out structural reinforcement to placing the pole, guarantees the stability of bearing frame.
Drawings
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is a schematic perspective view of a hanger assembly according to the present utility model;
Fig. 3 is a schematic perspective view of the movable assembly of the present utility model.
In the figure: 1. a support assembly; 101. a column; 102. a reinforcing rod; 103. a fixed bottom; 2. a carrying plate; 3. a movable assembly; 301. placing a rod; 302. a movable shaft; 303. a first fixed hook; 304. a second fixing hook; 4. a hook assembly; 401. a fixing frame; 402. a fixed block; 403. a movable rod; 404. a hook.
Detailed Description
As shown in fig. 1-2, a reinforced bearing frame comprises a supporting component 1 and a hook component 4, wherein the top end of the supporting component 1 is provided with a bearing plate 2, the inside of the supporting component 1 is provided with a movable component 3, one side of the movable component 3 is provided with the hook component 4, the hook component 4 comprises a fixed frame 401, a fixed block 402, a movable rod 403 and a hook 404, the bottom end of the fixed frame 401 is provided with the fixed block 402, the inside of the fixed frame 401 is provided with the movable rod 403, one side of the movable rod 403 is provided with the hook 404, the supporting component 1 is connected with the bearing plate 2, the movable component 3 is connected with the supporting component 1 in an embedded manner, the hook component 4 is connected with the movable component 3 in a buckling manner, the bottom end of each group of the supporting component 1 is provided with an equal number of hook components 4, the movable rod 403 is connected with the fixed block 402 in a buckling manner through the hook 404, two groups of movable rods 403 are symmetrically arranged in the fixing frame 401, two groups of movable rods 403 are arranged in the fixing frame 401, hooks 404 are arranged on one sides of the two groups of movable rods 403, the hooks 404 and the movable rods 403 are integrated, a group of fixed blocks 402 are fixed at the bottom end of the fixing frame 401, the inside of the fixed blocks 402 is hollow, the movable rods 403 in the fixing frame 401 are taken, the movable rods 403 are hung and buckled in the fixed blocks 402 at the bottom end of the other group of fixing frame 401 at the top end, so that the movable rods 403 are fixed at the bottom ends of the two groups of fixing frames 401, the reinforcing purpose is achieved, the whole stress area of the two sides of the bearing frame is enlarged, the phenomenon that the bearing frame is laterally turned over in the using process is avoided, the bearing frame is assisted to be safely used, the supporting component 1 comprises upright posts 101, reinforcing rods 102 and fixed bottoms 103, and reinforcing rods 102 are arranged in the two groups of upright posts 101, the bottom of stand 101 is provided with fixed bottom 103, the inside of two sets of stands 101 is provided with a set of stiffening rod 102, and be as an organic whole between stand 101 and the fixed bottom 103, the top four corners of this fixed bottom 103 is fixed with four sets of stands 101, every two sets of internally mounted of stand 101 has three sets of stiffening rods 102, the multiunit stiffening rod 102 of establishing through adding increases the intensity between two sets of stands 101, can effectively carry out structural reinforcement to stand 101, guarantee the stability of bearing frame, avoid the user to remove to the side easily when using loading board 2, be unfavorable for the steady construction use of staff, the personal safety of user when using is effectively ensured.
As shown in fig. 3, a reinforced bearing frame, the movable assembly 3 comprises a placing rod 301, a movable shaft 302, a first fixed hook 303 and a second fixed hook 304, wherein the movable shaft 302 is arranged at two sides of the inside of the placing rod 301, the first fixed hook 303 is arranged at one side of the movable shaft 302, the second fixed hook 304 is arranged at the other side of the movable shaft 302, the first fixed hook 303 is connected with the movable shaft 302 through a rotating shaft, two groups of movable shafts 302 are embedded at two sides of the placing rod 301, the two groups of movable shafts 302 are arranged inside the placing rod 301, the movable shafts 302 are communicated with the first fixed hooks 303, the fixed hooks embedded at two sides of the inside of the placing rod 301 are buckled, the placing rod 301 is subjected to angle adjustment through the movable shafts 302, the two groups of fixed hooks are buckled inside the fixed block 402, the first fixed hook 303 and the second fixed hook 304 are in a triangular structure, the structure of the placing rod 301 can be effectively reinforced, and the stability of the bearing frame is ensured.
Working principle: firstly, four groups of upright posts 101 are fixed at four corners of the top end of a fixed bottom 103, three groups of reinforcing rods 102 are arranged in every two groups of upright posts 101, the strength between the two groups of upright posts 101 is increased through additionally arranging a plurality of groups of reinforcing rods 102, the structure of the upright posts 101 can be effectively reinforced, the stability of a bearing frame is ensured, then the placing rods 301 are subjected to angle adjustment through a movable shaft 302, the equipment is reinforced through buckling two groups of fixed hooks in the inside of a fixed block 402, the first fixed hooks 303 and the second fixed hooks 304 are of triangular structures, the placing rods 301 can be effectively reinforced, finally, the movable rods 403 in the fixed frames 401 are taken, the movable rods 403 are buckled in the fixed blocks 402 in the bottom ends of the other groups of fixed frames 401 at the top end, and the purpose of reinforcing is achieved.

Claims (8)

1. A reinforced carrier comprising a support assembly (1) and a hooking assembly (4), characterized in that: the top of supporting component (1) is provided with loading board (2), and the inside of supporting component (1) is provided with movable subassembly (3), one side of movable subassembly (3) is provided with couple subassembly (4), couple subassembly (4) are including mount (401), fixed block (402), movable rod (403) and couple (404), and the bottom of mount (401) is provided with fixed block (402), the inside of mount (401) is provided with movable rod (403), and one side of movable rod (403) is provided with couple (404).
2. A reinforced carrier according to claim 1, wherein: the support component (1) is connected with the bearing plate (2), and the movable component (3) is connected with the support component (1) in an embedded mode.
3. A reinforced carrier according to claim 1, wherein: the hook components (4) are connected with the movable components (3) in a buckling manner, and the bottom ends of the supporting components (1) of each group are provided with equal hook components (4).
4. A reinforced carrier according to claim 1, wherein: the movable rods (403) are connected with the fixed blocks (402) through hooks (404) in a buckling manner, and two groups of movable rods (403) are symmetrically arranged in the fixed frames (401).
5. A reinforced carrier according to claim 1, wherein: the support assembly (1) comprises upright posts (101), reinforcing rods (102) and fixed bottoms (103), wherein the reinforcing rods (102) are arranged in the two groups of upright posts (101), and the fixed bottoms (103) are arranged at the bottom ends of the upright posts (101).
6. A reinforced carrier according to claim 5, wherein: a group of reinforcing rods (102) are arranged in the two groups of upright posts (101), and the upright posts (101) and the fixed bottom (103) are integrated.
7. A reinforced carrier according to claim 1, wherein: the movable assembly (3) comprises a placing rod (301), a movable shaft (302), a first fixed hook (303) and a second fixed hook (304), wherein the movable shaft (302) is arranged on two sides of the inside of the placing rod (301), the first fixed hook (303) is arranged on one side of the movable shaft (302), and the second fixed hook (304) is arranged on the other side of the movable shaft (302).
8. A reinforced carrier according to claim 7, wherein: the first fixed hook (303) is connected with the movable shaft (302) through a rotating shaft, and two groups of movable shafts (302) are embedded and installed on two sides of the placing rod (301).
CN202322737226.7U 2023-10-11 2023-10-11 Reinforced bearing frame Active CN220928610U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322737226.7U CN220928610U (en) 2023-10-11 2023-10-11 Reinforced bearing frame

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322737226.7U CN220928610U (en) 2023-10-11 2023-10-11 Reinforced bearing frame

Publications (1)

Publication Number Publication Date
CN220928610U true CN220928610U (en) 2024-05-10

Family

ID=90934496

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322737226.7U Active CN220928610U (en) 2023-10-11 2023-10-11 Reinforced bearing frame

Country Status (1)

Country Link
CN (1) CN220928610U (en)

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