Fabricated supporting structure for reinforced concrete
By designing an assembled support structure, the problems of the existing support device requiring a long beam and easily scratching the arm are solved, and rapid adjustment and safe and efficient support installation are achieved.
Patent Information
- Application Number
- CN202422985027.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-12-04
AI Technical Summary
The existing casting mold outer wall support device requires the preparation of a supporting beam of corresponding length according to the size of the mold. After installation, the beam extends out of the mold and is easy to scratch the arm, and the installation efficiency is low.
An assembled support structure including a support column, a connecting device, an adjusting device, a clamping block and a sliding device is designed, which allows the length and tightness of the beam to be quickly adjusted, and the beam does not extend out of the mold after installation and tightening.
It reduces preparation time, improves installation efficiency, avoids the risk of the beam scratching the arm, and enhances the convenience and safety of operation.
Smart Images

Figure CN223446639U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of support structure for fabricated reinforced concrete, belong to the support technical field for reinforced concrete pouring. BACKGROUND
[0002] The existing pouring mold outer wall support device needs to prepare the support beam of corresponding length according to the size of the mold, which requires a lot of preparation time for the staff, and the broken arm of the beam will extend out of the mold after installation, which is easy to scratch the arm when the staff walks and observes for a long time, and is not convenient for the staff to operate and use. CONTENT OF UTILITY MODEL
[0003] The utility model discloses the purpose that staff does not need a lot of time to prepare support beam, staff can adjust the length and tightness of beam at any time quickly, and the end of support beam will not extend out of the mold after installation and fastening, which is convenient for staff to install and use and improves work efficiency, and the technical scheme is as follows:
[0004] A prefabricated reinforced concrete support structure, it includes support column 1, connecting device 2, adjusting device 3, clamping block 4, sliding device 5, connecting beam 6, support sleeve 7, it is characterized in that: the connecting device 2 is inserted and equipped in the middle place of the outer surface of support column 1, the adjusting device 3 is inserted and equipped in the right surface upper edge front of connecting device 2, the clamping block 4 is inserted and equipped in the middle place of the front of the upper surface of connecting device 2, the sliding device 5 is inserted and equipped in the middle place of the front of the lower surface of the front surface of connecting device 2, the connecting beam 6 is inserted and equipped in the middle place of the front edge of the upper surface of sliding device 5, the support sleeve 7 is inserted and equipped in the lower center of the side surface of support column 1, the connecting device 2 includes horizontal plate 2-1, insertion hole 2-2, insertion slot 2-3 and through hole 2-4, the insertion hole 2-2 is equipped in the middle place of the rear edge of the upper surface of horizontal plate 2-1, the insertion slot 2-3 is equipped in the middle place of the lower surface of the front surface of horizontal plate 2-1, support column 1 is inserted in the insertion hole 2-2, the through hole 2-4 is equipped in the middle place of the front of the upper surface of horizontal plate 2-1, the inside of through hole 2-4 and the inside of insertion slot 2-3 are interconnected, the clamping block 4 is inserted in the through hole 2-4 and has spring shaft interconnection, the clamping block 4 is L-shaped, the front surface lower edge of clamping block 4 is inclined, the insertion slot 2-3 is T-shaped, the adjusting device 3 includes rotating column 3-1, gear 3-2, bearing 3-3 and rotating disc 3-4, the gear 3-2 is inserted and equipped in the middle place of the side surface of rotating column 3-1, the bearing 3-3 is inserted and equipped in the left and right edge of the side surface of rotating column 3-1, the rotating disc 3-4 is connected in the right side surface center of rotating column 3-1, the rotating disc 3-4 is hexagonal, the rotating column 3-1 is inserted in the inside of insertion slot 2-3, the gear 3-2 is inserted in the upper surface of insertion slot 2-3, the sliding device 5 includes insertion plate 5-1, tooth slot 5-2, clamping column 5-3 and rubber sleeve 5-4, a plurality of tooth slots 5-2 are vertically arranged and evenly distributed in the middle place of the upper surface of insertion plate 5-1, the clamping column 5-3 is connected in the middle place of the front edge of the upper surface of insertion plate 5-1, the rubber sleeve 5-4 is inserted and equipped in the lower edge of the side surface of clamping column 5-3, the insertion plate 5-1 is inserted in the insertion slot 2-3, and the gear 3-2 and the tooth slot 5-2 are interlocked, the front end of clamping block 4 is clamped in the tooth slot 5-2.
[0005] The beneficial effects of the present application are that the staff does not need to spend a lot of time preparing the support beam, the staff can quickly adjust the length and tightness of the beam at any time, and the end of the support beam will not protrude out of the mold after installation and fastening, which is convenient for the staff to install and use and improves work efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0006] Figure 1 It is the overall structure schematic diagram of the present application;
[0007] Figure 2is the connecting device 2 structural schematic view of the utility model;
[0008] Figure 3 is the adjusting device 3 structural schematic view of the utility model;
[0009] Figure 4 is the sliding device 5 structural schematic view of the utility model. CONCRETE
[0010] Referring to Figure 1 Figure 2 Figure 3 Figure 4 The utility model relates to a support structure for fabricated reinforced concrete, it includes support column 1, connecting device 2, adjusting device 3, clamping chuck 4, sliding device 5, connecting crossbeam 6, support sleeve 7, it is characterized by: the support column 1 outside surface middle place round center place inserts and installs connecting device 2, the right surface upper edge front of connecting device 2 inserts and installs adjusting device 3, the upper surface front middle place of connecting device 2 inserts and installs clamping chuck 4, the front surface lower middle place of connecting device 2 inserts and installs sliding device 5, the upper surface front edge middle place of sliding device 5 inserts and installs connecting crossbeam 6, the lower round center place of support column 1 side surface inserts and installs support sleeve 7, connecting device 2 includes horizontal plate 2-1, insertion hole 2-2, insertion slot 2-3 and through -hole 2-4, the upper surface rear edge middle place of horizontal plate 2-1 is equipped with insertion hole 2-2, the front surface lower middle place of horizontal plate 2-1 is equipped with insertion slot 2-3, support column 1 inserts and installs in insertion hole 2-2, the upper surface front middle place of horizontal plate 2-1 is equipped with through -hole 2-4, the inside of through -hole 2-4 and the inside of insertion slot 2-3 are mutually connected, clamping chuck 4 inserts and installs in through -hole 2-4 and has spring shaft interconnection, clamping chuck 4 is L type shape, the front surface lower edge of clamping chuck 4 is inclined type shape, insertion slot 2-3 is T type shape, adjusting device 3 includes rotating column 3-1, gear 3-2, bearing 3-3 and rotating disc 3-4, rotating column 3-1 side surface middle place inserts and installs gear 3-2, rotating column 3-1 side surface left and right edge inserts and installs bearing 3-3, rotating column 3-1 right side surface round center place is connected with rotating disc 3-4, rotating disc 3-4 is hexagonal shape, rotating column 3-1 inserts and installs in insertion slot 2-3 inside, gear 3-2 inserts and installs in insertion slot 2-3 upper surface, sliding device 5 includes insertion plate 5-1, tooth slot 5-2, card column 5-3 and rubber sleeve 5-4, the upper surface middle place of insertion plate 5-1 is equipped with several tooth slot 5-2 and is distributed vertically, the upper surface front edge middle place of insertion plate 5-1 is connected with card column 5-3, the side surface lower edge of card column 5-3 inserts and installs rubber sleeve 5-4, insertion plate 5-1 inserts and installs in insertion slot 2-3, and gear 3-2 and tooth slot 5-2 are mutually engaged, the front end of clamping chuck 4 is clamped in tooth slot 5-2.
[0011] In use, first, the staff will be fixed on the ground support column 1, then the appropriate height of the support sleeve 7 inserted in the support column 1, then the hole 2-2 on the connecting device 2 inserted in the support column 1 and the cross plate 2-1 card in the support sleeve 7 upper surface, then the staff will be inserted in the sliding device 5 on the card column 5-3 connecting beam 6, then the staff using wrench rotating dial 3-4 on the adjusting device 3, while the dial 3-4 driven rotating column 3-1 in the slot 2-3 with bearing 3-3 as the center of rotation, while the gear 3-2 and tooth slot 3-2 engagement driven plugboard 5-1 in the slot 2-3 to move, while the clamping block 4 front surface is inclined and with spring shaft plugboard 5-1 inserted into the slot 2-3 will not be stuck, finally, the card column 5-3 connecting beam 6 while the rubber sleeve 5-4 can buffer connecting beam 6 tension to use.
[0012] In the connecting beam 6 is removed, press the clamping block 4 rear end of the clamping block 4 front end and tooth slot 5-2 separated and pull the plugboard 5-1 can be released and removed connecting beam 6.
[0013] In the use of higher mold can use several support sleeve 7 will be each layer of connecting beam 6 separated.
[0014] In addition, it should be understood that although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solutions, the specification of this narrative is merely for the sake of clarity, the skilled person should be considered as a whole specification, the technical solutions in each example can be properly combined, form other embodiments that the skilled person can understand.
Claims
1. A prefabricated reinforced concrete support structure, comprising a support column (1), a connecting device (2), an adjusting device (3), a clamping block (4), a sliding device (5), a connecting beam (6), and a supporting sleeve (7), characterized in that: A connecting device (2) is inserted at the center of the middle of the outer surface of the supporting column (1), an adjusting device (3) is inserted at the front of the upper edge of the right surface of the connecting device (2), a clamping block (4) is inserted at the middle of the front of the upper surface of the connecting device (2), a sliding device (5) is inserted at the middle of the lower front surface of the connecting device (2), a connecting crossbeam (6) is inserted at the middle of the front edge of the upper surface of the sliding device (5), and a supporting sleeve (7) is inserted at the center of the lower side surface of the supporting column (1).
2. The prefabricated reinforced concrete support structure according to claim 1, characterized in that: The connecting device (2) comprises a transverse plate (2-1), a socket (2-2), a slot (2-3) and a through hole (2-4); the socket (2-2) is provided at the middle of the rear edge of the upper surface of the transverse plate (2-1); the slot (2-3) is provided at the middle of the lower front surface of the transverse plate (2-1); the through hole (2-4) is provided at the middle of the front of the upper surface of the transverse plate (2-1); the supporting column (1) is inserted into the socket (2-2); the interior of the through hole (2-4) and the interior of the slot (2-3) are interconnected; the clamping block (4) is inserted into the through hole (2-4) and is connected to each other by a spring shaft; the clamping block (4) is L-shaped; the lower edge of the front surface of the clamping block (4) is sloped; and the slot (2-3) is T-shaped.
3. The prefabricated reinforced concrete support structure according to claim 2, characterized in that: The adjusting device (3) comprises a rotating column (3-1), a gear (3-2), a bearing (3-3) and a rotating disk (3-4); the gear (3-2) is inserted in the middle of the side surface of the rotating column (3-1); the bearings (3-3) are inserted at the left and right edges of the side surface of the rotating column (3-1); the rotating disk (3-4) is connected to the center of the circle of the right side surface of the rotating column (3-1); the rotating disk (3-4) is hexagonal in shape; the rotating column (3-1) is inserted in the interior of the slot (2-3); and the gear (3-2) is inserted on the upper surface of the slot (2-3).
4. The prefabricated reinforced concrete support structure according to claim 3, characterized in that: The sliding device (5) comprises an inserting plate (5-1), a tooth groove (5-2), a clamping column (5-3) and a rubber sleeve (5-4); a plurality of tooth grooves (5-2) are evenly distributed in a vertical row in the middle of the upper surface of the inserting plate (5-1); a clamping column (5-3) is connected to the middle of the front edge of the upper surface of the inserting plate (5-1); a rubber sleeve (5-4) is inserted at the lower edge of the side surface of the clamping column (5-3); the inserting plate (5-1) is inserted into the slot (2-3), and the gear (3-2) and the tooth groove (5-2) are engaged with each other, and the front end of the clamping block (4) is clamped in the tooth groove (5-2).