A hanging basket assembling and connecting structure for cantilever beam construction
By introducing anchor reverse stop assembly and anchor hole compensation assembly into the cantilever beam construction hanging basket, the problem of poor matching of anchor holes and anchor parts is solved, and a fast and stable hanging basket assembly and connection is achieved, improving construction efficiency and stability.
Patent Information
- Application Number
- CN202310886152.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-19
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2043-07-19
AI Technical Summary
In the existing cantilever beam construction hanging basket assembly and connection structure, the anchor holes and the inner and outer diameters of the anchors are difficult to match completely, resulting in cumbersome and unstable installation, affecting assembly efficiency and overall stability.
The anchor counter stop assembly and anchor hole compensation assembly are adopted. Through the design of the anchor counter stop shaft and anchor hole compensation plate, the anchor parts can be quickly installed and stable connection, avoiding the anchor parts sliding in the anchor hole, and improving assembly efficiency and stability.
The assembly and connection process between the main body of the hanging basket and the cantilever beam is simplified, the construction efficiency is improved, and the overall stability of the hanging basket is enhanced, avoiding the shaking and wear of the anchors in the anchor hole.
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Figure CN116657509B_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of hanging baskets for cantilever beam construction, and particularly relates to an assembling and connecting structure of a hanging basket for cantilever beam construction. Background Art
[0002] The hanging basket is the main equipment in cantilever construction. According to the structural form, it can be divided into four types: truss type, cable-stayed type, profiled steel type and hybrid type. According to the requirements of the concrete cantilever construction process and the requirements of the design drawings for the hanging basket, comprehensively compare the characteristics, weight, type of steel used, construction technology, etc. of various forms of hanging baskets; the design principles of the hanging basket: light self-weight, simple structure, firm and stable, convenient for forward movement, installation and disassembly, with strong reusability, small deformation after stress, etc., and there is sufficient space under the hanging basket, which can provide a large construction operation surface and is conducive to the construction operation of steel bars and formwork.
[0003] Some invention patents in the technical field of hanging baskets for cantilever beam construction are disclosed in the prior art. Among them, Chinese Patent CN115418974A discloses an adjustable hanging basket for bridge construction, including a construction bracket attached to the upper end surface of the bridge. A hanging basket assembly is installed at the upper end of the construction bracket. The hanging basket assembly includes a plurality of support socket seats installed on the upper end of a positioning substrate. Each support socket seat is provided with a docking jack at the upper end. A support column is cooperatively arranged in each docking jack. A slantingly arranged fixed hanging basket arm is erected between the support columns on the same positioning substrate. A plurality of grafting rods are erected at equal intervals between two adjacent fixed hanging basket arms. A movable hanging basket arm is slidably arranged outside each fixed hanging basket arm. By optimizing the hanging basket, the invention can be finely adjusted as needed. This adjustable setting can facilitate fine adjustment of the position of the suspension installation beam after installation and positioning, avoiding the problem of excessive error.
[0004] There are still some deficiencies in the assembling and connecting structure of the hanging basket for cantilever beam construction in the prior art. In order to improve the overall stability of the hanging basket, the anchor holes opened on the cantilever beam and the anchoring system are mostly in a socket connection relationship. The outer diameter of the anchor is basically the same as the inner diameter of the anchor hole. Therefore, when installing the anchor, a construction worker needs to go down to the lower part of the cantilever beam to insert the anchor into the anchor hole, and then the construction worker on the cantilever beam uses a nut to tighten it. The operation process is relatively cumbersome, which will reduce the assembly efficiency of the anchoring system. Since it is difficult for the inner diameter of the anchor hole to be equal to the outer diameter of the anchor, or there is a certain error, there is a gap between the anchor and the anchor hole. The existence of the gap makes the anchor slide in the anchor hole, thus affecting the overall stability of the hanging basket.
[0005] Based on this, the invention designs an assembling and connecting structure of a hanging basket for cantilever beam construction to solve the above problems. Summary of the Invention
[0006] The object of the present invention is to solve the problem that there are still some deficiencies in the hanging basket assembly connection structure for cantilever beam construction in the prior art during use. In order to improve the overall stability of the hanging basket, the anchor holes opened on the cantilever beam and the anchoring system are mostly in a socket connection relationship, and the outer diameter of the anchor is basically the same as the inner diameter of the anchor hole. Therefore, when installing the anchor, a construction worker needs to descend to the lower part of the cantilever beam to insert the anchor into the anchor hole, and then the construction worker located on the cantilever beam uses a nut for fastening. The operation process is relatively cumbersome, which will reduce the assembly efficiency of the anchoring system. Since it is difficult for the inner diameter of the anchor hole to be equal to the outer diameter of the anchor, or there is a certain error, there is a gap between the anchor and the anchor hole. The existence of the gap causes the anchor to slide in the anchor hole, thus affecting the overall stability of the hanging basket. A hanging basket assembly connection structure for cantilever beam construction is proposed.
[0007] In order to achieve the above object, the present invention adopts the following technical solutions:
[0008] A hanging basket assembly connection structure for cantilever beam construction, including a hanging basket main body, a hanging basket anchoring component is assembled and connected on the hanging basket main body, and a plurality of anchoring reverse stop components are connected on the circumferential surface of the bottom of the hanging basket anchoring component in an annular array. The anchoring reverse stop component includes an anchoring reverse stop shaft. The hanging basket anchoring component includes a hanging basket anchoring pile. A plurality of anchoring reverse stop shafts are folded around the hanging basket anchoring pile. A reverse stop trigger cylinder is sleeved on the axial surface of the hanging basket anchoring pile, and pushing the reverse stop trigger cylinder causes the plurality of anchoring reverse stop shafts to unfold;
[0009] A plurality of concave grooves are opened on the axial surface of the hanging basket anchoring pile in an annular array. An anchor hole compensation component is embedded in the concave groove. The anchor hole compensation component includes an anchor hole compensation plate. Pushing the reverse stop trigger cylinder causes the plurality of anchor hole compensation plates to unfold to compensate for the gap between the anchor hole and the reverse stop trigger cylinder.
[0010] As a further description of the above technical solution:
[0011] The hanging basket anchoring component includes a hanging basket anchoring seat, the hanging basket anchoring seat is assembled and connected on the hanging basket main body, a through connection hole is opened on the hanging basket main body at a position corresponding to the hanging basket anchoring seat, and the hanging basket anchoring pile is inserted into the through connection hole.
[0012] As a further description of the above technical solution:
[0013] An anchoring disc is connected on the hanging basket anchoring seat, the anchoring disc is sleeved on the axial surface of the hanging basket anchoring seat, an external thread is opened on the axial surface of the hanging basket anchoring pile, the hanging basket anchoring pile is threadedly connected with an anchoring nut through the external thread, and the anchoring nut is pressurized and connected to the hanging basket anchoring seat through the anchoring disc.
[0014] As a further description of the above technical solution:
[0015] The anchoring backstop assembly includes an anchoring backstop seat, which is connected to the circumferential surface at the bottom of the hanging basket anchoring pile. A backstop rotating shaft is rotatably connected to the inner side of the anchoring backstop seat. An anchoring backstop shaft is sleeved around the backstop rotating shaft, and the anchoring backstop shaft is rotatably connected to the shaft surface of the backstop rotating shaft through an anchoring disc;
[0016] A backstop spring is connected to the side of the anchoring disc, and the anchoring disc is elastically connected to the backstop rotating shaft through the backstop spring.
[0017] As a further description of the above technical solution:
[0018] A limiting tray is connected to the bottom of the anchoring backstop seat, which is used to limit the rotation angle of the anchoring backstop shaft passing through the backstop rotating shaft. After being unfolded, the anchoring backstop shaft is attached to the bottom of the cantilever beam body.
[0019] As a further description of the above technical solution:
[0020] Backstop trigger grooves are provided at the bottom of the backstop trigger cylinder corresponding to multiple anchoring backstop assemblies, and the multiple anchoring backstop assemblies are respectively located in the multiple backstop trigger grooves.
[0021] As a further description of the above technical solution:
[0022] The top inside the backstop trigger groove is of an arc-shaped structure, one end of the anchoring backstop shaft away from the backstop rotating shaft is of an arc-shaped structure, and the corresponding surface of the backstop rotating shaft and the anchoring backstop shaft is a convex surface.
[0023] As a further description of the above technical solution:
[0024] The anchor hole compensation assembly includes an anchor hole compensation plate, which is located in a compensation opening provided on the outer wall of the backstop trigger cylinder. Fixed compensation devices and movable compensation devices are respectively connected to the inner arc surface of the anchor hole compensation plate. The fixed compensation device is embedded and connected in a concave groove, and the movable compensation device is slidably connected in the concave groove.
[0025] As a further description of the above technical solution:
[0026] The fixed compensation device includes a first adapter seat, which is connected to the inner arc surface of the anchor hole compensation plate. A first compensation inner lining is rotatably connected to the inner side of the first adapter seat. The other end of the first compensation inner lining is sleeved with a first compensation outer sleeve. The first compensation inner lining is connected to the inside of the first compensation outer sleeve through a first compensation spring. The other end of the first compensation outer sleeve is rotatably connected to a second adapter seat, and the second adapter seat is embedded and connected in the concave groove.
[0027] As a further description of the above technical solution:
[0028] The movable compensation device includes a third adapter seat, which is connected to the inner arc surface of the anchor hole compensation plate. A second compensation lining is rotatably connected to the inner side of the third adapter seat. The other end of the second compensation lining is sleeved with a second compensation outer sleeve. The second compensation lining is connected to the inside of the second compensation outer sleeve through a second compensation spring. The other end of the second compensation outer sleeve is rotatably connected to a fourth adapter seat, and the fourth adapter seat is slidably connected in the concave groove;
[0029] A push seat is arranged at a position corresponding to the upper part of the fourth compensation seat in the concave groove, and the push seat is connected to the anchor hole compensation plate.
[0030] In summary, due to the adoption of the above technical solutions, the beneficial effects of the present invention are as follows:
[0031] 1. In the present invention, the anchoring disc is sleeved on the hanging basket anchoring pile, and then the anchoring nut is threadedly connected to the hanging basket anchoring pile. Continuing to twist the anchoring nut, the reverse trigger cylinder moves downward under the push of the anchoring nut. When the top of the inner side of the reverse trigger groove is connected to the top of the anchoring reverse shaft, the arc-shaped structure on the top of the inner side of the reverse trigger groove will generate a lateral thrust on the anchoring reverse shaft. Under the action of the lateral thrust, the anchoring reverse shaft rotates through the reverse rotation shaft, and the reverse spring is twisted to generate elastic deformation. Subsequently, the pulling force acting on the hanging basket anchoring pile can be removed. The anchoring disc abuts against the top of the hanging basket anchoring seat, and multiple anchoring reverse shafts abut against the bottom of the cantilever arm. The multiple anchoring reverse shafts and the anchoring disc cooperate with each other, so that the hanging basket main body can be firmly assembled and connected to the cantilever beam through the hanging basket anchoring pile. For the assembly connection between the hanging basket anchoring pile and the cantilever beam, the construction personnel can directly complete the operation quickly at the top of the cantilever arm, without the need for the staff to go down to the lower part of the cantilever beam to insert the hanging basket anchoring pile with a baffle into the anchor hole, which simplifies the assembly connection operation process between the hanging basket main body and the cantilever beam and is beneficial to improving the work efficiency of the staff during the assembly of the hanging basket main body.
[0032] 2. In the present invention, during the downward movement of the check trigger cylinder, it will also drive the push seat to perform a synchronous displacement action. The push seat will push the fourth adapter seat to slide in the concave groove. While the fourth adapter seat drives the second compensation outer sleeve to move during the sliding process, the second compensation outer sleeve will also rotate inside the fourth adapter seat, so as to be able to push the anchor hole compensation plate towards the anchor hole wall until the anchor hole compensation plate tightly adheres to the anchor hole wall. This is beneficial to improving the stability of the hanging basket anchoring pile in the anchor hole, avoiding the shaking of the hanging basket anchoring pile inside the anchor hole, and thus is beneficial to improving the overall stability of the hanging basket main body. Cooperating with the elastic forces of the first compensation spring and the second compensation spring acting on the first compensation inner lining and the second compensation inner lining respectively, when there is wear between the hanging basket anchoring pile and the anchor hole, under the elastic support forces of the first compensation spring and the second compensation spring, the anchor hole compensation plate will still be attached and connected to the anchor hole wall. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] Figure 1 FIG. 6 is an overall structural schematic diagram of a hanging basket assembly connection structure for cantilever beam construction proposed by the present invention;
[0034] Figure 2 FIG. 10 is a structural schematic diagram of the hanging basket assembly connection structure for cantilever beam construction proposed by the present invention from another perspective;
[0035] Figure 3 FIG. 14 is a structural schematic diagram of the hanging basket anchoring assembly in the hanging basket assembly connection structure for cantilever beam construction proposed by the present invention;
[0036] Figure 4 FIG. 18 is a structural schematic diagram of the split state after the anchoring check assembly in the hanging basket assembly connection structure for cantilever beam construction proposed by the present invention is unfolded;
[0037] Figure 5 FIG. 22 is a hanging basket assembly connection structure for cantilever beam construction proposed by the present invention Figure 4 The enlarged structural schematic diagram at A in;
[0038] Figure 6 FIG. 28 is a structural schematic diagram of the split state of the anchor hole compensation assembly in the hanging basket assembly connection structure for cantilever beam construction proposed by the present invention;
[0039] Figure 7 FIG. 32 is a structural schematic diagram of the anchor hole compensation assembly in the hanging basket assembly connection structure for cantilever beam construction proposed by the present invention;
[0040] Figure 8 FIG. 36 is an internal structural schematic diagram of the check trigger cylinder in the hanging basket assembly connection structure for cantilever beam construction proposed by the present invention.
[0041] LEGEND DESCRIPTION:
[0042] 1. Main body of the hanging basket; 2. Hanging basket anchoring component; 201. Hanging basket anchoring seat; 202. Hanging basket anchoring pile; 203. Anchoring plate; 204. Anchoring nut; 3. Anchoring non-return component; 301. Anchoring non-return seat; 302. Anchoring non-return shaft; 303. Non-return rotating shaft; 304. Non-return spring; 305. Limit tray; 4. Non-return trigger cylinder; 5. Non-return trigger groove; 6. Concave groove; 7. Anchor hole compensation component; 701. Anchor hole compensation plate; 702. Fixed compensation device; 7021. First adapter seat; 7022. First compensation lining; 7023. First compensation outer sleeve; 7024. Second adapter seat; 703. Movable compensation device; 7031. Third adapter seat; 7032. Second compensation lining; 7033. Second compensation outer sleeve; 7034. Fourth adapter seat; 8. Compensation port. Detailed implementation mode
[0043] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the scope of protection of the present invention.
[0044] Please refer to Figures 1-8 , the present invention provides a technical solution: a hanging basket assembly connection structure for cantilever beam construction, including the main body 1 of the hanging basket. A hanging basket anchoring component 2 is assembled and connected to the main body 1 of the hanging basket. A plurality of anchoring non-return components 3 are connected to the circumferential surface at the bottom of the hanging basket anchoring component 2 in an annular array. The anchoring non-return component 3 includes an anchoring non-return shaft 302. The hanging basket anchoring component 2 includes a hanging basket anchoring pile 202. A plurality of anchoring non-return shafts 302 are folded around the hanging basket anchoring pile 202. The axial surface of the hanging basket anchoring pile 202 is sleeved with a non-return trigger cylinder 4. Pushing the non-return trigger cylinder 4 causes the plurality of anchoring non-return shafts 302 to unfold;
[0045] A plurality of concave grooves 6 are formed in the axial surface of the hanging basket anchoring pile 202 in an annular array. An anchor hole compensation component 7 is embedded in the concave groove 6. The anchor hole compensation component 7 includes an anchor hole compensation plate 701. Pushing the non-return trigger cylinder 4 causes the plurality of anchor hole compensation plates 701 to unfold to compensate for the gap between the anchor hole and the non-return trigger cylinder 4.
[0046] Specifically, the hanging basket anchoring component 2 includes a hanging basket anchoring seat 201. The hanging basket anchoring seat 201 is assembled and connected to the main body 1 of the hanging basket. A through connection hole is formed in the main body 1 of the hanging basket at the position corresponding to the hanging basket anchoring seat 201. The hanging basket anchoring pile 202 is inserted into the through connection hole.
[0047] The specific implementation mode is as follows:
[0048] Specifically, an anchor plate 203 is connected to the hanging basket anchor seat 201. The anchor plate 203 is sleeved on the axial surface of the hanging basket anchor seat 201. An external thread is provided on the axial surface of the hanging basket anchor pile 202. The hanging basket anchor pile 202 is threadedly connected with an anchor nut 204 through the external thread. The anchor nut 204 is pressurized and connected to the hanging basket anchor seat 201 through the anchor plate 203.
[0049] The implementation method is specifically as follows: First, place the hanging basket anchor seat 201 at a suitable position on the hanging basket main body 1. A through connection hole is reserved at the position corresponding to the hanging basket anchor seat 201 on the hanging basket main body 1. Then, insert the hanging basket anchor pile 202 into the inside of the hanging basket anchor seat 201 and the hanging basket anchor pile 202 in sequence, and continue to push the hanging basket anchor pile 202 to move in the anchor hole opened on the cantilever beam until multiple anchor reverse stop components 3 on the hanging basket anchor pile 202 move downward to the lower part of the cantilever beam.
[0050] Specifically, the anchor reverse stop component 3 includes an anchor reverse stop seat 301. The anchor reverse stop seat 301 is connected to the circumferential surface at the bottom of the hanging basket anchor pile 202. A reverse stop rotating shaft 303 is rotatably connected to the inside of the anchor reverse stop seat 301. An anchor reverse stop shaft 302 is sleeved on the periphery of the reverse stop rotating shaft 303. The anchor reverse stop shaft 302 is rotatably connected to the axial surface of the reverse stop rotating shaft 303 through the anchor plate 203;
[0051] A reverse stop spring 304 is connected to the side of the anchor plate 203. The anchor plate 203 is elastically transferred to the reverse stop rotating shaft 303 through the reverse stop spring 304. A limit tray 305 is connected to the bottom of the anchor reverse stop seat 301, which is used to limit the rotation angle of the anchor reverse stop shaft 302 through the reverse stop rotating shaft 303. After being unfolded, the anchor reverse stop shaft 302 is attached to the bottom of the cantilever beam body. Reverse stop trigger grooves 5 are provided at the bottom of the reverse stop trigger cylinder 4 corresponding to multiple anchor reverse stop components 3. Multiple anchor reverse stop components 3 are respectively located in multiple reverse stop trigger grooves 5. The top inside the reverse stop trigger groove 5 is of an arc-shaped structure. One end of the anchor reverse stop shaft 302 away from the reverse stop rotating shaft 303 is of an arc-shaped structure. The corresponding surface of the reverse stop rotating shaft 303 and the anchor reverse stop shaft 302 is a convex surface.
[0052] The implementation method is specifically as follows: The anchoring disc 203 is sleeved on the hanging basket anchoring pile 202, and then the anchoring nut 204 is threadedly connected to the hanging basket anchoring pile 202. Then, the anchoring nut 204 is further twisted. Under the push of the anchoring nut 204, the reverse-stop trigger cylinder 4 descends. When the top inside the reverse-stop trigger groove 5 is connected to the top of the anchoring reverse-stop shaft 302, the arc-shaped structure on the top inside the reverse-stop trigger groove 5 will generate a lateral thrust on the anchoring reverse-stop shaft 302. Under the action of the lateral thrust, the anchoring reverse-stop shaft 302 rotates through the reverse-stop rotating shaft 303, and the reverse-stop spring 304 is twisted to generate elastic deformation. Then, the pulling force acting on the hanging basket anchoring pile 202 can be removed. The anchoring disc 203 abuts against the top of the hanging basket anchoring seat 201, and multiple anchoring reverse-stop shafts 302 abut against the bottom of the cantilever arm. The multiple anchoring reverse-stop shafts 302 cooperate with the anchoring disc 203, so that the main body 1 of the hanging basket can be firmly assembled and connected to the cantilever beam through the hanging basket anchoring pile 202.
[0053] Specifically, the anchor hole compensation assembly 7 includes an anchor hole compensation plate 701. The anchor hole compensation plate 701 is located in the compensation opening 8 formed on the outer wall of the reverse-stop trigger cylinder 4. Fixed compensation devices 702 and movable compensation devices 703 are respectively connected to the inner arc surface of the anchor hole compensation plate 701. The fixed compensation device 702 is embedded and connected in the concave groove 6, and the movable compensation device 703 is slidably connected in the concave groove 6. The fixed compensation device 702 includes a first adapter seat 7021. The first adapter seat 7021 is connected to the inner arc surface of the anchor hole compensation plate 701. A first compensation inner liner 7022 is rotatably connected to the inner side of the first adapter seat 7021. The other end of the first compensation inner liner 7022 is sleeved with a first compensation outer sleeve 7023. The first compensation inner liner 7022 is connected to the inside of the first compensation outer sleeve 7023 through a first compensation spring. The other end of the first compensation outer sleeve 7023 is rotatably connected to a second adapter seat 7024. The second adapter seat 7024 is embedded and connected in the concave groove 6. The movable compensation device 703 includes a third adapter seat 7031. The third adapter seat 7031 is connected to the inner arc surface of the anchor hole compensation plate 701. A second compensation inner liner 7032 is rotatably connected to the inner side of the third adapter seat 7031. The other end of the second compensation inner liner 7032 is sleeved with a second compensation outer sleeve 7033. The second compensation inner liner 7032 is connected to the inside of the second compensation outer sleeve 7033 through a second compensation spring. The other end of the second compensation outer sleeve 7033 is rotatably connected to a fourth adapter seat 7034. The fourth adapter seat 7034 is slidably connected in the concave groove 6;
[0054] A push seat is arranged at a position corresponding to the upper side of the fourth compensation seat in the concave groove 6. The push seat is connected to the anchor hole compensation plate 701.
[0055] The implementation method is specifically as follows: During the downward movement of the check trigger cylinder 4, it will also drive the push seat to perform a synchronous displacement action. The push seat will push the fourth adapter seat 7034 to slide in the concave groove 6. During the sliding process of the fourth adapter seat 7034, while driving the second compensation outer sleeve 7033 to move, the second compensation outer sleeve 7033 will also rotate inside the fourth adapter seat 7034, so as to be able to push the anchor hole compensation plate 701 towards the anchor hole wall until the anchor hole compensation plate 701 tightly adheres to the anchor hole wall, which is beneficial to improving the stability of the hanging basket anchoring pile 202 in the anchor hole and preventing the hanging basket anchoring pile 202 from shaking inside the anchor hole. Combining with the elastic forces of the first compensation spring and the second compensation spring acting on the first compensation inner lining 7022 and the second compensation inner lining 7032 respectively, when abrasion occurs between the hanging basket anchoring pile 202 and the anchor hole, under the elastic supporting forces of the first compensation spring and the second compensation spring, the anchor hole compensation plate 701 will still be attached and connected to the anchor hole wall.
[0056] Working principle, when in use:
[0057] First, place the hanging basket anchoring seat 201 at a suitable position on the hanging basket main body 1. There are passing connection holes reserved on the hanging basket main body 1 corresponding to the position of the hanging basket anchoring seat 201. Then, insert the hanging basket anchoring pile 202 successively inside the hanging basket anchoring seat 201 and the hanging basket anchoring pile 202, and continue to push the hanging basket anchoring pile 202 to move in the anchor hole opened on the cantilever arm until multiple anchoring check components 3 on the hanging basket anchoring pile 202 are located below the cantilever arm after moving downward;
[0058] Put the anchoring disc 203 on the hanging basket anchoring pile 202, and then thread the anchoring nut 204 onto the hanging basket anchoring pile 202. Continue to twist the anchoring nut 204. Under the push of the anchoring nut 204, the check trigger cylinder 4 moves downward. When the top inside the check trigger groove 5 is connected to the top of the anchoring check shaft 302, the arc-shaped structure at the top inside the check trigger groove 5 will generate a lateral thrust on the anchoring check shaft 302. Under the action of the lateral thrust, the anchoring check shaft 302 rotates through the check rotating shaft 303, and twists the check spring 304 to generate elastic deformation. Subsequently, the pulling force acting on the hanging basket anchoring pile 202 can be removed. The anchoring disc 203 abuts against the top of the hanging basket anchoring seat 201, and multiple anchoring check shafts 302 abut against the bottom of the cantilever arm. Multiple anchoring check shafts 302 cooperate with the anchoring disc 203, so as to be able to firmly assemble and connect the hanging basket main body 1 to the cantilever beam through the hanging basket anchoring pile 202. For the assembly connection between the hanging basket anchoring pile 202 and the cantilever beam, construction workers can directly complete the operation quickly at the top of the cantilever arm without having to go down to the bottom of the cantilever arm to insert the hanging basket anchoring pile 202 with a baffle into the anchor hole, which simplifies the assembly connection operation process between the hanging basket main body 1 and the cantilever beam and is beneficial to improving the work efficiency of construction workers during the assembly of the hanging basket main body 1.
[0059] During the downward movement of the check trigger cylinder 4, the push seat will also be driven to perform synchronous displacement, and the push seat will push the No. 4 adapter 7034 to slide in the concave groove 6. During the sliding process, the No. 4 adapter 7034 drives the No. 2 compensation sleeve 7033 to move, and the No. 2 compensation sleeve 7033 will also rotate on the inner side of the No. 4 adapter 7034, thereby pushing the anchor hole compensation plate 701 to move toward the wall of the anchor hole until the anchor hole compensation plate 701 is tightly attached to the wall of the anchor hole, thereby facilitating the lifting of the hanging The stability of the basket anchor pile 202 in the anchor hole can prevent the hanging basket anchor pile 202 from shaking on the inner side of the anchor hole, which is beneficial to improving the overall stability of the hanging basket body 1. With the elastic force of the No. 1 compensation spring and the No. 2 compensation spring acting on the No. 1 compensation liner 7022 and the No. 2 compensation liner 7032 respectively, when wear occurs between the hanging basket anchor pile 202 and the anchor hole, the anchor hole compensation plate 701 will still be attached to the wall of the anchor hole under the elastic supporting force of the No. 1 compensation spring and the No. 2 compensation spring.
[0060] The above are only preferred specific implementation modes of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical solutions and inventive concepts of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A hanging basket assembly connection structure for cantilever beam construction, including a hanging basket main body (1), characterized in that, The hanging basket main body (1) is assembled and connected with a hanging basket anchoring component (2). A plurality of anchoring non-return components (3) are connected to the circumferential surface at the bottom of the hanging basket anchoring component (2) in an annular array. The anchoring non-return component (3) includes an anchoring non-return shaft (302). The hanging basket anchoring component (2) includes a hanging basket anchoring pile (202). A plurality of anchoring non-return shafts (302) are arranged in a folded manner around the hanging basket anchoring pile (202). A non-return trigger cylinder (4) is sleeved on the axial surface of the hanging basket anchoring pile (202). Pushing the non-return trigger cylinder (4) causes the plurality of anchoring non-return shafts (302) to unfold; A plurality of concave grooves (6) are formed in an annular array on the axial surface of the hanging basket anchoring pile (202). An anchor hole compensation component (7) is connected in the concave groove (6) in an embedded manner. The anchor hole compensation component (7) includes an anchor hole compensation plate (701). Pushing the non-return trigger cylinder (4) causes the plurality of anchor hole compensation plates (701) to unfold to compensate for the gap between the anchor hole and the non-return trigger cylinder (4); The hanging basket anchoring component (2) includes a hanging basket anchoring seat (201). The hanging basket anchoring seat (201) is assembled and connected to the hanging basket main body (1). A through connection hole is formed in the hanging basket main body (1) at a position corresponding to the hanging basket anchoring seat (201). The hanging basket anchoring pile (202) is inserted into the through connection hole; An anchoring disc (203) is connected to the hanging basket anchoring seat (201). The anchoring disc (203) is sleeved on the axial surface of the hanging basket anchoring seat (201). External threads are formed on the axial surface of the hanging basket anchoring pile (202). The hanging basket anchoring pile (202) is threadedly connected with an anchoring nut (204) through the external threads. The anchoring nut (204) is pressurized and connected to the hanging basket anchoring seat (201) through the anchoring disc (203); The anchoring non-return component (3) includes an anchoring non-return seat (301). The anchoring non-return seat (301) is connected to the circumferential surface at the bottom of the hanging basket anchoring pile (202). A non-return rotating shaft (303) is rotatably connected to the inner side of the anchoring non-return seat (301). An anchoring non-return shaft (302) is sleeved on the periphery of the non-return rotating shaft (303). The anchoring non-return shaft (302) is rotatably connected to the axial surface of the non-return rotating shaft (303) through the anchoring disc (203); A non-return spring (304) is connected to the side of the anchoring disc (203). The anchoring disc (203) is elastically connected to the non-return rotating shaft (303) through the non-return spring (304).
2. The assembling and connecting structure of the hanging basket for cantilever beam construction according to claim 1, characterized in that, A limiting tray (305) is connected to the bottom of the anchoring non-return seat (301) for limiting the rotation angle of the anchoring non-return shaft (302) through the non-return rotating shaft (303). The unfolded anchoring non-return shaft (302) is attached to the bottom of the cantilever beam body.
3. A hanging basket assembly connection structure for cantilever beam construction according to claim 1, characterized in that, Non-return trigger grooves (5) are formed at the bottom of the non-return trigger cylinder (4) corresponding to the plurality of anchoring non-return components (3). The plurality of anchoring non-return components (3) are respectively located in the plurality of non-return trigger grooves (5).
4. A hanging basket assembly connection structure for cantilever beam construction according to claim 3, characterized in that, The top inside the reverse stop trigger groove (5) is of an arc-shaped structure, one end of the anchoring reverse stop shaft (302) away from the reverse stop rotating shaft (303) is of an arc-shaped structure, and the corresponding surface of the reverse stop rotating shaft (303) and the anchoring reverse stop shaft (302) is a convex surface.
5. A hanging basket assembly connection structure for cantilever beam construction according to claim 1, characterized in that, The anchor hole compensation assembly (7) includes an anchor hole compensation plate (701). The anchor hole compensation plate (701) is located in a compensation port (8) opened on the outer wall of the reverse stop trigger cylinder (4). Fixed compensation devices (702) and movable compensation devices (703) are respectively connected to the inner arc surface of the anchor hole compensation plate (701). The fixed compensation devices (702) are connected to the concave groove (6) in an embedded manner, and the movable compensation devices (703) are slidably connected to the concave groove (6).
6. The assembling and connecting structure of the hanging basket for cantilever beam construction according to claim 5, characterized in that, The fixed compensation device (702) includes a first adapter seat (7021). The first adapter seat (7021) is connected to the inner arc surface of the anchor hole compensation plate (701). A first compensation inner liner (7022) is rotatably connected to the inner side of the first adapter seat (7021). The other end of the first compensation inner liner (7022) is sleeved with a first compensation outer sleeve (7023). The first compensation inner liner (7022) is connected to the inside of the first compensation outer sleeve (7023) through a first compensation spring. The other end of the first compensation outer sleeve (7023) is rotatably connected to a second adapter seat (7024). The second adapter seat (7024) is connected to the concave groove (6) in an embedded manner.
7. A hanging basket assembly connection structure for cantilever beam construction according to claim 5, characterized in that, The movable compensation device (703) includes a third adapter seat (7031). The third adapter seat (7031) is connected to the inner arc surface of the anchor hole compensation plate (701). A second compensation inner liner (7032) is rotatably connected to the inner side of the third adapter seat (7031). The other end of the second compensation inner liner (7032) is sleeved with a second compensation outer sleeve (7033). The second compensation inner liner (7032) is connected to the inside of the second compensation outer sleeve (7033) through a second compensation spring. The other end of the second compensation outer sleeve (7033) is rotatably connected to a fourth adapter seat (7034). The fourth adapter seat (7034) is slidably connected to the concave groove (6); A push seat is arranged at a position corresponding to the upper side of the fourth compensation seat in the concave groove (6). The push seat is connected to the anchor hole compensation plate (701).
Citation Information
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