A connecting assembly for hoisting a component based on an SPCS structural system
By designing a combined structure of the connecting body, the hoisting body, and the support frame, the problem of decreased stability caused by wear of traditional connecting components was solved, enabling stable hoisting and safe replacement of precast slabs, and improving the service life and safety of the connecting components.
Patent Information
- Application Number
- CN202210682275.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-06-15
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2042-06-15
AI Technical Summary
The connecting components used for hoisting traditional SPCS structural systems are prone to wear after prolonged use, leading to decreased stability and potentially causing engineering accidents.
A connection assembly comprising a connecting body, a hoisting body, and a support frame was designed. By setting up structures such as connecting columns, limiting plates, positioning plates, fixed threaded shafts, and steel cables, the assembly achieves stable hoisting and buffering of precast slabs, facilitates the disassembly and replacement of components, and enhances connection stability.
It improves the stability and service life of the connecting components, reduces the instantaneous tensile force during the hoisting of precast slabs, and ensures the safety and reliability of the hoisting process.
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Figure CN115043304B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of SPCS structural system technology, specifically to a connecting assembly for hoisting components based on the SPCS structural system. Background Technology
[0002] The SPCS structural system has developed production processes for composite concrete structural walls, columns, beams, and slabs. It has also developed equipment for composite shear wall production, integral molding of composite columns, welded steel cage molding, and steel sleeve extrusion, achieving fully automated production of precast components. Furthermore, it has developed construction methods such as rapid installation technology for composite concrete structures and installation technology for welded steel cages of composite concrete structures, realizing the construction of composite concrete structures.
[0003] In traditional SPCS structural system component hoisting connection components, the precast panels to be hoisted are often directly fixed to the main body of the connection before hoisting. After long-term use, wear and tear is inevitable in these connection components, leading to a decrease in stability and even causing engineering accidents. Therefore, to address the above problems, a component hoisting connection component based on SPCS structural system is proposed. Summary of the Invention
[0004] The purpose of this invention is to provide a connecting assembly for component hoisting based on the SPCS structural system, so as to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, the present invention provides the following technical solution:
[0006] A component hoisting connection assembly based on SPCS structural system includes a connecting body, a hoisting body, and a support frame. The support frame is fixedly connected to both the left and right sides of the connecting body, and the hoisting body is fixedly connected directly below the connecting body. The connecting body includes a connecting column, a limiting plate, and a fixing threaded shaft. An upper connecting plate is provided above the connecting column, and a lower connecting plate is provided below the connecting column. A limiting plate is fixedly connected to the bottom of the connecting plate and the top of the lower connecting plate. A fixing threaded shaft is provided on the outer side of the limiting plate. An upper positioning plate is provided on the outer side above the fixing threaded shaft, and a lower positioning plate is provided on the outer side below the fixing threaded shaft. A fixing nut is screwed onto the outer side of the bottom end of the fixing threaded shaft.
[0007] Preferably, the connecting column is provided with limiting plates on both the upper and lower sides, and the connecting column is provided with a threaded shaft.
[0008] Preferably, the upper connecting plate is provided with upper positioning plates on both the left and right sides, and the lower connecting plate is provided with lower positioning plates on both the left and right sides. The bottom of the upper positioning plate is tightly fitted with the connecting column, and the top of the lower positioning plate is tightly fitted with the connecting column.
[0009] Preferably, the hoisting body includes a steel cable, a fixing pin, a buffer shell, and a first fixing ring. A fixing pin is provided inside the lower connecting plate, and a U-shaped fixing frame is provided outside the fixing pin. A positioning nut is spirally connected to one end of the fixing pin. A fixing ring is provided inside the U-shaped fixing frame, and a steel cable is fixedly connected to one end of the fixing ring. A steel cable is fixedly connected to one end of the buffer shell. A limit block is fixedly connected to the bottom of the buffer shell, and a fixing post is provided inside the limit block. A steel cable is fixedly connected to one end of the fixing post, and a slider is fixedly connected to the other end of the fixing post. A spring is provided outside the fixing post, and a positioning shaft is provided inside the slider. A first fixing ring is fixedly connected behind the positioning shaft. Positioning magnets are fixedly connected to both ends of the first fixing ring, and positioning blocks are provided at both ends of the first fixing ring. A second fixing ring is fixedly connected to the other end of each positioning block.
[0010] Preferably, one end of the spring is fixedly connected to the limiting block, and the other end of the spring is fixedly connected to the slider.
[0011] Preferably, buffer shells are provided on the outer sides of both ends of the positioning shaft, a second fixing ring is provided on the outer side of the front of the positioning shaft, the positioning block is made of iron block, and the rear of the positioning block is tightly fitted with the positioning magnet block.
[0012] Preferably, the support frame includes a connecting block, a rotating shaft, and bolts. Fixed blocks are provided at both ends of the connecting column. A fixing screw is spirally connected to the front of each fixed block. A connecting column is provided outside the fixing screw. One side of the fixed block is fixedly connected to the connecting block. A rotating shaft is rotatably connected to both the front and rear sides of the lower part of the connecting block. A support rod is fixedly connected to the other end of the rotating shaft. A rubber block is fixedly connected to the outer side of the other end of the support rod. A bolt is rotatably connected to the bottom of the connecting block. A push block is spirally connected to the outer side of the bolt. A connecting rod is fixedly connected to both the front and rear sides of the push block. A positioning rod is fixedly connected to the other end of the connecting rod. Both ends of the positioning rod are slidably connected to the support rod.
[0013] Preferably, connecting blocks are provided on both the left and right sides of the connecting column, and support rods are provided on both the front and rear sides of the bolt, with connecting rods inside the support rods.
[0014] Compared with the prior art, the beneficial effects of the present invention are:
[0015] 1. In this invention, the precast slab can be easily hoisted and installed by the connecting column, upper connecting plate and lower connecting plate. The upper and lower connecting plates can be easily limited by the limiting plate. The upper and lower connecting plates can be easily limited by the upper positioning plate, lower positioning plate, fixed threaded shaft and fixed nut. At the same time, when the strength of this connecting component decreases, the connecting column, upper connecting plate and lower connecting plate can be easily replaced by disassembling the threaded shaft, so that this connecting component is more stable and performs better.
[0016] 2. In this invention, the steel cable, fixing ring, U-shaped fixing frame, fixing pin, positioning nut, buffer shell, and fixing column can be used to easily fix this connection group to the precast slab, facilitating the hoisting of the precast slab. The buffer shell, fixing column, limiting block, slider, and positioning block can be used to easily buffer the two steel cables, reducing the instantaneous tension during the hoisting of the precast slab and making the hoisting of the precast slab more stable. The slider, buffer spring, first fixing ring, second fixing ring positioning magnet block, positioning block, and positioning shaft can be used to easily position the fixing column and slider, facilitating the direct hoisting of the lighter precast slab.
[0017] 3. In this invention, the connecting block, fixing block and fixing screw can be used to fix the support frame to both sides of the connecting body. When the connecting component is not in use, it can be supported to make the connecting component more stable to store. The rotating shaft, support rod and rubber block can be used to support the connecting body. The push block, bolt, connecting rod and positioning rod can be used to adjust the angle of the support rod to make the hoisting connecting component more stable to place. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the overall structure of the present invention;
[0019] Figure 2 This is a schematic diagram of the connecting column of the present invention;
[0020] Figure 3 This is a schematic diagram of the installation structure of the limiting plate of the present invention;
[0021] Figure 4 This is a schematic diagram of the structure of the connecting plate of the present invention;
[0022] Figure 5 This is a schematic diagram of the structure of the lower connecting plate of the present invention;
[0023] Figure 6 This is a schematic diagram of the installation structure of the steel cable of the present invention;
[0024] Figure 7 This is a schematic diagram of the mounting structure for fixing the present invention;
[0025] Figure 8 This is a schematic diagram of the installation structure of the positioning block of the present invention;
[0026] Figure 9 This is a schematic diagram of the installation structure of the support rod of the present invention;
[0027] Figure 10 This is a schematic diagram of the installation structure of the connecting rod of the present invention.
[0028] In the diagram: 1-Connecting body, 101-Connecting column, 102-Upper connecting plate, 103-Lower connecting plate, 104-Limiting plate, 105-Upper positioning plate, 106-Lower positioning plate, 107-Fixing threaded shaft, 108-Fixing nut, 2-Lifting body, 201-Steel cable, 202-Fixing ring, 203-U-shaped fixing frame, 204-Fixing pin, 205-Positioning nut, 206-Buffer shell, 207-Fixing column, 208- Limiting block, 209-slider, 210-buffer spring, 211-first fixing ring, 212-second fixing ring, 213-positioning magnet block, 214-positioning block, 215-positioning shaft, 3-support frame, 301-connecting block, 302-fixing block, 303-fixing screw, 304-rotating shaft, 305-support rod, 306-rubber block, 307-push block, 308-bolt, 309-connecting rod, 310-positioning rod. Detailed Implementation
[0029] Example 1:
[0030] Please see Figure 1-10 The present invention provides a technical solution:
[0031] A component hoisting connection assembly based on SPCS structural system includes a connection body 1, a hoisting body 2, and a support frame 3. The support frame 3 is fixedly connected to both sides of the connection body 1, and the hoisting body 2 is fixedly connected to the bottom of the connection body 1. The connection body 1 includes a connection column 101, a limiting plate 104, and a fixing threaded shaft 107. An upper connection plate 102 is provided above the connection column 101, and a lower connection plate 103 is provided below the connection column 101. The limiting plate 104 is fixedly connected to the bottom of the connection plate 102, and the limiting plate 104 is fixedly connected to the top of the lower connection plate 103. The fixing threaded shaft 107 is provided on the outer side of the limiting plate 104. An upper positioning plate 105 is provided on the outer side above the fixing threaded shaft 107, and a lower positioning plate 106 is provided on the outer side below the fixing threaded shaft 107. A fixing nut 108 is screwed to the outer side of the bottom end of the fixing threaded shaft 107. This configuration allows for convenient disassembly and assembly of the connection assembly.
[0032] Limiting plates 105 are provided on both the upper and lower sides of the connecting column 101. A threaded shaft 107 is provided inside the connecting column 101. Upper positioning plates 105 are provided on both the left and right sides of the upper connecting plate 102. Lower positioning plates 106 are provided on both the left and right sides of the lower connecting plate 103. The bottom of the upper positioning plate 105 is tightly fitted with the connecting column 101, and the top of the lower positioning plate 106 is tightly fitted with the connecting column 101. This setting allows for easy disassembly and replacement of the connecting components. The hoisting body 2 includes a steel cable 201, a fixing pin 204, a buffer shell 206, and a first fixing ring 211. A fixing pin 204 is provided inside the lower connecting plate 103. A U-shaped fixing frame 203 is provided on the outside of the fixing pin 204. A positioning nut 205 is spirally connected to one end of the fixing pin 204. The U-shaped fixing frame 204... 3. A fixing ring 202 is provided inside, and a steel cable 201 is fixedly connected to one end of the fixing ring 202. A buffer shell 206 is fixedly connected to one end of the steel cable 201. A limit block 208 is fixedly connected to the bottom of the buffer shell 206. A fixing post 207 is provided inside the limit block 208. A steel cable 201 is fixedly connected to one end of the fixing post 207. A slider 209 is fixedly connected to the other end of the fixing post 207. A spring 210 is provided on the outside of the fixing post 207. A positioning shaft 215 is provided inside the slider 209. A first fixing ring 211 is fixedly connected to the rear of the positioning shaft 215. Positioning magnets 213 are fixedly connected to both ends of the first fixing ring 211. Positioning blocks 214 are provided to both ends of the first fixing ring 211. A second fixing ring 212 is fixedly connected to the other end of the positioning blocks 214. One end of spring 210 is fixedly connected to limit block 208, and the other end of spring 210 is fixedly connected to slider 209. Both ends of positioning shaft 215 are provided with buffer shells 206 on their outer sides. A second fixing ring 212 is provided on the outer side of the front of positioning shaft 215. Positioning block 214 is made of iron block, and the rear of positioning block 214 is tightly fitted with positioning magnet block 213. This design facilitates buffering and prevents damage to the precast slab from sudden force application. Support frame 3 includes connecting block 301, rotating shaft 304, and bolt 308. Both ends of connecting column 101 are provided with fixing blocks 302. A fixing screw 303 is spirally connected to the front of fixing block 302. A connecting column 101 is provided on the outer side of fixing screw 303. One side of fixing block 302 is fixedly connected to connecting block 301. A rotating shaft 304 is rotatably connected to both the front and rear sides of the lower part of the connecting block 301. A support rod 305 is fixedly connected to the other end of the rotating shaft 304. A rubber block 306 is fixedly connected to the outer side of the other end of the support rod 305. A bolt 308 is rotatably connected to the bottom of the connecting block 301. A push block 307 is spirally connected to the outer side of the bolt 308. A connecting rod 309 is fixedly connected to both the front and rear sides of the push block 307. A positioning rod 310 is fixedly connected to the other end of the connecting rod 309. Both ends of the positioning rod 310 are slidably connected to the support rod 305. Connecting blocks 301 are provided on both the left and right sides of the connecting column 101. Support rods 305 are provided on both the front and rear sides of the bolt 308. A connecting rod 309 is provided inside the support rod 305. This setting can conveniently support this connecting component and facilitate placement.
[0033] Workflow: In this SPCS structural system, the connecting components used for component hoisting facilitate the hoisting of precast slabs through the connecting column 101, upper connecting plate 102, and lower connecting plate 103, thus simplifying installation. The limiting plate 104 provides convenient positioning for the upper connecting plate 102 and lower connecting plate 103. The upper positioning plate 105, lower positioning plate 106, fixing threaded shaft 107, and fixing nut 108 facilitate the connection between the upper connecting plate 102 and lower connecting plate 103. The connection is limited, and when the strength of this connecting component decreases, the connecting post 101, upper connecting plate 102, and lower connecting plate 103 can be easily replaced by disassembling the threaded shaft 107, making the connecting component more stable and effective. The steel cable 201, fixing ring 202, U-shaped fixing frame 203, fixing pin 204, positioning nut 205, buffer shell 206, and fixing post 207 can easily fix this connecting assembly to the precast slab, facilitating the hoisting of the precast slab. The buffer shell 206 and fixing post 207 further enhance the connection. The fixed column 207, limiting block 208, slider 209, and positioning block 214 can easily buffer the two steel cables 201, reducing the instantaneous tension during precast slab hoisting and making the hoisting of the precast slab more stable. The slider 209, buffer spring 210, first fixing ring 211, second fixing ring 212, positioning magnet block 213, positioning block 214, and positioning shaft 215 can easily position the fixed column 207 and slider 209, facilitating the direct hoisting of lighter precast slabs. The connection... Block 301, fixing block 302, and fixing screw 303 can easily fix this support frame 3 to both sides of the connecting body 1. When this connecting component is not in use, it can be supported to make the connecting component more stable when stored. The connecting body 1 can be easily supported by the set rotating shaft 304, support rod 305, and rubber block 306. The angle of the support rod 305 can be easily adjusted by the set push block 307, bolt 308, connecting rod 309, and positioning rod 310 to make the hoisting connecting component more stable.
[0034] Example 2:
[0035] Please see Figure 6-8 The present invention provides a technical solution:
[0036] A component hoisting connection assembly based on the SPCS structural system includes a hoisting body 2 comprising a steel cable 201, a fixing pin 204, a buffer shell 206, and a first fixing ring 211. The fixing pin 204 is located within the lower connecting plate 103, and a U-shaped fixing frame 203 is located outside the fixing pin 204. A positioning nut 205 is spirally connected to one end of the fixing pin 204. A fixing ring 202 is located within the U-shaped fixing frame 203, and the steel cable 201 is fixedly connected to one end of the fixing ring 202. The steel cable 201 is fixedly connected to one end of the buffer shell 206, and a limit block 208 is fixedly connected to the bottom of the buffer shell 206. A fixing post 207 is located within the limit block 208, and the steel cable 201 is fixedly connected to one end of the fixing post 207. A slider 209 is fixedly connected to the other end of the fixing post 207. A spring 210 is provided on the side, and a positioning shaft 215 is provided inside the slider 209. A first fixing ring 211 is fixedly connected to the rear of the positioning shaft 215. A positioning magnet block 213 is fixedly connected to both ends of the first fixing ring 211. A positioning block 214 is provided in both ends of the first fixing ring 211. A second fixing ring 212 is fixedly connected to the other end of the positioning block 214. One end of the spring 210 is fixedly connected to the limiting block 208, and the other end of the spring 210 is fixedly connected to the slider 209. A buffer shell 206 is provided on the outer side of both ends of the positioning shaft 215. A second fixing ring 212 is provided on the outer side of the front of the positioning shaft 215. The positioning block 214 is made of iron block. The rear of the positioning block 214 is tightly fitted with the positioning magnet block 213. This setting can conveniently buffer and prevent damage to the precast slab from sudden force.
[0037] Workflow: The connecting assembly can be easily fixed to the precast slab using the steel cable 201, fixing ring 202, U-shaped fixing frame 203, fixing pin 204, positioning nut 205, buffer shell 206, and fixing column 207, facilitating the hoisting of the precast slab. The buffer shell 206, fixing column 207, limiting block 208, slider 209, and positioning block 214 can effectively buffer the two steel cables 201, reducing the instantaneous tension during the hoisting of the precast slab and making the hoisting of the precast slab more stable. The slider 209, buffer spring 210, first fixing ring 211, second fixing ring 212, positioning magnet block 213, positioning block 214, and positioning shaft 215 can easily position the fixing column 207 and slider 209, facilitating the direct hoisting of lighter precast slabs.
[0038] This article uses specific examples to illustrate the principles and implementation methods of the present invention. The above examples are only for the purpose of helping to understand the method and core ideas of the present invention. The above descriptions are only preferred embodiments of the present invention. It should be noted that due to the limitations of textual expression, while there are objectively infinite specific structures, those skilled in the art can make several improvements, modifications, or changes without departing from the principles of the present invention, and can also combine the above technical features in an appropriate manner. These improvements, modifications, changes, or combinations, or the direct application of the inventive concept and technical solution to other situations without modification, should all be considered within the scope of protection of the present invention.
Claims
1. A connecting assembly for component hoisting based on SPCS structural system, characterized in that: It includes a connecting body (1), a hoisting body (2), and a support frame (3), characterized in that: the connecting body (1) is fixedly connected to the support frame (3) on both the left and right sides. The connecting body (1) is fixedly connected to the hoisting body (2) directly below it. The connecting body (1) includes a connecting column (101), a limiting plate (104), and a fixed threaded shaft (107). An upper connecting plate (102) is provided above the connecting column (101), and a lower connecting plate (103) is provided below the connecting column (101). A limiting plate (104) is fixedly connected to the bottom of the upper connecting plate (102), and a limiting plate (104) is fixedly connected to the top of the lower connecting plate (103). A fixed threaded shaft (107) is provided on the outside of the limiting plate (104). An upper positioning plate (105) is provided on the outside of the fixed threaded shaft (107), and a lower positioning plate (106) is provided on the outside of the fixed threaded shaft (107). A fixing nut (108) is spirally connected to the outside of the bottom end of the fixed threaded shaft (107). The hoisting body (2) includes a steel cable (201), a fixing pin (204), a buffer shell (206), and a first fixing ring (211). The lower connecting plate (103) is provided with a fixing pin (204), and a U-shaped fixing frame (203) is provided on the outside of the fixing pin (204). A positioning nut (205) is spirally connected to one end of the fixing pin (204), and a fixing ring (202) is provided inside the U-shaped fixing frame (203). One end of the fixed ring (202) is fixedly connected to a steel cable (201), one end of the buffer shell (206) is fixedly connected to a steel cable (201), the bottom end of the buffer shell (206) is fixedly connected to a limiting block (208), the limiting block (208) is provided with a fixed post (207), one end of the fixed post (207) is fixedly connected to a steel cable (201), the other end of the fixed post (207) is fixedly connected to a slider (209), the outside of the fixed post (207) is provided with a spring (210), the slider (209) is provided with a positioning shaft (215), the rear of the positioning shaft (215) is fixedly connected to a first fixed ring (211), both ends of the first fixed ring (211) are fixedly connected to positioning magnet blocks (213), both ends of the first fixed ring (211) are provided with positioning blocks (214), the other end of the positioning block (214) is fixedly connected to a second fixed ring (212); One end of the spring (210) is fixedly connected to the limiting block (208), and the other end of the spring (210) is fixedly connected to the slider (209); The positioning shaft (215) has buffer shells (206) on both outer sides at both ends. The positioning shaft (215) has a second fixing ring (212) on the outer side of the front. The positioning block (214) is made of iron block. The positioning block (214) is closely attached to the positioning magnet block (213) at the rear.
2. The component hoisting connection assembly based on SPCS structural system according to claim 1, characterized in that: The connecting column (101) is provided with limiting plates (104) on both the upper and lower sides, and the connecting column (101) is provided with a fixed threaded shaft (107).
3. The component hoisting connection assembly based on SPCS structural system according to claim 1, characterized in that: The upper connecting plate (102) is provided with upper positioning plates (105) on both the left and right sides, and the lower connecting plate (103) is provided with lower positioning plates (106) on both the left and right sides. The bottom of the upper positioning plate (105) is tightly fitted with the connecting column (101), and the top of the lower positioning plate (106) is tightly fitted with the connecting column (101).
4. The component hoisting connection assembly based on SPCS structural system according to claim 1, characterized in that: The support frame (3) includes a connecting block (301), a rotating shaft (304), and bolts (308). A fixing block (302) is provided inside both ends of the connecting column (101). A fixing screw (303) is spirally connected to the front of the fixing block (302). A connecting column (101) is provided outside the fixing screw (303). One side of the fixing block (302) is fixedly connected to the connecting block (301). A rotating shaft (304) is rotatably connected to both the front and rear sides of the lower inner part of the connecting block (301). A support rod (305) is fixedly connected to the other end. A rubber block (306) is fixedly connected to the outer side of the other end of the support rod (305). A bolt (308) is rotatably connected to the bottom end of the connecting block (301). A push block (307) is spirally connected to the outer side of the bolt (308). A connecting rod (309) is fixedly connected to both the front and rear sides of the push block (307). A positioning rod (310) is fixedly connected to the inner side of the other end of the connecting rod (309). Both ends of the positioning rod (310) are slidably connected to the support rod (305).
5. A component hoisting connection assembly based on SPCS structural system according to claim 4, characterized in that: The connecting column (101) is provided with connecting blocks (301) on both the left and right sides, and the bolt (308) is provided with support rods (305) on both the front and rear sides, and the support rods (305) are provided with connecting rods (309).
Citation Information
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