Alloy steel reinforcing component structure
By designing the alloy steel reinforced component structure, using the combination of connecting plates, connecting blocks, distance adjustment components and locking components, efficient reinforcement of various types of steel structures is achieved, solving the problem of insufficient adaptability and stability of reinforced components in the prior art, and ensuring the stability and safety of the reinforcement effect.
Patent Information
- Application Number
- CN202422535183.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-21
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2034-10-21
AI Technical Summary
Existing reinforcement component equipment can only reinforce a single type of steel structure, and when adjusting the reinforcement force, it is easy to cause deformation of the steel structure, affecting the adaptability and stability of the reinforcement.
An alloy steel reinforcement component structure is designed, including connecting plates, connecting blocks, pitch adjustment components, clamping components, rotating components and locking components. By adjusting the position and angle of connecting plates and clamping blocks, the threaded connection between U-shaped screws and screws is used to achieve reinforcement of various types of steel structures, and the support strength and stability are guaranteed through limiting components.
Efficient reinforcement of various types of steel structures is achieved, the stability of the reinforcement effect is ensured, the deformation of the steel structure caused by excessive support strength adjustment is avoided, and the adaptability and safety of the reinforced components are improved.
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Figure CN223269672U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of reinforcement component equipment, in particular to an alloy steel reinforcement component structure. Background Art
[0002] In order to ensure the installation firmness of equipment such as scaffolding and steel structure buildings, it is often necessary to use reinforcement component equipment to reinforce the above equipment. The utility model patent with patent application number CN202120201192.8 discloses a reinforcement structure of a steel structure grid member, which is provided with a first sleeve and a second sleeve. The first sleeve is pulled and buckled on the horizontal grid, and the second sleeve is buckled on the longitudinal grid. Then the threaded rod is rotated respectively, and the threaded rod will slide along the first sleeve or the second sleeve. When the thread of the threaded rod slides, it will rotate along the extrusion plate, which will push the extrusion plate. When the extrusion plate moves to the horizontal grid or When the longitudinal grid is in an adaptive position, the protective pad will be driven to squeeze and fix it. The special material shape of the protective pad can increase the friction on the transverse grid or the longitudinal grid, so that the transverse grid or the longitudinal grid can be clamped for reinforcement. According to the disclosed technical solution, when the existing reinforcement component equipment is in use, on the one hand, it is often only possible to reinforce a single type of steel structure, which is not conducive to improving the adaptability of the reinforcement component. On the other hand, when performing reinforcement operations, it is easy to cause excessive pressure when adjusting the reinforcement strength, resulting in the steel structure being squeezed and deformed, which is not conducive to ensuring the stability of the reinforcement strength of the reinforcement component.
[0003] Therefore, how to design an alloy steel reinforcement component structure has become our current problem to be solved. Utility Model Content
[0004] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide an alloy steel reinforcement component structure to solve the problems raised in the above-mentioned background technology. The utility model has a reasonable design and is relatively convenient to use. It is suitable for reinforcing equipment such as scaffolding and steel structure buildings.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: an alloy steel reinforcement component structure, comprising a connecting plate and a connecting block, a distance adjustment component is installed on the connecting block, the distance adjustment component comprises a screw rod and a wire sleeve, a clamping component is installed on the connecting plate, the clamping component comprises a U-shaped screw and a clamping block, a rotating component is installed on the outside of the wire sleeve, the rotating component comprises a prism sleeve and a retaining ring, a limiting component is installed on the inside of the prism sleeve, the limiting component comprises a ring groove and a bayonet, a locking component is installed on the prism sleeve, and the locking component comprises a bayonet pin and a spring.
[0006] Furthermore, the connecting block is welded on the connecting plate, one end of the screw rod is installed on the inner side of the connecting block through a rotating shaft, and both ends of the wire sleeve are sleeved on the outer side of the other end of the screw rod.
[0007] Furthermore, an external thread 1 is provided on the outer side of the screw rod, and an internal thread 1 is provided on the inner wall of the screw sleeve, and the external thread 1 is matched with the internal thread 1.
[0008] Furthermore, a screw hole is provided on the connecting plate, both ends of the U-shaped screw are installed on the inner side of the screw hole, and both ends of the U-shaped screw are sleeved with nuts.
[0009] Furthermore, a second internal thread is provided on the inner side of the nut, and a second external thread is provided on both ends of the U-shaped screw, and the second internal thread matches the second external thread.
[0010] Furthermore, the clamping block is clamped on the inner side of the U-shaped screw, and the clamping block and the connecting plate are integrally formed with burrs, and the burrs are evenly distributed on the clamping block and the connecting plate.
[0011] Furthermore, the rib sleeve is arranged on the outer side of the silk sleeve, the retaining ring is welded to the outer side of the silk sleeve, the annular groove is opened on the inner side of the rib sleeve, and the annular groove is arranged on the outer side of the retaining ring.
[0012] Furthermore, the bayonet is opened on the wire sleeve, and a socket is opened on the inner side of the prism sleeve. One end of the bayonet is installed on the outer side of the prism sleeve, and the other end of the bayonet passes through the socket and extends to the inner side of the bayonet. One end of the bayonet is connected to the outer side of the prism sleeve through a spring.
[0013] Beneficial effects: 1. When the alloy steel reinforcement component structure is in use, the connecting plate and the clamping block are respectively clamped on both sides of the square steel according to the shape of the steel structure, and then the connecting plate and the clamping block are clamped on both sides of the square steel by tightening the U-shaped screw, or the clamping block is removed and the U-shaped screw is rotated 90 degrees. The U-shaped screw and the connecting plate are clamped on the outer side of the round steel, and the friction between the clamping block and the connecting plate and the steel structure is increased by the burrs. At the same time, the spacing between the two connecting blocks is adjusted by rotating the wire sleeve, and the screw rotates on the connecting block through the rotating shaft, thereby being able to adjust the reinforcement position and angle of the crossed steel structure, thereby being able to adapt to the reinforcement operations of various types of steel structures and ensure the reinforcement effect.
[0014] 2. After the alloy steel reinforcement component structure connects and fixes the connecting plate to the steel structure through the U-shaped screw, the rib sleeve is rotated, and the rib sleeve drives the pin to push the bayonet, and the bayonet drives the thread sleeve to rotate, so that the thread sleeve squeezes the screw rod through the thread, and the screw rods at both ends of the thread sleeve clamp the connecting plate, thereby effectively ensuring the supporting strength of the steel structure and the reinforcement effect of the steel structure. When the support plate has sufficient supporting strength for the steel structure, the screw rod is subjected to greater resistance to the thread sleeve, so that the bayonet pushes the bayonet out, and the bayonet stretches the spring and moves outward, and the rib sleeve can no longer drive the thread sleeve to rotate. The rib sleeve is limited to the outside of the thread sleeve by the ring groove and the retaining ring, thereby effectively ensuring the stability of the supporting strength of the steel structure, avoiding the steel structure being squeezed and deformed due to excessive adjustment of the supporting strength, and ensuring the safety of the steel structure.
[0015] 3. The alloy steel reinforcement component has a reasonable structural design and is more efficient and convenient to use. It is suitable for reinforcing scaffolding, steel structure buildings and other equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a structural diagram of an alloy steel reinforcement component structure of the present utility model;
[0017] Figure 2 This is a cross-sectional view of an alloy steel reinforcement component structure of the present utility model;
[0018] Figure 3 This is a structural diagram of an angular sleeve of an alloy steel reinforcement component structure of the present invention;
[0019] In the figure: 1. connecting plate; 2. connecting block; 3. screw rod; 4. screw sleeve; 5. U-shaped screw; 6. clamping block; 7. burr; 8. edge sleeve; 9. retaining ring; 10. ring groove; 11. bayonet; 12. bayonet pin; 13. spring. DETAILED DESCRIPTION
[0020] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0021] See also Figures 1 to 3The present invention provides a technical solution: an alloy steel reinforcement component structure, including a connecting plate 1 and a connecting block 2, a distance-adjusting assembly is installed on the connecting block 2, the distance-adjusting assembly includes a screw rod 3 and a wire sleeve 4, a clamping assembly is installed on the connecting plate 1, the clamping assembly includes a U-shaped screw 5 and a clamping block 6, a rotating assembly is installed on the outer side of the wire sleeve 4, the rotating assembly includes a prism sleeve 8 and a retaining ring 9, a limiting assembly is installed on the inner side of the prism sleeve 8, the limiting assembly includes an annular groove 10 and a bayonet 11, a locking assembly is installed on the prism sleeve 8, and the locking assembly includes a bayonet pin 12 and a spring 13, the connecting block 2 is welded on the connecting plate 1, one end of the screw rod 3 is installed on the inner side of the connecting block 2 through a rotating shaft, and both ends of the wire sleeve 4 are sleeved on the outer side of the other end of the screw rod 3, the outer side of the screw rod 3 is provided with an external thread, and the inner wall of the wire sleeve 4 is provided with an inner thread. When the screw thread 4 is rotated, the distance between the two connecting blocks 2 is adjusted, and the screw rod 3 is rotated on the connecting block 2 through the rotating shaft, so that the reinforcement position and angle of the crossed steel structure can be adjusted, so that it can adapt to the reinforcement operation of various types of steel structures and ensure the reinforcement effect.
[0022] In this embodiment, a screw port is provided on the connecting plate 1, and both ends of the U-shaped screw 5 are installed on the inner side of the screw port. Both ends of the U-shaped screw 5 are sleeved with nuts, and the inner side of the nut is provided with internal threads 2, and both ends of the U-shaped screw 5 are provided with external threads 2, and the internal threads 2 cooperate with the external threads 2. The rib sleeve 8 is sleeved on the outer side of the silk sleeve 4, and the retaining ring 9 is welded to the outer side of the silk sleeve 4. The annular groove 10 is provided on the inner side of the rib sleeve 8, and the annular groove 10 is sleeved on the outer side of the retaining ring 9. The bayonet 11 is provided on the silk sleeve 4, and the inner side of the rib sleeve 8 is provided with a socket. One end of the bayonet 12 is installed on the outer side of the rib sleeve 8, and the other end of the bayonet 12 passes through the socket and extends to the inner side of the bayonet 11. One end of the bayonet 12 is connected to the outer side of the rib sleeve 8 by a spring 13. When the connecting plate 1 is passed through the U-shaped screw 5 After the support plate 1 has sufficient supporting strength for the steel structure, the screw rod 3 is subjected to greater resistance from the screw rod 3 to the thread sleeve 4, and the bayonet 11 pushes out the bayonet 12, and the bayonet 12 stretches the spring 13 and moves outward, and the rib sleeve 8 can no longer drive the thread sleeve 4 to rotate, and the rib sleeve 8 is limited to the outside of the thread sleeve 4 by the annular groove 10 and the retaining ring 9, thereby effectively ensuring the stability of the supporting strength of the steel structure, avoiding the steel structure from being squeezed and deformed due to excessive adjustment of the supporting strength, and ensuring the safety of the steel structure.
[0023] When the alloy steel reinforcement component structure is in use, the connecting plate 1 and the clamping block 6 are respectively clamped on both sides of the square steel according to the shape of the steel structure, and then the connecting plate 1 and the clamping block 6 are clamped on both sides of the square steel by tightening the U-shaped screw 5, or the clamping block 6 is removed, and then the U-shaped screw 5 is rotated 90 degrees, and the U-shaped screw 5 and the connecting plate 1 are clamped on the outer side of the round steel, and the friction between the clamping block 6 and the connecting plate 1 and the steel structure is increased by the convex thorns 7. At the same time, the spacing between the two connecting blocks 2 is adjusted by rotating the wire sleeve 4, and the screw rod 3 is rotated on the connecting block 2 through the rotating shaft, so that the reinforcement position and angle of the crossed steel structure can be adjusted, so that it can adapt to the reinforcement operation of various types of steel structures and ensure the reinforcement effect. After the connecting plate 1 is connected and fixed to the steel structure through the U-shaped screw 5, the edge sleeve 8 is rotated, and the edge sleeve 8 is brought The movable latch 12 pushes the latch 11, and the latch 11 drives the wire sleeve 4 to rotate, so that the wire sleeve 4 squeezes the screw rod 3 through the thread, so that the screw rods 3 at both ends of the wire sleeve 4 clamp the connecting plate 1, thereby effectively ensuring the supporting strength of the steel structure and ensuring the reinforcement effect of the steel structure. When the support plate 1 has sufficient supporting strength for the steel structure, the screw rod 3 is subjected to greater resistance to the wire sleeve 4, so that the latch 11 pushes out the latch 12, and the latch 12 stretches the spring 13 and moves outward, and the rib sleeve 8 can no longer drive the wire sleeve 4 to rotate. The rib sleeve 8 is limited to the outside of the wire sleeve 4 by the annular groove 10 and the retaining ring 9, thereby effectively ensuring the stability of the supporting strength of the steel structure, avoiding the steel structure from being squeezed and deformed due to excessive adjustment of the supporting strength, and ensuring the safety of the steel structure.
[0024] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.
Claims
1. An alloy steel reinforcement member structure, comprising a connecting plate (1) and a connecting block (2), wherein a distance adjustment assembly is mounted on the connecting block (2), and the distance adjustment assembly comprises a screw rod (3) and a screw sleeve (4), characterized in that: A clamping assembly is installed on the connecting plate (1), and the clamping assembly includes a U-shaped screw (5) and a clamping block (6). A rotating assembly is installed on the outer side of the thread sleeve (4), and the rotating assembly includes a prism sleeve (8) and a retaining ring (9). A limiting assembly is installed on the inner side of the prism sleeve (8), and the limiting assembly includes a ring groove (10) and a bayonet (11). A locking assembly is installed on the prism sleeve (8), and the locking assembly includes a bayonet pin (12) and a spring (13).
2. The alloy steel reinforcement member structure according to claim 1, characterized in that: The connecting block (2) is welded to the connecting plate (1), one end of the screw rod (3) is mounted on the inner side of the connecting block (2) via a rotating shaft, and both ends of the screw sleeve (4) are sleeved on the outer side of the other end of the screw rod (3).
3. The alloy steel reinforcement member structure according to claim 2, characterized in that: An external thread 1 is provided on the outer side of the screw rod (3), and an internal thread 1 is provided on the inner wall of the screw sleeve (4), and the external thread 1 is matched with the internal thread 1.
4. The alloy steel reinforcement member structure according to claim 3, characterized in that: The connecting plate (1) is provided with a screw hole, and both ends of the U-shaped screw rod (5) are installed inside the screw hole. Both ends of the U-shaped screw rod (5) are sleeved with nuts.
5. The alloy steel reinforcement member structure according to claim 4, characterized in that: The inner side of the nut is provided with a second internal thread, and both ends of the U-shaped screw (5) are provided with a second external thread, and the second internal thread matches the second external thread.
6. The alloy steel reinforcement member structure according to claim 5, characterized in that: The clamping block (6) is clamped on the inner side of the U-shaped screw (5), and burrs (7) are integrally formed on the clamping block (6) and the connecting plate (1), and the burrs (7) are evenly distributed on the clamping block (6) and the connecting plate (1).
7. The alloy steel reinforcement member structure according to claim 6, characterized in that: The rib sleeve (8) is sleeved on the outer side of the silk sleeve (4), the retaining ring (9) is welded on the outer side of the silk sleeve (4), the annular groove (10) is opened on the inner side of the rib sleeve (8), and the annular groove (10) is sleeved on the outer side of the retaining ring (9).
8. The alloy steel reinforcement member structure according to claim 7, characterized in that: The bayonet (11) is provided on the silk sleeve (4), a socket is provided on the inner side of the prism sleeve (8), one end of the bayonet pin (12) is installed on the outer side of the prism sleeve (8), the other end of the bayonet pin (12) passes through the socket and extends to the inner side of the bayonet (11), and one end of the bayonet pin (12) is connected to the outer side of the prism sleeve (8) through a spring (13).
Citation Information
Patent Citations
Reinforcing structure of steel structure mesh frame component
CN214786216U