Formwork sliding beam connecting structure
By setting a connecting clamp structure between the sliding beam and the Bailey bridge, and utilizing the rotational connection of the base plate and the claws, the problem of inconvenient operation in connecting the sliding beam and the truss beam in the prior art is solved, realizing rapid fixing and stable connection, and improving assembly efficiency and fixing firmness.
Patent Information
- Application Number
- CN202520017591.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-03
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-01-03
AI Technical Summary
The existing connection device between the sliding beam and the truss beam is inconvenient to operate, which affects the assembly efficiency.
The connecting clamp structure, which uses Bailey bridges and sliding beams spaced apart, includes a base plate, claws, and clamps. It achieves quick fixation through rotational connection. The detachable connection between the claws and the base plate enhances the convenience and versatility of fixation. Longitudinal and transverse abutment surfaces are provided on the claws to improve the fixation firmness.
It improves the assembly efficiency and fixing firmness of the template sliding beam connection structure, reduces the installation difficulty, adapts to different usage scenarios, protects bolts, and improves the connection stability between Bailey bridge and sliding beam.
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Figure CN223853837U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to building construction connecting structure technical field especially, relates to a template sliding beam connecting structure. BACKGROUND
[0002] Sliding beam is the main component of building mould frame system, and the mould plate can be stably hung on the sliding beam by the connecting structure, so that the displacement or deformation of the mould plate during the concrete pouring process is avoided, and the construction quality and structure safety are ensured.
[0003] The patent for invention with the publication number CN105649324B discloses a mobile bailey frame sliding beam connecting device, the sliding beam is installed at the bottom of the truss beam through the mobile bailey frame sliding beam connecting device, the mobile bailey frame sliding beam connecting device comprises a truss mounting portion installed at the bottom of the truss beam and a sliding beam mounting portion arranged below the truss mounting portion, and the sliding beam connecting portion is provided with a sliding beam clamping groove for clamping and sliding the sliding beam. The mobile bailey frame sliding beam connecting device is composed of the truss mounting portion and the sliding beam mounting portion, the truss mounting portion is installed at the bottom of the truss beam, the sliding beam mounting portion is provided with the sliding beam clamping groove for clamping and sliding the sliding beam, the sliding beam is slid by using the sliding beam clamping groove, and the traditional fixed connection mode of the sliding beam and the truss beam is replaced, so that the position of the sliding beam after installation can be finely adjusted.
[0004] In the above technical scheme, in order to realize the angle adjustment of the sliding beam and the truss steel beam, the rotating shaft is arranged between the truss mounting portion and the sliding beam mounting portion, so that the truss mounting portion and the sliding beam mounting portion can relatively rotate, however, the truss mounting portion and the truss beam are connected through bolts or welding, and the operation is inconvenient, and the assembly efficiency of the connecting device is not facilitated. UTILITY MODEL CONTENTS
[0005] Therefore, the utility model provides a template sliding beam connecting structure, which can realize the rapid fixing of the bailey frame and the sliding beam and improve the assembly efficiency of the template sliding beam connecting structure.
[0006] The technical scheme of the utility model is achieved as follows: the utility model provides a template sliding beam connecting structure, which comprises a sliding beam, a bailey frame and a connecting clamp, wherein,
[0007] The bailey frame is arranged at intervals with the sliding beam;
[0008] The connecting clamp comprises a bottom plate, a clamping jaw and a caliper, wherein,
[0009] The clamping jaw is detachably fixed on the bottom plate, and the bailey frame is arranged between the bottom plate and the clamping jaw;
[0010] The caliper is rotationally arranged on the bottom plate and is in sliding connection with the slide beam.
[0011] On the basis of the above technical scheme, preferably, the claw includes a connecting plate and a hook plate, wherein,
[0012] The connecting plate is in abutting contact with the bottom plate and is fixedly connected with the bottom plate in a detachable manner.
[0013] The hook plate is fixedly arranged on the connecting plate, and the Bailey frame is fixedly arranged between the hook plate and the bottom plate.
[0014] More preferably, two hook plates are arranged on the connecting plate, and the two hook plates are arranged in parallel and at intervals.
[0015] More preferably, the connecting clamp further includes a bolt, the connecting plate is fixedly connected with the bottom plate through the bolt, and the bolt is located between the two hook plates.
[0016] More preferably, two claws are arranged, and the two claws are symmetrically arranged about the center line of the Bailey frame.
[0017] More preferably, the claw is provided with a longitudinal abutting surface and a transverse abutting surface, wherein,
[0018] The longitudinal abutting surface is in abutting contact with the side of the Bailey frame away from the bottom plate;
[0019] The transverse abutting surface is in abutting contact with the side of the Bailey frame perpendicular to the bottom plate.
[0020] On the basis of the above technical scheme, preferably, the bottom plate includes a plate body and a rotating pin, wherein,
[0021] The Bailey frame and the claw are arranged on the plate body;
[0022] The rotating pin is rotationally arranged on the plate body and is fixedly connected with the caliper.
[0023] More preferably, the bottom plate further includes a backing plate, the backing plate is fixedly arranged on the side of the plate body away from the claw and is in abutting contact with the caliper, and the inside of the backing plate is provided with a first through hole;
[0024] The plate body is provided with a second through hole, the second through hole is in communication with the first through hole, and the inner diameter of the second through hole is greater than the inner diameter of the first through hole;
[0025] The turning pin comprises a small-diameter end and a large-diameter end, one end of the small-diameter end is rotationally arranged in the first through hole, and the other end is fixedly connected with the caliper; the large-diameter end is rotationally arranged in the second through hole and abuts against the backing plate, and the large-diameter end is fixedly connected with the small-diameter end away from the caliper.
[0026] Further preferably, the caliper is provided with a mounting groove, and the end of the small-diameter end away from the large-diameter end is fixedly arranged in the mounting groove.
[0027] The backing plate is provided with a plurality of lightening holes in the form of long strips.
[0028] On the basis of the above technical scheme, preferably, the caliper is provided with a sliding groove away from the backing plate, and the sliding beam is slidingly arranged in the sliding groove and is spaced apart from the inner wall thereof.
[0029] The template sliding beam connecting structure of the utility model has the following beneficial effects relative to the prior art:
[0030] (1) By arranging the backing plate and the caliper and utilizing the rotational connection of the two, not only can the installation convenience of the template be improved and the installation difficulty be reduced, but also the template can be adapted to different use scenarios, and by arranging the clamping paw, utilizing the detachable fixed connection of the clamping paw with the backing plate, the fixed convenience and versatility of the connecting clamp and the Bailey frame can be improved, thereby improving the assembly efficiency of the template.
[0031] (2) By arranging a plurality of clamping paws and arranging longitudinal and transverse abutting surfaces on the clamping paws, the fixed firmness of the connecting clamp and the Bailey frame can be improved, and by arranging a plurality of hook plates on the clamping paw, not only can the fixed firmness of the connecting clamp and the Bailey frame be further improved, but also the bolts can be protected. BRIEF DESCRIPTION OF DRAWINGS
[0032] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the drawings needed to be used in the embodiment or the prior art description will be briefly introduced below, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can be obtained according to these drawings without creative labor.
[0033] Figure 1 It is a perspective view of the template sliding beam connecting structure of the utility model.
[0034] Figure 2 It is a side view of the connecting clamp in the template sliding beam connecting structure of the utility model.
[0035] Figure 3A perspective view of the connecting clamp in the template sliding beam connecting structure of the utility model;
[0036] Figure 4 An exploded view of the connecting clamp in the template sliding beam connecting structure of the utility model.
[0037] 1, sliding beam; 2, bailey frame; 3, connecting clamp; 31, bottom plate; 311, plate body; 312, rotating pin; 313, pad plate; 32, claw; 321, connecting plate; 322, hook plate; 33, caliper; 34, bolt; 301, longitudinal bearing surface; 302, transverse bearing surface; 303, first perforation; 304, second perforation; 305, small diameter end; 306, large diameter end; 307, installation groove; 308, weight reduction hole; 309, sliding groove. DETAILED DESCRIPTION
[0038] The technical solutions in the utility model will be clearly and completely described below in combination with specific implementation manners of the utility model. Apparently, the described implementation manners are only part of the implementation manners of the utility model, rather than all the implementation manners. Based on the implementation manners in the utility model, all other implementation manners obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0039] As shown in Figures 1-4 The utility model discloses a template sliding beam connecting structure, which comprises a sliding beam 1, a bailey frame 2 and a connecting clamp 3.
[0040] The sliding beam 1 is the main component of the formwork system, and the template is arranged on the sliding beam 1, so that displacement or deformation of the template does not occur in the concrete pouring process, and the construction quality and structural safety are ensured.
[0041] The sliding beam 1 is arranged at intervals with the bailey frame 2 and is fixedly connected through the connecting clamp 3, so that the template on the sliding beam 1 is connected with the bailey frame 2 and the whole platform steel frame, as shown in Figure 1 Preferably, a plurality of connecting clamps 3 are used to connect and fix the bailey frame 2 and the sliding beam 1.
[0042] As shown in Figure 2As shown, the connecting clamp 3 comprises a bottom plate 31, a clamping jaw 32 and a clamping vice 33, the clamping jaw 32 is detachably fixed on the bottom plate 31, when the formwork system is built, the Bailey frame 2 is arranged between the bottom plate 31 and the clamping jaw 32, so as to realize the fixed connection of the connecting clamp 3 and the Bailey frame 2, and the disassembly of the sliding beam 1 on the formwork system can be realized by disassembling the clamping jaw 32 and the bottom plate 31; the clamping vice 33 is in sliding connection with the sliding beam 1, and the relative position of the sliding beam 1 and the Bailey frame 2 can be adjusted, since the clamping vice 33 is arranged on the bottom plate 31, when the installation position of the Bailey frame 2 and the sliding beam 1 is adjusted, other components can be used to fix the sliding beam 1, so as to realize the connection and fixation of the sliding beam 1 and the Bailey frame 2.
[0043] Preferably, the clamping vice 33 is rotatably arranged on the bottom plate 31, so that the angle of the sliding beam 1 and the Bailey frame 2 can be adjusted, which not only improves the installation convenience of the formwork and reduces the installation difficulty, but also makes the formwork adapt to different use scenarios; similarly, when the angle of the sliding beam 1 is adjusted, other components need to be used to fix the sliding beam 1.
[0044] As shown in Figure 3 and Figure 4 , the bottom plate 31 comprises a plate body 311, a rotating pin 312 and a backing plate 313, the rotating pin 312 comprises a small-diameter end 305 and a large-diameter end 306, the small-diameter end 305 is fixedly connected with the large-diameter end 306, and the outer diameter of the small-diameter end 305 is smaller than that of the large-diameter end 306; the Bailey frame 2 and the clamping jaw 32 are arranged on the plate body 311, the backing plate 313 is fixedly arranged on the side of the plate body 311 away from the clamping jaw 32, the plate body 311 is provided with a second through hole 304, the inside of the backing plate 313 is provided with a first through hole 303, the first through hole 303 and the second through hole 304 are in communication, and the inner diameter of the second through hole 304 is larger than that of the first through hole 303; one end of the small-diameter end 305 is rotatably arranged in the first through hole 303, and the other end is fixedly connected with the clamping vice 33; the large-diameter end 306 is rotatably arranged in the second through hole 304, and the large-diameter end 306 and the clamping vice 33 are respectively abutted on both sides of the backing plate 313; by using this structure design, not only can the clamping vice 33 fixedly connected with the rotating pin 312 be rotatably arranged on the plate body 311, but also the rotating stability of the clamping vice 33 and the bottom plate 31 can be guaranteed.
[0045] Preferably, the side of the large-diameter end 306 away from the small-diameter end 305 is flush with the plate body 311, so as to avoid interference and collision between the large-diameter end 306 and the Bailey frame 2; in order to improve the rotating stability of the rotating pin 312, the first through hole 303, the second through hole 304, the small-diameter end 305 and the large-diameter end 306 are coaxially arranged.
[0046] As shown in Figure 4As shown, it is preferable to open a mounting groove 307 on the caliper 33, so that the end of the small diameter end 305 away from the large diameter end 306 is inserted into the mounting groove 307 and fixedly connected to it by welding or other means, thereby improving the fixing firmness between the caliper 33 and the pivot pin 312.
[0047] To reduce the overall weight of the connecting clip 3, it is preferable to have multiple weight-reducing holes 308 on the pad 313, such as... Figure 4 As shown, the weight reduction hole 308 is elongated and arranged in a circular array around the center line of the pivot pin 312. This not only improves the balance of the connecting clip 3, but also determines the tilt angle of the caliper 33 according to the length direction of the weight reduction hole 308, so as to ensure the accuracy of the rotation angle of the connecting clip 3.
[0048] like Figure 3 As shown, the claw 32 includes a connecting plate 321 and a hook plate 322. The hook plate 322 is fixedly mounted on the connecting plate 321. The Bailey frame 2 is held and fixed between the hook plate 322 and the base plate 31. The connecting plate 321 and the base plate 31 are detachably fixedly connected, and the connecting plate 321 abuts against the base plate 31, thereby improving the connection stability between the hook plate 322 and the base plate 31.
[0049] To enhance the secure fixation of the claw 32 to the Bailey frame 2, two hook plates 322 are provided on the connecting plate 321. The two hook plates 322 are parallel and spaced apart.
[0050] The connecting clamp 3 also includes bolts 34, which fix the connecting plate 321 and the base plate 31 together, thereby enabling quick assembly and disassembly of the connecting plate 321 and the base plate 31. In order to prevent the bolts 34 from colliding with other components during use, the bolts 34 are placed between the two hook plates 322.
[0051] like Figure 2 As shown, there are two claws 32, and the two claws 32 are symmetrically arranged about the center line of the Bailey bridge 2, so as to prevent the Bailey bridge 2 from detaching from the claws 32. In order to increase the connection between the claws 32 and the Bailey bridge 2, a longitudinal abutment surface 301 and a transverse abutment surface 302 are also provided on the claws 32. The longitudinal abutment surface 301 abuts against the side of the Bailey bridge 2 away from the base plate 31, and the transverse abutment surface 302 abuts against the side of the Bailey bridge 2 perpendicular to the base plate 31, so as to achieve complete fixation of the Bailey bridge 2.
[0052] like Figure 2 As shown, the slide beam 1 is usually an I-beam with an I-shaped cross section. In order for the caliper 33 to be slidably mounted on the slide beam 1, a slide groove 309 is opened on the side of the caliper 33 away from the base plate 31. The cross section of the slide groove 309 is T-shaped, allowing the slide beam 1 to be partially slidably mounted in the slide groove 309.
[0053] likeFigure 2 As shown, preferably, the inner wall of the sliding groove 309 is spaced apart from the outer wall of the sliding beam 1, so that the wear of the connecting clamp 3 and the sliding beam 1 can be reduced when the connecting clamp 3 is slidingly connected.
[0054] The use method of the template sliding beam connecting structure is as follows:
[0055] Firstly, the bottom plate 31 is abuttingly arranged on the Bailey frame 2, then the clamping jaw 32 is fixed on the bottom plate 31, the connecting clamp 3 is fixed on the Bailey frame 2 by the cooperation of the clamping jaw 32 and the bottom plate 31, then the sliding beam 1 is slidingly arranged on the calipers 33, the position of the sliding beam 1 on the calipers 33 and the angle between the sliding beam 1 and the Bailey frame 2 are adjusted, finally, the sliding beam 1 and the Bailey frame 2 are fixed by other components, and the template is fixed on the sliding beam 1.
[0056] The above only describes the preferred embodiments of the present application, and is not intended to limit the present application, and any modification, equivalent replacement, improvement, etc. within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A form traveler connection structure, characterized by: The utility model relates to a kind of connecting clamps, including sliding beam (1), bailey (2) and connecting clamp (3), wherein, The bailey (2) is spaced apart from the sliding beam (1); The connecting clamp (3) includes bottom plate (31), jaw (32) and calipers (33), wherein, The jaw (32) is detachably fixed on the bottom plate (31), and the bailey (2) is arranged between the bottom plate (31) and the jaw (32); The calipers (33) are rotatably arranged on the bottom plate (31) and are slidably connected with the sliding beam (1).
2. A form traveler connection as defined in claim 1, wherein: The jaw (32) includes connecting plate (321) and hook plate (322), wherein, The connecting plate (321) is abutted and detachably fixedly connected with the bottom plate (31); The hook plate (322) is fixedly arranged on the connecting plate (321), and the bailey (2) is fixedly arranged between the hook plate (322) and the bottom plate (31).
3. A form traveler connection as defined in claim 2, wherein: Two hook plates (322) are arranged on the connecting plate (321), and the two hook plates (322) are parallel and spaced apart.
4. A form traveler connection as defined in claim 3, wherein: The connecting clamp (3) further includes a bolt (34), the connecting plate (321) is fixedly connected with the bottom plate (31) by the bolt (34), and the bolt (34) is located between the two hook plates (322).
5. A form traveler connection as defined in claim 1, wherein: Two jaws (32) are provided, and the two jaws (32) are symmetrically arranged about the center line of the bailey (2).
6. A form traveler connection as defined in claim 5, wherein: The jaw (32) is provided with a longitudinal abutting surface (301) and a transverse abutting surface (302), wherein, The longitudinal abutting surface (301) is abutted with the side of the bailey (2) away from the bottom plate (31); The transverse abutting surface (302) is abutted with the side of the bailey (2) perpendicular to the bottom plate (31).
7. A form traveler connection as defined in claim 1, wherein: The bottom plate (31) includes a plate body (311) and a rotating pin (312), wherein, The bailey (2) and the jaw (32) are arranged on the plate body (311); The rotating pin (312) is rotatably arranged on the plate body (311) and is fixedly connected with the calipers (33).
8. A form traveler connection as defined in claim 7, wherein: The bottom plate (31) further includes a backing plate (313), the backing plate (313) is fixedly arranged on the side of the plate body (311) away from the jaw (32) and is abutted with the calipers (33), and a first through hole (303) is formed in the inside of the backing plate (313); A second through hole (304) is formed in the plate body (311), the second through hole (304) is in communication with the first through hole (303), and the inner diameter of the second through hole (304) is greater than the inner diameter of the first through hole (303). The rotating pin (312) comprises a small-diameter end (305) and a large-diameter end (306), one end of the small-diameter end (305) is rotatably arranged in the first through hole (303), and the other end is fixedly connected with the caliper (33); the large-diameter end (306) is rotatably arranged in the second through hole (304) and abuts against the backing plate (313), and the large-diameter end (306) is fixedly connected with the end of the small-diameter end (305) away from the caliper (33).
9. A form traveler connection as defined in claim 8, wherein: A mounting groove (307) is formed in the caliper (33), and the end of the small-diameter end (305) away from the large-diameter end (306) is fixedly arranged in the mounting groove (307); A plurality of lightening holes (308) are formed in the backing plate (313), and the lightening holes (308) are in the shape of a long strip.
10. A form traveler connection structure as defined in claim 1, wherein: A sliding groove (309) is formed in the side of the caliper (33) away from the bottom plate (31), and the sliding beam (1) is slidingly arranged in the sliding groove (309) and is spaced apart from the inner wall thereof.
Citation Information
Patent Citations
A mobile hanger sliding beam connection device
CN105649324B