Adjustable socket type disc buckle frame type system for vertical rods on two sides of beam
By using adjustable steel horizontal rods and retractable horizontal rods in the plug-in type coil-button steel pipe scaffolding, the construction inconvenience and safety hazards caused by modulus layout are solved, and a more flexible and safe construction process is achieved.
Patent Information
- Application Number
- CN202421386402.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-18
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-06-18
AI Technical Summary
The insertion type coil-buckle steel pipe scaffolding is difficult to arrange the beam side poles in a modulus at the nodes of some beams, resulting in inconvenience in construction or safety hazards.
The adjustable steel horizontal rod and the retractable horizontal rod are used to adjust the position through the slidable base and lock, and the length is adjusted by threads to form an adjustable buckle frame, which solves the problem of module restriction.
The plug-in type buckle type steel pipe scaffolding formwork support system is not restricted by the horizontal rod module, the construction process is more convenient, the frame body is more integrated and safer.
Smart Images

Figure CN223018169U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to an adjustable socket - type disk - buckle frame system for vertical poles on both sides of a beam. Background Technique
[0002] In today's construction engineering field, socket - type disk - buckle steel pipe scaffolds are increasingly used as formwork supports. Its advantages are modularity, which can better control the construction quality of the scaffold and is safer. However, compared with traditional steel pipe fastener scaffolds, it is not flexible enough, and the vertical pole spacing at some nodes cannot be set according to the module (multiples of 300 mm). Content of the Utility Model
[0003] The purpose of the utility model is to provide an adjustable socket - type disk - buckle frame system for vertical poles on both sides of a beam.
[0004] To solve the above problems, the utility model provides an adjustable socket - type disk - buckle frame system for vertical poles on both sides of a beam, including:
[0005] The first vertical poles are arranged at the lower part of the beam and on the far sides of both sides of the beam. Each first vertical pole is formed by connecting multiple vertical pole segments of standard length;
[0006] Standard - length horizontal bars connected between two adjacent vertical pole segments of standard length;
[0007] Steel - shaped horizontal bars. Each steel - shaped horizontal bar is connected between two adjacent first vertical poles on the side close to the lower part of the beam, and a slidable base is sleeved on each steel - shaped horizontal bar;
[0008] The second vertical poles are arranged on the near sides of both sides of the beam. The bottom of each second vertical pole is inserted into the slidable base, and the top of each second vertical pole abuts against the structures on both sides of the beam.
[0009] Further, in the above - mentioned adjustable socket - type disk - buckle frame system for vertical poles on both sides of a beam, the bottom ends of the first vertical poles arranged on the far sides of both sides of the beam abut against the ground, and the top ends are connected to the standard - length horizontal bars under the structures on the far sides of the beam sides.
[0010] Further, in the above - mentioned adjustable socket - type disk - buckle frame system for vertical poles on both sides of a beam, a lock for locking the slidable base on the steel - shaped horizontal bar is also arranged on each steel - shaped horizontal bar.
[0011] Further, in the above - mentioned adjustable socket - type disk - buckle frame system for vertical poles on both sides of a beam, it further includes:
[0012] Retractable horizontal bars. One end of each retractable horizontal bar is connected to the second vertical pole on the near side of one side of the beam, and the other end is connected to the first vertical pole on the far side of one side of the beam.
[0013] Further, in the adjustable socket - type disk - button frame system for the vertical poles on both sides of the beam, the telescopic horizontal rod is a two - section horizontal rod structure. One end of one section of the horizontal rod is provided with an internal long thread, and one end of the other section of the horizontal rod is provided with an external long thread that mates with the internal long thread.
[0014] Further, in the adjustable socket - type disk - button frame system for the vertical poles on both sides of the beam, the first vertical rod and the second vertical rod are provided with insertion holes, and both ends of the telescopic horizontal rod are provided with insertion holes. The connection is achieved by inserting a pin into the insertion hole at one end of the telescopic horizontal rod and the insertion hole at one end of the second vertical rod near the beam on one side of the beam, and the connection is achieved by inserting a pin into the other end of the telescopic horizontal rod and the insertion hole at one end of the first vertical rod far from the beam on one side of the beam.
[0015] Further, in the adjustable socket - type disk - button frame system for the vertical poles on both sides of the beam, sleeves are connected to both ends of the profiled steel horizontal rod, and the sleeves are sleeved and fixed on the adjacent first vertical rod.
[0016] Further, in the adjustable socket - type disk - button frame system for the vertical poles on both sides of the beam, the first vertical rod is provided with an insertion hole, and both ends of the standard - length horizontal rod are provided with insertion holes. The connection is achieved by inserting a pin into the insertion hole of the first vertical rod and the insertion hole at one end of the standard - length horizontal rod.
[0017] Compared with the prior art, to solve the problem that when the socket - type disk - button steel pipe scaffold is used as a formwork support, it is difficult to arrange the vertical poles on the beam side in a modular manner for some beam nodes, or arranging them in a modular manner causes construction inconvenience or safety hazards. In the present utility model, profiled steel horizontal rods are used for the horizontal rods at one - step - one - span closest to the beam bottom on both sides of the beam. The slidable base is sleeved on the profiled steel horizontal rod, can slide and adjust the position on the profiled steel horizontal rod and can be locked by a locking buckle, and is combined with a horizontal rod whose length can be adjusted by threads to form a disk - button frame at the non - modular parts. It can solve the problem that the socket - type disk - button steel pipe scaffold formwork support system is no longer restricted by the modulus of the horizontal rod, and it is no longer necessary to use the steel pipe coupler scaffold in cooperation, making the construction process more convenient, the integrity of the frame better, and safer. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 is a schematic diagram of the adjustable socket - type disk - button frame system for the vertical poles on both sides of the beam according to an embodiment of the present utility model. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0019] To make the above - mentioned objects, features, and advantages of the present utility model more obvious and understandable, the present utility model will be further described in detail below with reference to the drawings and specific embodiments.
[0020] Such as Figure 1As shown in the figure, the present utility model provides an adjustable socket - and - button - type framework system for vertical poles on both sides of a beam, including:
[0021] The first vertical poles 5 arranged at the lower part of the beam 6 and on the far sides of both sides of the beam 6, wherein each first vertical pole 5 is formed by connecting multiple standard - length vertical pole segments;
[0022] Standard - length horizontal bars 8 connected between two adjacent standard - length vertical poles;
[0023] Steel - shaped horizontal bars 1, each steel - shaped horizontal bar 1 is connected between two adjacent first vertical poles on one side close to the lower part of the beam, and a slidable base 7 is sleeved on each steel - shaped horizontal bar 1;
[0024] Second vertical poles 2 arranged on the near sides of both sides of the beam, the bottom of the second vertical pole 2 is inserted into the slidable base 7, and the top of the second vertical pole 2 abuts against the structures on both sides of the beam 6.
[0025] Here, to solve the problem that when the socket - and - button - type steel pipe scaffolding is used as a formwork support, it is difficult to arrange the vertical poles on the beam side in a modular manner for some beam nodes, or arranging them in a modular manner causes construction inconvenience or safety hazards. In the present utility model, steel - shaped horizontal bars are used for the horizontal bars at one - step - one - span closest to the beam bottom on both sides of the beam. The slidable base is sleeved on the steel - shaped horizontal bar, can slide and adjust the position on the steel - shaped horizontal bar and can be locked by a lock. Cooperating with the horizontal bar whose length can be adjusted by threads, a button - type framework is formed at the parts where modular arrangement is not possible. It can solve the problem that the socket - and - button - type steel pipe scaffolding formwork support system is no longer restricted by the modulus of the horizontal bar, and it is no longer necessary to use the steel pipe fastener - type scaffolding for cooperation, making the construction process more convenient, the integrity of the framework better, and safer.
[0026] In an embodiment of the adjustable socket - and - button - type framework system for vertical poles on both sides of a beam of the present utility model, the bottom end of each first vertical pole 5 arranged at the lower part of the beam abuts against the ground, and the top end is connected to the standard - length horizontal bar 8 at the bottom of the beam 6.
[0027] As Figure 1 shown, in an embodiment of the adjustable socket - and - button - type framework system for vertical poles on both sides of a beam of the present utility model, the bottom end of the first vertical pole arranged on the far sides of both sides of the beam abuts against the ground, and the top end is connected to the standard - length horizontal bar under the structure on the far side of the beam side.
[0028] In an embodiment of the adjustable socket - and - button - type framework system for vertical poles on both sides of a beam of the present utility model, a lock for locking the slidable base on the steel - shaped horizontal bar is further arranged on each steel - shaped horizontal bar, so as to lock the slidable base on the steel - shaped horizontal bar when the slidable base slides to the required position.
[0029] As Figure 1As shown in the figure, in an embodiment of the adjustable socket - type disk - buckle frame system for vertical poles on both sides of a beam of the present utility model, it further includes:
[0030] A telescopic horizontal rod 3, one end of each telescopic horizontal rod is connected to the second vertical rod near the side of the beam, and the other end is connected to the first vertical rod far from the side of the beam.
[0031] In an embodiment of the adjustable socket - type disk - buckle frame system for vertical poles on both sides of a beam of the present utility model, the telescopic horizontal rod is of a two - section horizontal rod structure. Among them, one end of one section of the horizontal rod is provided with an inner long thread, and one end of the other section of the horizontal rod is provided with an outer long thread that cooperates with the inner long thread. Through the cooperation of the inner long thread and the outer long thread, the length of the telescopic horizontal rod can be freely adjusted.
[0032] As Figure 1 shown, in an embodiment of the adjustable socket - type disk - buckle frame system for vertical poles on both sides of a beam of the present utility model, the first vertical rod and the second vertical rod are provided with insertion holes, and both ends of the telescopic horizontal rod are provided with insertion holes. The connection is achieved by inserting a pin 4 into the insertion hole at one end of the telescopic horizontal rod and the insertion hole at one end of the second vertical rod 2 near the side of the beam, and the connection is achieved by inserting a pin into the other end of the telescopic horizontal rod and the insertion hole at one end of the first vertical rod far from the side of the beam.
[0033] In an embodiment of the adjustable socket - type disk - buckle frame system for vertical poles on both sides of a beam of the present utility model, sleeves are connected to both ends of the profiled steel horizontal rod, and the sleeves are sleeved and fixed on the adjacent first vertical rod.
[0034] In an embodiment of the adjustable socket - type disk - buckle frame system for vertical poles on both sides of a beam of the present utility model, the first vertical rod is provided with insertion holes, and both ends of the standard - length horizontal rod are provided with insertion holes. The connection is achieved by inserting a pin into the insertion hole of the first vertical rod and the insertion hole at one end of the standard - length horizontal rod.
[0035] In this specification, each embodiment is described in a progressive manner. The key point of each embodiment is to illustrate the differences from other embodiments. For the same or similar parts among the embodiments, reference can be made to each other.
[0036] Obviously, those skilled in the art can make various changes and modifications to the utility model without departing from the spirit and scope of the present utility model. Thus, if these modifications and variations of the present utility model fall within the scope of the claims of the present utility model and its equivalent technologies, the present utility model also intends to include these changes and modifications.
Claims
1. An adjustable socket-type buckle frame system for vertical bars on both sides of a beam, characterized in that: include: First vertical rods are arranged at the lower part of the beam and at the far side of both sides of the beam, wherein each first vertical rod is formed by connecting a plurality of vertical rod sections of standard length; A standard length horizontal rod connected between two adjacent standard length vertical rods; Steel horizontal bars, each of which is connected between two adjacent first vertical bars on one side close to the lower part of the beam, and each of which is sleeved with a slidable base; A second vertical rod is arranged on the proximal side of both sides of the beam, the bottom of the second vertical rod is inserted into the slidable base, and the top of the second vertical rod is against the structures on both sides of the beam.
2. The adjustable socket-type buckle frame system for the vertical poles on both sides of the beam as claimed in claim 1, characterized in that: The bottom ends of the first vertical rods arranged at the far sides of both sides of the beam are against the ground, and the top ends are connected to the standard-length horizontal rods under the structure at the far sides of the beam.
3. The adjustable socket-type buckle frame system for the vertical poles on both sides of the beam as claimed in claim 1, characterized in that: Each steel horizontal bar is also provided with a lock buckle for locking the slidable base on the steel horizontal bar.
4. The adjustable socket-type buckle frame system for the vertical poles on both sides of the beam as claimed in claim 1, characterized in that: Also includes: The telescopic horizontal rods are each connected at one end to the second vertical rod on the proximal side of one side of the beam, and at the other end to the first vertical rod on the distal side of one side of the beam.
5. The adjustable socket-type buckle frame system for the vertical poles on both sides of the beam as claimed in claim 4, characterized in that: The telescopic horizontal rod is a two-section horizontal rod structure, wherein one end of one section of the horizontal rod is provided with an inner long thread, and one end of the other section of the horizontal rod is provided with an outer long thread matching the inner long thread.
6. The adjustable socket-type buckle frame system for the vertical poles on both sides of the beam as claimed in claim 4, characterized in that: The first vertical rod and the second vertical rod are provided with sockets, and both ends of the telescopic horizontal rod are provided with sockets. The connection is achieved by inserting a pin into the socket at one end of the telescopic horizontal rod and the socket at one end of the second vertical rod on the near side of one side of the beam, and the connection is achieved by inserting a pin into the socket at one end of the telescopic horizontal rod and the socket at one end of the first vertical rod on the far side of one side of the beam.
7. The adjustable socket-type buckle frame system for the vertical poles on both sides of the beam as claimed in claim 1, characterized in that: Both ends of the steel horizontal rod are connected with sleeves, and the sleeves are sleeved and fixed on the adjacent first vertical rods.
8. The adjustable socket-type buckle frame system for the vertical poles on both sides of the beam as claimed in claim 1, characterized in that: The first vertical rod is provided with a socket, and both ends of the standard length horizontal rod are provided with sockets, and the connection is achieved by inserting a pin into the socket of the first vertical rod and the socket at one end of the standard length horizontal rod.