Vibrating window for steel-concrete-one-type steel framework
By designing a vibrating window for a steel-concrete first-type steel frame including paper set blocks, fan-shaped rotating blocks and inclined drainage plates, the problem of vibration difficulties during concrete pouring is solved, the smooth flow and stable drainage of liquid are achieved, and the reliability and operation simplicity of the system are improved.
Patent Information
- Application Number
- CN202421407811.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-19
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-06-19
AI Technical Summary
During the concrete pouring process, due to the tight interweaving of the steel frame and the steel bars, it is difficult to vibrate, and the concrete may not be able to fully flow into and fill the internal space, resulting in insufficient vibration, leakage of concrete, and even mass defects such as concrete holes and exposed ribs.
A vibrating window for a steel-concrete one-type steel frame is designed, including a paper set block, a fan-shaped rotating block and an inclined drainage plate. By adjusting the angle, the pouring structure and sealing components can achieve unidirectional drainage and flexible angle adjustment of the liquid.
This design allows liquid to flow smoothly, reduces resistance and waste, ensures liquid flows along predetermined paths, improves system stability and reliability, reduces risks during operation, and simplifies operation and maintenance.
Smart Images

Figure CN222835363U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of concrete pouring dustpan openings, in particular to a vibrating window for a steel-concrete type steel frame. Background Art
[0002] In modern buildings, steel-concrete structures occupy an important position. However, during the construction process, the concrete pouring process often faces a series of challenges. Specifically, when it comes to the concrete pouring of wall panels, columns, beams and other structures, these structures have built-in steel components such as steel beams, steel plates, steel strips, ear plates, studs, etc., accompanied by the dense arrangement of main bars, stirrups and distribution bars. The steel skeleton is closely interwoven with the steel bars and the spacing between them is small.
[0003] This compact structural layout leads to a significant problem: even a small deviation of the steel bar or steel structure may make the space for concrete pouring too narrow, making it difficult for the vibrating rod or vibration pump to vibrate effectively. As a result, the concrete may not be able to fully flow into and fill the internal space of the beams, slabs, and columns, resulting in insufficient vibration, concrete leakage, and even quality defects such as concrete holes and exposed steel bars after the formwork is removed. These problems not only affect the overall quality of the building structure, but also have a negative impact on its appearance. In view of this, in-depth research on the above issues led to the creation of this case. Utility Model Content
[0004] To achieve the above purpose, the utility model is implemented through the following technical solutions: a vibrating window for a steel-concrete steel frame, comprising: a circular set block, a pair of fan-shaped rotating blocks and an inclined drainage plate, the inclined drainage plate is installed on the pair of fan-shaped rotating blocks, a drainage port is opened on the circular set block, and the pair of fan-shaped rotating blocks are installed on the drainage port on the circular set block through an angle adjustment tilting structure;
[0005] The angle adjustment and dumping structure comprises: a rotating angle shaft, a pair of concave arc limit blocks, a pair of vertical insertion pins and an auxiliary sealing assembly;
[0006] The rotation angle axis is inserted on the inclined guide plate, a pair of the concave arc limit blocks are installed in parallel on the guide port, and the pair of the concave arc limit blocks are movably mounted on a pair of the fan-shaped rotating blocks, a pair of the concave arc limit blocks are provided with positioning ports, a pair of the fan-shaped rotating blocks are provided with a plurality of limiting grooves, a pair of the vertical plug-in pins are movably inserted on a pair of the positioning ports and the inner sides of a pair of the limiting grooves, and the auxiliary sealing assembly is installed on a pair of the fan-shaped rotating blocks and the guide port.
[0007] Preferably, the auxiliary sealing assembly comprises: a pair of sealing L-shaped blocks, a pair of drainage rubber strips and a pair of sealing rubber strips;
[0008] A pair of the sealing L-shaped blocks are installed on the drainage port, a pair of the drainage rubber strips are respectively installed on a pair of the sealing L-shaped blocks, and a pair of the sealing rubber strips are installed on the inclined drainage plate and the circular set block.
[0009] Preferably, a knocking shaft tube is provided on the inclined guide plate, and a circular knocking limit block is provided on the knocking shaft tube.
[0010] Preferably, a striking shaft and a striking ring are provided on the inner side of the striking shaft tube.
[0011] Preferably, a knocking sleeve spring is provided on the inner side of the knocking shaft and the annular knocking limit block.
[0012] Preferably, a pair of the fan-shaped rotating blocks form an angle of 120 degrees.
[0013] Beneficial Effects
[0014] The utility model provides a vibrating window for a steel-concrete type steel frame. It has the following beneficial effects: the vibrating window for a steel-concrete type steel frame can conveniently adjust the position of the fan-shaped rotating block in the limit groove by pulling out the vertical plug-in pin, thereby changing the rotation angle of the fan-shaped rotating block; this design allows the angle between the inclined drainage plate and the inner side of the circular set block to be flexibly adjusted, thereby meeting the drainage angle requirements under different needs; a pair of fan-shaped rotating blocks drives the inclined drainage plate to rotate, which can effectively guide the flow of liquid and ensure that the liquid flows along a predetermined path; the design of the inclined drainage plate helps the liquid flow more smoothly, reducing resistance and waste; through a pair of sealed L-shaped blocks, the system can achieve one-way drainage of the liquid, ensuring that the liquid flows in a predetermined direction, avoiding liquid reflux or leakage; this design The stability and reliability of the system are improved, and the risks during operation are reduced; the use of drainage strips and sealing strips effectively seals the outer sides of the fan-shaped rotating block and the circular set block to prevent liquid leakage from the gap; good sealing performance not only ensures the normal operation of the system, but also extends the service life of the equipment; the entire adjustment process can be completed through a simple pulling action, which is easy to operate and reduces the requirements for operators; at the same time, this design is also convenient for equipment maintenance and improves the efficiency of equipment use; the system can adjust the drainage angle according to different needs to adapt to the use requirements in different scenarios; this design enables the system to have a wider range of applications and improves the practicability and economy of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic diagram of the main cross-section of a vibrating window for a steel-concrete type steel frame described in the utility model.
[0016] Figure 2It is a top view and cross-sectional schematic diagram of a vibrating window for a steel-concrete type steel frame described in the utility model.
[0017] In the figure: 1. circular set block; 2. fan-shaped rotating block; 3. inclined guide plate; 4. rotating angle axis; 5. concave arc limit block; 6. vertical plug-in pin; 7. sealing L-shaped block. DETAILED DESCRIPTION
[0018] Based on the embodiments of the present utility model, all other embodiments obtained by ordinary technicians in the field without making any creative work shall fall within the scope of protection of the present utility model.
[0019] Through the personnel in this field, all the electrical components in this case are connected to their corresponding power supplies through wires, and appropriate controllers and encoders should be selected according to actual conditions to meet the control requirements. The specific connection and control sequence should refer to the following working principle, and the electrical connection between the electrical components is completed in the order of working in sequence. The detailed connection means are well-known technologies in this field. The following mainly introduces the working principles and processes, and no longer explains the electrical control.
[0020] Example
[0021] like Figure 1-2 As shown, the inclined guide plate 3 is installed on a pair of the fan-shaped rotating blocks 2, a guide port is provided on the circular set block 1, and a pair of the fan-shaped rotating blocks 2 are installed on the guide port of the circular set block 1 through an angle adjustment tilting structure;
[0022] Specifically, the angle adjustment dumping structure includes: a rotating angle shaft 4, a pair of concave arc limit blocks 5, a pair of vertical insertion pins 6 and an auxiliary sealing assembly;
[0023] Specifically, the rotation angle shaft 4 is inserted on the inclined guide plate 3, a pair of the concave arc limit blocks 5 are installed in parallel on the guide port, and the pair of the concave arc limit blocks 5 are respectively movably mounted on the pair of the fan-shaped rotating blocks, a pair of the concave arc limit blocks 5 are provided with positioning ports, a pair of the fan-shaped rotating blocks 2 are provided with a plurality of limiting grooves, a pair of the vertical plug-in pins 6 are respectively movably inserted on the inner sides of a pair of the positioning ports and a pair of the limiting grooves, and the auxiliary sealing assembly is installed on the pair of the fan-shaped rotating blocks 2 and the guide port;
[0024] It should be noted that, in the above, by pulling out a pair of vertical plug-in pins 6, the vertical plug-in pins 6 are contracted inside the limit groove on the fan-shaped rotating block 2, so that the fan-shaped rotating block 2 is extended and retracted at a pair of concave arc limit blocks 5, so that the pair of fan-shaped rotating blocks 2 are rotated along the rotation angle axis 4, thereby achieving the goal of driving the inclined guide plate 3 thereon through the pair of fan-shaped rotating blocks 2, thereby changing the angle between the inclined guide plate 3 and the inner side of the circular set block 1, thereby achieving the goal of adjusting the drainage angle according to different needs.
[0025] like Figure 1-2 As shown, the auxiliary sealing assembly includes: a pair of sealing L-shaped blocks 7, a pair of drainage strips and a pair of sealing strips;
[0026] Specifically, a pair of the sealing L-shaped blocks 7 are installed on the drainage port, a pair of the drainage strips are respectively installed on a pair of the sealing L-shaped blocks 7, and a pair of the sealing strips are installed on the inclined drainage plate 3 and the circular set block 1;
[0027] It should be noted that, in the above, the liquid is limited and drained by a pair of sealing L-shaped blocks 7, so as to achieve one-way drainage of the driven raw material. At the same time, the sealing L-shaped block 7 is limited by a pair of drainage strips, and the outer sides of the fan-shaped rotating block 2 and the circular set block 1 are sealed by the sealing strips.
[0028] As a preferred solution, further, a knocking shaft tube is provided on the inclined guide plate 3, and a circular knocking limit block is provided on the knocking shaft tube.
[0029] As a preferred embodiment, further, a striking shaft and a striking ring are provided on the inner side of the striking shaft tube.
[0030] As a preferred solution, further, a knocking sleeve spring is provided on the inner side of the knocking shaft and the annular knocking limit block.
[0031] As a preferred solution, further, a pair of the fan-shaped rotating blocks 2 form 120 degrees.
[0032] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A vibrating window for a steel-concrete steel frame, comprising: A circular set block, a pair of fan-shaped rotating blocks and an inclined guide plate, wherein the inclined guide plate is installed on the pair of fan-shaped rotating blocks, a drainage port is provided on the circular set block, and the pair of fan-shaped rotating blocks are installed on the drainage port of the circular set block through an angle adjustment tilting structure; The angle adjustment and dumping structure comprises: a rotating angle shaft, a pair of concave arc limit blocks, a pair of vertical insertion pins and an auxiliary sealing assembly; The rotation angle axis is inserted on the inclined guide plate, a pair of the concave arc limit blocks are installed in parallel on the guide port, and the pair of the concave arc limit blocks are movably mounted on a pair of the fan-shaped rotating blocks, a pair of the concave arc limit blocks are provided with positioning ports, a pair of the fan-shaped rotating blocks are provided with a plurality of limiting grooves, a pair of the vertical plug-in pins are movably inserted on a pair of the positioning ports and the inner sides of a pair of the limiting grooves, and the auxiliary sealing assembly is installed on a pair of the fan-shaped rotating blocks and the guide port.
2. A vibrating window for a steel-concrete steel frame according to claim 1, characterized in that: The auxiliary sealing assembly includes: a pair of sealing L-shaped blocks, a pair of drainage rubber strips and a pair of sealing rubber strips; A pair of the sealing L-shaped blocks are installed on the drainage port, a pair of the drainage rubber strips are respectively installed on a pair of the sealing L-shaped blocks, and a pair of the sealing rubber strips are installed on the inclined drainage plate and the circular set block.
3. A vibrating window for a steel-concrete steel frame according to claim 2, characterized in that: The inclined guide plate is provided with a knocking shaft tube, and the knocking shaft tube is provided with a circular knocking limit block.
4. A vibrating window for a steel-concrete steel frame according to claim 3, characterized in that: A striking shaft and a striking ring are arranged on the inner side of the striking shaft tube.
5. A vibrating window for a steel-concrete steel frame according to claim 4, characterized in that: The inner sides of the knocking shaft and the annular knocking limit block are provided with knocking sleeve springs.
6. A vibrating window for a steel-concrete steel frame according to claim 5, characterized in that: A pair of the fan-shaped rotating blocks is 120 degrees apart.