Anti-crack temperature control pouring structure based on bottom plate concrete pouring
Through automatic unblocking of blocked drain pipes by dredging and stabilizing devices, the construction interruption caused by concrete blockage is solved, the continuity and uniform distribution of concrete casting are achieved, and the stability of equipment and the strength of the building are improved.
Patent Information
- Application Number
- CN202422275280.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-18
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-09-18
AI Technical Summary
In the prior art, concrete is prone to blocking the discharge pipe, resulting in low production efficiency, construction interruption, delayed construction period, and high difficulty in equipment maintenance.
Drainage devices and stabilization devices are adopted, including hollow pipes, rod bodies, grips, fixing springs, restricting rods and pressure springs. Automatic drainage of blocked materials and equipment positioning is achieved by pressing the grips and discs to ensure the continuity and uniform distribution of concrete pouring.
The continuity of concrete pouring is achieved, construction interruptions are reduced, construction period is shortened, concrete is evenly distributed, equipment stability and overall strength of the building are improved.
Smart Images

Figure CN223177150U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of concrete pouring, in particular to a crack-proof temperature-controlled pouring structure based on bottom plate concrete pouring. Background Art
[0002] The anti-crack temperature-controlled pouring structure generally refers to a technical solution used in large-volume concrete construction, which aims to prevent cracks in the concrete and control temperature stress. A pouring machine is required during the anti-crack temperature-controlled pouring process.
[0003] Prior art publications such as the utility model with publication number CN219638422U relate to the field of concrete pouring, specifically to a concrete pouring device. The utility model addresses the problem of inconvenience in discharging concrete from a concrete hopper in the prior art. The utility model comprises a fixed frame, a hopper mounted on the fixed frame, a discharge opening at the bottom of the hopper, and at least two sealing baffles symmetrically disposed centrally on the discharge opening. The sealing baffles are connected by a transmission mechanism to synchronize the opening and closing of the sealing baffles. Adjacent sealing baffles are provided with mating sealing structures. The sealing baffles are transmission-connected to each other, one of the sealing baffles being connected to a connecting rod transmission mechanism hingedly mounted on the fixed frame. The fixed frame is provided with a locking mechanism for locking or unlocking the connecting rod transmission mechanism. However, during daily use of a pouring machine, concrete can easily clog the discharge pipe. This discharge blockage can seriously affect production efficiency. During construction or production, once a blockage occurs, not only is time-consuming and labor-intensive to clean, but it can also interrupt the entire pouring operation and delay the project.
[0004] In order to solve the problem that concrete easily clogs the discharge pipe, which seriously affects production efficiency, once a blockage occurs during the construction or production process, it not only takes time and manpower to clean it up, but also leads to the interruption of the entire pouring operation and delays in the construction period. The existing technology uses the method of disassembling and unblocking the discharge pipe to deal with it, but it increases the difficulty of equipment maintenance and leads to the problem of inconvenience in using the equipment. Utility Model Content
[0005] The purpose of the utility model is to solve the problem in the prior art that concrete easily clogs the discharge pipe, which seriously affects the production efficiency. During the construction or production process, once a blockage occurs, it not only takes time and manpower to clean up, but also leads to the interruption of the entire pouring operation and delays the construction period. A seam-proof temperature-controlled pouring structure based on bottom plate concrete pouring is proposed.
[0006] To achieve the above object, the utility model adopts the following technical solutions: A crack prevention and temperature control pouring structure based on the pouring of bottom plate concrete, including a platform and a dredging device. A tank body is installed on the surface of the platform, a driving machine is installed on the surface of the tank body, a push rod is installed on one side of the platform, pulleys are installed on the lower surface of the platform, a feeding pipe is installed on one side of the tank body, and a dredging device is arranged on the surface of the feeding pipe. The dredging device includes a hollow pipe, the hollow pipe is fixedly connected with the feeding pipe, sliding holes are formed on the surface of the hollow pipe, a rod body is slidably connected to the inner wall of the sliding hole, a pushing block is fixedly connected to one side of the rod body through the hollow pipe, and a handle is fixedly connected to the side of the rod body away from the pushing block. By setting the dredging device, the continuity of concrete pouring is ensured, construction interruption caused by blockage is reduced, the construction period is shortened, and at the same time, the uniform distribution of concrete can be ensured.
[0007] Preferably, the hollow pipe is communicated with the feeding pipe, and the handle and the rod body are combined in a "T" shape. By setting the hollow pipe, it is convenient to assist the rod body to dredge the feeding pipe, increasing the stability of the equipment and reducing the operation difficulty of the equipment.
[0008] Preferably, a fixing spring is sleeved on the surface of the rod body, and both ends of the fixing spring are fixedly connected with the hollow pipe and the handle respectively. By setting the fixing spring, during use, the fixing spring is convenient to drive the rod body to reset, increasing the usability of the equipment and reducing the operation difficulty of the equipment.
[0009] Preferably, a stabilizing device is arranged on one side of the platform. The stabilizing device includes an auxiliary block, the auxiliary block is fixedly connected with the platform, a hole one is formed on the surface of the auxiliary block, a limiting rod is slidably connected to the hole one on the surface of the auxiliary block, a disc body is rotatably connected to the surface of the limiting rod, a hole two is formed on the surface of the disc body, a connecting plate is fixedly connected to the surface of the auxiliary block, and a plug rod is fixedly connected to the surface of the connecting plate. By setting the stabilizing device, it is convenient to position the equipment, keep the body of the equipment stable during pouring, and improve the stability of the equipment.
[0010] Preferably, the plug rod is inserted into the hole two on the surface of the disc body, there are two plug rods, and the two plug rods are arranged in mirror symmetry. By setting the plug rod, during use, the plug rod is convenient to limit the disc body, improving the safety of the equipment.
[0011] Preferably, a pressure spring is sleeved on the surface of the limiting rod, and both ends of the pressure spring are fixedly connected with the auxiliary block and the disc body respectively. By setting the pressure spring, during use, the pressure spring generates elastic force to squeeze the limiting rod to assist the limiting rod to reset.
[0012] Compared with the prior art, the advantages and positive effects of the utility model are as follows:
[0013] In the present utility model, by providing a dredging device and a stabilizing device, when the hollow tube is blocked, the grip is pressed, the grip squeezes the rod body, the rod body drives the pushing block to squeeze towards the inside of the hollow tube, and the pushing block pushes the material blocked in the feeding tube back into the tank body. At this time, the rod body is released, and the fixing spring loses its restraint and generates an elastic force to squeeze the grip back to its original position to complete dredging. When the equipment is pouring, the disc body is pressed, the disc body drives the limiting rod to abut against the ground, and the disc body is rotated. The disc body drives hole two away from the inserting rod. At this time, the disc body abuts against the inserting rod, and the limiting rod is difficult to reset, completing positioning. Rotating the disc body drives hole two to correspond to the inserting rod. At this time, the pressure spring loses its restraint and generates an elastic force to squeeze the disc body upwards, and the inserting rod is inserted into hole two. At this time, the disc body drives the limiting rod to slide upwards and reset. By providing the present utility model, the continuity of concrete pouring is ensured, construction interruption caused by blockage is reduced, thereby shortening the construction period. At the same time, the uniform distribution of concrete can be ensured, the overall strength and stability of the building are improved. In addition, it is convenient to position the equipment, keep the machine body stable during pouring, and improve the stability of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 FIG. is a three-dimensional structural schematic diagram of an anti-crack temperature control pouring structure based on bottom plate concrete pouring proposed by the present utility model;
[0015] Figure 2 FIG. is a cross-sectional structural schematic diagram of the hollow tube of an anti-crack temperature control pouring structure based on bottom plate concrete pouring proposed by the present utility model;
[0016] Figure 3 FIG. is a partial structural schematic diagram of an anti-crack temperature control pouring structure based on bottom plate concrete pouring proposed by the present utility model;
[0017] Figure 4 FIG. is a structural schematic diagram of the dredging device of an anti-crack temperature control pouring structure based on bottom plate concrete pouring proposed by the present utility model;
[0018] Figure 5 FIG. is a structural schematic diagram of the stabilizing device of an anti-crack temperature control pouring structure based on bottom plate concrete pouring proposed by the present utility model.
[0019] LEGEND DESCRIPTION: 1, platform; 2, tank body; 3, drive motor; 4, push rod; 5, pulley; 6, feeding tube; 7, dredging device; 71, hollow tube; 72, pushing block; 73, rod body; 74, grip; 75, fixing spring; 76, sliding hole; 8, stabilizing device; 81, auxiliary block; 82, limiting rod; 83, pressure spring; 84, disc body; 85, connecting plate; 86, inserting rod. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0020] Please refer to Figures 1-5, the present utility model provides a technical solution: a seam - preventing and temperature - controlling pouring structure based on the concrete pouring of the base plate, including a platform 1 and a dredging device 7. A tank body 2 is installed on the surface of the platform 1, a driving machine 3 is installed on the surface of the tank body 2, a push rod 4 is installed on one side of the platform 1, a pulley 5 is installed on the lower surface of the platform 1, a feeding pipe 6 is installed on one side of the tank body 2, and a dredging device 7 is arranged on the surface of the feeding pipe 6.
[0021] Next, specifically describe the specific settings and functions of its dredging device 7 and stabilizing device 8.
[0022] In this implementation scheme: the dredging device 7 includes a hollow pipe 71. The hollow pipe 71 is fixedly connected to the feeding pipe 6. A sliding hole 76 is opened on the surface of the hollow pipe 71. A rod body 73 is slidably connected to the inner wall of the sliding hole 76. One side of the rod body 73 penetrates through the hollow pipe 71 and is fixedly connected to a pushing block 72. The side of the rod body 73 far from the pushing block 72 is fixedly connected to a handle 74. By setting the dredging device 7, the continuity of concrete pouring is ensured, construction interruption caused by blockage is reduced, thereby shortening the construction period. At the same time, the uniform distribution of concrete can also be ensured.
[0023] Specifically, the hollow pipe 71 is communicated with the feeding pipe 6. The handle 74 and the rod body 73 are combined in a "T" shape. By setting the hollow pipe 71, it is convenient to assist the rod body 73 to dredge the feeding pipe 6, increasing the stability of the equipment and reducing the operation difficulty of the equipment.
[0024] Specifically, a fixing spring 75 is sleeved on the surface of the rod body 73. The two ends of the fixing spring 75 are respectively fixedly connected to the hollow pipe 71 and the handle 74.
[0025] In this embodiment: by setting the fixing spring 75, during use, the fixing spring 75 is convenient to drive the rod body 73 to reset, increasing the usability of the equipment and reducing the operation difficulty of the equipment.
[0026] Specifically, a stabilizing device 8 is arranged on one side of the platform 1. The stabilizing device 8 includes an auxiliary block 81. The auxiliary block 81 is fixedly connected to the platform 1. A hole one is opened on the surface of the auxiliary block 81. A limiting rod 82 is slidably connected to the hole one on the surface of the auxiliary block 81. A disc body 84 is rotatably connected to the surface of the limiting rod 82. A hole two is opened on the surface of the disc body 84. A connecting plate 85 is fixedly connected to the surface of the auxiliary block 81. An insertion rod 86 is fixedly connected to the surface of the connecting plate 85.
[0027] In this embodiment: by setting the stabilizing device 8, it is convenient to position the equipment, keep the machine body stable during pouring, and improve the stability of the equipment.
[0028] Specifically, the insertion rod 86 is inserted into the second hole on the surface of the disk body 84. There are two insertion rods 86, and the two insertion rods 86 are arranged in mirror symmetry. By setting the insertion rod 86, during use, the insertion rod 86 is convenient for restricting the disk body 84, improving the safety of the equipment.
[0029] Specifically, a pressure spring 83 is sleeved on the surface of the restricting rod 82, and both ends of the pressure spring 83 are fixedly connected to the auxiliary block 81 and the disk body 84 respectively.
[0030] In this embodiment: By setting the pressure spring 83, during use, the pressure spring 83 generates an elastic force to squeeze the restricting rod 82 to assist the restricting rod 82 in resetting.
[0031] Working principle: By setting the dredging device 7 and the stabilizing device 8, when the hollow tube 71 is blocked, press the grip 74. The grip 74 squeezes the rod body 73, and the rod body 73 drives the push block 72 to squeeze into the hollow tube 71. The push block 72 pushes the materials blocked in the feeding pipe 6 back into the tank body 2. At this time, release the rod body 73, and the fixed spring 75 loses restraint and generates an elastic force to squeeze the grip 74 to reset to complete dredging. When the equipment is pouring, press the disk body 84. The disk body 84 drives the restricting rod 82 to abut against the ground, and rotate the disk body 84. The disk body 84 drives the second hole away from the insertion rod 86. At this time, the disk body 84 abuts against the insertion rod 86, and the restricting rod 82 is difficult to reset to complete positioning. Rotate the disk body 84 to drive the second hole to correspond to the insertion rod 86. At this time, the pressure spring 83 loses restraint and generates an elastic force to squeeze the disk body 84 upward, and the insertion rod 86 is inserted into the second hole. At this time, the disk body 84 drives the restricting rod 82 to slide upward and reset. By setting the present utility model, the continuity of concrete pouring is ensured, the construction interruption caused by blockage is reduced, so as to shorten the construction period. At the same time, the uniform distribution of concrete can be ensured, the overall strength and stability of the building are improved. In addition, it is convenient to position the equipment, keep the body of the equipment stable during pouring, and improve the stability of the equipment.
Claims
1. A crack prevention and temperature control pouring structure based on the casting of bottom plate concrete, comprising a platform (1) and a dredging device (7), characterized in that: A tank body (2) is surface-mounted on the platform (1), a driving machine (3) is surface-mounted on the surface of the tank body (2), a push rod (4) is mounted on one side of the platform (1), a pulley (5) is mounted on the lower surface of the platform (1), a blanking pipe (6) is mounted on one side of the tank body (2), a dredging device (7) is arranged on the surface of the blanking pipe (6), the dredging device (7) comprises a hollow pipe (71), the hollow pipe (71) is fixedly connected with the blanking pipe (6), a sliding hole (76) is formed in the surface of the hollow pipe (71), a rod body (73) is slidably connected to the inner wall of the sliding hole (76), one side of the rod body (73) penetrates through the hollow pipe (71) and is fixedly connected with a pushing block (72), and a handle (74) is fixedly connected to the side of the rod body (73) away from the pushing block (72).
2. The anti-seam temperature control pouring structure based on the bottom plate concrete pouring according to claim 1, characterized in that: The hollow pipe (71) is communicated with the blanking pipe (6), and the handle (74) and the rod body (73) are combined and arranged in a "T" shape.
3. A temperature-control pouring structure for preventing joints based on bottom plate concrete pouring according to claim 1, characterized in that: A fixing spring (75) is sleeved on the surface of the rod body (73), and two ends of the fixing spring (75) are respectively fixedly connected with the hollow pipe (71) and the handle (74).
4. A temperature-control pouring structure for preventing joints based on the pouring of bottom slab concrete according to claim 1, characterized in that: A stabilizing device (8) is arranged on one side of the platform (1), the stabilizing device (8) comprises an auxiliary block (81), the auxiliary block (81) is fixedly connected with the platform (1), a hole one is formed in the surface of the auxiliary block (81), a limiting rod (82) is slidably connected to the hole one on the surface of the auxiliary block (81), a disc body (84) is rotatably connected to the surface of the limiting rod (82), a hole two is formed in the surface of the disc body (84), a connecting plate (85) is fixedly connected to the surface of the auxiliary block (81), and a plug rod (86) is fixedly connected to the surface of the connecting plate (85).
5. The temperature control and crack prevention pouring structure based on the bottom plate concrete pouring according to claim 4, characterized in that: The plug rod (86) is inserted into the hole two on the surface of the disc body (84), there are two plug rods (86), and the two plug rods (86) are arranged in mirror symmetry.
6. A temperature control and crack prevention pouring structure based on bottom plate concrete pouring according to claim 4, characterized in that: A pressure spring (83) is sleeved on the surface of the limiting rod (82), and two ends of the pressure spring (83) are respectively fixedly connected with the auxiliary block (81) and the disc body (84).
Citation Information
Patent Citations
Concrete pouring device
CN219638422U