Concrete pouring device
The design of the concrete pouring device solves the problems of frequent concrete replenishment and inconvenience in paving in the prior art, achieves efficient concrete transportation and convenient operation of the mold, and improves the production efficiency of prefabricated parts.
Patent Information
- Application Number
- CN202520084419.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-14
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2035-01-14
AI Technical Summary
The existing mobile pouring method requires frequent replenishment of concrete and is not convenient for laying it flat in the mold, making it difficult to achieve large-scale production of prefabricated parts.
A concrete device is used, including a combined structure of a pouring base, a conveying channel, a mixing drum frame and a mixing drum. The transportation and leveling of concrete are achieved through the cooperation of a hydraulic cylinder, a telescopic rod and an electric cylinder. The mold is fixed by a forklift groove, which improves the pouring efficiency.
It achieves efficient delivery and paving of concrete, simplifies the process of taking and placing molds, and improves the production efficiency and adaptability of prefabricated parts.
Smart Images

Figure CN223369665U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of casting and shaping, and more specifically, relates to a concrete casting device. Background Art
[0002] During construction, prefabricated wall panels cast in concrete are often used for construction operations. Generally, a large number of casting molds are placed on the ground, and then mobile casting equipment is used to pour concrete into each mold. After the concrete is shaped, it can be demoulded and used. It can be loaded onto trucks with forklifts and other equipment for transportation.
[0003] Based on the above, the mobile casting method requires frequent replenishment of concrete, and it is inconvenient to flatten the concrete in the mold for efficient casting, making it difficult to produce prefabricated parts in large quantities. Utility Model Content
[0004] In order to solve the above technical problems, the utility model provides a concrete pouring device to solve the problem that the existing mobile pouring method proposed in the above background technology requires frequent replenishment of concrete, is inconvenient to flatten the concrete in the mold for efficient pouring, and is difficult to produce prefabricated parts in large quantities.
[0005] The purpose and effect of the concrete pouring device of the utility model are achieved by the following specific technical means:
[0006] A concrete pouring device comprises a pouring seat, wherein a partition structure is integrally provided in the middle of the top of the pouring seat, and the height of the left side of the partition structure is lower than that of the right side; a movable base is slidingly provided on the left side of the top of the pouring seat in cooperation with two sets of guide rails, a hydraulic cylinder and a telescopic rod are fixedly provided on the top of the movable base, and a landing platform is fixedly provided on the top of the hydraulic cylinder and the telescopic rod; a conveying channel for pouring is fixedly provided on the right side of the landing platform; side shaft frames are integrally provided on both sides of the top of the landing platform, a mixing drum frame is rotatably provided in the side shaft frames, and a mixing drum is rotatably provided in the mixing drum frame.
[0007] Furthermore, two sets of forklift grooves are opened on the right side of the casting seat, and a flange is integrally provided on the middle top of the right side of the casting seat. Cylinders are fixed outside the two sets of forklift grooves, and clamps are fixed on the telescopic ends of the cylinders. Two sets of guide rods are fixed outside the clamps, and the guide rods are slidably connected to the flange.
[0008] Furthermore, an input port is provided on the top left side of the conveying channel, and the upper side of the input port is a sloped structure; an output port is provided at the bottom of the conveying channel; a screw propeller is rotatably provided in the middle of the conveying channel, and a propulsion motor is fixedly provided on the left side of the conveying channel, and the propulsion motor is transmission-connected to the screw propeller.
[0009] Furthermore, a trapezoidal side edge is fixedly provided on the outside of the conveying channel, the sides of the trapezoidal side edge are inclined downward, and two sets of side auxiliary wheels are rotatably provided in the middle of the bottom of both sides of the trapezoidal side edge.
[0010] Furthermore, H-shaped wheels are provided on the front and rear sides of the mixing drum frame for rotation; two arc edges are integrally provided on the outside of the mixing drum, and the arc edges fit on the H-shaped wheels for rotation; a mixing motor is fixedly provided on the outside of the mixing drum frame, and the mixing motor is connected to the mixing drum for transmission.
[0011] Furthermore, an electric cylinder for controlling the angle is hingedly provided between the top left side of the lifting platform and the bottom right side of the mixing drum frame.
[0012] Compared with the prior art, the present invention has the following beneficial effects:
[0013] The device can move and pour concrete. The concrete can be transported in a transitional manner through the conveying channel. After pouring the concrete into the conveying channel, the propulsion motor is started to drive the spiral propeller to rotate, and the concrete is output from the output port to the mold. The mobile base is moved to carry out mobile pouring. The side auxiliary wheels are used to fit the top two sides of the mold to flatten the concrete, making the production convenient and quick.
[0014] A forklift slot is set up to facilitate the removal and placement of the mold. The mold is placed on the top right side of the casting seat by a forklift, and the cylinder is started to push the clamp block. The mold is temporarily fixed with the clamp block. The forklift slot can be used to accommodate the lifting part of the forklift, which provides convenience for removing and placing the mold.
[0015] The mixing drum stand provides convenient control functions for mixing and discharging. The mixing drum stand and the mixing drum can be raised by extending the electric cylinder to fill the mixing drum with concrete. The mixing motor is started to drive the mixing drum to rotate for continuous mixing. The electric cylinder is retracted to swing the right end of the mixing drum downward, and the concrete is poured out of the mixing drum and discharged into the conveying channel through the input port. The control is convenient and stable. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a three-dimensional structural diagram of the utility model.
[0017] Figure 2 It is a schematic diagram of the side tilt structure of the utility model.
[0018] Figure 3 It is a side structural schematic diagram of the utility model.
[0019] Figure 4 It is a structural schematic diagram of the utility model after the mold is removed.
[0020] Figure 5 It is a schematic diagram of the bottom structure of the conveying channel of the utility model.
[0021] In the figure, the corresponding relationship between component names and drawing numbers is as follows:
[0022] 1. Casting base; 101. Forklift slot; 102. Flange; 103. Cylinder; 104. Clamp; 105. Guide rod; 2. Mobile base; 201. Hydraulic cylinder; 202. Telescopic rod; 203. Lifting platform; 204. Side shaft frame; 3. Conveying channel; 301. Input port; 302. Output port; 303. Screw propeller; 304. Propulsion motor; 4. Trapezoidal side edge; 401. Side auxiliary wheel; 5. Mixing drum frame; 501. H-shaped wheel; 6. Mixing drum; 601. Arc edge; 7. Mixing motor; 8. Electric cylinder. DETAILED DESCRIPTION
[0023] The following is a further detailed description of the embodiments of the present invention in conjunction with the accompanying drawings and examples. Example
[0024] As attached Figure 1 To the attached Figure 5 As shown:
[0025] The utility model provides a concrete pouring device, comprising a pouring seat 1, wherein a partition structure is integrally provided in the middle of the top of the pouring seat 1, and the height of the left side of the partition structure is lower than that of the right side; a mobile base 2 is slidably provided on the left side of the top of the pouring seat 1 in cooperation with two sets of guide rails, a hydraulic cylinder 201 and a telescopic rod 202 are fixedly provided on the top of the mobile base 2, and a landing platform 203 is fixedly provided on the top of the hydraulic cylinder 201 and the telescopic rod 202; a conveying channel 3 for pouring is fixedly provided on the right side of the landing platform 203; side shaft frames 204 are integrally provided on both sides of the top of the landing platform 203, a mixing drum frame 5 is rotatably provided in the side shaft frames 204, and a mixing drum 6 is rotatably provided in the mixing drum frame 5.
[0026] Among them, two groups of forklift grooves 101 are opened on the right side of the casting seat 1, and a flange 102 is integrally provided on the middle top of the right side of the casting seat 1. Cylinders 103 are fixed outside the two groups of forklift grooves 101, and clamps 104 are fixed on the telescopic end of the cylinder 103. Two groups of guide rods 105 are fixed outside the clamping block 104, and the guide rods 105 are slidably connected to the flange 102.
[0027] Among them, an input port 301 is opened on the top left side of the conveying channel 3, and the upper side of the input port 301 is a slope structure; an output port 302 is opened at the bottom of the conveying channel 3; a screw propeller 303 is rotated in the middle of the conveying channel 3, and a propulsion motor 304 is fixedly set on the left side of the conveying channel 3, and the propulsion motor 304 is transmission-connected to the screw propeller 303.
[0028] A trapezoidal side edge 4 is fixedly provided on the outside of the conveying channel 3 , the sides of the trapezoidal side edge 4 are tilted downward, and two sets of side auxiliary wheels 401 are rotatably provided in the middle of the bottom of both sides of the trapezoidal side edge 4 .
[0029] Among them, H-shaped wheels 501 are arranged to rotate around the front and rear sides of the mixing drum frame 5; two arc edges 601 are integrally arranged on the outside of the mixing drum 6, and the arc edges 601 are fitted on the H-shaped wheel 501 for rotation; a stirring motor 7 is fixedly arranged outside the mixing drum frame 5, and the stirring motor 7 is connected to the stirring drum 6 for transmission.
[0030] An electric cylinder 8 for controlling the angle is hingedly provided between the top left side of the lifting platform 203 and the bottom right side of the mixing drum frame 5 .
[0031] like Figure 1-5 As shown, it is necessary to place the mold on the top right side of the casting seat 1 by a forklift in advance, start the cylinder 103 to push the clamping block 104, and use the clamping block 104 to temporarily fix the mold;
[0032] The forklift slot 101 can be used to accommodate the forklift shoe, which can be used to take the mold out;
[0033] Then, the electric cylinder 8 is extended to lift the mixing drum frame 5 and the mixing drum 6, and the mixing drum 6 is moved to the side of the casting base 1. An equal amount of concrete is filled into the mixing drum 6 according to the capacity of the mold, and then the mixing motor 7 is started to drive the mixing drum 6 to rotate for continuous mixing. A limit structure is also required on the side of the casting base 1 to limit the movement range of the movable base 2.
[0034] When guiding the material, the hydraulic cylinder 201 is retracted to lower the lifting platform 203 and the conveying channel 3, so that the side auxiliary wheels 401 are in contact with the upper edges of the two sides of the mold. The electric cylinder 8 is retracted to swing the right end of the mixing drum 6 downward, and the concrete is poured out of the mixing drum 6 and discharged into the conveying channel 3 through the input port 301. The conveying channel 3 is used for transition transportation.
[0035] Start the propulsion motor 304 to drive the screw propeller 303 to rotate, output the concrete from the output port 302 into the mold, and then manually move the mobile base 2 to carry out mobile pouring;
[0036] When the conveying channel 3 is moved, the side auxiliary wheels 401 are used to pave the concrete. Example
[0037] On the basis of Example 1, different prefabricated parts can be made by replacing the mold, which is convenient for manufacturing various prefabricated parts. The clamping block 104 is used for fixing, which can provide adaptability and can be adaptively fixed according to the width of the mold.
[0038] The movable base 2 can be electrically driven and provided with a lead screw or a linear motor for automatic movement and pouring.
[0039] The specific usage and function of this embodiment are as follows:
[0040] In the present invention, when in use, the mold is placed on the top right side of the casting seat 1 by a forklift, the cylinder 103 is activated to push the clamping block 104, and the clamping block 104 is used to temporarily fix the mold; the forklift slot 101 can be used to accommodate the lifting part of the forklift, making it convenient to take and place the mold;
[0041] Extend the electric cylinder 8 to lift the mixing drum frame 5 and the mixing drum 6, fill the mixing drum 6 with an equal amount of concrete according to the capacity of the mold, and then start the mixing motor 7 to drive the mixing drum 6 to rotate for continuous mixing;
[0042] The hydraulic cylinder 201 is retracted to lower the landing platform 203 and the conveying channel 3, so that the side auxiliary wheels 401 are placed above the two side edges of the mold. The electric cylinder 8 is retracted to swing the right end of the mixing drum 6 downward, and the concrete is poured out of the mixing drum 6 and discharged into the conveying channel 3 through the input port 301. The propulsion motor 304 is started to drive the screw propeller 303 to rotate, and the concrete is discharged from the output port 302 into the mold. The mobile base 2 is then manually moved to start mobile pouring. The concrete can be leveled using the side auxiliary wheels 401.
[0043] After the pouring is completed, the aforementioned components are reset, the mold can be taken out, and the mold can be placed outside to dry. This process can be repeated to cast a large number of prefabricated parts.
Claims
1. A concrete pouring device, characterized in that: include: A casting seat (1) is provided with an integral partition structure in the middle of the top of the casting seat (1), and the height of the left side of the partition structure is lower than that of the right side; a movable base (2) is provided on the left side of the top of the casting seat (1) in cooperation with two sets of guide rails for sliding, a hydraulic cylinder (201) and a telescopic rod (202) are fixedly provided on the top of the movable base (2), and a landing platform (203) is fixedly provided on the top of the hydraulic cylinder (201) and the telescopic rod (202); a conveying channel (3) for casting is fixedly provided on the right side of the landing platform (203); side shaft frames (204) are integrally provided on both sides of the top of the landing platform (203), a mixing drum frame (5) is rotatably provided in the side shaft frames (204), and a mixing drum (6) is rotatably provided in the mixing drum frame (5).
2. A concrete pouring device according to claim 1, characterized in that: Two groups of forklift grooves (101) are provided on the right side of the casting seat (1), and a flange (102) is integrally provided on the middle top of the right side of the casting seat (1). Cylinders (103) are fixedly provided outside the two groups of forklift grooves (101), and clamping blocks (104) are fixedly provided at the telescopic ends of the cylinders (103). Two groups of guide rods (105) are fixedly provided outside the clamping blocks (104), and the guide rods (105) are slidably connected to the flanges (102).
3. A concrete pouring device according to claim 1, characterized in that: An input port (301) is provided on the left side of the top of the conveying channel (3), and the upper side of the input port (301) is an inclined structure; an output port (302) is provided at the bottom of the conveying channel (3); a screw propeller (303) is rotatably provided in the middle of the conveying channel (3), and a propulsion motor (304) is fixedly provided on the left side of the conveying channel (3), and the propulsion motor (304) is transmission-connected to the screw propeller (303).
4. A concrete pouring device according to claim 1, characterized in that: A trapezoidal side edge (4) is fixedly provided on the outside of the conveying channel (3), the sides of the trapezoidal side edge (4) are tilted downward, and two sets of side auxiliary wheels (401) are rotatably provided in the middle of the bottom of both sides of the trapezoidal side edge (4).
5. A concrete pouring device according to claim 1, characterized in that: The front and rear sides of the mixing drum frame (5) are both provided with H-shaped wheels (501) that rotate around; the outside of the mixing drum (6) is provided with two arc edges (601) in an integrated manner, and the arc edges (601) are fitted on the H-shaped wheels (501) for rotation; a mixing motor (7) is fixedly provided on the outside of the mixing drum frame (5), and the mixing motor (7) is transmission-connected to the mixing drum (6).
6. A concrete pouring device according to claim 1, characterized in that: An electric cylinder (8) for controlling the angle is hingedly provided between the top left side of the lifting platform (203) and the bottom right side of the mixing drum frame (5).