Concrete conveying and distributing device for duct piece production
By introducing a translation plate assembly and a rotatable cutting head assembly into the concrete casting cloth control device, uniform pouring in the pipe sheet mold is achieved, and the problem of uneven pouring in the prior art is solved.
Patent Information
- Application Number
- CN202421414988.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-20
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-06-20
AI Technical Summary
The existing concrete casting fabric control device is difficult to achieve uniform pouring of concrete in the pipe sheet mold, especially when the inclined plate is inclined, the concrete may slide directly into the mold, resulting in uneven pouring.
A pipe sheet production concrete conveying cloth device is designed, including a translation plate assembly and a rotatable cutting head assembly. While the translation plate assembly moves in the length direction of the mold, it drives the cutting head assembly to rotate towards the width direction of the mold, thereby achieving uniform casting of every corner of the mold.
Through the use of this device, it is possible to effectively realize uniform pouring of concrete in the pipe sheet mold, solving the problem of uneven pouring in the prior art.
Smart Images

Figure CN222904450U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of segment production, and particularly refers to a concrete conveying and distributing device for segment production. Background Technique
[0002] The concrete pouring and distributing control device is a device for controlling concrete pouring. In the current building production process, concrete is widely used, so the distribution and use of concrete are increasingly emphasized. With the continuous development of technology, the manufacturing process requirements for the concrete pouring and distributing control device are also getting higher and higher. The existing concrete pouring and distributing control device usually makes the concrete evenly fall into the mold by setting a filtering and shunting device. However, the concrete coming out of the discharge port directly pours into the mold, making it difficult to evenly lay and pour the concrete into the mold.
[0003] The prior art 202320565090.3 discloses a concrete pouring and distributing device for segment production. Although it achieves partial uniformity, when ejecting by the spring, due to the inclination of the inclined plate itself, some of the concrete on the inclined plate may directly slide into the mold, resulting in unevenness after ejection. Content of the Utility Model
[0004] The purpose of the utility model is to provide a concrete conveying and distributing device for segment production to overcome the deficiencies of the prior art.
[0005] To achieve the above purpose, the technical solution adopted by the utility model is: a concrete conveying and distributing device for segment production, which includes two parallel support beams, multiple support legs arranged at the bottom of the two support beams for support, two slide rails respectively arranged on the tops of the two support beams, a translation plate assembly with driving ends slidably arranged on the two slide rails and located between the tops of the two support beams, a feeding hopper arranged in the middle of the top surface of the translation plate assembly and with the discharging end penetrating through the translation plate assembly, and a discharging head assembly arranged at the bottom of the feeding hopper and rotatable; the driving end of the translation plate assembly can drive the translation plate assembly to move and at the same time drive the discharging end of the discharging head assembly to rotate; the rotation direction of the discharging head assembly is perpendicular to the translation direction of the translation plate assembly.
[0006] Preferably, the translation plate assembly includes a driving plate arranged between the tops of the two support beams, four pulleys respectively arranged at both ends and on both sides of the driving plate for rolling on the two slide rails, and a driving motor arranged on the top surface of one end of the driving plate for driving the driving shaft between the two pulleys at the corresponding end to rotate.
[0007] Preferably, the blanking head assembly includes a conveying hose with its feeding end communicating with the discharging end at the bottom of the blanking hopper, a blanking pipe with its feeding end connected to the discharging end of the conveying hose, a first mounting plate arranged on one side at the bottom of the blanking hopper, a first driving rod with one end passing through the first mounting plate and connecting to one side of the blanking pipe and the other end extending out of one side of the blanking hopper, a second mounting plate arranged on the top surface of the driving plate between the blanking hopper and the driving motor, a second driving rod with one end passing through the second mounting plate and horizontally rotatably arranged on the second mounting plate, a driving bevel gear arranged on the output end of the driving motor, and a driven bevel gear arranged on the end of the second driving rod facing the driving motor and meshing with the driving bevel gear; the other end of the second driving rod drives the other end of the first driving rod to rotate through a driving belt.
[0008] Preferably, the blanking pipe is located on one side of the conveying hose; the discharging end of the conveying hose communicates with one side at the upper end of the blanking pipe.
[0009] Preferably, a wire mesh is arranged in the blanking hopper; the wire mesh is slidably arranged in the blanking hopper and one end passes through one side of the blanking hopper; a handle is arranged on the side of the blanking hopper where the wire mesh passes through.
[0010] Preferably, rear limit blocks are arranged at both ends of the two support beams.
[0011] Due to the application of the above technical solution, the present utility model has the following advantages compared with the prior art:
[0012] While the present utility model drives the blanking hopper to move along the length direction of the segment mold through the translation plate assembly, it can also drive the blanking head assembly to rotate in the width direction of the segment mold, so as to effectively pour concrete evenly into each corner of the segment mold. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] The following further illustrates the technical solution of the present utility model with reference to the drawings:
[0014] Att Figure 1 is the overall structural schematic diagram of the segment production concrete conveying and distributing device of the present utility model;
[0015] Att Figure 2 is the side structural schematic diagram of the segment production concrete conveying and distributing device of the present utility model;
[0016] Att Figure 3 is the end face structural schematic diagram of the segment production concrete conveying and distributing device of the present utility model.
[0017] Wherein: 1. Support beam; 2. Support leg; 3. Slide rail; 4. Translation plate assembly; 41. Driving plate; 42. Pulley; 43. Driving motor; 5. Hopper; 6. Discharge head assembly; 61. Delivery hose; 62. Discharge pipe; 63. First mounting plate; 64. First driving rod; 65. Second mounting plate; 66. Second driving rod; 67. Active bevel gear; 68. Driven bevel gear; 7. Wire mesh; 8. Handle; 9. Limit block. Detailed implementation mode
[0018] The present utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0019] Appendix Figures 1-3 The concrete conveying and distributing device for segment production described in the present utility model includes two parallel support beams 1, multiple support legs 2 arranged at the bottoms of the two support beams 1 for support, two slide rails 3 respectively arranged at the tops of the two support beams 1, a translation plate assembly 4 with its driving ends slidably arranged on the two slide rails 3 and located between the tops of the two support beams 1, a hopper 5 arranged in the middle of the top surface of the translation plate assembly 4 and with its discharging end penetrating the translation plate assembly 4, and a rotatable discharge head assembly 6 arranged at the bottom of the hopper 5; while the driving ends of the translation plate assembly 4 drive the translation plate assembly 4 to move, they can also drive the discharging end of the discharge head assembly 6 to rotate; the rotation direction of the discharge head assembly 6 is perpendicular to the translation direction of the translation plate assembly 4; the translation plate assembly 4 includes a driving plate 41 arranged between the tops of the two support beams 1, four pulleys 42 respectively arranged at both ends and on both sides of the driving plate 41 for rolling on the two slide rails 3, and a driving motor 43 arranged on the top surface of one end of the driving plate 41 for driving the rotation of the drive shaft between the two pulleys 42 at the corresponding end; the discharge head assembly 6 includes a delivery hose 61 with its feeding end communicated with the discharging end of the bottom of the hopper 5, a discharge pipe 62 with its feeding end connected to the discharging end of the delivery hose 61, a first mounting plate 63 arranged on one side of the bottom of the hopper 5, a first driving rod 64 with one end penetrating the first mounting plate 63 and connected to one side of the discharge pipe 62 and the other end extending out of one side of the hopper 5, a second mounting plate 65 arranged on the top surface of the driving plate 41 between the hopper 5 and the driving motor 43, a second driving rod 66 with one end penetrating the second mounting plate 65 and horizontally rotatably arranged on the second mounting plate 65, an active bevel gear 67 arranged on the output end of the driving motor 43, and a driven bevel gear 68 arranged on the end of the second driving rod 66 facing the driving motor 43 and meshing with the active bevel gear 67; the other end of the second driving rod 66 drives the rotation of the other end of the first driving rod 64 through a drive belt.
[0020] Furthermore, the discharge pipe 62 is located on one side of the delivery hose 61; the discharging end of the delivery hose 61 is communicated with one side of the upper end of the discharge pipe 62, which is convenient for rotation.
[0021] Further, a wire mesh 7 is arranged in the blanking hopper 5; the wire mesh 7 is slidably arranged in the blanking hopper 5 and one end thereof penetrates through one side of the blanking hopper 5; a handle 8 is arranged on the side of the wire mesh 7 penetrating through the blanking hopper 5 to filter large particles in the concrete.
[0022] Further, rear limit blocks 9 are arranged at both ends of the two support beams 1 to play a limiting role.
[0023] During use: when it is necessary to inject concrete into the segment mold, first move the segment mold between the bottoms of the two support beams 1, then pour the concrete into the blanking hopper 5. After the concrete passes through the wire mesh 7, the large particles in the concrete are blocked, and then enter the hose through the discharge end of the blanking hopper 5, then enter the blanking pipe 62 from the hose, and fall into the segment mold below from the blanking pipe 62. At the same time, start the driving motor 43. The driving motor 43 drives the drive shaft between the two pulleys 42 to rotate through the drive belt, thereby driving the two pulleys 42 to rotate on the two slide rails 3. Subsequently, the pulley 42 drives the drive plate 41 to move along the length direction of the segment mold. At the same time, the driving motor 43 also drives the active bevel gear 67 to rotate. Immediately afterwards, the active bevel gear 67 drives the driven bevel gear 68 to rotate, then the driven bevel gear 68 drives the second driving rod 66 to rotate, and then the second driving rod 66 drives the first driving rod 64 to rotate through the drive belt. Immediately afterwards, the first driving rod 64 drives the blanking pipe 62 to rotate in the width direction of the segment mold, so as to evenly pour the concrete in the length direction of the segment mold and also evenly pour the concrete in the width direction of the segment mold. When the drive plate 41 moves to one end of the support beam 1, the driving motor 43 starts to reverse to drive the drive plate 41 to move towards the other end of the support beam 1. At the same time, the blanking pipe 62 still rotates for pouring. This process is repeated until the segment mold is completely poured.
[0024] The above is only a specific application example of the present invention, which does not constitute any limitation to the protection scope of the present invention. Any technical solutions formed by equivalent transformation or equivalent substitution fall within the scope of the rights protection of the present invention.
Claims
1. A concrete conveying and distributing device for segment production, characterized in that: It includes two support beams parallel to each other, a plurality of support legs arranged at the bottom of the two support beams for support, two slide rails respectively arranged at the top of the two support beams, a translation plate assembly whose driving ends are respectively slidably arranged on the two slide rails and located between the tops of the two support beams, a discharge hopper arranged in the middle of the top surface of the translation plate assembly and whose discharge end passes through the translation plate assembly, and a discharge head assembly arranged at the bottom of the discharge hopper and capable of rotation; the drive end of the translation plate assembly can drive the translation plate assembly to move and can also drive the discharge end of the discharge head assembly to rotate; the rotation direction of the discharge head assembly is perpendicular to the translation direction of the translation plate assembly.
2. The concrete conveying and distributing device for segment production according to claim 1 is characterized in that: The translation plate assembly includes a driving plate arranged between the tops of two support beams, four pulleys respectively arranged at both ends and both sides of the driving plate and used for rolling on two slide rails, and a driving motor arranged on the top surface of one end of the driving plate and used for driving a driving belt to drive the driving shaft between the two pulleys at the corresponding end to rotate.
3. The concrete conveying and distributing device for segment production according to claim 1 is characterized in that: The discharge head assembly includes a conveying hose whose feed end is connected to the discharge end at the bottom of the lower hopper, a discharge pipe connected with the feed end and the discharge end of the conveying hose, a first mounting plate arranged on one side of the bottom of the lower hopper, a first driving rod with one end passing through the first mounting plate and connected to one side of the discharge pipe and the other end extending out of one side of the lower hopper, a second mounting plate arranged on the top surface of the driving plate and located between the lower hopper and the driving motor, a second driving rod with one end passing through the second mounting plate and horizontally rotatably arranged on the second mounting plate, a driving bevel gear arranged on the output end of the driving motor, and a driven bevel gear arranged on the end of the second driving rod facing the driving motor and meshing with the driving bevel gear; the other end of the second driving rod drives the other end of the first driving rod to rotate through a driving belt.
4. The concrete conveying and distributing device for segment production according to claim 3 is characterized in that: The feed pipe is located at one side of the conveying hose; the discharge end of the conveying hose is connected to one side of the upper end of the feed pipe.
5. The concrete conveying and distributing device for segment production according to claim 1 is characterized in that: A steel wire mesh is arranged in the lower hopper; the steel wire mesh is slidably arranged in the lower hopper and one end of the steel wire mesh passes through one side of the lower hopper; a handle is arranged on the side of the steel wire mesh passing through the lower hopper.
6. The concrete conveying and distributing device for segment production according to claim 1 is characterized in that: Rear limit blocks are arranged at both ends of the two support beams.
Citation Information
Patent Citations
Concrete pouring and distributing device for duct piece production
CN219748438U