Multifunctional pouring equipment

By designing multifunctional pouring equipment and combining automated operation of vibration and smoothing parts, the problem of long concrete pouring time has been solved, and rapid construction has been achieved.

CN223660565UActive Publication Date: 2025-12-12MANGSHI WING LUNG IRON ALLOY CO LTD
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Patent Information

Application Number
CN202423154814.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-12-12
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

In current building construction, concrete pouring requires manual vibration followed by smoothing, which results in a long construction time.

Method used

Design a multi-functional concrete pouring device, including a vibration section and a smoothing section. The device uses an electric push rod and a hanger to drive the vibration damping plate and the support plate to perform automated vibration and smoothing operations. Combined with a mobile frame, it enables rapid concrete pouring.

Benefits of technology

The process of concrete pouring has been automated, which has shortened construction time and improved construction efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides multifunctional pouring equipment, and belongs to the technical field of building construction. The multifunctional pouring equipment comprises a movable frame, a vibration part and a trowelling part. The top end of the first hanging frame is connected with the output rod end of the first electric push rod, the end of the damping plate is connected with the bottom end of the first hanging frame, a vibration motor is installed on the damping plate, and stirring rods distributed at equal intervals are arranged at the bottom of the damping plate. The top end of the second hanging frame is connected with the output rod end of the second electric push rod, and the bottom end of the second hanging frame is connected with the end of the supporting plate. A first electric push rod in the vibration part drives a damping plate to move downwards through a first hanging frame, and a vibration motor drives the damping plate and a stirring rod at the bottom to vibrate concrete in the mold. And then a second electric push rod in the trowelling part drives a supporting plate to move downwards through a second hanging frame, a scraper at the bottom of the supporting plate conducts trowelling operation on the vibrated concrete, and rapid completion of pouring operation can be achieved.
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Description

Technical Field

[0001] This utility model relates to the field of building construction technology, and more specifically, to a multifunctional pouring equipment. Background Technology

[0002] During the concrete pouring process for building pavements, the concrete inside the formwork needs to be manually vibrated with a vibrator to improve its uniformity. After the concrete is vibrated manually, it is then smoothed using a trowel. These manual vibration and smoothing operations need to be performed separately, resulting in a lengthy overall concrete pouring time. Utility Model Content

[0003] To overcome the above shortcomings, this utility model provides a multi-functional pouring device, which aims to improve the time-consuming problem of the existing concrete pouring operation method that requires manual vibration and smoothing.

[0004] This utility model is implemented as follows:

[0005] This utility model provides a multi-functional pouring equipment, including a mobile frame, a vibrating part, and a smoothing part.

[0006] The vibrating part includes a first electric push rod, a first bracket, and a shock-absorbing plate. Two sets of the first electric push rods are respectively installed on both sides of the mobile frame. The top of the first bracket is connected to the output rod end of the first electric push rod. The end of the shock-absorbing plate is connected to the bottom of the first bracket. A vibration motor is installed on the shock-absorbing plate, and stirring rods are evenly distributed at the bottom of the shock-absorbing plate.

[0007] The smoothing part includes a second electric push rod, a second bracket, and a tray. Two sets of the second electric push rods are respectively installed on both sides of the mobile frame. The top of the second bracket is connected to the output rod end of the second electric push rod, and the bottom of the second bracket is connected to the end of the tray. A scraper is provided at the bottom of the tray.

[0008] In one embodiment of this utility model, the mobile frame includes side frames, wheels, and a reduction motor. The vibration part and the smoothing part are installed between two sets of side frames. The wheels are rotatably disposed with respect to the side frames. The reduction motor is installed inside the side frames to drive the wheels to rotate.

[0009] In one embodiment of the present invention, the mobile frame further includes a crossbeam connected to the ends of the two side frames.

[0010] In one embodiment of this utility model, the mobile frame further includes a protective cover, which is located outside the wheel and connected to the side frame.

[0011] In one embodiment of this utility model, the shock-absorbing plate includes a beam plate, a cross plate, and a buffer. The end of the beam plate is connected to the bottom end of the first hanger. The buffer connects the cross plate and the beam plate. The vibration motor is installed above the cross plate. The stirring rod is installed at the bottom of the cross plate and moves through the beam plate.

[0012] In one embodiment of this utility model, the beam plate is provided with a through opening, and the stirring rod moves through the through opening.

[0013] In one embodiment of this utility model, the vibration part further includes a guide plate, which is disposed on the side of the beam away from the smoothing part.

[0014] In one embodiment of this utility model, the guide plate includes a V-shaped plate and a back plate, the back plate is fixedly disposed with the beam plate, and the V-shaped plate is disposed on the front side of the V-shaped plate.

[0015] The beneficial effects of this utility model are as follows: This utility model provides a multi-functional pouring device through the above design. In the vibrating section, the first electric push rod drives the damping plate downwards via the first bracket. The vibrating motor drives the damping plate and the bottom mixing rod to vibrate the concrete inside the mold. Then, in the smoothing section, the second electric push rod drives the pallet downwards via the second bracket. The scraper at the bottom of the pallet smooths the vibrated concrete, enabling rapid completion of the pouring operation. Attached Figure Description

[0016] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained from these drawings without creative effort.

[0017] Figure 1 This is a schematic diagram of the structure of the multifunctional casting equipment provided in this utility model embodiment;

[0018] Figure 2 A schematic diagram of the vibration component structure provided for an embodiment of this utility model;

[0019] Figure 3 A schematic diagram of the flow guide plate structure provided for an embodiment of this utility model;

[0020] Figure 4 A schematic diagram of the smoothing portion provided for an embodiment of this utility model.

[0021] In the diagram: 10-Mobile frame; 110-Side frame; 120-Wheel; 130-Gear motor; 140-Crossbeam; 150-Guard cover; 20-Vibration part; 210-First electric push rod; 220-First bracket; 230-Shock absorber plate; 231-Beam plate; 232-Cross plate; 233-Buffer; 234-Opening; 240-Vibration motor; 250-Stirring rod; 260-Guide plate; 261-V-shaped plate; 262-Back plate; 30-Smoothing part; 310-Second electric push rod; 320-Second bracket; 330-Panel; 340-Scraper. Detailed Implementation

[0022] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0023] Example

[0024] Please see Figures 1-4 This utility model provides a multi-functional pouring equipment, including a mobile frame 10, a vibrating part 20 and a smoothing part 30.

[0025] The vibrating part 20 and the smoothing part 30 are installed above the mobile frame 10. The concrete poured inside the template is first vibrated by the vibrating part 20 and then smoothed by the smoothing part 30, which allows for rapid construction processing of the poured concrete.

[0026] Please see Figure 1 , Figure 2 and Figure 4 The vibrating part 20 includes a first electric push rod 210, a first bracket 220, and a shock-absorbing plate 230. Two sets of first electric push rods 210 are respectively installed on both sides of the mobile frame 10, and the top of the first bracket 220 is connected to the output rod end of the first electric push rod 210. The end of the shock-absorbing plate 230 is connected to the bottom of the first bracket 220, a vibration motor 240 is installed on the shock-absorbing plate 230, and equidistantly distributed stirring rods 250 are provided at the bottom of the shock-absorbing plate 230. The smoothing part 30 includes a second electric push rod 310, a second bracket 320, and a tray 330. Two sets of second electric push rods 310 are respectively installed on both sides of the mobile frame 10, the top of the second bracket 320 is connected to the output rod end of the second electric push rod 310, the bottom of the second bracket 320 is connected to the end of the tray 330, and a scraper 340 is provided at the bottom of the tray 330.

[0027] While concrete is being poured into the formwork, the moving frame 10 moves the vibrating section 20 and the smoothing section 30 on it. The first electric push rod 210 in the vibrating section 20 drives the damping plate 230 downwards via the first bracket 220, and the vibration motor 240 drives the damping plate 230 and the bottom mixing rod 250 to vibrate the concrete inside the mold. Then, the second electric push rod 310 in the smoothing section 30 drives the pallet 330 downwards via the second bracket 320, and the scraper 340 at the bottom of the pallet 330 smooths the vibrated concrete, enabling rapid completion of the pouring operation.

[0028] For specific settings, please refer to Figure 1 The mobile frame 10 includes side frames 110, wheels 120, and a reduction motor 130. A vibration section 20 and a smoothing section 30 are installed between two sets of side frames 110. The wheels 120 are rotatably mounted to the side frames 110. The reduction motor 130 is installed inside the side frames 110 to drive the wheels 120 to rotate. The reduction motor 130 drives the wheels 120 to rotate, thereby causing the entire mobile frame 10 to move above the template.

[0029] Furthermore, the mobile frame 10 also includes a crossbeam 140 connected to the ends of the two side frames 110. The crossbeam 140 is provided to reinforce the support of the side frames 110. The mobile frame 10 also includes a guard 150 located outside the wheels 120 and connected to the side frames 110. The guard 150 is used to protect the wheels 120.

[0030] In the specific implementation described above, please refer to Figure 2 The damping plate 230 includes a beam plate 231, a cross plate 232, and a buffer 233. The end of the beam plate 231 is connected to the bottom of the first hanger 220. The buffer 233 connects the cross plate 232 and the beam plate 231. A vibration motor 240 is mounted above the cross plate 232, and a stirring rod 250 is mounted at the bottom of the cross plate 232 and movably passes through the beam plate 231. A through-hole 234 is provided on the beam plate 231, through which the stirring rod 250 movably passes. The buffer 233 between the beam plate 231 and the cross plate 232 serves a buffering function.

[0031] For details, please refer to Figure 2 and Figure 3 The vibrating section 20 also includes a guide plate 260, which is disposed on the side of the beam slab 231 away from the smoothing section 30. The guide plate 260 includes a V-shaped plate 261 and a back plate 262. The back plate 262 is fixedly disposed with the beam slab 231, and the V-shaped plate 261 is disposed in front of the V-shaped plate 261. The concrete poured at a higher position inside the formwork can be pre-smoothed by the moving V-shaped plate 261, and the subsequent vibration section 20 can quickly disperse the concrete poured inside the formwork.

[0032] It should be noted that the specific models and specifications of the geared motor 130 and the vibration motor 240 need to be selected and determined based on the actual specifications of the device. The specific selection calculation method adopts existing technology in this field, and therefore will not be described in detail. The power supply and principle of the geared motor 130 and the vibration motor 240 are clear to those skilled in the art, and will not be described in detail here.

[0033] The working principle of this multi-functional pouring equipment is as follows: During use, while concrete is being poured inside the formwork, the moving frame 10 moves the vibrating section 20 and the smoothing section 30 on it. The first electric push rod 210 in the vibrating section 20 drives the damping plate 230 downwards via the first bracket 220, and the vibration motor 240 drives the damping plate 230 and the bottom mixing rod 250 to vibrate the concrete inside the mold. Then, the second electric push rod 310 in the smoothing section 30 drives the pallet 330 downwards via the second bracket 320, and the scraper 340 at the bottom of the pallet 330 smooths the vibrated concrete, enabling rapid completion of the pouring operation.

[0034] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A multi-functional placement apparatus characterized by comprising: Comprising The moving frame (10) and the vibrating part (20), the vibrating part (20) comprises the first electric push rod (210), the first hanger (220) and the damping plate (230), two groups of the first electric push rod (210) are respectively installed on both sides of the moving frame (10), the top of the first hanger (220) is connected with the output rod end of the first electric push rod (210), the end of the damping plate (230) is connected with the bottom of the first hanger (220), the vibrating motor (240) is installed on the damping plate (230), and the bottom of the damping plate (230) is provided with the stirring rod (250) distributed at equal intervals. The troweling part (30) comprises the second electric push rod (310), the second hanger (320) and the supporting plate (330), two groups of the second electric push rod (310) are respectively installed on both sides of the moving frame (10), the top of the second hanger (320) is connected with the output rod end of the second electric push rod (310), the bottom of the second hanger (320) is connected with the end of the supporting plate (330), and the bottom of the supporting plate (330) is provided with the scraper (340).

2. A multi-functional placing apparatus according to claim 1, wherein The moving frame (10) comprises the side frame (110), the wheel (120) and the speed reducer motor (130), the vibrating part (20) and the troweling part (30) are installed between two groups of the side frame (110), the wheel (120) is rotationally arranged with the side frame (110), and the speed reducer motor (130) is installed on the inner side of the side frame (110) to drive the wheel (120) to rotate.

3. A multi-functional placing apparatus according to claim 2, wherein The moving frame (10) further comprises the cross beam (140), and the cross beam (140) is connected to the end portions of the two side frames (110).

4. A multi-functional placing apparatus according to claim 2, wherein The moving frame (10) further comprises the protective cover (150), and the protective cover (150) is connected to the side frame (110) outside the wheel (120).

5. The multi-functional formwork apparatus according to claim 1, wherein The damping plate (230) comprises the beam plate (231), the cross plate (232) and the buffer (233), the end of the beam plate (231) is connected with the bottom of the first hanger (220), the buffer (233) connects the cross plate (232) and the beam plate (231), the vibrating motor (240) is installed above the cross plate (232), and the stirring rod (250) is installed on the bottom of the cross plate (232) and movably penetrates through the beam plate (231).

6. A multi-functional formwork apparatus according to claim 5, wherein The beam plate (231) is provided with the through opening (234), and the stirring rod (250) movably penetrates through the through opening (234).

7. A multi-functional formwork apparatus according to claim 5, wherein The vibrating part (20) further comprises the flow guide plate (260), and the flow guide plate (260) is arranged on the side of the beam plate (231) away from the troweling part (30).

8. A multi-functional formwork apparatus according to claim 7, wherein The flow guide plate (260) comprises the V-shaped plate (261) and the back plate (262), the back plate (262) is fixedly arranged with the beam plate (231), and the V-shaped plate (261) is arranged on the front side of the V-shaped plate (261).