Concrete vibration forming equipment

By introducing a damping interlayer and elastic connection structure into the concrete vibration equipment, the problems of high equipment noise and component collision were solved, achieving low-noise and high-efficiency production and extending the service life of the equipment.

CN223519872UActive Publication Date: 2025-11-07CHENGDU SONGLI BUILDING MATERIALS CO LTD
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Patent Information

Application Number
CN202422934281.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-11-07
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

Existing concrete vibration equipment is too noisy, has poor production efficiency, and is prone to rigid collisions between components during vibration, which shortens the equipment's service life.

Method used

The structure employs an elastic connection, including a shock-absorbing interlayer for a fixed base, first and second springs, a movable base plate, and a limiting cylinder. Through elastic connection and sliding fit, it reduces vibration transmission and rigid collisions, thereby improving production efficiency.

Benefits of technology

It reduces the impact of noise and vibration waves on the environment, avoids rigid collisions between components, extends the service life of the equipment, and improves the production efficiency of concrete components.

✦ Generated by Eureka AI based on patent content.

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Abstract

Concrete vibration forming equipment comprises a vibration base and a plurality of concrete member molds. The vibration base comprises a fixed base, a plurality of first springs, an attached vibrator and a movable bottom plate; one end of each first spring is arranged on the top face of the fixed base, and the other end of each first spring is connected to the bottom face of the movable bottom plate. The attached vibrator is arranged on the movable bottom plate; a plurality of limiting columns are further arranged on the top surface of the movable bottom plate; the concrete member mold comprises a placing frame, a plurality of limiting cylinders and a movable column; the plurality of limiting cylinders surround the placing frame; the movable column is slidably arranged in the limiting cylinder; the multiple limiting columns are correspondingly arranged in the multiple limiting cylinders in a sliding mode. The multiple concrete member molds are stacked up and down, and the movable columns on the concrete member molds are arranged in the adjacent corresponding limiting cylinders in a sliding mode. The problems that in the vibration process of existing equipment, noise is too large, the production efficiency of concrete members is poor, and when the equipment vibrates, rigid collision is likely to be generated between all the members, so that the service life of the equipment is shortened are solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of concrete preparation, and concretely relates to a concrete vibration forming equipment. BACKGROUND

[0002] In the production process of the concrete component, the concrete vibration mixing equipment plays a vital role. The traditional equipment often produces a large noise and vibration wave in the vibration process, which causes adverse effects on the construction personnel and the surrounding environment. Moreover, the number of the concrete components that can be prepared at the same time is relatively small, which makes the production efficiency poor. Furthermore, the existing equipment is prone to rigid collision between the components when vibrating, which causes damage to the parts and reduces the service life of the equipment. SUMMARY

[0003] The utility model discloses a concrete vibration forming equipment, which solves the problems of excessive noise in the vibration process of the existing equipment, poor production efficiency of the concrete component, and rigid collision between the components when the equipment is vibrating, thereby reducing the service life of the equipment.

[0004] The embodiment of the utility model realizes the following technical scheme:

[0005] A concrete vibration forming equipment comprises:

[0006] A vibration base comprises a fixed base, a plurality of first springs, an attached vibrator and a movable base plate. The fixed base is horizontally arranged. One end of each of the first springs is arranged on the top surface of the fixed base, and the other end is connected to the bottom surface of the movable base plate. The attached vibrator is arranged on the movable base plate. A plurality of limiting columns are arranged on the top surface of the movable base plate.

[0007] A plurality of concrete component molds comprise a placing frame, a plurality of limiting cylinders and movable columns. The limiting cylinders are vertically arranged around the outside of the placing frame. The movable columns are slidably arranged in the limiting cylinders. The limiting columns are slidably arranged in the limiting cylinders. The concrete component molds are stacked one above another, and the movable columns are slidably arranged in the corresponding limiting cylinders of the adjacent concrete component molds.

[0008] The fixed base comprises an outer base layer, a damping interlayer and an inner base layer. The top of the outer base layer is provided with a groove. The inner base layer is arranged in the groove, and the damping interlayer is arranged between the outer base layer and the inner base layer.

[0009] The damping interlayer is made of elastic material.

[0010] One end of each of the first springs is arranged on the top of the inner base layer.

[0011] The top edge of the placing frame extends outwardly with an extension plate; a plurality of limiting cylinders are arranged at the bottom of the extension plate, and the limiting cylinders are through the top of the extension plate.

[0012] A sliding groove is further arranged vertically on the side wall of the limiting cylinder; a supporting plate is further arranged horizontally and outwardly at the bottom of the movable column; and the supporting plate is arranged slidingly in the sliding groove.

[0013] A second spring is further arranged on the supporting plate; the second spring is arranged vertically beside the limiting cylinder, and one end of the second spring is connected to the top of the supporting plate, and the other end of the second spring is connected to the bottom of the extension plate.

[0014] The technical scheme of the embodiment of the utility model has at least the following advantages and beneficial effects:

[0015] The concrete component mold is placed in layers on the concrete vibration forming equipment, the simultaneous vibration of multiple concrete component molds is realized, the production efficiency of the concrete component is improved, the sliding cooperation of the movable column and the limiting cylinder and the elastic connection of the second spring avoid the rigid collision of the mold in the vibration process, the influence of noise and vibration wave on the surrounding environment is reduced, a shock-absorbing interlayer is arranged in the fixed base, and the shock-absorbing performance of the equipment is further improved, and the safety of the equipment and the surrounding environment is protected. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 is the overall structure schematic view of the utility model;

[0017] Figure 2 is the sectional view of A-A in the accompanying drawing; Figure 1

[0018] Figure 3 is the enlarged view of B in the accompanying drawing; Figure 2

[0019] Figure 4 is the structure schematic view of the vibration base;

[0020] Figure 5 is the structure schematic view of the concrete component mold.

[0021] In the drawing, 101 is the base outer layer, 102 is the shock-absorbing interlayer, 103 is the base inner layer, 1031 is the movable groove, 104 is the first spring, 105 is the movable bottom plate, 106 is the attached vibrator, 107 is the limiting column, 201 is the placing frame, 202 is the extension plate, 203 is the limiting cylinder, 204 is the sliding groove, 205 is the movable column, 206 is the supporting plate, and 207 is the second spring. DETAILED DESCRIPTION

[0022] ​​In order to make the purpose, technical scheme and advantages of the embodiments of the utility model clearer, the technical scheme in the embodiments of the utility model will be clearly and completely described in the following in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are part of the embodiments of the utility model, rather than all the embodiments. The components of the embodiments of the utility model described and shown in the drawings can be arranged and designed in various different configurations.

[0023] Therefore, the following detailed description of the embodiments of the utility model provided in the drawings is not intended to limit the scope of the claimed utility model, but only represents selected embodiments of the utility model. Based on the embodiments in the utility model, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of protection of the utility model.

[0024] As shown in Figure 1 A concrete vibration forming equipment, comprising a vibration base and a plurality of concrete component molds; the plurality of concrete component molds are placed in layers on the top surface of the vibration base, and a plurality of concrete components can be prepared at the same time, thereby greatly improving the production efficiency.

[0025] As shown in Figure 2 and 4 The vibration base comprises a fixed base, a plurality of first springs 104, an attached vibrator 106, a movable base plate 105 and a plurality of limiting columns 107; the fixed base is horizontally arranged; the bottom ends of the plurality of first springs 104 are arranged on the top surface of the fixed base, and the top ends are connected to the bottom surface of the movable base plate 105; when the movable base plate 105 vibrates, the elastic connection of the first springs 104 is adopted to reduce the vibration transmitted to the fixed base; the attached vibrator 106 is arranged on the bottom surface of the movable base plate 105 and is used to provide vibration; a plurality of limiting columns 107 are arranged on the top surface of the movable base plate 105 and are used to fix the concrete component molds; it should be noted that the attached vibrator 106 is prior art and is not the improvement of the present embodiment, and will not be described in detail here;

[0026] Specifically, the fixed base comprises a base outer layer 101, a damping interlayer 102 and a base inner layer 103; the top of the base outer layer 101 is provided with a groove; the base inner layer 103 is arranged in the groove, and the damping interlayer 102 is arranged between the base outer layer 101 and the base inner layer 103; the top surface of the base inner layer 103 is further provided with a movable groove 1031, and the attached vibrator 106 is located above the movable groove 1031; when the movable base plate 105 moves up and down, the attached vibrator 106 is provided with a larger movement range, thereby avoiding unnecessary contact between components; the bottom end of the first spring 104 is arranged at the top of the base inner layer 103;

[0027] More specifically, the damping interlayer 102 is made of elastic material, further reducing the vibration of the base outer layer 101 when the device is vibrating.

[0028] As shown in Figure 3 and 5 , the concrete component mold comprises a placing frame 201, an extension plate 202, a plurality of limiting cylinders 203 and a plurality of movable columns 205; the placing frame 201 is upwardly open, and the top edge thereof extends outwardly with the extension plate 202; the plurality of limiting cylinders 203 are arranged around the outer sidewall of the placing frame 201 and vertically arranged at the bottom of the extension plate 202; the limiting cylinders 203 are through the top of the extension plate 202; the movable columns 205 are slidingly arranged in the limiting cylinders 203; when a plurality of concrete component molds are stacked one above another, the movable columns 205 thereon are slidingly arranged in the corresponding limiting cylinders 203 of the adjacent concrete component molds;

[0029] Specifically, the two side walls of the limiting cylinder 203 are further vertically provided with sliding grooves 204; the bottom of the movable column 205 is further horizontally provided with support plates 206 extending to both sides, and the support plates 206 on both sides are slidingly arranged in the sliding grooves 204 on both sides; the support plates 206 are further provided with second springs 207 vertically arranged on both sides of the limiting cylinder 203; the lower end of the second spring 207 is connected to the top of the support plate 206, and the upper end thereof is connected to the bottom of the extension plate 202, so that when the concrete component molds are stacked, the adjacent two are in elastic contact, reducing the rigid collision;

[0030] More specifically, the limiting columns 107 on the movable bottom plate 105 are slidingly arranged in the limiting cylinders 203 respectively, so that the concrete component mold can be relatively fixed on the movable bottom plate 105.

[0031] The above is only a preferred embodiment of the present application and is not intended to limit the present application. For those skilled in the art, the present application can be variously changed and modified. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A concrete vibration forming apparatus, characterized by, The utility model relates to a concrete component mould vibration base, and belongs to the field of concrete component mould vibration base. The utility model discloses a concrete component mould vibration base, which comprises a fixed base, a plurality of first springs, an attached vibrator and a movable base plate. The fixed base is horizontally arranged.

2. A concrete vibration forming apparatus according to claim 1, wherein One end of each of the first springs is arranged on the top surface of the fixed base, and the other end is connected to the bottom surface of the movable base plate.

3. A concrete vibration forming apparatus according to claim 2, wherein The attached vibrator is arranged on the movable base plate.

4. A concrete vibration forming apparatus according to claim 2, wherein A plurality of limiting columns are further arranged on the top surface of the movable base plate.

5. The concrete vibration forming apparatus according to claim 1, wherein The utility model discloses a concrete component mould vibration base, which comprises a fixed base, a plurality of first springs, an attached vibrator and a movable base plate.

6. A concrete vibration forming apparatus according to claim 5, wherein The fixed base is horizontally arranged.

7. A concrete vibration forming apparatus according to claim 6, wherein One end of each of the first springs is arranged on the top surface of the fixed base, and the other end is connected to the bottom surface of the movable base plate. The attached vibrator is arranged on the movable base plate. A plurality of limiting columns are further arranged on the top surface of the movable base plate. The utility model discloses a concrete component mould vibration base, which comprises a fixed base, a plurality of first springs, an attached vibrator and a movable base plate. The fixed base is horizontally arranged. One end of each of the first springs is arranged on the top surface of the fixed base, and the other end is connected to the bottom surface of the movable base plate. The attached vibrator is arranged on the movable base plate. A plurality of limiting columns are further arranged on the top surface of the movable base plate. The utility model discloses a concrete component mould vibration base, which comprises a fixed base, a plurality of first springs, an attached vibrator and a movable base plate. The fixed base is horizontally arranged. One end of each of the first springs is arranged on the top surface of the fixed base, and the other end is connected to the bottom surface of the movable base plate. The attached vibrator is arranged on the movable base plate. A plurality of limiting columns are further arranged on the top surface of the movable base plate. The utility model discloses a concrete component mould vibration base, which comprises a fixed base, a plurality of first springs, an attached vibrator and a movable base plate. The fixed base is horizontally arranged. One end of each of the first springs is arranged on the top surface of the fixed base, and the other end is connected to the bottom surface of the movable base plate. The attached vibrator is arranged on the movable base plate. A plurality of limiting columns are further arranged on the top surface of the movable base plate. The utility model discloses a concrete component mould vibration base, which comprises a fixed base, a plurality of first springs, an attached vibrator and a movable base plate. The fixed base is horizontally arranged. One end of each of the first springs is arranged on the top surface of the fixed base, and the other end is connected to the bottom surface of the movable base plate. The attached vibrator is arranged on the movable base plate. A plurality of limiting columns are further arranged on the top surface of the movable base plate. The utility model discloses a concrete component mould vibration base, which comprises a fixed base, a plurality of first springs, an attached vibrator and a movable base plate. The fixed base is horizontally arranged. One end of each of the first springs is arranged on the top surface of the fixed base, and the other end is connected to the bottom surface of the movable base plate. The attached vibrator is arranged on the movable base plate. A plurality of limiting columns are further arranged on the top surface of the movable base plate. The utility model discloses a concrete component mould vibration base, which comprises a fixed base, a plurality of first springs, an attached vibrator and a movable base plate. The fixed base is horizontally arranged. One end of each of the first springs is arranged on the top surface of the fixed base, and the other end is connected to the bottom surface of the movable base plate. The attached vibrator is arranged on the movable base plate. A plurality of limiting columns are further arranged on the top surface of the movable base plate. The utility model discloses a concrete component mould vibration base, which comprises a fixed base, a plurality of first springs, an attached vibrator and a movable base plate. The fixed base is horizontally arranged. One end of each of the first springs is arranged on the top surface of the fixed base, and the other end is connected to the bottom surface of the movable base plate. The attached vibrator is arranged on the movable base plate. A plurality of limiting columns are further arranged on the top surface of the movable base plate. The utility model discloses a concrete component mould vibration base, which comprises a fixed base, a plurality of first springs, an attached vibrator and a movable base plate. The fixed base is horizontally arranged. One end of each of the first springs is arranged on the top surface of the fixed base, and the other end is connected to the bottom surface of the movable base plate. The attached vibrator is arranged on the movable base plate. A plurality of limiting columns are further arranged on the top surface of the movable base plate. The utility model discloses a concrete component mould vibration base, which comprises a fixed base, a plurality of first springs, an attached vibrator and a movable base plate. The fixed base is horizontally arranged. One end of each of the first springs is arranged on the top surface of the fixed base, and the other end is connected to the bottom surface of the movable base plate. The attached vibrator is arranged on the movable base plate. A plurality of limiting columns are further arranged on the top surface of the movable base plate. The utility model discloses a concrete component mould vibration base, which comprises a fixed base, a plurality of first springs, an attached vibrator and a movable base plate. The fixed base is horizontally arranged. One end of each of the first springs is arranged on the top surface of the fixed base, and the other end is connected to the bottom surface of the movable base plate. The attached vibrator is arranged on the movable base plate. A plurality of limiting columns are further arranged on the top surface of the movable base plate. The utility model discloses a concrete component mould vibration base, which comprises a fixed base, a plurality of first springs, an attached vibrator and a movable base plate. The fixed base is horizontally arranged. One end of each of the first springs is arranged on the top surface of the fixed base, and the other end is connected to the bottom surface of the movable base plate. The attached vibrator is arranged on the movable base plate. A plurality of limiting columns are further arranged on the top surface of the movable base plate. The utility model discloses a concrete component mould vibration base, which comprises a fixed base, a plurality of first springs, an attached vibrator and a movable base plate. The fixed base is horizontally arranged. One end of each of the first springs is arranged on the top surface of the fixed base, and the other end is connected to the bottom surface of the movable base plate. The attached vibrator is arranged on the movable base plate. A plurality of limiting columns are further arranged on the top surface of the movable base plate. The utility model discloses a concrete component mould vibration base, which comprises a fixed base, a plurality of first springs, an attached vibrator and a movable base plate. The fixed base is horizontally arranged. One end of each of the first springs is arranged on the top surface of the fixed base, and the other end is connected to the bottom surface of the movable base plate. The attached vibrator is arranged on the movable base plate. A plurality of limiting columns are further arranged on the top surface of the movable base plate. The utility model discloses a concrete component mould vibration base, which comprises a fixed base, a plurality of first springs, an attached vibrator and a movable base plate. The fixed base is horizontally arranged. One end of each of the first springs is arranged on the top surface of the fixed base, and the other end is connected to the bottom surface of the movable base plate. The attached vibrator is arranged on the movable base plate. A plurality of limiting columns are further arranged on the top surface of the movable base plate. The utility model discloses a concrete component mould vibration base, which comprises a fixed base, a plurality of first springs, an attached vibrator and a movable base plate. The fixed base is horizontally arranged. One end of each of the first springs is arranged on the top surface of the fixed base, and the other end is connected to the bottom surface of the movable base plate. The attached vibrator is arranged on the movable base plate. A plurality of limiting columns are further arranged on the top surface of the movable base plate. The utility model discloses a concrete component mould vibration base, which comprises a fixed base, a plurality of first springs, an attached vibrator and a movable base plate. The fixed base is horizontally arranged. One end of each of the first springs is arranged on the top surface of the fixed base, and the other end is connected to the bottom surface of the movable base plate. The attached vibrator is arranged on the movable base plate. A plurality of limiting columns are further arranged on the top surface of the movable base plate. The utility model discloses a concrete component mould vibration base, which comprises a fixed base, a plurality of first springs, an attached vibrator and a movable base plate. The fixed base is horizontally arranged. One end of each of the first springs is arranged on the top surface of the fixed base, and the other end is connected to the bottom surface of the movable base plate. The attached vibrator is arranged on the movable base plate. A plurality of limiting columns are further arranged on the top surface of the movable base plate. The utility model discloses a concrete component mould vibration base, which comprises a fixed base, a plurality of first springs, an attached vibrator and a movable base plate. The fixed base is horizontally arranged. One end of each of the first springs