Mold conveying and exhausting vibration line

By using buffer springs in the mold conveying exhaust vibration line to reduce the collision between the vibrating mold and the vibration table, the problem of noise generated during casting and forming concrete objects is solved, and a lower noise construction environment and convenient object removal is achieved.

CN222886114UActive Publication Date: 2025-05-20CHINA RAILWAY NO 5 ENG GRP NO 6 ENG CO LTD +1
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Patent Information

Application Number
CN202421362439.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-14
Publication Date
2025-05-20
Estimated Expiration
2034-06-14

AI Technical Summary

Technical Problem

In civil construction, the problem of noise generated by the vibration mold to eliminate air bubbles during casting and forming concrete objects.

Method used

A mold conveying exhaust vibration line is designed, including a vibrating table, a rubber plate and a buffer spring. The direct collision between the vibrating mold and the vibration table is reduced through the buffer spring and noise is reduced.

Benefits of technology

It effectively reduces the collision noise between the vibration mold and the vibration table, improves the noise control effect of construction, and facilitates the removal of concrete objects.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222886114U_ABST
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Abstract

The utility model discloses a mold conveying and exhausting vibration line which comprises a vibration table body, a containing groove is formed in the top of the vibration table body, a rubber plate is arranged in the containing groove, and a plurality of first buffer springs are arranged between the rubber plate and the vibration table body. A plurality of vibration molds are arranged above the rubber plate, a first connecting plate is arranged on the outer side wall of each vibration mold, a reciprocating type air cylinder is arranged between each first connecting plate and the vibration table body, the fixed end of each reciprocating type air cylinder is connected with the vibration table body, and the power end of each reciprocating type air cylinder is connected with the corresponding first connecting plate; supporting legs are arranged at the four corners of the bottom of the vibration table body. The vibration table body and the rubber plate are connected through the first buffer springs, the vibration mold can collide with the rubber plate when the vibration mold is vibrated, the first buffer springs play a buffering role, noise generated by direct collision between the vibration mold and the vibration table body is reduced, and the vibration table is more practical.
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Description

Technical Field

[0001] The utility model relates to the technical field of civil engineering construction, in particular to a die conveying exhaust vibrating line. Background Art

[0002] Civil engineering, namely civil and building engineering, is the general term for civil engineering and building engineering. It is an engineering discipline that constructs various facilities and places for human activities such as living, production, and protection, covering facilities and places within the scope of buildings, roads, railways, airports, bridges, water conservancy, ports, tunnels, water supply and drainage, protection, etc. in various fields above and below the ground, on land, on water, and underwater. It includes both various technical activities such as surveying, design, construction, maintenance, and management during the engineering construction process, and the materials, equipment, and items consumed during the construction process.

[0003] During the existing civil engineering construction, some objects need to be formed by pouring in a mold. During the production process, after the concrete is stirred in a mixer, it is then poured into the mold on the mold conveying line. Since the concrete gradually flows into the mold and fills the entire mold under the action of its own gravity, there will be air bubbles inside the concrete. Therefore, a vibrating platform is required to vibrate it, and when vibrating, the mold will collide with the vibrating platform and generate noise. Summary of the Utility Model

[0004] The purpose of the utility model is to solve the problem of noise generated by eliminating air bubbles in the concrete object during the pouring and forming process by vibrating the mold, and to provide a die conveying exhaust vibrating line.

[0005] To solve the above technical problems, the technical solution adopted by the utility model is as follows:

[0006] The utility model provides a die conveying exhaust vibrating line, including

[0007] A vibrating table body, on the top of which there is a receiving groove, in which a rubber plate is provided, and a plurality of first buffer springs are provided between the rubber plate and the vibrating table body;

[0008] Above the rubber plate, there are a plurality of vibrating molds. On the outer side wall of the vibrating mold, there is a first connecting plate, and a reciprocating cylinder is provided between the first connecting plate and the vibrating table body. The fixed end of the reciprocating cylinder is connected to the vibrating table body, and the power end of the reciprocating cylinder is connected to the first connecting plate;

[0009] Support legs are provided at the four corners of the bottom of the vibrating table body.

[0010] Furthermore, the vibrating mold is sleeved with a vibrating box body with an open top, and the vibrating box body is connected to the first connecting plate;

[0011] A rotating screw rod is threadedly connected to the top of the vibrating box body. A locking block is provided at the top of the rotating screw rod, and the locking block abuts against the top of the vibrating mold.

[0012] Furthermore, an installation rod is provided at the top of the vibrating table body. A second connecting plate is provided at the top of the installation rod. A connecting rod is provided on the lower surface of the second connecting plate. A pressing plate that cooperates with the vibrating mold is provided at the bottom of the connecting rod, and the pressing plate is located above the vibrating mold.

[0013] Furthermore, the second connecting plate is provided with a through hole. The installation rod is a threaded rod, and the threaded rod slidably passes through the through hole; locking nuts are threadedly connected to both sides of the second connecting plate where the threaded rod is located.

[0014] Furthermore, the first connecting plate is provided with a guiding hole, and the vibrating table body is provided with a guiding post. The first connecting plate is slidably sleeved on the guiding post through the guiding hole.

[0015] Furthermore, a limiting plate is provided at the top of the guiding post.

[0016] Furthermore, a second buffer spring is sleeved on the guiding post, and the second buffer spring is located between the first connecting plate and the vibrating table body.

[0017] The beneficial effects of the present utility model are as follows:

[0018] 1. By arranging the first buffer spring to connect the vibrating table body and the rubber plate, when vibrating the vibrating mold, the vibrating mold can collide with the rubber plate and the first buffer spring plays a buffering role, reducing the noise generated by the direct collision between the vibrating mold and the vibrating table body, and being more practical.

[0019] 2. By arranging the vibrating box body to accommodate the vibrating mold and locking it with the locking block, the vibrating mold and the vibrating box body can collide with the vibrating table body as a whole, and after vibrating until the concrete in the vibrating mold is filled solid, the concrete object can be taken out by taking out the vibrating mold, which is more convenient. Description of the Drawings

[0020] Figure 1 is a schematic structural diagram of the mold conveying, exhausting and vibrating line provided by the present utility model;

[0021] Figure 2 is Figure 1 the enlarged view of part A in

[0022] Figure 3 is Figure 1 the enlarged view of part B in

[0023] Figure 4 A sectional view of the position of the vibration box body provided by the present utility model;

[0024] Figure 5 A partial sectional view of the position of the locking nut.

[0025] In the figure, 1 - vibration table body, 11 - accommodation groove, 111 - rubber plate, 1111 - first buffer spring, 12 - support leg, 13 - mounting rod, 131 - second connecting plate, 1311 - connecting rod, 13111 - pressing plate, 1312 - through hole, 132 - threaded rod, 1321 - locking nut, 14 - guide post, 141 - limiting plate, 142 - second buffer spring, 2 - vibration die, 21 - first connecting plate, 211 - reciprocating cylinder, 2111 - fixed end, 2112 - power end, 212 - guide hole, 22 - vibration box body, 221 - rotating screw rod, 2211 - locking block. Specific embodiments

[0026] The following specific examples illustrate the implementation manners of the present utility model. Those skilled in the art can easily understand other advantages and effects of the present utility model from the content disclosed in this specification. The present utility model can also be implemented or applied through other different specific implementation manners. Various details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of the present utility model. It should be noted that, without conflict, the following embodiments and the features in the embodiments can be combined with each other.

[0027] It should be noted that the drawings provided in the following embodiments only schematically illustrate the basic concept of the present utility model. Therefore, only the components related to the present utility model are shown in the drawings, rather than being drawn according to the number, shape, and size of the components in actual implementation. The type, quantity, and proportion of each component in actual implementation can be arbitrarily changed, and the component layout type may also be more complex.

[0028] Embodiment

[0029] As Figures 1 to 3 shown

[0030] A mold conveying and exhausting vibration line, including a vibration table body 1. A receiving groove 11 is provided at the top of the vibration table body 1. A rubber plate 111 is provided in the receiving groove 11. A plurality of first buffer springs 1111 are provided between the rubber plate 111 and the vibration table body 1. Above the rubber plate 111, there are a plurality of vibrating molds 2. Support legs 12 are provided at the four corners of the bottom of the vibration table body 1. By setting the support legs 12, the vibration table body 1 can be supported. By setting the receiving groove 11 on the vibration table body 1 and arranging the first buffer springs 1111 in the receiving groove 11 to connect the rubber plate 111 and the vibration table body 1, when the vibrating mold 2 vibrates, it can impact the rubber plate 111, reducing noise. Under the buffering effect of the first buffer springs 1111, the noise generated when the rubber plate 111 impacts the vibration table body 1 will also be further reduced, thereby reducing the overall noise.

[0031] An installation rod 13 is provided at the top of the vibration table body 1. A second connecting plate 131 is provided at the top of the installation rod 13. A connecting rod 1311 is provided on the lower surface of the second connecting plate 131. A pressing plate 13111 that cooperates with the vibrating mold 2 is provided at the bottom of the connecting rod 1311. The pressing plate 13111 is located above the vibrating mold 2. By setting the pressing plate 13111, when the vibrating mold 2 vibrates, it can impact the pressing plate 13111 while colliding with the vibration table body 1. The concrete can be better filled and compacted by the reaction force of the pressing plate 13111 hitting the concrete.

[0032] The second connecting plate 131 is provided with a through hole 1312. The installation rod 13 is a threaded rod 132. The threaded rod 132 slidably passes through the through hole 1312. Locking nuts 1321 are threadedly connected to both sides of the second connecting plate 131 where the threaded rod 132 is located. By setting the installation rod 13 as the threaded rod 132, the position of the second connecting plate 131 can be adjusted and locked by two locking nuts 1321, so as to adapt to filling concrete with different heights in the vibrating mold 2 to make concrete objects of different specifications.

[0033] A first connecting plate 21 is provided on the outer side wall of the vibrating mold 2. A reciprocating cylinder 211 is provided between the first connecting plate 21 and the vibration table body 1. The fixed end 2111 of the reciprocating cylinder 211 is connected to the vibration table body 1, and the power end 2112 of the reciprocating cylinder 211 is connected to the first connecting plate 21. By setting the reciprocating cylinder 211, the vibrating mold 2 can be driven to perform reciprocating vibration. The structure is relatively simple and the operation is also very convenient.

[0034] The vibration mold is provided with a vibration box body 22 with an open top, and the vibration box body 22 is connected to the first connecting plate 21; a rotating screw 221 is threadedly connected to the top of the vibration box body 22, a locking block 2211 is arranged at the top of the rotating screw 221, and the locking block 2211 abuts against the top of the vibration mold 2; by sleeving the vibration box body 22 outside the vibration mold 2 and locking it with the locking block 2211, the vibration mold 2 and the vibration box body 22 vibrate as a whole driven by the reciprocating cylinder 211, which is convenient for turning the locking screw to release the locking of the locking block 2211 after the concrete is filled, so as to take out the vibration mold 2, and it is more convenient to take out the concrete object;

[0035] The first connecting plate 21 is provided with a guiding hole 212, the vibrating table body 1 is provided with a guiding column 14, and the first connecting plate 21 is slidably sleeved on the guiding column 14 through the guiding hole 212; by arranging the guiding column 14 to guide the first connecting plate 21, the reciprocating cylinder 211 can drive the vibration mold 2 to vibrate more stably in one direction;

[0036] A limiting plate 141 is arranged at the top of the guiding column 14; a second buffer spring 142 is sleeved on the guiding column 14, and the second buffer spring 142 is located between the first connecting plate 21 and the vibrating table body 1; by arranging the limiting plate 141, it can better prevent the first connecting plate 21 from slipping off the guiding column 14, which is beneficial to the stable vibration of the vibration mold 2; and by sleeving the second buffer spring 142 on the guiding column 14, a buffering effect can be achieved, which is beneficial to the stable vibration of the vibration mold 2.

[0037] The working mode of this device:

[0038] During actual use, it is necessary to pour concrete into the vibration mold 2, and then start the reciprocating cylinder 211 to drive the vibration mold 2 to vibrate back and forth and collide with the rubber plate 111, so that the concrete is filled in the vibration mold 2 and the noise is reduced. And connecting the vibration mold 2 and the vibrating table body 1 through the first buffer spring 1111 can also play a buffering role, avoiding the direct collision between the vibration mold 2 and the vibrating table body 1, and thus reducing the noise.

[0039] The above embodiments only express the specific implementation manners of the present invention, and the description thereof is relatively specific and detailed, but it cannot be construed as a limitation on the scope of the patent of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present invention, several deformations and improvements can still be made, and these all belong to the protection scope of the present invention.

Claims

1. A mold conveying exhaust vibration line, characterized in that: include A vibration table body (1), wherein a receiving groove (11) is provided at the top of the vibration table body (1), a rubber plate (111) is provided in the receiving groove (11), and a plurality of first buffer springs (1111) are provided between the rubber plate (111) and the vibration table body (1); A plurality of vibration molds (2) are arranged above the rubber plate (111); a first connecting plate (21) is arranged on the outer side wall of the vibration mold (2); a reciprocating cylinder (211) is arranged between the first connecting plate (21) and the vibration table body (1); a fixed end (2111) of the reciprocating cylinder (211) is connected to the vibration table body (1); and a power end (2112) of the reciprocating cylinder (211) is connected to the first connecting plate (21); Support legs (12) are provided at the four corners of the bottom of the vibration table body (1).

2. A mold conveying exhaust vibration line according to claim 1, characterized in that: The vibration mold (2) is sleeved with a vibration box body (22) with a top opening, and the vibration box body (22) is connected to the first connecting plate (21); The top of the vibration box body (22) is threadedly connected with a rotating screw (221), and the top of the rotating screw (221) is provided with a locking block (2211), and the locking block (2211) abuts against the top of the vibration mold (2).

3. A mold conveying exhaust vibration line according to claim 1, characterized in that: The top of the vibration table body (1) is provided with a mounting rod (13), the top of the mounting rod (13) is provided with a second connecting plate (131), the lower surface of the second connecting plate (131) is provided with a connecting rod (1311), the bottom of the connecting rod (1311) is provided with a pressing plate (13111) that cooperates with the vibration mold (2), and the pressing plate (13111) is located above the vibration mold (2).

4. A mold conveying exhaust vibration line according to claim 3, characterized in that: The second connecting plate (131) is provided with a through hole (1312); the mounting rod (13) is a threaded rod (132); the threaded rod (132) can slide through the through hole (1312); the threaded rod (132) is located on both sides of the second connecting plate (131) and is threadedly connected with locking nuts (1321).

5. The mold conveying exhaust vibration line according to claim 1, characterized in that: The first connecting plate (21) is provided with a guide hole (212), the vibration platform body (1) is provided with a guide column (14), and the first connecting plate (21) is slidably mounted on the guide column (14) through the guide hole (212).

6. A mold conveying exhaust vibration line according to claim 5, characterized in that: A limiting plate (141) is provided on the top of the guide column (14).

7. A mold conveying exhaust vibration line according to claim 5, characterized in that: The guide column (14) is sleeved with a second buffer spring (142), and the second buffer spring (142) is located between the first connecting plate (21) and the vibration platform body (1).