Vibrator mounting structure and concrete pile rod vibration platform

By providing a storage groove on the vibrator mounting component that is consistent with the size of the vibrator fixing seat, and fixing it by hot pressing and fastening bolts, the problem of excessive force on the tightening bolts during the vibration of the vibrator mounting structure is solved, and the effect of reducing the force on the tightening bolts is achieved, extending the service life of the equipment and reducing maintenance costs.

CN222904400UActive Publication Date: 2025-05-27HUBEI JIEGU CONSTR TECH CO LTD
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Patent Information

Application Number
CN202421699100.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-17
Publication Date
2025-05-27
Estimated Expiration
2034-07-17

AI Technical Summary

Technical Problem

The existing vibrator installation structure will have a moving trend during the vibration process, causing the fastening bolts to withstand pulling forces, vibration force and shear forces, which are prone to loosening or damage, affecting the normal operation of the equipment and increasing maintenance costs.

Method used

A vibrator installation structure is designed, including a vibrator fixing seat accommodating groove that is consistent with the vibrator fixing seat size on the vibrator mounting component, which is fixed by hot press fit and fastening bolts to limit the movement of the vibrator and reduce the stress of the fastening bolts.

Benefits of technology

It effectively reduces the stress of the fastening bolts, extends its service life, reduces the risk of equipment damage, and reduces maintenance time and cost.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a vibrator installation structure and a concrete pile rod vibration platform, the vibrator installation structure comprises a vibrator installation part used for installing a vibrator, the vibrator installation part is provided with a vibrator fixing seat containing groove with the same size as a vibrator fixing seat, and the vibrator fixing seat containing groove is provided with a vibrator fixing seat. And the vibrator fixing seat is arranged in the vibrator fixing seat accommodating groove and is fixed through a fastening bolt. The vibrator mounting component is provided with the vibrator fixing seat accommodating groove which is consistent with the vibrator fixing seat in size, so that when the vibrator fixing seat is arranged in the vibrator fixing seat accommodating groove, the vibrator fixing seat accommodating groove can limit the vibrator in the plane direction of the mounting plane of the vibrator; due to the fact that the bolt rod is arranged on the fastening bolt, acting force (shearing force and vibration force) in the radial direction cannot be generated on the fastening bolt, the fastening bolt only needs to bear acting force (drawing force) in the axial direction of the bolt rod, stress of the fastening bolt is effectively reduced, and the service life and the use performance of the fastening bolt are guaranteed.
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Description

Technical Field

[0001] The utility model relates to the technical field of precast pile production, in particular to a vibrator installation structure and a concrete pile rod vibration platform. Background Technique

[0002] The working part of the vibrator is a rod-shaped hollow cylinder, inside which an eccentric vibrator is installed. Driven by the motor, it rotates at a high speed to generate high-frequency and small-amplitude vibrations. The vibration frequency can reach 12,000 - 15,000 times / min. It has good vibration effect, simple structure and long service life. It is suitable for vibrating components such as beams, columns, walls and mass concrete.

[0003] The outer shell of the vibrator is provided with a vibrator fixing seat (an integral structure with the vibrator housing). The vibrator fixing seat is provided with through holes to facilitate the installation of the vibrator on the corresponding equipment. When the existing vibrator is installed on the corresponding equipment (vibrator installation component), generally, the vibrator mounting seat is directly abutted against the surface of the corresponding equipment, and then it is directly fixed on the corresponding equipment through fastening bolts. However, this structure has the following problems. Since the vibrator generates high-frequency and small-amplitude vibrations during operation, the vibrator will move or tend to move in the plane where it is installed and the plane perpendicular to its installation plane. As a result, the fastening bolts not only need to bear the pulling force, but also need to bear the vibration force and shear force, causing the fastening bolts to loosen or be damaged, thus affecting the normal operation of the equipment and increasing the equipment maintenance time and cost. Content of the Utility Model

[0004] The utility model provides a vibrator installation structure and a concrete pile rod vibration platform in view of the above problems.

[0005] The technical means adopted by the utility model are as follows:

[0006] A vibrator installation structure includes a vibrator installation component for installing the vibrator. The vibrator installation component is provided with a vibrator fixing seat receiving groove having the same size as the vibrator fixing seat. The vibrator fixing seat is placed in the vibrator fixing seat receiving groove and fixed by fastening bolts.

[0007] Further, a hot press fit is adopted between the vibrator fixing seat and the vibrator fixing seat receiving groove.

[0008] Further, when the vibrator fixing seat is placed in the vibrator fixing seat receiving groove and fixed by fastening bolts, the outer diameter of the screw rod of the fastening bolt does not contact the inner wall of the bolt through hole on the vibrator fixing seat.

[0009] Further, the vibrator fixing seat accommodating groove is directly machined on the vibrator mounting component; or a plurality of limiting blocks are fixed on the vibrator mounting component, and the plurality of limiting blocks enclose the vibrator fixing seat accommodating groove; or a fixing plate is fixed on the vibrator mounting component, and the vibrator fixing seat accommodating groove is machined on the fixing plate.

[0010] A concrete pile rod vibrating platform adopting the vibrator mounting structure described in the present application includes a vibrating platform main body and a vibrator;

[0011] The vibrating platform main body is a vibrator mounting component for mounting the vibrator;

[0012] The vibrating platform main body is provided with a vibrator fixing seat accommodating groove having the same size as the vibrator fixing seat, and the vibrator fixing seat is placed in the vibrator fixing seat accommodating groove and fixed by fastening bolts.

[0013] Further, a hot press fit is provided between the vibrator fixing seat and the vibrator fixing seat accommodating groove.

[0014] Further, when the vibrator fixing seat is placed in the vibrator fixing seat accommodating groove on the vibrating platform main body and fixed to the vibrating platform main body by fastening bolts, the outer diameter of the screw rod of the fastening bolt does not contact the inner wall of the bolt through hole on the vibrator fixing seat.

[0015] Further, the vibrating platform main body includes a panel, and main beams and cross beams fixed below the panel. The main beams are arranged on both sides below the panel, the cross beams are arranged between the two main beams on both sides, and vibrator fixing seat accommodating grooves having the same size as the vibrator fixing seat are provided on both main beams. The vibrator fixing seat is placed in the vibrator fixing seat accommodating groove and fixed to the main beam by fastening bolts.

[0016] Further, two vibrators are arranged on both main beams along the length direction of the main beams. The vibrators on both main beams are symmetrically arranged, and the rotors of the vibrators at symmetrical positions rotate relatively.

[0017] Further, the vibrator is arranged inside the main beam, and a low-elastic rubber pad is further provided on the panel.

[0018] Compared with the prior art, the vibrator mounting structure disclosed by the present utility model has the following beneficial effects: Since the vibrator mounting member is provided with a vibrator fixing seat receiving groove having the same size as the vibrator fixing seat, when the vibrator fixing seat is placed in the vibrator fixing seat receiving groove, the vibrator fixing seat receiving groove can restrict the vibrator in the plane direction of its mounting plane, so that it will not generate radial forces (shearing force and vibration force) on the fastening bolts. The fastening bolts only need to bear the forces (pulling forces) along the axial direction of the bolt rod, effectively reducing the stress on the fastening bolts, ensuring the service life and performance of the fastening bolts, and thus reducing equipment damage. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 is a schematic diagram of the vibrator mounting structure disclosed by the present utility model;

[0020] Figure 2 is an analysis diagram of the forces on the fastening bolts when the vibrator is mounted on the vibrator mounting member in the prior art. The figure is a schematic diagram after being cut along the direction parallel to the vibrator fixing seat;

[0021] Figure 3 is along Figure 2 the analysis diagram of the forces on the fastening bolts after being cut along A-A in;

[0022] Figure 4 is an analysis diagram of the forces on the fastening bolts when the vibrator is mounted on the vibrator mounting member in the first embodiment of the vibrator mounting structure disclosed by the application. The figure is a schematic diagram after being cut along the direction parallel to the vibrator fixing seat;

[0023] Figure 5 is along Figure 4 the analysis diagram of the forces on the fastening bolts after being cut along B-B in;

[0024] Figure 6 is an analysis diagram of the forces on the fastening bolts when the vibrator is mounted on the vibrator mounting member in the second embodiment of the vibrator mounting structure disclosed by the application. The figure is a schematic diagram after being cut along the direction parallel to the vibrator fixing seat;

[0025] Figure 7 is along Figure 6 the analysis diagram of the forces on the fastening bolts after being cut along C-C in;

[0026] Figure 8 is an analysis diagram of the forces on the fastening bolts when the vibrator is mounted on the vibrator mounting member in the third embodiment of the vibrator mounting structure disclosed by the application. The figure is a schematic diagram after being cut along the direction parallel to the vibrator fixing seat;

[0027] Figure 9 is along Figure 8Force analysis diagram of the fastening bolt after sectioning at D-D in the middle;

[0028] Figure 10 Axial view of a concrete pile rod vibration platform adopting the vibrator installation structure described in the present application;

[0029] Figure 11 Schematic diagram of the vibrator installed on the vibrator main body in the concrete pile rod vibration platform disclosed in the present application;

[0030] Figure 12 Cross-sectional view of the concrete pile rod vibration platform disclosed in the present application.

[0031] In the figure: 1. Vibrator installation component; 10. Vibrator fixing seat accommodating groove; 11. Fixing plate; 12. Limiting block; 2. Vibrator; 20. Vibrator fixing seat; 3. Fastening bolt; 4. Concrete pile rod vibration platform; 40. Vibration platform main body; 41. Panel; 42. Main beam; 43. Cross beam. Detailed implementation mode

[0032] Embodiment 1

[0033] As Figure 1 、 Figure 4 and Figure 5 shown, the first implementation mode of the vibrator installation structure disclosed by the present utility model includes a vibrator installation component 1 for installing the vibrator 2. The vibrator installation component 1 is provided with a vibrator fixing seat accommodating groove 10 having the same size as the vibrator fixing seat 20. The vibrator fixing seat 20 is placed in the vibrator fixing seat accommodating groove 10 and fixed by a fastening bolt 3. In this embodiment, the vibrator fixing seat accommodating groove is directly machined on the vibrator installation component.

[0034] Specifically, the vibrator mounting member 1 can be various devices such as various vibrating platforms and bins that require the installation of a vibrator to generate corresponding vibrations. The vibrator housing and the vibrator fixing base are generally integrally cast. A motor and an eccentric vibrator are installed inside the vibrator housing. The eccentric vibrator rotates at a high speed under the drive of the motor to generate high-frequency and small-amplitude vibrations. The vibrator fixing base is generally of a rectangular structure, and circular through-holes or long holes are machined on the vibrator fixing base for fastening bolts to pass through and be fixed. In this application, since a vibrator fixing base receiving groove with the same size as the vibrator fixing base is provided on the vibrator mounting member, the same size in this application means that the length and width of the vibrator fixing base and the vibrator fixing base mounting groove are the same (it can be partially the same or completely the same, as long as the vibrator fixing base mounting groove can limit the movement of the vibrator fixing base). After the vibrator fixing base is placed in the vibrator fixing base mounting groove, there is no gap between the edges in the length and width directions of the two, that is, the movement of the vibrator in the vibrator fixing base mounting groove is restricted. When the vibrator fixing base is placed in the vibrator fixing base receiving groove, the vibrator fixing base receiving groove can restrict the vibrator in the plane direction of its installation plane, so that it does not generate radial forces (shearing force and vibration force) on the fastening bolts. The fastening bolts only need to bear the force along the axial direction of the bolt rod (pulling force), effectively reducing the force on the fastening bolts, ensuring the service life and performance of the fastening bolts, and thus reducing the damage of the equipment.

[0035] Specifically, as Figure 2 and Figure 3 shown is the force diagram of the fastening bolts after the vibrator is installed on the vibrator mounting member in the prior art. It can be seen from the figure that in the prior art, during the operation of the vibrator, vibrations (vibration trends) in the direction of its fixed plane and movements (movement trends) perpendicular to its fixed plane will occur, thereby causing the fastening bolts to be subjected to vibration force F 振 and shearing force F 剪切 , and at the same time, it is also subjected to a pulling force F 拉拔力 in the direction perpendicular to the fixed plane (the axial direction of the screw of the fastening bolt). When the fastening bolts are subjected to the vibration force and shearing force in the direction of the fixed plane, it is very easy to cause the bolts to loosen or be cut off, thereby affecting the normal operation of the equipment and increasing the equipment maintenance time and cost. As Figure 4 and Figure 5 shown is the force diagram of the fastening bolts after the vibrator is installed on the vibrator mounting member in this application. It can be seen from the figure that in this application, the force generated by the vibration (vibration trend) of the vibrator in the direction of its fixed plane during the operation process directly acts on the vibrator fixing base receiving groove. Therefore, no force is borne in the radial direction of the fastening bolts, and at this time, the fastening bolts only bear the pulling force F 拉拔力, because the bolt has strong tensile and pulling properties, the fastening bolt is not easily damaged, thus reducing the damage of the equipment.

[0036] Furthermore, a hot press fit is provided between the vibrator fixing base 20 and the vibrator fixing base receiving groove 10.

[0037] Specifically, a hot press fit is provided between the vibrator fixing base and the vibrator fixing base receiving groove, that is, an interference fit is provided between the vibrator fixing base and the vibrator fixing base receiving groove. Before the vibrator is installed in the vibrator fixing base receiving groove, the part of the vibrator mounting member 1 where the vibrator fixing base receiving groove is provided is heated first. Due to the effect of thermal expansion and contraction, the size of the vibrator fixing base receiving groove increases at this time, and the vibrator fixing base can be conveniently placed into the vibrator fixing base receiving groove. At the same time, after the vibrator fixing base receiving groove cools and shrinks, the vibrator fixing base receiving groove can be firmly clamped together with the vibrator fixing base, further ensuring that the movement of the vibrator in the fixed plane is limited by the vibrator fixing base receiving groove, so that the fastening bolt will not be subjected to the shearing force and vibration force along the fixed plane direction.

[0038] Furthermore, when the vibrator fixing base 20 is placed in the vibrator fixing base receiving groove 10 and fixed by the fastening bolt 3, the outer diameter of the screw rod of the fastening bolt 3 does not contact the inner wall of the bolt through hole on the vibrator fixing base 20.

[0039] Specifically, the fastening bolt passes through the bolt through hole on the vibrator fixing base 20. The bolt through hole is generally a circular through hole or a long hole. A through hole or a threaded hole is provided at a position on the vibrator mounting member corresponding to the circular through hole or the long hole. After the fastening bolt is inserted into the circular through hole or the long hole on the vibrator fixing base, it is tightened and fixed with the vibrator mounting member (by a nut or directly screwed into the threaded hole). After the fastening bolt is tightened and fixed, the outer diameter of the screw rod of the fastening bolt does not contact the inner wall of the circular through hole or the long hole on the vibrator fixing base, further enabling the fastening bolt not to be subjected to the acting force along the fixed plane direction during the operation of the vibrator, that is, enabling the fastening bolt to be only subjected to the tensile force along the axial direction of the screw rod. In this embodiment, the inner diameter of the circular through hole or the width of the long hole is greater than the outer diameter of the screw rod of the fastening bolt. Preferably, the circular through hole on the vibrator fixing base is coaxial with the through hole or the threaded hole on the vibrator mounting member, or the long hole on the vibrator fixing base is aligned with the through hole or the threaded hole on the vibrator mounting member, so that the outer diameter of the screw rod of the fastening bolt does not contact the inner wall of the bolt through hole on the vibrator fixing base.

[0040] Embodiment 2

[0041] As Figure 6 and Figure 7The second embodiment of the vibrator mounting structure disclosed in the present application is shown. The difference between this embodiment and Embodiment 1 is that in Embodiment 1, the vibrator fixing seat accommodating groove is directly formed by machining on the vibrator mounting component. In this embodiment, a fixing plate 11 is fixed to the vibrator mounting component by means of welding, riveting, or a combination of bolts and pins. A vibrator fixing seat accommodating groove 10 having the same size as the vibrator fixing seat 20 is provided on the fixing plate 11. The movement of the vibrator in the direction of its fixing plane is defined by the vibrator fixing seat accommodating groove on the fixing plate, and the fastening bolts for fixing the vibrator only bear the pulling force along the axial direction of the screw rod. In this embodiment, by providing a fixing plate and machining the vibrator fixing seat accommodating groove on the fixing plate, the fixing plate can preferably be made of a material with higher rigidity than the vibrator mounting component, so that the fixing plate can effectively withstand the high-frequency and small-amplitude vibration of the vibrator without causing damage to the vibrator fixing seat accommodating groove, thereby reducing the overall manufacturing cost of the equipment.

[0042] Embodiment 3

[0043] As Figure 8 and Figure 9 The third embodiment of the vibrator mounting structure disclosed in the present application is shown. The difference between this embodiment and Embodiment 1 is that in Embodiment 1, the vibrator fixing seat accommodating groove is directly formed by machining on the vibrator mounting component. In this embodiment, a plurality of limiting blocks 12 are fixed to the vibrator mounting component by means of welding, riveting, or a combination of bolts and pins. A vibrator fixing seat accommodating groove 10 having the same size as the vibrator fixing seat 20 is formed by enclosing with the plurality of limiting blocks 12 ( Figure 8 The dashed line frame in the figure indicates the vibrator fixing seat accommodating groove). In the figure, the number of limiting blocks is 4, and the number of limiting blocks can be set as required, so that one or more are provided on each side. The movement of the vibrator in the direction of its fixing plane is defined by the vibrator fixing seat accommodating groove formed by enclosing with the limiting blocks, and the fastening bolts for fixing the vibrator only bear the pulling force along the axial direction of the screw rod.

[0044] Embodiment 4

[0045] As Figure 10 , Figure 11 and Figure 12 shown, the concrete pile rod vibrating platform 4 adopting the vibrator mounting structure described in the present application disclosed by the present utility model includes a vibrating platform main body 40 and a vibrator 2;

[0046] The vibrating platform main body 40 is a vibrator mounting component 1 for mounting the vibrator;

[0047] A vibrator fixing seat receiving groove 10 with the same size as the vibrator fixing seat 20 is provided on the vibration platform main body 40, and the vibrator fixing seat 20 is placed in the vibrator fixing seat receiving groove 10 and fixed by a fastening bolt 3.

[0048] Specifically, for the concrete pile rod vibration platform disclosed in this application, the vibration platform main body and the vibrator, the vibrator is installed on the vibration platform main body. During the working process of the vibrator, it can vibrate the precast concrete pile rod mold placed on the vibration platform main body, thereby realizing the vibration of the precast concrete pile rod. In this application, since a vibrator fixing seat receiving groove with the same size as the vibrator fixing seat is provided on the vibration platform main body, and the vibrator fixing seat is placed in the vibrator fixing seat receiving groove and fixed by a fastening bolt, when the vibrator fixing seat is placed in the vibrator fixing seat receiving groove, the vibrator fixing seat receiving groove can limit the vibrator in the plane direction of its installation plane, so that it will not generate radial forces (shearing force and vibration force) on the fastening bolt, and the fastening bolt only needs to bear the force along the axial direction of the bolt rod (pulling force), effectively reducing the force on the fastening bolt, ensuring the service life and performance of the fastening bolt, thus greatly reducing the damage of the concrete pile rod vibration platform and ensuring the service life of the precast concrete pile rod vibration platform.

[0049] In this embodiment, the vibration platform main body 40 includes a panel 41 and main beams 42 and cross beams 43 fixed below the panel 41. The main beams 42 are arranged on both sides below the panel 41, the cross beams 43 are arranged between the two main beams 42 on both sides, and vibrator fixing seat receiving grooves 10 with the same size as the vibrator fixing seat 20 are provided on both main beams 42. The vibrator fixing seat 20 is placed in the vibrator fixing seat receiving groove 10 and fixed on the main beam 42 by a fastening bolt 3. In this embodiment, the installation groove of the vibrator fixing seat can adopt any one of the methods in Embodiments 1 to 3. In the figure, it is the method of directly machining on the main beam.

[0050] Specifically, in this embodiment, the main beam and the cross beam generally adopt H-shaped steel or U-shaped groove steel structures. The main beam shown in the figure is a U-shaped channel steel, and the cross beam is an H-shaped steel, or it can also be welded by steel plates. Generally, the vibrator is installed on the main beam. At the position where the vibrator is installed on the main beam, a vibrator fixing seat receiving groove with the same size as the vibrator fixing seat is machined. Through holes or bolt holes are machined at the positions corresponding to the bolt through holes on the vibrator fixing seat in the vibrator fixing seat receiving groove. The vibrator fixing seat is placed in the vibrator fixing seat receiving groove and fixed on the main beam by a fastening bolt. In the vibration platform disclosed in this application, the high-frequency and micro-amplitude vibration generated by the vibrator is transmitted to the main beam and then to the panel, making the vibration more uniform and the concrete compaction effect better.

[0051] Furthermore, a hot press fit is provided between the vibrator fixing base 20 and the vibrator fixing base receiving groove 10.

[0052] Specifically, a hot press fit is provided between the vibrator fixing base and the vibrator fixing base receiving groove on the main beam, that is, an interference fit is provided between the vibrator fixing base and the vibrator fixing base receiving groove on the main beam. Before the vibrator is installed in the vibrator fixing base receiving groove, the portion of the main beam provided with the vibrator fixing base receiving groove is heated first (or the main beam is heated as a whole). Due to the effect of thermal expansion and contraction, the size of the vibrator fixing base receiving groove on the main beam increases at this time, and the vibrator fixing base can be conveniently placed in the vibrator fixing base receiving groove. At the same time, after the vibrator fixing base receiving groove cools and contracts, the vibrator fixing base receiving groove can be firmly clamped with the vibrator fixing base, that is, the vibrator is clamped with the main beam. Then, the movement of the vibrator along the direction perpendicular to the fixing plane is limited by the fastening bolt. The hot press fit effectively ensures that the movement of the vibrator in the fixing plane is limited by the vibrator fixing base receiving groove, so that the fastening bolt will not be subjected to the shearing force and vibration force along the fixing plane direction.

[0053] Furthermore, when the vibrator fixing base 20 is placed in the vibrator fixing base receiving groove 10 on the vibration platform main body 40 and fixed to the vibration platform main body 40 by the fastening bolt 3, the outer diameter of the screw rod of the fastening bolt 3 does not contact the inner wall of the bolt through hole on the vibrator fixing base 20.

[0054] Specifically, the fastening bolt passes through the bolt through hole on the vibrator fixing base 20. The bolt through hole is generally a circular through hole or a long hole. A through hole or a threaded hole is provided at a position corresponding to the circular through hole or the long hole in the vibrator fixing base installation groove of the main beam. After the fastening bolt is inserted into the circular through hole or the long hole on the vibrator fixing base, it is tightened and fixed with the vibrator installation component (by a nut or directly screwed into the threaded hole). After the fastening bolt is tightened and fixed, the outer diameter of the screw rod of the fastening bolt does not contact the inner wall of the circular through hole or the long hole of the vibrator fixing base, further ensuring that the fastening bolt will not be subjected to the acting force along the fixing plane direction during the operation of the vibrator, that is, the fastening bolt is only subjected to the pulling force along the axial direction of the screw rod. In this embodiment, the inner diameter of the circular through hole or the width of the long hole is greater than the outer diameter of the screw rod of the fastening bolt. Preferably, the circular through hole on the vibrator fixing base is coaxial with the through hole or the threaded hole in the vibrator fixing base installation groove of the main beam, or the long hole on the vibrator fixing base is aligned with the through hole or the threaded hole in the vibrator fixing base installation groove of the main beam, so that the outer diameter of the screw rod of the fastening bolt does not contact the inner wall of the bolt through hole on the vibrator fixing base.

[0055] Further, two of the vibrators 2 are provided on each of the main beams 42 on both sides along the length direction of the main beam 42. The vibrators 2 on the main beams 42 on both sides are symmetrically arranged, and the rotors of the vibrators 2 at symmetrical positions rotate relatively.

[0056] Specifically, in this application, each vibrating platform is provided with four vibrators. The rotors of the two vibrators at symmetrical positions rotate relatively, so that the actions of the two vibrators at the same symmetrical position on the vibrating platform are synchronized (generating upward or downward acting forces on the vibrating platform simultaneously), thereby ensuring the vibration effect and the stability of the vibrating platform.

[0057] Further, the vibrator is arranged inside the main beam.

[0058] Specifically, in this embodiment, a vibrator fixing seat receiving groove is machined inside the main beam. The vibrator fixing seat is placed in the vibrator fixing seat receiving groove by means of hot pressing fit or the like, and then fixed by fastening bolts. The vibrator is placed inside the main beam, which makes rational use of space and reduces the volume of the vibrating platform. At the same time, the main beam, cross beam and panel form a relatively enclosed space, which can reduce the amount of noise generated by the vibrator during operation to the outside world and improve the working environment.

[0059] Further, a low-elastic rubber pad is also provided on the panel.

[0060] In this embodiment, since a low-elastic rubber sheet is laid on the panel of the vibrating platform, the low-elastic rubber sheet can eliminate the problem that the mold cannot be in full contact with the vibrating platform due to reasons such as uneven surface of the mold, the existence of welding points or local unevenness on the bottom surface of the mold (or the panel of the vibrating platform), which causes the vibrating platform to be unable to vibrate the mold comprehensively. That is, setting the low-elastic rubber sheet can make the mold be in full contact with the vibrating platform, thereby realizing the full transmission of vibration. At the same time, the rubber sheet also increases the contact area between the mold and the vibrating platform (soft and hard contact) and reduces the damage to the mold; the low-elastic rubber sheet is preferably a conveyor belt with a thickness of 10 mm and containing 5 layers of canvas. Using this type of conveyor belt not only has low elasticity but also has a long service life.

[0061] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.

Claims

1. A vibrator mounting structure, comprising a vibrator mounting component for mounting a vibrator, characterized in that: The vibrator mounting component is provided with a vibrator fixing seat receiving groove having the same size as the vibrator fixing seat, and the vibrator fixing seat is placed in the vibrator fixing seat receiving groove and fixed by fastening bolts.

2. The vibrator mounting structure according to claim 1, characterized in that: The vibrator fixing seat and the vibrator fixing seat accommodating groove are heat-pressed fitted.

3. The vibrator mounting structure according to claim 1 or 2, characterized in that: When the vibrator fixing seat is placed in the vibrator fixing seat accommodating groove and fixed by the fastening bolt, the outer diameter of the screw rod of the fastening bolt does not contact the inner wall of the bolt through hole on the vibrator fixing seat.

4. The vibrator mounting structure according to claim 1, characterized in that: The vibrator fixing seat receiving groove is directly processed on the vibrator mounting component; or a plurality of limit blocks are fixed on the vibrator mounting component, and the plurality of limit blocks surround the vibrator fixing seat receiving groove; or a fixing plate is fixed on the vibrator mounting component, and the vibrator fixing seat receiving groove is processed on the fixing plate.

5. A concrete pile vibration platform using the vibrator mounting structure according to any one of claims 1 to 4, characterized in that: It includes a vibration platform body and a vibrator; The vibration platform body is a vibrator mounting component for mounting a vibrator; The vibration platform body is provided with a vibrator fixing seat receiving groove having the same size as the vibrator fixing seat, and the vibrator fixing seat is placed in the vibrator fixing seat receiving groove and fixed by fastening bolts.

6. The concrete pile vibration platform according to claim 5, characterized in that: The vibrator fixing seat and the vibrator fixing seat accommodating groove are heat-pressed fitted.

7. The concrete pile vibration platform according to claim 5, characterized in that: When the vibrator fixing seat is placed in the vibrator fixing seat receiving groove on the vibration platform body and fixed to the vibration platform body by fastening bolts, the outer diameter of the screw rod of the fastening bolt does not contact the inner wall of the bolt through hole on the vibrator fixing seat.

8. The concrete pile vibration platform according to any one of claims 5 to 7, characterized in that: The vibration platform body includes a panel and a main beam and a cross beam fixed below the panel, the main beam is arranged on both sides below the panel, the cross beam is arranged between the main beams on both sides, and the main beams on both sides are provided with vibrator fixing seat accommodating grooves with the same size as the vibrator fixing seat, the vibrator fixing seat is placed in the vibrator fixing seat accommodating groove and fixed to the main beam by fastening bolts.

9. The concrete pile vibration platform according to claim 8, characterized in that: Two vibrators are arranged on the main beams at both sides along the length direction of the main beams. The vibrators on the main beams at both sides are symmetrically arranged, and the rotors of the vibrators at symmetrical positions rotate relatively.

10. The concrete pile vibration platform according to claim 9, characterized in that: The vibrator is arranged on the inner side of the main beam, and a low-elasticity rubber pad is also arranged on the panel.