A self-balancing type stirring device support base

By designing a self-balancing support base for the mixing equipment and utilizing a combination of a balancing hydraulic cylinder and a shock-absorbing rubber column, the tilting and vibration problems of the mixing equipment when the load is uneven or the center of gravity changes are solved. This achieves adaptive balance and vibration absorption of the equipment, improving its stability and service life.

CN224485816UActive Publication Date: 2026-07-14QINGDAO CHANGXIN POWER EQUIP CO LTD
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Patent Information

Application Number
CN202521699682.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-11
Publication Date
2026-07-14
Estimated Expiration
2035-08-11

AI Technical Summary

Technical Problem

The existing support base of the mixing equipment cannot adjust its tilt balance and absorb vibration on its own, which makes the equipment unstable when the load is uneven or the center of gravity changes, and it is not easy to install balancing and shock absorption measures.

Method used

The equipment adopts a self-balancing mixing equipment support base, which achieves adaptive balance adjustment and vibration absorption through a combination structure of a balancing hydraulic cylinder and a shock-absorbing rubber column. This includes a combination design of a fixed bearing plate, a balancing hydraulic cylinder, a shock-absorbing rubber column, and a universal joint.

Benefits of technology

It enables the mixing equipment to autonomously balance and buffer vibrations when the load is uneven or the center of gravity changes, thus improving the stability and service life of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a kind of self-balancing type stirring equipment support pedestal, it is related to support pedestal technical field, including base body;The base body is provided with fixed bearing plate, and the fixed bearing plate four corners are all provided with the fixed hole that passes up and down, and the fixed bearing plate top end face center is provided with threaded column, and the fixed bearing plate top end face front and back and left and right are all provided with a pair of half-round head plate with mounting hole, and the half-round head plate of fixed bearing plate is installed with balance hydraulic cylinder by fixed shaft, and the balance hydraulic cylinder bottom end face is provided with half-round head plate with mounting hole, and the balance hydraulic cylinder top is provided with telescopic link, it is convenient for balance hydraulic cylinder to be installed on fixed bearing plate by fixed shaft, it is convenient for the extension and retraction of the telescopic link of balance hydraulic cylinder to make equipment bearing plate be in balanced state, when the problem that the support pedestal cannot be balanced adjustment to incline by itself when load distribution is uneven or gravity center changes, it is inconvenient to add balance measure on base.
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Description

Technical Field

[0001] This utility model belongs to the technical field of support bases, and in particular relates to a self-balancing support base for a mixing device. Background Technology

[0002] The support base of the mixing equipment is a structural component used to fix and support the agitator or other related equipment. Its main function is to ensure the stable operation of the equipment and distribute the load. When the mixing equipment is running, centrifugal force and vibration are generated due to factors such as uneven weight distribution, which affect the stability and service life of the machine. Among them, the eccentricity and speed of the agitator are the main factors affecting the balance of the mixing equipment.

[0003] Based on the above, the inventors have discovered the following shortcomings in existing mixing equipment support bases:

[0004] 1. When the load distribution is uneven or the center of gravity changes, causing the mixing equipment to tilt, the support base cannot adjust the tilt on its own, and it is inconvenient to install balancing measures on the base.

[0005] 2. When the mixing equipment on top of the support base is in a balanced state, the support base cannot buffer and absorb the vibration of the mixing equipment, making it inconvenient to install shock-absorbing measures on the base. Utility Model Content

[0006] To address the aforementioned technical problems, this utility model provides a self-balancing mixing equipment support base. This solves the problems of existing support bases being unable to automatically adjust the tilt when the mixing equipment tilts due to uneven load distribution or changes in the center of gravity, making it inconvenient to install balancing measures on the base; and the support base being unable to buffer and absorb the vibration of the mixing equipment when it is in a balanced state, making it inconvenient to install shock-absorbing measures on the base.

[0007] The purpose and function of this self-balancing stirring equipment support base are achieved by the following specific technical means:

[0008] A self-balancing mixing equipment support base includes a base body; the base body is provided with a fixed bearing plate, and each of the four corners of the fixed bearing plate has a through-hole fixing hole. A threaded post is provided at the center of the top end face of the fixed bearing plate. A pair of semi-circular head plates with mounting holes are provided on the front, back, left, and right sides of the top end face of the fixed bearing plate. A balancing hydraulic cylinder is mounted on the semi-circular head plate of the fixed bearing plate through a fixed shaft. The bottom end face of the balancing hydraulic cylinder is provided with a semi-circular head plate with mounting holes. A telescopic rod is provided on the top of the balancing hydraulic cylinder.

[0009] Furthermore, a balance universal rod is placed inside the assembly anti-detachment cylinder, a universal ball is provided on the upper part of the balance universal rod, a connecting cylinder is provided at the bottom of the universal ball of the balance universal rod, a shock-absorbing rubber column is placed inside the upper part of the connecting cylinder of the balance universal rod, the outer circumference of the shock-absorbing rubber column is provided with a frosted surface, and the lower part of the connecting cylinder of the balance universal rod is sleeved on the telescopic rod of the balance hydraulic cylinder.

[0010] Furthermore, an assembly anti-detachment cylinder is threadedly installed on the threaded post of the equipment bearing plate. The assembly anti-detachment cylinder has a threaded inner circumference at the top, a triangular ring plate at the inner circumference at the bottom, and a regular hexagonal structure at the outer circumference.

[0011] Furthermore, the top end face of the equipment support plate is provided with an equipment rubber pad, and each of the four corners of the equipment rubber pad has a through hole extending vertically. The bottom end face of the equipment rubber pad is provided with a frosted surface.

[0012] Furthermore, a device support plate is installed on the threaded post of the universal joint by threads. The device support plate has a through-hole fixing hole at each of its four corners and a through-hole threaded hole at its center. Threaded posts are provided on the front, back, left, and right sides of the bottom end of the device support plate.

[0013] Furthermore, a load-bearing universal rod is inserted into the inner circumference of the upper part of the assembled anti-detachment cylinder, a universal ball is provided at the lower end of the load-bearing universal rod, a regular hexagonal prism is provided on the top end face of the load-bearing universal rod, and a threaded post is provided on the top end face of the regular hexagonal prism of the load-bearing universal rod.

[0014] Furthermore, an assembly anti-detachment cylinder is threadedly installed on the threaded post of the fixed bearing plate. The bottom inner circumference of the assembly anti-detachment cylinder is threaded, the top inner circumference of the assembly anti-detachment cylinder is provided with a triangular ring plate, the outer circumference of the assembly anti-detachment cylinder is provided with a regular hexagonal structure, and the lower inner circumference of the assembly anti-detachment cylinder is placed with a shock-absorbing column spring, the surface of which is provided with a wear-resistant layer.

[0015] Compared with the prior art, the present invention has the following beneficial effects:

[0016] The convenient balancing hydraulic cylinder is mounted on the fixed bearing plate via a fixed shaft. The extension and retraction of the telescopic rod of the balancing hydraulic cylinder can easily keep the bearing plate of the equipment in a balanced state. This solves the problem that when the load distribution is uneven or the center of gravity changes and the mixing equipment tilts, the support base cannot adjust the tilt on its own, and it is inconvenient to install balancing measures on the base.

[0017] The shock-absorbing column spring is conveniently located inside the anti-detachment cylinder to absorb shock from the load-bearing universal rod, and the shock-absorbing rubber column is conveniently located inside the balance universal rod to achieve buffer assembly with the balance hydraulic cylinder. This solves the problem that when the mixing equipment on the top of the support base is in a balanced state, the support base cannot buffer and absorb the vibration of the mixing equipment, and it is inconvenient to install shock-absorbing measures on the base. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the main structure of this utility model.

[0019] Figure 2 This is a bottom view of the structure of this utility model.

[0020] Figure 3 This is a cross-sectional structural diagram of the present invention.

[0021] Figure 4 This is a disassembled structural diagram of the present invention.

[0022] Figure 5 This is an assembly cross-sectional view of the anti-detachment sleeve and the balance universal rod of this utility model.

[0023] Figure 6 This is an assembly cross-sectional view of the anti-detachment cylinder and the load-bearing universal rod of this utility model.

[0024] In the diagram: 1. Base body; 2. Fixed bearing plate; 3. Balance hydraulic cylinder; 4. Assembled anti-detachment sleeve; 5. Shock-absorbing column spring; 6. Bearing universal rod; 7. Equipment bearing plate; 8. Equipment rubber pad; 9. Assembled anti-detachment sleeve; 10. Balance universal rod; 11. Shock-absorbing rubber column. Detailed Implementation

[0025] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples.

[0026] Example 1: As shown in the attached document Figure 1 To be continued Figure 6 As shown:

[0027] This utility model provides a self-balancing mixing equipment support base, including a base body 1. The base body 1 is provided with a fixed bearing plate 2 for easy support of various components. The fixed bearing plate 2 has through-holes at all four corners for easy bolt fixing to the ground. A threaded post is provided at the center of the top end face of the fixed bearing plate 2 for easy assembly of the anti-detachment cylinder 4 via threaded installation. A pair of semi-circular head plates with mounting holes are provided on the front, back, left, and right sides of the top end face of the fixed bearing plate 2 for easy installation of the balancing hydraulic cylinder 3 via a fixed shaft. The balancing hydraulic cylinder 3 is mounted on the semi-circular head plates of the fixed bearing plate 2 via a fixed shaft, facilitating the rotation of the balancing hydraulic cylinder 3. A semi-circular head plate with mounting holes is provided on the bottom end face of the balancing hydraulic cylinder 3 for easy installation via a fixed shaft. A telescopic rod is provided at the top of the balancing hydraulic cylinder 3 for easy extension and retraction adjustment. The anti-detachment cylinder 4 is threadedly installed on the threaded post of the fixed bearing plate 2 to prevent the shock-absorbing column spring 5 and the bearing universal rod 6 from detaching. The bottom inner circumference of the anti-detachment cylinder 4 is threaded for easy assembly and installation via the thread. The top inner circumference of the anti-detachment cylinder 4 is equipped with a triangular ring plate to prevent the load-bearing universal rod 6 from detaching. The outer circumference of the anti-detachment cylinder 4 has a regular hexagonal structure for easy rotation and disassembly using tools. A shock-absorbing column spring 5 is placed on the lower inner circumference of the anti-detachment cylinder 4 to absorb vibrations transmitted by the load-bearing universal rod 6. The surface of the shock-absorbing column spring 5 is equipped with a wear-resistant layer to increase its service life. The upper inner circumference of the anti-detachment cylinder 4 inserts the load-bearing universal rod 6 to support the equipment support plate 7. The lower end of the load-bearing universal rod 6 is equipped with a universal ball for easy adjustment within the anti-detachment cylinder 4. The top end face of the load-bearing universal rod 6 is equipped with a regular hexagonal prism for easy rotation and installation onto the equipment support plate 7 using tools. The top end face of the regular hexagonal prism of the load-bearing universal rod 6 is equipped with a threaded post for easy installation onto the equipment support plate 7.

[0028] The equipment support plate 7 is threadedly installed on the threaded post of the universal joint 6 to facilitate the support of the mixing equipment. The equipment support plate 7 has through-holes at all four corners for bolt installation of the mixing equipment. A threaded hole at the center of the equipment support plate 7 facilitates threaded installation of the universal joint 6. Threaded posts are located on the front, back, left, and right sides of the bottom end of the equipment support plate 7 for threaded installation of the anti-detachment cylinder 9. A rubber pad 8 is installed on the top end of the equipment support plate 7 to absorb vibration and support the mixing equipment. Through-holes are located at all four corners of the rubber pad 8 for bolts to pass through. The bottom end of the rubber pad 8 has a frosted surface to increase friction with the equipment support plate 7. An anti-detachment cylinder 9 is threadedly installed on the threaded post of the equipment support plate 7 to prevent the balance universal joint 10 from detaching. The anti-detachment cylinder 9 has threads on its inner circumference at the top for threaded installation. The bottom inner circumference of the anti-detachment sleeve 9 is provided with a triangular ring plate to facilitate the anti-detachment of the balance universal rod 10. The outer circumference of the anti-detachment sleeve 9 is provided with a regular hexagonal structure to facilitate the rotation and disassembly of the anti-detachment sleeve 9 using tools. The balance universal rod 10 is placed inside the anti-detachment sleeve 9 to facilitate the universal adjustment of the balance universal rod 10. The upper part of the balance universal rod 10 is provided with a universal ball to prevent the balance universal rod 10 from coming out of the anti-detachment sleeve 9. The bottom of the universal ball of the balance universal rod 10 is provided with a connecting cylinder. The shock-absorbing rubber column 11 is inserted inside to facilitate the insertion of the telescopic rod of the balance hydraulic cylinder 3. The shock-absorbing rubber column 11 is placed inside the upper part of the connecting cylinder of the balance universal rod 10 to absorb the vibration between the balance universal rod 10 and the balance hydraulic cylinder 3. The outer circumference of the shock-absorbing rubber column 11 is provided with a frosted surface to prevent the shock-absorbing rubber column 11 from falling out of the balance universal rod 10. The lower part of the connecting cylinder of the balance universal rod 10 is sleeved on the telescopic rod of the balance hydraulic cylinder 3 to facilitate flexible contact through the shock-absorbing rubber column 11.

[0029] The specific usage and function of this embodiment are as follows:

[0030] In this utility model, when... Figure 1As shown, when the base body 1 is in use, the fixed bearing plate 2 is fixed to the ground with bolts, the mixing equipment is placed on top of the equipment rubber pad 8, and the mixing equipment is fixed to the equipment bearing plate 7 with bolts. The balance hydraulic cylinder 3 is connected to the external hydraulic equipment. When the mixing equipment tilts due to uneven load, the equipment bearing plate 7 will tilt synchronously. The tilting of the equipment bearing plate 7 will cause the four balance hydraulic cylinders 3 to deflect at different angles. The built-in pressure sensor triggers the external hydraulic equipment, causing the extension rod of the high-position hydraulic cylinder to retract and the extension rod of the low-position hydraulic cylinder to extend. The direction of thrust is adaptively adjusted by the balance universal rod 10 with a universal ball structure. The hydraulic cylinders work together to restore the equipment's support plate 7 to a horizontal state, thereby achieving self-balancing adjustment of the base body 1. This solves the problem that the support base cannot automatically adjust the tilt when the mixing equipment tilts due to uneven load distribution or changes in the center of gravity. During the operation of the mixing equipment, the equipment's rubber pad 8 absorbs high-frequency micro-vibrations, the shock-absorbing column spring 5 absorbs vibrations from the support universal rod 6, and the shock-absorbing rubber column 11 absorbs the vibrations between the balancing hydraulic cylinder 3 and the balancing universal rod 10. This solves the problem that the support base cannot buffer and absorb the vibrations of the mixing equipment when the mixing equipment on top of the support base is in a balanced state.

[0031] Example 2: The difference from Example 1 is that the regular hexagonal structure of the assembly anti-detachment cylinder 4 can also be set as a regular heptagonal structure. This makes it necessary to use a special tool that works with the regular heptagonal structure to rotate the assembly anti-detachment cylinder 4, thus preventing non-workers from rotating and disassembling the assembly anti-detachment cylinder 4.

[0032] Example 3: The difference from Example 1 is that the regular hexagonal prism supporting the universal joint 6 can also be set as a regular heptagonal prism, so that the universal joint 6 can only be rotated by a special tool that cooperates with the regular heptagonal prism, thus preventing non-workers from rotating and disassembling the universal joint 6.

Claims

1. A self-balancing stirring device support base, characterized in that: The base body (1) is provided with a fixed bearing plate (2). The fixed bearing plate (2) has a fixed hole that runs through the top and bottom at each of its four corners. A threaded column is provided at the center of the top end face of the fixed bearing plate (2). A pair of semi-circular head plates with mounting holes are provided on the front, back, left and right sides of the top end face of the fixed bearing plate (2). A balance hydraulic cylinder (3) is installed on the semi-circular head plate of the fixed bearing plate (2) through a fixed shaft. A semi-circular head plate with mounting holes is provided on the bottom end face of the balance hydraulic cylinder (3). A telescopic rod is provided on the top of the balance hydraulic cylinder (3).

2. The self-balancing stirring device support base as described in claim 1, characterized in that: An assembly anti-detachment cylinder (4) is installed on the threaded column of the fixed bearing plate (2) by threads. The bottom inner circumference of the assembly anti-detachment cylinder (4) is threaded, the top inner circumference of the assembly anti-detachment cylinder (4) is provided with a triangular ring plate, the outer circumference of the assembly anti-detachment cylinder (4) is provided with a regular hexagonal structure, and the lower inner circumference of the assembly anti-detachment cylinder (4) is provided with a shock-absorbing column spring (5). The surface of the shock-absorbing column spring (5) is provided with a wear-resistant layer.

3. The self-balancing stirring device support base as described in claim 2, characterized in that: The upper inner circumference of the assembled anti-detachment cylinder (4) is inserted with a bearing universal rod (6), the lower end of the bearing universal rod (6) is provided with a universal ball, the top end face of the bearing universal rod (6) is provided with a regular hexagonal prism, and the top end face of the regular hexagonal prism of the bearing universal rod (6) is provided with a threaded column.

4. The self-balancing stirring device support base as described in claim 3, characterized in that: The threaded post of the universal joint (6) is threadedly mounted with an equipment support plate (7). The four corners of the equipment support plate (7) are provided with through-hole fixing holes, the center of the equipment support plate (7) is provided with through-hole threaded holes, and the bottom end of the equipment support plate (7) is provided with threaded posts on the front, back, left and right sides.

5. The self-balancing stirring device support base as described in claim 4, characterized in that: The top end face of the equipment support plate (7) is provided with an equipment rubber pad (8), and the four corners of the equipment rubber pad (8) are provided with through holes that pass through from top to bottom. The bottom end face of the equipment rubber pad (8) is provided with a frosted surface.

6. The self-balancing stirring device support base as described in claim 5, characterized in that: The assembly anti-detachment cylinder (9) is installed on the threaded column of the equipment bearing plate (7) by thread. The assembly anti-detachment cylinder (9) has a thread on the inner circumference of the top, a triangular ring plate on the inner circumference of the bottom, and a regular hexagonal structure on the outer circumference.

7. The self-balancing stirring device support base as described in claim 6, characterized in that: The assembly anti-detachment cylinder (9) contains a balance universal rod (10), the upper part of the balance universal rod (10) is provided with a universal ball, the bottom of the universal ball of the balance universal rod (10) is provided with a connecting cylinder, the upper part of the connecting cylinder of the balance universal rod (10) is placed with a shock-absorbing rubber column (11), the outer circumference of the shock-absorbing rubber column (11) is provided with a frosted surface, and the lower part of the connecting cylinder of the balance universal rod (10) is sleeved on the telescopic rod of the balance hydraulic cylinder (3).