Brake structure of high-speed dehydrator

By combining hinges, linkages, and braking mechanisms, the problem of insufficient reliability and short lifespan caused by the direct connection between the brake line and the door hinge in high-speed dehydrators is solved, achieving a more reliable and accurate braking effect and reducing costs.

CN224260769UActive Publication Date: 2026-05-19JIANGMEN JINHUAN ELECTRIC APPLIANCE
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGMEN JINHUAN ELECTRIC APPLIANCE
Filing Date
2025-05-08
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

In the existing high-speed dehydration mechanism braking structure, the brake cable is directly connected to the door hinge, resulting in insufficient reliability, inaccurate movement process, and short braking system life.

Method used

It adopts a combination design of hinge mechanism, linkage mechanism and braking mechanism. Through the linkage of pin, wire rope and brake spring, it realizes linear motion in the braking process and avoids the bending motion of brake cable.

Benefits of technology

It improves the reliability and accuracy of the braking system, extends the life of the braking system, and reduces costs.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a high-speed dehydrator brake structure which comprises a hinge mechanism (1), a linkage mechanism (2) and a brake mechanism (3), one end of the linkage mechanism (2) is connected with the hinge mechanism (1), and the other end of the linkage mechanism (2) is connected with the brake mechanism (3). The brake structure of the high-speed dehydrator is simple in structure and low in cost, when the cover structure of the dehydrator rotates around the rotating shaft, the toggle switch on the rotating hinge of the cover of the dehydrator toggles the bolt, the bolt linearly moves along the guide rail to drive the steel wire rope to linearly move, and then the brake line drives the brake mechanism to achieve the braking purpose.
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Description

Technical Field

[0001] This utility model belongs to the field of high-speed dehydrator technology, specifically a high-speed dehydrator braking structure. Background Technology

[0002] High-speed dewatering machines, widely used in industrial and household applications, primarily function to rapidly dewater materials through high-speed rotation. In practical use, the braking performance of the dewatering machine directly affects its safety, stability, and efficiency. However, existing high-speed dewatering machine braking structures directly connect the brake cable to the door hinge, resulting in insufficient reliability, inaccurate movement, and short lifespan and low reliability of the braking system. Utility Model Content

[0003] The purpose of this utility model is to provide an automatic structure for a high-speed dehydration mechanism, which solves the problems mentioned in the background art.

[0004] This invention is implemented as follows: a high-speed dehydration mechanism braking structure, which includes a hinge mechanism, a linkage mechanism, and a braking mechanism. One end of the linkage mechanism is connected to the hinge mechanism, and the other end of the linkage mechanism is connected to the braking mechanism.

[0005] A further technical solution of this utility model is: the hinge mechanism includes: a C-shaped hinge that is rotatably connected to the door pivot and a toggle switch that is an integral part of the C-shaped hinge.

[0006] A further technical solution of this utility model is: the linkage mechanism includes: a pin rail, a pin with one end placed in the pin rail, and a steel wire rope with one end passing through the pin rail and connected to the pin.

[0007] A further technical solution of this utility model is: the end of the pin away from the wire rope is provided with a pin head that matches the toggle switch.

[0008] A further technical solution of this utility model is: the braking mechanism includes: a mounting plate, a brake drum disposed on the brake disc, a brake disc disposed on the mounting plate, and brake pads disposed on the inner wall of the brake disc.

[0009] A further technical solution of this utility model is: the brake disc is connected to the steel wire rope through a brake spring set at one end.

[0010] The beneficial effects of this utility model are as follows: The high-speed dehydration mechanism of this utility model has a simple structure and low cost. When the cover structure of the dehydrator rotates around the shaft, the toggle switch on the hinge of the dehydrator cover moves the pin. The pin moves linearly along the guide rail, which drives the steel wire rope to move linearly. The brake line then drives the brake mechanism to achieve the braking purpose. Attached Figure Description

[0011] Figure 1 This is a schematic diagram of the overall structure of the braking structure of a high-speed dehydration mechanism provided by this utility model. Detailed Implementation

[0012] The following specific examples illustrate the implementation of this utility model. Those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification. This utility model can also be implemented or applied through other different specific embodiments, and various details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of this utility model.

[0013] It should be noted that the structures, proportions, sizes, etc., illustrated in the accompanying drawings are merely for illustrative purposes to aid those skilled in the art and are not intended to limit the scope of this invention. Therefore, they have no substantial technical significance. Any modifications to the structure, changes in proportions, or adjustments to size, without affecting the effectiveness and purpose of this invention, should still fall within the scope of the disclosed technical content. Furthermore, the terms "upper," "lower," "left," "right," "middle," and "one" used in this specification are merely for clarity and not intended to limit the scope of this invention. Changes or adjustments to their relative relationships, without substantially altering the technical content, should also be considered within the scope of this invention.

[0014] Example 1: Figure 1A high-speed dehydration mechanism braking structure is shown, comprising: a hinge mechanism 1, a linkage mechanism 2, and a braking mechanism 3. One end of the linkage mechanism 2 is connected to the hinge mechanism 1, and the other end of the linkage mechanism 2 is connected to the braking mechanism 3. The hinge mechanism 1 includes: a C-shaped hinge 11 rotatably connected to a door pivot and a toggle switch 12 integrally formed with the C-shaped hinge. The linkage mechanism 2 includes: a pin rail 21, a pin 22 with one end placed in the pin rail 21, and a steel wire rope 23 with one end passing through the pin rail 21 and connected to the pin 22. The pin 22 has a pin head 24 matching the toggle switch 12 at the end away from the steel wire rope 23. The braking mechanism 3 includes: a mounting disc 31 and a brake on the brake disc 31. The high-speed dehydrator braking structure of this invention is simple in construction and low in cost. When the cover structure of the dehydrator rotates around the pivot, the toggle switch on the hinge of the dehydrator cover moves the pin, and the pin moves linearly along the guide rail, driving the linear movement of the wire rope, which in turn drives the braking mechanism by the brake cable, thus achieving the braking purpose. Compared with the traditional method of directly connecting the brake cable to the door hinge, and using the rotational movement of the door hinge to drive the brake cable, the braking structure of this invention is more reliable, the movement process is more accurate, the life of the braking system is longer, and the reliability of the components is improved.

[0015] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A braking structure for a high-speed dehydration mechanism, characterized in that, The braking structure of the high-speed dehydration mechanism includes: a hinge mechanism (1), a linkage mechanism (2) and a braking mechanism (3). One end of the linkage mechanism (2) is connected to the hinge mechanism (1), and the other end of the linkage mechanism (2) is connected to the braking mechanism (3). The linkage mechanism (2) includes: a pin rail (21), a pin (22) with one end placed in the pin rail (21), and a wire rope (23) with one end passing through the pin rail (21) and connected to the pin (22).

2. The braking structure of a high-speed dehydration mechanism according to claim 1, characterized in that, The hinge mechanism (1) includes: a C-shaped hinge (11) rotatably connected to the door pivot and a toggle switch (12) integral with the C-shaped hinge (11).

3. The braking structure of a high-speed dehydration mechanism according to claim 2, characterized in that, The pin (22) has a pin head (24) that matches the toggle switch (12) at one end away from the wire rope (23).

4. The braking structure of a high-speed dehydration mechanism according to claim 3, characterized in that, The braking mechanism (3) includes: a mounting plate (31), a brake drum (34) disposed on the mounting plate (31), a brake disc (32) disposed on the mounting plate (31), and a brake pad (33) disposed on the inner wall of the brake disc (32).

5. The braking structure of a high-speed dehydration mechanism according to claim 4, characterized in that, The brake disc (32) is connected to the wire rope (23) via a brake spring (35) at one end.