Curing agent centrifugal discharging equipment

By designing a drive and anti-clogging mechanism, the problems of filter screen clogging and difficulty in removing the filter cartridge are solved, enabling convenient rotation and cleaning of the filter cartridge and improving centrifugation efficiency.

CN224194954UActive Publication Date: 2026-05-05CHANGZHOU KERIM FUNCTIONAL COATING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHANGZHOU KERIM FUNCTIONAL COATING CO LTD
Filing Date
2025-05-20
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

Solid particles may get stuck inside the filter screen and cause blockage, and the centrifuge cylinder is not easy to remove from the equipment, affecting subsequent liquid discharge and equipment maintenance.

Method used

The design incorporates a drive mechanism and an anti-clogging mechanism. The drive mechanism rotates the filter cartridge via gears and a motor, while the anti-clogging mechanism prevents the filter screen from clogging by rotating the motor and a push rod, thus enabling convenient rotation and cleaning of the filter cartridge.

Benefits of technology

It enables convenient rotation and cleaning of the filter cartridge, avoids filter screen clogging, and improves centrifugation efficiency and convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the field of centrifugal discharging equipment, and particularly relates to curing agent centrifugal discharging equipment which comprises a tank body, a plurality of supporting rods are fixedly connected to the bottom of the tank body, non-slip mats are fixedly connected to the bottoms of the supporting rods, a supporting ring is fixedly connected to the interior of the tank body in a sleeved mode, and a filter cylinder is rotationally connected to the inner side of the supporting ring in a sleeved mode. A cover plate is connected to the interior of the filter cartridge through threads, a feeding port is fixedly connected to the top of the cover plate, and a connecting seat is fixedly connected to the bottom of the filter cartridge. Through the design of the driving motor, the output end of the driving motor can drive the first gear to rotate, the first gear can drive the second gear and the rotating shaft to rotate, then rotation of the square block and the connecting base can be achieved, the filter cylinder can be driven to rotate for centrifugation, and after centrifugation is completed, the filter cylinder can directly move upwards to take out the tank body. Filtered solids can be conveniently recovered, the filter cartridge can be conveniently cleaned and maintained, and the use is more convenient.
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Description

Technical Field

[0001] This utility model relates to the technical field of centrifugal discharge equipment, specifically a centrifugal discharge equipment for curing agents. Background Technology

[0002] A curing agent is a chemical commonly used in mixtures or materials to enhance their structure or properties through a chemical reaction. Curing agents can cause chemical cross-linking or polymerization reactions in mixtures under certain conditions, thereby making them stronger or harder. During the production and processing of curing agents, the materials need to be centrifuged using centrifugal equipment.

[0003] Utility model patent CN215655751U discloses a centrifugal device for solidifying agents in heavy metal contaminated soil remediation. The device includes a body and a centrifugal mechanism mounted on the body. The centrifugal mechanism includes a first rotating rod and a centrifugal tank and a processing tank mounted on the first rotating rod. A rectangular cavity is formed within the body, and the first rotating rod is vertically inserted into the rectangular cavity. The centrifugal tank and the processing tank are respectively sleeved on the shaft of the first rotating rod, with the processing tank located inside the centrifugal tank. Through the coordinated use of a centrifugal motor, the processing tank, the separation tank, the stirring ring, and baffles, the solidifying agent in the processing tank can be stirred under the combined action of the connecting plate and the stirring ring. The continuously rotating processing tank, under centrifugal force, allows the baffles on its surface to separate from the filter screen, thus guiding the liquid in the centrifugal tank into the processing tank. The opposite rotation of the processing tank and the centrifugal tank facilitates increased purification of the solidifying agent.

[0004] In existing technologies, during the centrifugation process, solid particles may become trapped inside the filter screen due to centrifugal force, causing blockages and affecting subsequent liquid discharge. Furthermore, the centrifuge cylinder is inconvenient to remove from the equipment, hindering post-use cleaning and maintenance. Therefore, improvements are needed. Utility Model Content

[0005] The purpose of this invention is to provide a centrifugal discharge device for curing agents, which solves the problem that solid particles may get stuck inside the filter screen and cause blockage, and also solves the problem that the centrifuge cylinder is inconvenient to remove from the device.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a centrifugal discharge device for a curing agent, comprising a tank, a plurality of support rods fixedly connected to the bottom of the tank, an anti-slip pad fixedly connected to the bottom of the support rods, a support ring fixedly sleeved inside the tank, a filter cylinder rotatably sleeved on the inner side of the support ring, a cover plate threadedly connected inside the filter cylinder, a feed inlet fixedly connected to the top of the cover plate, a connecting seat fixedly connected to the bottom of the filter cylinder, a driving mechanism provided on the connecting seat, and an anti-clogging mechanism provided on the filter cylinder.

[0007] Preferably, the driving mechanism includes a fixed rod, which is fixedly connected to the inner wall of the tank. A protective cover is fixedly connected to the left end of the fixed rod. A drive motor is fixedly installed inside the protective cover. A gear is fixedly connected to the upper end of the output end of the drive motor. A rotating shaft is rotatably connected to the inside of the protective cover via a bearing. A block is fixedly connected to the top of the rotating shaft and is slidably connected to a connecting seat. A support block is fixedly fitted to the outer side of the filter cartridge and is slidably connected to a support ring. By designing the driving mechanism, the filter cartridge can be driven to rotate.

[0008] Preferably, a second gear meshes with the left end of the first gear, and the second gear is fixedly sleeved on the outside of the rotating shaft. By designing the meshing of the first gear and the second gear, the rotation of the first gear can realize the rotation of the rotating shaft.

[0009] Preferably, the support ring has an annular groove inside, and a support block is slidably connected inside the annular groove. By designing the annular groove, the support block can slide inside the annular groove.

[0010] Preferably, the anti-clogging mechanism includes a rotating motor. The rotating motor is fixedly connected to the top of the support ring, and its output end is rotatably connected to the support ring. A rotating rod is fixedly connected to the lower end of the rotating motor's output end. A top rod is slidably sleeved inside the rotating rod, and a ball is fixedly connected to the outside of the top rod, contacting the filter cartridge. A guide block is slidably sleeved inside the top rod, and the guide block is fixedly connected to the rotating rod. A spring is installed inside the top rod. By designing this anti-clogging mechanism, clogging of the filter cartridge and filter screen can be prevented.

[0011] Preferably, a sealing ring is rotatably sleeved on the outer side of the rotating rod, and the sealing ring is fixedly connected to the support ring. By designing the sealing ring, the connection between the rotating rod and the support ring can be sealed.

[0012] Preferably, one end of the spring is fixedly connected to the guide block, and the other end of the spring is fixedly connected to the push rod. The spring is designed so that its force can be applied to the push rod.

[0013] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0014] 1. This utility model, through the design of a drive motor, enables the output end of the drive motor to drive gear one to rotate, which in turn drives gear two and the rotating shaft to rotate, thereby realizing the rotation of the block and the connecting seat, which in turn drives the filter cartridge to rotate and centrifuge. After centrifugation, the filter cartridge can be moved directly upward to remove the tank, which facilitates the recovery of filtered solids and the cleaning and maintenance of the filter cartridge, making it more convenient to use.

[0015] 2. This utility model utilizes the design of a rotating motor. The output end of the rotating motor can drive the rotating rod to rotate, which in turn drives the top rod to rotate. When the top rod rotates, it can impact the filter cartridge and filter screen to make them vibrate. This can prevent the filter cartridge and filter screen from being blocked by particles during centrifugation, thus affecting the output of the liquid and improving the centrifugation efficiency. Attached Figure Description

[0016] Figure 1 This is a perspective view of the overall structure of this utility model;

[0017] Figure 2 This utility model Figure 1 A partial three-dimensional sectional view of the structure;

[0018] Figure 3 This utility model Figure 2 Enlarged view of point A;

[0019] Figure 4 This utility model Figure 2 The front sectional view of the top rod.

[0020] In the diagram: 1. Tank body; 2. Support rod; 3. Anti-slip pad; 4. Support ring; 5. Filter cartridge; 6. Cover plate; 7. Feed inlet; 8. Drive mechanism; 9. Anti-blocking mechanism; 10. Connecting seat; 81. Fixing rod; 82. Protective cover; 83. Drive motor; 84. Gear 1; 85. Gear 2; 86. Rotating shaft; 87. Block; 88. Support block; 89. Annular groove; 91. Rotating motor; 92. Sealing ring; 93. Rotating rod; 94. Top rod; 95. Ball; 96. Guide block; 97. Spring. Detailed Implementation

[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0022] Please see Figure 1 , Figure 2 A centrifugal discharge device for a curing agent includes a tank 1. Multiple support rods 2 are fixedly connected to the bottom of the tank 1. Anti-slip pads 3 are fixedly connected to the bottom of the support rods 2. A support ring 4 is fixedly sleeved inside the tank 1. A filter cylinder 5 is rotatably sleeved inside the support ring 4. A cover plate 6 is threadedly connected inside the filter cylinder 5. A feed inlet 7 is fixedly connected to the top of the cover plate 6. A connecting seat 10 is fixedly connected to the bottom of the filter cylinder 5. A drive mechanism 8 is provided on the connecting seat 10. An anti-clogging mechanism 9 is provided on the filter cylinder 5.

[0023] Please see Figure 1 , Figure 2 , Figure 3 , Figure 4 The drive mechanism 8 includes a fixed rod 81, which is fixedly connected to the inner wall of the tank 1. A protective cover 82 is fixedly connected to the left end of the fixed rod 81. A drive motor 83 is fixedly installed inside the protective cover 82. A gear 1 84 is fixedly connected to the upper end of the output end of the drive motor 83. A gear 2 85 meshes with the left end of the gear 1 84. The gear 2 85 is fixedly sleeved on the outside of the rotating shaft 86. By designing the meshing of gear 1 84 and gear 2 85, the rotation of gear 1 84 can realize the rotation of the rotating shaft 86. Inside the protective cover 82, a rotating shaft 86 is rotatably sleeved via a bearing. A block 87 is fixedly connected to the top of the rotating shaft 86. The block 87 is slidably connected to the connecting seat 10. A support block 88 is fixedly sleeved on the outside of the filter cartridge 5. The support block 88 is slidably connected to the support ring 4. An annular groove 89 is opened inside the support ring 4. The support block 88 is slidably connected inside the annular groove 89. By designing the annular groove 89, the support block 88 can slide inside the annular groove 89. By designing the drive mechanism 8, the filter cartridge 5 can be driven to rotate.

[0024] Please see Figure 1 , Figure 2 , Figure 3 , Figure 4 The anti-clogging mechanism 9 includes a rotating motor 91. The rotating motor 91 is fixedly connected to the top of the support ring 4. The output end of the rotating motor 91 is rotatably connected to the support ring 4. The lower end of the output end of the rotating motor 91 is fixedly connected to a rotating rod 93. A sealing ring 92 is rotatably sleeved on the outside of the rotating rod 93. The sealing ring 92 is fixedly connected to the support ring 4. By designing the sealing ring 92, the connection between the rotating rod 93 and the support ring 4 can be sealed. A top rod 94 is slidably sleeved inside the rotating rod 93. A ball 95 is fixedly connected to the outside of the top rod 94. The ball 95 contacts the filter cartridge 5. A guide block 96 is slidably sleeved inside the top rod 94. The guide block 96 is fixedly connected to the rotating rod 93. A spring 97 is provided inside the top rod 94. One end of the spring 97 is fixedly connected to the guide block 96, and the other end of the spring 97 is fixedly connected to the top rod 94. By designing the spring 97, the force of the spring 97 can act on the top rod 94. By designing the anti-clogging mechanism 9, the clogging of the filter screen of the filter cartridge 5 can be prevented.

[0025] The specific implementation process of this utility model is as follows: When in use, the material is first added into the inside of the filter cylinder 5 through the feed port 7, and then the drive motor 83 is started. The output end of the drive motor 83 drives the gear 1 84 to rotate. The gear 1 84 drives the gear 2 85 and the rotating shaft 86 to rotate. The rotating shaft 86 drives the block 87 to rotate. The block 87 can drive the connecting seat 10 and the filter cylinder 5 to rotate. The filter cylinder 5 drives the support block 88 to slide along the annular groove 89, so that the material can be rotated and centrifuged.

[0026] During the rotation of the filter cartridge 5, the rotating motor 91 works simultaneously. The rotation direction of the rotating motor 91 is opposite to that of the filter cartridge 5. The rotating motor 91 can drive the rotating rod 93 to rotate, and the rotating rod 93 can drive the top rod 94 to rotate. The top rod 94 will simultaneously drive the ball 95 to rotate. When the ball 95 rotates and contacts the filter cartridge 5, the ball 95 will be squeezed and push the top rod 94 to slide inside the rotating rod 93. The top rod 94 can slide along the guide block 96 and stretch the spring 97. The impact of the ball 95 on the filter screen of the filter cartridge 5 will cause the filter screen to vibrate, which can shake off solids. This can prevent the filter screen of the filter cartridge 5 from being blocked by particles during centrifugation, thus affecting the output of liquid and improving the centrifugation efficiency.

[0027] After centrifugation is complete, move the filter cartridge 5 directly upwards. The filter cartridge 5 drives the support block 88 to move upwards and separate from the support ring 4. At the same time, the filter cartridge 5 drives the connecting seat 10 to move and separate from the block 87. Then the filter cartridge 5 can be directly removed from the tank 1, which facilitates the recovery of filtered solids and the cleaning and maintenance of the filter cartridge 5, making it more convenient to use.

[0028] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A centrifugal discharge device for a curing agent, comprising a tank (1), characterized in that: The bottom of the tank (1) is fixedly connected to multiple support rods (2), and the bottom of the support rods (2) is fixedly connected to anti-slip pads (3). The inside of the tank (1) is fixedly fitted with a support ring (4), and the inside of the support ring (4) is rotatably fitted with a filter cylinder (5). The inside of the filter cylinder (5) is connected to a cover plate (6) by threads. The top of the cover plate (6) is fixedly connected to a feed inlet (7). The bottom of the filter cylinder (5) is fixedly connected to a connecting seat (10), and a driving mechanism (8) is provided on the connecting seat (10). The filter cylinder (5) is provided with an anti-blocking mechanism (9).

2. The centrifugal discharge device for curing agent according to claim 1, characterized in that: The drive mechanism (8) includes a fixed rod (81), which is fixedly connected to the inner wall of the tank (1). A protective cover (82) is fixedly connected to the left end of the fixed rod (81). A drive motor (83) is fixedly installed inside the protective cover (82). A gear (84) is fixedly connected to the upper end of the output end of the drive motor (83). A rotating shaft (86) is rotatably sleeved inside the protective cover (82) through a bearing. A block (87) is fixedly connected to the top of the rotating shaft (86). The block (87) is slidably connected to the connecting seat (10). A support block (88) is fixedly sleeved on the outer side of the filter cartridge (5). The support block (88) is slidably connected to the support ring (4).

3. The centrifugal discharge device for curing agent according to claim 2, characterized in that: The left end of the first gear (84) is engaged with the second gear (85), which is fixedly sleeved on the outside of the rotating shaft (86).

4. The centrifugal discharge device for curing agent according to claim 1, characterized in that: The support ring (4) has an annular groove (89) inside, and a support block (88) is slidably connected inside the annular groove (89).

5. The centrifugal discharge device for curing agent according to claim 1, characterized in that: The anti-blocking mechanism (9) includes a rotating motor (91). The top of the support ring (4) is fixedly connected to the rotating motor (91). The output end of the rotating motor (91) is rotatably connected to the support ring (4). The lower end of the output end of the rotating motor (91) is fixedly connected to a rotating rod (93). A top rod (94) is slidably sleeved inside the rotating rod (93). A ball (95) is fixedly connected to the outside of the top rod (94). The ball (95) contacts the filter cartridge (5). A guide block (96) is slidably sleeved inside the top rod (94). The guide block (96) is fixedly connected to the rotating rod (93). A spring (97) is provided inside the top rod (94).

6. The centrifugal discharge device for curing agent according to claim 5, characterized in that: A sealing ring (92) is rotatably sleeved on the outer side of the rotating rod (93), and the sealing ring (92) is fixedly connected to the support ring (4).

7. The centrifugal discharge device for curing agent according to claim 5, characterized in that: A sealing ring (92) is rotatably sleeved on the outer side of the rotating rod (93), and the sealing ring (92) is fixedly connected to the support ring (4).