Recycling device for ceramic sealing element

By designing a recycling and processing device for ceramic seals, which combines crushing and screening components, the problems of resource waste and environmental pollution caused by waste ceramic seals have been solved, and efficient recycling and reuse have been achieved.

CN224236950UActive Publication Date: 2026-05-15HUANGSHAN HAOYU ELECTROMECHANICAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUANGSHAN HAOYU ELECTROMECHANICAL TECH CO LTD
Filing Date
2025-06-10
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

In the existing technology, the main way to deal with waste ceramic seals is through simple collection and storage, which leads to resource waste and environmental pollution. Furthermore, the lack of effective recycling and processing equipment increases the difficulty of subsequent processing and fails to fully utilize the potential value of ceramic seals.

Method used

A recycling device for ceramic seals was designed, comprising a crushing component and a screening component. By using a combination of crushing shaft and screen plate, the ceramic seals are crushed and screened, and collected as powder and lumps respectively to meet different recycling needs.

Benefits of technology

This improves the recycling and reuse rate of ceramic seals, reduces environmental pollution, and achieves efficient recycling and resource utilization of ceramic seals.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a recovery processing device for a ceramic sealing element, which comprises a rack, a recovery box arranged on the rack, and a crushing component and a screening component which are respectively arranged in the recovery box, the crushing assembly comprises a crushing shaft which is provided with a plurality of crushing discs and drives the interior of a feeding hopper arranged at the top of the recycling box to rotate through a driving part arranged on the rack. The connecting plate is arranged at a discharging port in the bottom of the feeding hopper, connected through multiple sets of compressed springs and arranged in a sliding mode, the multiple sets of vibrators are installed on the periphery of the connecting plate, the interior of the screen plate is installed at a certain inclination angle, and a plurality of screen holes are formed in the screen plate. A second discharging port is formed in the interior of the connecting plate in the inclination direction of the screen plate. And a first collecting box and a second collecting box are respectively arranged on the recycling box which is arranged below the connecting plate and at the position of the second discharge hole on the connecting plate. The recycling device is a novel recycling device for the ceramic sealing element.
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Description

Technical Field

[0001] This utility model relates to the field of ceramic recycling technology, specifically to a recycling device for ceramic seals. Background Technology

[0002] Ceramic seals are widely used in many industrial fields, such as machinery manufacturing and petrochemicals. During actual use, a large number of waste ceramic seals are generated due to wear and aging. Currently, the disposal method for waste ceramic seals is mostly simple collection and storage. Large accumulations of ceramic seals not only occupy space, but also easily lead to corrosion due to prolonged lack of treatment, resulting in resource waste and environmental pollution. This further increases the difficulty of subsequent recycling and processing, failing to fully realize the potential value of waste ceramic seals. An effective recycling and reuse system for ceramic seals is still lacking. Utility Model Content

[0003] The purpose of this invention is to provide a recycling and processing device for ceramic seals. This device can conveniently collect batches of waste ceramic seals in a unified manner. In addition, the crushing and screening components installed on it can separately crush and screen the ceramic seals, thereby improving the recycling effect and utilization rate of ceramic seals.

[0004] The technical solution adopted by this utility model to solve the above problems is:

[0005] A recycling device for ceramic seals includes a frame and a recycling bin mounted on it, as well as a crushing assembly and a screening assembly respectively disposed inside the recycling bin. The crushing assembly includes a crushing shaft with several crushing discs arranged on it and driven by a drive component mounted on the frame to rotate inside a feed hopper mounted on the top of the recycling bin. The screening assembly includes a connecting plate located at the bottom outlet of the feed hopper and connected and slidably mounted by multiple sets of compression springs, multiple sets of vibrators mounted around the connecting plate, and a screen plate installed at a certain angle inside with several screen holes. A second discharge port is provided along the inclined direction of the screen plate inside the connecting plate. A first collection box and a second collection box are respectively installed on the recycling bin located below the connecting plate and above the second discharge port.

[0006] Preferably, the crushing shaft includes a first crushing shaft and a second crushing shaft arranged at intervals and interlocked and rotated by a gear set. Two sets of guide shafts are also installed on both sides of the feed hopper located above the first crushing shaft and the second crushing shaft. Several guide plates are arranged at intervals on the guide shafts, and the bottom of the guide plates is placed in the groove formed by adjacent crushing discs on the first crushing shaft and the second crushing shaft.

[0007] Preferably, a through groove is provided on one side wall of the recycling bin, the first collection bin is placed in the through groove and is slidably mounted on a support plate provided in the recycling bin below the through groove, a support is installed on one side wall of the recycling bin located below the second discharge port, and the second collection bin is secured to the support by multiple sets of protrusions provided on the support.

[0008] Preferably, a baffle is also installed on the side wall of the recycling box located at the second discharge port on the connecting plate.

[0009] Preferably, the top of the recycling bin located above the feed hopper is also rotatably equipped with a cover, and a sensor is installed at the connection between the cover and the top of the recycling bin.

[0010] Compared with the prior art, this utility model has the following advantages and effects:

[0011] This utility model relates to a recycling and processing device for ceramic seals. The device, through its structure of a recycling bin on a frame and an internal feeding hopper, facilitates the unified collection of batches of waste ceramic seals. Combined with crushing and screening components within the recycling bin, it allows for convenient operation while enabling separate crushing and screening processes for the ceramic seals. After processing by the crushing and screening components, the batches of ceramic seals, in powder and block forms respectively, are placed in the first and second collection bins, respectively. This satisfies diverse recycling needs, maximizes the potential value of waste ceramic seals, improves the recycling efficiency and raw material reuse rate of batches of waste ceramic seals, and minimizes environmental pollution during the recycling process, thus improving the processing effect and applicability of ceramic seals. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the overall structure of a recycling and processing device for ceramic seals according to an embodiment of the present invention.

[0013] Figure 2 This is a partially enlarged view of the internal structure of the recycling bin in an embodiment of this utility model.

[0014] Figure 3This is an enlarged view of the structure of the crushing and screening components inside the recycling bin on the frame of this utility model embodiment.

[0015] Figure 4-5 This is a partial enlarged view of the recycling bin and its internal screening components according to an embodiment of this utility model.

[0016] Figure 100: Frame 100, Drive Unit 101, Recycling Box 1, Feed Hopper 11, Discharge Port 111, Outer Edge 112, Through Slot 12, Support Plate 13, Support 14, Protrusion 141, Stop 15, Cover 16, Sensor 161, Crushing Assembly 2, Crushing Disc 20, Divider 201, Crushing Shaft 21, Gear Set 210, First Crushing Shaft 211, Second Crushing Shaft 212, Guide Shaft 22, Guide Plate 221, Screening Assembly 3, Connecting Plate 31, Compression Spring 32, Vibrator 33, Screen Plate 34, Screen Hole 341, First Collection Box 4, Second Collection Box 5. Detailed Implementation

[0017] The present invention will now be described in detail with reference to the accompanying drawings and through embodiments. The following embodiments are explanations of the present invention, but the present invention is not limited to the following embodiments.

[0018] See Figure 1-5 This embodiment relates to a recycling device for ceramic seals, including a frame 100 and a recycling box 1 mounted on it, as well as a crushing assembly 2 and a screening assembly 3 respectively disposed inside the recycling box 1. The crushing assembly 2 includes a crushing shaft 21 with several crushing discs 20 arranged on it and driven by a driving component 101 mounted on the frame 100 to rotate inside a feed hopper 11 mounted on the top of the recycling box 1. The screening assembly 3 includes a connecting plate 31 located at the bottom outlet 111 of the feed hopper 11 and connected and slidably disposed by multiple sets of compression springs 32, multiple sets of vibrators 33 mounted around the connecting plate 31, and a screen plate 34 mounted at a certain inclination angle with several screen holes 341. A second outlet 111 is provided along the inclination direction of the screen plate 34 inside the connecting plate 31. A first collection box 4 and a second collection box 5 are respectively mounted on the recycling box 1 located below the connecting plate 31 and above the second outlet 111.

[0019] Specifically in this embodiment, such as Figure 1 The overall structure of this recycling and processing device for ceramic seals shown can be combined with... Figure 2-4As shown, a batch of waste ceramic seals can be fed into the feed hopper 11 located at the top of the recycling bin 1 on the frame 100. The batch of ceramic seals located in the feed hopper 11 and above the crushing shaft 21 can be crushed as the drive component 101 drives the crushing shaft 21 and the several crushing discs 20 on it to rotate. During this process, the ceramic seals move along the discharge port 111 at the bottom of the feed hopper 11 and are crushed by the crushing component 21 and the several crushing discs 20 on it. After being crushed by the crushing component 21 and the several crushing discs 20 on it, the ceramic seals fall onto the screen plate 34 located inside the connecting plate 31 at the discharge port 111 in the screening component 3. At the same time, multiple sets of vibrators 33 on the connecting plate 31 work to drive the connecting plate 31, which is connected to multiple sets of compression springs 32 on the matching outer edge 112 at the discharge port 111 of the feed hopper 11, to vibrate continuously. This allows the ceramic seals, after being crushed by the crushing component 2, to be screened inside the connecting plate 31. The upper batch of ceramic sealing rings undergoes a screening process. Specifically, the powdered ceramic sealing components can be placed into the first collection box 4 set in the lower recycling box 1 through several sieve holes 341 on the sieve plate 34 for temporary storage. At the same time, the block-shaped ceramic sealing components separated by the sieve plate 34 can be vibrated and screened up and down on the connecting plate 31 by the vibrator 33 around the bottom discharge port 111 of the feed hopper 11. They can move along the second discharge port 111 set on one side of the connecting plate 31 on the sieve plate 34 set at a certain inclined angle, and fall into the second collection box 5 set at the corresponding position on the side of the recycling box 1 for temporary storage. At the same time, depending on the specific block size of the batch of ceramic sealing components temporarily stored in the second collection box 5, they can be further fed into the feed hopper 11 for secondary or even multiple crushing and screening processes, thereby meeting different recycling and processing requirements. This device, through the structural arrangement of the recycling bin 1 on the frame 100 and its internal feed hopper 11, can conveniently collect batches of waste ceramic seals. Simultaneously, the crushing component 2 and screening component 3 installed inside the recycling bin 1 facilitate operation while allowing for separate crushing and screening of the ceramic seals. After processing by the crushing component 2 and screening component 3, the batches of ceramic seals, in powder and block forms respectively, are placed in the first collection bin 4 and the second collection bin 5, respectively. This meets different recycling needs, realizes the potential value of waste ceramic seals, improves the recycling efficiency and raw material reuse rate of batches of waste ceramic seals, and, combined with the overall structural design of this ceramic seal recycling device, minimizes environmental pollution during the recycling process, improving the processing effect and applicability of ceramic seals.

[0020] like Figure 2As shown, the crushing shaft 21 includes a first crushing shaft 211 and a second crushing shaft 212, which are respectively arranged at intervals and interlocked and rotated by a gear set 210. Two sets of guide shafts 22 are also installed on both sides of the feed hopper 11, which is respectively located above the first crushing shaft 211 and the second crushing shaft 212. Several guide plates 221 are arranged at intervals on the guide shafts 22, and the bottoms of the guide plates 221 are respectively placed in the grooves 201 formed by adjacent crushing discs 20 on the first crushing shaft 211 and the second crushing shaft 212. The first crushing shaft 211 and the second crushing shaft 212, with this crushing structure, can... Figure 3 Driven by the drive component 101, the components rotate in the corresponding direction via meshing gear sets 210. During this rotation, the arrangement of several crushing discs 20 spaced apart and interlocked on the first and second crushing shafts 211 and 212 further enhances the crushing effect and stability of the ceramic seals. Furthermore, the connection between the two sets of guide shafts 22 mounted on both sides of the feed hopper 11 above the first and second crushing shafts 211 and their spaced guide plates 221 and the crushing shafts 21 further improves the stability and efficiency of crushing and feeding batches of ceramic seals through the crushing shafts 21 and the crushing discs 20. This also disperses the material, improving the crushing effect and operational stability of the crushing component 2, and effectively reducing unnecessary deformation or damage to the feed hopper 11 wall.

[0021] A through groove 12 is formed on one side wall of the recycling bin 1. The first collection bin 4 is placed in the through groove 12 and slidably mounted on a support plate 13 provided inside the recycling bin 1 below the through groove 12. A support 14 is installed on the side wall of the recycling bin 1 located below the second discharge port 111. The second collection bin 5 is engaged with the support 14 by multiple sets of protrusions 141 provided on the support 14. Specifically, from... Figure 3 and Figure 5 As can be seen, the first collection box 4, located within the through groove 12 and slidably mounted on the inner support plate 13 of the recycling box 1, allows for convenient pulling and subsequent processing operations such as transfer via the internal ceramic sealing ring. Furthermore, the structure of the through groove 12 prevents the first collection box 4 from shifting. Figure 1 and Figure 4It can be seen that the second collection box 5 placed on the support 14 can be clamped and position-limited by multiple sets of protrusions 141 provided at the corresponding positions of its seat body, so that the second collection box 5 is not prone to displacement. The first collection box 4 and the second collection box 5 that are detachably connected to the corresponding positions of the recycling box 1 respectively by using this connection method have high feeding stability and are convenient for subsequent processing operations of the batch of ceramic seals temporarily stored inside, with high operation convenience and use flexibility.

[0022] A retaining seat 15 is also installed on the side wall of one side of the recycling box 1 at the second discharge port 111 on the connecting plate 31. The addition of the structure of the retaining seat 15 can effectively prevent the phenomenon that the bulk ceramic seal rings in the form of blocks on the sieve plate 34 during the screening process of the screening component 3 fly out and fall outside the second collection box 5 when moving out through the second discharge port 111, further improving the discharge stability at the second discharge port 111 and the collection effect of temporarily storing in the second collection box 5.

[0023] A cover body 16 is also rotatably provided on the top of the recycling box 1 above the feed hopper 11. A sensor 161 is also installed at the connection between the cover body 16 and the top of the recycling box 1. Specifically, from Figure 1 and Figure 2 it can be seen that the addition of the structure of the cover body 16 facilitates operations such as opening and closing, and can further improve the airtightness inside the recycling box 1 during the working process of this recycling and processing device for ceramic seals, effectively preventing the phenomenon of splashing of the bulk ceramic seal rings during the recycling and processing process, and can also effectively reduce the further pollution of the external environment caused by the internal dust flying out. In addition, the addition of the structure of the sensor 161 at the connection between the cover body 16 and the top of the recycling box 1, the signal line of the sensor 161 can be connected to the driving component 101 to achieve a linkage control process. The sensor 161 can detect the position of the cover body 16 on the recycling box 1 in real time. When the cover body 16 is opened, the working process of the driving component 101 can be stopped immediately. On the contrary, when the cover body 16 is in the closed state, the driving component 101 can perform normal driving work. The addition of the structure of the sensor 161 and the setting of the corresponding connection method can further improve the functional diversity and operation safety of this recycling and processing device for ceramic seals.

[0024] The above content described in this specification is only an example of the present invention. Those skilled in the technical field to which the present invention belongs can make various modifications or supplements to the described specific embodiments or use similar methods to replace them, as long as they do not deviate from the content of this specification of the present invention or exceed the scope defined by this claim book, they should all belong to the protection scope of the present invention.

Claims

1. A recycling and processing device for ceramic seals, characterized in that: The system includes a frame and a recycling bin mounted on it, as well as a crushing component and a screening component respectively placed inside the recycling bin. The crushing component includes a crushing shaft with several crushing discs arranged on it and driven by a drive component mounted on the frame to rotate inside the feed hopper mounted on the top of the recycling bin. The screening component includes a connecting plate located at the bottom outlet of the feed hopper and connected and slidably mounted by multiple sets of compression springs, as well as multiple sets of vibrators mounted around the connecting plate and a screen plate installed at a certain angle with several screen holes. A second discharge port is provided along the inclined direction of the screen plate inside the connecting plate. A first collection box and a second collection box are respectively installed on the recycling bin located below the connecting plate and above the second discharge port.

2. The recycling and processing device for ceramic seals according to claim 1, characterized in that: The crushing shaft includes a first crushing shaft and a second crushing shaft arranged at intervals and interlocked and rotated by gear sets. Two sets of guide shafts are also installed on both sides of the feed hopper located above the first crushing shaft and the second crushing shaft. Several guide plates are arranged at intervals on the guide shafts, and the bottom of the guide plates is placed in the groove formed by adjacent crushing discs on the first crushing shaft and the second crushing shaft.

3. The recycling and processing device for ceramic seals according to claim 1, characterized in that: A through groove is provided on one side wall of the recycling box. The first collection box is placed in the through groove and is slidably mounted on a support plate provided in the recycling box below the through groove. A support is installed on the side wall of the recycling box located below the second discharge port. The second collection box is secured to the support by multiple sets of protrusions provided on the support.

4. The recycling and processing device for ceramic seals according to claim 1, characterized in that: A baffle is also installed on the side wall of the recycling bin located at the second discharge port on the connecting plate.

5. The recycling and processing device for ceramic seals according to claim 1, characterized in that: The top of the recycling bin, located above the feed hopper, is also equipped with a rotatable cover, and a sensor is installed at the connection between the cover and the top of the recycling bin.