Ceramic fiber cotton washing device

By optimizing the design of the ceramic fiber cotton washing system, the problems of fiber breakage and incomplete impurity removal have been solved, achieving higher stability and slag removal effect, ensuring product quality and reducing raw material waste.

CN223866952UActive Publication Date: 2026-02-03ZIBO YUCHENG ENERGY SAVING & ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202520208361.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-10
Publication Date
2026-02-03
Estimated Expiration
2035-02-10

AI Technical Summary

Technical Problem

The existing washing process for ceramic fiber cotton suffers from fiber breakage and incomplete removal of impurities, which affects product quality and wastes raw materials.

Method used

A ceramic fiber cotton washing system was designed, which includes a pulp mixing device and a washing device. By controlling the fiber cotton flow rate, setting up a pulp storage tank and a slag remover, and combining a filter and a white water tank, the pulp delivery and impurity removal process is optimized, reducing fiber breakage and improving slag discharge effect.

Benefits of technology

The stability of the ceramic fiber cotton washing device has been improved, fiber cotton breakage has been reduced, impurity removal effect has been enhanced, product quality has been ensured, and raw material waste has been reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a ceramic fiber cotton washing device, and belongs to the field of ceramic fiber cotton preparation. Comprising a pulp preparation device and a washing device, the pulp preparation device comprises a pulp mixing barrel, a pulping barrel, a pulp storage barrel and a white water tank, and the washing device comprises a washing tank, a slag separator and a filter; the pulp mixing barrel is connected with the pulping barrel, the pulping barrel is connected with the pulp storage barrel, the pulp storage barrel is connected with the washing tank, the bottom of the washing tank is connected with the slag separator, the slag separator is connected with the filter, the filter is connected with the white water tank, and the white water tank is connected with the pulp mixing barrel, the pulping barrel, the pulp storage barrel, the washing tank and the slag separator through the water delivery pump. And a control valve is arranged on the pipeline for connecting the washing tank with the slag separator. According to the ceramic fiber cotton washing device, the stability of the ceramic fiber cotton washing device is further improved, the breakage of fiber cotton is reduced, and the deslagging effect is improved.
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Description

Technical Field

[0001] This utility model relates to a ceramic fiber cotton washing device, belonging to the field of ceramic fiber cotton preparation. Background Technology

[0002] During the washing process of ceramic fiber cotton, broken short fibers and impurities need to be removed to maintain the quality of the fiber cotton; this step is called slag removal. A good ceramic fiber cotton washing device should focus on reducing fiber breakage and ensuring cleaner slag removal, thus guaranteeing good product quality and minimizing waste of raw fiber. Summary of the Invention

[0003] Based on the problems described in the background, the problem that this utility model aims to solve is:

[0004] How to better reduce fiber cotton breakage and improve slag removal efficiency.

[0005] To achieve the above objectives, this utility model provides the following technical solution:

[0006] A ceramic fiber cotton washing device includes a pulp mixing device and a washing device. The pulp mixing device includes a mixing tank, a beating tank, a storage tank, and a white water tank. The washing device includes a washing tank, a descaling device, and a filter. The mixing tank is connected to the beating tank, the beating tank is connected to the storage tank, the storage tank is connected to the washing tank, the bottom of the washing tank is connected to the descaling device, the descaling device is connected to the filter, and the filter is connected to the white water tank. The white water tank is connected to the mixing tank, the beating tank, the storage tank, the washing tank, and the descaling device via a water pump. A control valve is provided on the pipeline connecting the washing tank to the descaling device.

[0007] Preferably, there are three washing tanks, which are connected in series.

[0008] Preferably, the pulp mixing device is located above the washing device. By controlling the height of the fiber cotton between the pulp storage tank and the washing tank, a suitable flow rate is maintained, reducing the use of valves and friction in the pipeline, thus ensuring the production of fewer short fibers.

[0009] Preferably, an intermittent pump is also provided on the connecting pipeline between the water pump and the washing tank.

[0010] Ceramic fiber cotton is slurry mixed using a slurry mixing device and then transported to the washing tank. Upon opening the control valve, short fibers and impurities enter the desander from the bottom. The white water tank powers the desander and recovers a certain amount of water through a filter, returning it to the white water tank. To reduce fiber breakage during slurry mixing, a slurry storage tank is installed. The large capacity of the storage tank ensures that subsequent steps can continue for a certain period if problems occur during slurry mixing. Timely troubleshooting ensures stable operation of the equipment and improves its stability. A control valve between the washing tank and the desander allows impurities from the washing tank to be periodically discharged into the desander, further ensuring the quality of the washed cotton.

[0011] The beneficial effects of this utility model are:

[0012] This invention further improves the stability of the ceramic fiber cotton washing device, reduces fiber cotton breakage, and improves slag discharge efficiency. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the present invention.

[0014] In the diagram: 1 is the mixing tank; 2 is the pulping tank; 3 is the storage tank; 4 is the white water tank; 5 is the washing tank; 6 is the slag remover; 7 is the filter; 8 is the water pump; 9 is the control valve; and 10 is the indirect pump. Detailed Implementation

[0015] Example 1: A ceramic fiber cotton washing device includes a pulp mixing device and a washing device. The pulp mixing device includes a mixing tank 1, a beating tank 2, a storage tank 3, and a white water tank 4. The washing device includes a washing tank 5, a descaling device 6, and a filter 7. The mixing tank 1 is connected to the beating tank 2, the beating tank 2 is connected to the storage tank 3, the storage tank 3 is connected to the washing tank 5, the bottom of the washing tank 5 is connected to the descaling device 6, the descaling device 6 is connected to the filter 7, the filter 7 is connected to the white water tank 4, and the white water tank 4 is connected to the mixing tank 1, the beating tank 2, the storage tank 3, the washing tank 5, and the descaling device 6 via a water pump 8. A control valve 9 is provided on the pipeline connecting the washing tank 5 to the descaling device 6.

[0016] There are three washing tanks 5, and the three washing tanks 5 are connected in series.

[0017] The slurry mixing device is located above the washing device.

[0018] An intermittent pump 10 is also installed on the connecting pipeline between the water pump 8 and the washing tank 5.

[0019] This invention further improves the stability of the ceramic fiber cotton washing device, reduces fiber cotton breakage, and improves slag discharge efficiency.

Claims

1. A ceramic fiber cotton washing device, comprising a pulping device and a washing device, characterized in that, The slurry mixing device includes a mixing tank (1), a beating tank (2), a storage tank (3), and a white water tank (4). The washing device includes a washing tank (5), a slag remover (6), and a filter (7). The mixing tank (1) is connected to the beating tank (2), the beating tank (2) is connected to the storage tank (3), the storage tank (3) is connected to the washing tank (5), the bottom of the washing tank (5) is connected to the slag remover (6), the slag remover (6) is connected to the filter (7), the filter (7) is connected to the white water tank (4), and the white water tank (4) is connected to the mixing tank (1), the beating tank (2), the storage tank (3), the washing tank (5), and the slag remover (6) via a water pump (8). A control valve (9) is provided on the pipeline connecting the washing tank (5) to the slag remover (6).

2. The ceramic fiber cotton washing device according to claim 1, characterized in that, The washing tank (5) is provided in three parts, and the three washing tanks (5) are connected in series.

3. The ceramic fiber cotton washing device according to claim 1, characterized in that, The slurry mixing device is located above the washing device.

4. The ceramic fiber cotton washing device according to claim 1, characterized in that, An intermittent pump (10) is also provided on the connecting pipeline between the water pump (8) and the washing tank (5).