Novel glass fiber reinforced plastic salt filtering tower

By designing a gradually shrinking tower structure and a partition support system, the structural fragility of the fiberglass salt filter tower under high-temperature environments was solved, thereby improving both safety and filtration efficiency.

CN223861477UActive Publication Date: 2026-02-03EMEISHAN CHANGQING CHEM NEW MATERIAL CO LTD
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Patent Information

Application Number
CN202423292414.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-02-03
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Traditional fiberglass salt filter towers are prone to deformation and embrittlement under high temperature environments, and their structural design is not safe enough to ensure stable operation for a long time.

Method used

Design a tower structure that gradually tapers inward, combining baffles, support ribs, and liquid receiving tanks, and installing sight glass and level gauges to enhance structural strength, reduce media agitation, improve filtration efficiency, and enhance observation convenience.

Benefits of technology

This improves the structural strength of the filter tower, reduces the risk of deformation and embrittlement, enhances safety, and improves filtration efficiency and ease of operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of filters, and discloses a novel glass fiber reinforced plastic salt filtering tower which comprises a tower body, a partition plate, supporting ribs and a liquid receiving groove, the top of the tower body is cylindrical, the tower body shrinks inwards section by section from top to bottom, a support is arranged on the outer side of the shrinkage position of the tower body, and the partition plate is vertically installed on the upper portion of the inner side of the tower body. The liquid receiving tank is obliquely mounted on the partition plate on one side of the liquid inlet, the higher end of the liquid receiving tank is connected with the side wall of the upper part of the partition plate, the lower end of the liquid receiving tank is connected with the side wall of the lower part of the partition plate through a supporting rib, and a tail gas port is formed in the top of the tower body on the higher end of the liquid receiving tank; liquid outlets are formed in the bottom of the bottom end and the side wall of the lower part of the tower body. According to the filtering tower, the total capacity of a solution can be controlled through the tower body which is gradually shrunk inwards, so that larger pressure applied to the tower body by the capacity is reduced, the structural strength of the tower body can be effectively improved, the risks of deformation and embrittlement of the tower body are reduced, and the safety of the filtering tower is further improved.
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Description

Technical Field

[0001] This utility model relates to the field of filters, and in particular to a novel fiberglass salt filter tower. Background Technology

[0002] Fiberglass, also known as glass fiber reinforced plastic, is a lightweight, high-strength composite material composed of glass fibers and resin. It features corrosion resistance, wear resistance, and good insulation, and is widely used in construction, automotive, aerospace, and chemical industries. In the water treatment industry, Fiberglass is used to manufacture various filtration devices, such as salt filters, due to its excellent corrosion resistance. Salt filters come into contact with various corrosive media such as acids, alkalis, and organic solvents. Traditional metal filter towers cannot operate stably for extended periods, while Fiberglass possesses excellent chemical stability and corrosion resistance, resisting the erosion of these media. However, Fiberglass filter towers are lightweight and have a narrow temperature tolerance range, making them susceptible to deformation, embrittlement, and breakage at high temperatures. Therefore, their structure requires a specially designed configuration to ensure filtration safety. Utility Model Content

[0003] The purpose of this invention is to solve the problems in the background technology and to provide a new type of fiberglass salt filter tower.

[0004] The objective of this utility model is achieved through the following technical solution:

[0005] A novel fiberglass salt filter tower includes a tower body, a partition plate, supporting ribs, and a liquid receiving tank. The top of the tower body is cylindrical, and the tower body gradually tapers inward from top to bottom. A support is provided on the outer side of the tapered section of the tower body. The partition plate is vertically installed on the upper inner side of the tower body. A liquid inlet is machined on the top of the tower body on one side of the partition plate. The liquid receiving tank is installed obliquely on the partition plate on the side of the liquid inlet. The higher end of the liquid receiving tank is connected to the upper side wall of the partition plate, and the lower end of the liquid receiving tank is connected to the lower side wall of the partition plate through the supporting ribs. An exhaust gas port is machined on the top of the tower body at the higher end of the liquid receiving tank. A drain port is provided on the bottom of the tower body and on the lower side wall.

[0006] Multiple sight glass openings are evenly installed on the side walls of the top, upper, middle and lower parts of the tower body.

[0007] A level gauge is installed on the upper part of the tower.

[0008] A turbidity meter is installed on the tower body above the drain outlet at the bottom.

[0009] The beneficial effects of the novel fiberglass salt filter tower provided by this utility model are:

[0010] (1) By gradually contracting the tower body inward, the total volume of the solution can be controlled, thereby reducing the pressure exerted on the tower body by the volume, effectively improving the structural strength of the tower body, reducing the risk of tower body deformation and brittleness, and thus improving the safety of the filtration tower.

[0011] (2) By setting up a baffle, on the one hand, it is convenient to install the liquid receiving tank, and on the other hand, it can provide a buffer for the medium flowing into the liquid inlet, reducing the agitation between the newly flowing medium and the existing medium, thus affecting the filtration effect.

[0012] (3) By setting multiple viewing ports, it is possible to conveniently observe the state of various positions inside the tower, which facilitates adjustment. Attached Figure Description

[0013] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.

[0014] Figure 1 This is a structural schematic diagram provided for an embodiment of the present utility model.

[0015] Figure 2 This is a top view of the structure provided for an embodiment of the present utility model.

[0016] Attached reference numerals: 1. Tower body; 2. Support frame; 3. Baffle plate; 4. Supporting rib; 5. Liquid receiving tank; 6. Liquid inlet; 7. Exhaust gas outlet; 8. Liquid outlet; 9. Sight glass; 10. Liquid level gauge; 11. Turbidity meter. Detailed Implementation

[0017] Example

[0018] like Figure 1 , Figure 2As shown, the novel fiberglass salt filter tower provided in this embodiment includes a tower body 1, a partition plate 3, supporting ribs 4, and a liquid receiving tank 5. The top of the tower body 1 is cylindrical, and the tower body 1 gradually tapers inward from top to bottom. By gradually tapering the tower body 1, the total amount of solution inside the tower body 1 can be controlled, avoiding an increase in pressure at the bottom of the tower body 1, effectively ensuring the safety performance of the tower body 1. A support 2 is provided on the outer side of the taper section of the tower body 1. The partition plate 3 is vertically installed on the upper inner side of the tower body 1. A liquid inlet 6 is machined on the top of the tower body 1 on one side of the partition plate 3. The liquid receiving tank 5 is installed obliquely on the partition plate 3 on the side of the liquid inlet 6. A fireproof hole is also machined on the top of the tower body 1. The higher end of the liquid receiving tank 5 is connected to the upper side wall of the partition 3, and the lower end of the liquid receiving tank 5 is connected to the lower side wall of the partition 3 through the support rib 4. Through the liquid receiving tank 5, the newly flowing liquid can slowly flow into the filter tower to prevent liquid disturbance and affect the filtration effect. In this process, the partition 3 can also reduce the flow of liquid. The top of the tower body 1 at the higher end of the liquid receiving tank 5 is machined with a tail gas port 7. The bottom of the tower body 1 and the lower side wall are provided with liquid drain ports 8. A turbidity meter 11 is installed on the tower body 1 above the liquid drain port 8 at the bottom. The turbidity meter 11 is used to measure the sedimentation state of suspended matter in the liquid and provides a reference signal for the opening and closing of the liquid drain port 8.

[0019] To facilitate observation of the filtration effect, multiple sight glass ports 9 are evenly installed on the side walls of the top, upper, middle and lower parts of the tower body 1.

[0020] To prevent liquid from overflowing the filter tower, a level gauge 10 is installed on the upper part of the tower body 1. The level gauge 10 provides a reference signal for replenishing liquid at the inlet 6.

[0021] The above description is merely a preferred embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any modifications and substitutions based on the technical solutions and inventive concepts provided by this utility model should be covered within the protection scope of this utility model. It should be noted that the structures or components illustrated in the accompanying drawings are not necessarily drawn to scale, and descriptions of well-known components, processing technologies, and processes are omitted to avoid unnecessarily limiting this utility model.

Claims

1. A new type of glass reinforced plastic salt bar filter column characterized in that: The utility model relates to a tower body (1), baffle (3), support rib (4) and liquid receiving groove (5), the top of tower body (1) is cylindrical, tower body (1) is gradually contracted inward from top to bottom, the outside of tower body (1) contraction is equipped with support (2), baffle (3) is vertically installed on the inside upper portion of tower body (1), the top of tower body (1) is processed with liquid inlet (6) on baffle (3) one side, liquid receiving groove (5) is obliquely installed on baffle (3) one side of liquid inlet (6), the higher end of liquid receiving groove (5) is connected with the sidewall of baffle (3) upper portion, the lower end of liquid receiving groove (5) is connected with the sidewall of baffle (3) lower portion through support rib (4), the top of tower body (1) higher end of liquid receiving groove (5) is processed with tail gas port (7), the bottom of tower body (1) bottom end and lower portion sidewall are all equipped with liquid outlet (8).

2. The new type of glass steel salt bar filter tower according to claim 1, characterized in that: The top, upper portion, middle portion and lower portion sidewall of tower body (1) are all uniformly installed with multiple sight glass ports (9).

3. The new type of glass steel salt bar filter tower according to claim 1, characterized in that: The upper portion of tower body (1) is installed with liquid level meter (10).

4. The new type of glass steel salt bar filter tower according to claim 1, characterized in that: The turbidimeter (11) is installed on the tower body (1) above the liquid outlet (8) at the bottom.