Filtering mechanism for accelerator production

By employing a ring-shaped arrangement of tubular filter elements and multiple locking designs for the tank body and lid in the production of quick-setting agents, the efficiency and stability issues of filtration equipment have been resolved, achieving efficient and convenient filtration operations.

CN223586679UActive Publication Date: 2025-11-25南京福盛新材料有限公司
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423155201.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-11-25
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

Existing filtration equipment has limitations in terms of filtration efficiency, cleaning and maintenance, equipment stability, and ease of operation. The filter element design is not reasonable enough, resulting in unstable filtration effect, equipment vibration, and complicated operation.

Method used

The system employs tubular filter elements arranged in a ring at equal intervals, secured by an internally threaded handle and pressure plate. Multiple locking designs for the tank body and lid ensure filter element stability and sealing, simplifying the operation process.

Benefits of technology

It improves filtration efficiency and processing capacity, reduces downtime, enhances equipment stability and ease of operation, and ensures product quality.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223586679U_ABST
    Figure CN223586679U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of accelerator production, and discloses a filter mechanism for accelerator production, which comprises a tank body, a tubular filter element and a tank cover, one side of the top end of the tank body is provided with a feed port, the bottom of the tank body is provided with a discharge port, a partition plate is arranged in the tank body, and an inner cavity of the tank body is divided into a filter chamber and a discharge chamber by the partition plate; the four tubular filter elements are annularly arranged at equal intervals and detachably installed on the partition plate, and the tubular filter elements are installed in the filter cavity and then pressed and fixed through the pressing plate. The tank cover is rotatably connected to the tank body, so that the tank cover is matched with the tank body to be opened or closed, and when the tank cover is matched with the tank body to be closed, the tank cover is locked and positioned on the tank body through an internal thread handle A. The tubular filter elements are annularly arranged at equal intervals, so that the filtering area is increased, and the efficiency and the treatment capacity are improved. The detachable design of the filter element enables cleaning and replacement to be more convenient, the filtering efficiency is improved, and the stability of the equipment and the convenience of operation are enhanced.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of accelerator production, specifically relates to a filter mechanism for accelerator production. BACKGROUND

[0002] In the accelerator production process, the filtering link is the key step to ensure product quality. The traditional filtering equipment usually includes tank body, filter core and tank cover and other components, and its working principle mainly utilizes the pores of the filter core to intercept solid impurities in raw materials to realize liquid-solid separation. However, the existing filtering equipment has certain limitations in filtering efficiency, cleaning and maintenance, equipment stability and operation convenience.

[0003] The filter core design of the existing filtering equipment often cannot effectively improve the filtering area, resulting in low filtering efficiency and limited processing capacity. Since the fixing mode of the filter core and the partition plate is not convenient enough, a lot of time is spent on cleaning and replacing the filter core, which affects the continuity and efficiency of production. The filter core may be displaced during the filtering process due to vibration and other reasons, resulting in unstable filtering effect and affecting product quality. The connection mode of the tank body and the tank cover may not be firm enough, and vibration may occur during operation, affecting the stability and safety of the equipment. The opening and closing mode of the tank cover may not be simple enough, increasing the operation difficulty and maintenance time.

[0004] In view of this, we propose a filter mechanism for accelerator production. INVENTION CONTENTS

[0005] The present application aims to solve the technical problems of the existing technology in filtering efficiency, cleaning and maintenance, equipment stability and operation convenience.

[0006] To achieve the above purpose, the utility model provides the following technical scheme:

[0007] A filter mechanism for accelerator production, comprising a tank body, a tubular filter core and a tank cover, the tank body is provided with a feed inlet on one side of the top end and a discharge outlet at the bottom, a partition plate is arranged in the tank body, and the inner cavity of the tank body is divided into a filtering chamber and a discharge chamber by the partition plate; the tubular filter core is arranged in a ring shape at four equal distances and is detachably mounted on the partition plate, and the tubular filter core is fixed by pressing and mounting after being installed in the filtering chamber; the tank cover is rotatably connected to the tank body to open or close the tank cover in cooperation with the tank body, and when the tank cover is closed in cooperation with the tank body, the tank cover is locked and positioned on the tank body by an internal thread handle A.

[0008] As preferred, four inner threaded interfaces are arranged on the baffle in a ring shape at equal intervals, the tubular filter core is connected to the inner threaded interface through the outer threaded port at the bottom of the tubular filter core, and a sealing ring is further arranged between the tubular filter core and the baffle. The tubular filter core is connected to the inner threaded interface on the baffle through the outer thread at the bottom, and the sealing ring is used, so that the interface has good sealing performance and prevents material leakage.

[0009] As preferred, a support rod with an outer threaded part at the top is fixed at the center of the baffle, and a penetrating hole for penetrating the support rod is arranged at the center of the pressing plate. The pressing plate can be accurately positioned above the limiting disc, so that the installation position of the filter core is accurate. The design of the support rod makes the installation and removal of the pressing plate more convenient.

[0010] As preferred, the pressing plate is provided with positioning holes for penetrating and positioning the four tubular filter cores, and the pressing plate is limited above the limiting disc at the top of the tubular filter core. Deviation during installation of the filter core is avoided.

[0011] As preferred, an inner threaded handle B is threadedly sleeved on the outer threaded part, the pressing plate is locked and fixed on the limiting disc through the inner threaded handle B, and then the tubular filter core is locked and positioned in the filter chamber. The handle can be conveniently rotated to lock the pressing plate, so that the tubular filter core is fixed in the filter chamber, and daily maintenance and replacement of the filter core are facilitated.

[0012] As preferred, the tank body is provided with a support block away from the feeding port, a reverse L-shaped support is rotatably connected to the support block, a fixed block is fixedly arranged at the end of the reverse L-shaped support away from the support block, the fixed block is penetratingly arranged with an outer threaded rod at the top of the tank cover, and an inner threaded handle A is threadedly sleeved on the outer side of the outer threaded rod and limited at the top of the fixed block. The fixed block cooperates with the outer threaded rod at the top of the tank cover, so that the tank cover can be easily opened and closed.

[0013] As preferred, a vertical sliding block is fixedly arranged on one side of the tank cover, and the vertical sliding block is slidingly guided in cooperation with a vertical sliding rail fixedly arranged on the reverse L-shaped support. The vertical sliding block slidingly guides in cooperation with the sliding rail, so that the tank cover is more smooth when being opened and closed.

[0014] As preferred, four U-shaped blocks A are arranged on the outer side of the tank opening at the top of the tank body in a ring shape at equal intervals, shaft rods are rotatably connected to the inner side of the U-shaped blocks A, the shaft rods are clamped into U-shaped blocks B fixed on the tank cover after being rotated, and an inner threaded handle C is threadedly sleeved on the outer side of the shaft rods to lock and fix the tank cover on the tank body. The installation and removal of the tank cover are fast and efficient.

[0015] As preferred, a fixed ring is fixedly arranged on the outer side of the tank body, and four installation supporting legs are arranged on the bottom of the fixed ring in a ring shape at equal intervals.

[0016] Compared with the prior art, the technical effects and advantages of the utility model are:

[0017] The quick-setting agent production filtering mechanism increases the filtering area and improves the efficiency and processing capacity through the annular equidistant arrangement of the tubular filter cores. The detachable design of the filter cores makes cleaning and replacement more convenient, reduces downtime, and improves production continuity. The stability of the filter cores during the filtering process is ensured through the fixing of the pressing plate and the locking of the internal threaded handle, maintaining stable filtering effect. The various locking and supporting designs of the tank body and the tank cover improve the overall stability of the equipment and reduce vibration during operation.

[0018] The design of the internal threaded handle and the slider makes the opening and closing of the tank cover smoother, reducing the difficulty of operation. The sealing of the tank cover and the tank body is ensured through various locking and fixing designs to prevent material leakage.

[0019] The quick-setting agent production filtering mechanism not only improves the filtering efficiency, but also enhances the stability of the equipment and the convenience of operation, thereby ensuring the quality and production efficiency of the quick-setting agent product. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 is a structural schematic view of the present utility model;

[0021] Figure 2 is a half cutaway view of the present utility model;

[0022] Figure 3 is a structural schematic view of the present utility model after the tank cover is opened.

[0023] Figure 4 is a structural schematic view of the present utility model of the partition plate and the tubular filter core and the pressing plate cooperating assembly;

[0024] Figure 5 is an exploded view of the present utility model. Figure 4

[0025] In the figure: 1, tank body; 2, feed inlet; 3, discharge outlet; 4, partition plate; 401, internal threaded interface; 402, external threaded part; 403, support rod; 5, filtering chamber; 6, discharge chamber; 7, tubular filter core; 701, external threaded port; 702, limiting disc; 8, pressing plate; 801, through insertion hole; 802, positioning hole; 9, tank cover; 10, internal threaded handle A; 11, internal threaded handle B; 12, support block; 13, inverted L-shaped bracket; 14, fixed block; 15, external threaded rod; 16, vertical slider; 17, vertical slide rail; 18, U-shaped block A; 19, shaft rod; 20, U-shaped block B; 21, internal threaded handle C; 22, fixed ring; 23, mounting foot. DETAILED DESCRIPTION

[0026] ​Clearly, the described embodiments are merely a part of the embodiments of the present application, but not all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0027] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are merely a part of the embodiments of the present application, but not all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application. Figures 1-5 The present application will be further described in detail,

[0028] The present application discloses a filter mechanism for accelerator production, comprising a tank body 1, a tubular filter element 7 and a tank cover 9,

[0029] The tank body 1 is provided with an inlet 2 on one side of the top end and an outlet 3 at the bottom, and a partition plate 4 is arranged in the tank body 1, which divides the inner cavity of the tank body 1 into a filter chamber 5 and a discharge chamber 6;

[0030] The tubular filter element 7 is arranged in a ring shape at equal distances and is detachably mounted on the partition plate 4, and the tubular filter element 7 is fixed by pressing and mounting after being installed in the filter chamber 5 through a pressing plate 8;

[0031] Four internally threaded interfaces 401 are arranged in a ring shape at equal distances on the partition plate 4, the tubular filter element 7 is connected through the external thread port 701 at the bottom and the internally threaded port, and a sealing ring is further arranged between the tubular filter element 7 and the partition plate 4. The tubular filter element 7 is connected through the external thread at the bottom and the internally threaded interface 401 on the partition plate 4, and the use of the sealing ring can ensure good sealing at the interface to prevent material leakage. This design makes the installation and replacement of the filter element simple and fast, only needs to align the threads and rotate, reduces the time and difficulty of maintenance. The combination of the sealing ring and the threaded interface increases the connection stability between the filter element and the partition plate 4, preventing the filter element from shifting during use.

[0032] A support rod 403 with an externally threaded part 402 at the top is fixed at the center position of the partition plate 4, and a penetrating hole 801 is formed at the center of the pressing plate 8 to penetrate the support rod 403. The support rod 403 is fixed at the center position of the partition plate 4, and the penetrating hole 801 on the pressing plate 8 cooperates with the support rod 403 to ensure accurate positioning of the pressing plate 8 above the limiting disc 702, thereby ensuring the accuracy of the installation position of the filter element. The design of the support rod 403 makes the installation and removal of the pressing plate 8 more convenient, improving the efficiency and safety of the operation.

[0033] The pressing plate 8 is provided with positioning holes 802 for the four tubular filter cartridges 7, and the pressing plate 8 is located above the limiting disc 702 at the top of the tubular filter cartridges 7. The design of the positioning holes 802 ensures the correct position of the tubular filter cartridges 7 on the pressing plate 8, avoiding deviation during installation of the filter cartridges. The cooperation between the positioning holes 802 and the tubular filter cartridges 7 makes the installation process of the filter cartridges more rapid and accurate.

[0034] The outer threaded part 402 is threadedly sleeved with an inner threaded handle B11, which locks and fixes the pressing plate 8 on the limiting disc 702, and then locks and positions the tubular filter cartridges 7 in the filter chamber 5.

[0035] The inner threaded handle B11 is threadedly sleeved on the outer threaded part 402 of the supporting rod 403, and the handle can be easily rotated to lock the pressing plate 8, thereby fixing the tubular filter cartridges 7 in the filter chamber 5. The design of locking and fixing improves the stability of the filter cartridges during operation, preventing the filter cartridges from loosening due to vibration and other reasons. The design of the inner threaded handle B11 makes the locking and unlocking of the pressing plate 8 simple, facilitating daily maintenance and replacement of the filter cartridges.

[0036] The tank cover 9 is rotatably connected to the tank body 1, so that the tank cover 9 cooperates with the tank body 1 to open or close. When the tank cover 9 cooperates with the tank body 1 to close, the tank cover 9 is locked and positioned on the tank body 1 by the inner threaded handle A10.

[0037] The tank body 1 is provided with a supporting block 12 at the end away from the feed inlet 2, and a reverse L-shaped bracket 13 is rotatably connected to the supporting block 12. The end of the reverse L-shaped bracket 13 away from the supporting block 12 is fixedly provided with a fixed block 14, which is threadedly inserted with an outer threaded rod 15 on the top of the tank cover 9. The inner threaded handle A10 is threadedly sleeved on the outer side of the outer threaded rod 15 and is limited on the top of the fixed block 14. The design of the supporting block 12 and the reverse L-shaped bracket 13 increases the stability of the entire filtering mechanism, preventing unnecessary vibration during operation. The cooperation between the fixed block 14 and the outer threaded rod 15 on the top of the tank cover 9 allows the tank cover 9 to be easily opened and closed, and the limiting design of the inner threaded handle A10 ensures the simplicity and safety of operation. The locking action of the inner threaded handle A10 can ensure the sealing of the tank cover 9 and the tank body 1, preventing material leakage.

[0038] A vertical sliding block 16 is fixedly arranged on one side of the tank cover 9, and the vertical sliding block 16 is guided to slide in cooperation with a vertical sliding rail 17 fixedly arranged on the reverse L-shaped bracket 13. The cooperation between the vertical sliding block 16 and the sliding rail allows the tank cover 9 to be more smooth when opening and closing, reducing the operation difficulty. The design of the sliding rail limits the movement path of the tank cover 9, preventing the tank cover 9 from moving out of the predetermined position during operation, thereby improving safety.

[0039] The outer side of the top of the tank body 1 is arranged with four U-shaped blocks A18 in a ring shape at equal intervals, the inner side of the U-shaped block A18 is rotatably connected with a shaft rod 19, the shaft rod 19 is clamped into the U-shaped block B20 fixed on the tank cover 9 after rotation, and the tank cover 9 is locked and fixed on the tank body 1 through the inner thread handle C21 screwed on the outer side of the shaft rod 19.

[0040] Through the cooperation of the shaft rod 19 and the U-shaped block B20, and the locking of the inner thread handle C21, the tank cover 9 can be more firmly fixed on the tank body 1. The rotation operation of the inner thread handle C21 is simple, so that the installation and disassembly process of the tank cover 9 is fast and efficient. This design allows multiple U-shaped blocks A18 to be arranged in a ring shape at equal intervals on the outer side of the top of the tank body 1, thereby increasing the flexibility of the design.

[0041] The tank body 1 is fixedly provided with a fixing ring 22, and the bottom of the fixing ring 22 is arranged with four mounting feet 23 in a ring shape at equal intervals. The design of the fixing ring 22 and the mounting feet 23 helps to improve the stability of the tank body 1, especially during operation, which can prevent the tank body 1 from moving. The mounting feet 23 can conveniently fix the tank body 1 at the required position, increasing the convenience of installation.

[0042] The filter mechanism for producing the accelerator is mainly based on physical filtration, that is, using the pore size of the tubular filter core 7 to trap solid impurities in the raw materials, thereby realizing liquid-solid separation. The raw materials enter the filter chamber 5 through the feed port 2 at the top end of the tank body 1, and due to the blockage of the tubular filter core 7, larger solid particles are trapped on the outside of the filter core. The filtered liquid (filtrate) then flows out through the micropores of the filter core, enters the discharge chamber 6, and then flows out from the discharge port 3 at the bottom of the tank body 1. The partition plate 4 divides the inside of the tank body 1 into the filter chamber 5 and the discharge chamber 6, which helps to separate the flow paths of solid impurities and liquid, thereby improving the filtration efficiency.

[0043] The tubular filter core 7 is fixed by the pressing plate 8 to ensure that the filter core does not move during filtration, thereby maintaining stable filtration effect. The tank cover 9 is locked by the inner thread handle A10 to ensure the sealing of the entire filtration system and prevent leakage, which also facilitates opening and closing for cleaning and maintenance.

[0044] The design and arrangement of the tubular filter core 7 help to increase the filtration area, increase the processing capacity, and improve the filtration efficiency. The filter core is detachable, which facilitates cleaning and replacement, reduces downtime, and improves production continuity. Due to the fixing method of the filter core and the effective separation of the filter chamber 5 and the discharge chamber 6, the filtration effect is more stable. The locking and positioning design of the tank cover 9 makes the maintenance of the equipment more convenient, improves the reliability and safety of the equipment. Effective filtration can reduce the influence of impurities on the performance and quality of the accelerator, ensuring the stability of the product.

[0045] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and is not intended to limit the present application, although the foregoing embodiments of the present application has been described in detail, for the skilled in the art, it still can be modified, or for part of the technical features of the equivalent replacement, the spirit and principles of the present application, made any modification, equivalent replacement, improvement, etc., should be included within the scope of the present application.

Claims

1. A filtering mechanism for accelerator production, characterized by, The utility model relates to a filter tank, including: Tank body (1), tank body (1) one side top end is equipped with feed inlet (2), bottom is equipped with discharge port (3), be equipped with baffle (4) in tank body (1), through baffle (4) the inner chamber of tank body (1) is divided into filter chamber (5) and discharge chamber (6); Tubular filter core (7), tubular filter core (7) annular equidistance is equipped with four and can be dismantled and is installed on baffle (4), tubular filter core (7) is installed in filter chamber (5) after and is fixed by pressure plate (8) press packing; Tank cover (9), tank cover (9) rotatable connection is established in tank body (1) makes tank cover (9) open or close with tank body (1), when tank cover (9) closes with tank body (1), through inner thread handle A (10) tank cover (9) is locked and positioned on tank body (1).

2. A filtering mechanism for accelerator production as claimed in claim 1, wherein: Baffle (4) annular equidistance is equipped with four inner thread interfaces (401), tubular filter core (7) through the outer thread mouth (701) of its bottom and inner thread mouth butt joint, tubular filter core (7) and baffle (4) still are equipped with sealing ring between.

3. A filtering mechanism for accelerator production as claimed in claim 1, wherein: The center position of baffle (4) is fixed with the support rod (403) of top with outer thread part (402), the center of pressure plate (8) is equipped with the through -insertion hole (801) of cooperation support rod (403) and inserts.

4. A filtering mechanism for accelerator production as claimed in claim 3, wherein: Pressure plate (8) is equipped with the positioning hole (802) of cooperation four tubular filter cores (7) and inserts positioning on, and pressure plate (8) is positioned in the upper of the limiting disc (702) of tubular filter core (7) top.

5. A filtering mechanism for accelerator production as claimed in claim 4, wherein: The outer thread part (402) is screwed with inner thread handle B (11), and the pressure plate (8) is locked and fixed on the limiting disc (702) by the inner thread handle B (11), and then the tubular filter core (7) is locked and positioned in the filter chamber (5).

6. A filtering mechanism for accelerator production as claimed in claim 1, wherein: The end away from the feed inlet (2) of the tank body (1) is provided with a support block (12), the support block (12) is rotatably connected with an inverted L-shaped bracket (13), the end of the inverted L-shaped bracket (13) away from the support block (12) is fixedly provided with a fixed block (14), the fixed block (14) is inserted with a threaded rod (15) on the top of the tank cover (9), and the inner thread handle A (10) is screwed on the outer side of the threaded rod (15) and is limited on the top of the fixed block (14).

7. A filtering mechanism for accelerator production as claimed in claim 6, wherein: One side of the tank cover (9) is fixedly provided with a vertical sliding block (16), and the vertical sliding block (16) is guided to slide in cooperation with a vertical sliding rail (17) fixedly arranged on the inverted L-shaped bracket (13).

8. A filtering mechanism for accelerator production as claimed in claim 1, wherein: Four U-shaped blocks A (18) are annularly and equidistantly arranged on the outer side of the top opening of the tank body (1), a shaft rod (19) is rotatably connected with the inner side of the U-shaped block A (18), the shaft rod (19) is clamped into a U-shaped block B (20) fixed on the tank cover (9) after rotating, and the tank cover (9) is locked and fixed on the tank body (1) by an inner thread handle C (21) screwed on the outer side of the shaft rod (19).

9. A filtering mechanism for accelerator production as claimed in claim 1, wherein: A fixed ring (22) is fixedly arranged on the outer side of the tank body (1), and four mounting legs (23) are annularly and equidistantly arranged on the bottom of the fixed ring (22).