Tantalum-niobium slurry decomposition liquid filter-pressing washing equipment

By designing an adjustable clamping and protective structure, the adaptability problem at the outlet connection of the hydraulic filter washing equipment for tantalum-niobium slurry decomposition was solved, thus achieving stable equipment operation and ensuring product quality.

CN224172814UActive Publication Date: 2026-04-28JIUJIANG ZHONGAO TANTALUM & NIOBIUM CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIUJIANG ZHONGAO TANTALUM & NIOBIUM CO LTD
Filing Date
2025-05-21
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

The outlet connection of the existing tantalum-niobium slurry decomposition hydraulic filter washing equipment is not convenient for quick adjustment when installing a single model of docking device, which affects the normal use and working efficiency of the equipment.

Method used

A clamping structure and a protective structure were designed. The clamping structure achieves stable clamping through adjustable clamping blocks and threaded connections, while the protective structure reduces friction through movable protective plates and sliders, adapting to connection requirements of different sizes and preventing impurities from entering.

Benefits of technology

It improves the stability and versatility of the equipment, ensures normal operation, prevents loosening or displacement, guarantees the pure entry of tantalum-niobium slurry, and enhances product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of chemical equipment, and discloses tantalum-niobium slurry decomposition hydraulic filter washing equipment, which comprises a tank body, a flow guide assembly, a washing assembly, a feed port and a discharge port, the surface of the tank body is fixedly connected with the flow guide assembly, the surface of the tank body is provided with the washing assembly, the surface of the tank body is fixedly connected with the feed port, and the discharge port is fixedly connected with the discharge port. A discharge port is fixedly connected to the surface of the tank body, a clamping structure is arranged on the surface of the tank body, the clamping structure comprises a fixing rod, and one end of the fixing rod is fixedly connected with the surface of the tank body. The hydraulic filter washing equipment solves the problems that a butt joint device of a single model is usually mounted at the joint of a discharge port of the hydraulic filter washing equipment for the decomposition of tantalum-niobium slurry in the prior art, when butt joint devices of different sizes need to be mounted, the condition of inconvenience in quick adjustment often exists, normal use of the device is influenced for a long time, and the use cost is low. And the working efficiency of the device is influenced.
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Description

Technical Field

[0001] This utility model relates to the field of chemical equipment technology, specifically to a hydraulic filter washing device for the decomposition of tantalum and niobium slurry. Background Technology

[0002] To improve the production efficiency and product quality of tantalum and niobium, continuous improvement of production processes is necessary. As a key piece of equipment in the tantalum and niobium slurry decomposition hydraulic filtration and washing equipment process, the technological development of this equipment is of great significance for improving production efficiency and product quality.

[0003] Existing tantalum-niobium slurry decomposition hydraulic filter washing equipment typically installs a single type of docking device at its outlet connection. When different sizes of docking devices need to be installed, it is often inconvenient to adjust them quickly. Over time, this affects the normal use of the equipment and consequently its working efficiency. Utility Model Content

[0004] The purpose of this invention is to provide a hydraulic filter washing device for the decomposition of tantalum and niobium slurry, in order to solve the problem that the discharge port connection of the existing hydraulic filter washing device for the decomposition of tantalum and niobium slurry is usually installed with a single model of docking device. When it is necessary to install docking devices of different sizes, it is often inconvenient to adjust quickly. Over time, this affects the normal use of the device and thus affects the working efficiency of the device.

[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:

[0006] This utility model relates to a hydraulic filtration and washing device for tantalum-niobium slurry decomposition, comprising a tank, a flow guiding assembly, a washing assembly, an inlet, and an outlet. Further, the flow guiding assembly is fixedly connected to the surface of the tank, the washing assembly is mounted on the surface of the tank, the inlet is fixedly connected to the surface of the tank, the outlet is fixedly connected to the surface of the tank, and a clamping structure is provided on the surface of the tank. The clamping structure includes a fixing rod, one end of which is fixedly connected to the surface of the tank, and the other end of which is fixedly connected to a connecting plate. A groove is formed on the surface of the connecting plate, and a clamping block is slidably connected to the inner wall of the groove. A bidirectional screw is slidably connected to the inner wall of the groove, and the arc surface of the bidirectional screw is threadedly connected to the surface of the clamping block. A rotating plate is fixedly connected to one end of the bidirectional screw, and a bolt is slidably connected to the surface of the rotating plate. One end of the bolt is threadedly connected to the surface of the connecting plate. The clamping block allows for clamping of components related to the tantalum-niobium slurry decomposition and hydraulic filtration and washing device, ensuring the stability of component connections, preventing loosening or displacement during equipment operation, and ensuring normal equipment operation. The threaded connection between the bidirectional screw and the clamping blocks, along with the arrangement of the rotating plate and bolts, allows for flexible adjustment of the distance between the clamping blocks. This adjustability accommodates objects of different sizes, improving the versatility of the clamping structure. The connecting plate limits the movement range of the clamping blocks, the fixing rod secures the connecting plate, and the sliding groove facilitates rapid movement of the clamping blocks.

[0007] Furthermore, a protrusion is fixedly connected to the surface of the clamping block, and a recess is formed on the surface of the clamping block. The size of the protrusion matches the size of the recess. The protrusion and recess configuration allows the protrusion to be embedded in the recess when multiple clamping blocks are used together, further enhancing the stability of clamping, preventing the clamped object from sliding between the clamping blocks, and ensuring a better clamping effect.

[0008] Furthermore, a pad made of rubber is fixedly connected to the surface of the clamping block. The pad increases the friction between the clamping block and the object being clamped during the clamping process, making the clamping more secure. Simultaneously, the pad also acts as a buffer, preventing the clamping block from scratching or damaging the surface of the object being clamped.

[0009] Furthermore, the surface of the feed inlet is provided with a protective structure, which includes a groove. A slider is slidably connected to the inner wall of the groove, and a connecting rod is fixedly connected to the inner wall of the groove. The arc surface of the connecting rod is slidably connected to the surface of the slider. A protective plate is fixedly connected to the surface of the slider, and a handle is fixedly connected to the surface of the protective plate. The protective plate protects the feed inlet, preventing external impurities from entering and ensuring the purity of the tantalum-niobium slurry entering the tank. This guarantees the normal operation and product quality of the tantalum-niobium slurry decomposition hydraulic filter washing equipment. The sliding mechanism of the slider, connecting rod, and groove, combined with ball bearings to reduce friction, allows for easy adjustment of the protective plate's position. This allows for flexible adjustment of the protective plate's position according to the actual needs of the feeding operation, improving the effectiveness of protection. The handle facilitates the movement of the protective plate.

[0010] Furthermore, the inner wall of the groove is provided with ball bearings, which are made of steel. The ball bearings reduce the friction generated when the slider moves against the inner wall of the groove.

[0011] Furthermore, a guide block is fixedly connected to the surface of the feed inlet, and the cross-section of the guide block is triangular. The guide block is designed to guide the tantalum-niobium slurry smoothly into the feed inlet, preventing the slurry from accumulating on the surface of the feed inlet and thus ensuring normal feeding.

[0012] This utility model has the following beneficial effects:

[0013] This invention utilizes a clamping structure. When the position of the clamping blocks needs adjustment, the bolts are first loosened. Then, the rotating plate is rotated, causing a bidirectional screw to rotate. The threaded connection between the bidirectional screw and the clamping blocks allows the blocks to move relative to each other within the groove. When clamping an object, the object is placed between the clamping blocks, the rotating plate is rotated in the opposite direction to bring the clamping blocks closer to the object, and then the bolts are tightened. The bolts secure the rotating plate, locking the position of the clamping blocks. This clamping design allows for the clamping of components related to tantalum-niobium slurry decomposition hydraulic filtration and washing equipment, ensuring the stability of component connections and preventing loosening or displacement during equipment operation, thus ensuring normal equipment operation. The threaded connection between the bidirectional screw and the clamping blocks, as well as the rotating plate and bolts, allow for flexible adjustment of the distance between the clamping blocks. This adjustability can accommodate objects of different sizes, improving the versatility of the clamping structure. The protrusion and recess design allows multiple clamping blocks to be used together; the protrusion can be embedded in the recess, further enhancing clamping stability, preventing the clamped object from sliding between the clamping blocks, and ensuring a better clamping effect. The pad design increases friction between the clamping block and the clamped object during clamping, resulting in a more secure clamping action. Simultaneously, the pad acts as a buffer, preventing the clamping block from scratching or damaging the surface of the clamped object. The connecting plate limits the movement range of the clamping block, the fixing rod secures the connecting plate, and the sliding groove facilitates rapid movement of the clamping block. This clamping structure allows for easy clamping of discharge port connections of different sizes, minimizing leakage at these connections and further ensuring the stability of component connections. It also prevents loosening or displacement during equipment operation, ensuring normal equipment function.

[0014] This invention, through the design of a protective structure, allows for easy adjustment of the protective plate's position by pulling a handle. Since the protective plate is connected to a connecting rod and a groove via a slider, the slider slides along the connecting rod within the groove, thereby moving the protective plate. This design effectively protects the feed inlet, preventing external impurities from entering and ensuring the purity of the tantalum-niobium slurry entering the tank. This, in turn, guarantees the normal operation and product quality of the tantalum-niobium slurry decomposition hydraulic filter washing equipment. The sliding mechanism between the slider, connecting rod, and groove, combined with ball bearings to reduce friction, allows for convenient adjustment of the protective plate's position. This allows for flexible adjustment of the protective plate's position based on actual feeding needs, enhancing the effectiveness of protection. The handle enables the protective plate to move, while the ball bearings reduce friction between the slider and the inner wall of the groove. The guide block guides the tantalum-niobium slurry smoothly into the feed inlet, preventing slurry buildup and hindering normal feeding. The protective structure facilitates inlet protection, minimizing external impurities and ensuring the purity of the tantalum-niobium slurry entering the tank. This guarantees the normal operation and product quality of the tantalum-niobium slurry decomposition hydraulic filter washing equipment.

[0015] Of course, any product implementing this utility model does not necessarily need to achieve all of the advantages described above at the same time. Attached Figure Description

[0016] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0017] Figure 1 This is a schematic diagram of the structure of this utility model;

[0018] Figure 2 This is a schematic diagram of the clamping structure in this utility model;

[0019] Figure 3 This is a schematic diagram of the protective structure in this utility model;

[0020] Figure 4 This is a schematic diagram of the protective structure from another angle in this utility model;

[0021] The attached diagram lists the components represented by each number as follows:

[0022] In the diagram: 1. Tank body; 2. Flow guiding assembly; 3. Washing assembly; 4. Inlet; 5. Outlet; 6. Clamping structure; 61. Connecting plate; 62. Fixing rod; 63. Slide groove; 64. Bidirectional screw; 65. Rotating plate; 66. Bolt; 67. Clamping block; 68. Protrusion; 69. Recess; 610. Pad; 7. Protective structure; 71. Protective plate; 72. Handle; 73. Groove; 74. Slider; 75. Connecting rod; 76. Ball bearing; 77. Guide block. Detailed Implementation

[0023] 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.

[0024] Please see Figure 1 - Figure 4 As shown, this utility model is a hydraulic filtration and washing device for tantalum-niobium slurry decomposition, including a tank 1, a flow guiding component 2, a washing component 3, a feed inlet 4, and a discharge outlet 5. The flow guiding component 2 is fixedly connected to the surface of the tank 1, the washing component 3 is installed on the surface of the tank 1, the feed inlet 4 is fixedly connected to the surface of the tank 1, the discharge outlet 5 is fixedly connected to the surface of the tank 1, and a clamping structure 6 is provided on the surface of the tank 1. The clamping structure 6 includes a fixing rod 62, one end of which is fixedly connected to the surface of the tank 1, and the other end of which is fixedly connected to a connecting plate 61. A sliding groove 63 is opened on the surface of the connecting plate 61, a clamping block 67 is slidably connected to the inner wall of the sliding groove 63, and a bidirectional screw 64 is slidably connected to the inner wall of the sliding groove 63. The arc surface of the bidirectional screw 64 is threadedly connected to the surface of the clamping block 67. A rotating plate 65 is fixedly connected to one end of the bidirectional screw 64, and a bolt 66 is slidably connected to the surface of the rotating plate 65. One end of the bolt 66 is threadedly connected to the surface of the connecting plate 61. The clamping block 67 is designed to hold components related to the hydraulic filtration and washing equipment for tantalum-niobium slurry decomposition, ensuring the stability of component connections and preventing loosening or displacement during equipment operation, thus guaranteeing normal equipment operation. The threaded connection between the bidirectional screw 64 and the clamping block 67, along with the rotating plate 65 and bolts 66, allows for flexible adjustment of the distance between the clamping blocks 67. This adjustability accommodates objects of different sizes, improving the versatility of the clamping structure 6. The connecting plate 61 limits the movement range of the clamping block 67, the fixing rod 62 secures the connecting plate 61, and the sliding groove 63 facilitates rapid movement of the clamping block 67.

[0025] A protrusion 68 is fixedly connected to the surface of the clamping block 67, and a recess 69 is formed on the surface of the clamping block 67. The size of the protrusion 68 is adapted to the size of the recess 69. The setting of the protrusion 68 and the recess 69 enables the protrusion 68 to be embedded in the recess 69 when multiple clamping blocks 67 are used together, further enhancing the clamping stability, preventing the clamped object from sliding between the clamping blocks 67, and ensuring a better clamping effect.

[0026] A pad 610, made of rubber, is fixedly connected to the surface of the clamping block 67. The pad 610 increases the friction between the clamping block 67 and the object being clamped during clamping, resulting in a more secure clamping. Simultaneously, the pad 610 also acts as a buffer, preventing the clamping block 67 from scratching or damaging the surface of the object being clamped.

[0027] The surface of the feed inlet 4 is provided with a protective structure 7, which includes a groove 73. A slider 74 is slidably connected to the inner wall of the groove 73, and a connecting rod 75 is fixedly connected to the inner wall of the groove 73. The arc surface of the connecting rod 75 is slidably connected to the surface of the slider 74. A protective plate 71 is fixedly connected to the surface of the slider 74, and a handle 72 is fixedly connected to the surface of the protective plate 71. The protective plate 71 protects the feed inlet 4, preventing external impurities from entering and ensuring the purity of the tantalum-niobium slurry entering the tank 1. This guarantees the normal operation and product quality of the tantalum-niobium slurry decomposition hydraulic filter washing equipment. The sliding mechanism of the slider 74, connecting rod 75, and groove 73, along with the reduced friction from the ball bearing 76, allows for easy adjustment of the position of the protective plate 71. This allows for flexible adjustment of the protective plate 71's position according to the actual needs of the feeding operation, improving the effectiveness of protection. The handle 72 enables the movement of the protective plate 71.

[0028] The inner wall of the groove 73 is provided with ball bearings 76, which are made of steel. The ball bearings 76 reduce the friction generated when the slider 74 moves against the inner wall of the groove 73.

[0029] A guide block 77 is fixedly connected to the surface of the feed inlet 4. The cross-section of the guide block 77 is triangular. The guide block 77 is designed to guide the tantalum-niobium slurry smoothly into the feed inlet 4, preventing the slurry from accumulating on the surface of the feed inlet 4 and thus preventing normal feeding.

[0030] In use, when the position of clamping block 67 needs to be adjusted, first loosen bolt 66. Then rotate the rotating plate 65. As the rotating plate 65 drives the bidirectional screw 64 to rotate, the threaded connection between the bidirectional screw 64 and clamping block 67 allows clamping block 67 to move relative to each other within the slide groove 63. When it is necessary to clamp an object, place the object between clamping blocks 67, rotate the rotating plate 65 in the opposite direction to bring clamping block 67 closer to the object, and then tighten bolt 66. The position of clamping block 67 is locked by fixing the rotating plate 65 with bolt 66. The clamping block 67 is designed to clamp components related to the tantalum-niobium slurry decomposition hydraulic filtration and washing equipment, ensuring the stability of component connections, preventing loosening or displacement during equipment operation, and ensuring normal equipment operation. The threaded connection between the bidirectional screw 64 and clamping block 67, as well as the design of the rotating plate 65 and bolt 66, allows for flexible adjustment of the distance between clamping blocks 67. This adjustability can accommodate objects of different sizes, improving the versatility of the clamping structure 6. The protrusion 68 and recess 69 are designed so that when multiple clamping blocks 67 are used together, the protrusion 68 can be embedded in the recess 69, further enhancing the stability of the clamping and preventing the clamped object from sliding between the clamping blocks 67, thus ensuring a better clamping effect. The pad 610 increases the friction between the clamping block 67 and the clamped object during the clamping process, making the clamping more secure. At the same time, the pad 610 also acts as a buffer, preventing the clamping block 67 from scratching or damaging the surface of the clamped object. The connecting plate 61 limits the movement range of the clamping block 67, the fixing rod 62 fixes the connecting plate 61, and the sliding groove 63 facilitates the rapid movement of the clamping block 67. By setting the clamping structure 6, it is convenient to clamp the connection of the discharge port 5 of different sizes, minimize the leakage at the connection of the discharge port 5, further ensure the stability of the component connection, prevent loosening or displacement during equipment operation, and ensure the normal operation of the equipment.

[0031] When the position of the protective plate 71 needs to be adjusted, the handle 72 is pulled. Since the protective plate 71 is connected to the connecting rod 75 and the groove 73 via a slider 74, the slider 74 slides along the connecting rod 75 within the groove 73, thereby moving the protective plate 71. The protective plate 71 effectively protects the feed inlet 4, preventing external impurities from entering and ensuring the purity of the tantalum-niobium slurry entering the tank 1. This guarantees the normal operation and product quality of the tantalum-niobium slurry decomposition hydraulic filter washing equipment. The sliding mechanism of the slider 74 with the connecting rod 75 and the groove 73, combined with the reduced friction from the ball bearing 76, allows for convenient adjustment of the protective plate 71's position. This allows for flexible adjustment of the position of the protective plate 71 according to the actual needs of the feeding operation, improving the effectiveness of protection. The handle 72 enables the movement of the protective plate 71. The ball bearing 76 reduces the friction generated when the slider 74 moves against the inner wall of the groove 73. The guide block 77 guides the tantalum-niobium slurry smoothly into the feed inlet 4, preventing the slurry from accumulating on the surface of the feed inlet 4 and hindering normal feeding. By setting the protective structure 7, it is convenient to protect the feed inlet 4, preventing external impurities from entering the feed inlet 4 as much as possible, further ensuring the purity of the tantalum-niobium slurry entering the tank 1, and ensuring the normal operation and product quality of the tantalum-niobium slurry decomposition hydraulic filter washing equipment.

[0032] The preferred embodiments of this utility model disclosed above are merely illustrative of the present utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it. This utility model is limited only by the claims and their full scope and equivalents.

Claims

1. A hydraulic filtration and washing device for tantalum-niobium slurry decomposition, comprising a tank (1), a flow guiding assembly (2), a washing assembly (3), an inlet (4), and an outlet (5), characterized in that: A flow guiding component (2) is fixedly connected to the surface of the tank (1), a washing component (3) is installed on the surface of the tank (1), a feed inlet (4) is fixedly connected to the surface of the tank (1), a discharge outlet (5) is fixedly connected to the surface of the tank (1), and a clamping structure (6) is provided on the surface of the tank (1). The clamping structure (6) includes a fixing rod (62), one end of which is fixedly connected to the surface of the tank (1), and the other end of which is fixedly connected to a connecting plate (6). 1) A sliding groove (63) is provided on the surface of the connecting plate (61). A clamping block (67) is slidably connected to the inner wall of the sliding groove (63). A bidirectional screw (64) is slidably connected to the inner wall of the sliding groove (63). The arc surface of the bidirectional screw (64) is threadedly connected to the surface of the clamping block (67). A rotating plate (65) is fixedly connected to one end of the bidirectional screw (64). A bolt (66) is slidably connected to the surface of the rotating plate (65). One end of the bolt (66) is threadedly connected to the surface of the connecting plate (61).

2. The tantalum-niobium slurry decomposition hydraulic filtration and washing equipment according to claim 1, characterized in that: The surface of the clamping block (67) is fixedly connected with a protrusion (68), and a notch (69) is opened on the surface of the clamping block (67). The size of the protrusion (68) is adapted to the size of the notch (69).

3. The tantalum-niobium slurry decomposition hydraulic filtration and washing equipment according to claim 1, characterized in that: A pad (610) is fixedly connected to the surface of the clamp (67), and the pad (610) is made of rubber.

4. The tantalum-niobium slurry decomposition hydraulic filtration and washing equipment according to claim 1, characterized in that: The surface of the feed inlet (4) is provided with a protective structure (7), the protective structure (7) includes a groove (73), the surface of the feed inlet (4) is provided with a groove (73), the inner wall of the groove (73) is slidably connected with a slider (74), the inner wall of the groove (73) is fixedly connected with a connecting rod (75), the arc surface of the connecting rod (75) is slidably connected with the surface of the slider (74), the surface of the slider (74) is fixedly connected with a protective plate (71), and the surface of the protective plate (71) is fixedly connected with a handle (72).

5. The tantalum-niobium slurry decomposition hydraulic filtration and washing equipment according to claim 4, characterized in that: The inner wall of the groove (73) is provided with ball bearings (76), and the ball bearings (76) are made of steel.

6. The tantalum-niobium slurry decomposition hydraulic filtration and washing equipment according to claim 4, characterized in that: A guide block (77) is fixedly connected to the surface of the feed inlet (4), and the cross-section of the guide block (77) is triangular.