Suction filtration device for production of high-nickel alloy coating
By designing a filtration device inside the tank, vacuuming and reciprocating movement of the vertical rod are used to accelerate solid-liquid separation. Combined with a sealing component, the solids are automatically discharged, solving the problems of slow separation speed and inconvenient solid removal in existing devices. This achieves efficient solid-liquid separation and convenient solid discharge.
Patent Information
- Application Number
- CN202520299019.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-24
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-02-24
AI Technical Summary
Existing filtration devices used in the production of high-nickel alloy coatings have a slow separation speed, and solid raw materials are difficult to remove easily from the filter screen.
A filtration device was designed, comprising a tank, cover plate, support ring, filter bucket, spring, solid discharge pipe, sealing assembly, support plate, cylinder, horizontal plate and vacuum tube. The device accelerates solid-liquid separation by drawing a vacuum and utilizing the reciprocating movement of a vertical rod, and automatically discharges solid raw materials in conjunction with the sealing assembly.
It achieves rapid solid-liquid separation, and the discharge of solid raw materials is simple, thus improving production efficiency.
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Figure CN223945158U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to high nickel alloy coating technical field, concretely is a kind of high nickel alloy coating production is filtered with drawing device. BACKGROUND
[0002] High nickel alloy coating is a protective or functional covering layer formed on the surface of substrate by specific process, and its main component is nickel and its alloy element, and high nickel alloy coating has become one of indispensable key technologies in modern industry with its excellent performance and wide application prospect, and in the production process of high nickel alloy coating, some raw materials and intermediate products used generally need to be filtered, but the filtering device for high nickel alloy coating production in the prior art only uses vacuumizing mode to separate solid and liquid, and the separation speed is slow, and after the raw materials are filtered and separated, the solid is retained in the inside of filter screen, since the filter screens are mostly parallel, it is inconvenient for workers to take out the solid raw materials retained on the surface of filter screen subsequently, therefore, the filtering device for high nickel alloy coating production is provided to solve the above problems. SUMMARY
[0003] (I) technical problem solved
[0004] In view of the deficiencies in the prior art, the utility model provides a filtering device for high nickel alloy coating production, which solves the problems raised in the above background art.
[0005] (II) technical scheme
[0006] The utility model discloses a kind of filtering devices for high nickel alloy coating production to achieve the above purposes specifically using the following technical schemes:
[0007] A kind of filtering device for high nickel alloy coating production, including tank body, the top of the tank body is fixed with cover plate, the inside of the tank body is fixed with support ring, the top of the support ring is provided with filter hopper, spring one is fixed in annular array between the support ring and filter hopper, the bottom of the filter hopper is connected with fixed solid discharge pipe, the bottom of the solid discharge pipe is slid through tank body and extends to its outside, the inside of the solid discharge pipe is provided with plugging assembly, the top of the cover plate is fixed with support plate, the support plate top is fixed with cylinder body, the top of the cylinder body is slid through support plate and extends to its below and is fixed with horizontal plate, the bottom of the horizontal plate is fixed with two vertical rods, the bottom of the vertical rod is slid through cover plate and extends to its below, the through hole of the tank body outer wall is fixed with vacuumizing pipe, the feeding opening of the cover plate top is provided with sealing cover assembly.
[0008] Further, the sealing assembly comprises a guide frame fixed at the top of the cover plate and provided with a feeding opening, a protective cover inserted into the guide frame, and a sealing ring fixed to the bottom of the protective cover and matched with the guide frame.
[0009] Further, the sealing assembly comprises a guide frame fixed at the top of the cover plate and provided with a feeding opening, a protective cover inserted into the guide frame, and a sealing ring fixed to the bottom of the protective cover and matched with the guide frame.
[0010] Further, the top of the supporting ring is fixed with an annular telescopic cover fixedly connected with the filter hopper.
[0011] Further, the outer wall of the tank body is fixedly connected with a liquid discharge pipe provided with a valve.
[0012] Further, the bottom end of the vacuum pipe is fixed with a waterproof and breathable film layer.
[0013] (Three) beneficial effects
[0014] Compared with the prior art, the high-nickel alloy coating production filter device has the following beneficial effects:
[0015] The tank body, the cover plate, the supporting ring, the filter hopper, the spring, the solid discharge pipe, the sealing assembly, the supporting plate, the cylinder body, the horizontal plate, the vertical rod and the vacuum pipe are arranged, and the vacuum pipe is arranged to perform vacuum operation on the inside of the tank body. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a whole structure schematic view of the utility model;
[0017] Figure 2 It is a whole structure sectional view of the utility model;
[0018] Figure 3A support ring structure schematic view of the utility model is shown in the figure.
[0019] Figure 4 A circular seat structure schematic view of the utility model is shown in the figure.
[0020] Figure 5 A sealing cover assembly structure schematic view of the utility model is shown in the figure.
[0021] In the figure: 1, tank body; 2, cover plate; 3, support ring; 4, filter hopper; 5, spring one; 6, solid discharge pipe; 7, plugging assembly; 701, plugging plate; 702, circular seat; 703, spring two; 704, threaded rod; 705, rotating sleeve; 706, connecting rod; 8, support plate; 9, cylinder body; 10, cross plate; 11, vertical rod; 12, vacuumizing pipe; 13, sealing cover assembly; 1301, guide frame; 1302, protective cover; 1303, sealing ring; 14, annular telescopic cover; 15, liquid discharge pipe; 16, waterproof air-permeable membrane layer. DETAILED DESCRIPTION
[0022] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0023] EMBODIMENT
[0024] As Figure 1 , Figure 2 and Figure 3As shown, the utility model discloses a kind of high nickel alloy coating production with filter extraction device, including jar body 1, the outer wall of jar body 1 is connected with liquid discharge pipe 15, valve is installed on liquid discharge pipe 15, liquid discharge pipe 15 is set to facilitate the liquid that will be extracted and retained in the inside of jar body 1 is discharged, the top of jar body 1 is fixed with cover plate 2, the inside of jar body 1 is fixed with support ring 3, the top of support ring 3 is provided with filter hopper 4, spring one 5 is fixed between support ring 3 and filter hopper 4 and is annular array, the top of support ring 3 is fixed with annular telescopic cover 14, the top of annular telescopic cover 14 is fixedly connected with filter hopper 4, annular telescopic cover 14 is set to the protection of spring one 5, so as to be convenient for the service life of spring one 5 can be extended, the bottom of filter hopper 4 is connected with solid discharge pipe 6 and is fixed, the bottom of solid discharge pipe 6 is slidably penetrated through jar body 1 and extends to its outside, solid discharge pipe 6 is provided with sealing assembly 7 in the inside, the top of cover plate 2 is fixed with support plate 8, support plate 8 top is fixed with cylinder 9, the top of cylinder 9 is slidably penetrated through support plate 8 and extends to its below and is fixed with horizontal plate 10, the bottom of horizontal plate 10 is fixed with two vertical rods 11, the bottom of vertical rod 11 is slidably penetrated through cover plate 2 and extends to its below, the through hole of the outer wall of jar body 1 is fixed with vacuum extraction pipe 12 in the inside, the bottom of vacuum extraction pipe 12 is fixed with waterproof air-permeable membrane layer 16, waterproof air-permeable membrane layer 16 is set to the inlet end of vacuum extraction pipe 12 can be protected, so as to avoid moisture in liquid when vacuum extraction filtering will enter the inside of vacuum extraction pipe 12, the feeding opening of the top of cover plate 2 is provided with sealing cover assembly 13, when using this high nickel alloy coating production with filter extraction device, open sealing cover assembly 13, then the raw material to be extracted and separated can be sent to the inside of filter hopper 4 through the feeding port of cover plate 2, then sealing cover assembly 13 is reset, after communicating and fixing vacuum extraction pipe 12 with vacuum extraction equipment, jar body 1 can be operated in vacuum extraction, and the solid of raw material after extraction and filtration can be stored in the inside of filter hopper 4, and the liquid in raw material can be stored in the inside of jar body 1 through filter hopper 4, and during extraction and filtration, cylinder 9 can be started to drive horizontal plate 10 to move up and down, horizontal plate 10 moves up and down to drive two vertical rods 11 to move up and down, at this time, two vertical rods 11 can reciprocating knock filter hopper 4, so as to accelerate the speed of raw material extraction and separation in the inside, when the solid raw material in filter hopper 4 needs to be discharged subsequently, at this time, the top of sealing assembly 7 can be operated to move up and adhere to the bottom of horizontal plate 10, then when horizontal plate 10 drives vertical rod 11 to move down, filter hopper 4 can be vibrated to operate to discharge, this kind of mode is convenient to discharge solid raw material to the inside of filter hopper 4, and can accelerate the discharging speed during discharging.
[0025] As Figure 2 And Figure 4As shown, in some embodiments, the blocking assembly 7 includes a blocking plate 701 closely arranged inside the solid discharge pipe 6, the top end of the blocking plate 701 is fixed with a connecting rod 706, the top end of the connecting rod 706 slides through the cover plate 2 and extends above it and is fixed with a circular seat 702, the bottom of the circular seat 702 is fixed with a spring 2 703 in a triangular array, the bottom end of the spring 2 703 is fixedly connected with the top of the cover plate 2, the top of the circular seat 702 is fixed with a threaded rod 704, the surface of the threaded rod 704 is threadedly connected with a rotating sleeve 705, when it is needed to discharge the solid raw materials filtered inside the filter hopper 4, the rotating sleeve 705 can be operated to rotate, after the rotating sleeve 705 rotates, it will move up and closely fit with the bottom of the horizontal plate 10, at this time, when the horizontal plate 10 moves down, it will press the rotating sleeve 705, and after the rotating sleeve 705 moves down, it will drive the circular seat 702 to move down through the threaded rod 704, the circular seat 702 moves down and drives the blocking plate 701 to move down through the connecting rod 706, and after the blocking plate 701 moves down, it will release the inside of the solid discharge pipe 6, at this time, the solid raw materials filtered inside the filter hopper 4 can be discharged, through the spring 2 703 arranged, when the horizontal plate 10 moves up to release the restriction of the rotating sleeve 705, the circular seat 702 can be automatically reset, after the solid raw materials are discharged, the rotating sleeve 705 only needs to be reset, and universal ball bearings are installed in an annular array at the top end of the rotating sleeve 705, which avoids the situation that the rotating sleeve 705 is stuck when it moves up and releases the bottom of the horizontal plate 10.
[0026] As shown in Figure 1 and Figure 5 As shown, in some embodiments, the sealing cover assembly 13 includes a guide frame 1301 fixed at the top of the cover plate 2 where the feeding opening is provided, the guide frame 1301 is inserted with a protective cover 1302, the bottom of the protective cover 1302 is fixed with a sealing ring 1303 matched with the guide frame 1301, the lower surface of the sealing ring 1303 closely fits with the guide frame 1301, in use, under the cooperation of the guide frame 1301 and the protective cover 1302, the feeding opening on the cover plate 2 can be easily opened, thereby facilitating the staff to send the raw materials to be filtered to the inside of the filter hopper 4, and the sealing ring 1303 arranged can enhance the sealing between the guide frame 1301 and the protective cover 1302, so that when the inside of the tank 1 is operated by vacuum filtration, the fitting part will not appear the situation of not being tightly sealed.
[0027] 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 have been described in detail, for the skilled in the art, it still can be modified, or for the equivalent replacement of part of the technical features of the technical solutions recorded in the foregoing embodiments. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application, shall be included within the scope of the present application.
Claims
1. A suction filtration device for high nickel alloy coating production comprising a tank body (1), characterized in that: The top of the tank body (1) is fixed with a cover plate (2), the inside of the tank body (1) is fixed with a support ring (3), the upper part of the support ring (3) is provided with a filter hopper (4), a spring (5) is fixed in annular array between the support ring (3) and the filter hopper (4), the bottom end of the filter hopper (4) is communicated and fixed with a solid discharge pipe (6), the bottom end of the solid discharge pipe (6) is slidably penetrated through the tank body (1) and extends to the outside thereof, the inside of the solid discharge pipe (6) is provided with a blocking assembly (7), the top of the cover plate (2) is fixed with a support plate (8), the top of the support plate (8) is fixed with a cylinder body (9), the top end of the cylinder body (9) is slidably penetrated through the support plate (8) and extends to the lower part thereof and is fixed with a horizontal plate (10), the bottom of the horizontal plate (10) is fixed with two vertical rods (11), the bottom end of the vertical rods (11) is slidably penetrated through the cover plate (2) and extends to the lower part thereof, the through hole formed in the outer wall of the tank body (1) is fixed with a vacuum pipe (12), and a sealing cover assembly (13) is arranged at the feeding opening formed in the top of the cover plate (2).
2. The filter device for producing a high nickel alloy coating according to claim 1, characterized in that: The blocking assembly (7) comprises a blocking plate (701) which is closely arranged in the inside of the solid discharge pipe (6), the top end of the blocking plate (701) is fixed with a connecting rod (706), the top end of the connecting rod (706) is slidably penetrated through the cover plate (2) and extends to the upper part thereof and is fixed with a circular seat (702), the bottom of the circular seat (702) is fixed with springs (703) in triangular array, the bottom end of the springs (703) is fixedly connected with the top of the cover plate (2), and the top of the circular seat (702) is fixed with a threaded rod (704), and the surface of the threaded rod (704) is threadedly connected with a rotating sleeve (705).
3. The filter device for producing a high nickel alloy coating according to claim 1, characterized in that: The sealing cover assembly (13) comprises a guide frame (1301) which is fixed at the feeding opening formed in the top of the cover plate (2), the inside of the guide frame (1301) is inserted with a protective cover (1302), the bottom of the protective cover (1302) is fixed with a sealing ring (1303) which is matched with the guide frame (1301), and the lower surface of the sealing ring (1303) is closely attached to the guide frame (1301).
4. The filter device for producing a high nickel alloy coating according to claim 1, characterized in that: The top of the support ring (3) is fixed with an annular telescopic cover (14), and the top end of the annular telescopic cover (14) is fixedly connected with the filter hopper (4).
5. The filter device for producing a high nickel alloy coating according to claim 1, characterized in that: The outer wall of the tank body (1) is communicated and fixed with a liquid discharge pipe (15), and a valve is mounted on the liquid discharge pipe (15).
6. The filter device for producing a high nickel alloy coating according to claim 1, characterized in that: The bottom end of the vacuum pipe (12) is fixed with a waterproof and breathable film layer (16).