Dewatering centrifugal machine facilitating discharging
The dehydration centrifuge with split structure design solves the problem of inconvenient feeding and discharging of traditional centrifuges, and realizes efficient dehydration and convenient operation of composite materials.
Patent Information
- Application Number
- CN202422299089.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-20
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-09-20
AI Technical Summary
When processing composite materials, the traditional centrifugal dehydration structure is inconvenient in feeding and discharging, which affects the dehydration efficiency.
It adopts a split structural design, including a main processing tank and a holding tank body. The holding tank body is rotated by a rotating motor driving the multilateral plug-in column, and is combined with the screening side plate to perform filtering and centrifugal dehydration, and the water is discharged through the discharge pipe, realizing convenient feeding and discharging.
The dehydration efficiency and convenience of the composite materials are improved, and the optimization of the rotational dehydration effect is ensured under the limited and stable structure.
Smart Images

Figure CN223301990U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of composite materials, in particular to a dehydration centrifuge which is convenient for discharging materials. Background Art
[0002] The use of composite materials dates back to ancient times. Clay reinforced with rice or wheat straw, still used today, and reinforced concrete, used for centuries, are both made from two materials. These high-strength, high-modulus fibers can be combined with non-metallic matrices such as synthetic resins, carbon, graphite, ceramics, and rubber, or with metal matrices such as aluminum, magnesium, and titanium, to create unique composite materials.
[0003] When processing current composite materials, it is necessary to dehydrate the internal water of the composite materials. The traditional centrifugal dehydration structure is a fixed rotating operation structure, which makes it inconvenient to use during feeding and discharging, affecting the dehydration efficiency of the material. Utility Model Content
[0004] The purpose of the present utility model is to provide a dehydration centrifuge that is convenient for discharging materials, so as to solve the problem raised in the above background technology that when processing current composite materials, it is necessary to perform a dehydration operation on the internal water body of the composite materials. The traditional centrifugal dehydration structure is a fixed rotating operation structure, which makes it inconvenient to use during feeding and discharging, thereby affecting the dehydration efficiency of the materials.
[0005] To achieve the above objectives, the present invention provides the following technical solutions:
[0006] A dehydration centrifuge for convenient discharging includes a main processing tank, the bottom surface of the main processing tank is evenly threaded and fixedly connected with a bottom pad, the outer side of the main processing tank is horizontally fixedly plugged with a discharge pipe, the outer side of the main processing tank is fixedly clamped with a control panel, the top surface of the main processing tank is horizontally buckled with a sealing cover plate, the top surface of the sealing cover plate is horizontally fixedly provided with a top handle rod, the inner side wall of the main processing tank is fixedly provided with a rotating motor, the inner bottom surface of the main processing tank is plugged with a polygonal plug column, the inner side edge of the main processing tank is horizontally fixedly provided with a fixed bearing, the top of the main processing tank is provided with a top clamping groove, and the control The inner side wall of the panel is fixedly connected with the control main board, the inner side edge of the main processing tank is vertically plugged with the holding tank body, the bottom surface of the holding tank body is provided with polygonal bottom holes, the outer side edge of the holding tank body is fixedly connected with the screening side panel, the top surface of the holding tank body is symmetrically plugged with the positioning column, the inner side edge of the holding tank body is horizontally fixed with a pulling rod, the bottom surface of the sealing cover plate is horizontally provided with a bottom annular groove, the bottom surface of the sealing cover plate is horizontally connected with a buckling bottom ring, the top surface of the buckling bottom ring is fixedly provided with a clamping top ring, the bottom surface of the buckling bottom ring is evenly provided with matching bottom holes, and the bottom surface of the sealing cover plate is fixed with a sealing ring.
[0007] As a preferred embodiment of the present invention: the top surface of the main processing tank is open, there are four bottom pads, and the top screws of the four bottom pads are all threadedly fixed and connected one by one to the bottom surface of the main processing tank near the edge screw hole, and one end of the discharge pipe horizontally passes through the side wall of the main processing tank and extends to the internal bottom surface to remain connected.
[0008] As a preferred embodiment of the present invention: the control panel and the control main board are electrically connected to each other, the top handle rod is horizontally fixed in the center groove position of the top surface of the sealing cover plate, the rotating motor is vertically fixed in the center of the inner wall of the main processing tank near the bottom end, and the output end of the rotating motor extends vertically upward and is fixedly connected to the bottom center position of the polygonal plug column.
[0009] As a preferred embodiment of the present invention: the bottom end of the polygonal plug is inserted into the center position of the inner bottom surface of the main processing tank, and the top end is inserted into the inner side edge of the polygonal bottom hole, the fixed bearing is horizontally fixed on the inner side of the main processing tank near the top opening end, the top surface of the containing tank body is open, and the fixed bearing is horizontally sleeved on the outer side of the containing tank body near the top position.
[0010] As a preferred embodiment of the present invention: the polygonal bottom hole is opened at the center position of the bottom surface of the holding tank body, the top end of the positioning column is correspondingly inserted and arranged on the inner side edge of the matching bottom hole, the pull rod is horizontally fixed and arranged at the center line position of the inner top opening end of the holding tank body, and the bottom annular groove is annularly opened on the bottom surface of the sealing cover plate near the edge.
[0011] As a preferred embodiment of the present invention: the top surface of the buckled bottom ring is horizontally docked at the bottom open end of the bottom annular groove, and the bottom end of the buckled bottom ring is horizontally docked at the top position of the can body, the top end of the clip-on top ring is clip-on at the inner side edge of the bottom annular groove, the top surface of the sealing ring is fixedly arranged on the bottom surface of the sealing cover plate near the edge, and the bottom end of the sealing ring is clip-on at the inner side edge of the top clip-on groove.
[0012] Compared with the prior art, the beneficial effects of the present invention are:
[0013] The utility model puts the composite material into the interior of the holding tank body, and after holding the pulling rod, the holding tank body can be lifted and operated, so that the holding tank body is vertically inserted into the interior through the top opening of the main processing tank 1, so that the polygonal bottom holes on the bottom surface are buckled and set on the outer side of the top of the polygonal plug column, and the internal fixed bearing is fixedly sleeved and set on the outer side of the holding tank body to form a support for the holding tank body, so that the sealing cover plate is buckled and set on the top opening end of the main processing tank, so that the sealing ring on the bottom surface is buckled and set inside the top clamping groove, and then the buckled bottom ring is buckled and set The top surface position of the holding tank body is matched with the bottom hole socket set on the positioning column. Under the control of the control panel, the rotating motor is controlled to rotate, so that the output end drives the polygonal plug column to rotate, and the polygonal plug column drives the holding tank body to rotate inside the main processing tank. The screening side plate on the side can filter and centrifuge the water of the material for dehydration, and the water can be discharged to the outside through the discharge pipe. The split structure makes the feeding and discharging more convenient and efficient, and the rotation dehydration effect is better under the limit and stable structure. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Other features, objects and advantages of the present invention will become more apparent from the detailed description of the non-limiting embodiments with reference to the following drawings:
[0015] Figure 1 It is a schematic diagram of the three-dimensional structure of a dehydration centrifuge that is convenient for discharging;
[0016] Figure 2 This is a structural schematic diagram of the front cross-section connection details of the main processing tank of a dehydration centrifuge that facilitates discharge;
[0017] Figure 3 This is a schematic diagram of the top view and cross-sectional connection details of the main processing tank of a dehydration centrifuge that facilitates discharge;
[0018] Figure 4 This is a structural diagram of the front view cross-section connection details of a holding tank of a dehydration centrifuge that facilitates material discharge;
[0019] Figure 5 The present invention is a structural schematic diagram showing the front view cross-sectional connection details of a sealing cover plate of a dehydration centrifuge that facilitates material discharge.
[0020] In the figure: 1. Main processing tank; 2. Bottom gasket; 3. Discharge pipe; 4. Control panel; 5. Sealing cover; 6. Top handle rod; 7. Rotating motor; 8. Multi-sided plug column; 9. Fixed bearing; 10. Top clip groove; 11. Control main board; 12. Container body; 13. Multi-sided bottom hole; 14. Screening side plate; 15. Positioning column; 16. Pull rod; 17. Bottom annular groove; 18. Snap-on bottom ring; 19. Snap-on top ring; 20. Matching bottom hole; 21. Sealing ring. DETAILED DESCRIPTION
[0021] See also Figure 1 The top of the main processing tank 1 is fixed with a bottom pad 2, and the outer side of the main processing tank 1 is horizontally fixed with a discharge pipe 3. The top surface of the main processing tank 1 is open, and the number of the bottom pad 2 is four, and the top screws of the four bottom pads 2 are fixedly connected with the bottom surface of the main processing tank 1 near the edge screw hole. One end of the discharge pipe 3 horizontally penetrates the side wall of the main processing tank 1 and extends to the inner bottom surface to maintain connection. The outer side of the main processing tank 1 is fixedly clamped with a control panel 4, and the top surface of the main processing tank 1 is horizontally buckled with a sealing cover plate 5. The top surface of the sealing cover plate 5 is horizontally fixed with a top handle rod 6. The control panel 4 and the control main board 11 are electrically connected to each other, and the top handle rod 6 is horizontally fixed in the center groove position of the top surface of the sealing cover plate 5.
[0022] See also Figure 2-5In the embodiment of the present invention, a dehydration centrifuge is provided for discharging materials, wherein a rotating motor 7 is fixedly provided on the inner wall of the main processing tank 1, and the rotating motor 7 is fixedly provided at the center of the inner wall of the main processing tank 1 near the bottom end, and the output end of the rotating motor 7 is vertically extended upward and fixedly connected to the bottom center of the polygonal plug post 8. The inner bottom surface of the main processing tank 1 is plugged with the polygonal plug post 8, and the inner side of the main processing tank 1 is horizontally fixed with a fixed bearing 9. The top of the main processing tank 1 is provided with a top clamping groove 10, and the inner wall of the control panel 4 is fixedly connected with the control main The plate 11 is vertically connected to the inner side of the main processing tank 1 with a holding tank body 12, the bottom end of the polygonal plug column 8 is plugged into the center of the inner bottom surface of the main processing tank 1, and the top end is plugged into the inner side of the polygonal bottom hole 13, the fixed bearing 9 is horizontally fixed on the inner side of the main processing tank 1 near the top opening end, the top surface of the holding tank body 12 is open, and the fixed bearing 9 is horizontally sleeved on the outer side of the holding tank body 12 near the top position, the bottom surface of the holding tank body 12 is provided with a polygonal bottom hole 13, the outer side of the holding tank body 12 is fixedly connected with a screening side plate 14, and the holding tank body 12 is fixed. The top surface of the tank body 12 is symmetrically plugged with a positioning column 15, and the inner side edge of the holding tank body 12 is fixedly provided with a pull rod 16 horizontally. The bottom surface of the sealing cover plate 5 is horizontally provided with a bottom annular groove 17. The polygonal bottom hole 13 is provided at the center of the bottom surface of the holding tank body 12. The top end of the positioning column 15 is correspondingly plugged into the inner side edge of the matching bottom hole 20. The pull rod 16 is horizontally fixed at the center line of the inner top opening end of the holding tank body 12. The bottom annular groove 17 is annularly provided on the bottom surface of the sealing cover plate 5 near the edge. The bottom surface of the sealing cover plate 5 is horizontally connected with a buckle bottom ring 18. The buckle bottom ring 18 The top surface of the sealing cover plate 5 is fixedly provided with a snap-fit top ring 19, and the bottom surface of the snap-fit bottom ring 18 is evenly provided with matching bottom holes 20. The bottom surface of the sealing cover plate 5 is fixedly provided with a sealing ring 21. The top surface of the snap-fit bottom ring 18 is horizontally docked at the bottom open end of the bottom annular groove 17, and the bottom end of the snap-fit bottom ring 18 is horizontally docked at the top position of the holding tank body 12. The top end of the snap-fit top ring 19 is snap-fitted to the inner side of the bottom annular groove 17. The top surface of the sealing ring 21 is fixedly provided on the bottom surface of the sealing cover plate 5 near the edge, and the bottom end of the sealing ring 21 is snap-fitted to the inner side of the top snap-fit groove 10.
[0023] The working principle of this utility model is:
[0024] The composite material is put into the interior of the holding tank body 12, and the holding tank body 12 can be lifted by holding the pull rod 16, so that the holding tank body 12 is vertically inserted into the interior through the top opening of the main processing tank 1, so that the polygonal bottom hole 13 on the bottom surface is buckled and set on the top outer side of the polygonal plug column 8, and the internal fixed bearing 9 is fixedly sleeved and set on the outer side of the holding tank body 12 to support the holding tank body 12, and the sealing cover plate 5 is buckled and set on the top open end of the main processing tank 1, so that the sealing ring 21 on the bottom surface is buckled and set. It is placed inside the top snap-fit groove 10, and then the buckled bottom ring 18 is buckled and set on the top surface of the holding tank body 12, and the matching bottom hole 20 is sleeved on the positioning column 15. Under the control of the control panel 4, the rotating motor 7 is controlled to rotate, so that the output end drives the polygonal plug column 8 to rotate, and the polygonal plug column 8 drives the holding tank body 12 to rotate inside the main processing tank 1. The screening side plate 14 on the side can filter and centrifuge the water body of the material for dehydration, and the water body can be discharged outward through the discharge pipe 3 for treatment.
[0025] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A dehydration centrifuge for easy discharge, comprising a main processing tank (1), characterized in that: The bottom surface of the main processing tank (1) is evenly threaded and fixedly connected with a bottom pad (2); the outer side of the main processing tank (1) is horizontally fixedly plugged with a discharge pipe (3); the outer side of the main processing tank (1) is fixedly connected with a control panel (4); the top surface of the main processing tank (1) is horizontally buckled with a sealing cover plate (5); the top surface of the sealing cover plate (5) is horizontally fixedly provided with a top handle rod (6); the inner side wall of the main processing tank (1) is fixedly provided with a rotating motor (7); the inner bottom surface of the main processing tank (1) is plugged with a multi-sided plug column (8); the inner side of the main processing tank (1) is horizontally fixedly provided with a fixed bearing (9); the top of the main processing tank (1) is provided with a top clamping groove (10); the inner side wall of the control panel (4) is fixedly connected with a control main board (11). The inner side of the main processing tank (1) is vertically plugged with a holding tank body (12), the bottom surface of the holding tank body (12) is provided with a polygonal bottom hole (13), the outer side of the holding tank body (12) is fixedly connected with a screening side plate (14), the top surface of the holding tank body (12) is symmetrically plugged with a positioning column (15), the inner side of the holding tank body (12) is horizontally fixed with a pulling rod (16), the bottom surface of the sealing cover plate (5) is horizontally provided with a bottom annular groove (17), the bottom surface of the sealing cover plate (5) is horizontally connected with a buckle bottom ring (18), the top surface of the buckle bottom ring (18) is fixedly provided with a clamping top ring (19), the bottom surface of the buckle bottom ring (18) is evenly provided with matching bottom holes (20), and the bottom surface of the sealing cover plate (5) is fixedly provided with a sealing ring (21).
2. A dehydration centrifuge for easy discharge according to claim 1, characterized in that: The top surface of the main processing tank (1) is open, and there are four bottom pads (2). The top screws of the four bottom pads (2) are fixedly connected with each other by corresponding threads and arranged on the bottom surface of the main processing tank (1) near the edge screw hole. One end of the discharge pipe (3) horizontally penetrates the side wall of the main processing tank (1) and extends to the inner bottom surface to maintain connection.
3. A dehydration centrifuge for easy discharging according to claim 1, characterized in that: The control panel (4) and the control main board (11) are electrically connected to each other, the top handle rod (6) is horizontally fixedly arranged at the center groove position of the top surface of the sealing cover plate (5), the rotary motor (7) is vertically fixedly arranged at the center of the inner wall of the main processing tank (1) near the bottom end, and the output end of the rotary motor (7) extends vertically upward and is fixedly connected to the bottom center position of the polygonal plug column (8).
4. A dehydration centrifuge for easy discharge according to claim 1, characterized in that: The bottom end of the polygonal plug post (8) is inserted into the center position of the inner bottom surface of the main processing tank (1), and the top end is inserted into the inner side edge of the polygonal bottom hole (13). The fixed bearing (9) is fixedly arranged horizontally on the inner side of the main processing tank (1) near the top opening end. The top surface of the containing tank body (12) is open, and the fixed bearing (9) is sleeved horizontally on the outer side of the containing tank body (12) near the top position.
5. The dehydration centrifuge for easy discharging according to claim 1, characterized in that: The polygonal bottom hole (13) is opened at the center position of the bottom surface of the container (12), the top end of the positioning column (15) is correspondingly inserted into the inner side edge of the matching bottom hole (20), the pulling rod (16) is horizontally fixedly set at the center line position of the inner top opening end of the container (12), and the bottom annular groove (17) is annularly opened at the bottom surface of the sealing cover plate (5) near the edge.
6. A dehydration centrifuge for easy discharge according to claim 1, characterized in that: The top surface of the buckled bottom ring (18) is horizontally docked at the bottom open end of the bottom annular groove (17), and the bottom end of the buckled bottom ring (18) is horizontally docked at the top position of the holding tank body (12). The top end of the clamping top ring (19) is clamped at the inner side edge of the bottom annular groove (17). The top surface of the sealing ring (21) is fixedly set at a bottom surface of the sealing cover plate (5) near the edge, and the bottom end of the sealing ring (21) is clamped at the inner side edge of the top clamping groove (10).