Vacuum separation device for resin synthetic slurry
By using technologies such as mesh conveyors, filter cloths, vacuum separation units, and ultrasonic vibrations in the resin synthesis slurry vacuum separation device, the problem of uneven processing caused by slurry accumulation was solved, and a highly efficient and stable slurry separation and discharge process was achieved.
Patent Information
- Application Number
- CN202520089718.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-15
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-01-15
AI Technical Summary
In existing technologies, the accumulation of resin-synthesized slurry in the V-groove leads to uneven slurry thickness, affecting processing efficiency and quality.
The system employs components such as a mesh conveyor, filter cloth, vacuum separation unit, ultrasonic transducer, and lifting auxiliary unit. It uses a trapezoidal auxiliary pipe to evenly distribute the material, and ultrasonic vibration and cleaning brushes to assist in material discharge, ensuring uniform distribution and efficient separation of the slurry.
It achieves uniform slurry spreading, improves processing quality and efficiency, reduces equipment damage, extends service life, and increases output efficiency.
Smart Images

Figure CN223945162U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to slurry vacuum separation device, technical field, especially to a kind of resin synthetic slurry vacuum separation device. BACKGROUND
[0002] Resin generally refers to the softening or melting range after heating, softening under external force has flow tendency, solid, semi-solid at room temperature, sometimes it can be liquid organic polymer. Broad definition, any macromolecular compound as plastic product processing raw material is called resin.
[0003] Resin has natural resin and synthetic resin. Natural resin refers to the amorphous organic substance obtained from the secretion of plants and animals in nature, such as rosin, amber, shellac, etc. Synthetic resin refers to the resin product obtained by chemical synthesis of simple organic matter or chemical reaction of some natural products, such as phenolic resin, polyvinyl chloride resin, etc. Among them, synthetic resin is the main component of plastic.
[0004] In the prior art, according to Chinese patent, application number CN202222560608.2 discloses a kind of polyphenyl sulfide synthetic slurry vacuum separation device, it includes shell, the inside fixed connection of shell is connected with V-shaped groove, the top of V-shaped groove is fixedly installed with vertical groove, vertical groove is fixedly connected with vacuum suction tube, vacuum pump is installed between vacuum suction tube and shell, the inside fixed installation of shell is matched with the net chain conveyor of V-shaped groove, the conveying net surface of net chain conveyor is fixedly installed with a plurality of baffle, adjacent two baffle and the conveying net of net chain conveyor are fixedly installed with filter cloth. In the utility model, after polyphenyl sulfide synthetic slurry solid-liquid separation, polyphenyl sulfide resin can be directly discharged, continuous operation can be carried out, and the separation efficiency of polyphenyl sulfide synthetic slurry can be improved.
[0005] However, in the prior art, according to Chinese patent, application number CN202222560608.2 discloses a kind of polyphenyl sulfide synthetic slurry vacuum separation device, which forms a space by V-shaped groove, so that there is a phenomenon of accumulation in the bottom of V-shaped groove when transporting slurry, the thickness of slurry on the filter cloth is different, and when vacuum treatment is carried out, the thickest place needs to be processed, which increases the processing time and makes the processing state different at different positions, affecting the processing efficiency and processing quality. Therefore, we propose a kind of resin synthetic slurry vacuum separation device to solve the above problems. UTILITY MODEL CONTENTS
[0006] The utility model discloses a kind of resin synthetic pulp vacuum separation devices, which are characterized by the following technical solutions.
[0007] To achieve the above object, the utility model adopts the following technical solutions:
[0008] A resin synthetic pulp vacuum separation device is designed, which includes a mesh chain conveyor and a housing. The mesh chain conveyor is installed inside the housing. The mesh chain conveyor is connected to a power supply and a controller through wires.
[0009] A filter cloth is installed outside the conveying mesh of the mesh chain conveyor.
[0010] A feed pipe is provided on the upper side of the housing. The feed pipe is fixedly connected to the upper side of the housing and communicates with the feed port.
[0011] A discharge pipe is provided on the right side of the housing. The discharge pipe is fixedly connected to the right side of the housing and communicates with the discharge port.
[0012] A liquid collection tank is located inside the mesh chain conveyor and the housing. A C-shaped mounting plate is installed outside the liquid collection tank. The C-shaped mounting plate is detachably connected to the inside of the mesh chain conveyor.
[0013] An ultrasonic transducer is provided on the right side of the ultrasonic transducer. The ultrasonic transducer is located inside the mesh chain conveyor. The ultrasonic generator is located at the right end outside the filter cloth. The ultrasonic generator is connected to the ultrasonic transducer. The ultrasonic transducer is connected to a power supply and a controller through wires.
[0014] Two sealing strips are located on the upper end outside the filter cloth.
[0015] A vacuum separation unit is located between the liquid collection tank and the C-shaped mounting plate.
[0016] A lifting auxiliary unit is located between the two sealing strips and the housing.
[0017] A discharge auxiliary unit is located between the four ultrasonic generators and the housing.
[0018] Preferably, the lower side of the feeding pipe is provided with a trapezoidal auxiliary pipe connected to the upper end of the inner side of the shell, the feeding port is communicated with the trapezoidal auxiliary pipe, the right side of the trapezoidal auxiliary pipe is provided with a through hole, and the lower side of the trapezoidal auxiliary pipe is fixed with two auxiliary strips connected to the outer side of the net chain conveyor.
[0019] By adopting the above technical scheme, the trapezoidal auxiliary pipe can uniformly spread the slurry on the center of the filter cloth.
[0020] Preferably, the front and rear sides of the C-shaped mounting plate are fixed with A support plates connected to the inner side of the shell.
[0021] By adopting the above technical scheme, the A support plates improve the mounting stability of the C-shaped mounting plate.
[0022] Preferably, the vacuum separation unit comprises a vacuum machine, the left side of the liquid collecting tank is provided with a mounting hole, the inner side of the mounting hole is mounted with an A connecting pipe connected to the vacuum machine, the vacuum machine is mounted on the inner side of the C-shaped mounting plate, the lower side of the liquid collecting tank is provided with a backwater hole, the inner side of the backwater hole is mounted with a water outlet pipe, the lower side of the liquid collecting tank is an inclined surface, and the backwater hole is located at the bottom end of the inclined surface, and the vacuum machine is connected to the power supply and the controller through a guide.
[0023] By adopting the above technical scheme, the vacuum separation unit can perform vacuum treatment on the slurry and perform solid-liquid separation.
[0024] Preferably, the lower side of the vacuum machine is mounted with an A support block, the lower side of the liquid collecting tank is mounted with a B support block, and the A support block and the B support block are connected to the inner side of the C-shaped mounting plate.
[0025] By adopting the above technical scheme, the A support block and the B support block respectively support and position the vacuum machine and the liquid collecting tank, so that the vacuum separation unit operates more stably.
[0026] Preferably, the right side of the A connecting pipe is provided with a protective plate fixedly connected to the inner side of the liquid collecting tank.
[0027] By adopting the above technical scheme, the protective plate protects the A connecting pipe and reduces the probability of liquid entering the A connecting pipe.
[0028] Preferably, the lifting auxiliary unit comprises four electric push rods, the upper side of the sealing strip is fixed with an A sealing plate, the outer side of the A sealing plate is slidably provided with a supporting cylinder, the outer side of the two supporting cylinders is provided with a B sealing plate, the B sealing plate is connected between the mesh chain conveyor and the shell, the side of the B sealing plate facing the supporting cylinder is provided with a sliding groove, the sealing strip and the A sealing plate are slidably arranged in the sliding groove, the electric push rod is arranged on one side of the supporting cylinder and the shaft end of the electric push rod is connected with the A sealing plate, and the electric push rod is connected with the power supply and the controller through wires.
[0029] By adopting the above technical scheme, the lifting auxiliary unit can move up and down with the sealing strip, thereby improving the sealing performance of the processing area and improving the processing quality of the vacuum separation.
[0030] Preferably, the discharging auxiliary unit comprises a cleaning brush, the cleaning brush is located at the lower end of the outer side of the filter cloth, the lower side of the cleaning brush is provided with a C supporting block, the lower side of the C supporting block is fixed with a guide plate, the lower side of the guide plate is fixed with a B supporting plate and a C supporting plate, the B supporting plate is located on the right side of the C supporting plate, the B supporting plate and the C supporting plate are connected with the inner side of the shell, one side of the ultrasonic transducer is provided with an A mounting plate, the outer side of the ultrasonic generator is provided with a mounting block, and the A mounting plate and the mounting block are connected with the mesh chain conveyor.
[0031] By adopting the above technical scheme, the discharging auxiliary unit can vibrate the filter cloth at a vertical position, facilitate the processed slurry to fall off from the filter cloth, and clean the filter cloth at the lower side by the cleaning brush, so that the slurry on the filter cloth falls off more uniformly, and the discharging efficiency is improved.
[0032] Preferably, the guide plate is inclined, and the B supporting plate is lower than the C supporting plate.
[0033] The resin synthetic slurry vacuum separation device has the advantages that:
[0034] 1. By arranging the mesh chain conveyor, the trapezoidal auxiliary pipe, the filter cloth, the sealing strip, the vacuum separation unit and the lifting auxiliary unit, the slurry can be uniformly laid on the center of the filter cloth, the accumulation of the slurry is avoided, the thickness of the slurry is uniform, the processing time of each part of the slurry is the same, and the processing quality and efficiency are improved.
[0035] 2. By arranging the ultrasonic transducer, the ultrasonic generator and the discharging auxiliary unit, the filter cloth is vibrated by using ultrasonic waves, the damage to the mesh chain conveyor is reduced, the service life is improved, and the filter cloth is cleaned again by the cleaning brush, so that the slurry on the filter cloth can be better discharged. BRIEF DESCRIPTION OF DRAWINGS
[0036] Figure 1 A front side perspective structural schematic view of a resin synthetic slurry vacuum separation device is provided in the utility model.
[0037] Figure 2 A front side cutaway perspective structural schematic view of a resin synthetic slurry vacuum separation device is provided in the utility model.
[0038] Figure 3 A front side cutaway perspective structural schematic view of a resin synthetic slurry vacuum separation device is provided in the utility model. Figure 2 A local amplification perspective structural schematic view of A area in the utility model is provided.
[0039] Figure 4 A local amplification perspective structural schematic view of B area in the utility model is provided. Figure 2 A local amplification perspective structural schematic view of B area in the utility model is provided.
[0040] Figure 5 A local amplification perspective structural schematic view of C area in the utility model is provided. Figure 2 A local amplification perspective structural schematic view of C area in the utility model is provided.
[0041] Figure 6 A left side cutaway perspective structural schematic view of a resin synthetic slurry vacuum separation device is provided in the utility model.
[0042] Figure 7 A local amplification perspective structural schematic view of D area in the utility model is provided. Figure 6 A local amplification perspective structural schematic view of D area in the utility model is provided.
[0043] In the drawing: 1, filter cloth; 2, feed pipe; 3, discharge pipe; 4, liquid receiving tank; 5, ultrasonic transducer; 6, sealing strip; 7, vacuum separation unit; 71, vacuum machine; 72, A connecting pipe; 73, water outlet pipe; 74, A supporting block; 75, B supporting block; 76, protection plate; 8, lifting auxiliary unit; 81, electric push rod; 82, A sealing plate; 83, supporting cylinder; 84, B sealing plate; 9, discharge auxiliary unit; 91, cleaning brush; 92, C supporting block; 93, guide plate; 94, B supporting plate; 95, C supporting plate; 96, A mounting plate; 97, mounting block; 10, net chain conveyor; 11, shell; 12, C-shaped mounting plate; 13, ultrasonic generator; 14, trapezoidal auxiliary pipe; 15, auxiliary strip; 16, A supporting plate. DETAILED DESCRIPTION
[0044] 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.
[0045] Reference Figures 1-7A resin synthetic slurry vacuum separation device, comprising a mesh chain conveyor 10, a shell 11, the mesh chain conveyor 10 being installed inside the shell 11, the mesh chain conveyor 10 being connected to a power source and a controller through wires, further comprising a filter cloth 1, a feeding pipe 2, a discharging pipe 3, a liquid collecting tank 4, an ultrasonic transducer 5, two sealing strips 6, a vacuum separation unit 7, a lifting auxiliary unit 8, and a discharging auxiliary unit 9;
[0046] The shell 11 is provided with a feeding port on the upper side, the feeding pipe 2 is fixedly connected to the upper side of the shell 11 and communicates with the feeding port, and the slurry is sent to the filter cloth 1 through the feeding pipe 2;
[0047] The filter cloth 1 is installed outside the conveying mesh of the mesh chain conveyor 10, the feeding pipe 2 is provided with a trapezoidal auxiliary pipe 14 on the lower side, the trapezoidal auxiliary pipe 14 is connected to the upper end of the inner side of the shell 11, the feeding port communicates with the trapezoidal auxiliary pipe 14, the trapezoidal auxiliary pipe 14 is provided with a through hole on the right side, two auxiliary strips 15 are fixedly arranged on the lower side of the trapezoidal auxiliary pipe 14, the auxiliary strips 15 are connected to the outer side of the mesh chain conveyor 10, when the slurry is laid on the filter cloth 1, the mesh chain conveyor 10 moves with the filter cloth 1, so that the filter cloth 1 moves with the slurry, the through hole is located at the narrow side of the trapezoidal auxiliary pipe 14, under the action of the trapezoidal auxiliary pipe 14, the slurry is gathered to the center of the filter cloth 1, and the excess part of the slurry is scraped off through the through hole, so that the slurry on the filter cloth 1 is more evenly distributed and laid on the center of the filter cloth 1, which is convenient for subsequent processing;
[0048] The sealing strip 6 is located on the outer side of the upper end of the filter cloth 1;
[0049] The lifting auxiliary unit 8 is located between the two sealing strips 6 and the shell 11, the lifting auxiliary unit 8 comprises four electric push rods 81, the sealing strip 6 is fixedly provided with an A sealing plate 82 on the upper side, the A sealing plate 82 is slidably provided with a support cylinder 83 on the outer side, two support cylinders 83 are provided with a B sealing plate 84 on the outer side and the B sealing plate 84 is connected between the mesh chain conveyor 10 and the shell 11, the B sealing plate 84 is provided with a sliding groove on the side facing the support cylinder 83, the sealing strip 6 and the A sealing plate 82 are slidably arranged in the sliding groove, the electric push rod 81 is arranged on one side of the support cylinder 83 and the shaft end of the electric push rod 81 is connected to the A sealing plate 82, the electric push rod 81 is connected to the power source and the controller through wires, the electric push rod 81 slides the A sealing plate 82 in the sliding groove on the B sealing plate 84, the A sealing plate 82 moves up and down with the sealing strip 6, when the filter cloth 1 moves with the quantitative slurry to between the two B sealing plates 84, the A sealing plate 82 presses the filter cloth 1 with the sealing strip 6 at this time, cooperating with the shell 11 and the liquid collecting tank 4 and other structures, the slurry on the filter cloth 1 is in a relatively sealed space, which is conducive to subsequent vacuum separation processing of the slurry, improves the processing quality and processing efficiency;
[0050] The liquid collecting tank 4 is located inside the chain conveyor 10 and the shell 11, and the C-shaped mounting plate 12 is mounted outside the liquid collecting tank 4. The C-shaped mounting plate 12 is detachably connected to the inside of the chain conveyor 10, and the A support plate 16 is fixed to the front and rear sides of the C-shaped mounting plate 12. The A support plate 16 is connected to the inside of the shell 11, and the A support plate 16 improves the installation stability of the C-shaped mounting plate 12.
[0051] The vacuum separation unit 7 is located between the liquid collecting tank 4 and the C-shaped mounting plate 12. The vacuum separation unit 7 includes a vacuum machine 71. The left side of the liquid collecting tank 4 is provided with a mounting hole, and the inside of the mounting hole is provided with an A connecting pipe 72 connected to the vacuum machine 71. The right side of the A connecting pipe 72 is provided with a protective plate 76 fixedly connected to the inside of the liquid collecting tank 4. The protective plate 76 protects the A connecting pipe 72 and reduces the probability of liquid entering the A connecting pipe 72. The vacuum machine 71 is installed inside the C-shaped mounting plate 12. The vacuum machine 71 is installed with an A support block 74 on the lower side, and the liquid collecting tank 4 is installed with a B support block 75 on the lower side. The A support block 74 and the B support block 75 are connected to the inside of the C-shaped mounting plate 12. The A support block 74 and the B support block 75 support and position the vacuum machine 71 and the liquid collecting tank 4 respectively, so that the vacuum separation unit 7 operates more stably. The lower side of the liquid collecting tank 4 is provided with a backwater hole, and the inside of the backwater hole is provided with a water outlet pipe 73. The lower side of the liquid collecting tank 4 is inclined, and the backwater hole is located at the lowest end of the inclined surface. The vacuum machine 71 is connected to the power supply and the controller through the guide. The vacuum machine 71 forms a negative pressure vacuum in the space formed by the liquid collecting tank 4 and the lifting auxiliary unit 8 through the A connecting pipe 72. The negative pressure vacuum is generated inside the liquid collecting tank 4. The liquid is treated by passing through the filter cloth 1 and entering the liquid collecting tank 4. The lower side of the liquid collecting tank 4 is inclined, and the backwater hole is located at the lowest end of the inclined surface. After processing, the liquid can be discharged through the water outlet pipe 73. The treated liquid can be reused.
[0052] The right side of the shell 11 is provided with a discharge port, and the discharge pipe 3 is fixedly connected to the right side of the shell 11 and communicates with the discharge port.
[0053] The right side of the ultrasonic transducer 5 is provided with four ultrasonic generators 13. The ultrasonic transducer 5 is located inside the chain conveyor 10, and the ultrasonic generator 13 is located outside the right end of the filter cloth 1. The ultrasonic generator 13 is connected to the ultrasonic transducer 5. The ultrasonic transducer 5 is connected to the power supply and the controller through the guide. The ultrasonic transducer 5 and the ultrasonic generator 13 can make the filter cloth 1 vibrate. At this time, the filter cloth 1 is in a vertical state, which can make the slurry on the filter cloth 1 fall off the filter cloth 1 better and more completely, and then the treated solid slurry is taken out from the discharge pipe 3.
[0054] The discharge auxiliary unit 9 is located between the four ultrasonic generators 13 and the shell 11, the discharge auxiliary unit 9 comprises a cleaning brush 91, the cleaning brush 91 is located at the lower end of the outer side of the filter cloth 1, a C supporting block 92 is installed at the lower side of the cleaning brush 91, a guide plate 93 is fixed at the lower side of the C supporting block 92, a B supporting plate 94 and a C supporting plate 95 are fixed at the lower side of the guide plate 93, the B supporting plate 94 is located at the right side of the C supporting plate 95, the guide plate 93 is inclined, the B supporting plate 94 is lower than the C supporting plate 95, the B supporting plate 94 and the C supporting plate 95 are connected with the inner side of the shell 11, an A mounting plate 96 is installed at one side of the ultrasonic transducer 5, a mounting block 97 is installed at the outer side of the ultrasonic generator 13, the A mounting plate 96 and the mounting block 97 are connected with the mesh chain conveyor 10, the filter cloth 1 moves to the lower side after passing through the vertical dropping part, the cleaning brush 91 cleans the filter cloth 1 again, stubbornly adhering solid slurry on the filter cloth 1 is brushed down, and the solid slurry falls on the guide plate 93, because the B supporting plate 94 is lower than the C supporting plate 95, the guide plate 93 is inclined to the right, and the solid slurry on the guide plate 93 falls at the discharge pipe 3, and then the solid slurry is taken out.
[0055] The mesh chain conveyor 10 is square-shaped, so that the mesh chain conveyor 10 can repeatedly move with the filter cloth 1, so that the filter cloth 1 can move with the slurry into the lifting auxiliary unit 8, then after being treated by the vacuum separation unit 7, the filter cloth 1 can repeatedly be processed after passing through the discharge auxiliary unit 9, and the continuous processing capacity is realized.
[0056] In the description of the present patent, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present patent and simplifying the description, and are not intended to indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present patent; the terms "first", "second", "third" are only for the purpose of description, and cannot be understood as indicating or implying relative importance; in addition, unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting" should be understood in a broad sense, for example, it can be fixed connection, or detachable connection, or integrally connected; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, or the communication between two elements inside. For those skilled in the art, the specific meaning of the above terms in the present patent can be understood according to the specific circumstances.
[0057] The above merely describes a preferred embodiment of the present application, and the protection scope of the present application is not limited thereto, and any skilled person in the art, according to the technical scheme and the inventive concept of the present application, makes equivalent replacement or change within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.
Claims
1. A resin synthetic slurry vacuum separation apparatus comprising a mesh chain conveyor (10) installed inside a housing (11), the mesh chain conveyor (10) being connected to a power source and a controller through a wire, characterized in that, Also include: Filter cloth (1), the filter cloth (1) is installed on the conveying net outside the net chain conveyor (10); Feed pipe (2), the upper side of the shell (11) is provided with a feed port, the feed pipe (2) is fixedly connected with the upper side of the shell (11) and the feed pipe (2) is communicated with the feed port; Discharge pipe (3), the right side of the shell (11) is provided with a discharge port, the discharge pipe (3) is fixedly connected with the right side of the shell (11) and the discharge pipe (3) is communicated with the discharge port; Liquid collecting tank (4), the liquid collecting tank (4) is located inside the net chain conveyor (10) and the shell (11), the outside of the liquid collecting tank (4) is provided with a C-shaped mounting plate (12), the C-shaped mounting plate (12) is detachably connected with the inside of the net chain conveyor (10); Ultrasonic transducer (5), the ultrasonic transducer (5) is provided with four ultrasonic generators (13) on the right side, the ultrasonic transducer (5) is located inside the net chain conveyor (10), the ultrasonic generator (13) is located outside the right end of the filter cloth (1), the ultrasonic generator (13) is connected with the ultrasonic transducer (5), the ultrasonic transducer (5) is connected with the power supply and the controller through the wire; Two sealing strips (6), the sealing strips (6) are located on the upper end of the outside of the filter cloth (1); Vacuum separation unit (7), the vacuum separation unit (7) is located between the liquid collecting tank (4) and the C-shaped mounting plate (12); Lifting auxiliary unit (8), the lifting auxiliary unit (8) is located between the two sealing strips (6) and the shell (11); Discharge auxiliary unit (9), the discharge auxiliary unit (9) is located between the four ultrasonic generators (13) and the shell (11).
2. The resin synthetic slurry vacuum separation device according to claim 1, characterized in that, The lower side of the feed pipe (2) is provided with a trapezoidal auxiliary pipe (14), the trapezoidal auxiliary pipe (14) is connected with the inside upper end of the shell (11), the feed port is communicated with the trapezoidal auxiliary pipe (14), the right side of the trapezoidal auxiliary pipe (14) is provided with a through hole, the lower side of the trapezoidal auxiliary pipe (14) is fixedly provided with two auxiliary strips (15), the auxiliary strips (15) are connected with the outside of the net chain conveyor (10).
3. The resin synthetic slurry vacuum separation device according to claim 1, characterized in that, The C-shaped mounting plate (12) is fixedly provided with an A support plate (16) on the front and back sides, and the A support plate (16) is connected with the inside of the shell (11).
4. The resin synthetic slurry vacuum separation device according to claim 1, characterized in that, The vacuum separation unit (7) comprises a vacuum machine (71), the left side of the liquid collecting tank (4) is provided with a mounting hole, the inside of the mounting hole is provided with an A connecting pipe (72), the A connecting pipe (72) is connected with the vacuum machine (71), the vacuum machine (71) is installed inside the C-shaped mounting plate (12), the lower side of the liquid collecting tank (4) is provided with a backwater hole, the inside of the backwater hole is provided with a water outlet pipe (73), the lower side of the liquid collecting tank (4) is inclined and the backwater hole is located at the lowest end of the inclined surface, and the vacuum machine (71) is connected with the power supply and the controller through the guide.
5. A resin synthesis slurry vacuum separation apparatus according to claim 4, wherein The lower side of the vacuum machine (71) is provided with an A support block (74), the lower side of the liquid collecting tank (4) is provided with a B support block (75), and the A support block (74) and the B support block (75) are connected with the inside of the C-shaped mounting plate (12).
6. The resin synthesis slurry vacuum separation apparatus according to claim 4, wherein The A connecting pipe (72) is provided with a protective plate (76) on the right side, and the protective plate (76) is fixedly connected with the inner side of the liquid collecting groove (4).
7. The resin synthesis slurry vacuum separation device of claim 1, wherein, The lifting auxiliary unit (8) comprises four electric push rods (81), the sealing strip (6) is fixed with an A sealing plate (82) on the upper side, the A sealing plate (82) is slidably provided with a supporting cylinder (83) on the outer side, two supporting cylinders (83) are installed with a B sealing plate (84) on the outer side, and the B sealing plate (84) is connected between the net chain conveyor (10) and the shell (11), the B sealing plate (84) is provided with a sliding groove on the side facing the supporting cylinder (83), the sealing strip (6) and the A sealing plate (82) are slidably arranged in the sliding groove, the electric push rod (81) is installed on one side of the supporting cylinder (83), and the shaft end of the electric push rod (81) is connected with the A sealing plate (82), and the electric push rod (81) is connected with the power supply and the controller through the wire.
8. The resin synthesis slurry vacuum separation device of claim 1, wherein, The discharge auxiliary unit (9) comprises a cleaning brush (91), the cleaning brush (91) is located on the outer lower end of the filter cloth (1), the cleaning brush (91) is installed with a C supporting block (92) on the lower side, the C supporting block (92) is fixed with a guide plate (93) on the lower side, the guide plate (93) is fixed with a B supporting plate (94) and a C supporting plate (95) on the lower side, the B supporting plate (94) is located on the right side of the C supporting plate (95), the B supporting plate (94) and the C supporting plate (95) are connected with the inner side of the shell (11), the ultrasonic transducer (5) is installed with an A mounting plate (96) on one side, the ultrasonic generator (13) is installed with a mounting block (97) on the outer side, and the A mounting plate (96) and the mounting block (97) are connected between the net chain conveyor (10).
9. A resin synthesis slurry vacuum separation apparatus according to claim 8, wherein, The guide plate (93) is inclined, and the B supporting plate (94) is lower than the C supporting plate (95).
Citation Information
Patent Citations
Vacuum separation device for polyphenylene sulfide synthetic slurry
CN219290810U