A cooling and dust removal integrated equipment for modified plastic production
By designing integrated cooling and dust removal equipment for modified plastic production, the problems of weakening cooling effect and fine dust particles are solved, and efficient cooling and high-quality plastic particles are achieved.
Patent Information
- Application Number
- CN202411096772.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-12
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2044-08-12
AI Technical Summary
During the production process of existing modified plastics, the increase in the cooling water temperature leads to a weakening of the cooling effect, affecting the processing of plastic pelletizing; at the same time, the fine dust particles generated during the pelleting of plastics do not meet the standards, affecting the quality of the plastic pellets and posing a threat to the environment and human health.
A integrated cooling and dust removal equipment for the production of modified plastics is designed, including a flow cooling mechanism, a fine particle removal mechanism and a power control mechanism. The flow cooling mechanism realizes rapid circulation of coolant through multiple sets of slender cooling boxes and down-pressure sliding components, improving cooling efficiency; the fine particle removal mechanism uses a screening rack to automatically screen and collects fine plastic particles to reduce dust particles to drift.
The rapid circulation and flow of coolant is achieved, the cooling efficiency is improved, and the service life of cooling water is extended. At the same time, through automatic screening and collection of fine plastic particles, the quality of plastic particles is improved, the dust particles is reduced, and the environment and human health is protected.
Smart Images

Figure CN118809866B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of modified plastic production, and in particular to a cooling and dust removal integrated device for modified plastic production. Background Art
[0002] With the rapid development of my country's economy, the plastic processing industry has developed rapidly and upgraded, modified equipment and technology have gradually matured, and the modified plastic industry system has been continuously improved. Modified plastics refer to general polymer resins that are introduced into specific additives through physical, chemical or both methods, polymer resin new materials, and a variety of plastic raw materials are heated and mixed, extruded through a machine, and then pelletized by a pelletizer. Before pelletizing, the extruded plastic strips need to be cooled. This process is usually assisted by water cooling. The water in the cooling pool is generally static and does not flow. After a long period of cooling and use, the temperature of the water will change. The temperature rises and the cooling effect weakens, affecting the pelletizing process of the plastic. The replacement of cooling water is time-consuming and troublesome; when plastic materials are pelletized, a certain amount of fine dust particles will be generated. This part of the dust particles does not meet the standards and affects the quality of the plastic particles. Moreover, when the pelletizer is discharged, a part of it will also fly in the air or on the ground, causing certain damage to the surrounding air and staff. Summary of the invention
[0003] The invention relates to a cooling and dust-removing integrated equipment for modified plastic production, which comprises a cooling component and a plurality of slender cooling boxes, has a fast cooling speed and a good effect; a downward pressing sliding component and an infusion mechanism can push the coolant inside the cooling component to flow in one direction, and the coolant automatically circulates, which saves time and effort and has a good cooling effect; a fine particle removing mechanism, in the process of flowing, relatively fine plastic particles are automatically screened and collected by the sieve holes of a screening frame, so as to improve the quality of the plastic particles and reduce the fine dust particles floating in the air; the flow of the coolant and the screening of the dust particles share a set of power, which reduces the production cost and facilitates the production of modified plastics.
[0004] The present invention provides a cooling and dust removal integrated device for modified plastic production, which specifically comprises: a liquid cooling mechanism, a flow cooling mechanism, a power control mechanism, a drainage component, a shredder, a fine particle removal mechanism and a vibration linkage mechanism;
[0005] The shredder is a rectangular structure as a whole; the flow cooling mechanism is installed inside the liquid cooling mechanism; the power control mechanism is installed on the surface of the liquid cooling mechanism; the left and right ends of the drainage component are fixedly connected to the liquid cooling mechanism and the shredder respectively; one side of the top of the fine particle removal mechanism is fixedly connected to the shredder; one end of the vibration linkage mechanism is fixedly connected to the fine particle removal mechanism, and the other end of the vibration linkage mechanism is connected to the power control mechanism; the flow cooling mechanism includes: an inner support box, a downward pressing sliding component, a cooling component and an infusion mechanism; the inner support box is a rectangular structure with a square groove on the top, and the inner support box is fixedly installed inside the liquid cooling mechanism; the downward pressing sliding component is slidably installed inside the inner support box; the top of the cooling component is fixedly connected to the inner support box; one end of the bottom of the infusion mechanism is fixedly connected to the cooling component.
[0006] Preferably, the liquid cooling mechanism includes: a bottom box, a partition water discharge plate, a support rotating rod A, a threaded control rod and a top box; the bottom box is a rectangular structure with a hollow interior, a cooling fan is arranged on the surface of the bottom box, and the inner support box is fixedly installed inside the bottom box; a water outlet hole is opened on the surface of the partition water discharge plate, and the partition water discharge plate is fixedly installed inside the bottom box; the support rotating rod A is rotatably installed inside the bottom box, and the support rotating rod A can play a role in assisting the sliding of supporting materials; the bottom of the threaded control rod is rotatably connected to a square plate fixedly arranged on the surface of the bottom box; the top box is a rectangular structure with a hollow interior, a water outlet hole is opened at the bottom of the top box, and the square plate fixedly arranged on the surface of the top box is threadedly connected to the threaded control rod, and the rotation of the threaded control rod can control the lifting and sliding of the top box.
[0007] Preferably, the downward pressing sliding assembly also includes: a lifting frame, a pressure frame and a sealing plug; the lifting frame is an I-shaped structure, and the lifting frame is slidably installed inside the inner support box; the pressure frame is a T-shaped structure as a whole, and the top of the pressure frame is fixedly connected to the lifting frame; the sealing plug is fixedly connected to the pressure frame, and the sealing plug can play a role in assisting in controlling the flow of liquid inside the cooling box.
[0008] Preferably, the cooling assembly also includes: a cooling box and a one-way air intake valve; the cooling box is an elongated rectangular structure, a groove is provided on the top of the cooling box, the top of the cooling box is fixedly connected to the inner branch box, and the sealing plug is slidably inserted into the inner branch box; one end of the one-way air intake valve is fixedly connected to the cooling box, and the one-way air intake valve can assist air to enter the interior of the cooling box in one direction.
[0009] Preferably, the infusion mechanism also includes: a connecting tube, a fixing plate, a support frame, a plug rod, a connecting tube, a rubber sealing ring and a top connecting tube; one end of the connecting tube is fixedly connected to the cooling box; the fixing plate is a circular structure with a circular hole in the middle, and the fixing plate is fixedly installed inside the connecting tube; the support frame is fixedly installed inside the connecting tube; a spring is provided on the surface of the plug rod, one end of the plug rod slides through the support frame, and the other end of the plug rod is inserted into the circular hole of the fixing plate, and the plug rod can play a role in assisting the closure of the fixing plate; one end of the bottom of the connecting tube passes through the bottom box and is fixedly connected to the connecting tube; the rubber sealing ring is fixedly connected to the connecting tube; the top connecting tube is an L-shaped structure, the connecting tube and the top of the rubber sealing ring are slid into the top connecting tube, and the other end of the top connecting tube is fixedly connected to the top box.
[0010] Preferably, the power control mechanism includes: a sliding frame, a motor box, a support box, a threaded control rod, a driving frame, a connecting rotating rod and a rotating push plate; the sliding frame is a square frame structure, and the sliding frame is slidably mounted on the surface of the bottom box; a motor is arranged inside the motor box, and the motor box is fixedly mounted on the surface of the bottom box; the support box is a rectangular structure with a hollow interior, and the support box is fixedly mounted on the top of the motor box; the bottom of the threaded control rod rotates through the support box and is connected to the motor inside the motor box; the surface of the threaded control rod is threadedly connected to the sliding frame, and the rotation of the threaded control rod can control the sliding frame to lift and slide; the driving frame is a U-shaped structure as a whole, one end of the bottom of the driving frame is fixedly connected to the sliding frame, and the other end of the driving frame slides through the partition launch plate and is fixedly connected to the lifting frame; one end of the connecting rotating rod is rotatably inserted into the interior of the support box and is rotatably connected to the threaded control rod through a bevel gear assembly; the rotating push plate is fixedly mounted on the surface of the connecting rotating rod.
[0011] Preferably, the drainage assembly includes: a support platform and a support rotating rod B; the left and right ends of the support platform are respectively fixedly connected to the bottom box and the shredder, and the support platform can play a role in assisting in carrying the cooling liquid on the surface of the plastic strip; the support rotating rod B is installed on the surface of the support platform.
[0012] Preferably, the fine particle removal mechanism includes: a carrying box, a connecting box, a fine particle carrying box, a lifting rod, a screening frame, a support frame and a plug plate; the carrying box is fixedly mounted on the surface of the shredder, and one side of the carrying box is connected to the discharge port of the shredder; the connecting box is a rectangular structure with a hollow interior, a square groove is provided on the surface of the connecting box, and the top of the connecting box is fixedly connected to the carrying box; the number of fine particle carrying boxes is set to two groups, the fine particle carrying boxes are fixedly mounted on the left and right ends of the connecting box, and the fine particle carrying boxes are used to carry and filter particles; the bottom of the lifting rod slides through the carrying box and is inserted into the interior of the connecting box; filtering screen holes are provided on one side of the surface of the screening frame, and the left and right ends of the screening frame are fixedly connected to the lifting rod, and the screening frame can play a role in screening and filtering fine plastic particles; the left and right ends of the support frame are fixedly connected to the two groups of lifting rods; the plug plate is a triangular structure as a whole, and the plug plate is fixedly mounted in the middle of the support frame, and the plug plate can play a role in assisting in blocking the discharge port of the carrying box.
[0013] Preferably, the vibration linkage mechanism includes: a top frame, a support rod, a limit support rod and a driving control frame; the top frame is fixedly installed on the top of the lifting rod; the number of support rods is set to two groups, and the top of the support rod is fixedly connected to the top frame; a spring is provided on the surface of the limit support rod, and the bottom of the limit support rod is fixedly installed on the top of the square plate on the surface of the shredder, and the spring on the surface of the limit support rod can play the role of elastically supporting the support rod; one side of the driving control frame is fixedly connected to the support rod, and the other end of the driving control frame is in contact with the rotating push plate.
[0014] The present invention has the following beneficial effects
[0015] Firstly, a cooling assembly is arranged inside the flow cooling mechanism of the present invention, and a plurality of groups of elongated rectangular cooling boxes are arranged inside the cooling assembly. The coolant is in the cooling box, and the fans on the side can quickly cool the coolant therein, so the cooling speed is fast and the effect is good.
[0016] Secondly, a downward-pressing sliding component and an infusion mechanism are also provided inside the flow cooling mechanism of the present invention. The downward-pressing sliding component can push the coolant inside the cooling component to flow in one direction, so that the coolant with a low temperature can be recirculated by the infusion mechanism and flow into the top of the partitioning lower water plate, so that the coolant in contact with the plastic strip is always at a lower temperature. At the same time, the coolant circulates automatically and does not require manual auxiliary addition, saving time and effort.
[0017] Thirdly, the present invention is also provided with a fine particle removal mechanism, and a plurality of screening frames are arranged inside the fine particle removal mechanism. The screening frames can be raised and lowered and slid, and can control the shredded plastic particles to enter the screening frames in batches. The relatively fine plastic particles will be automatically screened and collected by the sieve holes of the screening frames during the flow, thereby improving the quality of the plastic particles. At the same time, it can also reduce the problem of fine dust particles floating in the air.
[0018] Finally, the present invention is also provided with a power control mechanism inside, which can simultaneously control the flow of coolant and the screening of dust particles, share a set of power, reduce production costs, and facilitate the production of modified plastics. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In order to more clearly illustrate the technical solution of the embodiment of the present invention, the drawings of the embodiment are briefly introduced below.
[0020] The drawings described below are only related to some embodiments of the present invention, but are not intended to limit the present invention.
[0021] In the attached picture:
[0022] Figure 1 A schematic structural diagram of the main body of the present invention is shown as a side view of the main body;
[0023] Figure 2 A schematic diagram of the structure of the main body of the present invention is shown as seen from above;
[0024] Figure 3 A schematic cross-sectional view of the structure of the liquid cooling mechanism of the present invention is shown;
[0025] Figure 4 A schematic cross-sectional structural diagram of the flow cooling mechanism of the present invention is shown;
[0026] Figure 5 A schematic diagram of the structure of a cooling assembly of the present invention from a side view is shown;
[0027] Figure 6 A schematic cross-sectional view of the structure of the infusion mechanism of the present invention is shown;
[0028] Figure 7 The present invention shows Figure 6 A is a schematic diagram of a partially enlarged structure;
[0029] Figure 8 A schematic cross-sectional view of the power control mechanism of the present invention is shown;
[0030] Fig. 9 A schematic diagram showing the decomposed structure of the fine particle removal mechanism of the present invention is shown;
[0031] Fig.10 A schematic structural diagram of the vibration linkage mechanism of the present invention is shown in an axial side view.
[0032] Reference numerals list
[0033] 1. Liquid cooling mechanism; 101. Bottom box; 102. Separating water discharge plate; 103. Supporting rotating rod A; 104. Threaded control rod; 105. Top box; 2. Flow cooling mechanism; 201. Inner support box; 202. Pressing sliding assembly; 2021. Lifting frame; 2022. Pressing frame; 2023. Sealing plug; 203. Cooling assembly; 2031. Cooling box; 2032. One-way air inlet valve; 204. Infusion mechanism; 2041. Connecting pipe; 2042. Fixing plate; 2043. Supporting frame; 2044. Plug rod; 2045. Connecting pipe; 2046. Rubber sealing ring; 2047. Top connecting pipe; 3. Power control mechanism; 301. Sliding frame; 302. Motor box; 303. Support box; 304. Threaded control rod; 305. Driving frame; 306. Connecting rotating rod; 307. Rotating push plate; 4. Drain assembly; 401. Support platform; 402. Support rotating rod B; 5. Chopper; 6. Fine particle removal mechanism; 601. Carrying box; 602. Connecting box; 603. Fine particle carrying box; 604. Lifting rod; 605. Screening frame; 606. Support frame; 607. Stopper plate; 7. Vibration linkage mechanism; 701. Top frame; 702. Support rod; 703. Limiting support rod; 704. Driving control frame. DETAILED DESCRIPTION
[0034] The implementation of the utility model is further described in detail below in conjunction with the drawings and examples.
[0035] Example: Please refer to Figures 1 to 10 :
[0036] The present invention proposes a cooling and dust removal integrated device for modified plastic production, comprising: a liquid cooling mechanism 1, a flow cooling mechanism 2, a power control mechanism 3, a draining component 4, a shredder 5, a fine particle removal mechanism 6 and a vibration linkage mechanism 7;
[0037] The shredder 5 is a rectangular structure as a whole; the flow cooling mechanism 2 is installed inside the liquid cooling mechanism 1; the power control mechanism 3 is installed on the surface of the liquid cooling mechanism 1; the left and right ends of the drain component 4 are fixedly connected to the liquid cooling mechanism 1 and the shredder 5 respectively; one side of the top of the fine particle removal mechanism 6 is fixedly connected to the shredder 5; one end of the vibration linkage mechanism 7 is fixedly connected to the fine particle removal mechanism 6, and the other end of the vibration linkage mechanism 7 is connected to the power control mechanism 3; the flow cooling mechanism 2 includes: an inner support box 201, a downward pressing sliding component 202, a cooling component 203 and an infusion mechanism 204; the inner support box 201 is a rectangular structure with a square groove on the top, and the inner support box 201 is fixedly installed inside the liquid cooling mechanism 1; the downward pressing sliding component 202 is slidably installed inside the inner support box 201; the top of the cooling component 203 is fixedly connected to the inner support box 201; one end of the bottom of the infusion mechanism 204 is fixedly connected to the cooling component 203.
[0038] like Figure 3 As shown, the liquid cooling mechanism 1 includes: a bottom box 101, a partitioning water discharge plate 102, a supporting rotating rod A103, a threaded control rod 104 and a top box 105; the bottom box 101 is a rectangular structure with a hollow interior, a cooling fan is arranged on the surface of the bottom box 101, and the inner supporting box 201 is fixedly installed inside the bottom box 101; a water outlet is provided on the surface of the partitioning water discharge plate 102, and the partitioning water discharge plate 102 is fixedly installed inside the bottom box 101; the supporting rotating rod A103 is rotatably installed inside the bottom box 101, and the supporting rotating rod A103 can play a role in assisting the sliding of supporting materials; the bottom of the threaded control rod 104 is rotatably connected to a square plate fixedly arranged on the surface of the bottom box 101; the top box 105 is a rectangular structure with a hollow interior, a water outlet is provided at the bottom of the top box 105, and a square plate fixedly arranged on the surface of the top box 105 is threadedly connected to the threaded control rod 104, and the rotation of the threaded control rod 104 can control the lifting and sliding of the top box 105.
[0039] like Figure 5As shown, the downward pressing sliding assembly 202 also includes: a lifting frame 2021, a pressing frame 2022 and a sealing plug 2023; the lifting frame 2021 is an I-shaped structure, and the lifting frame 2021 is slidably installed inside the inner support box 201; the pressing frame 2022 is a T-shaped structure as a whole, and the top of the pressing frame 2022 is fixedly connected to the lifting frame 2021; the sealing plug 2023 is fixedly connected to the pressing frame 2022, and the sealing plug 2023 can play a role in assisting in controlling the flow of liquid inside the cooling box 2031.
[0040] like Figure 5 As shown, the cooling assembly 203 also includes: a cooling box 2031 and a one-way air intake valve 2032; the cooling box 2031 is an elongated rectangular structure, a groove is provided on the top of the cooling box 2031, the top of the cooling box 2031 is fixedly connected with the inner support box 201, and the sealing plug 2023 is slidably inserted into the inner support box 201; one end of the one-way air intake valve 2032 is fixedly connected with the cooling box 2031, and the one-way air intake valve 2032 can assist air to enter the cooling box 2031 in one direction.
[0041] like Figure 6 As shown, the infusion mechanism 204 also includes: a connecting tube 2041, a fixing plate 2042, a support frame 2043, a plug rod 2044, a connecting tube 2045, a rubber sealing ring 2046 and a top connecting tube 2047; one end of the connecting tube 2041 is fixedly connected to the cooling box 2031; the fixing plate 2042 is a circular structure with a circular hole in the middle, and the fixing plate 2042 is fixedly installed inside the connecting tube 2041; the support frame 2043 is fixedly installed inside the connecting tube 2041; a spring is provided on the surface of the plug rod 2044, and one end of the plug rod 2044 slides The other end of the plug rod 2044 passes through the support frame 2043 and is inserted into the circular hole of the fixing plate 2042. The plug rod 2044 can play a role in assisting the closure of the fixing plate 2042; the bottom end of the connecting pipe 2045 passes through the bottom box 101 and is fixedly connected to the connecting pipe 2041; the rubber sealing ring 2046 is fixedly connected to the connecting pipe 2045; the top connecting pipe 2047 is an L-shaped structure, and the top of the connecting pipe 2045 and the rubber sealing ring 2046 are slidably inserted into the top connecting pipe 2047, and the other end of the top connecting pipe 2047 is fixedly connected to the top box 105.
[0042] like Figure 8As shown, the power control mechanism 3 includes: a sliding frame 301, a motor box 302, a support box 303, a threaded control rod 304, a driving frame 305, a connecting rod 306 and a rotating push plate 307; the sliding frame 301 is a square frame structure, and the sliding frame 301 is slidably mounted on the surface of the bottom box 101; a motor is arranged inside the motor box 302, and the motor box 302 is fixedly mounted on the surface of the bottom box 101; the support box 303 is a rectangular parallelepiped structure with a hollow interior, and the support box 303 is fixedly mounted on the top of the motor box 302; the bottom of the threaded control rod 304 rotates through the support box 303 and connects with the motor box 30 2; the surface of the threaded control rod 304 is threadedly connected to the sliding frame 301, and the rotation of the threaded control rod 304 can control the sliding frame 301 to move up and down and slide; the driving frame 305 is a U-shaped structure as a whole, one end of the bottom of the driving frame 305 is fixedly connected to the sliding frame 301, and the other end of the driving frame 305 slides through the partitioning water board 102 and is fixedly connected to the lifting frame 2021; one end of the connecting rotating rod 306 is rotatably inserted into the inside of the support box 303 and is rotatably connected to the threaded control rod 304 through the bevel gear assembly; the rotating push plate 307 is fixedly installed on the surface of the connecting rotating rod 306.
[0043] like Figure 2 As shown, the drain assembly 4 includes: a support platform 401 and a support rotating rod B402; the left and right ends of the support platform 401 are fixedly connected to the bottom box 101 and the shredder 5 respectively, and the support platform 401 can play a role in assisting in carrying the cooling liquid on the surface of the plastic strip; the support rotating rod B402 is installed on the surface of the support platform 401.
[0044] like Fig. 9 As shown, the fine particle removal mechanism 6 includes: a carrying box 601, a connecting box 602, a fine particle carrying box 603, a lifting rod 604, a screening frame 605, a support frame 606 and a plug plate 607; the carrying box 601 is fixedly installed on the surface of the shredder 5, and one side of the carrying box 601 is connected to the discharge port of the shredder 5; the connecting box 602 is a rectangular parallelepiped structure with a hollow interior, and a square groove is opened on the surface of the connecting box 602, and the top of the connecting box 602 is fixedly connected to the carrying box 601; the number of fine particle carrying boxes 603 is set to two groups, and the fine particle carrying boxes 603 are fixedly installed on the left and right sides of the connecting box 602. At both ends, the fine particle carrying box 603 is used to carry and filter the particles; the bottom of the lifting rod 604 slides through the carrying box 601 and is inserted into the connecting box 602; one side of the surface of the screening frame 605 is provided with filtering screen holes, and the left and right ends of the screening frame 605 are fixedly connected to the lifting rod 604, and the screening frame 605 can play the role of screening and filtering fine plastic particles; the left and right ends of the support frame 606 are fixedly connected to the two groups of lifting rods 604; the plug plate 607 is a triangular structure as a whole, and the plug plate 607 is fixedly installed in the middle of the support frame 606, and the plug plate 607 can play the role of assisting in sealing the discharge port of the carrying box 601.
[0045] like Fig.10As shown, the vibration linkage mechanism 7 includes: a top frame 701, a support rod 702, a limit support rod 703 and a driving control frame 704; the top frame 701 is fixedly installed on the top of the lifting rod 604; the number of support rods 702 is set to two groups, and the top of the support rod 702 is fixedly connected to the top frame 701; a spring is provided on the surface of the limit support rod 703, and the bottom of the limit support rod 703 is fixedly installed on the top of the square plate on the surface of the shredder 5, and the spring on the surface of the limit support rod 703 can play a role in elastically supporting the support rod 702; one side of the driving control frame 704 is fixedly connected to the support rod 702, and the other end of the driving control frame 704 is in contact with the rotating push plate 307.
[0046] A cooling and dust removal method for modified plastic production: the mixed and heated plastic is extruded into thin strips by an extruder, the plastic thin strips are inserted into the coolant inside the bottom box 101, the surface of the partition water plate 102 carries the coolant, the plastic thin strips pass through the coolant at the bottom of the support rotating rod A103, the plastic strips are cooled and hardened, pass through the bottom box 101 and enter the shredder 5 through the support rotating rod B402 for shredding, the threaded control rod 104 is rotated, the threaded control rod 104 surface thread controls the top box 105 to slide downward, and controls the distance between the top box 105 and the bottom box 101. During the cooling process of the plastic strips, the motor inside the motor box 302 can be controlled to rotate, the threaded control rod 304 can rotate, and the threaded control rod 304 surface thread pushes The movable sliding frame 301 slides downward, and the four groups of driving frames 305 on the four sides of the sliding frame 301 slide downward at the same time, squeezing and pushing the lifting frame 2021 to slide down, and the sealing plug 2023 at the bottom of the lifting frame 2021 pushes the coolant cooled inside the cooling box 2031 to flow. Due to the slender rectangular structure of the cooling box 2031 and a fan provided at one end of the cooling box 2031, the coolant in the cooling box 2031 can be quickly cooled. The coolant in the cooling box 2031 is pushed by the sealing plug 2023 to flow into the connecting pipe 2041, and the plug rod 2044 is pushed by the coolant to slide, opening the water inlet hole of the fixed plate 2042, and the coolant enters the top box 1 through the connecting pipe 2045 and the top connecting pipe 2047. 05, the cooled coolant flows back into the surface of the partition water plate 102 from the water outlet of the top box 105, the motor in the motor box 302 rotates counterclockwise, the sealing plug 2023 rises, and the air enters the cooling box 2031 in one direction through the one-way air inlet valve 2032, the sealing plug 2023 continues to rise, the sealing plug 2023 is drawn out of the cooling box 2031, and the coolant with higher temperature at the top of the partition water plate 102 flows into the inner support box 201 and enters the cooling box 2031 for re-cooling, completing the circulation of the coolant; during the flow process, the connecting rod 306 rotates with it, and the motor box 302 drives the connecting rod 306 to rotate through the bevel gear assembly, and a rotating shaft is fixedly provided at one end of the connecting rod 306 Push plate 307, rotating push plate 307 will push and drive control frame 704 to lift and circulate and shake, control frame 704 controls the lifting and sliding of top frame 701 through support rod 702, lifting rod 604, screening frame 605, support frame 606 and plug plate 607 will follow the lifting and sliding, plug plate 607 slides downward to open the bottom of carrying box 601, chopped plastic particles will enter the surface of screening frame 605 inside connecting box 602, multiple groups of plastic particles roll downward from the surface of screening frame 605, fine dust particles fall into the surface of the support plate at the bottom of screening frame 605, in the process of lifting and vibrating of screening frame 605, dust particles will roll from the surface of screening frame 605 into the inside of fine particle carrying box 603, completing dust removal.
Claims
1. A cooling and dust removal integrated equipment for modified plastic production, comprising: Liquid cooling mechanism (1), flow cooling mechanism (2), power control mechanism (3), drainage assembly (4), shredder (5), fine particle removal mechanism (6) and vibration linkage mechanism (7); The shredder (5) is a rectangular parallelepiped structure as a whole; it is characterized in that the flow cooling mechanism (2) is installed inside the liquid cooling mechanism (1); the power control mechanism (3) is installed on the surface of the liquid cooling mechanism (1); the left and right ends of the drain assembly (4) are respectively fixedly connected to the liquid cooling mechanism (1) and the shredder (5); one side of the top of the fine particle removal mechanism (6) is fixedly connected to the shredder (5); one end of the vibration linkage mechanism (7) is fixedly connected to the fine particle removal mechanism (6), and the other end of the vibration linkage mechanism (7) is fixedly connected to the fine particle removal mechanism (6). The outer end is connected to the power control mechanism (3); the fluid cooling mechanism (2) comprises: an inner support box (201), a downward pressing sliding component (202), a cooling component (203) and an infusion mechanism (204); the inner support box (201) is fixedly installed inside the liquid cooling mechanism (1); the downward pressing sliding component (202) is slidably installed inside the inner support box (201); the top of the cooling component (203) is fixedly connected to the inner support box (201); and the bottom end of the infusion mechanism (204) is fixedly connected to the cooling component (203); The liquid cooling mechanism (1) comprises: a bottom box (101), a partitioning water discharge plate (102), a support rotating rod A (103), a threaded control rod (104) and a top box (105); a cooling fan is arranged on the surface of the bottom box (101), and the inner support box (201) is fixedly installed inside the bottom box (101); a water outlet hole is opened on the surface of the partitioning water discharge plate (102), and the partitioning water discharge plate (102) is fixedly installed inside the bottom box (101); the support rotating rod A (103) is rotatably installed inside the bottom box (101); the bottom of the threaded control rod (104) is rotatably connected to a square plate fixedly arranged on the surface of the bottom box (101); the bottom of the top box (105) is opened at the water outlet hole, and the square plate fixedly arranged on the surface of the top box (105) is threadably connected to the threaded control rod (104); The downward pressing sliding assembly (202) further comprises: a lifting frame (2021), a pressing frame (2022) and a sealing plug (2023); the lifting frame (2021) is slidably mounted inside the inner support box (201); the top of the pressing frame (2022) is fixedly connected to the lifting frame (2021); and the sealing plug (2023) is fixedly connected to the pressing frame (2022); The power control mechanism (3) comprises: a sliding frame (301), a motor box (302), a support box (303), a threaded control rod (304), a driving frame (305), a connecting rod (306) and a rotating push plate (307); the sliding frame (301) is slidably mounted on the surface of the bottom box (101); a motor is arranged inside the motor box (302), and the motor box (302) is fixedly mounted on the surface of the bottom box (101); the support box (303) is fixedly mounted on the top of the motor box (302); the bottom of the threaded control rod (304) rotates through the support box (303) ) and connected to the motor inside the motor box (302); the surface of the threaded control rod (304) is threadedly connected to the sliding frame (301); one end of the bottom of the driving frame (305) is fixedly connected to the sliding frame (301), and the other end of the driving frame (305) slides through the separating water discharge plate (102) and is fixedly connected to the lifting frame (2021); one end of the connecting rotating rod (306) is rotatably inserted into the support box (303) and is rotatably connected to the threaded control rod (304) through the bevel gear assembly; the rotating push plate (307) is fixedly installed on the surface of the connecting rotating rod (306).
2. The cooling and dust removal integrated equipment for modified plastic production according to claim 1, characterized in that: The cooling assembly (203) further comprises: a cooling box (2031) and a one-way air intake valve (2032); the cooling box (2031) is a slender rectangular parallelepiped structure, a groove is provided on the top of the cooling box (2031), the top of the cooling box (2031) is fixedly connected to the inner support box (201), and the sealing plug (2023) is slidably inserted into the inner support box (201); one end of the one-way air intake valve (2032) is fixedly connected to the cooling box (2031).
3. The cooling and dust removal integrated equipment for modified plastic production according to claim 2, characterized in that: The infusion mechanism (204) further comprises: a connecting tube (2041), a fixing plate (2042), a support frame (2043), a plug rod (2044), a connecting tube (2045), a rubber sealing ring (2046) and a top connecting tube (2047); one end of the connecting tube (2041) is fixedly connected to the cooling box (2031); the fixing plate (2042) is fixedly installed inside the connecting tube (2041); the support frame (2043) is fixedly installed inside the connecting tube (2041); a spring is provided on the surface of the plug rod (2044); One end of the rod (2044) slides through the support frame (2043), and the other end of the plug rod (2044) is inserted into the circular hole of the fixing plate (2042); one end of the bottom of the connecting pipe (2045) passes through the bottom box (101) and is fixedly connected to the connecting pipe (2041); the rubber sealing ring (2046) is fixedly connected to the connecting pipe (2045); the top of the connecting pipe (2045) and the rubber sealing ring (2046) slides and is inserted into the top connecting pipe (2047), and the other end of the top connecting pipe (2047) is fixedly connected to the top box (105).
4. The cooling and dust removal integrated equipment for modified plastic production according to claim 1, characterized in that: The drain assembly (4) comprises: a support platform (401) and a support rotating rod B (402); the left and right ends of the support platform (401) are respectively fixedly connected to the bottom box (101) and the shredder (5); and the support rotating rod B (402) is installed on the surface of the support platform (401).
5. The cooling and dust removal integrated equipment for modified plastic production according to claim 1, characterized in that: The fine particle removal mechanism (6) comprises: a carrying box (601), a connecting box (602), a fine particle carrying box (603), a lifting rod (604), a screening frame (605), a support frame (606) and a plug plate (607); the carrying box (601) is fixedly mounted on the surface of the shredder (5), and one side of the carrying box (601) is connected to the discharge port of the shredder (5); a square groove is provided on the surface of the connecting box (602), and the top of the connecting box (602) is fixedly connected to the carrying box (601); the fine particle carrying The number of boxes (603) is set to two groups, and the fine particle carrying boxes (603) are fixedly installed at the left and right ends of the connecting box (602); the bottom of the lifting rod (604) slides through the carrying box (601) and is inserted into the connecting box (602); a filtering screen hole is opened on one side of the surface of the screening frame (605), and the left and right ends of the screening frame (605) are fixedly connected to the lifting rod (604); the left and right ends of the support frame (606) are fixedly connected to the two groups of lifting rods (604); and the plug plate (607) is fixedly installed in the middle of the support frame (606).
6. The cooling and dust removal integrated equipment for modified plastic production according to claim 1, characterized in that: The vibration linkage mechanism (7) comprises: a top frame (701), a support rod (702), a limit support rod (703) and a driving control frame (704); the top frame (701) is fixedly mounted on the top of the lifting rod (604); the top of the support rod (702) is fixedly connected to the top frame (701); a spring is provided on the surface of the limit support rod (703), and the bottom of the limit support rod (703) is fixedly mounted on the top of a square plate on the surface of the shredder (5); one side of the driving control frame (704) is fixedly connected to the support rod (702), and the other end of the driving control frame (704) is in contact with the rotating push plate (307).
Citation Information
Patent Citations
Plastic extrusion molding device
CN106493932A
Plastic particle production system
CN113199660A