High-efficiency light-absorbing polyester fiber polymerization reactor
By designing a high-efficiency light-absorbing polyester fiber polymerization reactor with flip and stirring mechanism, the problem of difficulty in discharge of polymerization reaction products in the prior art is solved, and rapid and efficient discharge and reaction efficiency are achieved.
Patent Information
- Application Number
- CN202421801400.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-29
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-07-29
AI Technical Summary
The prior art is not easy to achieve rapid discharge of polyester fiber products after the polymerization reaction, resulting in a blockage of the pipeline and affecting the discharge efficiency.
A high-efficiency light-absorbing polyester fiber polymerization reactor is designed, including a flip mechanism and a stirring mechanism, which achieves efficient discharge and reaction rate improvement by flipping the polymerization reaction tank and agitation fiber.
The rapid and efficient discharge of products inside the polymerization reaction tank is achieved, which avoids pipeline blockage and improves reaction efficiency and product quality.
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Figure CN222872143U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of reactors, and in particular relates to a high-efficiency light-absorbing polyester fiber polymerization reactor. Background Art
[0002] Polyester fiber has the advantages of high modulus, high strength, high elasticity, good shape retention and heat resistance, and has become the most widely used and most consumed fiber variety.
[0003] The authorization publication number "CN207680609U" records "a polymerization reactor including a closed reactor. By adjusting the position of the feed pipe in the polymerization reactor and installing an annular inner coil and an annular jacketed outer coil in the closed reactor, the utilization efficiency of the initiator and some auxiliary agents in the monomer polymerization reaction, especially the solution polymerization reaction, can be improved, the free monomer in the product can be reduced, the quality of the reaction product can be improved and the corrosion of the reaction equipment can be avoided."
[0004] The above patent improves the quality of the reaction product and avoids corrosion of the reaction equipment, but it is not easy to achieve rapid discharge of the product after the polymerization reaction is completed, because the polyester fiber will block the pipeline after the polymerization reaction, thereby affecting the discharge. Utility Model Content
[0005] The utility model aims to provide a high-efficiency light-absorbing polyester fiber polymerization reactor, aiming to solve the problem in the prior art that it is difficult to quickly discharge the product after the polymerization reaction is completed.
[0006] In order to achieve the above purpose, the utility model provides the following technical solutions:
[0007] A high-efficiency light-absorbing polyester fiber polymerization reactor, comprising:
[0008] Base plate;
[0009] A bracket mechanism is arranged on the top of the base plate;
[0010] A turning mechanism is arranged on the support mechanism;
[0011] A polymerization reaction tank is arranged on a turning mechanism, and the turning mechanism is used to turn the polymerization reaction tank;
[0012] A stirring mechanism is provided on the polymerization reaction tank; and
[0013] The sealing mechanism is arranged on the support mechanism, and the sealing mechanism is connected with the polymerization reaction tank.
[0014] As a preferred solution of the utility model, the bracket mechanism includes a vertical plate and a side plate, the vertical plate is fixedly connected to the top of the bottom plate, two side plates are provided, both of the two side plates are fixedly connected to one side end of the vertical plate, and the two side plates are symmetrically arranged.
[0015] As a preferred solution of the utility model, the flipping mechanism includes:
[0016] A turning part, provided on two side panels; and
[0017] The locking component is arranged on the vertical plate, and the locking component is connected with the flipping component.
[0018] As a preferred solution of the utility model, the flipping component includes a rotating drum, a forward and reverse motor, a gear A and a gear B, and two rotating drums are provided, each of which is rotatably connected to the side end of each side plate, and each rotating drum rotates through each side plate and extends to the outside of each side plate, the gear B is fixedly connected to the circumferential surface of one of the rotating drums, the forward and reverse motor is fixedly connected to the side end of one of the side plates, and the output end of the forward and reverse motor rotates through the side plate and extends to the outside of the side plate, the gear A is fixedly connected to the output end of the forward and reverse motor, and gear A and gear B are meshed with each other.
[0019] As a preferred solution of the utility model, the locking component includes an electric telescopic rod B, a limiting plug rod and a socket, and a plurality of the sockets are provided, and the plurality of the sockets are all opened on the circumferential surface of one of the rotating drums, and the plurality of sockets are evenly distributed, one end of the electric telescopic rod B is fixedly connected to one side end of the vertical plate, the limiting plug rod is fixedly connected to the extended end of the electric telescopic rod B, and the limiting plug rod is movably inserted into one of the sockets.
[0020] As a preferred solution of the utility model, the stirring mechanism includes an agitator, a driving motor and a U-shaped plate, the agitator is rotatably connected between the side walls of the polymerization reaction tank, and both ends of the agitator rotate through the polymerization reaction tank and extend to the outside of the polymerization reaction tank, the U-shaped plate is fixedly connected to one side end of the polymerization reaction tank, the driving motor is fixedly connected to the side end of the U-shaped plate, and the output end of the driving motor rotates through the U-shaped plate and is fixedly connected to the agitator.
[0021] As a preferred solution of the utility model, the sealing mechanism includes a sealing cover, a sliding rod, an electric telescopic rod A and a cross plate, the cross plate is fixedly connected to one side end of the vertical plate, two sliding rods are provided, both of the two sliding rods are movably plugged into the top of the cross plate, and both sliding rods movably penetrate the cross plate and extend to the outside of the cross plate, the sealing cover is fixedly connected to the bottom of the two sliding rods, and the sealing cover is movably plugged into the polymerization reaction tank, one end of the electric telescopic rod A is fixedly connected to the top of the cross plate, and the extended end of the electric telescopic rod A movably penetrates the cross plate and is fixedly connected to the sealing cover.
[0022] Compared with the prior art, the beneficial effects of the utility model are:
[0023] 1. In this scheme, the output end of the forward and reverse motor can drive the gear A to rotate, and the gear A can drive the gear B to rotate, and the gear B can drive the drum to rotate, and the drum can drive the polymerization reaction tank to rotate, thereby realizing the flipping of the polymerization reaction tank. The flipping of the polymerization reaction tank makes it easy to discharge the high-efficiency light-absorbing polyester fiber after the polymerization reaction inside the polymerization reaction tank is completed.
[0024] 2. In this scheme, the rotation of the drum can be limited by movably inserting the limit rod into the insertion hole, and the output end of the driving motor can drive the agitator to rotate. The rotation of the agitator can stir the high-efficiency light-absorbing polyester fiber inside the polymerization reaction tank, thereby increasing the polymerization reaction rate. The sealing cover rises to discharge the high-efficiency light-absorbing polyester fiber after the polymerization reaction in the polymerization reaction tank is completed, and the sealing cover is movably inserted into the polymerization reaction tank to seal the polymerization reaction tank. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:
[0026] Figure 1 It is a three-dimensional structural schematic diagram of the utility model;
[0027] Figure 2 It is a structural schematic diagram of another perspective of the utility model;
[0028] Figure 3 It is a cross-sectional view of the utility model;
[0029] Figure 4 For this utility model Figure 3 Enlarged view of point A in the middle.
[0030] In the figure: 1. bottom plate; 2. vertical plate; 3. side plate; 4. rotating drum; 5. agitator; 6. forward and reverse motor; 7. sealing cover; 8. sliding rod; 9. electric telescopic rod A; 10. horizontal plate; 11. polymerization reaction tank; 12. electric telescopic rod B; 13. limit plug rod; 14. driving motor; 15. socket; 16. U-shaped plate; 17. gear A; 18. gear B. DETAILED DESCRIPTION
[0031] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0032] Example 1
[0033] See also Figure 1-Figure 4 , the technical solution provided by this embodiment is as follows:
[0034] A high-efficiency light-absorbing polyester fiber polymerization reactor comprises a bottom plate 1, a support mechanism, a flipping mechanism, a polymerization reaction tank 11, a stirring mechanism and a sealing mechanism. The polymerization reaction tank 11 is arranged on the flipping mechanism, and the flipping mechanism is used to flip the polymerization reaction tank 11.
[0035] In a specific embodiment of the present utility model, the polymerization reaction tank 11 is fixedly connected between the two drums 4, and the polymerization reaction tank 11 is used for the polymerization reaction of the high-efficiency light-absorbing polyester fiber.
[0036] Specifically, the bracket mechanism is arranged at the top of the base plate 1, and the bracket mechanism includes a vertical plate 2 and a side plate 3. The vertical plate 2 is fixedly connected to the top of the base plate 1, and two side plates 3 are provided. The two side plates 3 are both fixedly connected to one side end of the vertical plate 2, and the two side plates 3 are symmetrically arranged.
[0037] In a specific embodiment of the present utility model, the vertical plate 2 is used to connect to the side plate 3 , and the side plate 3 is used to connect to the rotating drum 4 .
[0038] Specifically, the flipping component is arranged on the two side plates 3, and the flipping component includes a rotating drum 4, a forward and reverse motor 6, a gear A17 and a gear B18. Two rotating drums 4 are provided, each rotating drum 4 is rotatably connected to the side end of each side plate 3, and each rotating drum 4 rotates through each side plate 3 and extends to the outside of each side plate 3, the gear B18 is fixedly connected to the circumferential surface of one of the rotating drums 4, the forward and reverse motor 6 is fixedly connected to the side end of one of the side plates 3, and the output end of the forward and reverse motor 6 rotates through the side plate 3 and extends to the outside of the side plate 3, the gear A17 is fixedly connected to the output end of the forward and reverse motor 6, and the gear A17 and the gear B18 are meshed with each other.
[0039] In a specific embodiment of the utility model, the output end of the forward and reverse motor 6 can drive the gear A17 to rotate, the gear A17 can drive the gear B18 to rotate, the gear B18 can drive the rotating drum 4 to rotate, and the rotating drum 4 can drive the polymerization reaction tank 11 to rotate, thereby realizing the flipping of the polymerization reaction tank 11. The flipping of the polymerization reaction tank 11 is realized, so that the high-efficiency light-absorbing polyester fiber after the polymerization reaction inside the polymerization reaction tank 11 is completed can be easily discharged.
[0040] Specifically, the locking component is arranged on the vertical plate 2, and the locking component is connected to the flipping component. The locking component includes an electric telescopic rod B12, a limiting plug rod 13 and a socket 15. There are multiple sockets 15, and the multiple sockets 15 are all opened on the circumferential surface of one of the rotating drums 4, and the multiple sockets 15 are evenly distributed. One end of the electric telescopic rod B12 is fixedly connected to one side end of the vertical plate 2, the limiting plug rod 13 is fixedly connected to the extended end of the electric telescopic rod B12, and the limiting plug rod 13 is movably inserted into one of the sockets 15.
[0041] In a specific embodiment of the present utility model, the socket 15 is provided for movably inserting the limit rod 13. By movably inserting the limit rod 13 into the socket 15, the rotation of the rotating drum 4 can be limited. By fixedly connecting the extended end of the electric telescopic rod B12 with the limit rod 13, the electric telescopic rod B12 can be contracted to drive the limit rod 13 to move. By removing the limit rod 13 from the rotating drum 4, the rotating drum 4 can be rotated. The working principle and internal structure of the electric telescopic rod B12 are common knowledge to those skilled in the art, so they will not be described in detail.
[0042] Specifically, the stirring mechanism is arranged on the polymerization reaction tank 11, and the stirring mechanism includes an agitator 5, a driving motor 14 and a U-shaped plate 16. The agitator 5 is rotatably connected between the side walls of the polymerization reaction tank 11, and both ends of the agitator 5 rotate through the polymerization reaction tank 11 and extend to the outside of the polymerization reaction tank 11. The U-shaped plate 16 is fixedly connected to one side end of the polymerization reaction tank 11, the driving motor 14 is fixedly connected to the side end of the U-shaped plate 16, and the output end of the driving motor 14 rotates through the U-shaped plate 16 and is fixedly connected to the agitator 5.
[0043] In a specific embodiment of the utility model, the U-shaped plate 16 is used to connect the drive motor 14. The output end of the drive motor 14 can drive the agitator 5 to rotate. The rotation of the agitator 5 can stir the high-efficiency light-absorbing polyester fiber inside the polymerization reaction tank 11, thereby increasing the rate of the polymerization reaction.
[0044] Specifically, the sealing mechanism is arranged on the support mechanism, and the sealing mechanism is connected to the polymerization reaction tank 11. The sealing mechanism includes a sealing cover 7, a sliding rod 8, an electric telescopic rod A9 and a horizontal plate 10. The horizontal plate 10 is fixedly connected to one side end of the vertical plate 2. Two sliding rods 8 are provided. Both sliding rods 8 are movably inserted in the top of the horizontal plate 10, and both sliding rods 8 are movably penetrated through the horizontal plate 10 and extend to the outside of the horizontal plate 10. The sealing cover 7 is fixedly connected to the bottom of the two sliding rods 8, and the sealing cover 7 is movably inserted into the polymerization reaction tank 11. One end of the electric telescopic rod A9 is fixedly connected to the top of the horizontal plate 10, and the extended end of the electric telescopic rod A9 is movably penetrated through the horizontal plate 10 and fixedly connected to the sealing cover 7.
[0045] In a specific embodiment of the utility model, the horizontal plate 10 is used to connect the slide rod 8 and the electric telescopic rod A9. The slide rod 8 is used to connect the sealing cover 7. The extended end of the electric telescopic rod A9 is fixedly connected to the sealing cover 7, so that the electric telescopic rod A9 can be contracted to drive the sealing cover 7 to rise. The sealing cover 7 rises so that the high-efficiency light-absorbing polyester fiber that has completed the polymerization reaction inside the polymerization reaction tank 11 is discharged. The sealing cover 7 is movably plugged into the polymerization reaction tank 11 to seal the polymerization reaction tank 11.
[0046] The working principle or working process of the high-efficiency light-absorbing polyester fiber polymerization reactor provided by the utility model is as follows: the driving motor 14 is started, and the output end of the driving motor 14 rotates to drive the agitator 5 to rotate, and the agitator 5 rotates to stir the high-efficiency light-absorbing polyester fiber inside the polymerization reaction tank 11, the electric telescopic rod B12 contracts to drive the limit plug rod 13 to move, and the limit plug rod 13 moves and moves away from the insertion hole 15, the electric telescopic rod A9 contracts to drive the sealing cover 7 to rise, and the sealing cover 7 rises and moves away from the polymerization reaction tank 11, and the movement of the sealing cover 7 drives the sliding rod 8 to slide on the horizontal plate 10, and the forward and reverse motor 6 is started, and the output end of the forward and reverse motor 6 rotates to drive the gear A17 to rotate, and the gear A17 rotates to drive the gear B18 to rotate, and the gear B18 rotates to drive the rotating drum 4 to rotate, and the rotating drum 4 rotates to drive the polymerization reaction tank 11 to rotate, so that the polymerization reaction tank 11 is turned over.
[0047] Finally, it should be noted that the above are only preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the above embodiments, those skilled in the art can still modify the technical solutions described in the above embodiments or replace some of the technical features therein by equivalents. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A high-efficiency light-absorbing polyester fiber polymerization reactor, characterized in that: include: Bottom plate (1); A support mechanism is arranged on the top of the base plate (1); A turning mechanism is arranged on the support mechanism; A polymerization reaction tank (11) is arranged on a turning mechanism, and the turning mechanism is used to turn over the polymerization reaction tank (11); A stirring mechanism is provided on the polymerization reaction tank (11); and A sealing mechanism is arranged on the support mechanism, and the sealing mechanism is connected to the polymerization reaction tank (11); The support mechanism comprises a vertical plate (2) and a side plate (3), wherein the vertical plate (2) is fixedly connected to the top of the bottom plate (1), and two side plates (3) are provided, and the two side plates (3) are both fixedly connected to one side end of the vertical plate (2), and the two side plates (3) are symmetrically arranged; The flipping mechanism comprises: A turning component is arranged on the two side plates (3); as well as A locking component is arranged on the vertical plate (2), and the locking component is connected to the flipping component; The flipping component comprises a rotating drum (4), a forward and reverse motor (6), a gear A (17) and a gear B (18); two rotating drums (4) are provided, each of the rotating drums (4) is rotatably connected to the side end of each side plate (3), and each rotating drum (4) rotates through each side plate (3) and extends to the outside of each side plate (3); the gear B (18) is fixedly connected to the circumferential surface of one of the rotating drums (4); the forward and reverse motor (6) is fixedly connected to the side end of one of the side plates (3), and the output end of the forward and reverse motor (6) rotates through the side plate (3) and extends to the outside of the side plate (3); the gear A (17) is fixedly connected to the output end of the forward and reverse motor (6), and the gear A (17) and the gear B (18) are meshed with each other; The locking component comprises an electric telescopic rod B (12), a limiting plug rod (13) and a plug hole (15), wherein a plurality of the plug holes (15) are provided, and the plurality of the plug holes (15) are all opened on the circumferential surface of one of the rotating drums (4), and the plurality of the plug holes (15) are evenly distributed, one end of the electric telescopic rod B (12) is fixedly connected to a side end of the vertical plate (2), the limiting plug rod (13) is fixedly connected to the extended end of the electric telescopic rod B (12), and the limiting plug rod (13) is movably plugged into one of the plug holes (15).
2. A high-efficiency light-absorbing polyester fiber polymerization reactor according to claim 1, characterized in that: The stirring mechanism comprises a stirrer (5), a driving motor (14) and a U-shaped plate (16); the stirrer (5) is rotatably connected between the side walls of a polymerization reaction tank (11), and both ends of the stirrer (5) are rotatably passed through the polymerization reaction tank (11) and extend to the outside of the polymerization reaction tank (11); the U-shaped plate (16) is fixedly connected to one side end of the polymerization reaction tank (11); the driving motor (14) is fixedly connected to the side end of the U-shaped plate (16), and the output end of the driving motor (14) is rotatably passed through the U-shaped plate (16) and is fixedly connected to the stirrer (5).
3. A high-efficiency light-absorbing polyester fiber polymerization reactor according to claim 2, characterized in that: The sealing mechanism comprises a sealing cover (7), a sliding rod (8), an electric telescopic rod A (9) and a transverse plate (10), wherein the transverse plate (10) is fixedly connected to one side end of the vertical plate (2), two sliding rods (8) are provided, and the two sliding rods (8) are both movably plugged into the top of the transverse plate (10), and the two sliding rods (8) are both movably penetrated through the transverse plate (10) and extend to the outside of the transverse plate (10), the sealing cover (7) is fixedly connected to the bottom of the two sliding rods (8), and the sealing cover (7) is movably plugged into the polymerization reaction tank (11), one end of the electric telescopic rod A (9) is fixedly connected to the top of the transverse plate (10), and the extended end of the electric telescopic rod A (9) is movably penetrated through the transverse plate (10) and fixedly connected to the sealing cover (7).
Citation Information
Patent Citations
Polymerisation reactor
CN207680609U