Drying device for chemical fiber material processing
By controlling the spacing of heating rods and the combination of the air pump, the thickness adjustment and wet air discharge problems in the chemical fiber material drying device are solved, and an efficient and automated chemical fiber material drying process is achieved.
Patent Information
- Application Number
- CN202510548412.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2025-08-08
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing chemical fiber material drying devices are difficult to flexibly adjust the leveling and drying parts according to the thickness of the material, resulting in poor leveling and drying effects, and difficult to discharge wet air in time, affecting processing efficiency and effect.
The shape memory material is used to intelligently control the spacing of the heating rods, combine it with the air exchange pump to maintain the drying environment, and adjust the position and heating temperature of the chemical fiber material through the electric rotating rod and leveling mechanism to ensure the consistency and efficiency of the drying process.
Accurate drying according to the thickness of chemical fiber material is achieved, drying efficiency and quality are improved, the degree of automation is improved, and the continuous drying of the drying environment is ensured.
Smart Images

Figure CN120444879A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of chemical fiber material processing, and particularly relates to a drying device for chemical fiber material processing. Background Art
[0002] Chemical fiber materials, also known as chemical fiber materials, are fiber materials with textile properties made from natural or synthetic polymers through processes such as spinning solution preparation, spinning, and post-processing. Based on their source, they can be divided into regenerated fibers (such as viscose and modal, made from natural polymers through chemical treatment and mechanical processing) and synthetic fibers (made from petroleum, coal, natural gas, etc., through chemical synthesis to produce polymers, which are then spun, such as polyester (polyester), polyamide (nylon), and polyacrylonitrile (acrylic). Based on their performance characteristics, they can be further divided into conventional chemical fibers with general physical and chemical properties, widely used in clothing, home textiles, industrial textiles, and other fields, and functional chemical fibers with special properties such as antibacterial, UV resistance, and flame retardancy. Chemical fiber materials have significant characteristics, high strength, more durable and less likely to break than natural fibers; their hygroscopicity is generally lower than that of natural fibers, but some have good hygroscopicity after special treatment; they have good chemical stability and are resistant to acid and alkali, insect infestation and mildew; they have good elasticity and strong wrinkle resistance; they have good thermal insulation properties, such as acrylic fiber has thermal insulation properties close to wool; and their production is not restricted by natural conditions, and can be produced on a large scale industrially with stable output. Because of this, it has a wide range of applications. In the clothing field, it is an important material for making all kinds of clothing. It can be blended with natural fibers or spun purely to meet the comfort, aesthetics and functionality of clothing. For example, spandex is used in tight clothing to provide elasticity, and polyester is used in professional and sportswear to be crisp, wrinkle-resistant, easy to wash and quick-drying. In the home textile field, it is widely used in bedding, curtains, etc., making the products soft and comfortable. For example, pillows and quilts filled with polyester fiber have good elasticity and warmth retention and are affordable. In the field of industrial textiles, it plays an important role in industry, agriculture, medical care, aerospace and other industries. In industry, it can be used to manufacture filter materials, in agriculture, it can be used to manufacture agricultural films, in the medical field, it can be used to make surgical gowns, and the processing of chemical fiber materials requires the use of drying equipment for drying.
[0003] Existing chemical fiber material drying devices are difficult to flexibly adjust the position and working parameters of the leveling and drying components according to the thickness of the chemical fiber material, resulting in poor leveling and drying effects for materials of different thicknesses. During the drying process of conventional drying devices, the internal moist air is difficult to be discharged in time, affecting the drying efficiency and effect. Previous equipment lacked an effective mechanism for the coordinated operation of chemical fiber material discharge, leveling, drying and collection, and the overall processing flow was not consistent and efficient enough. Therefore, we propose a drying device for chemical fiber material processing to solve the above problems. Summary of the Invention
[0004] The purpose of the present invention is to provide a drying device for processing chemical fiber materials, which can adjust the horizontal position according to the thickness of the chemical fiber material, intelligently control the spacing of the heating rods by shape memory material, accurately dry, and maintain the dry environment with a ventilation pump; the various components work together, the degree of automation is high, and efficiency and quality are improved.
[0005] The technical solutions adopted by the present invention are as follows: A drying device for processing chemical fiber materials, comprising a horizontally arranged base, two symmetrically arranged first mounting plates being clamped on the base, and the two first mounting plates are both vertically arranged, a discharge cylinder and a receiving cylinder are provided between the two first mounting plates, the discharge cylinder is connected to the side wall of the first mounting plate through a first electric rotating rod, and the receiving cylinder is connected to the side wall of the first mounting plate through a second electric rotating rod, a leveling mechanism is provided between the two first mounting plates, the leveling mechanism is connected to the side wall of the first mounting plate through a third electric rotating rod, and the leveling mechanism is arranged close to the discharge cylinder, a drying body is provided between the two first mounting plates, the drying body is connected to the side wall of the first mounting plate through a first connecting rod, a protective component is provided on the outside of the drying body, and the drying body is arranged close to the receiving cylinder.
[0006] In a preferred embodiment, the leveling mechanism includes a leveling groove, the opening of the leveling groove is arranged toward the discharge barrel, and a horizontally arranged first pressure plate and a second pressure plate are provided in the leveling groove, and the first pressure plate and the second pressure plate are both slidingly connected to the inner wall of the leveling groove, and a first movable body is provided on the leveling groove to match the first pressure plate, and a second movable body is provided on the inner wall of the leveling groove to match the second pressure plate.
[0007] In a preferred embodiment, the drying body includes a drying trough, the openings on both sides of the drying trough face the discharge cylinder and the receiving cylinder respectively, the drying trough is provided with two symmetrically arranged second mounting plates, and the two second mounting plates are each provided with multiple groups of drying components, and the multiple groups of drying components are all matched with the drying trough, and a third movable body is provided on the side wall of the drying trough, and the third movable body is matched with the two second mounting plates.
[0008] In a preferred embodiment, the protective assembly includes two symmetrically arranged first protective rods and two symmetrically arranged second protective rods, the two first protective rods and the two second protective rods are connected by a horizontally arranged second connecting rod, the first protective rod and the second protective rod are connected by a plurality of vertically arranged third connecting rods, two obliquely arranged first reinforcement rods are arranged between the two first protective rods, and two obliquely arranged second reinforcement rods are arranged between the two second protective rods.
[0009] In a preferred embodiment, a ventilation box is provided on the drying tank, and a first ventilation pump and a second ventilation pump are provided in the ventilation box. The first ventilation pump and the second ventilation pump are respectively connected to a first L-shaped ventilation pipe and a second L-shaped ventilation pipe. The opposite ends of the first L-shaped ventilation pipe and the second L-shaped ventilation pipe are respectively arranged through the side walls of the ventilation box. The first L-shaped ventilation pipe and the second L-shaped ventilation pipe are both connected to the interior of the drying tank. A suction pipe is connected to the first ventilation pump, and the suction pipe is arranged through the side walls of the drying tank.
[0010] In a preferred embodiment, the first movable body includes two symmetrically arranged first movable rods, and both first movable rods are arranged to pass through the side walls of the leveling groove. The two first movable rods are commonly connected to a horizontally arranged pull plate, and the first pressure plate is connected to the inner wall of the leveling groove through two symmetrically arranged buffer springs.
[0011] In a preferred embodiment, the second movable body includes a vertically arranged first movable plate, and the first movable plate is slidably connected to the inner wall of the leveling groove, the first movable plate is connected to the side wall of the second pressure plate through a second movable rod, a movable groove is provided on the first movable plate, and the movable groove passes through the side wall of the first movable plate, a driving motor is provided on the inner wall of the leveling groove, and the output end of the driving motor is connected to a first gear, the first gear is located in the movable groove, the first gear is a half gear, and the inner walls on both sides of the movable groove are provided with first tooth grooves meshing with the first gear.
[0012] In a preferred embodiment, the third movable body includes a second movable plate, and the second movable plate is a hollow structure. Two symmetrically arranged third movable plates are slidably connected in the second movable plate, and the opposite ends of the two third movable plates respectively penetrate the side walls of the second movable plate and are respectively connected to the side walls of the two second mounting plates. A shape-memory epoxy resin rod is rotatably connected in the second movable plate, and a second gear is sleeved on the shape-memory epoxy resin rod. The side walls on the opposite sides of the two third movable plates are provided with second tooth grooves engaged with the second gear.
[0013] In a preferred embodiment, the drying assembly includes a plurality of electrically controlled temperature-variable heating rods, and the plurality of electrically controlled temperature-variable heating rods are all arranged through the side wall of the drying tank.
[0014] In a preferred embodiment, a movable locking block is slidably connected to the side wall of the leveling groove, and the movable locking block is matched with the first movable rod.
[0015] The technical effects achieved by the present invention are: Turn on the first electric rotating rod to drive the discharge barrel to rotate, and then discharge the chemical fiber material, and pass the chemical fiber material between the first pressing plate and the second pressing plate. The mobile pulling plate drives the first moving rod and the first pressing plate to move, and the working position of the first pressing plate is adjusted according to the thickness of the chemical fiber material to be processed, so as to flatten fiber materials of different thicknesses. Turn on the driving motor to drive the first gear to rotate. Since the first gear is a half gear, the second moving rod and the second pressing plate can reciprocate in the vertical direction when the first gear rotates, so that the first pressing plate and the second pressing plate cooperate to extrude and flatten the chemical fiber material. The flattened chemical fiber material passes through the drying tank, and multiple electrically controlled variable temperature heating rods are turned on. The heating temperature of the electrically controlled variable temperature heating rods is adjusted according to the thickness of the chemical fiber material to be dried. When the heating temperature rises, the drying The temperature near the drying tank and the second movable plate rises, and the shape-memory epoxy resin rod rotates when the temperature rises, thereby driving the second gear to rotate counterclockwise, driving the two third movable plates to move in the opposite direction, thereby driving the two second mounting plates to move in the opposite direction, and making the electrically controlled temperature-variable heating rods on both sides of the drying tank move in the opposite direction, reserving enough passing space for thicker chemical fiber materials. When the temperature drops, the shape-memory epoxy resin rod is deformed and reset, causing the two second mounting plates to move toward each other, so that multiple electrically controlled temperature-variable heating rods provide sufficient drying for thinner chemical fiber materials. The first and second ventilation pumps are turned on to extract the moist air in the drying tank, so that the drying environment of the chemical fiber materials is continuously dry. The second electric rotating rod is turned on to drive the collecting drum to rotate, and the dried chemical fiber materials are collected. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of a drying device for processing chemical fiber materials of the present invention; Figure 2 It is a schematic diagram of a leveling mechanism of a drying device for processing chemical fiber materials according to the present invention; Figure 3 This is a schematic diagram of a drying body of a drying device for processing chemical fiber materials according to the present invention; Figure 4 It is a schematic diagram of a protective component of a drying device for processing chemical fiber materials according to the present invention; Figure 5 It is a schematic diagram of a ventilation box of a drying device for processing chemical fiber materials according to the present invention; Figure 6 It is a side view schematic diagram of a drying body of a drying device for processing chemical fiber materials of the present invention; Figure 7 for Figure 2 Schematic diagram at A in the middle; Figure 8 for Figure 6 Schematic diagram of point B in the middle.
[0017] In the figure: 1 base, 2 first mounting plate, 3 discharge barrel, 4 receiving barrel, 5 first electric rotating rod, 6 second electric rotating rod, 7 third electric rotating rod, 8 first connecting rod, 9 leveling groove, 10 first pressing plate, 11 second pressing plate, 12 drying groove, 13 second mounting plate, 14 first protective rod, 15 second protective rod, 16 second connecting rod, 17 third connecting rod, 18 first reinforcing rod, 19 second reinforcing rod, 20 ventilation box, 21 first ventilation pump, 22 second ventilation pump, 23 first L-shaped ventilation pipe, 24 second L-shaped ventilation pipe, 25 suction pipe, 26 first moving rod, 27 pulling plate, 28 buffer spring, 29 first moving plate, 30 second moving rod, 31 moving groove, 32 driving motor, 33 first gear, 34 second moving plate, 35 third moving plate, 36 shape memory epoxy resin rod, 37 second gear, 38 electric control variable temperature heating rod, 39 moving locking block. DETAILED DESCRIPTION
[0018] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the specific embodiments of the present invention are described in detail below with reference to the accompanying drawings.
[0019] See also Figure 1-8 As shown, the present invention provides a drying device for processing chemical fiber materials, including a horizontally arranged base 1, two symmetrically arranged first mounting plates 2 are clamped on the base 1, and the two first mounting plates 2 are both vertically arranged, and a discharge cylinder 3 and a receiving cylinder 4 are provided between the two first mounting plates 2, the discharge cylinder 3 is connected to the side wall of the first mounting plate 2 through a first electric rotating rod 5, and the receiving cylinder 4 is connected to the side wall of the first mounting plate 2 through a second electric rotating rod 6, a leveling mechanism is provided between the two first mounting plates 2, the leveling mechanism is connected to the side wall of the first mounting plate 2 through a third electric rotating rod 7, and the leveling mechanism is arranged close to the discharge cylinder 3, a drying body is provided between the two first mounting plates 2, the drying body is connected to the side wall of the first mounting plate 2 through a first connecting rod 8, a protective component is provided on the outside of the drying body, and the drying body is arranged close to the receiving cylinder 4.
[0020] The leveling mechanism includes a leveling groove 9, the opening of the leveling groove 9 is set toward the discharge barrel 3, and a horizontally arranged first pressure plate 10 and a second pressure plate 11 are provided in the leveling groove 9. The first pressure plate 10 and the second pressure plate 11 are both slidingly connected to the inner wall of the leveling groove 9. A first movable body matching the first pressure plate 10 is provided on the leveling groove 9, and a second movable body matching the second pressure plate 11 is provided on the inner wall of the leveling groove 9.
[0021] The drying main body includes a drying trough 12, and the openings on both sides of the drying trough 12 are respectively facing the discharge cylinder 3 and the receiving cylinder 4. Two symmetrically arranged second mounting plates 13 are provided on the drying trough 12. Multiple groups of drying components are provided on the two second mounting plates 13, and the multiple groups of drying components are matched with the drying trough 12. A third movable body is provided on the side wall of the drying trough 12, and the third movable body is matched with the two second mounting plates 13.
[0022] The protection assembly includes two symmetrically arranged first protection rods 14 and two symmetrically arranged second protection rods 15. The two first protection rods 14 and the two second protection rods 15 are connected by a horizontally arranged second connecting rod 16, and the first protection rod 14 and the second protection rod 15 are connected by multiple vertically arranged third connecting rods 17. Two obliquely arranged first reinforcement rods 18 are provided between the two first protection rods 14, and two obliquely arranged second reinforcement rods 19 are provided between the two second protection rods 15.
[0023] A ventilation box 20 is provided on the drying tank 12, and a first ventilation pump 21 and a second ventilation pump 22 are provided in the ventilation box 20. The first ventilation pump 21 and the second ventilation pump 22 are respectively connected to a first L-shaped ventilation pipe 23 and a second L-shaped ventilation pipe 24. The opposite ends of the first L-shaped ventilation pipe 23 and the second L-shaped ventilation pipe 24 are respectively arranged through the side walls of the ventilation box 20. The first L-shaped ventilation pipe 23 and the second L-shaped ventilation pipe 24 are both connected to the interior of the drying tank 12. A suction pipe 25 is connected to the first ventilation pump 21, and the suction pipe 25 is arranged through the side walls of the drying tank 12.
[0024] The first movable body includes two symmetrically arranged first movable rods 26, and the two first movable rods 26 are both arranged to pass through the side walls of the leveling groove 9. The two first movable rods 26 are commonly connected to a horizontally arranged pull plate 27, and the first pressure plate 10 is connected to the inner wall of the leveling groove 9 through two symmetrically arranged buffer springs 28.
[0025] The second movable body includes a vertically arranged first movable plate 29, and the first movable plate 29 is slidingly connected to the inner wall of the leveling groove 9. The first movable plate 29 is connected to the side wall of the second pressure plate 11 through a second movable rod 30. A movable groove 31 is provided on the first movable plate 29, and the movable groove 31 passes through the side wall of the first movable plate 29. A driving motor 32 is provided on the inner wall of the leveling groove 9, and the output end of the driving motor 32 is connected to a first gear 33. The first gear 33 is located in the movable groove 31. The first gear 33 is a half gear, and the inner walls on both sides of the movable groove 31 are provided with first tooth grooves meshing with the first gear 33.
[0026] The third movable body includes a second movable plate 34, and the second movable plate 34 is a hollow structure. Two symmetrically arranged third movable plates 35 are slidably connected in the second movable plate 34. The opposite ends of the two third movable plates 35 respectively penetrate the side walls of the second movable plate 34 and are respectively connected to the side walls of the two second mounting plates 13. A shape memory epoxy resin rod 36 is rotatably connected in the second movable plate 34. A second gear 37 is sleeved on the shape memory epoxy resin rod 36. The side walls on the opposite side of the two third movable plates 35 are provided with a second tooth groove engaged with the second gear 37.
[0027] The drying assembly includes a plurality of electrically controlled temperature-variable heating rods 38 , and the plurality of electrically controlled temperature-variable heating rods 38 are all disposed through the side wall of the drying tank 12 .
[0028] A movable locking block 39 is slidably connected to the side wall of the leveling groove 9 , and the movable locking block 39 is matched with the first movable rod 26 .
[0029] In the present invention, the first electric rotating rod 5 is turned on to drive the discharge barrel 3 to rotate, and then the chemical fiber material is discharged, and the chemical fiber material is passed between the first pressing plate 10 and the second pressing plate 11. The movable pull plate 27 drives the first moving rod 26 and the first pressing plate 10 to move, and the working position of the first pressing plate 10 is adjusted according to the thickness of the chemical fiber material to be processed, so as to facilitate the flattening of fiber materials of different thicknesses. The driving motor 32 is turned on to drive the first gear 33 to rotate. Since the first gear 33 is a half gear, when the first gear 33 rotates, the second moving rod 30 and the second pressing plate 11 can reciprocate in the vertical direction, so that the first pressing plate 10 and the second pressing plate 11 cooperate to extrude and flatten the chemical fiber material. The flattened chemical fiber material passes through the drying tank 12, and a plurality of electrically controlled variable temperature heating rods 38 are turned on. The heating temperature of the electrically controlled variable temperature heating rods 38 is adjusted according to the thickness of the chemical fiber material to be dried. When the heating temperature When the temperature rises, the temperature near the drying tank 12 and the second movable plate 34 rises, and the shape memory epoxy resin rod 36 rotates when the temperature rises, thereby driving the second gear 37 to rotate counterclockwise, driving the two third movable plates 35 to move in the opposite direction, thereby driving the two second mounting plates 13 to move in the opposite direction, and making the electrically controlled temperature-variable heating rods 38 on both sides of the drying tank 12 move in the opposite direction, reserving enough passing space for thicker chemical fiber materials. When the temperature drops, the shape memory epoxy resin rod 36 is deformed and reset, causing the two second mounting plates 13 to move toward each other, so that multiple electrically controlled temperature-variable heating rods 38 provide sufficient drying for thinner chemical fiber materials. The first ventilation pump 21 and the second ventilation pump 22 are turned on to extract the moist air in the drying tank 12, so that the drying environment of the chemical fiber materials is continuously dry. The second electric rotating rod 6 is turned on to drive the collecting drum 4 to rotate to collect the dried chemical fiber materials.
[0030] The foregoing is merely a preferred embodiment of the present invention. It should be noted that those skilled in the art may make various improvements and modifications without departing from the principles of the present invention, and such improvements and modifications are also within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described or explained herein shall, unless otherwise specified or limited, be implemented in accordance with conventional means in the art.
Claims
1. A drying device for processing chemical fiber materials, characterized in that: The utility model comprises a horizontally arranged base (1), two symmetrically arranged first mounting plates (2) are clamped on the base (1), and the two first mounting plates (2) are both vertically arranged, a discharge cylinder (3) and a receiving cylinder (4) are arranged between the two first mounting plates (2), the discharge cylinder (3) is connected to the side wall of the first mounting plate (2) through a first electric rotating rod (5), and the receiving cylinder (4) is connected to the side wall of the first mounting plate (2) through a second electric rotating rod (6), a leveling mechanism is arranged between the two first mounting plates (2), the leveling mechanism is connected to the side wall of the first mounting plate (2) through a third electric rotating rod (7), and the leveling mechanism is arranged close to the discharge cylinder (3), a drying body is arranged between the two first mounting plates (2), the drying body is connected to the side wall of the first mounting plate (2) through a first connecting rod (8), a protective component is arranged on the outside of the drying body, and the drying body is arranged close to the receiving cylinder (4).
2. A drying device for processing chemical fiber materials according to claim 1, characterized in that: The leveling mechanism includes a leveling groove (9), the opening of the leveling groove (9) is arranged toward the discharge barrel (3), a first pressing plate (10) and a second pressing plate (11) are arranged horizontally in the leveling groove (9), the first pressing plate (10) and the second pressing plate (11) are both slidably connected to the inner wall of the leveling groove (9), a first moving body matched with the first pressing plate (10) is provided on the leveling groove (9), and a second moving body matched with the second pressing plate (11) is provided on the inner wall of the leveling groove (9).
3. The drying device for processing chemical fiber materials according to claim 1, characterized in that: The drying main body comprises a drying trough (12), the openings on both sides of the drying trough (12) are respectively directed towards the discharge cylinder (3) and the receiving cylinder (4), the drying trough (12) is provided with two symmetrically arranged second mounting plates (13), the two second mounting plates (13) are each provided with a plurality of drying components, and the plurality of drying components are matched with the drying trough (12), the side wall of the drying trough (12) is provided with a third movable body, and the third movable body is matched with the two second mounting plates (13).
4. The drying device for processing chemical fiber materials according to claim 1, characterized in that: The protection assembly comprises two symmetrically arranged first protection rods (14) and two symmetrically arranged second protection rods (15), the two first protection rods (14) and the two second protection rods (15) are connected by a horizontally arranged second connecting rod (16), the first protection rod (14) and the second protection rod (15) are connected by a plurality of vertically arranged third connecting rods (17), two obliquely arranged first reinforcement rods (18) are provided between the two first protection rods (14), and two obliquely arranged second reinforcement rods (19) are provided between the two second protection rods (15).
5. The drying device for processing chemical fiber materials according to claim 3, characterized in that: The drying tank (12) is provided with a ventilation box (20), and a first ventilation pump (21) and a second ventilation pump (22) are provided in the ventilation box (20). The first ventilation pump (21) and the second ventilation pump (22) are respectively connected to a first L-shaped ventilation pipe (23) and a second L-shaped ventilation pipe (24). The opposite ends of the first L-shaped ventilation pipe (23) and the second L-shaped ventilation pipe (24) are respectively passed through the side walls of the ventilation box (20). The first L-shaped ventilation pipe (23) and the second L-shaped ventilation pipe (24) are both connected to the interior of the drying tank (12). The first ventilation pump (21) is connected to a suction pipe (25), and the suction pipe (25) is passed through the side walls of the drying tank (12).
6. The drying device for processing chemical fiber materials according to claim 2, characterized in that: The first moving body includes two symmetrically arranged first moving rods (26), and the two first moving rods (26) are both arranged to penetrate the side wall of the leveling groove (9), and the two first moving rods (26) are commonly connected to a horizontally arranged pull plate (27), and the first pressing plate (10) is connected to the inner wall of the leveling groove (9) through two symmetrically arranged buffer springs (28).
7. The drying device for processing chemical fiber materials according to claim 2, characterized in that: The second movable body includes a first movable plate (29) arranged vertically, and the first movable plate (29) is slidably connected to the inner wall of the leveling groove (9). The first movable plate (29) is connected to the side wall of the second pressing plate (11) through a second movable rod (30). The first movable plate (29) is provided with a movable groove (31), and the movable groove (31) passes through the side wall of the first movable plate (29). A driving motor (32) is provided on the inner wall of the leveling groove (9), and the output end of the driving motor (32) is connected to a first gear (33). The first gear (33) is located in the movable groove (31). The first gear (33) is a half gear, and the inner walls on both sides of the movable groove (31) are provided with first tooth grooves meshing with the first gear (33).
8. The drying device for processing chemical fiber materials according to claim 3, characterized in that: The third movable body includes a second movable plate (34), and the second movable plate (34) is a hollow structure. Two symmetrically arranged third movable plates (35) are slidably connected in the second movable plate (34). The opposite ends of the two third movable plates (35) respectively penetrate the side walls of the second movable plate (34) and are respectively connected to the side walls of the two second mounting plates (13). A shape memory epoxy resin rod (36) is rotatably connected in the second movable plate (34). A second gear (37) is sleeved on the shape memory epoxy resin rod (36). The side walls on the opposite side of the two third movable plates (35) are each provided with a second tooth groove engaged with the second gear (37).
9. The drying device for processing chemical fiber materials according to claim 3, characterized in that: The drying component comprises a plurality of electrically controlled temperature-variable heating rods (38), and the plurality of electrically controlled temperature-variable heating rods (38) are all arranged through the side wall of the drying tank (12).
10. The drying device for processing chemical fiber materials according to claim 6, characterized in that: A movable locking block (39) is slidably connected to the side wall of the leveling groove (9), and the movable locking block (39) is matched with the first movable rod (26).