Auxiliary agent mixing device for chemical fiber production

By designing an auxiliary mixing device that can be combined with lifting columns and hydraulic rods, the existing devices have low automation and long downtime, and the rapid positional switching of the mixing head and mixing cylinder is achieved, which improves the degree of automation and avoids bumps between equipment.

CN120054260APending Publication Date: 2025-05-30SUZHOU JISILI NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202510167471.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-16
Publication Date
2025-05-30

AI Technical Summary

Technical Problem

The existing additive mixing devices for chemical fiber production have low degree of automation, and the equipment is prone to bumps when handling the mixing cylinder, resulting in long downtime.

Method used

An auxiliary mixing device including lifting columns, hydraulic rods, sliding sleeves and support rings is designed. Through the cooperation of hydraulic rods and guide plates, the mixing head and mixing cylinder can be quickly changed, avoid bumps and improve the degree of automation.

Benefits of technology

It realizes rapid position switching between the mixing head and the mixing cylinder, shortens the equipment downtime, improves the degree of automation, and avoids bumps between the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of chemical fiber auxiliary mixing, and particularly relates to an auxiliary mixing device for chemical fiber production, the auxiliary mixing device comprises a base plate, a hydraulic rod is mounted on the rear side of the top end of the base plate, a stand column is mounted at the output end of the hydraulic rod, and a sleeve frame is mounted on the outer wall of the top end of the stand column. The liftable stand column is mounted on the base plate, and the stirring rod and the stirring head are mounted on the stand column, so that the stand column can drive the stirring rod and the stirring head to perform height adjustment, and the stirring head can quickly enter or leave the interior of a mixing barrel on the electronic scale, thereby facilitating quick mixing of auxiliaries in the mixing barrel on the electronic scale; a rotatable sliding sleeve is mounted outside the hydraulic rod, the sliding sleeve can ascend and descend along the surface of the hydraulic rod under the action of guide discs on the two sides of the stand column, two sets of supporting rings outside the sliding sleeve can drive the two sets of mixing barrels to ascend and descend, the sliding sleeve drives the two sets of mixing barrels to conduct position replacement, and the downtime of equipment is shortened.
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Description

Technical Field

[0001] The present invention relates to the technical field of chemical fiber auxiliary agents mixing, and particularly to an auxiliary agent mixing device for chemical fiber production. Background Art

[0002] Chemical fiber is one of the important raw materials for making clothing. During the spinning and textile processing of chemical fiber, static electricity will be generated due to continuous friction. At this time, auxiliary agents are needed to prevent or eliminate the accumulation of static electricity. At the same time, the auxiliary agents are used to endow the fiber with characteristics such as softness and smoothness. However, the auxiliary agents will sink to a certain extent during storage, forming a so-called layering. Therefore, it is necessary to mix and stir the auxiliary agents before use, which requires the use of a mixing device. The existing auxiliary agent mixing devices for chemical fiber production can basically meet the daily use requirements, but there are still some deficiencies that need to be improved.

[0003] During the mixing process of chemical fiber auxiliary agents, it is often necessary to manually prepare the auxiliary agents to configure auxiliary agents with different effects. During the preparation process of the auxiliary agents, different doses of auxiliary agents need to be poured into the mixing cylinder, and the mixing cylinder needs to be weighed to ensure the accuracy of the preparation of the auxiliary agents. Then, the auxiliary agents in the mixing cylinder are fully mixed by a stirring device. However, in the actual preparation process, when multiple preparations of the auxiliary agents are required, after the auxiliary agents in the mixing cylinder are mixed, it is necessary to manually carry the mixing cylinder. During the handling process of the equipment, not only does it need to stop for a long time, the degree of automation is low, but also when carrying the mixing cylinder, the mixing cylinder is located below the stirring device, which is likely to cause the mixing cylinder to collide with the stirring device. For this reason, we propose an auxiliary agent mixing device for chemical fiber production to solve the above problems. Summary of the Invention

[0004] In order to overcome the defects of the above-mentioned prior art pointed out, the inventor of the present invention has conducted in-depth research and completed the present invention after a large amount of creative labor.

[0005] Specifically, the technical problem to be solved by the present invention is: to provide an auxiliary agent mixing device for chemical fiber production to solve the technical problems raised in the above background art.

[0006] To solve the above technical problems, the present invention provides the following technical solutions:

[0007] An auxiliary mixing device for chemical fiber production, comprising a base plate. A hydraulic rod is installed at the rear side of the top end of the base plate. The output end of the hydraulic rod is installed with a column. The outer wall of the top end of the column is installed with a sleeve frame. A stirring motor is installed at the rear end of the sleeve frame. The front end of the sleeve frame is rotatably connected with a stirring rod. The bottom end of the stirring rod is installed with a stirring head. The stirring motor is connected to the upper end of the stirring rod through a transmission belt. An electronic scale is installed at the top of the front end of the base plate. A weighing pan is installed on the electronic scale. Both sides of the outer wall of the lower end of the column are installed with side connecting rods. The bottom ends of the two side connecting rods are both installed with guide discs. A sliding sleeve is arranged outside the hydraulic rod. Two guide grooves are opened on the sliding sleeve. The two side connecting rods both penetrate through the two guide grooves on the sliding sleeve. Two supporting rings are fixed on the outer wall of the sliding sleeve. A mixing cylinder is arranged in each of the two supporting rings. And clamping blocks are installed on both sides of the outer wall of the mixing cylinder. A guide track is opened inside the sliding sleeve. Two limit blocks are installed on the outer wall of the lower end of the hydraulic rod.

[0008] As an improved technical solution, rollers are installed on both sides of the top ends of the two guide discs. Electric motors are installed at the bottom ends of the two rollers. A storage battery is installed in the middle of the bottom end of the guide disc.

[0009] As an improved technical solution, the inner diameter of the sliding sleeve is the same as the outer diameter of the hydraulic rod, and the inner wall of the sliding sleeve is polished.

[0010] As an improved technical solution, the inner diameter of the supporting ring is larger than the diameter of the mixing cylinder, and the two clamping blocks on the mixing cylinder can move to the top of the supporting ring.

[0011] As an improved technical solution, the rotation directions of the two rollers on the guide disc are opposite.

[0012] As an improved technical solution, the input ends of the two electric motors on the guide disc are both electrically connected to the storage battery at the bottom end of the guide disc through wires.

[0013] As an improved technical solution, the horizontal lines at the top ends of the two rollers are higher than the horizontal line at the top end of the guide disc, and the guide disc can drive the two rollers to move to the top of the guide track on the sliding sleeve.

[0014] After adopting the above technical solutions, the beneficial effects of the present invention are:

[0015] 1. The present invention installs a liftable column on a base plate, and installs a stirring rod and a stirring head on the column, enabling the column to drive the stirring rod and the stirring head to adjust the height, allowing the stirring head to quickly enter or leave the inside of the mixing cylinder on the electronic scale, facilitating the rapid mixing of the additives inside the mixing cylinder on the electronic scale. Then, by installing a rotatable sliding sleeve outside the hydraulic rod, the sliding sleeve can be lifted and lowered along the surface of the hydraulic rod under the action of guide plates on both sides of the column, and the two sets of support rings outside the sliding sleeve can drive the two mixing cylinders to lift, and the sliding sleeve drives the two mixing cylinders to change positions, shortening the equipment downtime.

[0016] 2. The present invention installs two electrically driven rollers on the guide plate, enabling the guide plate to drive the two rollers to move into the guide track inside the sliding sleeve. First, the two rollers on the guide plate can drive the sliding sleeve and the two support rings outside it to move upward, and the support rings drive the mixing cylinder to leave the top of the weighing pan. Subsequently, the electric motor can be driven to start, causing the rollers on the guide plate to rotate, enabling the rollers to drive the sliding sleeve to rotate clockwise or counterclockwise along the axis of the hydraulic rod. Thus, the sliding sleeve can drive the two support rings to quickly swap positions, allowing the mixing cylinder to quickly move away from under the stirring head, preventing the mixing cylinder from colliding with the stirring head during handling, and improving the automation level of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] To more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for description in the embodiments. Obviously, the following described drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings. Among them:

[0018] Figure 1 is a three-dimensional structure diagram of the present invention;

[0019] Figure 2 is a first-state structure diagram of the present invention;

[0020] Figure 3 is a second-state structure diagram of the present invention;

[0021] Figure 4 is a structure diagram of the inside of the column (3) of the present invention;

[0022] Figure 5 is a structure diagram of the bottom end of the guide plate (13) of the present invention;

[0023] Figure 6 is of the present invention Figure 1 enlarged structure diagram at A;

[0024] Figure 7 is of the present inventionFigure 4 Schematic enlarged structure diagram at position B;

[0025] Figure 8 This is for the present invention Figure 5 Schematic enlarged structure diagram at position C.

[0026] In the figure: 1. Base plate; 2. Hydraulic rod; 3. Column; 4. Sleeve frame; 5. Stirring motor; 6. Stirring rod; 7. Stirring head; 8. Transmission belt; 9. Electronic scale; 10. Scale pan; 11. Mixing cylinder; 12. Side connecting rod; 13. Guide plate; 14. Sliding sleeve; 15. Support ring; 16. Clamping block; 17. Guide groove; 18. Guide track; 19. Low limit block; 20. Roller; 21. Electric motor; 22. Storage battery. Specific embodiments

[0027] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the scope of protection of the present invention.

[0028] It should be noted that all directional indications (such as up, down, left, right, front, back...) in the embodiments of the present invention are only used to explain the relative positional relationship and movement conditions between components in a specific posture (as shown in the accompanying drawings). If this specific posture changes, the directional indications will also change accordingly.

[0029] At the same time, the meaning of "and / or" or "and / or" that appears throughout the text is that it includes three solutions. Taking "A and / or B" as an example, it includes solution A, or solution B, or a solution where A and B are satisfied simultaneously.

[0030] In addition, the descriptions such as "first" and "second" in the present invention are only for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one such feature. In addition, the technical solutions between the various embodiments can be combined with each other, but it must be based on the fact that those of ordinary skill in the art can implement it. When the combination of technical solutions results in contradictions or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection required by the present invention.

[0031] Figures 1 to 8As shown in the figure, this embodiment provides an auxiliary agent mixing device for chemical fiber production, which includes a base plate 1. A hydraulic rod 2 is installed at the rear side of the top of the base plate 1. The output end of the hydraulic rod 2 is installed with a column 3. A sleeve frame 4 is installed on the outer wall of the top of the column 3. A stirring motor 5 is installed at the rear end of the sleeve frame 4. The front end of the sleeve frame 4 is rotatably connected with a stirring rod 6. A stirring head 7 is installed at the bottom end of the stirring rod 6. The stirring motor 5 is connected to the upper end of the stirring rod 6 through a transmission belt 8. An electronic scale 9 is installed at the top of the front end of the base plate 1. A weighing pan 10 is installed on the electronic scale 9. On both sides of the outer wall of the lower end of the column 3, side connecting rods 12 are installed. Guide plates 13 are installed at the bottom ends of the two groups of side connecting rods 12. A sliding sleeve 14 is arranged outside the hydraulic rod 2. Two guide grooves 17 are opened on the sliding sleeve 14. The two groups of side connecting rods 12 all penetrate through the two guide grooves 17 on the sliding sleeve 14. Two supporting rings 15 are fixed on the outer wall of the sliding sleeve 14. Mixing cylinders 11 are arranged in the two groups of supporting rings 15. And on both sides of the outer wall of the mixing cylinder 11, clamping blocks 16 are installed. A guide track 18 is opened inside the sliding sleeve 14.

[0032] By installing a liftable column 3 on the base plate 1, and installing a stirring rod 6 and a stirring head 7 on the column 3, the column 3 can drive the stirring rod 6 and the stirring head 7 to adjust the height, so that the stirring head 7 can quickly enter or leave the inside of the mixing cylinder 11 on the electronic scale 9, which is convenient for quickly mixing the auxiliary agents inside the mixing cylinder 11 on the electronic scale 9. Then, by installing a rotatable sliding sleeve 14 outside the hydraulic rod 2, the sliding sleeve 14 can move up and down along the surface of the hydraulic rod 2 under the action of the guide plates 13 on both sides of the column 3, and the two supporting rings 15 outside the sliding sleeve 14 can drive the two mixing cylinders 11 to move up and down, and the sliding sleeve 14 drives the two mixing cylinders 11 to change positions, shortening the equipment downtime.

[0033] In other embodiments, rollers 20 are installed on both sides of the top ends of the two guide plates 13. Electric motors 21 are installed at the bottom ends of the two groups of rollers 20. A storage battery 22 is installed in the middle of the bottom end of the guide plate 13;

[0034] By installing two electrically driven rollers 20 on the guide plate 13, the guide plate 13 drives the two rollers 20 to move into the guide track 18 inside the sliding sleeve 14. First, the two rollers 20 on the guide plate 13 can drive the sliding sleeve 14 and the two supporting rings 15 outside it to move upward, and the supporting rings 15 drive the mixing cylinder 11 to leave the top of the weighing pan 10. Then, the electric motor 21 can be driven to start, so that the rollers 20 on the guide plate 13 rotate, and the rollers 20 can drive the sliding sleeve 14 to rotate clockwise or counterclockwise along the axis of the hydraulic rod 2. Thus, the sliding sleeve 14 can drive the two supporting rings 15 to quickly change positions, so that the mixing cylinder 11 can quickly move away from below the stirring head 7, preventing the mixing cylinder 11 from colliding with the stirring head 7 during the handling process, and improving the automation degree of the equipment.

[0035] In other embodiments, the inner diameter of the sliding sleeve 14 is the same as the outer diameter of the hydraulic rod 2, and the inner wall of the sliding sleeve 14 is polished;

[0036] With this design, the sliding sleeve 14 can drive the two sets of retaining rings 15 to rotate along the axis of the hydraulic rod 2, reduce the friction between the inner wall of the sliding sleeve 14 and the outer wall of the hydraulic rod 2, and enable the sliding sleeve 14 to move vertically up and down along the surface of the hydraulic rod 2.

[0037] As Figure 6 shown, the inner diameter of the retaining ring 15 is larger than the diameter of the mixing cylinder 11, and the two sets of clamping blocks 16 on the mixing cylinder 11 can move to the top of the retaining ring 15;

[0038] With this design, when the retaining ring 15 drives the mixing cylinder 11 to move above the weighing pan 10 on the electronic scale 9 and the sliding sleeve 14 moves along the hydraulic rod 2 to the upper ends of the two low-limit blocks 19 on the guide plate 13, the retaining ring 15 can be separated from the lower ends of the two clamping blocks 16 on both sides of the mixing cylinder 11 on the weighing pan 10, thus avoiding the contact between the retaining ring 15 and the mixing cylinder 11 and ensuring the accuracy of the mixing cylinder 11 during weighing.

[0039] In other embodiments, the rotation directions of the two sets of rollers 20 on the guide plate 13 are opposite;

[0040] With this design, when the guide plate 13 drives the two sets of rollers 20 to move to the guide track 18 inside the sliding sleeve 14, the two sets of rollers 20 on the guide plate 13 can be driven according to actual needs, and the two sets of rollers 20 on the guide plate 13 can rotate clockwise and counterclockwise along the outside of the hydraulic rod 2.

[0041] In other embodiments, the input ends of the two sets of electric motors 21 on the guide plate 13 are electrically connected to the storage battery 22 at the bottom end of the guide plate 13 through wires;

[0042] With this design, the storage battery 22 at the bottom end of the guide plate 13 can effectively supply power to the two sets of electric motors 21, and the two sets of electric motors 21 can drive the two sets of rollers 20 on the guide plate 13 to rotate.

[0043] As Figure 7 shown, the top horizontal lines of the two sets of rollers 20 are higher than the top horizontal line of the guide plate 13, and the guide plate 13 can drive the two sets of rollers 20 to move to the top of the guide track 18 on the sliding sleeve 14;

[0044] With this design, when the column 3 rises under the action of the hydraulic rod 2, the side connecting rods 12 on both sides of the column 3 can drive the two sets of guide plates 13 to rise to the guide track 18 inside the sliding sleeve 14, and the two sets of rollers 20 on the guide plate 13 are in contact with the inner wall of the guide track 18. Then, the rollers 20 on the guide plate 13 can be started to drive the sliding sleeve 14 to rotate along the axis of the hydraulic rod 2.

[0045] The present invention provides an additive mixing device for chemical fiber production, and the specific working principle is as follows:

[0046] When this equipment is in use, additives can be first put into the mixing cylinder 11 on the electronic scale 9, and the electronic scale 9 weighs the weight of the added additives. Subsequently, the hydraulic rod 2 is started, and the hydraulic rod 2 drives the column 3 to descend, so that the stirring rod 6 and the stirring head 7 on the sleeve frame 4 enter the interior of the mixing cylinder 11 on the electronic scale 9. Then, the stirring motor 5 is started, and the stirring motor 5 drives the stirring rod 6 to rotate through the transmission belt 8, so that the stirring head 7 fully mixes the additives in the mixing cylinder 11. When the additives in the mixing cylinder 11 on the electronic scale 9 are mixed, the hydraulic rod 2 can be driven to drive the column 3 to rise, so that the sleeve frame 4 on the column 3 drives the stirring head 7 to leave the interior of the mixing cylinder 11 on the electronic scale 9. Subsequently, the column 3 is continuously raised, so that the guide plates 13 on both sides of the column 3 rise into the bottom end of the sliding sleeve 14 and drive the sliding sleeve 14 to rise. During the rising process of the sliding sleeve 14, the supporting ring 15 on its outer side can lift the mixing cylinder 11 on the electronic scale 9, so that the mixing cylinder 11 on the electronic scale 9 leaves the surface of the weighing pan 10. Subsequently, a set of electric motors 21 on the guide plate 13 can be driven, so that the rollers 20 on the guide plate 13 rotate, and the sliding sleeve 14 rotates along the axis of the hydraulic rod 2 under the action of the rollers 20 on the two sliding sleeves 14, so that the positions of the two supporting rings 15 are quickly and automatically swapped. Then, the hydraulic rod 2 drives the column 3 to descend. During the descending process of the column 3, the sliding sleeve 14 also descends under the action of its own gravity. When the sliding sleeve 14 descends to the limit block 19, the supporting ring 15 on the outer side of the sliding sleeve 14 can leave the lower ends of the two clamping blocks 16 of the mixing cylinder 11 on the electronic scale 9, and the lifting of the mixing cylinder 11 on the electronic scale 9 is released, so that the mixing cylinder 11 on the electronic scale 9 can reconfigure the additives. By repeating the above operations, the additives in the mixing cylinder 11 on the electronic scale 9 can be mixed again, and the operation ends here.

[0047] All the electrical components mentioned in this article are electrically connected to the external main controller and industrial electricity, and the main controller can be a conventional known device such as a computer for control.

[0048] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An auxiliary agent mixing device for chemical fiber production, comprising a base plate (1), characterized in that: A hydraulic rod (2) is installed at the rear side of the top end of the base plate (1), a column (3) is installed at the output end of the hydraulic rod (2), a sleeve frame (4) is installed on the outer wall of the top end of the column (3), a stirring motor (5) is installed at the rear end of the sleeve frame (4), a stirring rod (6) is rotatably connected to the front end of the sleeve frame (4), a stirring head (7) is installed at the bottom end of the stirring rod (6), the stirring motor (5) is connected to the upper end of the stirring rod (6) through a transmission belt (8), an electronic scale (9) is installed at the top of the front end of the base plate (1), a scale pan (10) is installed on the electronic scale (9), and side connecting rods (11) are installed on both sides of the outer wall of the lower end of the column (3). 12), the bottom ends of the two groups of side connecting rods (12) are both installed with guide plates (13), the outside of the hydraulic rod (2) is provided with a sliding sleeve (14), the sliding sleeve (14) is provided with two groups of guide grooves (17), the two groups of side connecting rods (12) are both inserted into the two groups of guide grooves (17) on the sliding sleeve (14), the outer wall of the sliding sleeve (14) is fixed with two groups of supporting rings (15), the two groups of supporting rings (15) are both provided with mixing cylinders (11), and the outer walls of the mixing cylinders (11) are both installed with clamping blocks (16), the inside of the sliding sleeve (14) is provided with a guide rail (18), and the outer wall of the lower end of the hydraulic rod (2) is installed with two groups of low limit blocks (19).

2. The auxiliary agent mixing device for chemical fiber production according to claim 1, characterized in that: Rollers (20) are installed on both sides of the top of the two groups of guide plates (13), electric motors (21) are installed on the bottom of the two groups of rollers (20), and a storage battery (22) is installed in the middle of the bottom of the guide plates (13).

3. The auxiliary agent mixing device for chemical fiber production according to claim 1, characterized in that: The inner diameter of the sliding sleeve (14) is the same as the outer diameter of the hydraulic rod (2), and the inner wall of the sliding sleeve (14) is polished.

4. The auxiliary agent mixing device for chemical fiber production according to claim 1, characterized in that: The inner diameter of the support ring (15) is greater than the diameter of the mixing cylinder (11), and the two groups of clamping blocks (16) on the mixing cylinder (11) can move to the top of the support ring (15).

5. The auxiliary agent mixing device for chemical fiber production according to claim 1, characterized in that: The two groups of rollers (20) on the guide plate (13) rotate in opposite directions.

6. The auxiliary agent mixing device for chemical fiber production according to claim 2, characterized in that: The input ends of the two sets of electric motors (21) on the guide plate (13) are electrically connected to the battery (22) at the bottom end of the guide plate (13) through wires.

7. The auxiliary agent mixing device for chemical fiber production according to claim 2, characterized in that: The top horizontal lines of the two groups of rollers (20) are higher than the top horizontal line of the guide plate (13), and the guide plate (13) can drive the two groups of rollers (20) to move to the top of the guide track (18) on the sliding sleeve (14).