Multifunctional textile size blending device

By using a three-set drive and moving mechanism for the stirring shafts, the problem of uneven mixing in traditional textile sizing equipment is solved, achieving efficient mixing and uniform stirring of the sizing material.

CN223969810UActive Publication Date: 2026-03-06XUZHOU HUADONG TEXTILE SIZING AGENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

In traditional textile sizing equipment, the mixing mechanism has a single and fixed mixing direction, resulting in uneven mixing effect and limited material flowability.

Method used

Three sets of stirring shafts are driven by a drive mechanism and combined with a moving mechanism to periodically change the rotation direction and position of the stirring shafts. With the help of a belt drive system, the stirring direction and trajectory can be diversified, thereby improving the stirring efficiency.

Benefits of technology

By periodically changing the stirring direction and trajectory, the efficiency and uniformity of slurry mixing are significantly improved, and the stirring effect is enhanced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a multifunctional textile sizing agent blending device, relates to textile sizing agent preparation field, including stirring box and with stirring box fixed connection box cover, the box cover is provided with the chute, the inside of sliding chute is slidingly installed with the sliding seat, the sliding seat is symmetrically installed with two connecting plate, the two connecting plates are connected with the stirring box. A sliding seat is arranged on the connecting plate, a moving mechanism used for driving the sliding seat to slide is arranged on one side of the connecting plate, a stirring shaft I, a stirring shaft II and a stirring shaft III are rotationally mounted on the sliding seat, and a driving mechanism used for driving the three groups of stirring shafts to rotate is arranged on the sliding seat. The stirring shaft I, the stirring shaft II and the stirring shaft III are driven to periodically change the rotating direction by rotating the stirring shaft I, the stirring shaft II and the stirring shaft III, and the sliding seat is driven to reciprocate in the sliding groove by matching with the moving mechanism, so that the positions of the stirring shafts and the stirring rods can be adjusted, and the stirring shafts and the stirring rods are matched with each other, thereby effectively accelerating the slurry mixing efficiency and improving the stirring effect.
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Description

Technical Field

[0001] This utility model relates to the field of textile sizing preparation, specifically to a multifunctional textile sizing agent mixing device. Background Technology

[0002] Textiles are a general term derived from spinning and weaving. However, with the continuous development and improvement of the textile knowledge system and discipline system, it has been found that applying textile sizing solution to the spinning process can improve the weavability of warp yarns. The sizing solution is mainly composed of auxiliary materials such as adhesives, softeners, surfactants, and preservatives. The preparation of the sizing solution is a key task in the sizing process. In the sizing process, the sizing material is prepared into a sizing solution suitable for use on warp yarns using a certain sizing method.

[0003] In the process of preparing textile sizing agents, the various raw materials are generally stirred by the stirring rod inside the equipment to mix them evenly and form textile sizing agents. However, the stirring mechanism inside traditional equipment has a single stirring direction and is fixed as a whole, which makes the stirring direction and trajectory of the stirring mechanism relatively fixed. This may restrict the flowability of the materials and lead to uneven stirring effect. Based on this, this solution provides a multifunctional textile sizing agent preparation device to solve the above-mentioned problems. Utility Model Content

[0004] To solve the above-mentioned technical problems, a multifunctional textile sizing agent preparation device is provided, which solves the problems mentioned in the background art.

[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0006] A multifunctional textile sizing agent mixing device includes a mixing tank and a cover fixedly connected to the mixing tank. The upper end of the cover has a feed inlet, and the right side of the mixing tank has a discharge outlet. A groove is formed on the cover, and a sliding seat is slidably installed inside the groove. Two connecting plates are symmetrically installed on the sliding seat. A moving mechanism for driving the sliding seat is provided on one side of the connecting plates. A first mixing shaft, a second mixing shaft, and a third mixing shaft are rotatably mounted on the sliding seat. A driving mechanism for driving the first, second, and third mixing shafts to rotate is provided on the sliding seat. The driving mechanism includes a telescopic cylinder fixedly installed on the sliding seat. A connecting block is fixedly connected to the output shaft of the telescopic cylinder. A second rack is fixedly connected to the connecting block. A sliding assembly that slides with the second rack is provided on the sliding seat. A rotating gear adapted to the second rack is provided on one side of the rack, and the rotating gear is fixedly connected to the first mixing shaft.

[0007] Preferably, the mixing tank is provided with a drive wheel fixedly connected to the first mixing shaft, the drive wheel is fitted with a belt, the inner side of the belt is fitted with a driven wheel, and the driven wheel is fixedly installed on the surface of the second mixing shaft.

[0008] Preferably, a second belt is provided on the lower side of the first belt and is sleeved on the driving wheel. A second driven wheel is sleeved on the inner side of the second belt and is fixedly installed on the surface of the third stirring shaft.

[0009] Preferably, the moving mechanism includes a fixed base fixedly connected to the box cover, a drive motor fixedly installed on the rear side of the fixed base, and a turntable rotatably installed on the front side of the fixed base. The output shaft of the drive motor is fixedly connected to the rear end of the turntable, and a drive component is provided on the lower side of the turntable.

[0010] Preferably, the driving component includes an adjusting gear rotatably mounted on a fixed base. The adjusting gear is located on the lower side of the turntable, and a rack is meshed with the lower end of the adjusting gear. The two ends of the rack are fixedly connected to two connecting plates respectively. An adjusting rod is fixedly connected to the upper end of the adjusting gear. A limit groove is formed through the inside of the adjusting rod. An adjusting protrusion is slidably connected inside the limit groove. One end of the adjusting protrusion is fixedly connected to the front end of the turntable.

[0011] Preferably, the sliding assembly includes a mounting bracket fixedly mounted on the sliding seat, and a pair of sliding rods are fixedly connected inside the mounting bracket, with a rack slidably mounted on the surface of the sliding rods.

[0012] Preferably, a number of sets of stirring rods 1 are fixedly connected to the lower surface of stirring shaft 1, a number of sets of stirring rods 2 are fixedly connected to the lower surface of stirring shaft 2, and a number of sets of stirring rods 3 are fixedly connected to the lower surface of stirring shaft 3, and stirring rods 2 and stirring rods 3 are respectively staggered with stirring rods 1.

[0013] Compared with the prior art, this utility model proposes a multifunctional textile sizing agent preparation device, which has the following features:

[0014] Beneficial effects:

[0015] 1. This utility model features three sets of stirring shafts, all driven by a drive mechanism. The drive mechanism uses a telescopic cylinder to drive a connecting plate, which in turn moves a rack, causing the rack to rotate a rotating gear. This, in turn, rotates stirring shaft one, which is fixedly connected to the rotating gear. By extending and retracting the telescopic cylinder, the position and direction of the rack's movement can be changed, thus changing the rotation direction of the rotating gear. When stirring shaft one rotates, it drives the lower driving wheel to rotate. The driving wheel, through belts one and two on its surface, drives driven wheels one and two on both sides to rotate, which in turn drives stirring shaft two and stirring shaft three to rotate. When the rotation direction of stirring shaft one changes, the rotation directions of stirring shaft two and stirring shaft three change synchronously. This device, by extending and retracting the telescopic cylinder, periodically changes the direction of stirring, allowing the three sets of stirring shafts to drive their corresponding stirring rods to repeatedly stir the slurry, accelerating mixing efficiency and improving the stirring effect.

[0016] 2. This utility model includes a moving mechanism for driving the sliding seat to slide. Activating the moving mechanism drives a turntable to rotate via a drive motor. The rotation of the turntable then moves an adjusting protrusion, which in turn moves a driving component. The driving component contains an adjusting rod and an adjusting gear. The turntable moves the adjusting protrusion, allowing it to slide inside the adjusting rod, which in turn causes the adjusting rod to periodically swing left and right. During this swinging motion, the adjusting gear rotates back and forth, which in turn drives a lower rack to move left and right. This causes the rack to move through two connecting plates, causing the sliding seat to periodically reciprocate inside the groove. This allows adjustment of the positions of the stirring shaft and the stirring rod, changing the stirring trajectory, further accelerating mixing efficiency, and improving the stirring effect. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0018] Figure 2 This is a schematic diagram of the moving mechanism in this utility model;

[0019] Figure 3 This is a schematic diagram of the overall structure of the drive mechanism in this utility model;

[0020] Figure 4 This is a schematic diagram of the lower structure of the drive mechanism in this utility model.

[0021] The numbers on the map are:

[0022] 1. Mixing tank; 2. Tank cover; 201. Slide groove; 3. Feed inlet; 4. Discharge outlet; 5. Sliding seat; 6. Connecting plate; 7. Moving mechanism; 701. Fixed seat; 702. Drive motor; 703. Turntable; 704. Adjusting gear; 705. Rack one; 706. Adjusting rod; 707. Adjusting protrusion; 8. Mounting bracket; 801. Slide rod; 9. Drive mechanism; 901. Telescopic cylinder; 902. Connecting block; 903. Rack two; 904. Rotating gear; 905. Drive wheel; 906. Driven wheel one; 907. Belt one; 908. Driven wheel two; 909. Belt two; 10. Mixing shaft one; 1001. Mixing rod one; 11. Mixing shaft two; 1101. Mixing rod two; 12. Mixing shaft three; 1201. Mixing rod three. Detailed Implementation

[0023] The following description is intended to disclose the present invention so that those skilled in the art can implement it. The preferred embodiments described below are merely examples, and other obvious variations will occur to those skilled in the art.

[0024] Reference Figure 1-4As shown, a multifunctional textile sizing agent mixing device includes a mixing tank 1 and a tank cover 2 fixedly connected to the mixing tank 1. The upper end of the tank cover 2 is provided with a feed inlet 3, and the right side of the mixing tank 1 is provided with a discharge outlet 4. A sliding groove 201 is provided on the tank cover 2, and a sliding seat 5 is slidably installed inside the sliding groove 201. Two connecting plates 6 are symmetrically installed on the sliding seat 5. One end of each connecting plate 6 is provided with a moving mechanism 7 for driving the sliding seat 5 to slide. A first stirring shaft 10, a second stirring shaft 11, and a third stirring shaft 12 are rotatably mounted on the sliding seat 5. The sliding seat 5 is provided with a mechanism for driving the first stirring shaft 10 and the second stirring shaft 12. The drive mechanism 9, which rotates the first stirring shaft 10 and the third stirring shaft 12, is used in this device to drive the stirring shaft 10, the second stirring shaft 11 and the third stirring shaft 12 to rotate, thereby stirring the slurry. At the same time, the drive mechanism 9 can change the direction of stirring. By periodically changing the direction of stirring, the slurry is repeatedly stirred, which speeds up the mixing efficiency and improves the stirring effect. In conjunction with the moving mechanism 7, it can drive the sliding seat 5 to reciprocate, thereby changing the position of the stirring shaft, changing the stirring trajectory, and discharging it through the discharge port 4 after stirring is completed.

[0025] Specifically, in this embodiment, the driving mechanism 9 includes a telescopic cylinder 901 fixedly mounted on the sliding seat 5. The output shaft of the telescopic cylinder 901 is fixedly connected to a connecting block 902. A rack 903 is fixedly connected to the connecting block 902. The sliding seat 5 is provided with a sliding assembly that slides with the rack 903. A rotating gear 904 adapted to the rack 903 is provided on one side. The rotating gear 904 is fixedly connected to the stirring shaft 10. In the driving mechanism 9, the telescopic cylinder 901 drives the connecting plate 902, and the connecting block 902 in turn drives the rack 903 to move, so that the rack 903 can drive the rotating gear 904 to rotate, thereby driving the stirring shaft 10 fixedly connected to the rotating gear 904 to rotate. By extending and retracting the telescopic cylinder 901, the moving position and direction of the rack 903 can be changed, thereby changing the rotation direction of the rotating gear 904. The rotation direction of the stirring shaft 10 can be changed, so that the stirring direction changes periodically, improving the stirring effect.

[0026] Specifically, in this embodiment, a drive wheel 905 is fixedly connected to a stirring shaft 10 inside the mixing tank 1. A belt 907 is fitted onto the drive wheel 905, and a driven wheel 906 is fitted inside the belt 907. The driven wheel 906 is fixedly installed on the surface of the stirring shaft 11. A belt 909 is fitted onto the drive wheel 905 below the belt 907, and a driven wheel 908 is fitted inside the belt 909. The driven wheel 908 is fixedly installed on the surface of the stirring shaft 12. When the stirring shaft 10 rotates, it drives the driving wheel 905 on the lower side to rotate. The rotation of the driving wheel 905, through the belt 907 and belt 909 on its surface, drives the driven wheels 906 and 908 on both sides to rotate, which in turn drives the stirring shaft 11 and stirring shaft 12 to rotate. When the rotation direction of the stirring shaft 10 changes, the rotation direction of the stirring shaft 11 and stirring shaft 12 changes synchronously, thereby periodically changing the direction of stirring and improving the stirring effect.

[0027] Specifically, in this embodiment, the moving mechanism 7 includes a fixed base 701 fixedly connected to the box cover 2. A drive motor 702 is fixedly installed on the rear side of the fixed base 701, and a turntable 703 is rotatably installed on the front side of the fixed base 701. The output shaft of the drive motor 702 is fixedly connected to the rear end of the turntable 703. A driving component is provided on the lower side of the turntable 703. The driving component includes an adjusting gear 704 rotatably installed on the fixed base 701. The adjusting gear 704 is located on the lower side of the turntable 703, and a rack 705 is meshed with the lower end of the adjusting gear 704. The two ends of the rack 705 are fixedly connected to two connecting plates 6 respectively. An adjusting rod 706 is fixedly connected to the upper end of the adjusting gear 704. A limiting groove is formed through the interior of the adjusting rod 706. An adjusting protrusion 707 is slidably connected inside the limiting groove. One end of the adjusting protrusion 707 is fixedly connected to the front end of the turntable 703. A moving mechanism 7 is provided to drive the sliding seat 5 to slide. When the moving mechanism 7 is activated, the drive motor 702 drives the turntable 703 to rotate. The rotation of the turntable 703 drives the adjusting protrusion 707 to move, which in turn drives the driving component. The driving component is equipped with an adjusting rod 706 and an adjusting gear 704. The turntable 703 drives the adjusting protrusion 707 to move, allowing it to slide inside the adjusting rod 706. This causes the adjusting rod 706 to oscillate left and right periodically. During the oscillation of the adjusting rod 706, the adjusting gear 704 is driven to rotate back and forth. The rotation of the adjusting gear 704 drives the rack 705 on the lower side to move left and right. Thus, the rack 705 drives the sliding seat 5 to move periodically back and forth inside the slide groove 201 through the two connecting plates 6. This allows adjustment of the position of the three sets of stirring shafts and the stirring rods on their surfaces, further accelerating the mixing efficiency and improving the mixing effect.

[0028] Specifically, in this embodiment, the sliding assembly includes a mounting bracket 8 fixedly mounted on the sliding seat 5. The mounting bracket 8 is fixedly connected to the sliding seat 5, and a pair of slide rods 801 are fixedly connected inside the mounting bracket 8. A rack 903 is slidably mounted on the surface of the slide rods 801. Through the sliding assembly, the rack 903 can slide on the surface of the slide rods as driven by the telescopic cylinder 901. At the same time, the two slide rods 801 can guide and limit the rack 903, so that it can stably mesh with the rotating gear 904.

[0029] Specifically, in this embodiment, several sets of stirring rods 1001 are fixedly connected to the lower surface of stirring shaft 10, several sets of stirring rods 1101 are fixedly connected to the lower surface of stirring shaft 11, and several sets of stirring rods 1201 are fixedly connected to the lower surface of stirring shaft 12. The stirring rods 1101 and 1201 are staggered with the stirring rods 1001. Driven by the driving mechanism 9, the stirring shafts 10, 11, and 12 continuously reciprocate. In conjunction with the moving mechanism 7, the sliding seat 5 periodically reciprocates within the chute 201, thereby adjusting the positions of the stirring shafts and stirring rods. This mutual coordination effectively accelerates the mixing efficiency of the slurry and improves the stirring effect.

[0030] The working principle of this utility model is as follows: When using this device, the raw materials are fed into the mixing tank 1 through the feed inlet 3, and the moving mechanism 7 and the driving mechanism 9 are activated.

[0031] The moving mechanism 7 is activated, and the turntable 703 is driven to rotate by the drive motor 702. The rotation of the turntable 703 drives the adjusting protrusion 707 to move, which in turn drives the driving component. The driving component is equipped with an adjusting rod 706 and an adjusting gear 704. The turntable 703 drives the adjusting protrusion 707 to move, so that it can slide inside the adjusting rod 706, thereby causing the adjusting rod 706 to swing left and right periodically. During the swinging process of the adjusting rod 706, the adjusting gear 704 is driven to rotate back and forth. The rotation of the adjusting gear 704 drives the rack 705 on the lower side to move left and right, so that the rack 705 drives the sliding seat 5 to move back and forth periodically inside the slide groove 201 through the two connecting plates 6, thereby adjusting the position of the three sets of stirring shafts and the stirring rods on their surface.

[0032] The drive mechanism 9 is activated. The drive mechanism 9 drives the connecting plate 902 via the telescopic cylinder 901. The connecting plate 902 then moves the rack 903, causing the rack 903 to rotate the rotating gear 904. This, in turn, rotates the stirring shaft 10, which is fixedly connected to the rotating gear 904. When the stirring shaft 10 rotates, it drives the lower drive wheel 905. The rotation of the drive wheel 905, through its surface belts 907 and 909, drives the driven wheels 906 on both sides respectively. The driven wheel 908 rotates, which in turn drives the stirring shaft 11 and the stirring shaft 12 to rotate. By extending and retracting the telescopic cylinder 901, the position and direction of the rack 903 can be changed, which in turn changes the rotation direction of the rotating gear 904. This can change the rotation direction of the stirring shaft 10. When the rotation direction of the stirring shaft 10 changes, the rotation directions of the stirring shaft 11 and the stirring shaft 12 change synchronously, thereby periodically changing the direction of stirring and improving the stirring effect.

[0033] In this device, the drive mechanism 9 drives three sets of stirring shafts to rotate, so that the stirring shafts can stir the slurry. At the same time, the drive mechanism 9 can make the stirring shafts rotate back and forth, so that the stirring direction changes periodically, and the slurry is repeatedly stirred, which speeds up the mixing efficiency and improves the stirring effect. In conjunction with the moving mechanism 7, the sliding seat 5 can be driven to move back and forth, thereby changing the position of the stirring shaft and changing the stirring trajectory.

[0034] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A multi-functional textile sizing preparation device, characterized in that, The utility model provides a stirring box, including stirring box (1) and fixedly connected stirring box (1) on the box cover (2), the upper end of box cover (2) is provided with feeding port (3), the right side of stirring box (1) is provided with discharge gate (4), the box cover (2) is opened sliding slot (201), the inside sliding of sliding slot (201) is installed sliding seat (5), two connecting plates (6) are symmetrically installed on sliding seat (5), one side of connecting plate (6) is provided with the moving mechanism (7) for driving sliding seat (5) sliding, the rotation of driving mechanism (9) is installed stirring shaft one (10), stirring shaft two (11) and stirring shaft three (12) on sliding seat (5), the driving mechanism (9) includes fixedly installed telescopic pneumatic cylinder (901) on sliding seat (5), the output shaft of telescopic pneumatic cylinder (901) is fixedly connected with connecting block (902), the connecting block (902) is fixedly connected with rack two (903), the sliding assembly of cooperation rack two (903) is provided on sliding seat (5), one side of rack two (903) is provided with the rotation gear (904) that is suitable for it, and rotation gear (904) is fixedly connected with stirring shaft one (10).

2. The multi-functional textile size preparation device according to claim 1, wherein: The inside of the stirring box (1) is provided with a driving wheel (905) fixedly connected with the stirring shaft (10), the driving wheel (905) is sleeved with a belt (907), the inside of the belt (907) is sleeved with a driven wheel (906), and the driven wheel (906) is fixedly installed on the surface of the stirring shaft (11).

3. The multi-functional textile size preparation device according to claim 2, wherein: The lower side of the belt (907) is provided with a belt (909) sleeved on the driving wheel (905), the inside of the belt (909) is sleeved with a driven wheel (908), and the driven wheel (908) is fixedly installed on the surface of the stirring shaft (12).

4. The multi-functional textile size preparation device according to claim 1, wherein: The moving mechanism (7) includes a fixed seat (701) fixedly connected to the box cover (2), a drive motor (702) fixedly installed on the rear side of the fixed seat (701), and a rotating disc (703) rotatably installed on the front side of the fixed seat (701). The output shaft of the drive motor (702) is fixedly connected to the rear end of the rotating disc (703), and the lower side of the rotating disc (703) is provided with a driving member.

5. The multi-functional textile size preparation device according to claim 4, wherein: The driving member includes an adjusting gear (704) rotatably installed on the fixed seat (701), the adjusting gear (704) is arranged on the lower side of the rotating disc (703), the lower end of the adjusting gear (704) is engagedly connected with a rack (705), the two ends of the rack (705) are respectively fixedly connected with the two connecting plates (6), the upper end of the adjusting gear (704) is fixedly connected with an adjusting rod (706), a limiting groove is formed in the inside of the adjusting rod (706), an adjusting lug (707) is slidably connected in the inside of the limiting groove, and one end of the adjusting lug (707) is fixedly connected with the front end of the rotating disc (703).

6. The multi-functional textile size preparation device according to claim 1, wherein: The sliding assembly comprises a mounting frame (8) fixedly mounted on the sliding seat (5), and a pair of sliding rods (801) are fixedly connected inside the mounting frame (8), and the rack two (903) is slidingly mounted on the surface of the sliding rod (801).

7. The multi-functional textile size preparation device according to claim 1, wherein: The lower side surface of the stirring shaft one (10) is fixedly connected with a plurality of groups of stirring rods one (1001), the lower side surface of the stirring shaft two (11) is fixedly connected with a plurality of groups of stirring rods two (1101), the lower side surface of the stirring shaft three (12) is fixedly connected with a plurality of groups of stirring rods three (1201), and the stirring rods two (1101) and the stirring rods three (1201) are staggered with the stirring rods one (1001) respectively.