Water vapor condensation mechanism of spinning sizing production line

By designing a water vapor condensation mechanism in the drying equipment of the spinning sizing production line, and using uniformly distributed condensing strips and water collecting tank structure to treat drying water vapor, the workshop humidity problem is solved, the equipment service life is extended and the safety is improved.

CN223036919UActive Publication Date: 2025-06-27JIAXING CHUNDA TEXTILE CO LTD
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Patent Information

Application Number
CN202421804116.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-29
Publication Date
2025-06-27
Estimated Expiration
2034-07-29

AI Technical Summary

Technical Problem

The drying equipment of the existing spinning sizing production line fails to effectively handle the drying water vapor, resulting in humid environment in the workshop and affecting the service life and safety of the equipment.

Method used

A water vapor condensing mechanism is designed, adopting uniformly distributed condensing strips and water collecting tank structures. One side of the condensing strips is equipped with a water collecting tank, and the other side is connected to the bottom of the water collecting tank of adjacent condensing strips to form an inclined condensing structure. After water vapor condenses on the condensing strips, it flows into the water collecting tank.

Benefits of technology

The problem of drying water vapor is effectively solved. Through the design of condensing strips and water collection tanks, the water vapor generated by drying is collected and processed, which reduces the workshop humidity, extends the service life of the equipment and improves safety.

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Abstract

The utility model provides a water vapor condensation mechanism of a spinning sizing production line, a drying device is arranged on the spinning sizing production line, and the water vapor condensation mechanism is arranged on the drying device. The water vapor condensation mechanism comprises a plurality of condensation strip plates which are evenly distributed, a water collecting groove is formed in one side of each condensation strip plate, all the condensation strip plates incline towards one side of the water collecting groove of the condensation strip plate, and the other side of each condensation strip plate is connected to the bottom of the water collecting groove of the adjacent condensation strip plate. Compared with the prior art, the spinning sizing production line drying device has the advantages that the evenly-distributed condensation battens are matched with the water collecting tank, and the technical problem that no device for treating drying water vapor exists on drying equipment of an existing spinning sizing production line is solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of spinning production, in particular to a water vapor condensation mechanism of a spinning and sizing production line. Background Art

[0002] The drying device in the spinning and sizing production line uses a roller shaft and an electric heating wire for drying. In this design, the fiber or yarn passes through a series of heating roller shafts, which are internally equipped with electric heating wires to heat and remove the moisture on the fiber by conduction. The water vapor generated during the drying process will naturally rise and eventually disperse in the workshop, resulting in a humid overall environment. This high-humidity environment not only reduces the comfort of the working area but also may accelerate the oxidation and corrosion of the metal structures in the workshop, affecting the service life and safety of the equipment. Content of the Utility Model

[0003] Aiming at the deficiencies in the prior art, the utility model provides a water vapor condensation mechanism for a spinning and sizing production line, which solves the technical problem that there is no device for treating the drying water vapor on the drying equipment of the existing spinning and sizing production line.

[0004] According to a water vapor condensation mechanism of a spinning and sizing production line recorded in the embodiment of the utility model, a drying device is provided on the spinning and sizing production line, and a water vapor condensation mechanism is provided on the drying device;

[0005] The water vapor condensation mechanism includes a plurality of uniformly distributed condensation strip plates. A water collecting tank is provided on one side of each condensation strip plate. All the condensation strip plates incline towards the water collecting tank side of themselves, and the other side of each condensation strip plate is connected to the bottom of the water collecting tank of the adjacent condensation strip plate.

[0006] The technical principle of the utility model is as follows: The drying device evaporates the sized spinning into the air. The water vapor rises with the hot air, meets the cold condensation strip plate, condenses into water droplets at the bottom of the condensation strip plate, and then flows into the water collecting tank along the inclined direction of the condensation strip plate.

[0007] Because the drying device of the spinning and sizing production line is generally large in volume, uniformly distributed condensation strip plates are adopted, and there is a water collecting tank at a certain distance for collecting the condensed water; if a large condensation strip plate is adopted, it is easy for the condensed water to drip back onto the drying device during the process of flowing into the water collecting tank.

[0008] Compared with the prior art, the utility model has the following beneficial effects: By using uniformly distributed condensation strip plates in cooperation with the water collecting tank, it solves the technical problem that there is no device for treating the drying water vapor on the drying equipment of the existing spinning and sizing production line.

[0009] Furthermore, a cooling fan is provided at the top of the condensation strip plate at the highest position on the side without the water collecting tank.

[0010] Further, the blowing direction of the cooling fan forms an acute angle with the inclination direction of the condensation strip plate, and the angle of the acute angle is 5-15°.

[0011] Further, a shared drainage groove is provided on one side of all the water collecting grooves, and the drainage groove is also fixed on the condensation strip plate. A vertical pipe is provided at the connection of the drainage groove and the water collecting groove at the lowest position, and a water collecting tank is provided at the bottom of the vertical pipe.

[0012] Further, except for the two side edges where the water collecting grooves and the drainage grooves are provided, the outer edge of the water vapor condensation mechanism is provided with flanges on the remaining two side edges.

[0013] Further, the drying device includes evenly distributed drying rollers, and electric heating wires are provided inside the drying rollers for heating, and the water vapor condensation mechanism covers all the drying rollers.

[0014] Further, the cross-sections of all the condensation strip plates are on an inclined line, and an L-shaped protrusion is provided on one side of each condensation strip plate to form a water collecting groove.

[0015] Further, a shared drainage groove needs to be provided at both ends of all the L-shaped protrusions, and the two drainage grooves are respectively connected to a water collecting tank.

[0016] Further, both the condensation strip plate and the L-shaped protrusion are convex arc structures. Description of the Drawings

[0017] Figure 1 It is a schematic structural diagram of the drying device according to Embodiment 1 of the present invention.

[0018] Figure 2 It is a schematic structural diagram of the water vapor condensation mechanism according to Embodiment 1 of the present invention.

[0019] Figure 3 It is a schematic structural diagram of the water collecting groove and the drainage groove according to Embodiment 1 of the present invention.

[0020] Figure 4 It is a schematic structural diagram of the water vapor condensation mechanism according to Embodiment 2 of the present invention.

[0021] Figure 5 It is a schematic structural diagram of the water collecting groove according to Embodiment 2 of the present invention.

[0022] In the above-mentioned drawings: 100, drying device; 110, drying roller; 200, water vapor condensation mechanism; 210, condensation strip plate; 211, water collecting groove; 212, cooling fan; 213, flange; 220, drainage groove; 221, vertical pipe; 222, water collecting tank. Detailed Embodiments

[0023] The technical solutions in the present utility model will be further described below in conjunction with the accompanying drawings and embodiments.

[0024] Embodiment 1

[0025] As Figure 1 shown, there is a water vapor condensation mechanism for a spinning and sizing production line. A drying device 100 is provided on the spinning and sizing production line. Specifically, the drying device 100 includes evenly distributed drying rollers 110. Electric heating wires are provided inside the drying rollers 110 for heating.

[0026] A water vapor condensation mechanism 200 is provided on the drying device 100. The water vapor condensation mechanism 200 covers all the drying rollers 110 and is used to condense the water vapor evaporated by the drying device 100.

[0027] As Figure 2 shown, the water vapor condensation mechanism 200 includes a number of evenly distributed condensation strip plates 210. A water collecting tank 211 is integrally formed on one side of the condensation strip plate 210. All the condensation strip plates 210 are inclined towards the side of their own water collecting tank 211. The other side of the condensation strip plate 210 is connected to the bottom of the water collecting tank 211 of the adjacent condensation strip plate 210, forming a water vapor condensation mechanism 200 inclined towards one side, so that the condensed water can finally enter the water collecting tank 211.

[0028] As Figure 2 shown, at the top of the condensation strip plate 210 in the highest position, a heat dissipation fan 212 is provided on the side without the water collecting tank 211, and the blowing direction of the heat dissipation fan 212 forms an acute angle with the inclination direction of the condensation strip plate 210. The angle of the acute angle is 5 - 15°, which helps to take away the heat on the condensation strip plate 210 and makes the condensation strip plate 210 always in a cooled state.

[0029] As Figure 2-3 shown, a common drainage trough 220 is welded and fixed on one side of all the water collecting tanks 211. The drainage trough 220 is also fixed on the condensation strip plate 210. A vertical pipe 221 is provided at the connection between the drainage trough 220 and the water collecting tank 211 in the lowest position. A water collecting tank 222 is provided at the bottom of the vertical pipe 221 for collecting condensed water for other purposes, such as cleaning the factory floor, etc.

[0030] As Figure 2-3 shown, except for the two side edges where the water collecting tank 211 and the drainage trough 220 are provided on the outer edge of the water vapor condensation mechanism 200, the remaining two side edges are integrally formed with flanges 213. The function of the flanges 213 is to let the air with more water stay inside the water vapor condensation mechanism 200 for condensation.

[0031] Embodiment 2

[0032] As Figure 4-5As shown in the figure, the difference between this embodiment and Embodiment 1 is that the cross-sections of all the condensation strip plates 210 are on an inclined line. An L-shaped protrusion is provided on one side of each condensation strip plate 210 to form a water collecting tank 211. Specifically, both the condensation strip plate 210 and the L-shaped protrusion are convex arc structures, and a common drainage tank 220 needs to be welded and fixed at both ends of all the L-shaped protrusions. Two drainage tanks 220 are respectively connected to a water collecting tank 222 for collecting water. The convex arc structure is more likely to retain the water-containing air inside the water vapor condensation mechanism 200.

[0033] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention rather than to limit them. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present invention, and they should all be covered by the scope of the claims of the present invention.

Claims

1. A water vapor condensation mechanism for a spinning sizing production line, wherein the spinning sizing production line is provided with a drying device, characterized in that: The drying device is provided with a water vapor condensation mechanism; The water vapor condensation mechanism includes a plurality of evenly distributed condensation strips, one side of the condensation strips is provided with a water collecting groove, all the condensation strips are inclined toward one side of their own water collecting grooves, and the other side of the condensation strips is connected to the bottom of the water collecting groove of the adjacent condensation strips.

2. The water vapor condensation mechanism of the spinning sizing production line according to claim 1, characterized in that: A cooling fan is provided on the top of the side of the condensation strip plate at the highest position where no water collecting tank is provided.

3. The water vapor condensation mechanism of the spinning sizing production line according to claim 2, characterized in that: The blowing direction of the cooling fan and the tilting direction of the condensation strip plate form an acute angle, and the angle of the acute angle is 5-15°.

4. The water vapor condensation mechanism of the spinning sizing production line according to claim 1, characterized in that: A common drainage groove is provided on one side of all the water collecting grooves, and the drainage groove is also fixed on the condensation strip plate. A vertical pipe is provided at the connection between the drainage groove and the water collecting groove at the lowest position, and a water collecting tank is provided at the bottom of the vertical pipe.

5. The water vapor condensation mechanism of the spinning sizing production line according to claim 4, characterized in that: The outer edge of the water vapor condensation mechanism is provided with flanges on the remaining two sides except for the two sides of the water collecting trough and the drainage trough.

6. The water vapor condensation mechanism of the spinning sizing production line according to claim 1, characterized in that: The drying device comprises uniformly distributed drying rollers, wherein electric heating wires are arranged inside the drying rollers for heating, and the water vapor condensation mechanism covers all the drying rollers.

7. The water vapor condensation mechanism of the spinning sizing production line according to claim 1, characterized in that: The cross sections of all the condensation strips are on an inclined line, and one side of each condensation strip is provided with an L-shaped protrusion to form a water collecting trough.

8. The water vapor condensation mechanism of the spinning sizing production line according to claim 7, characterized in that: Both ends of all the L-shaped protrusions need to be provided with a common drainage groove, and the two drainage grooves are respectively connected to a water collecting tank.

9. A water vapor condensation mechanism for a spinning sizing production line according to claim 7 or 8, characterized in that: The condensation strips and the L-shaped protrusions are both protruding arc structures.