Silk thread cooling pool

By using a return wheel and a pressure rod to control the wire path in the wire cooling tank, combined with a baffle to collect condensate, the problems of excessively long cooling tanks and waste of coolant are solved, achieving efficient cooling and cost savings.

CN223688513UActive Publication Date: 2025-12-19浙江欣瑜纺织有限公司
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423194710.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-12-19
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

The existing yarn cooling pool design is too long, takes up a lot of space, and requires a large amount of coolant, which increases production costs.

Method used

The first and second reel pullers are used to pull the wire back to the top of the cooling pool. Gravity is used to repeatedly immerse the wire in the coolant. The wire path is controlled by the wire pressing rod and baffle. Combined with the baffle to collect condensate, the length of the cooling pool is shortened.

Benefits of technology

While ensuring cooling effect, the length of the cooling pool is shortened, the amount of coolant used is reduced, production costs are lowered, equipment adjustment flexibility is improved, and operational safety is ensured.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223688513U_ABST
    Figure CN223688513U_ABST
Patent Text Reader

Abstract

The utility model provides a silk yarn cooling pond which comprises a cooling pond body, and the two ends of the cooling pond body are the silk inlet end and the silk outlet end respectively. The device further comprises a first wire return wheel, a second wire return wheel, a first long rod, a second long rod and a high platform, the first wire return wheel is rotatably arranged on the first long rod in a penetrating mode at intervals, and the two ends of the first long rod are fixed in the two side walls of the cooling pool and are close to the wire outlet end; the high platform is mounted on the top surface of the cooling pond and is close to the wire feeding end; the second wire return wheels rotatably penetrate through the second long rod at intervals, and the two ends of the second long rod are fixed in the side walls of the two sides of the high table. An operator pulls the silk thread from the silk inlet end to the silk outlet end, then the silk thread is pulled to the position above the cooling pond again through the first wire return wheel and the second wire return wheel in sequence, and then the silk thread is sent out through the silk outlet end. Under the action of gravity, the silk threads coming out of the second wire return wheel are immersed in the cooling water again; therefore, the silk threads are repeatedly soaked in the cooling liquid, and the length of the cooling pool is shortened while the cooling effect of the silk threads is guaranteed.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to cloth production field, in particular to a silk thread cooling pool. BACKGROUND

[0002] In the production of cloth, generally first through wire drawing machine carries out wire drawing, after wire drawing, needs to carry out cooling treatment to the drawn silk thread, to stabilize the physical property of silk thread.

[0003] And general cooling mode is directly through the drawn silk thread cooling pool, utilizes the cooling liquid in cooling pool and carries out direct cooling, however, in order to cool silk thread fully, generally will design the cooling pool very long, occupies a large amount of space, and still needs to inject a large amount of cooling liquid, increases production cost. INNOVATION CONTENT

[0004] The application provides a silk thread cooling pool, which has the characteristics of repeated use of cooling liquid and shorter cooling pool.

[0005] The application provides a silk thread cooling pool, which adopts the following technical scheme:

[0006] A silk thread cooling pool, comprising a cooling pool, the two ends of the cooling pool are respectively an inlet end and an outlet end; further comprising a plurality of first return wire wheels, a plurality of second return wire wheels, a first long rod, a second long rod and a high platform, the plurality of first return wire wheels are rotatably arranged on the first long rod at intervals, the two ends of the first long rod are fixed in the side walls of the two sides of the cooling pool and are arranged close to the outlet end; the high platform is installed on the top surface of the cooling pool and is arranged close to the inlet end; the plurality of second return wire wheels are rotatably arranged on the second long rod at intervals, and the two ends of the second long rod are fixed in the side walls of the two sides of the high platform; the silk thread enters from the inlet end, passes through the first return wire wheels and the second return wire wheels in sequence, and then reaches the outlet end.

[0007] Through the above technical scheme, the operator pulls the silk thread from the inlet end to the outlet end, then retracts the silk thread to the upper side of the cooling pool through the first return wire wheels and the second return wire wheels in sequence, and then sends the silk thread out through the outlet end; under the action of gravity, the silk thread coming out of the second return wire wheel will be immersed in the cooling water again; so that the silk thread is repeatedly soaked in the cooling liquid, which shortens the length of the cooling pool while ensuring the cooling effect of the silk thread.

[0008] Preferably, a plurality of wire pressing rods are installed in the cooling pool, the plurality of wire pressing rods are arranged between the first return wire wheels and the second return wire wheels in the length direction perpendicular to the length direction of the cooling pool, and the wire pressing rods are arranged close to the inner bottom wall of the cooling pool; the silk thread passes through the second return wire wheels and then passes through the plurality of wire pressing rods in sequence to the outlet end.

[0009] Through the technical scheme, if the traction force is large, the silk thread will be straightened under the action of the traction force, thereby reducing the contact area with the cooling liquid, and the cooling effect is affected; and the function of the silk thread pressing rod is to press the silk thread into the cooling liquid to reduce the occurrence of the above-mentioned situation.

[0010] Preferably, the cooling pool further comprises a plurality of movable racks, the bottom end of each movable rack is provided with a mounting groove, and a plurality of silk thread pressing rods are installed in the mounting grooves one by one; the edges of the openings in the upper ends of the side walls on both sides of the cooling pool are outwardly formed with flanges, and a plurality of threaded holes are formed in the flanges along the length direction of the cooling pool; and the movable racks are detachably fixed to the flanges through bolts and the threaded holes.

[0011] Through the technical scheme, the design of the movable racks enables an operator to change the positions of the silk thread pressing rods by changing the positions of the movable racks on the flanges, so as to adjust the running path of the silk thread; and the equipment can be adjusted to avoid the silk thread from being torn by the traction force after the silk thread is torn by the traction force.

[0012] Preferably, the cooling pool is further provided with a baffle, the baffle is located between the first long rod and the silk thread pressing rod closest to the first long rod, and a plurality of through holes are formed in the baffle for the silk thread to pass through.

[0013] Through the technical scheme, the diameters of the through holes in the baffle are slightly larger than the diameter of the silk thread, so as to reduce the situation that the silk threads are wound together during the conveying process.

[0014] Preferably, the cooling pool is installed above the shielding cover through a plurality of support columns and located in the shielding cover; and the shielding cover is used to prevent the condensed water on the outer wall of the cooling pool from falling to the ground.

[0015] Through the technical scheme, because of the existence of the cooling liquid in the cooling pool, the temperature of the side wall of the cooling pool is lower than the ambient temperature, and the side wall will naturally condense condensed water during work. The condensed water falling to the ground is easy to form a small pool of water, which affects the safety of the operator, so a shielding cover is arranged to collect the condensed water to prevent it from falling to the ground.

[0016] Preferably, a water pump is arranged below the shielding cover, the water suction end of the water pump is in communication with the shielding cover, and the water outlet end is in communication with a drainage pipeline.

[0017] Through the technical scheme, the water pump is used to pump out the condensed water in the shielding cover, so that the condensed water is not accumulated in the shielding cover.

[0018] Preferably, the support columns are made of wood; and the outer sides of the support columns are coated with moisture-proof paint.

[0019] Through the above technical solution, the poor thermal conductivity of wood reduces the impact of coolant on the baffle temperature, thus reducing the possibility of condensation on the outside of the baffle. At the same time, the moisture-proof paint applied to the outside can effectively isolate the condensate from contact with the wood, preventing the wood from getting damp and rotting.

[0020] The main technical effects of this utility model are reflected in the following aspects:

[0021] 1. This utility model uses a first and second reel to redraw the yarn back to the top of the cooling pool; under the action of gravity, the yarn exiting from the second reel is re-immersed in the cooling water; thus, the yarn is repeatedly immersed in the coolant, ensuring the cooling effect of the yarn while shortening the length of the cooling pool;

[0022] 2. The purpose of this utility model is to press the wire into the coolant by setting the wire pressing rod, thereby ensuring the contact area between the wire and the coolant;

[0023] 3. This utility model uses a baffle to collect condensate and prevent it from dripping onto the ground. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the overall structure of an embodiment of this application;

[0025] Figure 2 Examples of embodiments in this application Figure 1 Enlarged diagram of point A in the middle.

[0026] Reference numerals in the attached drawings: 1. Cooling pool; 11. Wire inlet end; 12. Wire outlet end; 13. Flanged edge; 14. Threaded hole; 2. First return reel; 3. Second return reel; 4. First long rod; 5. Second long rod; 6. Platform; 7. Wire pressing rod; 8. Movable frame; 81. Mounting slot; 9. Baffle; 91. Through hole; 10. Support column; 20. Baffle cover; 30. Water pump. Detailed Implementation

[0027] The following is in conjunction with the appendix Figures 1-2 The specific embodiments of this utility model will be further described in detail to make the technical solution of this utility model easier to understand and master.

[0028] This application discloses a wire cooling tank:

[0029] Reference Figures 1-2The application relates to a wire cooling pool, which comprises a cooling pool 1, an inlet wire end 11 and an outlet wire end 12 arranged at two ends of the cooling pool 1 respectively, a plurality of first wire return wheels 2, a plurality of second wire return wheels 3, a first long rod 4, a second long rod 5 and a high platform 6, the plurality of first wire return wheels 2 are arranged on the first long rod 4 in a spaced rotating mode, the two ends of the first long rod 4 are fixed in the two side walls of the cooling pool 1 and are arranged close to the outlet wire end 12, the high platform 6 is arranged on the top surface of the cooling pool 1 and is arranged close to the inlet wire end 11, and the plurality of second wire return wheels 3 are arranged on the second long rod 5 in a spaced rotating mode, and the two ends of the second long rod 5 are fixed in the two side walls of the high platform 6.

[0030] After the wire is arranged on the cooling pool 1 in sequence, the wire from the outlet wire end 12 is arranged on a traction device, and the traction device is used for slowly pulling the wire so that the wire can normally pass through the cooling pool 1.

[0031] With reference to Figure 1 A plurality of wire pressing rods 7 are arranged in the cooling pool 1, the plurality of wire pressing rods 7 are arranged between the first wire return wheel 2 and the second wire return wheel 3 in a length direction perpendicular to the length direction of the cooling pool 1, and the wire pressing rods 7 are arranged close to the inner bottom wall of the cooling pool 1; the wire passes through the second wire return wheel 3 and then sequentially passes through the plurality of wire pressing rods 7 to the outlet wire end 12. If the traction force is large, the wire will be straightened under the action of the traction force, so that the contact area with the cooling liquid is reduced, and the cooling effect is affected; and the wire pressing rod is used for pressing the wire into the cooling liquid to reduce the above-mentioned situation.

[0032] With reference to Figure 1 The application further comprises a plurality of movable racks 8, the bottom end of each movable rack 8 is provided with a mounting groove 81, and the plurality of wire pressing rods 7 are arranged in the mounting grooves 81 in a one-to-one mode; the edges of the upper ports of the two side walls of the cooling pool 1 are outwardly formed with flanges 13, and a plurality of threaded holes 14 are formed in the length direction of the cooling pool 1; and the movable rack 8 is detachably fixed to the flange 13 through the cooperation of bolts and the threaded holes 14. The design of the movable rack 8 enables an operator to change the position of the wire pressing rod 7 by changing the position of the movable rack 8 on the flange 13, so that the running path of the wire is adjusted; and the equipment can be adjusted to avoid the wire from being torn by the traction force after the wire is torn by the traction force. The high platform 6 is also detachably fixed to the flange 13 through the cooperation of bolts and the threaded holes 14, so that the position of the high platform 6 on the top surface of the cooling pool 1 can also be changed.

[0033] With reference to Figure 2A baffle 9 is also installed inside the cooling pool 1. The baffle 9 is located between the first long rod 4 and the pressure rod 7 closest to the first long rod 4. The baffle 9 has several through holes 91 for the wire to pass through. The diameter of the through holes 91 on the baffle 9 is slightly larger than the diameter of the wire, thereby reducing the possibility of the wires getting tangled together during transportation. At the same time, the position of the through holes 91 in the cooling pool 1 is much lower than the pressure rod, so that the wires will not get tangled together from the wire inlet end 11 to the first return reel 2 and the second return reel 3 to the wire outlet end 12.

[0034] Reference Figure 1 The cooling pool 1 is installed directly above the baffle 20 and inside the baffle 20 via multiple support columns 10. The baffle 20 is used to prevent condensate from dripping from the outer wall of the cooling pool 1 onto the ground. Because of the coolant inside the cooling pool 1, the side wall temperature is lower than the ambient temperature. During operation, condensate will naturally condense on the side wall. If this condensate drips onto the ground, it can easily form small puddles, affecting the safety of operators. Therefore, a baffle 20 is installed to collect the condensate and prevent it from dripping onto the ground.

[0035] Reference Figure 1 A water pump 30 is installed below the baffle 20. The pump's suction end is connected to the baffle 20, and its outlet end is connected to the drain pipe. The water pump 30 is used to extract the condensate inside the baffle 20, preventing condensate accumulation. The support column 10 is made of wood and coated with moisture-proof paint on its outer side. Wood has poor thermal conductivity, thus reducing the possibility of coolant affecting the temperature of the baffle 20 and causing condensate to form on its outer side. Simultaneously, the moisture-proof paint effectively isolates the wood from contact with condensate, preventing the wood from becoming damp and rotting.

[0036] Of course, the above are just typical examples of this utility model. In addition, this utility model may have many other specific implementation methods. All technical solutions formed by equivalent substitution or equivalent transformation fall within the scope of protection claimed by this utility model.

Claims

1. A wire cooling pool, comprising a cooling pool (1), wherein the two ends of the cooling pool (1) are a wire inlet end (11) and a wire outlet end (12), respectively; characterized in that, It also includes several first return wheels (2), several second return wheels (3), a first long rod (4), a second long rod (5), and a platform (6). Several first return wheels (2) are rotated and passed through the first long rod (4) at intervals. The two ends of the first long rod (4) are fixed inside the side walls of the cooling pool (1) and are set near the wire exit end (12). The platform (6) is installed on the top surface of the cooling pool (1) and is set near the wire inlet end (11). Several second return wheels (3) are rotated and passed through the second long rod (5) at intervals. The two ends of the second long rod (5) are fixed inside the side walls of the platform (6). The wire enters from the wire inlet end (11) and passes through the first return wheels (2) and the second return wheels (3) in sequence to the wire exit end (12).

2. The wire cooling tank according to claim 1, characterized in that, The cooling pool (1) is also equipped with several wire pressing rods (7). The length direction of the several wire pressing rods (7) is perpendicular to the length direction of the cooling pool (1) and is arranged between the first return reel (2) and the second return reel (3). The wire pressing rods (7) are arranged close to the bottom wall of the cooling pool (1). The wire passes through the second return reel (3) and then passes through several wire pressing rods (7) in sequence to the wire exit end (12).

3. The wire cooling tank according to claim 2, characterized in that, It also includes several movable frames (8), the bottom of which is provided with an installation groove (81), and several of the pressure rods (7) are installed one-to-one in the installation groove (81); the edges of the ports on both sides of the cooling pool (1) form flanges (13), and the flanges (13) on both sides are provided with several threaded holes (14) along the length of the cooling pool (1); the movable frames (8) are detachably fixed to the flanges (13) by the cooperation of bolts and threaded holes (14).

4. A wire cooling tank according to claim 3, characterized in that, The cooling pool (1) is also equipped with a baffle (9), which is located between the first long rod (4) and the wire pressing rod (7) closest to the first long rod (4); the baffle (9) is provided with several through holes (91) for the wire to pass through.

5. A wire cooling tank according to claim 1, characterized in that, The cooling pool (1) is installed directly above the baffle (20) by multiple support columns (10) and is located inside the baffle (20); the baffle (20) is used to prevent condensate on the outer wall of the cooling pool (1) from dripping onto the ground.

6. A wire cooling tank according to claim 5, characterized in that, A water pump (30) is installed below the baffle (20). The water pump (30) has its pumping end connected to the baffle (20) and its outlet end connected to the drain pipe.

7. A wire cooling tank according to claim 5, characterized in that, The support column (10) is made of wood; the outside of the support column (10) is coated with moisture-proof paint.