Cooling device for polyester blended yarn production

By using nylon extrusion cloth and scraping protrusions in the cooling device for polyester blended yarn production, the deformation problem of yarn during water squeezing was solved, achieving efficient and deformation-free water squeezing and improving production quality and efficiency.

CN223907042UActive Publication Date: 2026-02-13XINJIANG YUANFENG TEXTILE CO LTD
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Patent Information

Application Number
CN202520541864.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2026-02-13
Estimated Expiration
2035-03-24

AI Technical Summary

Technical Problem

Existing polyester blended yarn cooling devices are prone to yarn deformation when squeezing out accumulated water, which affects production quality.

Method used

The device uses a combination of nylon extrusion cloth and scraping protrusions, and controls the tightness of the extrusion cloth with a motor to wrap the polyester blended yarn and squeeze out the water, thus preventing deformation.

Benefits of technology

The quality and operability of the cooling device for polyester blended yarn production have been improved, ensuring that the yarn does not deform during the process of squeezing out accumulated water, thus increasing production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cooling device for polyester blended yarn production, which comprises an installation bottom plate, a device body is fixedly installed on the installation bottom plate, the device body comprises a water tank placed on the installation bottom plate, and the device body further comprises a shell fixed on the installation bottom plate. A first transmission assembly and a second transmission assembly which are used for transmission of polyester blended yarn are fixedly installed on the shell, a transition wheel and a water removal assembly are further fixedly installed on the shell, and the water removal assembly is located between the transition wheel and the first transmission assembly. Compared with the prior art, the polyester blended yarn is placed in the placing groove, then the extrusion cloth made of nylon is tensioned by the second motor, so that the extrusion cloth can completely wrap the polyester blended yarn, and finally accumulated water on the polyester blended yarn is extruded and scraped through the scraping convex piece. When the cooling device for polyester blended yarn production is used for squeezing accumulated water on polyester blended yarns, the original shapes of the polyester blended yarns cannot be damaged.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a yarn cooling device technical field, specifically is a cooling device for polyester blended yarn production. BACKGROUND

[0002] The yarn cooling device is a device for cooling polyester blended yarn in the production process of the polyester blended yarn, and mainly comprises a yarn cooling box, a water tank, a water pump, a traction roller, a water tank and a cooling compression mechanism.

[0003] The prior art discloses a cooling device for polyurethane blended yarn production, which comprises a yarn cooling box and a water tank, and an extrusion mechanism is arranged in the yarn cooling box.

[0004] In the above patent, an inwardly extruding extrusion roller is provided, and the polyester blended yarn is driven to extrude the accumulated water on the polyester blended yarn. UTILITY MODEL CONTENTS

[0005] The utility model aims at overcoming the shortcomings of the prior art, and provides a cooling device for polyester blended yarn production, which solves the above technical problems.

[0006] In order to achieve the above object, the utility model is through the following technical scheme to realize: a cooling device for polyester blended yarn production, including installation bottom plate, fixedly installed with device body on the installation bottom plate, the device body includes the water tank placed on the installation bottom plate, the water tank is used for cooling treatment to the transmission polyester blended yarn, the device body still includes the shell fixed on the installation bottom plate, the shell is fixedly installed with first drive assembly and second drive assembly for the transmission of polyester blended yarn, the shell still is fixedly installed with transition wheel and water removal assembly, the water removal assembly is located between transition wheel and first drive assembly, and the water removal assembly is used for transmission limit and water squeezing of the transmission polyester blended yarn. The water removal assembly is used for transmission limit and water squeezing of the transmission polyester blended yarn, and the polyester blended yarn does not deform in this process, greatly improves the quality of the cooling device for polyester blended yarn production for polyester blended yarn production, the water removal assembly includes the fixed plate fixed on the shell, the side close to the water tank of fixed plate is fixedly connected with the connecting plate, the side away from the fixed plate of connecting plate is fixedly installed with the placement plate, the middle position of placement plate is equipped with the arc-shaped placement groove, the placement groove is used for the placement of polyester blended yarn, the placement plate is equipped with the movable slot on one side of placement groove, the placement plate is installed with the extrusion assembly for extruding water, the extrusion assembly includes the second motor placed in one corner of placement plate, the output end of second motor is fixedly connected with the shaft body, the installation slot is equipped in the shaft body, the extrusion cloth is fixedly connected in the installation slot, the extrusion cloth is fixedly installed in the shaft body through fixed bolt, the tail end of extrusion cloth is fixedly connected with the limiting plate, the limiting plate is located below the placement plate, the placement plate is used for preventing the extrusion cloth from being pulled out of the placement plate, the extrusion cloth is located in the movable slot, and the second motor is used for tightening or loosening the extrusion cloth. The second motor is used for tightening or loosening the extrusion cloth, so that the user can control the tightness of the extrusion cloth, and the operability of the cooling device for polyester blended yarn production is greatly improved.

[0007] Further, the inner wall of the extrusion cloth is fixedly connected with a scraping protrusion, which is used for further scraping the water on the polyester blended yarn. The scraping protrusion is used for further scraping the water on the polyester blended yarn, and the efficiency of the cooling device for polyester blended yarn production for water squeezing of the polyester blended yarn is improved.

[0008] Further, the first transmission assembly comprises a first motor fixedly installed on the shell, an output end of the first motor is fixedly connected with a rotating shaft, one end of the rotating shaft away from the first motor is fixedly installed with a limiting disc, and a transmission wheel for supporting the polyester blended yarn is fixedly installed at the center position of the rotating shaft.

[0009] Further, the water tank is internally fixedly installed with an inner wheel for transmission support of the polyester blended yarn.

[0010] Further, the extrusion cloth is made of nylon material.

[0011] Advantages

[0012] Compared with the prior art, the polyester blended yarn production cooling device has the following advantages:

[0013] The polyester blended yarn is placed in the placing groove, then the nylon material extrusion cloth is pulled tight by the second motor, so that the extrusion cloth can completely wrap the polyester blended yarn, and finally the accumulated water on the polyester blended yarn is extruded and scraped off by the scraping convex piece, so that the original shape of the polyester blended yarn is not damaged when the polyester blended yarn production cooling device extrudes the accumulated water on the polyester blended yarn. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is a structure schematic view of the polyester blended yarn production cooling device of the utility model;

[0015] Figure 2 It is a three-dimensional structure schematic view of the device body of the utility model;

[0016] Figure 3 It is a three-dimensional structure schematic view of the first transmission assembly of the utility model;

[0017] Figure 4 It is a three-dimensional structure schematic view of the water removal assembly of the utility model;

[0018] Figure 5 It is a three-dimensional structure schematic view of the extrusion assembly of the utility model.

[0019] In the figure: 1, device body; 2, installation bottom plate; 11, first transmission assembly; 12, transition wheel; 13, second transmission assembly; 14, shell; 15, inner wheel; 16, water tank; 17, water removal assembly; 111, first motor; 112, rotating shaft; 113, transmission wheel; 114, limiting disc; 171, fixed plate; 172, extrusion assembly; 173, connecting plate; 174, placing groove; 175, placing plate; 176, movable groove; 1721, extrusion cloth; 1722, limiting plate; 1723, scraping convex piece; 1724, fixing bolt; 1725, installation groove; 1726, shaft body; 1727, second motor. DETAILED DESCRIPTION

[0020] The technical solutions of the present application will be described clearly and completely below in conjunction with the drawings. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0021] EMBODIMENT

[0022] The following will be described in conjunction with the drawings Figure 1 - the drawings Figure 5A polyester blended yarn production cooling device, comprising a mounting base plate 2, a device body 1 fixedly installed on the mounting base plate 2, the device body 1 comprising a water tank 16 placed on the mounting base plate 2, the water tank 16 being used for cooling the driven polyester blended yarn, the device body 1 further comprising a shell 14 fixedly installed on the mounting base plate 2, the shell 14 fixedly installed with a first transmission assembly 11 and a second transmission assembly 13 for driving the polyester blended yarn, the shell 14 further fixedly installed with a transition wheel 12 and a water removal assembly 17, the water removal assembly 17 being located between the transition wheel 12 and the first transmission assembly 11, the water removal assembly 17 being used for transmission limiting and water squeezing of the driven polyester blended yarn, the water removal assembly 17 comprising a fixed plate 171 fixedly installed on the shell 14, a connecting plate 173 fixedly connected to one side of the fixed plate 171 close to the water tank 16, a placement plate 175 fixedly installed on one side of the connecting plate 173 away from the fixed plate 171, an arc-shaped placement groove 174 being formed in the middle of the placement plate 175, the placement groove 174 being used for placement of the polyester blended yarn, an active groove 176 being formed in one side of the placement groove 174, the placement plate 175 being installed with a squeezing assembly 172 for squeezing water, the squeezing assembly 172 comprising a second motor 1727 placed at a corner of the placement plate 175, an axle body 1726 fixedly connected to the output end of the second motor 1727, an installation groove 1725 being formed in the axle body 1726, a squeezing cloth 1721 fixedly connected in the installation groove 1725, the squeezing cloth 1721 being fixedly installed in the axle body 1726 through a fixing bolt 1724, a limiting plate 1722 fixedly connected to the tail end of the squeezing cloth 1721, the limiting plate 1722 being located below the placement plate 175, the placement plate 175 being used for preventing the squeezing cloth 1721 from being pulled out of the placement plate 175, the squeezing cloth 1721 being located in the active groove 176, the second motor 1727 being used for tightening or loosening the squeezing cloth 1721, a scraping protrusion 1723 fixedly connected to the inner wall of the squeezing cloth 1721, the scraping protrusion 1723 being used for further scraping water on the polyester blended yarn, the first transmission assembly 11 comprising a first motor 111 fixedly installed on the shell 14, a rotating shaft 112 fixedly connected to the output end of the first motor 111, a limiting disc 114 fixedly installed on one end of the rotating shaft 112 away from the first motor 111, a transmission wheel 113 fixedly installed at the center position of the rotating shaft 112 for supporting the polyester blended yarn, an inner wheel 15 fixedly installed inside the water tank 16, the inner wheel 15 being used for transmission support of the polyester blended yarn, the squeezing cloth 1721 being made of nylon material.

[0023] The better ductility of the squeezing cloth 1721 made of nylon material can better wrap the polyester blended yarn after being tightened by the second motor 1727, greatly improving the quality of water squeezing on the polyester blended yarn by the polyester blended yarn production cooling device.

[0024] Wherein, since the scraping convex piece 1723 is fixedly installed on the inner wall of the extrusion cloth 1721, and the scraping convex piece 1723 is extruded together with the wrapping of the extrusion cloth 1721, when the polyester blended yarn passes through the scraping convex piece 1723, the scraping convex piece 1723 can further squeeze the accumulated water on the surface of the polyester blended yarn, thereby improving the quality of the accumulated water squeezing of the cooling device for polyester blended yarn production.

[0025] Wherein, the transmission position of the polyester blended yarn production is first through the upper side of the second transmission assembly 13, then enters the lower side of the inner wheel 15, then passes through the water removal assembly 17 from the upper side of the transition wheel 12, and finally passes through the upper side of the first transmission assembly 11, so that the polyester blended yarn is in the lower side of the inner wheel 15 during transmission, so that the polyester blended yarn can be effectively cooled by the water in the water tank 16.

[0026] The working principle of the utility model is as follows: the various mechanical structures inside the cooling device for polyester blended yarn production are not explicitly stated, and are all threaded fixed. In order to more intuitively observe the professional technical features, the bolts are appropriately hidden in the figure. The user needs to first fix the cooling device for polyester blended yarn production at the corresponding position according to the specific use condition through the installation base plate 2, and place the polyester blended yarn on the placing groove 174. At this time, the user starts the second motor 1727. Since one end of the extrusion cloth 1721 is fixed on the shaft body 1726 through the fixed bolt 1724, when the second motor 1727 is started, the rotating shaft body 1726 directly pulls the extrusion cloth 1721. At this time, the extrusion cloth 1721 is tightly wound in the movable groove 176, so that the extrusion cloth 1721 completely wraps the polyester blended yarn, and the scraping convex piece 1723 is extruded and tightly attached to the surface of the polyester blended yarn, thereby completing the installation of the polyester blended yarn. After installation, the user places the polyester blended yarn on the device body 1, and then starts the first motor 111 in the first transmission assembly 11 and the second transmission assembly 13. The first motor 111 rotates with the rotating shaft 112 and the transmission wheel 113, thereby driving the polyester blended yarn above forward. The polyester blended yarn passes through the lower side of the inner wheel 15 during transmission, and is cooled by the water in the water tank 16 when passing through the water tank 16. The cooled polyester blended yarn is squeezed by the extrusion cloth 1721 and the scraping convex piece 1723 during continuous transmission, and the polyester blended yarn does not deform during this process, thereby improving the practicality of the cooling device for polyester blended yarn production.

[0027] Any technical features in the above-described embodiments can be combined in any manner, and, for the sake of brevity, the foregoing description has not described all possible combinations of the technical features. However, it is contemplated that the scope of the disclosure encompasses all possible combinations of the technical features.

Claims

1. A cooling device for producing polyester blended yarns, characterized in that, The utility model provides a kind of device for the cooling of polyester blended yarn, comprising mounting base plate (2), the device body (1) is fixedly installed on the mounting base plate (2), the device body (1) includes water tank (16) placed on mounting base plate (2), the water tank (16) is used to cool the driven polyester blended yarn, the device body (1) further includes shell (14) fixed on mounting base plate (2), the shell (14) is fixedly installed with first transmission assembly (11) and second transmission assembly (13) for the transmission of polyester blended yarn, transition wheel (12) and water removal assembly (17) are further fixedly installed on the shell (14), the water removal assembly (17) is located between transition wheel (12) and first transmission assembly (11), water removal assembly (17) is used to limit and squeeze water accumulation for the transmission of driven polyester blended yarn, the water removal assembly (17) includes fixed plate (171) fixed on the shell (14), the side of fixed plate (171) close to water tank (16) is fixedly connected with connecting plate (173), the side of connecting plate (173) away from fixed plate (171) is fixedly installed with placing plate (175), the middle position of placing plate (175) is provided with arc-shaped placing groove (174), and the placing groove (174) is used for the placement of polyester blended yarn, the side of placing groove (174) is provided with movable groove (176) in placing plate (175), and the squeezing assembly (172) for squeezing water accumulation is installed on the placing plate (175), the squeezing assembly (172) includes second motor (1727) placed in one corner of placing plate (175), the output end of second motor (1727) is fixedly connected with shaft body (1726), the installation groove (1725) is provided in the shaft body (1726), the squeezing cloth (1721) is fixedly connected in the installation groove (1725), the squeezing cloth (1721) is fixedly installed in the shaft body (1726) by fixed bolt (1724), the tail end of squeezing cloth (1721) is fixedly connected with limiting plate (1722), the limiting plate (1722) is located below placing plate (175), the placing plate (175) is used to prevent squeezing cloth (1721) from being pulled out of placing plate (175), the squeezing cloth (1721) is located in movable groove (176), and the second motor (1727) is used to tighten or loosen squeezing cloth (1721).

2. The cooling device for polyester blended yarn production according to claim 1, characterized in that: The scraping convex piece (1723) is fixedly connected on the inner wall of the squeezing cloth (1721), and the scraping convex piece (1723) is used for further scraping water accumulation on the polyester blended yarn.

3. The cooling device for polyester blended yarn production according to claim 1, characterized in that: The first transmission assembly (11) includes first motor (111) fixedly installed on the shell (14), the output end of first motor (111) is fixedly connected with rotating shaft (112), the end of rotating shaft (112) away from first motor (111) is fixedly installed with limiting disc (114), and the rotating shaft (112) center position is fixedly installed with transmission wheel (113) for supporting polyester blended yarn.

4. The cooling device for polyester blended yarn production according to claim 1, characterized in that: The water tank (16) is internally fixedly installed with an inner wheel (15), which is used for transmission support of polyester blended yarn.

5. The cooling device for polyester blended yarn production according to claim 1, characterized in that: The extruded cloth (1721) is made of nylon.

Citation Information

Patent Citations

  • Cooling device for chinlon blended yarn production

    CN221988846U