Moistening device for beaming

By installing a track and a movable humidification device at the top of the wire guide frame, the problem of insufficient humidification in the wire guide frame section of the warping machine was solved, achieving uniform humidification of the wire guide frame, reducing static electricity and breakage, and improving warping quality.

CN224299510UActive Publication Date: 2026-05-29HANGZHOU CHENDA WEAVING CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HANGZHOU CHENDA WEAVING CO LTD
Filing Date
2025-05-22
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

The existing warping machines have insufficient humidification in the guide rail section, making it difficult to completely solve the problems of yarn static electricity and breakage.

Method used

A track is set at the top of the conductor frame, and a movable humidification device is installed on the track, including a moving device, a gate-shaped frame, a transfer pipe and an ultrasonic humidifier. The conductor frame is humidified through atomizing nozzles, and a humidity sensor and a recirculation pipe are used to adapt to the environmental humidity requirements.

Benefits of technology

It effectively reduces yarn static electricity and breakage, avoids uneven humidification and pressure on the guide frame from the equipment, and improves the accuracy of yarn humidity control and warping quality.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224299510U_ABST
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Abstract

The utility model provides a kind of humidifying device for warping, track is set in the top of guide wire frame, mobile humidifying device is set on track, mobile humidifying device is door type, repeatedly humidifying guide wire frame along track;Wherein mobile humidifying device includes: moving device, door type frame, delivery pipeline;Door type frame is set in the top of moving device, moving device is set on track, ultrasonic humidifier is set on moving device, delivery pipeline is set along door type frame, and is communicated with ultrasonic humidifier, atomizing nozzle is set on the pipeline wall of delivery pipeline;Atomizing nozzle points to guide wire frame.
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Description

Technical Field

[0001] This utility model relates to the field of yarn warping, and in particular to a humidifying device for warping. Background Technology

[0002] Warping machines are mainly divided into two categories: batch warping machines and sliver warping machines. There are many types of sliver warping machines, but their working principles are largely the same. Currently, commonly used sliver warping machines generally include bobbins, yarn collecting plates, and tension rollers. Yarn or filament is drawn from bobbins on the guide frame, then passes through the yarn collecting plate and warp reed assembly to form a yarn layer, which is then evenly wound onto the take-up device.

[0003] However, synthetic fibers are prone to static electricity, causing adjacent yarns to repel each other during warping, which can easily lead to poor yarn winding. To reduce static electricity and increase yarn toughness to reduce breakage, a humidifier is usually added between the yarn collecting plate and the winding device to mitigate these problems. However, even with this humidifier, or warping machines with this humidification structure, static electricity and breakage still occur. Therefore, humidification needs to be located in the lead wire frame to maintain a constant and suitable humidity level for the yarn from the moment it is led out. Summary of the Invention

[0004] This invention addresses the limitations of existing warping machines, which often only humidify the yarn before the take-up section to prevent electrostatic drift and dry breakage. A humidification device for warping, mounted on the wire guide frame, is designed to completely solve the problem.

[0005] This utility model provides a humidification device for warping, which has a track at the top of the conductor frame and a movable humidification device on the track. The movable humidification device is gate-shaped and repeatedly humidifies the conductor frame along the track.

[0006] The movable humidification device includes: a moving device, a gate-shaped frame, and a transfer pipe;

[0007] A portal frame is set on top of the mobile device, which is mounted on a track. An ultrasonic humidifier is mounted on the mobile device. A transmission pipe is set along the portal frame and connected to the ultrasonic humidifier. An atomizing nozzle is installed on the pipe wall of the transmission pipe, pointing towards the guide frame.

[0008] Preferably, a pair of recirculation pipes are also provided along the portal frame; the recirculation pipes are mirror-symmetrical about the perpendicular bisector of the portal frame;

[0009] A fan is installed inside the recirculation pipeline, and filters are installed at both ends of the pipeline;

[0010] The recirculation pipe has its inlet located at the bottom and its outlet located at the top, with the outlet direction vertically downwards; the pipe wall at the outlet abuts against the side wall of the mobile device.

[0011] As a preferred option, the bottom edge of the portal frame is also equipped with casters.

[0012] Preferably, the moving device includes: a device box, a geared stepper motor, and transmission gears; the track includes at least one toothed rail, the transmission gears mesh with the toothed rail, and the geared stepper motor drives the transmission gears; the geared stepper motor is disposed inside the device box.

[0013] The track includes at least two slide rails, and a slider is provided at the bottom of the device box, which cooperates with the slide rails.

[0014] Preferably, a receiving channel is provided along the outer side of one of the slide rails for installing tracked pipelines;

[0015] The device box contains a humidifier water tank.

[0016] Preferably, humidity sensors are installed at equal intervals on the ground surface where the conductor frame is located; a virtual area cutting vertical plane is set at the midpoint between the sensors.

[0017] Preferably, the height of the atomizing nozzles in the vertical section of the transmission pipeline is determined based on the guide frame;

[0018] Atomizing nozzles are installed at the midpoints between the layers of the conductor frame. The total number of atomizing nozzles in the vertical section is one less than the number of conductor frame layers.

[0019] The advantages of this invention are: it can effectively humidify the conductor rack area by means of environmental humidification, and it adapts to the environment in which the conductor rack is located, avoiding the diffusion area problem that may occur during circulation of ordinary humidifiers and the pipe blockage problem caused by textile threads in the environment. The simple structure avoids the use of old-fashioned workshops. Attached Figure Description

[0020] Figure 1 The outline drawing of this utility model after assembly and use;

[0021] Figure 2 Front view of this utility model;

[0022] In the diagram: a) conductor frame, 1) crossbeam, 2) track, 3) recirculation pipe, 4) transfer pipe, 5) fan, 6) geared rail, 7) portal frame. Detailed Implementation

[0023] The technical solution of this utility model will be further described in detail below through specific embodiments and in conjunction with the accompanying drawings. Example

[0024] like Figure 1 and Figure 2 As shown, the humidification device for warping has a track at the top of the conductor frame a, and a movable humidification device is installed on the track. The movable humidification device is gate-shaped and repeatedly humidifies the conductor frame along the track.

[0025] The movable humidification device includes: a moving device, a gate-shaped frame 7, and a transmission pipe 4;

[0026] A portal frame is set on top of the mobile device, which is mounted on a track. An ultrasonic humidifier is mounted on the mobile device. A transmission pipe is set along the portal frame and connected to the ultrasonic humidifier. An atomizing nozzle is installed on the pipe wall of the transmission pipe, pointing towards the guide frame.

[0027] Since most conductor rails are not typically fixed to each other, a crossbeam 1 is installed between the conductor rails as the base of the rail for stability. This is then supported by brackets 2. The portal frame effectively reduces the material requirements for the transmission conduits, allowing the use of flexible hoses instead of the necessary high-strength plastics. Simultaneously, the combination of the portal frame and casters can distribute some of the stress, thereby reducing the pressure on the conductor rails from the overall external installation.

[0028] A pair of recirculation pipes 3 are also provided along the portal frame; the recirculation pipes are mirror-symmetrical about the perpendicular bisector of the portal frame;

[0029] A fan 5 is installed inside the recirculation pipeline, and filters are installed at both ends of the pipeline;

[0030] The recirculation pipe has its inlet located at the bottom and its outlet located at the top, with the outlet direction vertically downwards; the pipe wall at the outlet abuts against the side wall of the mobile device.

[0031] The bottom edge of the portal frame is also equipped with casters.

[0032] The moving device includes: a device box, a geared stepper motor, and transmission gears; the track includes a toothed rail 6, the transmission gears mesh with the toothed rail, and the geared stepper motor drives the transmission gears; the geared stepper motor is installed inside the device box.

[0033] The track consists of two slide rails, and a slider is provided at the bottom of the device box, which cooperates with the slide rails.

[0034] A receiving channel is provided along the outer side of one of the slide rails for installing tracked pipelines;

[0035] The device box contains a humidifier water tank.

[0036] Humidity sensors are installed at equal intervals on the ground surface where the conductor frame is located; a virtual area cutting plane is set at the midpoint between the sensors. Using the midpoint as the area cutting plane ensures the effectiveness of the humidity sensor at the midpoint of the area, allowing the humidification device to humidify according to the area, thereby avoiding the problem of excessive humidity in local areas.

[0037] The height of the atomizing nozzles in the vertical section of the transmission pipeline is determined based on the guide frame;

[0038] Atomizing nozzles are installed at the midpoints between the layers of the conductor frame. The total number of atomizing nozzles in the vertical section is one less than the number of conductor frame layers.

[0039] The above description of the disclosed embodiments enables those skilled in the art to make or use the invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the invention. Therefore, the invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A humidifying device for warping, characterized in that, A track is installed at the top of the conductor frame, and a movable humidification device is installed on the track. The movable humidification device is gate-shaped and repeatedly humidifies the conductor frame along the track. The movable humidification device includes: a moving device, a gate-shaped frame, and a transfer pipe; A portal frame is set on top of the mobile device, which is mounted on a track. An ultrasonic humidifier is mounted on the mobile device. A transmission pipe is set along the portal frame and connected to the ultrasonic humidifier. An atomizing nozzle is installed on the pipe wall of the transmission pipe, pointing towards the guide frame.

2. The humidifying device for warping according to claim 1, characterized in that, A pair of recirculation pipes are also provided along the portal frame; the recirculation pipes are mirror-symmetrical about the perpendicular bisector of the portal frame; A fan is installed inside the recirculation pipeline, and filters are installed at both ends of the pipeline; The recirculation pipe has its inlet located at the bottom and its outlet located at the top, with the outlet direction vertically downwards; the pipe wall at the outlet abuts against the side wall of the mobile device.

3. The humidifying device for warping according to claim 1 or 2, characterized in that, The bottom edge of the portal frame is also equipped with casters.

4. The humidifying device for warping according to claim 1, characterized in that, The moving device includes: a device box, a geared stepper motor, and transmission gears; the track includes at least one toothed rail, the transmission gears mesh with the toothed rail, and the geared stepper motor drives the transmission gears; the geared stepper motor is housed inside the device box. The track includes at least two slide rails, and a slider is provided at the bottom of the device box, which cooperates with the slide rails.

5. The humidifying device for warping according to claim 4, characterized in that, A receiving channel is provided along the outer side of one of the slide rails for installing tracked pipelines; The device box contains a humidifier water tank.

6. The humidifying device for warping according to claim 4, characterized in that, Humidity sensors are installed at equal intervals on the ground where the conductor frame is located; a virtual area cutting vertical plane is set at the midpoint between the sensors.

7. The humidifying device for warping according to claim 1, characterized in that, The height of the atomizing nozzles in the vertical section of the transmission pipeline is determined based on the guide frame; Atomizing nozzles are installed at the midpoints between the layers of the conductor frame. The total number of atomizing nozzles in the vertical section is one less than the number of conductor frame layers.