Water-jet loom dewatering structure

By improving the dewatering structure of the water jet loom and using a reversible motor to drive the yarn to press back and forth, the problem of yarn wear caused by the alternating arrangement of the pressing roller and the heating box was solved, thus achieving safe yarn transport and efficient dewatering.

CN224034260UActive Publication Date: 2026-03-24QINGDAO WANMINGCHEN AUTOMATION ENG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

In the existing dewatering structure of water jet looms, the alternating arrangement of the pressure roller and the heating box causes the yarn to be pressed for a long time, increasing yarn wear.

Method used

It adopts a combination design of box, guide roller, feed port, forward and reverse motor, partition, heating box, heat conduction plate, rotating rod, transmission plate, slide, track plate, bracket and pressing roller. The rotating rod and transmission plate are driven by the forward and reverse motor to realize the reciprocating pressing and conveying of the yarn, avoiding wear caused by long-term pressing.

Benefits of technology

This ensures that the yarn is heated evenly during the heating process, reduces wear, improves conveying safety, and ensures airflow by making the filter easy to replace, thereby improving dehydration efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of water-jet looms, and discloses a water-jet loom dewatering structure which comprises a box body, guide rollers are fixedly installed on the left surface and the right surface of the box body respectively, first feeding ports are fixedly installed on the left surface and the right surface of the box body respectively, a forward and reverse rotation motor is fixedly installed on the front surface of the box body, and a partition plate is fixedly inserted into the inner surface of the box body. Through the cooperation of the box body, the guide roller, the first feeding port, the forward and reverse rotation motor, the partition plate, the second feeding port, the heating box, a heat conduction plate, a rotating rod, a transmission plate, a sliding groove, a track plate, a first support, a sliding rod and a first pressing roller, when weaving threads are conveyed and pass through the heating box, the weaving threads can be conveyed to pass through the heating box; the first pressing roller moves up and down in a reciprocating manner, so that the weaving thread passing through the surface of the heat conducting plate below is pressed in a reciprocating manner, and the conveying safety of the weaving thread is ensured while the pressing work of the weaving thread is ensured.
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Description

TECHNICAL FIELD

[0001] The utility model relates to water jet loom technical field, concretely is a water jet loom dehydration structure. BACKGROUND

[0002] Water jet loom is a shuttleless loom that uses water jet to pull weft yarn through the shed, and the frictional traction of water jet to weft yarn is greater than air jet, with less diffusion, suitable for long filament weft insertion of synthetic fiber, glass fiber and the like; at the same time, it can increase the conductivity of synthetic fiber, effectively overcoming static electricity in weaving; in addition, the energy consumption of weft yarn injection is less, and the noise is the lowest.

[0003] For water jet loom dehydration structure reference patent number: CN222528222U, a water jet loom dehydration structure and water jet loom, the heat conduction plate on the upper surface of the plurality of heating boxes is used to preliminarily heat and dry the cloth, the edge of the heat conduction plate is treated with a circular arc to avoid scratching the cloth, the cloth passes above the transducer, the transducer converts high-frequency electric energy into mechanical energy to generate ultrasonic waves, which are transmitted to the surface of the cloth to cause slight vibration of the cloth, the water molecules in the cloth are vibrated and collided under the action of ultrasonic waves, the volatilization of water molecules in the cloth is accelerated, and the dehydration effect of the cloth is improved, improving the work efficiency.

[0004] However, the dehydration structure used in the above water jet loom, when carrying out dehydration work, the compression roller and the heating box are staggered, which can compress the weft yarn for a long time, which can increase the wear and tear of the weft yarn, thereby causing the weft yarn to be damaged by friction.

[0005] Therefore, we propose a water jet loom dehydration structure. Utility model content

[0006] (I) Technical problems solved

[0007] In view of the shortcomings of the prior art, the utility model provides a water jet loom dehydration structure, which overcomes the shortcomings of the prior art and solves the problem that the dehydration structure used in the above water jet loom, when carrying out dehydration work, the compression roller and the heating box are staggered, which can compress the weft yarn for a long time, which can increase the wear and tear of the weft yarn, thereby causing the weft yarn to be damaged by friction.

[0008] (II) Technical scheme

[0009] In order to achieve the above object, the utility model provides the following technical scheme: a water jet loom dehydration structure, including the box, the left and right surfaces of the box are fixedly installed with the guide roller, the left and right surfaces of the box are fixedly installed with the first feeding port, the front surface of the box is fixedly installed with the forward and reverse motor, the inner surface of the box is fixedly inserted with the baffle, the right surface of the baffle is fixedly installed with the second feeding port, the lower inner wall of the box is fixedly installed with three heating boxes, the upper surface of three heating boxes is fixedly installed with the heat conduction plate, the front and rear inner walls of the box are rotatably provided with the rotating rod, the outer surface of the rotating rod is fixedly connected with the transmission plate, the front surface of the transmission plate is provided with the sliding slot on both sides, the upper inner wall of the box is fixedly installed with two track plates, the inner surface of two track plates is rotatably provided with the first support, the front surface of the first support is fixedly inserted with the sliding rod, the front and rear inner walls of the first support are rotatably provided with the first compression roller, the upper inner wall of the box is fixedly installed with a plurality of second supports, the front and rear inner walls of a plurality of second supports are rotatably provided with the second compression roller.

[0010] Preferably, the right inner wall of the box and the right surface of the baffle are fixedly connected with the air distribution plate, the upper surface of the air distribution plate is fixedly installed with a plurality of support plates, a plurality of air inlets are formed in the front surface of the box, an air outlet is formed in the upper surface of the box, a frame is slidably arranged on the right surface of the box, the inner surface of the frame is fixedly connected with a filter screen, and a mounting groove is formed in the right surface of the box

[0011] Preferably, the output end of the forward and reverse motor is fixedly connected with the front surface of the rotating rod, and the sliding rod is slidably arranged in the sliding slot on the corresponding side.

[0012] Preferably, the first compression roller is arranged in a staggered manner corresponding to the heating box, and the forward and reverse motor is reciprocatingly rotated by 30 degrees in the forward and reverse directions.

[0013] Preferably, the frame is slidably arranged in the mounting groove, and the filter screen is arranged in the air inlet in a corresponding manner.

[0014] (Three) beneficial effects

[0015] Compared with the prior art, the utility model provides a water jet loom dehydration structure, which has the following beneficial effects:

[0016] 1、The water jet loom dehydration structure, through the cooperation between the box, the guide roller, the first feeding port, the forward and reverse motor, the baffle, the second feeding port, the heating box, the heat conduction plate, the rotating rod, the transmission plate, the sliding slot, the track plate, the first support, the sliding rod and the first compression roller, the weaving thread can be conveyed through the heating box, the first compression roller is reciprocatingly moved up and down, the weaving thread on the surface of the heat conduction plate is reciprocatingly compressed, the safety of the weaving thread conveying is ensured while the compression work of the weaving thread is ensured.

[0017] 2. The water jet loom dewatering structure, through the cooperation between the second support, the second compression roller, the air equalizing plate, the support plate, the air inlet, the air outlet, the frame, the filter screen and the mounting groove, the filter screen of the air inlet can be conveniently replaced and disassembled, and the air flow of the air inlet is ensured. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is a whole structure schematic view of the utility model;

[0019] Figure 2 It is an explosion structure schematic view of the frame and related structure of the utility model;

[0020] Figure 3 It is a three-dimensional structure schematic view of the box and related structure inside the utility model;

[0021] Figure 4 It is a three-dimensional structure schematic view of the first compression roller and related structure of the utility model;

[0022] Figure 5 It is an enlarged structure schematic view of the position A of the utility model.

[0023] In the drawing: 1, box; 2, guide roller; 3, first feeding port; 4, forward and reverse motor; 5, partition; 6, second feeding port; 7, heating box; 8, heat conduction plate; 9, rotating rod; 10, transmission plate; 11, sliding slot; 12, track plate; 13, first support; 14, sliding rod; 15, first compression roller; 16, second support; 17, second compression roller; 18, air equalizing plate; 19, support plate; 20, air inlet; 21, air outlet; 22, frame; 23, filter screen; 24, mounting groove. DETAILED DESCRIPTION

[0024] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0025] Embodiment one

[0026] Please refer to Figures 1-5The utility model provides a water jet loom dehydration structure, including box 1, the left and right surfaces of box 1 are fixedly installed with guide roller 2, the left and right surfaces of box 1 are fixedly installed with first feeding port 3, the front surface of box 1 is fixedly installed with positive and negative rotation motor 4, the inner surface of box 1 is fixedly inserted with baffle 5, the right surface of baffle 5 is fixedly installed with second feeding port 6, the lower inner wall of box 1 is fixedly installed with three heating boxes 7, the upper surface of three heating boxes 7 is fixedly installed with heat conduction plate 8, the front and rear inner walls of box 1 are rotatably provided with rotating rod 9, the outer surface of rotating rod 9 is fixedly connected with transmission plate 10, the front surface of transmission plate 10 is provided with the sliding slot 11 on both sides, the upper inner wall of box 1 is fixedly installed with two track plates 12, the inner surface of two track plates 12 is slidably provided with first support 13, the front surface of first support 13 is fixedly inserted with slide rod 14, the front and rear inner walls of first support 13 are rotatably provided with first compression roller 15, the upper inner wall of box 1 is fixedly installed with a plurality of second supports 16, the front and rear inner walls of a plurality of second supports 16 are rotatably provided with second compression roller 17.

[0027] Specifically, through the cooperation between the box 1, the guide roller 2, the first feeding port 3, the positive and negative rotation motor 4, the baffle 5, the second feeding port 6, the heating box 7, the heat conduction plate 8, the rotating rod 9, the transmission plate 10, the sliding slot 11, the track plate 12, the first support 13, the slide rod 14 and the first compression roller 15, the weaving thread can be conveyed through the heating box 7, and the first compression roller 15 is moved up and down reciprocally to reciprocally compress the weaving thread passing through the surface of the heat conduction plate 8, thereby ensuring the compression of the weaving thread and the safety of the conveying of the weaving thread.

[0028] In this embodiment, the output end of the positive and negative rotation motor 4 is fixedly connected with the front surface of the rotating rod 9, and the slide rod 14 is slidably arranged in the corresponding sliding slot 11.

[0029] Specifically, the positive and negative rotation motor 4 is a conventional structure, and the control circuit can be realized by simple programming by those skilled in the art, which is common knowledge in the art. The control mode and circuit connection are not described in detail because they are only used without modification. The positive and negative rotation motor 4 can drive the rotating rod 9 to rotate bidirectionally.

[0030] In this embodiment, the first compression roller 15 is arranged in a staggered manner corresponding to the heating box 7, and the positive and negative rotation motor 4 reciprocally rotates 30 degrees in the positive and negative directions.

[0031] Specifically, the first compression roller 15 can compress the weaving thread when it passes through the heating box 7.

[0032] Working principle: when using the water jet loom, the weaving line enters the box 1 through the first feeding port 3 matched with the guide roller 2, passes through the partition plate 5 and the second feeding port 6, and then passes through the right side, when the weaving line passes through the surface of the heating box 7, the heat conducted by the heat conduction plate 8 is used to dry the weaving line, at the same time, the forward and reverse motor 4 drives the rotating rod 9 to rotate bidirectionally, when the rotating rod 9 drives the transmission plate 10 to rotate forward, the transmission plate 10 drives the first support 13 and the first compression roller 15 matched with the track plate 12 on the left side to move horizontally upward through the left side sliding groove 11 matched with the sliding rod 14, at the same time, the sliding groove 11 on the right side of the transmission plate 10 drives the sliding rod 14 on the right side to slide the first support 13 and the first compression roller 15 matched with the track plate 12 horizontally downward by a specified distance, then when the rotating rod 9 and the transmission plate 10 are reversed by the forward and reverse motor 4, the left first support 13 and the first compression roller 15 move downward, and the right first support 13 and the first compression roller 15 move upward, when the first compression roller 15 moves downward, it moves away from the staggered heating box 7 to compress the conveyed weaving line and ensure that the weaving line is heated stably.

[0033] Example two

[0034] Please refer to Figures 1-3 On the basis of example one, the utility model provides a technical scheme:

[0035] In the embodiment: the right inner wall of the box 1 and the right surface of the partition plate 5 are fixedly connected with the air equalizing plate 18, the upper surface of the air equalizing plate 18 is fixedly installed with a plurality of supporting plates 19, a plurality of air inlets 20 are formed in the front surface of the box 1, an air outlet 21 is formed in the upper surface of the box 1, a frame 22 is slidably arranged on the right surface of the box 1, the inner surface of the frame 22 is fixedly connected with a filter screen 23, and a mounting groove 24 is formed in the right surface of the box 1.

[0036] Specifically, the filter screen 23 of the air inlet 20 can be conveniently replaced and disassembled through the cooperation between the second support 16, the second compression roller 17, the air equalizing plate 18, the supporting plate 19, the air inlet 20, the air outlet 21, the frame 22, the filter screen 23 and the mounting groove 24, so that the air flow of the air inlet 20 is ensured.

[0037] In the embodiment: the frame 22 and the mounting groove 24 are slidably arranged correspondingly, and the filter screen 23 and the air inlet 20 are arranged correspondingly.

[0038] Specifically, the frame 22 can be conveniently installed and disassembled through left and right sliding of the mounting groove 24.

[0039] Working principle: when the box 1 carries out the conveying work to the weaving line, the weaving line passes through the second feeding port 6 and then passes through the right side inside of the box 1, then the weaving line cooperates with the second pressing roller 17 on the plurality of second supports 16 and the plurality of supporting plates 19 to carry out the stable conveying, the wind force enters through the air inlet 20, passes through the filter screen 23 on the installed frame 22 to filter the impurities in the wind, then passes through the air uniform plate 18 to carry out the uniform upward flow, after the weaving line is dried by the wind, the frame 22 can be slid to the right through the installation slot 24 to be disassembled and taken out, so that the filter screen 23 can be conveniently cleaned and disassembled.

[0040] Although the embodiments of the present application have been shown and described, it is to be understood that for the purpose of the present application, the changes, modifications, equivalents, substitutions and variations of these embodiments can be made by those skilled in the art without departing from the spirit and principles of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A water-jet loom dewatering structure comprising a box (1), characterized in that: The left and right surfaces of the box (1) are fixedly installed with guide rollers (2), the left and right surfaces of the box (1) are fixedly installed with first feeding ports (3), the front surface of the box (1) is fixedly installed with a forward and reverse motor (4), the inner surface of the box (1) is fixedly inserted with a partition plate (5), the right surface of the partition plate (5) is fixedly installed with a second feeding port (6), the lower inner wall of the box (1) is fixedly installed with three heating boxes (7), the upper surfaces of the three heating boxes (7) are fixedly installed with heat-conducting plates (8), the front and rear inner walls of the box (1) are rotatably provided with rotating rods (9), the outer surfaces of the rotating rods (9) are fixedly connected with transmission plates (10), the front surfaces of the transmission plates (10) are both provided with sliding grooves (11), the upper inner wall of the box (1) is fixedly installed with two track plates (12), the inner surfaces of the two track plates (12) are slidably provided with first supports (13), the front surfaces of the first supports (13) are fixedly inserted with sliding rods (14), the front and rear inner walls of the first supports (13) are rotatably provided with first pressing rollers (15), the upper inner wall of the box (1) is fixedly installed with a plurality of second supports (16), the front and rear inner walls of the plurality of second supports (16) are rotatably provided with second pressing rollers (17).

2. A water-jet loom dewatering structure according to claim 1, characterized in that: The right inner wall of the box (1) and the right surface of the partition plate (5) are fixedly connected with an air equalizing plate (18), the upper surface of the air equalizing plate (18) is fixedly installed with a plurality of supporting plates (19), the front surface of the box (1) is provided with a plurality of air inlets (20), the upper surface of the box (1) is provided with an air outlet (21), the right surface of the box (1) is slidably provided with a frame (22), the inner surface of the frame (22) is fixedly connected with a filter screen (23), and the right surface of the box (1) is provided with a mounting groove (24).

3. A water-jet loom dewatering structure according to claim 1, characterized in that: The output end of the forward and reverse motor (4) is fixedly connected with the front surface of the rotating rod (9), and the sliding rod (14) is slidably provided with the sliding groove (11) on the corresponding side.

4. A water-jet loom dewatering structure according to claim 1, characterized in that: The first pressing roller (15) is arranged in an alternating manner with the heating box (7), and the forward and reverse motor (4) is reciprocatingly rotated by 30 degrees in the forward and reverse directions.

5. A water-jet loom dewatering structure according to claim 2, characterized in that: The frame (22) is slidably provided with the mounting groove (24), and the filter screen (23) is provided in a corresponding manner with the air inlet (20).

Citation Information

Patent Citations

  • Water-jet loom dewatering structure and water-jet loom

    CN222528222U