Angle-adjusting flow guide mechanism for water-jet loom

By using an angle-adjustable flow guiding mechanism on a water jet loom, the problems of temperature and kinetic energy waste during water resource recycling have been solved, achieving effective utilization of kinetic energy and energy self-sufficiency, and improving the resource recycling rate.

CN117867725BActive Publication Date: 2025-12-26DONGTAI DONGQIANG TEXTILE CO LTD
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Patent Information

Application Number
CN202410016838.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-01-04
Publication Date
2025-12-26
Estimated Expiration
2044-01-04

AI Technical Summary

Technical Problem

In the existing water jet loom water resource recycling process, temperature and kinetic energy are wasted, resulting in low resource recycling rate.

Method used

Design an angle adjustment guide mechanism for a water jet loom, comprising a lateral return port, a lateral guide cover, and a multi-chamber structure separated by an internal isolation ring. Combined with a bottom-mounted drive motor and a top-mounted generator, the mechanism recovers the kinetic energy of wastewater and generates electricity through the rotation of centrifugal blades, and adjusts the flow rate and direction by adjusting the arc-shaped regulating plate.

Benefits of technology

It improved the recycling rate of water resources, realized the effective use of kinetic energy, enhanced the efficiency of energy self-supply, reduced energy loss, and optimized space utilization.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to water-jet loom energy recovery technical field, especially a kind of angle adjusting flow guide mechanism for water-jet loom, including water-jet loom body and the lateral backflow port being opened on the lateral surface of water-jet loom body, water-jet loom body lateral surface is fixedly equipped with lateral flow cover shell in lateral backflow port outside opening position, the inside of lateral flow cover shell is divided into external heat exchange chamber and internal energy storage chamber by internal isolation ring.The angle adjusting flow guide mechanism for water-jet loom of the present application can freely adjust the energy recovery mode of water-jet loom by adopting angle-adjusting arc-shaped adjusting plate, greatly improves the recovery operable mode;By recycling the temperature or kinetic energy of water-jet loom wastewater, the recovery mode can be operated as needed, and the operation is very simple and convenient.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of energy recovery of water-jet looms, and particularly relates to an angle-adjusting flow guide mechanism for a water-jet loom. BACKGROUND

[0002] In the production process of a textile machine, a lot of waste materials are generated, and the current waste material treatment method is to directly discard the waste materials, which is very wasteful. In the processing process of a water-jet loom, a large amount of water resources need to be used. In order to facilitate the recycling of water resources, the water resources need to be recycled and treated. In the current recycling process, the water resources are simply filtered and reused, which can cause the internal temperature and kinetic energy to be wasted, and the resource recycling utilization rate is low. SUMMARY

[0003] The technical problem to be solved by the present application is that in the current recycling process, the water resources are simply filtered and reused, which can cause the internal temperature and kinetic energy to be wasted, and the resource recycling utilization rate is low.

[0004] The technical scheme adopted by the present application to solve the technical problem is a kind of angle-adjusting flow guide mechanism for water-jet loom, including water-jet loom body and the lateral backflow port opened on the outer side of water-jet loom body, the outer side of water-jet loom body is fixedly equipped with lateral flow cover shell on the outside opening position of lateral backflow port, the inside of lateral flow cover shell is divided into external heat exchange chamber and internal energy storage chamber by internal isolation ring, the inside of internal energy storage chamber is provided with internal centrifugal blade, the bottom of lateral flow cover shell is installed with bottom-mounted drive motor linked with internal centrifugal blade through first fixed frame, the upper end of lateral flow cover shell is installed with top-mounted generator communicated with internal centrifugal blade through second fixed frame.

[0005] The arc-shaped adjusting plate is opened on the outer arc-shaped surface of the internal isolation ring, and the electric control adjusting support rod for controlling the arc-shaped adjusting plate is movably assembled on the inner side of the external heat exchange chamber.

[0006] The external drive shaft is fixedly arranged on the upper and lower end center positions of the internal centrifugal blade.

[0007] The upper end of the drive shaft of the bottom-mounted drive motor and the lower end of the bottom-mounted control shaft of the top-mounted generator are both axially sleeved with an electric control type split and combination sleeve.

[0008] The electric control type split and combination sleeve includes an electric control elevator fixed in the first fixed frame and the second fixed frame, and a lateral control shaft cylinder movably assembled on the telescopic rod outside the electric control elevator through a lateral support.

[0009] The upper and lower ends of the lateral control shaft cylinder are provided with internal linkage shaft holes, the inner side of the internal linkage shaft hole is provided with an inwardly protruding internal extrusion ring, the outer side of the lateral control shaft cylinder is provided with an annular assembly groove matched with the lateral support, and the upper and lower ends of the lateral support are installed with pressure control switches on the annular assembly groove assembly surface.

[0010] The upper surface of the lateral flow guide cover is fixedly provided with an upper liquid inlet pipe communicated with the inside of the internal energy storage chamber.

[0011] The outer side arc surface of the lateral flow guide cover is fixedly provided with a first liquid discharge pipe and a second liquid discharge pipe, and the first liquid discharge pipe is communicated with the inside of the external heat exchange chamber.

[0012] The internal heat exchange pipe for connecting the inside of the internal energy storage chamber and the second liquid discharge pipe is fixedly connected in the external heat exchange chamber.

[0013] The beneficial effects of the present application are:

[0014] (1) The angle adjusting flow guide mechanism for the water jet loom can freely adjust the energy recovery mode of the water jet loom by adopting the angle adjusting arc-shaped adjusting plate, greatly improving the recovery operation mode;

[0015] (2) By recycling the temperature or kinetic energy of the water jet loom wastewater, the recovery mode operation can be operated according to the needs, and the operation is very simple and convenient;

[0016] (3) The kinetic energy of the wastewater is used for power generation, thereby improving the self-supply efficiency of energy;

[0017] (4) By adopting the multi-chamber design, heat energy recycling can be carried out under different operation modes;

[0018] (5) The bottom-mounted driving motor linked with the internal centrifugal blade is installed at the bottom of the lateral flow guide cover, and the top-mounted generator communicated with the internal centrifugal blade is installed at the upper end of the lateral flow guide cover, so that the layout is reasonable and the space utilization rate is high;

[0019] (6) The bottom-mounted driving motor and the top-mounted generator control the clutching state of the internal centrifugal blade through the electric control type split sleeve, thereby reducing energy loss;

[0020] (7) The bottom-mounted driving motor can not only adjust the flow rate of the heat exchange mode according to the needs, but also can improve the cleaning effect during later maintenance. BRIEF DESCRIPTION OF DRAWINGS

[0021] The present application will be further described below in conjunction with the drawings and examples.

[0022] Figure 1 is a structural schematic diagram of the present application.

[0023] Figure 2 is the internal structure schematic diagram of the present application.

[0024] Figure 3 is the internal structure schematic diagram of the electric control type split sleeve in the present application. DETAILED DESCRIPTION

[0025] The present application will now be described in further detail with reference to the drawings. These drawings are simplified schematic diagrams which only show the basic structure of the present application in a schematic manner, and thus only show the components relevant to the present application.

[0026] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "connected", "connected" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0027] Figure 1 、 Figure 2 and Figure 3 The angle adjusting guide mechanism for water jet loom shown in the figure comprises a water jet loom body 1 and a lateral backflow port opened on the lateral surface of the water jet loom body 1, a lateral guide cover 2 is fixedly assembled at the lateral surface of the water jet loom body 1 outside the lateral backflow port opening position, the inside of the lateral guide cover 2 is divided into an external heat exchange chamber 4 and an internal energy storage chamber 5 by an internal isolation ring 3, an internal centrifugal blade 6 is arranged in the internal energy storage chamber 5, a bottom-mounted driving motor 8 linked with the internal centrifugal blade 6 is installed on the bottom of the lateral guide cover 2 through a first fixed frame 7, and a top-mounted generator 10 communicated with the internal centrifugal blade 6 is installed on the upper end of the lateral guide cover 2 through a second fixed frame 9.

[0028] The bottom-mounted driving motor 8 and the top-mounted generator 10 are both prior art, the bottom-mounted driving motor 8 is used to control the rotation of the internal centrifugal blade 6, and the top-mounted generator 10 is controlled to rotate and generate electricity through the high-speed rotation of the internal centrifugal blade 6.

[0029] In order to cooperate with the internal turnover adjustment, an arc-shaped adjusting plate 11 is opened on the arc-shaped surface outside the internal isolation ring 3, and an electric control adjusting strut 12 for controlling the arc-shaped adjusting plate 11 is movably assembled on the inner surface of the external heat exchange chamber 4.

[0030] The internal isolation ring 3 is provided with a lateral flow guide opening at the assembly end of the arc-shaped adjusting plate 11. The angle of the arc-shaped adjusting plate 11 is turned by the existing technology of electric control adjusting support rod 12 extension and retraction, so as to control the opening and closing of the lateral backflow opening. When the arc-shaped adjusting plate 11 is turned outward, the internal part of the external heat exchange chamber 4 can be cut off and isolated.

[0031] In order to cooperate with the external linkage, the upper and lower ends of the internal centrifugal blade 6 are axially fixed with the external driving shaft 13.

[0032] In order to cooperate with the linkage control, the upper end of the driving shaft of the bottom drive motor 8 and the lower end of the bottom control shaft of the top generator 10 are axially sleeved with the electric control type split sleeve 14.

[0033] In order to cooperate with the clutch, the electric control type split sleeve 14 includes an electric control elevator 141 fixed inside the first fixed frame 7 and the second fixed frame 9, and a lateral control shaft cylinder 143 movably assembled on the extension rod outside the electric control elevator 141 through a lateral support 142.

[0034] When the lateral control shaft cylinder 143 is lifted and adjusted, the slow transfer can be maintained to facilitate the split and combination of the lateral control shaft cylinder 143 with the external driving shaft 13 and the top generator 10. The electric control elevator 141 is a prior art.

[0035] In order to avoid over-lifting, the upper and lower ends of the lateral control shaft cylinder 143 are provided with internal linkage shaft holes 144, and the inner side of the internal linkage shaft hole 144 is provided with an inwardly protruding internal extrusion ring 145. The outer side of the lateral control shaft cylinder 143 is provided with an annular assembly groove matched with the lateral support 142. The upper and lower ends of the lateral support 142 are provided with pressure control switches 146 on the annular assembly groove assembly surface.

[0036] The pressure control switch 146 controls the closing of the electric control elevator 141 by monitoring the pressure.

[0037] In order to cooperate with the liquid supply, the upper surface of the lateral flow cover 2 is fixedly assembled with an upper liquid inlet pipe 15 connected with the inside of the internal energy storage chamber 5.

[0038] The upper liquid inlet pipe 15 is opened and closed by a water valve of the prior art.

[0039] In order to cooperate with the liquid discharge, the outer arc surface of the lateral flow cover 2 is fixed with a first liquid discharge pipe 17 and a second liquid discharge pipe 18. The first liquid discharge pipe 17 is connected with the inside of the external heat exchange chamber 4.

[0040] In order to improve the heat exchange efficiency, the internal part of the external heat exchange chamber 4 is fixedly connected with an internal heat exchange pipe 19 for connecting the internal part of the internal energy storage chamber 5 with the second liquid discharge pipe 18.

[0041] When the driving power generation state is adopted, the electric control lift 141 in the first fixed frame 7 controls the lateral support 142 and the lateral control shaft cylinder 143 to descend, separates the lateral control shaft cylinder 143 from the outer driving shaft 13 at the center position of the lower end of the internal centrifugal blade 6, and the electric control lift 141 in the second fixed frame 9 controls the lateral support 142 and the lateral control shaft cylinder 143 to descend, sleeves the lateral control shaft cylinder 143 with the outer driving shaft 13 at the center position of the upper end of the internal centrifugal blade 6, at this time, the bottom driving motor 8 is separated from the internal centrifugal blade 6, the top generator 10 is drivingly connected with the internal centrifugal blade 6, then the electric control adjusting strut 12 retracts the arc-shaped adjusting plate 11 to turn inside out in the outer heat exchange chamber 4, opens the lateral guide port on the arc-shaped surface outside the internal isolation ring 3, the waste water is guided into the lateral guide port through the lateral backflow port, drives the internal centrifugal blade 6 to rotate, the internal centrifugal blade 6 drives the top generator 10 in turn, then the waste water is discharged from the second discharge pipe 18 through the built-in heat exchange pipe 19; when the outer heat exchange is needed, the electric control lift 141 in the first fixed frame 7 controls the lateral support 142 and the lateral control shaft cylinder 143 to ascend, sleeves the lateral control shaft cylinder 143 with the outer driving shaft 13 at the center position of the upper end of the internal centrifugal blade 6, and the electric control lift 141 in the second fixed frame 9 controls the lateral support 142 and the lateral control shaft cylinder 143 to ascend, separates the lateral control shaft cylinder 143 from the outer driving shaft 13 at the center position of the lower end of the internal centrifugal blade 6, at this time, the bottom driving motor 8 is drivingly connected with the internal centrifugal blade 6, the top generator 10 is separated from the internal centrifugal blade 6, then the electric control adjusting strut 12 extends the arc-shaped adjusting plate 11 to close the lateral guide port on the arc-shaped surface outside the internal isolation ring 3, the heat exchange liquid is guided into through the upper liquid inlet pipe 15, then is discharged from the second discharge pipe 18 through the built-in heat exchange pipe 19 by rotating the internal centrifugal blade 6 driven by the bottom driving motor 8, and the waste water is discharged from the first discharge pipe 17 through the outer heat exchange chamber 4.

[0042] The above ideal embodiments according to the present application are used as the inspiration, through the above description, the relevant staff can make various changes and modifications without deviating from the technical idea of the present application. The technical scope of the present application is not limited to the content in the specification, and must be determined according to the scope of claims.

Claims

1. An angle-adjusting guide mechanism for water-jet looms, comprising a water-jet loom body (1) and a lateral return port formed on the lateral surface of the water-jet loom body (1), characterized in that: The water jet loom body (1) is fixedly arranged with a lateral guide cover (2) outside the lateral return port, the inside of the lateral guide cover (2) is divided into an external heat exchange chamber (4) and an internal energy storage chamber (5) by an internal isolation ring (3), the internal energy storage chamber (5) is provided with an internal centrifugal blade (6), the bottom of the lateral guide cover (2) is provided with a bottom-mounted driving motor (8) connected with the internal centrifugal blade (6) through a first fixed frame (7), and the upper end of the lateral guide cover (2) is provided with a top-mounted generator (10) connected with the internal centrifugal blade (6) through a second fixed frame (9). The driving shaft of the bottom-mounted driving motor (8) and the bottom control shaft of the top-mounted generator (10) are both provided with an electric control type opening and closing sleeve (14). The electric control type opening and closing sleeve (14) comprises an electric control elevator (141) fixed in the first fixed frame (7) and the second fixed frame (9) and a lateral control shaft sleeve (143) movably arranged on the telescopic rod outside the electric control elevator (141) through a lateral support (142). The upper and lower ends of the lateral control shaft sleeve (143) are both provided with an internal linkage shaft hole (144), the internal linkage shaft hole (144) is provided with an internal extrusion ring (145) protruding inward on the inner side, and the outer side of the lateral control shaft sleeve (143) is provided with an annular assembly groove matched with the lateral support (142), and the upper and lower ends of the lateral support (142) are both provided with a pressure control switch (146) on the annular assembly groove assembly surface.

2. The angle-adjustable flow guide mechanism for water-jet looms according to claim 1, characterized in that: The outer arc surface of the internal isolation ring (3) is provided with an arc-shaped adjusting plate (11), and the inner side of the external heat exchange chamber (4) is movably provided with an electric control adjusting support (12) for controlling the arc-shaped adjusting plate (11).

3. The angle-adjustable flow guide mechanism for water-jet looms according to claim 1, characterized in that: The upper and lower ends of the internal centrifugal blade (6) are both provided with an external driving shaft (13) fixed in the center.

4. The angle-adjustable flow guide mechanism for water-jet looms according to claim 1, characterized in that: The upper surface of the lateral guide cover (2) is fixedly provided with an upper-mounted liquid inlet pipe (15) connected with the internal energy storage chamber (5).

5. The angle-adjustable flow guide mechanism for water-jet looms according to claim 4, characterized in that: The outer arc surface of the lateral guide cover (2) is fixedly provided with a first liquid outlet pipe (17) and a second liquid outlet pipe (18), and the first liquid outlet pipe (17) is connected with the internal energy storage chamber (5).

6. The angle-adjustable flow guide mechanism for water-jet looms according to claim 5, characterized in that: The internal energy storage chamber (5) is fixedly connected with an internal heat exchange pipe (19) for connecting the internal energy storage chamber (5) with the second liquid outlet pipe (18).

Citation Information

Patent Citations

  • Evaporative heat recovery device for wastewater treatment

    CN108408807A

  • Energy-saving device for water-jet loom

    CN216338231U