Spraying dust suppression device for textile fabric processing

By designing a spray dust suppression device containing multiple mechanisms, the problems of uneven dust suppression effects of traditional devices, easy blockage of nozzles, and difficult maintenance are solved, and more uniform dust suppression effects and more convenient maintenance are achieved.

CN120084020AActive Publication Date: 2025-06-03JIANGSU TAIDA TEXTILE
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Patent Information

Application Number
CN202510569898.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-06
Publication Date
2025-06-03
Estimated Expiration
2045-05-06

AI Technical Summary

Technical Problem

Traditional textile fabric processing spray dust suppression devices have problems such as uneven dust suppression effects, easy blockage of spray heads, and difficulty in maintenance.

Method used

A spray dust suppression device including a spray mechanism, a rotating mechanism, a lifting mechanism, a filter mechanism, a sealing mechanism and a closure mechanism are designed. The device realizes spray dust suppression in multiple locations of the workshop through the installation of the spray mechanism. The rotating mechanism makes the spray more uniform, the lifting mechanism realizes the distribution of spray at multiple heights, the filtering mechanism prevents blockage, and the sealing mechanism and the closing mechanism ensure sealing and convenient maintenance.

Benefits of technology

A uniform spray dust suppression is achieved at multiple locations and heights of the workshop, which improves dust suppression effect, reduces nozzle blockage and maintenance difficulties, and reduces operating costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of spraying dust suppression, in particular to a textile fabric processing spraying dust suppression device which comprises a mounting seat, a spraying mechanism is mounted on the mounting seat, a rotating mechanism is mounted on the spraying mechanism, a lifting mechanism is mounted on the rotating mechanism, and a filtering mechanism is mounted on the spraying mechanism. A sealing mechanism is mounted on the spraying mechanism, and a closing mechanism is mounted on the spraying mechanism; spraying dust suppression can be conducted on multiple positions of a workshop through the spraying mechanism, slow rotation of the bottom of the spraying mechanism is achieved by driving the rotating mechanism to be installed, and under cooperation of the rotating mechanism, the spraying mechanism can move up and down in a reciprocating mode, so that the dust suppression effect is better; through installation of the sealing mechanism and the closing mechanism, the sealing mechanism and the closing mechanism can be controlled during maintenance of the filtering mechanism, bottom blockage control of the spraying mechanism is achieved, and water is prevented from overflowing to affect maintenance.
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Description

Technical Field

[0001] The present invention relates to the technical field of spray dust suppression, and specifically relates to a spray dust suppression device for textile fabric processing. Background Art

[0002] During the processing of textile fabrics, a large amount of dust particles will float in the workshop environment, seriously affecting the working environment of the workshop. Workers working in this environment for a long time will be harmful to their physical health. When the dust content in the workshop air reaches a certain level, it is easy to cause fire and explosion accidents.

[0003] The common dust suppression method in textile workshops is spray dust suppression. However, most of the traditional dust suppression spray devices are fixed at a certain position on the workshop roof. When spraying, they can only reduce dust in a single place. When there is wind in the workshop, the spray is blown in one direction, resulting in poor dust suppression effect. And they always spray at a specified height. The heights at which different-sized dust particles are raised are also different. The light dust particles float high, and the dust suppression effect is uneven. At the same time, there is a lack of a good filtering and protection component during spraying, resulting in easy blockage of the nozzles, which is very inconvenient to maintain, increasing the cost. When disassembling and assembling the delivery pipe of the nozzle for maintenance, the water remaining in the delivery pipe is easy to flow back, affecting the maintenance operation. Summary of the Invention

[0004] In view of the problems in the prior art, the present invention provides a spray dust suppression device for textile fabric processing.

[0005] The technical solution adopted by the present invention to solve its technical problems is: a spray dust suppression device for textile fabric processing, including a mounting base, on which a spray mechanism is installed, a rotating mechanism is installed on the spray mechanism, a lifting mechanism is installed on the rotating mechanism, a filtering mechanism is installed on the spray mechanism, a sealing mechanism is installed on the spray mechanism, and a closing mechanism is installed on the spray mechanism.

[0006] Specifically, the spray mechanism includes a housing, the housing is installed at the bottom of the mounting base, a water inlet pipe is installed at the edge of the housing, a fixed pipe is installed at the center of the bottom of the housing, a connector is installed at the bottom of the fixed pipe, a plurality of delivery pipes are installed on the outer side of the connector in an annular and equally spaced distribution, a plurality of nozzles are installed on the outer side of the delivery pipes, a guide groove is provided on the outer side of the connector, and one end of the delivery pipe extends into the guide groove.

[0007] Specifically, the rotation mechanism includes a turbine. A turbine is rotatably connected to the center inside the housing, and a driving rod is rotatably connected to the center at the bottom of the housing. The top of the driving rod is connected to the center at the bottom of the turbine. The bottom of the driving rod extends into the fixed tube. A rotating rod is installed at the bottom of the driving rod, and the bottom of the rotating rod extends into the connector. The connector is rotatably connected to the fixed tube. A connecting plate is fixedly connected to the inner side of the top of the connector, and the bottom of the rotating rod is fixedly connected to the center at the top of the connecting plate.

[0008] Specifically, the water inlet pipe is located at the tangential position of the edge of the housing. The bottom of the housing is a conical structure, and the connecting plate is a "Y"-shaped structure.

[0009] Specifically, the lifting mechanism includes a cam groove. A cam groove is provided at the edge of the top of the connector. The inner side of the top of the connector is slidably connected to the bottom of the fixed tube. A guide wheel is rotatably connected to the outer side wall of the bottom of the fixed tube, and the outer side of the guide wheel abuts against the top edge of the connector. The bottom of the driving rod is a hexagonal prism structure. The bottom of the driving rod extends into the inner side of the top of the rotating rod through a connecting groove, and the rotating rod is slidably connected to the inside of the connecting groove through a return spring.

[0010] Specifically, a sealing sleeve is installed on the inner side of the top of the connector, and the outer side of the bottom of the fixed tube is slidably connected to the inner side wall of the sealing sleeve.

[0011] Specifically, the connector is a hollow "convex"-shaped structure, and the inner diameter of the top of the connector is smaller than the inner diameter of the bottom.

[0012] Specifically, the filtering mechanism includes a connecting seat. The inner side of the bottom of the connector is threadedly connected to the connecting seat. The connecting seat is a "convex"-shaped cylindrical structure. A filter screen is installed on the outer side wall of the top of the connecting seat, and the filter screen is located at one end of the guide groove.

[0013] Specifically, a sunk groove is provided on the inner side wall of the bottom of the connector. The diameter of the sunk groove is larger than the inner diameter of the bottom of the connector. The outer side of the bottom of the connecting seat is threadedly connected to the inside of the sunk groove. A sealing ring is installed on the outer side of the bottom of the connecting seat, and the sealing ring abuts against the inside of the sunk groove.

[0014] Specifically, a push block is installed at the center line of the bottom of the connecting seat. The push block is a trapezoidal structure, and a groove is provided at the center of the push block. The groove is an elliptical structure.

[0015] Specifically, the sealing mechanism includes a movable groove provided at the bottom of the rotating rod. A slider is arranged inside the movable groove. The slider is slidably connected to the inside of the movable groove through a compression spring. The outer side of the bottom of the rotating rod is slidably connected with a cover plate. The cover plate is in a "Y" shape and is staggered on the top of the connecting plate. Both ends of the slider extend outside the movable groove and are connected to the cover plate. The center of the bottom of the rotating rod is slidably connected with a top rod. The top of the top rod is connected to the top of the slider, and the bottom of the top rod abuts against the inner side of the bottom of the connecting seat.

[0016] Specifically, a sealing gasket is installed at the bottom of the cover plate. The sealing gasket is in a "Y" shape. The bottom of the top rod is rotatably connected with a rotating block, and the bottom of the rotating block abuts against the inner side of the bottom of the cover plate.

[0017] Specifically, the closing mechanism includes a chute. A plurality of annular and equidistantly distributed chutes are provided inside the side wall of the bottom of the connecting head. A baffle is arranged inside the chute. A connecting spring is connected between the top of the baffle and the inner side of the top of the chute. The baffle is slidably connected to the inside of the chute through the connecting spring. The bottom of the baffle extends into the sunken groove and abuts against the connecting seat. A through hole is provided at the midline of the bottom of the baffle, and the through hole communicates with the guide groove.

[0018] Specifically, the baffle is in an arc shape, the bottom end of the baffle is in a triangular shape, and the bottom edges of the baffle are all in arc shapes.

[0019] The beneficial effects of the present invention are as follows: (1) For the textile fabric processing spray dust suppression device of the present invention, through the installation of the spray mechanism, it is beneficial to spray dust suppression at multiple positions in the workshop. By driving the rotating mechanism to work with the water flow entering the spray mechanism, the bottom of the spray mechanism rotates slowly, making the spraying more uniform.

[0020] (2) For the textile fabric processing spray dust suppression device of the present invention, through the installation of the rotating mechanism, driven by the rotating mechanism, the spray mechanism can reciprocate up and down, which is beneficial to spraying at multiple heights in the workshop and making the dust suppression effect better.

[0021] (3) For the textile fabric processing spray dust suppression device of the present invention, through the installation of the filtering mechanism, it is beneficial to filter before the spray mechanism sprays, preventing blockage from affecting the spraying effect and being cumbersome to maintain.

[0022] (4) For the textile fabric processing spray dust suppression device of the present invention, through the installation of the sealing mechanism, it is beneficial to block the bottom of the spray mechanism, so that water will not flow out after the filtering mechanism is disassembled. After installing the filtering mechanism, the filtering mechanism abuts against the sealing mechanism to realize water flow conduction.

[0023] (5)The spray dust suppression device for textile fabric processing according to the present invention, through the installation of the closing mechanism, is beneficial to blocking the outside of the bottom of the spray mechanism, so as to prevent the residual water inside the pipeline from flowing back after the filter mechanism is disassembled, and the spray is realized by inserting the filter mechanism. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] The present invention will be further described below in conjunction with the drawings and embodiments.

[0025] Figure 1 It is a schematic diagram of the overall structure provided by the present invention; Figure 2 It is a schematic diagram of the connection structure between the turbine and the driving rod of the present invention; Figure 3 It is a schematic diagram of the connection structure between the connecting head and the fixing rod of the present invention; Figure 4 It is a schematic diagram of the connection structure between the rotating rod and the driving rod of the present invention; Figure 5 It is a schematic diagram of the connection structure between the filter screen and the connection seat of the present invention; Figure 6 It is a schematic diagram of the connection structure between the connecting plate and the connecting head of the present invention; Figure 7 It is a schematic diagram of the connection structure between the connecting spring and the baffle of the present invention; Figure 8 It is a schematic diagram of the connection structure between the cover plate and the connecting plate of the present invention; Figure 9 It is a schematic diagram of the connection structure between the slider and the cover plate of the present invention.

[0026] In the figure: 1, mounting seat; 2, spray mechanism; 201, water inlet pipe; 202, housing; 203, fixed pipe; 204, connecting head; 205, delivery pipe; 206, nozzle; 207, guide groove; 3, rotating mechanism; 301, turbine; 302, driving rod; 303, rotating rod; 304, connecting plate; 4, lifting mechanism; 401, cam groove; 402, guide wheel; 403, connecting groove; 404, return spring; 405, sealing sleeve; 5, filter mechanism; 501, connection seat; 502, push block; 503, groove; 504, filter screen; 505, sink; 506, sealing ring; 6, sealing mechanism; 601, movable groove; 602, ejector rod; 603, cover plate; 604, sealing gasket; 605, compression spring; 606, slider; 607, rotating block; 7, closing mechanism; 701, chute; 702, baffle; 703, through hole; 704, connecting spring. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0027] In order to make the technical means, creative features, achieved purposes and functions of the present invention easy to understand, the present invention will be further described below in conjunction with specific embodiments.

[0028] Specifically, as Figure 1 , Figure 2 , Figure 5 , Figure 7 and Figure 9 shown, a textile fabric processing spray dust suppression device according to the present invention includes a mounting base 1, a spray mechanism 2 is mounted on the mounting base 1, a rotating mechanism 3 is mounted on the spray mechanism 2, a lifting mechanism 4 is mounted on the rotating mechanism 3, a filtering mechanism 5 is mounted on the spray mechanism 2, a sealing mechanism 6 is mounted on the spray mechanism 2, and a closing mechanism 7 is mounted on the spray mechanism 2.

[0029] Specifically, as Figure 1 and Figure 3 shown, the spray mechanism 2 includes a housing 202, the housing 202 is mounted at the bottom of the mounting base 1, a water inlet pipe 201 is mounted at the edge of the housing 202, a fixed pipe 203 is mounted at the center of the bottom of the housing 202, a connector 204 is mounted at the bottom of the fixed pipe 203, a plurality of delivery pipes 205 are respectively mounted on the outside of the connector 204 and are evenly distributed in a ring, a plurality of nozzles 206 are mounted on the outside of the delivery pipes 205, a guide groove 207 is provided on the outside of the connector 204, one end of the delivery pipe 205 extends into the guide groove 207. Through the installation of the mounting base 1, it is beneficial to install the housing 202 at a specified height on the wall top. Through the installation of the water inlet pipe 201, it is beneficial to connect with an external water pipe to deliver water into the housing 202. Through the installation of the fixed pipe 203, it is beneficial to connect the connector 204 and the plurality of delivery pipes 205. Water enters the plurality of delivery pipes 205 through the fixed pipe 203 and is atomized and sprayed out through the plurality of nozzles 206, thereby suppressing dust inside the workshop and reducing environmental pollution.

[0030] Specifically, as Figure 2 , Figure 4 and Figure 6As shown, the rotating mechanism 3 includes a turbine 301. The turbine 301 is rotatably connected to the center inside the housing 202. The driving rod 302 is rotatably connected to the center at the bottom of the housing 202. The top of the driving rod 302 is connected to the center at the bottom of the turbine 301. The bottom of the driving rod 302 extends into the fixed pipe 203. A rotating rod 303 is installed at the bottom of the driving rod 302. The bottom of the rotating rod 303 extends into the connector 204. The connector 204 is rotatably connected to the fixed pipe 203. A connecting plate 304 is fixedly connected to the inner side at the top of the connector 204. The bottom of the rotating rod 303 is fixedly connected to the center at the top of the connecting plate 304. By installing the turbine 301, it is beneficial for the water inside the water inlet pipe 201 to drive the turbine 301, enabling the turbine 301 to continuously rotate. By installing the driving rod 302, it is beneficial for the turbine 301 to drive the driving rod 302 to rotate inside the fixed pipe 203. By installing the rotating rod 303 and the connecting plate 304, it is beneficial for the driving rod 302 to drive the connector 204 to rotate, thereby controlling the rotation of multiple conveying pipes 205 and realizing spraying at multiple positions.

[0031] Specifically, as Figure 1 and Figure 4 shown, the water inlet pipe 201 is located at the tangent position at the edge of the housing 202. The bottom of the housing 202 is of a conical structure. The connecting plate 304 is of a "Y" - shaped structure, which is beneficial for the water flow to drive the turbine 301 to rotate, and then can smoothly control the rotation of the driving rod 302, and enable the water inside the housing 202 to be smoothly introduced into the fixed pipe 203 for conveying. Through the "Y" - shaped structure design of the connecting plate 304, it is beneficial for the water to enter the inner side at the bottom of the connector 204, facilitating subsequent spraying.

[0032] Specifically, as Figure 3 and Figure 4As shown in the figure, the lifting mechanism 4 includes a cam groove 401. The top edge of the connecting head 204 is provided with a cam groove 401. The inner side of the top of the connecting head 204 is slidably connected to the bottom of the fixed pipe 203. A guide wheel 402 is rotatably connected to the outer side wall of the bottom of the fixed pipe 203. The outer side of the guide wheel 402 abuts against the top side edge of the connecting head 204. The bottom of the driving rod 302 is a hexagonal prism structure. The bottom of the driving rod 302 extends to the inner side of the top of the rotating rod 303 through a connecting groove 403. The rotating rod 303 is slidably connected to the inside of the connecting groove 403 through a return spring 404. Through the sliding of the rotating rod 303 and the outer side of the bottom of the driving rod 302, under the pulling of the return spring 404, the rotating rod 303 slides a certain position with the outer side of the bottom of the driving rod 302, and the rotating rod 303 pulls the connecting head 204 to slide upward. The top side of the connecting head 204 abuts against and is limited by the guide wheel 402. When the connecting head 204 continuously rotates, since the outer side edge of the top of the connecting head 204 is a wavy structure, with the cooperation of the guide groove 207, the connecting head 204 is abutted by the guide wheel 402 and slides downward during rotation. Thus, it is realized that the connecting head 204 can not only rotate but also continuously move up and down reciprocally, which is beneficial to spraying at different heights in the workshop, making the spraying uniform and having a good dust suppression effect.

[0033] Specifically, as Figure 6 shown in the figure, a sealing sleeve 405 is installed on the inner side of the top of the connecting head 204. The outer side of the bottom of the fixed pipe 203 is slidably connected to the inner side wall of the sealing sleeve 405. By installing the sealing sleeve 405, it is beneficial to ensure good sealing between the outer side of the bottom of the fixed pipe 203 and the inside of the connecting head 204, so that water will not overflow when the connecting head 204 slides or rotates with the fixed pipe 203.

[0034] Specifically, as Figure 6 shown in the figure, the connecting head 204 is a hollow "convex" - shaped structure, and the inner diameter of the top of the connecting head 204 is smaller than the inner diameter of the bottom, which is beneficial for water to converge inside the connecting head 204, so as to be better introduced into the inside of the conveying pipe 205 and sprayed out.

[0035] Specifically, as Figure 3 and Figure 5As shown, the filtering mechanism 5 includes a connecting seat 501. The inner bottom of the connecting head 204 is threadedly connected to the connecting seat 501. The connecting seat 501 has a "convex"-shaped cylindrical structure. The outer side wall of the top of the connecting seat 501 is provided with a filter screen 504. The filter screen 504 is located at one end of the guide groove 207. Through the threaded connection between the connecting seat 501 and the inner bottom of the connecting head 204, it is convenient to disassemble, install and maintain the connecting seat 501. Through the installation of the filter screen 504, it is beneficial to shield and protect one end of a plurality of the guide grooves 207, so that sundries in the water are filtered by the filter screen 504, preventing the nozzle 206 from being blocked and damaged. By disassembling the connecting seat 501, the debris inside the filter screen 504 can be cleaned up.

[0036] Specifically, as Figure 5 and Figure 6 shown, a sink 505 is provided on the inner side wall of the bottom of the connecting head 204. The diameter of the sink 505 is larger than the inner diameter of the bottom of the connecting head 204. The outer side of the bottom of the connecting seat 501 is threadedly connected to the inside of the sink 505. A sealing ring 506 is installed on the outer side of the bottom of the connecting seat 501. The sealing ring 506 abuts against the inside of the sink 505. Through the opening of the sink 505, it is beneficial for the bottom of the connecting head 204 to wrap the outer side of the bottom of the connecting seat 501, making the connection between the connecting seat 501 and the inner bottom of the connecting head 204 stable and firm. And through the installation of the sealing ring 506, it plays a sealing role to prevent water from overflowing.

[0037] Specifically, as Figure 5 shown, a push block 502 is installed at the midline of the bottom of the connecting seat 501. The push block 502 has a trapezoidal structure. A groove 503 is provided at the center of the push block 502. The groove 503 has an elliptical structure. Through the installation of the push block 502, it is beneficial to make the rotation of the connecting seat 501 more labor-saving and convenient. Through the opening of the groove 503, it can play an anti-slip role when driving the push block 502.

[0038] Specifically, as Figure 4 、 Figure 5 、 Figure 6 、 Figure 8 and Figure 9As shown, the sealing mechanism 6 includes a movable groove 601. The bottom of the rotating rod 303 is provided with the movable groove 601. Inside the movable groove 601, there is a slider 606. The slider 606 is slidably connected to the inside of the movable groove 601 through a compression spring 605. The outer side of the bottom of the rotating rod 303 is slidably connected with a cover plate 603. The cover plate 603 is in a "Y" shape structure and is staggered on the top of the connecting plate 304. Both ends of the slider 606 extend to the outside of the movable groove 601 and are connected to the cover plate 603. A top rod 602 is slidably connected to the center of the bottom of the rotating rod 303. The top of the top rod 602 is connected to the top of the slider 606. The bottom of the top rod 602 abuts against the inner side of the bottom of the connecting seat 501. Through the opening of the movable groove 601, it is beneficial to install the slider 606 and realize the sliding connection of the cover plate 603. Through the abutment of the compression spring 605, the cover plate 603 is closely attached to the top of the connecting plate 304. Since the cover plate 603 and the connecting plate 304 are staggered, both the cover plate 603 and the connecting plate 304 are in a "Y" shape structure. After the cover plate 603 and the connecting plate 304 are attached, a sealed disc-shaped structure is formed, and the water inside the fixed pipe 203 cannot flow downward, facilitating the cleaning of the filter screen 504. After being installed through the connecting seat 501, the connecting seat 501 abuts against the top rod 602, and the top rod 602 drives the slider 606 to contract against the elastic force of the compression spring 605, thereby separating the cover plate 603 from the connecting plate 304, and the water inside the fixed pipe 203 flows downward to realize spraying.

[0039] Specifically, as Figure 9 shown, a sealing gasket 604 is installed at the bottom of the cover plate 603. The sealing gasket 604 is in a "Y" shape structure. The bottom of the top rod 602 is rotatably connected with a rotating block 607. The bottom of the rotating block 607 abuts against the inner side of the bottom of the cover plate 603. After the cover plate 603 and the top side of the connecting plate 304 are attached, with the cooperation of the sealing gasket 604, the sealing effect of the gap between the connecting plate 304 and the cover plate 603 is good, and water will not overflow. Through the installation of the rotating block 607, when the connecting seat 501 is rotated for disassembly and assembly, the rotating block 607 rotates accordingly and will not cause wear to the bottom of the top rod 602.

[0040] Specifically, as Figure 5 、 Figure 6 and Figure 7As shown, the closing mechanism 7 includes a chute 701. Inside the bottom side wall of the connecting head 204, there are a plurality of chutes 701 arranged in a ring and equidistantly distributed. Inside the chute 701, there is a baffle 702. A connecting spring 704 is connected between the top of the baffle 702 and the inner side of the top of the chute 701. The baffle 702 is slidably connected to the inside of the chute 701 through the connecting spring 704. The bottom of the baffle 702 extends into the sink 505 and abuts against the connecting seat 501. A through hole 703 is provided at the midline of the bottom of the baffle 702, and the through hole 703 communicates with the guide groove 207. By providing a plurality of chutes 701, it is beneficial to install the plurality of baffles 702. Through the resistance of the connecting spring 704, the baffle 702 extends outside the sink 505, which is beneficial to the baffle 702 blocking and plugging the guide groove 207, so that the water inside the delivery pipe 205 cannot flow back after the connecting seat 501 is disassembled, facilitating maintenance. After installing the connecting seat 501, the connecting seat 501 abuts against the plurality of baffles 702 inside the sink 505, and the baffle 702 contracts against the elastic force of the connecting spring 704. After the connecting seat 501 is stably installed, the through hole 703 on the baffle 702 is aligned with the guide groove 207, facilitating the water inside the connecting seat 501 to flow into the delivery pipe 205 for delivery.

[0041] Specifically, as Figure 7 shown, the baffle 702 is of an arc-shaped structure, the bottom end of the baffle 702 is of a triangular structure, and the bottom edges of the baffle 702 are all of an arc-shaped structure, which is beneficial to the small contact area between the bottom of the baffle 702 and the top edge of the connecting seat 501, facilitating the reduction of wear when the connecting seat 501 drives and controls the baffle 702.

[0042] When the present invention is in use, first, a mounting base 1 of a certain height is detachably installed on the top of the workshop, which is beneficial to installing the housing 202 at a specified height on the top of the wall. Through the installation of the water inlet pipe 201, it is beneficial to connect with an external water pipe to convey water into the housing 202. Through the installation of the fixed pipe 203, it is beneficial to connect the connector 204 and multiple conveying pipes 205. Water enters the interiors of the multiple conveying pipes 205 through the fixed pipe 203 and is atomized and ejected through the multiple nozzles 206, thereby suppressing dust inside the workshop and reducing environmental pollution. Through the installation of the turbine 301, it is beneficial for the water in the water inlet pipe 201 to drive the turbine 301, enabling the turbine 301 to rotate continuously. Through the installation of the driving rod 302, it is beneficial for the turbine 301 to drive the driving rod 302 to rotate inside the fixed pipe 203. Through the installation of the rotating rod 303 and the connecting plate 304, it is beneficial for the driving rod 302 to drive the connector 204 to rotate, thereby controlling the rotation of the multiple conveying pipes 205, achieving spraying at multiple positions, facilitating the water flow to drive the turbine 301 to rotate, and then smoothly controlling the rotation of the driving rod 302, and smoothly guiding the water inside the housing 202 into the fixed pipe 203 for conveyance. Through the "Y"-shaped structure design of the connecting plate 304, it is beneficial for water to enter the inner side of the bottom of the connector 204, facilitating subsequent ejection. Through the sliding of the rotating rod 303 on the outer side of the bottom of the driving rod 302, under the pulling of the return spring 404, the rotating rod 303 slides a certain position on the outer side of the bottom of the driving rod 302, and the rotating rod 303 pulls the connector 204 to slide upward. The top side of the connector 204 abuts against and is limited by the guide wheel 402. When the connector 204 rotates continuously, since the outer edge of the top of the connector 204 is of a wavy structure, under the cooperation of the guide groove 207, the connector 204 is abutted by the guide wheel 402 and slides downward during rotation, thereby enabling the connector 204 not only to rotate but also to continuously move up and down reciprocally, which is beneficial for spraying at different heights in the workshop, enabling the ejected water mist to converge with dust in multiple layers of space, making the spraying more uniform and having a good dust suppression effect. Through the installation of the sealing sleeve 405, it is beneficial for the outer side of the bottom of the fixed pipe 203 to have good sealing with the inside of the connector 204, so that water will not overflow when the connector 204 slides or rotates relative to the fixed pipe 203, facilitating the convergence of water inside the connector 204 and thus better guiding it into the conveying pipe 205 for ejection. Through the threaded connection between the connecting seat 501 and the inner side of the bottom of the connector 204, it is convenient to disassemble, install, and maintain the connecting seat 501. Through the installation of the filter net 504, it is beneficial to shield and protect one end of the multiple guide grooves 207, filtering debris in the water by the filter net 504 to prevent the nozzles 206 from being blocked and damaged. By disassembling the connecting seat 501, the debris inside the filter net 504 can be cleaned. Through the opening of the sinking groove 505, it is beneficial for the bottom of the connector 204 to wrap the outer side of the bottom of the connecting seat 501, making the connection between the connecting seat 501 and the inner side of the bottom of the connector 204 stable and firm, and through the installation of the sealing ring 506, it plays a sealing role to prevent water from overflowing. Through the installation of the push block 502,It is beneficial to make the rotation of the connecting seat 501 more labor-saving and convenient. Through the opening of the groove 503, it can play an anti-slip role when driving the push block 502. Through the opening of the movable groove 601, it is beneficial to install the slider 606 to realize the sliding connection of the cover plate 603. Through the abutment of the compression spring 605, the cover plate 603 fits tightly with the top of the connecting plate 304. Since the cover plate 603 and the connecting plate 304 are staggered, both the cover plate 603 and the connecting plate 304 are in a "Y" shape structure. After the cover plate 603 and the connecting plate 304 are fitted, a sealed disc-shaped structure is formed, and the water inside the fixed pipe 203 cannot flow downward, which is convenient for cleaning the filter screen 504. After the connecting seat 501 is installed, the connecting seat 501 abuts against the ejector rod 602, and the ejector rod 602 drives the slider 606 to contract against the elastic force of the compression spring 605, so that the cover plate 603 is separated from the connecting plate 304, and the water inside the fixed pipe 203 flows downward to realize spraying. It is beneficial that after the cover plate 603 and the top side of the connecting plate 304 are fitted, with the cooperation of the sealing gasket 604, the gap between the connecting plate 304 and the cover plate 603 has a good sealing effect and water will not overflow. Through the installation of the rotating block 607, when the connecting seat 501 rotates for disassembly and assembly, the rotating block 607 rotates accordingly and will not cause wear to the bottom of the ejector rod 602. Through the opening of multiple sliding grooves 701, it is beneficial to install multiple baffle plates 702. Through the abutment of the connecting spring 704, the baffle plates 702 extend to the outside of the sinking groove 505, which is beneficial for the baffle plates 702 to block the guide groove 207, so that the water inside the conveying pipe 205 cannot flow back after the connecting seat 501 is disassembled, which is convenient for maintenance. After the connecting seat 501 is installed, the connecting seat 501 abuts against the multiple baffle plates 702 inside the sinking groove 505, and the baffle plates 702 contract against the elastic force of the connecting spring 704. After the connecting seat 501 is stably installed, the through holes 703 on the baffle plates 702 are aligned with the guide groove 207, which is convenient for the water inside the connecting seat 501 to flow into the conveying pipe 205 for conveying. It is beneficial that the contact area between the bottom of the baffle plate 702 and the top side edge of the connecting seat 501 is small, which is convenient for reducing wear when the connecting seat 501 drives and controls the baffle plate 702.,

[0043] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and without departing from the spirit or basic characteristics of the present invention, the present invention can be implemented in other specific forms. Therefore, in any aspect, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, it is intended to include all changes falling within the meaning and scope of the equivalent elements of the claims in the present invention. Any reference signs in the claims should not be regarded as limiting the claimed rights.,

[0044] In addition, it should be understood that although this specification is described according to embodiments, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A spray dust suppression device for textile fabric processing, characterized in that: The invention comprises a mounting seat (1), a spray mechanism (2) being mounted on the mounting seat (1), the spray mechanism (2) comprising a housing (202), a fixed pipe (203) and a connector (204), the connector (204) being rotatably connected to the fixed pipe (203), a rotating mechanism (3) being mounted on the spray mechanism (2), and a lifting mechanism (4) being mounted on the rotating mechanism (3); The rotating mechanism (3) comprises a turbine (301), the turbine (301) is rotatably connected to the center of the interior of the housing (202), a driving rod (302) is rotatably connected to the center of the bottom of the housing (202), the top of the driving rod (302) is connected to the center of the bottom of the turbine (301), a rotating rod (303) is installed at the bottom of the driving rod (302), a connecting plate (304) is fixedly connected to the inner side of the top of the connecting head (204), and the bottom of the rotating rod (303) is fixedly connected to the center of the top of the connecting plate (304).

2. A textile fabric processing spray dust suppression device according to claim 1, characterized in that: A shell (202) is installed at the bottom of the mounting seat (1); a water inlet pipe (201) is installed at the edge of the shell (202); a fixed pipe (203) is installed at the center of the bottom of the shell (202); a connector (204) is installed at the bottom of the fixed pipe (203); a plurality of delivery pipes (205) equidistantly distributed in a ring shape are installed on the outside of the connection head (204); a plurality of nozzles (206) are installed on the outside of the delivery pipe (205); a guide groove (207) is provided on the outside of the connection head (204); one end of the delivery pipe (205) extends into the inside of the guide groove (207); the water inlet pipe (201) is located at a tangent position at the edge of the shell (202); the bottom of the shell (202) is a conical structure; and the connecting plate (304) is a "Y"-shaped structure.

3. The textile fabric processing spray dust suppression device according to claim 1, characterized in that: The lifting mechanism (4) comprises a cam groove (401), the cam groove (401) is provided at the top edge of the connecting head (204), the inner side of the top of the connecting head (204) is slidably connected to the bottom of the fixed tube (203), the outer side wall of the bottom of the fixed tube (203) is rotatably connected to a guide wheel (402), the outer side of the guide wheel (402) abuts against the top edge of the connecting head (204), the bottom of the driving rod (302) is a hexagonal prism structure, and the bottom of the driving rod (302) is connected by The connecting groove (403) extends to the inner side of the top of the rotating rod (303); the rotating rod (303) is slidably connected to the inside of the connecting groove (403) via a return spring (404); a sealing sleeve (405) is installed on the inner side of the top of the connecting head (204); the outer side of the bottom of the fixed tube (203) is slidably connected to the inner wall of the sealing sleeve (405); the connecting head (204) is a "convex" shaped structure with a hollow interior; the inner diameter of the top of the connecting head (204) is smaller than the inner diameter of the bottom.

4. The textile fabric processing spray dust suppression device according to claim 1, characterized in that: The spray mechanism (2) is provided with a filter mechanism (5), the filter mechanism (5) comprising a connection seat (501), the connection seat (501) being threadedly connected to the inner side of the bottom of the connector (204), the connection seat (501) being a "convex"-shaped cylindrical structure, the top outer side wall of the connection seat (501) being provided with a filter screen (504), the filter screen (504) being located at one end of the guide groove (207).

5. A textile fabric processing spray dust suppression device according to claim 4, characterized in that: The inner side wall of the bottom of the connector (204) is provided with a recessed groove (505), the diameter of the recessed groove (505) is larger than the inner diameter of the bottom of the connector (204), the outer side of the bottom of the connector seat (501) is threadedly connected to the inside of the recessed groove (505), and a sealing ring (506) is installed on the outer side of the bottom of the connector seat (501), and the sealing ring (506) is in conflict with the inside of the recessed groove (505).

6. A textile fabric processing spray dust suppression device according to claim 5, characterized in that: A push block (502) is installed at the midline of the bottom of the connecting seat (501), the push block (502) is a trapezoidal structure, and a groove (503) is provided at the center of the push block (502), the groove (503) is an elliptical structure.

7. The textile fabric processing spray dust suppression device according to claim 5, characterized in that: The spray mechanism (2) is provided with a sealing mechanism (6), the sealing mechanism (6) comprising a movable groove (601), the movable groove (601) being provided at the bottom of the rotating rod (303), a slider (606) being provided inside the movable groove (601), the slider (606) being slidably connected to the inside of the movable groove (601) via a compression spring (605), a cover plate (603) being slidably connected to the outside of the bottom of the rotating rod (303), the cover plate (603) being a "Y"-shaped structure, the cover plates (603) being staggeredly distributed on the top of the connecting plate (304), the two ends of the slider (606) extending to the outside of the movable groove (601) and connected to the cover plate (603), a top rod (602) being slidably connected to the center of the bottom of the rotating rod (303), the top of the slider (602) being connected to the top of the slider (606), the bottom of the slider (602) being in contact with the inner side of the bottom of the connecting seat (501).

8. A textile fabric processing spray dust suppression device according to claim 7, characterized in that: A sealing gasket (604) is installed at the bottom of the cover plate (603), and the sealing gasket (604) is a "Y"-shaped structure. The bottom of the top rod (602) is rotatably connected to a rotating block (607), and the bottom of the rotating block (607) contacts the inner side of the bottom of the cover plate (603).

9. The textile fabric processing spray dust suppression device according to claim 5, characterized in that: The spray mechanism (2) is provided with a closing mechanism (7), the closing mechanism (7) comprising a slide groove (701), a plurality of slide grooves (701) in an annular shape and distributed equidistantly are provided inside the bottom side wall of the connector (204), a baffle (702) is provided inside the slide groove (701), a connecting spring (704) is connected between the top of the baffle (702) and the inner side of the top of the slide groove (701), the baffle (702) is slidably connected to the inside of the slide groove (701) via the connecting spring (704), the bottom of the baffle (702) extends to the inside of the sink groove (505) and contacts the connecting seat (501), a through hole (703) is provided at the midline of the bottom of the baffle (702), the through hole (703) is connected to the guide groove (207), the baffle (702) is an arc-shaped structure, the bottom end of the baffle (702) is a triangular structure, and the bottom edge of the baffle (702) is an arc-shaped structure.

Citation Information

Patent Citations

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