CN214529725U - Water-saving self-cleaning system of dyeing machine cylinder - Google Patents

Water-saving self-cleaning system of dyeing machine cylinder Download PDF

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Publication number
CN214529725U
CN214529725U CN202120655058.5U CN202120655058U CN214529725U CN 214529725 U CN214529725 U CN 214529725U CN 202120655058 U CN202120655058 U CN 202120655058U CN 214529725 U CN214529725 U CN 214529725U
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Prior art keywords
cylinder
dyeing
water
cleaning
jar
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CN202120655058.5U
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Inventor
沈兴良
张峰
潘李正
金如苗
高梅林
杨军
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Shaoxing Keqiao Jiayu Xingteng Dyeing And Finishing Co ltd
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Shaoxing Keqiao Jiayu Xingteng Dyeing And Finishing Co ltd
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Abstract

The utility model relates to a dyeing jar washs technical field, and discloses a water-saving self-cleaning system of dyeing machine jar, including dyeing jar, fixing device includes the installing support, and the installing support joint is on dyeing jar, and the bottom fixed mounting of installing support has the fixed block, and the electric telescopic rod groove has been seted up at the top of installing support, and the vertical grafting in inside in electric telescopic rod groove has electric telescopic handle, and electric telescopic handle's bottom fixed mounting has the spliced pole, and dyeing jar's inside is provided with belt cleaning device. The utility model discloses in, under the drive of first cylinder shrink, the cleaning plate can remove dyeing jar along the direction of fixed block directly over, and shrink about passing through the first cylinder of controller control this moment again, through the inside that external water source got into the leading water pipe, then the inside water that gets into the cleaning plate from the leading water pipe is from high pressure nozzle's opening part blowout, carries out high pressure cleaning to dyeing jar inside wall, inside can be quick clearance dyeing jar, reach the effect that improves work efficiency.

Description

Water-saving self-cleaning system of dyeing machine cylinder
Technical Field
The utility model relates to a dyeing jar washs technical field, especially relates to a water-saving self-cleaning system of dyeing machine jar.
Background
Dyeing, also known as coloring, refers to the chemical or other means of affecting the substance itself to color it. Natural dyeing sometimes needs mordant, and synthetic dyeing also needs some auxiliary agents; the object can present various colors required by people through dyeing, and live in different colors. Printing and dyeing are the synthesis of the physical and chemical treatment processes of textile fabrics. Such as adding patterns and designs to the textile, changing the color of the textile, and the related pretreatment process. The textile has certain color and luster and glossiness by making physical or chemical change between the dye and the fiber. The printing and dyeing process can be divided into cotton textile printing and dyeing, hemp textile printing and dyeing, wool textile dyeing and finishing, silk printing and dyeing and the like according to different printing and dyeing objects. The Chinese printing and dyeing industry develops quickly, the processing capacity is the first place in the world, and the method is a large country for textile printing and dyeing production.
The existing printing and dyeing devices in the market are mainly cleaned manually, a large amount of time and labor are consumed for manual cleaning, the cleaning mode is low in efficiency, and the cleaning effect is poor. Therefore, a water-saving self-cleaning system of the dyeing machine cylinder is provided.
SUMMERY OF THE UTILITY MODEL
The utility model mainly solves the technical problem existing in the prior art and provides a water-saving self-cleaning system of a dyeing machine cylinder.
In order to realize the above-mentioned purpose, the utility model discloses a following technical scheme, a water-saving self-cleaning system of dyeing machine jar, including the dyeing jar, the top of dyeing jar is provided with fixing device, and fixing device includes the installing support, the installing support is the cross shape, and the installing support joint is on the dyeing jar, and the bottom fixed mounting of installing support has the fixed block, and the electric telescopic rod groove has been seted up at the top of installing support, and the vertical grafting in inside in electric telescopic rod groove has electric telescopic handle, and electric telescopic handle's bottom fixed mounting has the spliced pole, and the inside of dyeing jar is provided with can be by automatic telescopic handle driven belt cleaning device.
Preferably, two sets of water diversion grooves are vertically formed in the top of the mounting support, the two sets of water diversion grooves are symmetrically distributed in the top of the mounting support, and water diversion pipes are vertically inserted in the water diversion grooves.
Preferably, the cleaning device comprises a controller, the controller is fixedly mounted on the connecting column, a first air cylinder and a second air cylinder which correspond to each other are mounted on two sides of the controller, a first connecting block is fixedly mounted at the top of the first air cylinder, a second connecting block is fixedly mounted at the top of the second air cylinder, and the first connecting block is connected with the second connecting block through a connecting rod.
Preferably, one side fixed mounting that first cylinder and second cylinder kept away from each other has the cleaning plate, and the cleaning plate is the semicircle ring shape, and two sets of cleaning plates make up into a complete ring shape, and the equal fixed mounting in one side that second cylinder and first cylinder kept away from each other has the rectangle connecting block, and the rectangle connecting block of both sides is in the same place with cleaning plate fixed connection.
Preferably, the cleaning plates are provided with annular grooves, a plurality of groups of high-pressure nozzles are inserted in the annular grooves, two ends of the bottom of the water conduit are inserted in the two groups of cleaning plates, and the water conduit is inserted in the high-pressure nozzles.
Advantageous effects
The utility model provides a water-saving self-cleaning system of dyeing machine jar. The method has the following beneficial effects:
(1) this water-saving self-cleaning system of dyeing machine jar, when starting electric telescopic handle, electric telescopic handle can drive the spliced pole and reciprocate, so also can drive first cylinder and second cylinder up-and-down motion when controller up-and-down motion, under the drive of first cylinder shrink, wash the board and can remove directly over the dyeing jar along the direction of fixed block, shrink from top to bottom through controller control first cylinder this moment again, get into the inside of leading water pipe through external water source, then the inside water that gets into the washing board from leading water pipe is from the opening part blowout of high pressure nozzle, carry out high pressure cleaning to dyeing jar inside wall, inside can be quick clearance dyeing jar, reach the effect that improves work efficiency.
(2) This water-saving self-cleaning system of dyeing machine jar, drive first cylinder and the shrink of second cylinder through control controller, because the top fixed mounting of first cylinder has first connecting block, the top fixed mounting of second cylinder has the second connecting block, fixed mounting has the connecting rod on the lateral wall that first connecting block and second connecting block are close to each other, because drive spliced pole up-and-down motion through electric telescopic handle, the spliced pole is again with controller fixed mounting, spliced pole up-and-down motion drives controller up-and-down motion, the controller drives the cleaning plate up-and-down motion, the bottom both ends of leading water pipe all peg graft on two sets of cleaning plates, the leading water pipe is pegged graft on high pressure nozzle, the leading water pipe provides water for high pressure nozzle, high pressure nozzle washes the dyeing thick stick inner wall, the effect that automatic clearance does not need artifical clearance has been reached.
Drawings
FIG. 1 is a general schematic view of the present invention;
FIG. 2 is a schematic view of the whole interior of the present invention;
FIG. 3 is a schematic view of the fixing device of the present invention;
fig. 4 is a schematic view of the cleaning device of the present invention.
Illustration of the drawings:
1 dyeing cylinder, 2 fixing device, 21 installing support, 22 fixing block, 23 electric telescopic rod groove, 24 electric telescopic rod, 25 connecting column, 26 water guide groove, 3 water guide pipe, 4 cleaning device, 41 controller, 43 first cylinder, 44 second cylinder, 45 first connecting block, 46 second connecting block, 47 connecting rod, 48 cleaning plate and 49 high-pressure spray head.
Detailed Description
In order to make the technical means, creation features, achievement purposes and functions of the present invention easy to understand, the present invention is further described below with reference to the following embodiments.
Example (b): a water-saving self-cleaning system of a dyeing machine cylinder is disclosed, as shown in figures 1-4, and comprises a dyeing cylinder 1, wherein the dyeing cylinder 1 is a cylindrical barrel with a hollow inner part, a fixing device 2 is arranged at the top of the dyeing cylinder 1, the fixing device 2 comprises a mounting bracket 21, the mounting bracket 21 is a cross-shaped frame, four end points of the mounting bracket 21 are vertically clamped on the excircle of the upper half part of the dyeing cylinder 1, a fixing block 22 is fixedly mounted at the middle position of the bottom of the mounting bracket 21, the fixing block 22 is an L-shaped block, an electric telescopic rod groove 23 is vertically formed at the middle position of the top of the mounting bracket 21, the electric telescopic rod groove 23 is a rectangular groove, an electric telescopic rod 24 is vertically inserted into the electric telescopic rod groove 23, the electric telescopic rod 24 is a prior known technology, so that detailed description is omitted, a connecting column 25 is fixedly mounted at the bottom of the electric telescopic rod 24, the connecting column 25 is a cylindrical long rod, two groups of water diversion grooves 26 are vertically formed in the top of the mounting bracket 21, the water diversion grooves 26 are circular through holes, the two groups of water diversion grooves 26 are symmetrically distributed in the top of the mounting bracket 21, the water diversion pipes 3 are vertically inserted into the water diversion grooves 26, and the water diversion pipes 3 are Y-shaped pipes which are hollow inside;
the cleaning device 4 is arranged in the dyeing cylinder 1, the cleaning device 4 comprises a controller 41, the controller 41 is fixedly connected to the connecting column 25, a first cylinder 43 is fixedly installed on the front side wall surface of the controller 41, a second cylinder 44 is fixedly installed on the rear side wall surface of the controller 41, the first cylinder 43 and the second cylinder 44 are both in the prior art, and therefore details are not repeated herein, a first connecting block 45 is fixedly installed at the top of the first cylinder 43, the first connecting block 45 is a rectangular block, a second connecting block 46 is fixedly installed at the top of the second cylinder 44, the second connecting block 46 is a rectangular block, a connecting rod 47 is fixedly installed on the side wall surface of the first connecting block 45, which is close to the second connecting block 46, the connecting rod 47 is a cylindrical long rod, a cleaning plate 48 is fixedly installed on the side wall surface of the first cylinder 43, which is far away from the controller 41, the cleaning plate 48 is a semicircular block, a cleaning plate 48 is fixedly mounted on one side wall surface of the second cylinder 44 far away from the controller 41, an annular groove is vertically formed in the middle of the cleaning plate 48, multiple groups of high-pressure spray nozzles 49 are inserted into the annular groove, two ends of the bottom of the water conduit 3 are inserted into the two groups of cleaning plates 48, and the water conduit 3 is inserted into the high-pressure spray nozzles 49.
The utility model discloses a theory of operation:
when the device is used, the controller 41 is controlled to drive the first cylinder 43 and the second cylinder 44 to contract, because the top of the first cylinder 43 is fixedly provided with the first connecting block 45, the top of the second cylinder 44 is fixedly provided with the second connecting block 46, the side wall surface of the first connecting block 45, which is close to the second connecting block 46, is fixedly provided with the connecting rod 47, the output shaft at the bottom of the electric telescopic rod 24 is fixedly provided with the connecting column 25, when the electric telescopic rod 24 is started, the electric telescopic rod 24 drives the connecting column 25 to move up and down, so that the controller 41 can drive the first cylinder 43 and the second cylinder 44 to move up and down when moving up and down, under the driving of the contraction of the first cylinder 43, the cleaning plate 48 can move to the position right above the dyeing cylinder 1 along the direction of the fixing block 22, at the moment, the controller 41 controls the first cylinder 43 to contract up and down, and enters the water guide pipe 3 through an external water source, then, the internal water entering the cleaning plate 48 from the water conduit 3 is sprayed out from the opening of the high-pressure spray nozzle 49 to perform high-pressure cleaning on the inner wall surface of the dyeing tank 1.
The basic principles and the main features of the invention and the advantages of the invention have been shown and described above. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (5)

1. The utility model provides a water-saving self-cleaning system of dyeing machine jar, includes dyeing jar (1), its characterized in that: the top of dyeing jar (1) is provided with fixing device (2), and fixing device (2) include installing support (21), installing support (21) are the cross, installing support (21) joint is on dyeing jar (1), the bottom fixed mounting of installing support (21) has fixed block (22), automatic telescopic link groove (23) have been seted up at the top of installing support (21), the inside vertical grafting of automatic telescopic link groove (23) has automatic telescopic link (24), the bottom fixed mounting of automatic telescopic link (24) has spliced pole (25), the inside of dyeing jar (1) is provided with can be by automatic telescopic link (24) driven belt cleaning device (4).
2. A water-saving self-cleaning system for dyeing machine cylinders according to claim 1, characterized in that: two sets of diversion channels (26) are vertically arranged at the top of the mounting bracket (21), the two sets of diversion channels (26) are symmetrically distributed at the top of the mounting bracket (21), and diversion pipes (3) are vertically inserted in the diversion channels (26).
3. A water-saving self-cleaning system for dyeing machine cylinders according to claim 1, characterized in that: cleaning device (4) include controller (41), and controller (41) fixed mounting is on spliced pole (25), and corresponding first cylinder (43) and second cylinder (44) are installed to controller (41) both sides, and the top fixed mounting of first cylinder (43) has first connecting block (45), and the top fixed mounting of second cylinder (44) has second connecting block (46), and first connecting block (45) are connected through connecting rod (47) with second connecting block (46).
4. A water-saving self-cleaning system for dyeing machine cylinders according to claim 3, characterized in that: first cylinder (43) and second cylinder (44) one side fixed mounting who keeps away from each other have cleaning plate (48), cleaning plate (48) are half-circular, and two sets of cleaning plate (48) make up into a complete ring shape, and the equal fixed mounting in one side that second cylinder (44) kept away from each other with first cylinder (43) has the rectangle connecting block, and the rectangle connecting block of both sides is in the same place with cleaning plate (48) fixed connection.
5. A water-saving self-cleaning system for dyeing machine cylinders according to claim 4, characterized in that: the annular groove is formed in the cleaning plate (48), multiple groups of high-pressure spray nozzles (49) are inserted into the annular groove, two ends of the bottom of the water conduit (3) are inserted into the two groups of cleaning plates (48), and the water conduit (3) is inserted into the high-pressure spray nozzles (49).
CN202120655058.5U 2021-03-31 2021-03-31 Water-saving self-cleaning system of dyeing machine cylinder Active CN214529725U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120655058.5U CN214529725U (en) 2021-03-31 2021-03-31 Water-saving self-cleaning system of dyeing machine cylinder

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120655058.5U CN214529725U (en) 2021-03-31 2021-03-31 Water-saving self-cleaning system of dyeing machine cylinder

Publications (1)

Publication Number Publication Date
CN214529725U true CN214529725U (en) 2021-10-29

Family

ID=78267010

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120655058.5U Active CN214529725U (en) 2021-03-31 2021-03-31 Water-saving self-cleaning system of dyeing machine cylinder

Country Status (1)

Country Link
CN (1) CN214529725U (en)

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