Textile wastewater treatment device for textile machine and use method
By adopting a combined structure of telescopic tubes and mobile plates in the textile wastewater treatment device, the problems of uneven delivery of medicines and the need for regular cleaning of filter plates in the prior art are solved, and uniform distribution of medicines and efficient filtration of sewage are achieved.
Patent Information
- Application Number
- CN202510370460.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-27
- Publication Date
- 2025-05-27
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In the existing textile printing and dyeing sewage treatment device, the treatment agent needs to be directly placed above the sewage, and subsequently stirred and mixed, and the filter plate used for filtration needs to be shut down regularly to clean, affecting the sewage treatment efficiency.
A textile wastewater treatment device for textile machines is designed, adopting a combined structure of telescopic tubes and mobile plates. The chemical agent is automatically sprayed into the sewage through the telescopic tubes, and the extrusion and filtration functions of the mobile plates are used to achieve uniform distribution of the agent and efficient filtration of sewage.
The uniform distribution of the agent is achieved, the time-consuming of stirring and mixing is reduced, the uniformity of the agent is improved, and the need to regularly clean the filter plate is avoided, and the efficiency of sewage treatment is improved.
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Figure CN120039959A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of sewage treatment, and in particular to a textile wastewater treatment device for a textile machine and a use method thereof. Background Art
[0002] Wastewater from the textile industry mainly comes from processes such as desizing, scouring, bleaching, mercerizing, dyeing, and printing. The wastewater contains a large amount of pollutants such as fibers and pulp, and the concentration of pollutants is relatively high. The conventional technical method is to add flocculants to the wastewater to degrade and precipitate the wastewater, and then filter the flocculants and send them for subsequent treatment of sterilization and disinfection.
[0003] The existing patent (publication number: CN116947129B) discloses a textile printing and dyeing wastewater treatment device, including a regulating box, a water inlet hopper connected to the inside of the regulating box is provided on the top of the regulating box, a filter plate that can vibrate up and down is provided in the water inlet hopper, and a dosing assembly is provided on both sides of the water inlet hopper at the top of the regulating box. The dosing assembly includes a drug outlet pipe, the bottom end of the drug outlet pipe extends into the regulating box, and a plug is provided at the bottom end of the drug outlet pipe. The plug includes a first position and a second position. When the plug is in the first position, the plug coincides with the bottom pipe opening of the drug outlet pipe; when the plug is in the second position, the plug is staggered with the bottom pipe opening of the drug outlet pipe. In the above-mentioned prior art, the treatment agent is directly added from above the sewage, and it needs to be stirred and mixed later, and the filter plate used for filtration also requires the operator to shut down and clean it regularly, which affects the sewage treatment efficiency.
[0004] In view of this, we propose a textile wastewater treatment device for a textile machine and a method of use. Summary of the invention
[0005] The purpose of the present invention is to provide a textile wastewater treatment device for a textile machine and a method of use, so as to solve the problem in the prior art proposed in the above background technology that the treatment agent is directly added from above the sewage, and then needs to be stirred and mixed, and the filter plate used for filtering also requires the operator to stop the machine regularly for cleaning, which affects the sewage treatment efficiency. To achieve the above purpose, the present invention provides the following technical solutions: A textile wastewater treatment device for a textile machine, including a water tank, the front and rear sides of the water tank are fixedly provided with flanges for connecting to the sewage pipeline, and the right side of the water tank is provided with a drug pipeline for conveying the treatment agent, and a disperser matched with the drug pipeline is provided in the water tank.
[0006] The disperser includes a pipe seat fixedly inserted in the right side of the water tank, and the pipe seat penetrates the water tank and extends into the inside thereof. The pipe seats are arranged in a rectangular array and all of the pipe seats are connected to the pharmaceutical pipeline.
[0007] A telescopic tube is slidably arranged inside the tube seat, and the telescopic tube is composed of a plurality of tube bodies which are slidably connected step by step from large to small tube diameters. An elastic rope is fixedly connected inside the tube seat through a bracket, and one end of the elastic rope away from the bracket is fixedly connected to the tube body with the smallest tube diameter.
[0008] The surface of the tube body is provided with a spray hole connected with the interior thereof, and the interior of the tube body is provided with an annular groove connected with the spray hole, the annular groove is connected with the interior of the tube body of the previous stage, and a control tube is slidably connected in the annular groove, the end of the control tube extends into the tube body of the previous stage, and a clamping groove is provided in the extended end of the control tube, an embedding hole corresponding to the clamping groove is provided on the inner wall of the tube body of the previous stage, and a clamping block is slidably connected in the embedding hole, a spring is arranged between the clamping block and the embedding hole, and an oblique opening is cut at one end of the clamping block relative to the clamping groove.
[0009] The surface of the control pipe is provided with a control hole matched with the medicine spraying hole.
[0010] The water tank and the telescopic pipe are provided with a squeezing component.
[0011] Preferably, the squeezing assembly includes a movable plate slidably connected to the inside of the water tank, and the movable plate is provided with a plurality of sockets corresponding to the telescopic tubes, a magnetic head corresponding to the sockets is fixedly provided at the end of the telescopic tube, and a magnetic pad matching the magnetic head is fixedly installed in the socket.
[0012] A tension spring is arranged between the movable plate and the water tank, and a liquid hole is opened on the movable plate.
[0013] The water tank and the movable plate are provided with filtering components.
[0014] Preferably, the filtering assembly includes a transverse groove opened on the top of the movable plate, and a transverse bolt is slidably connected in the transverse groove, a top spring is arranged between the transverse groove and the transverse bolt, a notch connected to the transverse groove is opened on the side surface of the movable plate, two slope blocks corresponding to the notch are fixedly arranged on the side surface of the water tank, and the slope blocks are arranged to be a trapezoidal structure cooperating with the transverse bolt.
[0015] The movable plate is provided with a plurality of plate grooves connected with the transverse grooves, and the plate grooves are connected with the liquid holes. A closing plate matched with the liquid holes is arranged in the plate grooves, and the closing plate is fixedly connected with the transverse bolts.
[0016] The closing plate is provided with a through hole matched with the liquid hole.
[0017] The bottom of the water tank is provided with two sewage outlets which are connected with the interior of the water tank, and the two sewage outlets are symmetrically distributed along the water tank.
[0018] The inner side walls on both sides of the water tank are provided with embedded grooves, and a baffle matching the sewage outlet on the same side is slidably connected in the embedded groove. A spring piece matching the baffle is arranged in the embedded groove, and the spring piece pushes the baffle to close the sewage outlet.
[0019] A push frame matched with the baffle is fixedly connected to one side of the baffle relative to the movable plate.
[0020] Preferably, the magnetic head is screwed onto the telescopic tube via threads.
[0021] Preferably, a rubber film matching with the telescopic tube and the magnetic head is provided at the opening of the jack.
[0022] Preferably, two ends of the elastic rope are respectively fixed to the bracket and the magnetic head by bolts.
[0023] Preferably, a limiting block cooperating with the movable plate and the tension spring is fixedly provided on the inner bottom wall of the water tank.
[0024] A method for using a textile wastewater treatment device for a textile machine comprises the following steps:
[0025] S1. Transport the sewage in the textile workshop to the water tank, then inject the sewage treatment agent into the sewage through the agent pipeline, and finally discharge the treated sewage;
[0026] S2. The medicine input from the medicine pipeline enters the telescopic tube along the pipe seat, and the pipe bodies at all levels are pushed out by the hydraulic pressure, so that the elastic rope of the telescopic tube stretches until the card slot and the card block are aligned. At this time, the card block is embedded in the card slot to clamp the control tube. The continuously moving pipe body causes the control tube to move relatively, so that the control hole and the medicine spraying hole are aligned. At this time, the medicine in the telescopic tube can be sprayed into the sewage from the medicine spraying hole;
[0027] S3, the telescopic tube is fully extended by hydraulic pressure, the magnetic head at the end of the telescopic tube is inserted into the socket and connected with the magnetic pad by magnetic attraction, when the telescopic tube stops liquid recovery, the moving plate is synchronously pulled from one side of the water tank to the other side, and the moving plate is used to squeeze the sewage inside the water tank, so that the sewage is squeezed out from one side of the water tank along the liquid hole to the other side of the water tank until the moving plate is intercepted by the pipe seat, the telescopic tube is pulled out from the socket, and the tension spring pulls the moving plate to reset, and at this time the moving plate uses the liquid hole to squeeze the sewage again;
[0028] S4. When the movable plate moves back and forth and uses the liquid hole to inject sewage, the movable plate filters the flocculants and solids in the sewage through the liquid hole. When the movable plate reaches the sewage outlets on both sides, the slope block is inserted into the horizontal groove along the gap, and squeezes the horizontal bolt and the closing plate to move, so that the closing plate closes the liquid hole. At the same time, the movable plate squeezes the baffle along the push frame to open the sewage outlet. At this time, the sewage remaining between the movable plate and the water tank flushes the debris filtered out by the filter hole downward and discharges it.
[0029] Compared with the prior art, the present invention has the following beneficial effects:
[0030] In the present invention, the pipe bodies at various levels are pushed out by the hydraulic pressure, so that the telescopic tube stretches the elastic rope to stretch until the card slot and the card block are aligned. At this time, the card block is embedded in the card slot to clamp the control tube. The continuously moving pipe body causes the control tube to be relatively displaced, so that the control hole and the spraying hole are aligned, and the medicine in the telescopic tube can be sprayed into the sewage from the spraying hole. Compared with the existing method of pouring the medicine from the top of the sewage, the telescopic tube can be automatically stretched when the medicine pipeline is injected, and the telescopic tube is evenly distributed in the water tank, corresponding to the control medicine along different water depths and water layers. Even distribution, the time consumption of stirring and mixing is reduced, and the distribution uniformity of the medicine is improved. The telescopic tube is automatically recovered after the liquid stops, which can avoid the impact of sewage flow on related structures.
[0031] In the present invention, the magnetic head at the end of the telescopic tube is inserted into the socket and connected with the magnetic pad by magnetic attraction. When the telescopic tube stops liquid recovery, the movable plate is synchronously pulled from one side of the water tank to the other side, and the movable plate is used to squeeze the sewage inside the water tank, so that the sewage is squeezed out from one side of the water tank along the liquid hole to the other side of the water tank until the movable plate is intercepted by the pipe seat, the telescopic tube is pulled out from the socket, and the tension spring pulls the movable plate to reset. At this time, the movable plate uses the liquid hole to squeeze the sewage again. Compared with the existing method of stirring sewage and medicine by using physical parts, the movable plate can divide the water tank into two spaces with changing volumes, and the movable plate is driven in conjunction with the medicine delivery process of the telescopic tube, so that the small hole is used to press the sewage to assist the mixing of the sewage and the medicine. The contact between the movable plate and the sewage is more comprehensive, and it is not easy to have the situation of difference in stirring radiation area, and the mixing effect at different positions is balanced.
[0032] In the present invention, flocculants and solids in sewage are filtered out through liquid holes. When the movable plate reaches the sewage outlets on both sides, the slope block is inserted into the transverse groove along the notch, and squeezes the transverse bolt and the closing plate to displace, so that the closing plate closes the liquid hole. At the same time, the movable plate squeezes the baffle along the push frame to open the sewage outlet. At this time, the sewage remaining between the movable plate and the water tank clamp flushes the debris filtered out by the filter hole downward and discharges it. Compared with the existing fixed filter plate, the above-mentioned displaced movable plate can open the sewage outlet and close the liquid hole after completing the filtration, so that the gap between the movable plate and the water tank temporarily forms a sewage discharge space connected to the outside, and the filtered debris is discharged in real time. There is no need for users to regularly stop the machine for cleaning and maintenance of the filter components, thereby improving the sewage treatment efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention;
[0034] Figure 2 It is a structural schematic diagram of the tube seat and the telescopic tube of the present invention;
[0035] Figure 3 It is a three-dimensional structural cross-sectional view of the tube seat of the present invention;
[0036] Figure 4 An exploded view of the pipe body and the control pipe of the present invention;
[0037] Figure 5 For the present invention Figure 4 The enlarged view of point A in the middle;
[0038] Figure 6 It is a schematic diagram of the structure of the water tank and the movable plate of the present invention;
[0039] Figure 7 The three-dimensional structure of the water tank of the present invention is cut away Figure 1 ;
[0040] Figure 8 The three-dimensional structure of the water tank of the present invention is cut away Figure 2 ;
[0041] Fig. 9 It is a three-dimensional structural cross-sectional view of the movable plate of the present invention;
[0042] Fig.10 For the present invention Fig. 9 The enlarged view of point B in the middle;
[0043] Fig.11 It is an exploded view of the movable plate, the closing plate and the cross bolt of the present invention;
[0044] Fig.12 For the present invention Fig.11 Enlarged view of point C in the middle.
[0045] In the figure: 1, water tank; 2, flange; 3, chemical pipeline; 4, disperser; 41, pipe seat; 42, telescopic pipe; 421, pipe body; 43, elastic rope; 44, spray hole; 45, ring groove; 46, control pipe; 47, slot; 48, embedded hole; 49, block; 410, spring; 411, oblique mouth; 412, control hole; 413, squeezing component; 4131, moving plate; 4132, jack; 4133, magnetic head; 4134, Magnetic pad; 4135, tension spring; 4136, liquid hole; 4137, filter assembly; 41371, transverse groove; 41372, transverse bolt; 41373, top spring; 41374, notch; 41375, slope block; 41376, plate groove; 41377, closing plate; 41378, through hole; 41379, sewage outlet; 413710, embedded groove; 413711, baffle; 413712, spring piece; 413713, push rack. DETAILED DESCRIPTION
[0046] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technical staff in this field without creative work are within the scope of protection of the present invention.
[0047] See also Figures 1 to 12 The present invention provides a technical solution: a textile wastewater treatment device for a textile machine, comprising a water tank 1, flanges 2 for connecting a sewage pipeline are fixedly arranged on both the front and rear sides of the water tank 1, and a chemical pipeline 3 for conveying a treatment agent is arranged on the right side of the water tank 1. The sewage in the textile workshop is conveyed into the water tank 1, and then the sewage treatment agent is injected into the sewage through the chemical pipeline 3, and finally the treated sewage is discharged. A disperser 4 matched with the chemical pipeline 3 is arranged in the water tank 1.
[0048] The disperser 4 includes a pipe seat 41 fixedly inserted into the right side of the water tank 1 , and the pipe seat 41 penetrates the water tank 1 and extends into the inside thereof. The pipe seats 41 are arranged in a rectangular array, and the plurality of pipe seats 41 are connected to the pharmaceutical pipeline 3 .
[0049] A telescopic tube 42 is slidably provided inside the tube seat 41, and the telescopic tube 42 is composed of a plurality of tube bodies 421 which are slidably connected step by step from large to small in diameter. An elastic rope 43 is fixedly connected to the inside of the tube seat 41 through a bracket, and the end of the elastic rope 43 away from the bracket is fixedly connected to the tube body 421 with the smallest diameter. The medicine input by the medicine pipeline 3 enters the telescopic tube 42 along the tube seat 41, and the tube bodies 421 at each stage are ejected by hydraulic pressure, so that the telescopic tube 42 stretches the elastic rope 43 to extend.
[0050] A spray hole 44 connected to the interior of the tube body 421 is provided on the surface thereof, and an annular groove 45 connected to the spray hole 44 is provided inside the tube body 421. The annular groove 45 is connected to the interior of the upper-level tube body 421, and a control tube 46 is slidably connected in the annular groove 45. The end of the control tube 46 extends into the upper-level tube body 421, and a clamping groove 47 is provided at the extended end of the control tube 46. An embedded hole 48 corresponding to the clamping groove 47 is provided on the inner wall of the upper-level tube body 421, and a clamping block 49 is slidably connected in the embedded hole 48. A spring 410 is provided between the clamping block 49 and the embedded hole 48, and an oblique opening 411 is cut at one end of the clamping block 49 relative to the clamping groove 47.
[0051] A control hole 412 matching the spray hole 44 is provided on the surface of the control tube 46. The telescopic tube 42 is stretched until the slot 47 is aligned with the block 49. At this time, the block 49 is embedded in the slot 47 to clamp the control tube 46. The continuously moving tube body 421 causes the control tube 46 to be relatively displaced so that the control hole 412 is aligned with the spray hole 44. At this time, the medicine in the telescopic tube 42 can be sprayed into the sewage from the spray hole 44.
[0052] The water tank 1 and the telescopic pipe 42 are provided with a squeezing component 413 .
[0053] In this embodiment, Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figures 5 to 12 As shown, the squeezing component 413 includes a movable plate 4131 slidably connected to the inside of the water tank 1, and the movable plate 4131 is provided with a plurality of sockets 4132 corresponding to the telescopic tube 42, a magnetic head 4133 corresponding to the socket 4132 is fixedly provided at the end of the telescopic tube 42, and a magnetic pad 4134 matching the magnetic head 4133 is fixedly installed in the socket 4132.
[0054] A tension spring 4135 is provided between the movable plate 4131 and the water tank 1, and a liquid hole 4136 is provided on the movable plate 4131. The telescopic tube 42 is fully extended by the hydraulic pressure, and the magnetic head 4133 at the end of the telescopic tube 42 is inserted into the socket 4132 and magnetically connected with the magnetic pad 4134. When the telescopic tube 42 stops liquid recovery, the movable plate 4131 is synchronously pulled from one side of the water tank 1 to the other side, and the movable plate 4131 is used to squeeze the sewage inside the water tank 1, so that the sewage is squeezed from one side of the water tank 1 along the liquid hole 4136 to the other side of the water tank 1 until the movable plate 4131 is intercepted by the pipe seat 41, the telescopic tube 42 is pulled out from the socket 4132, and the tension spring 4135 pulls the movable plate 4131 to reset.
[0055] A filtering assembly 4137 is provided on the water tank 1 and the movable plate 4131 .
[0056] In this embodiment, Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figures 5 to 12 As shown, the filter assembly 4137 includes a transverse groove 41371 opened on the top of the movable plate 4131, and a transverse bolt 41372 is slidably connected in the transverse groove 41371, a top spring 41373 is arranged between the transverse groove 41371 and the transverse bolt 41372, a notch 41374 connected to the transverse groove 41371 is opened on the side surface of the movable plate 4131, and two slope blocks 41375 corresponding to the notch 41374 are fixedly arranged on the side surface of the water tank 1, and the slope blocks 41375 are set to a trapezoidal structure matched with the transverse bolt 41372.
[0057] A plurality of plate grooves 41376 communicating with the transverse groove 41371 are provided inside the movable plate 4131 , and the plate grooves 41376 are communicated with the liquid holes 4136 , and a closing plate 41377 cooperating with the liquid holes 4136 is provided inside the plate grooves 41376 , and the closing plate 41377 is fixedly connected with the transverse bolt 41372 .
[0058] The closing plate 41377 is provided with a through hole 41378 which matches the liquid hole 4136 .
[0059] Two sewage outlets 41379 connected to the interior are provided at the bottom of the water tank 1, and the two sewage outlets 41379 are symmetrically distributed along the water tank 1. The movable plate 4131 filters the flocculants and solids in the sewage through the liquid holes 4136. When the movable plate 4131 reaches the sewage outlets 41379 on both sides, the slope block 41375 is inserted into the horizontal groove 41371 along the notch 41374, and squeezes the horizontal bolt 41372 and the closing plate 41377 to move, so that the closing plate 41377 closes the liquid hole 4136.
[0060] The inner side walls on both sides of the water tank 1 are provided with embedded grooves 413710, and the embedded grooves 413710 are slidably connected with baffles 413711 that cooperate with the sewage outlet 41379 on the same side. The embedded grooves 413710 are provided with spring pieces 413712 that cooperate with the baffles 413711, and the spring pieces 413712 push the baffles 413711 to close the sewage outlet 41379.
[0061] The baffle plate 413711 is fixedly connected to one side of the movable plate 4131 with a push frame 413713 matched therewith. When the movable plate 4131 reaches the sewage outlets 41379 on both sides, the movable plate 4131 squeezes the baffle plate 413711 along the push frame 413713 to open the sewage outlet 41379. At this time, the sewage remaining between the movable plate 4131 and the water tank 1 flushes the debris filtered out by the filter holes downward and discharges them.
[0062] In this embodiment, Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figures 5 to 12 As shown, the magnetic head 4133 is screwed onto the telescopic tube 42 through threads, and the magnetic head 4133 can be quickly disassembled and installed by rotating it, so that the magnetic head 4133 with reduced magnetic force can be easily replaced.
[0063] In this embodiment, Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figures 5 to 12As shown, a rubber film that cooperates with the telescopic tube 42 and the magnetic head 4133 is provided at the opening of the socket 4132. The telescopic tube 42 can press the rubber film to insert into the socket 4132. When the telescopic tube 42 is pulled out, the rubber film rebounds and resets to prevent debris in the sewage from entering the socket 4132 and affecting the stability of the magnetic connection.
[0064] In this embodiment, Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figures 5 to 12 As shown, the two ends of the elastic rope 43 are fixed to the bracket and the magnetic head 4133 respectively by bolts. After unscrewing the bolts, the elastic rope 43 can be removed, so that the user can replace the elastic rope 43 with reduced elasticity.
[0065] In this embodiment, Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figures 5 to 12 As shown, two limit blocks cooperating with the movable plate 4131 and the tension spring 4135 are fixedly provided on the inner bottom wall of the water tank 1. The limit blocks on both sides limit the displacement range of the movable plate 4131, so as to facilitate the use of the movable plate 4131 in conjunction with the sewage outlets 41379 on both sides.
[0066] A method for using a textile wastewater treatment device for a textile machine comprises the following steps:
[0067] S1. The sewage in the textile workshop is transported to the water tank 1, and then the sewage treatment agent is injected into the sewage through the agent pipeline 3, and finally the treated sewage is discharged.
[0068] S2, the medicine input from the medicine pipeline 3 enters the telescopic tube 42 along the pipe seat 41, and the tube bodies 421 of each level are pushed out by the hydraulic pressure, so that the telescopic tube 42 stretches the elastic rope 43 to stretch until the slot 47 and the block 49 are aligned. At this time, the block 49 is embedded in the slot 47 to clamp the control tube 46. The continuously moving tube body 421 causes the control tube 46 to move relatively, so that the control hole 412 and the medicine spraying hole 44 are aligned. At this time, the medicine in the telescopic tube 42 can be sprayed into the sewage from the medicine spraying hole 44.
[0069] S3. The telescopic tube 42 is fully extended by the hydraulic pressure, and the magnetic head 4133 at the end of the telescopic tube 42 is inserted into the socket 4132 and magnetically connected to the magnetic pad 4134. When the telescopic tube 42 stops liquid recovery, the movable plate 4131 is synchronously pulled from one side of the water tank 1 to the other side, and the movable plate 4131 is used to squeeze the sewage inside the water tank 1, so that the sewage is squeezed out from one side of the water tank 1 along the liquid hole 4136 to the other side of the water tank 1 until the movable plate 4131 is intercepted by the pipe seat 41, and the telescopic tube 42 is pulled out of the socket 4132, and the tension spring 4135 pulls the movable plate 4131 to reset. At this time, the movable plate 4131 uses the liquid hole 4136 to squeeze the sewage again.
[0070] S4. When the movable plate 4131 moves back and forth and uses the liquid hole 4136 to inject sewage, the movable plate 4131 filters the flocculants and solids in the sewage through the liquid hole 4136. When the movable plate 4131 reaches the sewage outlets 41379 on both sides, the slope block 41375 is inserted into the transverse groove 41371 along the notch 41374, and squeezes the transverse bolt 41372 and the closing plate 41377 to move, so that the closing plate 41377 closes the liquid hole 4136. At the same time, the movable plate 4131 squeezes the baffle 413711 along the push frame 413713 to open the sewage outlet 41379. At this time, the sewage remaining between the movable plate 4131 and the water tank 1 flushes the debris filtered out by the filter hole downward and discharges it.
[0071] The above shows and describes the basic principles, main features and advantages of the present invention. Technical personnel in this industry should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are only preferred examples of the present invention and are not used to limit the present invention. Without departing from the spirit and scope of the present invention, the present invention may have various changes and improvements, which fall within the scope of the present invention to be protected. The scope of protection of the present invention is defined by the attached claims and their equivalents.
Claims
1. A textile wastewater treatment device for a textile machine, comprising a water tank (1), flanges (2) are fixedly arranged on both the front and rear sides of the water tank (1), and a reagent pipeline (3) is arranged on the right side of the water tank (1), characterized in that: The water tank (1) is provided with a disperser (4) matched with the medicine pipeline (3); The disperser (4) comprises a pipe seat (41) fixedly inserted into the right side of the water tank (1), and the pipe seat (41) penetrates the water tank (1) and extends into the interior thereof, and the pipe seats (41) are arranged in a rectangular array, and the plurality of pipe seats (41) are connected to the pharmaceutical pipeline (3); A telescopic tube (42) is slidably arranged inside the tube seat (41), and the telescopic tube (42) is composed of a plurality of tube bodies (421) which are slidably connected step by step from large to small according to the tube diameter; an elastic rope (43) is fixedly connected inside the tube seat (41) through a bracket, and the end of the elastic rope (43) away from the bracket is fixedly connected to the tube body (421) with the smallest tube diameter; The surface of the tube body (421) is provided with a medicine spraying hole (44), and the interior of the tube body (421) is provided with an annular groove (45) connected with the medicine spraying hole (44), the annular groove (45) is connected with the interior of the tube body (421) of the previous stage, and a control tube (46) is slidably connected in the annular groove (45), the end of the control tube (46) extends into the tube body (421) of the previous stage, and a clamping groove (47) is provided at the extended end of the control tube (46), an embedded hole (48) corresponding to the clamping groove (47) is provided on the inner wall of the tube body (421) of the previous stage, and a clamping block (49) is slidably connected in the embedded hole (48), a spring (410) is provided between the clamping block (49) and the embedded hole (48), and an oblique opening (411) is cut at one end of the clamping block (49) relative to the clamping groove (47); The control tube (46) is provided with a control hole (412) on its surface that matches the spray hole (44); The water tank (1) and the telescopic pipe (42) are provided with a squeezing component (413).
2. A textile wastewater treatment device for a textile machine according to claim 1, characterized in that: The squeezing component (413) comprises a movable plate (4131) slidably connected to the inside of the water tank (1), and the movable plate (4131) is provided with a plurality of plug holes (4132) corresponding to the telescopic tube (42), a magnetic head (4133) corresponding to the plug hole (4132) is fixedly provided at the end of the telescopic tube (42), and a magnetic pad (4134) matching the magnetic head (4133) is fixedly installed in the plug hole (4132); A tension spring (4135) is provided between the movable plate (4131) and the water tank (1), and a liquid hole (4136) is provided on the movable plate (4131); The water tank (1) and the movable plate (4131) are provided with a filtering assembly (4137).
3. A textile wastewater treatment device for a textile machine according to claim 2, characterized in that: The filtering assembly (4137) comprises a transverse groove (41371) provided on the top of the movable plate (4131), and a transverse bolt (41372) is slidably connected in the transverse groove (41371), a top spring (41373) is provided between the transverse groove (41371) and the transverse bolt (41372), a notch (41374) communicating with the transverse groove (41371) is provided on the side surface of the movable plate (4131), two slope blocks (41375) corresponding to the notch (41374) are fixedly provided on the side surface of the water tank (1), and the slope blocks (41375) are configured as a trapezoidal structure matched with the transverse bolt (41372); The movable plate (4131) is provided with a plurality of plate grooves (41376) in communication with the transverse groove (41371), and the plate grooves (41376) are in communication with the liquid hole (4136), and a closing plate (41377) matching with the liquid hole (4136) is arranged in the plate groove (41376), and the closing plate (41377) is fixedly connected with the transverse bolt (41372); The closing plate (41377) is provided with a through hole (41378) that matches the liquid hole (4136); The bottom of the water tank (1) is provided with two sewage outlets (41379) which are connected to the interior of the water tank, and the two sewage outlets (41379) are symmetrically distributed along the water tank (1); The inner side walls on both sides of the water tank (1) are provided with embedded grooves (413710), and a baffle (413711) matching with the sewage outlet (41379) on the same side is slidably connected in the embedded groove (413710), and a spring piece (413712) matching with the baffle (413711) is arranged in the embedded groove (413710), and the spring piece (413712) pushes the baffle (413711) to close the sewage outlet (41379); The baffle plate (413711) is fixedly connected to one side of the movable plate (4131) with a push frame (413713) that matches the baffle plate (413711).
4. A textile wastewater treatment device for a textile machine according to claim 2, characterized in that: The magnetic head (4133) is screwed onto the telescopic tube (42) via threads.
5. The textile wastewater treatment device for a textile machine according to claim 2, characterized in that: An adhesive film matching the telescopic tube (42) and the magnetic head (4133) is arranged at the opening of the insertion hole (4132).
6. A textile wastewater treatment device for a textile machine according to claim 2, characterized in that: The two ends of the elastic rope (43) are respectively fixed to the bracket and the magnetic head (4133) by bolts.
7. The textile wastewater treatment device for a textile machine according to claim 3, characterized in that: Two limit blocks that cooperate with the movable plate (4131) and the tension spring (4135) are fixedly arranged on the inner bottom wall of the water tank (1).
8. A method for using a textile wastewater treatment device for a textile machine, using the textile wastewater treatment device for a textile machine as claimed in any one of claims 1 to 7, characterized in that: The steps include: S1, transport the sewage in the textile workshop to the water tank (1), then inject the sewage treatment agent into the sewage through the agent pipeline (3), and finally discharge the treated sewage; S2, the medicine input from the medicine pipeline (3) enters the telescopic tube (42) along the tube seat (41), and the tube bodies (421) of each level are pushed out by the hydraulic pressure, so that the telescopic tube (42) stretches the elastic rope (43) to stretch until the clamping groove (47) and the clamping block (49) are aligned. At this time, the clamping block (49) is embedded in the clamping groove (47) to clamp the control tube (46), and the continuously moving tube body (421) causes the control tube (46) to move relatively, so that the control hole (412) and the medicine spraying hole (44) are aligned. At this time, the medicine in the telescopic tube (42) can be sprayed into the sewage from the medicine spraying hole (44); S3, the telescopic tube (42) is fully extended by hydraulic pressure, the magnetic head (4133) at the end of the telescopic tube (42) is inserted into the socket (4132) and magnetically connected to the magnetic pad (4134), and when the telescopic tube (42) stops liquid recovery, the movable plate (4131) is synchronously pulled from one side of the water tank (1) to the other side, and the movable plate (4131) is used to squeeze the sewage inside the water tank (1), so that the sewage is squeezed out from one side of the water tank (1) along the liquid hole (4136) to the other side of the water tank (1), until the movable plate (4131) is intercepted by the pipe seat (41), the telescopic tube (42) is pulled out of the socket (4132), and the tension spring (4135) pulls the movable plate (4131) to reset, and at this time the movable plate (4131) uses the liquid hole (4136) to squeeze the sewage again; S4. When the movable plate (4131) moves back and forth and uses the liquid hole (4136) to inject sewage, the movable plate (4131) filters the flocculants and solids in the sewage through the liquid hole (4136). When the movable plate (4131) reaches the sewage outlets (41379) on both sides, the slope block (41375) is inserted into the transverse groove (41371) along the notch (41374) and squeezes the transverse bolt (41372) and the closing plate (41377) to move, so that the closing plate (41377) closes the liquid hole (4136). At the same time, the movable plate (4131) squeezes the baffle plate (413711) along the push frame (413713) to open the sewage outlet (41379). At this time, the sewage remaining between the movable plate (4131) and the water tank (1) flushes the debris filtered out by the filter hole downward and discharges it.
Citation Information
Patent Citations
A textile printing and dyeing wastewater treatment device
CN116947129B