Cleaning fluid separating and purifying equipment for textile production of garment factory
The magnetic field combined with the C-shaped separation tube and the strong magnetic circle adsorbs precipitated impurities and the flow guide bucket filtering fine fibers, which solves the problem of low separation efficiency of existing equipment and achieves rapid and efficient separation and purification of cleaning liquid.
Patent Information
- Application Number
- CN202510515108.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-23
- Publication Date
- 2025-07-11
AI Technical Summary
The existing cleaning liquid separation and purification equipment requires long-term precipitation and filtration during use. The filter cannot effectively filter the fine plush fibers, and the separation and purification efficiency is low, so it cannot be used quickly.
The C-shaped separation tube and strong magnetic circle and magnetic block are combined, and the precipitated impurities are absorbed by magnetic field, and the fine fibers are filtered by combining the diversion bucket and Velcro hook surface to achieve rapid separation and purification.
It improves the separation efficiency and purification effect of the cleaning liquid, and can quickly separate and purify the cleaning liquid to meet the needs of immediate use.
Smart Images

Figure CN120285668A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of separation equipment, and particularly relates to a cleaning liquid separation and purification device for textile production in a garment factory. Background Art
[0002] The textile and garment manufacturing industry mainly uses textile fabrics as raw materials, and cuts and sews various men's, women's and children's ready-to-wear clothes. Before and after the production of clothes in a garment factory, it is necessary to clean the fabrics and clothes to clean and disinfect the oil stains, dust and bacteria contaminated during garment production. At the same time, the possible residues of the fabrics during the production process can be removed by washing, which can improve the hand feeling and comfort of the fabrics and control the shrinkage rate of the fabrics.
[0003] After the existing cleaning liquid finishes cleaning the clothes and fabrics, it will be collected and filtered. After the concentration of the purified cleaning liquid is adjusted, it can be used to clean the clothes and fabrics again. However, when the existing cleaning liquid separation and purification equipment is used, a large amount of cleaning liquid is poured into the separation tank, so that the cleaning liquid precipitates in the separation tank, and the cleaning liquid is filtered through a filter screen. When in use, the cleaning liquid needs to be precipitated and filtered for a long time, and the filter screen cannot play a good filtering role for the fine fluff fibers in the cleaning liquid, and the separation and purification efficiency is low. Only after the cleaning liquid is separated and purified and removed from the separation tank can the remaining cleaning liquid to be separated be placed again. When in use, the cleaning liquid cannot be quickly separated and purified, which is convenient for the staff to use the separated and purified cleaning liquid in time. Summary of the Invention
[0004] The purpose of the present invention is to solve the deficiencies existing in the prior art, and to propose a cleaning liquid separation and purification device for textile production in a garment factory.
[0005] In order to achieve the above purpose, the present invention adopts the following technical scheme: A cleaning liquid separation and purification device for textile production in a garment factory, including a tank body. A number of C-shaped separation tubes are installed inside the tank body. An arc-shaped fixed tube is installed between the two ends of the separation tube. The two ends of the fixed tube are respectively connected to the two ends of the separation tube. A C-shaped strong magnetic ring is slidably installed on the outer wall of the separation tube. A strong magnetic block is slidably installed inside the separation tube. A number of filter holes are formed through one end of the strong magnetic block. A number of water delivery holes are formed on the outer wall of the separation tube. Moving plates are slidably installed at both ends inside the fixed tube. A spring is installed inside the fixed tube, and the two ends of the spring are respectively installed on the opposite surfaces of the two moving plates.
[0006] Preferably, a water inlet pipe is installed inside the tank body. A plurality of support pipes matching the separation pipes are installed on the outer walls on both sides of the water inlet pipe. One end of the support pipe is communicated with the inside of the water inlet pipe, and the other end is communicated with the inside of the separation pipe. Connecting holes are opened at the top and bottom ends of the inner wall of the fixed pipe. Sewage pipes are installed at positions close to the connecting holes on the outer wall of the fixed pipe. The two ends of the sewage pipe are respectively communicated with the connecting holes on two adjacent fixed pipes.
[0007] Preferably, a tank cover is installed on the top of the tank body. The top end of the sewage pipe at the uppermost position is installed at the bottom of the tank cover. The bottom end of the sewage pipe at the lowermost position penetrates through the tank body. The bottom end of the water inlet pipe is installed at the inner bottom of the tank body. The top end of the water inlet pipe penetrates through the tank cover and is provided with a connecting sleeve.
[0008] Preferably, a guiding groove is opened on the outer wall of the separation pipe in the length direction. Electric sliders are installed on the inner wall of the strong magnetic ring. The electric sliders are slidably installed inside the guiding groove. Blocks are installed at both ends of the inner wall of the strong magnetic ring. The blocks are slidably installed inside the guiding groove, and the two blocks are respectively located on both sides of the electric slider.
[0009] Preferably, a sliding groove is opened on the inner wall of the fixed pipe in the length direction. Guide blocks are installed on the outer walls of the two moving plates. The two guide blocks are respectively slidably installed at both ends inside the sliding groove. The spring is located between the two connecting holes on the same fixed pipe. The two moving plates are respectively located at both ends of the connecting hole.
[0010] Preferably, mounting sleeves are installed on the inner walls at both ends of the tank body. A plurality of arc-shaped diversion hoppers are installed on the inner walls of the mounting sleeves. Fixing holes are opened at the inner bottom of the diversion hoppers. Hook surfaces of magic tapes are installed on the inner walls of the diversion hoppers. An annular clamping groove is opened in the middle of the inner wall of the tank body. An annular fixing ring is installed inside the clamping groove. The side of the fixing ring close to the inner wall is located between the two mounting sleeves.
[0011] Preferably, an annular protective plate is installed on the side of the top of the fixing ring close to the inner wall. A plurality of mounting holes are opened on the side of the top of the fixing ring close to the protective plate. Water quality detection heads are installed on the inner walls at both ends of the mounting holes.
[0012] Preferably, an annular diversion plate is installed at the inner bottom of the tank body. A plurality of through holes are opened at the bottom end of the outer wall of the diversion plate. A water outlet pipe is installed at the bottom end of the tank body. The top end of the water outlet pipe penetrates into the inside of the tank body. The top end of the water outlet pipe is located inside the annular diversion plate.
[0013] Preferably, an annular convex block is provided in the middle of the outer wall of the tank body. A plurality of tooth grooves are provided at the bottom end of the convex block in the length direction. A support ring is movably installed on the outer wall of the tank body at the bottom end of the convex block. A plurality of support frames are installed at the bottom end of the support ring. Protection grooves are opened at the top ends of two of the support frames close to the side of the tank body.
[0014] Preferably, the top end of the protective groove penetrates through the support ring. Motors are installed on the outer walls at both ends of the support ring. The output shafts of the motors penetrate into the interior of the protective groove and are provided with gears. The tops of the gears penetrate through the protective groove and are meshed with a number of tooth grooves.
[0015] Compared with the prior art, the beneficial effects of the present invention are as follows: When in use in the present invention, the water pressure inside the water inlet pipe and the separation pipe will gradually increase. The cleaning liquid will be sprayed through the water delivery holes to the inner wall position of the mounting sleeve on the inner wall of the tank body. The impurities with heavier volume or mass contained in the cleaning liquid will precipitate inside the separation pipe. The strong magnetic ring adsorbs with the magnetic field of the strong magnetic block located inside the separation pipe through its own magnetic field. When the strong magnetic block moves slowly, the cleaning liquid between the moving direction of the strong magnetic block and the fixed pipe will be squeezed. When the strong magnetic block is about to approach the moving plate and there is only impurities and a small amount of cleaning liquid between the strong magnetic block and the moving plate, the strong magnetic block quickly pushes the cleaning liquid and the moving plate, and the connection hole is exposed. The small amount of cleaning liquid and the precipitated impurities squeezed by the strong magnetic block will flow into the interior of the sewage discharge pipe through the connection hole and flow to the outside of the tank body along the sewage discharge pipe. When in use, the water inlet pipe can convey the cleaning liquid into a number of separation pipes at the same time, and the separation pipes of a number of independent separation systems can separate the cleaning liquid at the same time, making the separation effect of the cleaning liquid better and the efficiency higher.
[0016] In the present invention, the flow of the cleaning liquid on the inner wall of the mounting sleeve will enter the interiors of a number of diversion hoppers on the inner wall of the mounting sleeve. Hook surfaces provided with hard bristles of magic tapes are installed on the inner walls of the diversion hoppers. When the cleaning liquid enters the interiors of the diversion hoppers and flows out of the diversion hoppers through the fixed holes, the hard fibers on the surface of the magic tape hook surfaces on the inner walls of the diversion hoppers will hook the fine textile fluff contained in the cleaning liquid, so that the fine fluff in the cleaning liquid is fixed on the surface of the magic tape hook surfaces. When in use, the separation pipe can separate and clean the impurities with larger volume and heavier mass in the cleaning liquid, and the diversion hopper can filter and intercept the fine fluff in the cleaning liquid, making the separation and purification effect of the cleaning liquid better, the separated impurities more comprehensive. At the same time, a number of separation pipes and a number of diversion hoppers on the inner walls of the two mounting sleeves can separate and purify a large amount of cleaning liquid at the same time, making the separation and purification efficiency of the cleaning liquid higher.
[0017] When in use in the present invention, the support pipe can be used to transport the cleaning liquid inside the water inlet pipe to the inside of the separation pipe, and can also support and fix several separation pipes. At the same time, several separation pipes can be used for cleaning liquid separation and purification during use, and several separation pipes are independent cleaning liquid separation and purification systems during use. The cleaning liquid separation of several separation pipes does not affect each other. However, the fixed pipes on several separation pipes are connected to each other through the sewage pipe, so that the fixed pipes on several separation pipes can cooperate with each other, and the sewage pipe is used for discharging impurities inside several separation pipes at the same time.
[0018] When the cleaning liquid flows through the installation hole in the present invention, the water quality detection head on the inner wall of the installation hole can detect the water quality of the cleaning liquid flowing on its outer wall. When the water quality reaches the specified standard, the cleaning liquid flowing out of the installation hole directly flows to the inner bottom of the tank body, and the guide plate can play a role in slowing down the flow rate of the cleaning liquid flowing to the inner bottom of the tank body, so that the cleaning liquid passes through the through hole and then flows to the outside through the water outlet pipe. Brief Description of the Drawings
[0019] Figure 1 is a three-dimensional view of a cleaning liquid separation and purification device for textile production in a garment factory proposed by the present invention; Figure 2 is a cross-sectional view of the tank body of a cleaning liquid separation and purification device for textile production in a garment factory proposed by the present invention; Figure 3 is a schematic diagram of the internal structure of the tank body of a cleaning liquid separation and purification device for textile production in a garment factory proposed by the present invention; Figure 4 is a schematic diagram of the installation structure of the water inlet pipe of a cleaning liquid separation and purification device for textile production in a garment factory proposed by the present invention; Figure 5 is a schematic diagram of the installation structure of the fixed pipe of a cleaning liquid separation and purification device for textile production in a garment factory proposed by the present invention; Figure 6 is a cross-sectional view of the separation pipe of a cleaning liquid separation and purification device for textile production in a garment factory proposed by the present invention; Figure 7 is a cross-sectional view of the fixed pipe of a cleaning liquid separation and purification device for textile production in a garment factory proposed by the present invention; Figure 8 is a schematic diagram of the structure of the strong magnet ring of a cleaning liquid separation and purification device for textile production in a garment factory proposed by the present invention; Figure 9 is a schematic diagram of the installation sleeve structure of a cleaning liquid separation and purification device for textile production in a garment factory proposed by the present invention; Figure 10Schematic diagram of the fixing ring structure of a cleaning liquid separation and purification device for textile production in a garment factory proposed by the present invention; Figure 11 Schematic diagram of the support ring structure of a cleaning liquid separation and purification device for textile production in a garment factory proposed by the present invention.
[0020] In the figure: 1, tank body; 2, tank cover; 3, support ring; 4, support frame; 5, motor; 6, water inlet pipe; 7, fixing ring; 8, sewage discharge pipe; 9, separation pipe; 10, guide plate; 11, through hole; 12, tooth groove; 13, mounting sleeve; 14, guide hopper; 15, support pipe; 16, fixing pipe; 17, strong magnetic ring; 18, water delivery hole; 19, guide groove; 20, strong magnetic block; 21, filtering hole; 22, moving plate; 23, spring; 24, connection hole; 25, sliding groove; 26, guide block; 27, electric slider; 28, stop block; 29, fixing hole; 30, mounting hole; 31, water quality detection head; 32, protection plate; 33, protection groove; 34, gear; 35, connection sleeve; 36, water outlet pipe. Specific embodiments
[0021] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.
[0022] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present invention.
[0023] Refer to Figures 1-11 , a cleaning liquid separation and purification device for textile production in a garment factory, including a tank body 1. A number of C-shaped separation pipes 9 are installed inside the tank body 1. An arc-shaped fixing pipe 16 is installed between the two ends of the separation pipe 9. The two ends of the fixing pipe 16 are respectively connected to the two ends of the separation pipe 9. A C-shaped strong magnetic ring 17 is slidably installed on the outer wall of the separation pipe 9. A strong magnetic block 20 is slidably installed inside the separation pipe 9. A number of filtering holes 21 are opened through one end of the strong magnetic block 20. A number of water delivery holes 18 are opened on the outer wall of the separation pipe 9. Moving plates 22 are slidably installed at both ends inside the fixing pipe 16. A spring 23 is installed inside the fixing pipe 16. The two ends of the spring 23 are respectively installed on the opposite surfaces of the two moving plates 22.
[0024] As a technical optimization solution of the present invention, a water inlet pipe 6 is installed inside the tank body 1. A plurality of support pipes 15 matching the separation pipe 9 are installed on the outer walls on both sides of the water inlet pipe 6. One end of the support pipe 15 is communicated with the inside of the water inlet pipe 6, and the other end is communicated with the inside of the separation pipe 9. Connection holes 24 are opened at the top and bottom ends of the inner wall of the fixed pipe 16. Sewage pipes 8 are installed at positions on the outer wall of the fixed pipe 16 close to the connection holes 24. The two ends of the sewage pipe 8 are respectively communicated with the connection holes 24 on two adjacent fixed pipes 16. When the impurities precipitated inside the separation pipe 9 are pushed by the strong magnetic block 20 and move into the inside of the fixed pipe 16, they can enter the inside of the sewage pipe 8 through the connection holes 24 and be discharged from the tank body 1 through the lowermost sewage pipe 8. As a technical optimization solution of the present invention, a tank cover 2 is installed on the top of the tank body 1. The top end of the uppermost sewage pipe 8 is installed at the bottom of the tank cover 2. The bottom end of the lowermost sewage pipe 8 penetrates through the tank body 1. The bottom end of the water inlet pipe 6 is installed at the inner bottom of the tank body 1. The top end of the water inlet pipe 6 penetrates through the tank cover 2 and is installed with a connecting sleeve 35. When in use, a plurality of sewage pipes 8 are connected to each other through a plurality of fixed pipes 16, which not only improves the stability of the sewage pipes 8 but also supports the plurality of fixed pipes 16. At the same time, the uppermost and lowermost sewage pipes 8 are respectively connected to the tank cover 2 and the inner bottom of the tank body 1, making the sewage pipes 8 more stable when in use.
[0025] As a technical optimization solution of the present invention, a guiding groove 19 is opened on the outer wall of the separation pipe 9 in the length direction. An electric slider 27 is installed on the inner wall of the strong magnetic ring 17. The electric slider 27 is slidably installed inside the guiding groove 19. Block 28 is installed at both ends of the inner wall of the strong magnetic ring 17. The block 28 is slidably installed inside the guiding groove 19, and the two blocks 28 are respectively located on both sides of the electric slider 27. When in use, the electric slider 27 can drive the strong magnetic ring 17 to move on the outer wall of the separation pipe 9, and the blocks 28 at both ends of the electric slider 27 can clean the water inside the guiding groove 19 when the electric slider 27 moves, preventing the water inside the guiding groove 19 from affecting the use of the electric slider 27.
[0026] As a technical optimization solution of the present invention, a sliding groove 25 is opened on the inner wall of the fixed pipe 16 in the length direction. Guide blocks 26 are installed on the outer walls of the two moving plates 22. The two guide blocks 26 are respectively slidably installed at both ends inside the sliding groove 25. The spring 23 is located between the two connection holes 24 on the same fixed pipe 16. The two moving plates 22 are respectively located at both ends of the connection hole 24. When in use, the sliding groove 25 can respectively guide and position-limit the movement of the two moving plates 22 through the two guide blocks 26, preventing the moving plates 22 from being pushed into the inside of the separation pipe 9 by the elasticity of the spring 23.
[0027] As a technical optimization solution of the present invention, mounting sleeves 13 are installed on the inner walls at both ends of the tank body 1. A number of arc-shaped flow guiding hoppers 14 are installed on the inner wall of the mounting sleeve 13. A fixing hole 29 is provided at the inner bottom of the flow guiding hopper 14. A hook surface of a magic tape is installed on the inner wall of the flow guiding hopper 14. A circular card slot is provided in the middle of the inner wall of the tank body 1. A circular fixing ring 7 is installed inside the card slot. One side of the fixing ring 7 close to the inner wall is located between the two mounting sleeves 13; when the water sprayed from the water delivery hole 18 sprays on the inner wall of the mounting sleeve 13, it will slide down along the inner wall of the mounting sleeve 13 into the interior of the flow guiding hopper 14, and the hook surface with hard barbed hairs of the magic tape installed on the inner wall of the flow guiding hopper 14 can intercept and fix the fluff in the water.
[0028] As a technical optimization solution of the present invention, a circular protective plate 32 is installed on one side of the top of the fixing ring 7 close to the inner wall. A number of mounting holes 30 are provided on one side of the top of the fixing ring 7 close to the protective plate 32. Water quality detection heads 31 are installed on the inner walls at both ends of the mounting holes 30; when the water on the inner wall of the upper mounting sleeve 13 flows through the mounting holes 30 to the lower part, the water quality detection heads 31 on the inner wall of the mounting holes 30 can detect the water flowing through its surface.
[0029] As a technical optimization solution of the present invention, a circular flow guiding plate 10 is installed at the inner bottom of the tank body 1. A number of through holes 11 are provided at the outer bottom end of the flow guiding plate 10. A water outlet pipe 36 is installed at the bottom end of the tank body 1. The top end of the water outlet pipe 36 penetrates into the interior of the tank body 1. The top end of the water outlet pipe 36 is located inside the circular flow guiding plate 10; the flow guiding plate 10 can play a certain role in slowing down the flow of the water flowing to the inner bottom of the tank body 1, preventing the water from flowing into the water outlet pipe 36 too fast and causing the situation of air bubbles.
[0030] As a technical optimization solution of the present invention, a circular convex block is provided in the middle of the outer wall of the tank body 1. A number of tooth grooves 12 are provided at the bottom end of the convex block in the length direction. A support ring 3 is movably installed on the outer wall of the tank body 1 at the bottom end of the convex block. A number of support frames 4 are installed at the bottom end of the support ring 3. Protective grooves 33 are provided at the top ends of two of the support frames 4 close to one side of the tank body 1; during use, the staff can support and fix the position of the tank body 1 through the support frames 4 and the support ring 3, and at the same time it is convenient for the staff to install and disassemble the tank body 1.
[0031] As a technical optimization solution of the present invention, the top end of the protective groove 33 penetrates through the support ring 3. Motors 5 are installed on the outer walls at both ends of the support ring 3. The output shafts of the motors 5 penetrate into the interior of the protective groove 33 and are installed with gears 34. The top ends of the gears 34 penetrate through the protective groove 33 and are meshed with a number of tooth grooves 12; during use, the staff can adjust the installation angle of the tank body 1 according to the usage situation.
[0032] When the present invention is in use, the staff connects the conveying pipe used in the outside world for conveying the used cleaning liquid with the connecting sleeve 35 at the top of the water inlet pipe 6, so as to convey the cleaning liquid to be separated and purified into the inside of the water inlet pipe 6. When the water inlet pipe 6 conveys the cleaning liquid into the inside of the tank body 1 and conveys it to the inner bottom of the tank body 1. Since the bottom end of the water inlet pipe 6 abuts against the inner bottom of the tank body 1, when the cleaning liquid inside the water inlet pipe 6 gradually increases, the cleaning liquid inside the water inlet pipe 6 will gradually be conveyed into the inside of the separation pipe 9 through the support pipe 15. During use, the support pipe 15 can not only be used to convey the cleaning liquid inside the water inlet pipe 6 into the inside of the separation pipe 9, but also support and fix several separation pipes 9. At the same time, several separation pipes 9 can all be used for separating and purifying the cleaning liquid during use, and several separation pipes 9 are all independent cleaning liquid separation and purification systems during use. The cleaning liquid separation of several separation pipes 9 does not affect each other. However, the fixed pipes 16 on several separation pipes 9 are connected to each other through the sewage discharge pipe 8, so that the fixed pipes 16 on several separation pipes 9 can cooperate with each other, and the sewage discharge pipe 8 can be used for discharging impurities inside several separation pipes 9 at the same time.
[0033] When the cleaning liquid is conveyed into the inside of the separation pipe 9 and the outside world still continuously injects the cleaning liquid into the inside of the water inlet pipe 6, the water pressure inside the water inlet pipe 6 and the separation pipe 9 will gradually increase, so that the cleaning liquid inside the separation pipe 9 will be sprayed towards the inner wall position of the mounting sleeve 13 on the inner wall of the tank body 1 through the water delivery holes 18 on the outer wall of the separation pipe 9. The impurities with heavier volume or mass contained in the cleaning liquid will precipitate inside the separation pipe 9 and will not be sprayed towards the inner wall of the mounting sleeve 13 through the water delivery holes 18. When the separation pipe 9 separates and purifies the cleaning liquid, the electric slider 27 drives the strong magnetic ring 17 to slide on the outer wall of the separation pipe 9. When the electric slider 27 slides inside the guide groove 19, the stoppers 28 at both ends of the inner wall of the strong magnetic ring 17 will also slide inside the guide groove 19 and push the water inside the guide groove 19 out of the guide groove 19, preventing the remaining water inside the guide groove 19 from affecting the use of the electric slider 27 when the electric slider 27 moves inside the guide groove 19.
[0034] When the strong magnetic ring 17 slides on the outer wall of the separation tube 9, the strong magnetic ring 17 adsorbs with the magnetic field of the strong magnetic block 20 located inside the separation tube 9 through its own magnetic field. When the strong magnetic ring 17 moves, it can drive the strong magnetic block 20 to move in one end direction inside the separation tube 9. When the strong magnetic block 20 moves slowly, the cleaning liquid between the moving direction of the strong magnetic block 20 and the fixed tube 16 will be squeezed, increasing the water pressure of the cleaning liquid gradually. Then the cleaning liquid will move to the other side of the strong magnetic block 20 through the filter holes 21 on the strong magnetic block 20. During use, the water delivery holes 18 and the filter holes 21 on the outer wall of the separation tube 9 can convey the squeezed water simultaneously. At the same time, when the strong magnetic block 20 moves, it pushes the impurities precipitated at the inner bottom of the separation tube 9 towards the fixed tube 16.
[0035] When the strong magnetic block 20 squeezes the cleaning liquid, it can push the moving plate 22 at one end inside the fixed tube 16 to move through the squeezed cleaning liquid, and make the moving plate 22 squeeze and move towards the spring 23. When the strong magnetic block 20 is about to approach the moving plate 22, and there are only impurities and a small amount of cleaning liquid between the strong magnetic block 20 and the moving plate 22, the electric slider 27 can quickly drive the strong magnetic ring 17 and the strong magnetic block 20 to move, so that the strong magnetic block 20 quickly pushes the cleaning liquid and the moving plate 22. Then the moving plate 22 will approach another moving plate 22 at the other end inside the fixed tube 16, and the connecting hole 24 will be exposed. Then the small amount of cleaning liquid and the precipitated impurities squeezed by the strong magnetic block 20 will flow into the inside of the sewage pipe 8 through the connecting hole 24, and flow along the sewage pipe 8 to the outside of the tank body 1.
[0036] During use, both ends of the fixed tube 16 are respectively connected to both ends of the C-shaped separation tube 9, so that the fixed tubes 16 on several separation tubes 9 are connected to each other through the sewage pipe 8. When in use, the sewage pipe 8 can not only clean the separated impurities inside several separation tubes 9 through the fixed tube 16, but also cooperate with the water inlet pipe 6 to support and fix the fixed tube 16 and the separation tube 9. During use, each separation tube 9 is an independent cleaning liquid separation and purification system, and the separation and purification of the cleaning liquid between several separation tubes 9 do not affect each other. However, several separation tubes 9 are connected to each other through the fixed tube 16 and the sewage pipe 8, so that the separation and purification of several separation tubes 9 that do not affect each other converge together when cleaning the impurities, and the impurities inside several separation tubes 9 can be cleaned simultaneously through the sewage pipe 8.
[0037] After the cleaning liquid flowing out of the water delivery holes 18 on the outer wall of the separation pipe 9 is sprayed on the inner wall of the mounting sleeve 13, as the cleaning liquid flows on the inner wall of the mounting sleeve 13, it will enter the interiors of several diversion hoppers 14 on the inner wall of the mounting sleeve 13. Hook surfaces with rigid barbs are installed on the inner walls of the diversion hoppers 14 by means of Velcro. When the cleaning liquid enters the interiors of the diversion hoppers 14 and flows out of the diversion hoppers 14 through the fixing holes 29, the rigid fibers on the surface of the Velcro hook surfaces on the inner walls of the diversion hoppers 14 will grab and hook the fine textile fluff contained in the cleaning liquid, so that the fine fluff inside the cleaning liquid is fixed on the surface of the Velcro hook surfaces. During use, the separation pipe 9 can separate and clean the impurities with larger volume and heavier mass in the cleaning liquid, while the diversion hoppers 14 can filter and intercept the fine fluff in the cleaning liquid, making the separation and purification effect of the cleaning liquid better, the separated impurities more comprehensive. At the same time, several separation pipes 9 and several diversion hoppers 14 on the inner walls of the two mounting sleeves 13 can simultaneously separate and purify a large amount of cleaning liquid, making the separation and purification efficiency of the cleaning liquid higher.
[0038] After the cleaning liquid is purified by the diversion hoppers 14 on the inner wall of the upper mounting sleeve 13 and flows to the top of the fixing ring 7, it will flow to the inner bottom of the tank body 1 through the mounting holes 30 at the top of the fixing ring 7. When the cleaning liquid flows through the mounting holes 30, the water quality detection head 31 on the inner wall of the mounting holes 30 can detect the water quality of the cleaning liquid flowing on its outer wall. When the water quality reaches the specified standard, the cleaning liquid flowing out of the mounting holes 30 directly flows to the inner bottom of the tank body 1, and the guide plate 10 can play a role in slowing down the flow rate of the cleaning liquid flowing to the inner bottom of the tank body 1, so that the cleaning liquid passes through the through holes 11 and then flows to the outside through the water outlet pipe 36. During use, several diversion hoppers 14 on the inner walls of the two mounting sleeves 13 can all act on the cleaning liquid sprayed on the inner walls of the mounting sleeves 13, and several diversion hoppers 14 are staggered with each other, so that the cleaning liquid can slide down to the diversion hoppers 14 when flowing on the inner wall of the mounting sleeve 13, and can evenly separate and purify the cleaning liquid during use.
[0039] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.
Claims
1. A cleaning liquid separation and purification device for textile production in a garment factory, including a tank body (1), characterized in that, Separation tube (9); several C-shaped separation tubes (9) are installed inside the tank body (1); Fixed tube (16); an arc-shaped fixed tube (16) is installed between the two ends of the separation tube (9), and the two ends of the fixed tube (16) are respectively connected to the two ends of the separation tube (9); Powerful magnetic ring (17), a C-shaped powerful magnetic ring (17) is slidably installed on the outer wall of the separation tube (9), a powerful magnetic block (20) is slidably installed inside the separation tube (9), and several filter holes (21) are opened through one end of the powerful magnetic block (20); Several water delivery holes (18) are opened on the outer wall of the separation tube (9), and a sewage discharge mechanism is arranged inside the fixed tube (16).
2. The cleaning liquid separation and purification equipment for textile production in a garment factory according to claim 1, characterized in that, The sewage discharge mechanism includes two moving plates (22) respectively slidably installed at both ends inside the fixed tube (16); A spring (23) is installed inside the fixed tube (16), the two ends of the spring (23) are respectively installed on the opposite surfaces of the two moving plates (22), a water inlet pipe (6) is installed inside the tank body (1), and several support tubes (15) matching the separation tubes (9) are installed on the outer walls on both sides of the water inlet pipe (6); one end of the support tube (15) is internally communicated with the inside of the water inlet pipe (6); The other end is internally communicated with the inside of the separation tube (9), connection holes (24) are opened at the top and bottom ends of the inner wall of the fixed tube (16), sewage discharge pipes (8) are installed on the outer wall of the fixed tube (16) near the connection holes (24), and the two ends of the sewage discharge pipe (8) are respectively communicated with the connection holes (24) on two adjacent fixed tubes (16).
3. The cleaning liquid separation and purification equipment for textile production in a garment factory according to claim 2, characterized in that, A tank cover (2) is installed on the top of the tank body (1), the top end of the sewage discharge pipe (8) at the uppermost position is installed at the bottom of the tank cover (2), the bottom end of the sewage discharge pipe (8) at the lowermost position penetrates through the tank body (1), the bottom end of the water inlet pipe (6) is installed at the inner bottom of the tank body (1), and the top end of the water inlet pipe (6) penetrates through the tank cover (2) and is installed with a connection sleeve (35).
4. A cleaning liquid separation and purification device for textile production in a garment factory according to claim 1, characterized in that, A guiding groove (19) is opened on the outer wall of the separation tube (9) in the length direction, an electric slider (27) is installed on the inner wall of the powerful magnetic ring (17), and the electric slider (27) is slidably installed inside the guiding groove (19); Blocks (28) are installed at both ends of the inner wall of the powerful magnetic ring (17), the blocks (28) are slidably installed inside the guiding groove (19), and the two blocks (28) are respectively located on both sides of the electric slider (27).
5. The cleaning liquid separation and purification equipment for textile production in a garment factory according to claim 2, characterized in that, A sliding groove (25) is opened on the inner wall of the fixed tube (16) in the length direction, guiding blocks (26) are installed on the outer walls of the two moving plates (22), and the two guiding blocks (26) are respectively slidably installed at both ends inside the sliding groove (25); The spring (23) is located between the two connection holes (24) on the same fixed tube (16), and the two moving plates (22) are respectively located at both ends of the connection hole (24).
6. The cleaning liquid separation and purification equipment for textile production in a garment factory according to claim 1, characterized in that, Installation sleeves (13) are installed on the inner walls at both ends of the tank body (1). A number of arc-shaped flow guiding hoppers (14) are installed on the inner walls of the installation sleeves (13). Fixing holes (29) are formed in the inner bottom of the flow guiding hoppers (14), and the hook surfaces of magic tapes are installed on the inner walls of the flow guiding hoppers (14). A circular card slot is formed in the middle of the inner wall of the tank body (1), and a circular fixing ring (7) is installed inside the card slot. One side of the fixing ring (7) close to the inner wall is located between the two installation sleeves (13).
7. The cleaning liquid separation and purification equipment for textile production in a garment factory according to claim 6, characterized in that, One side of the top of the fixing ring (7) close to the inner wall is provided with a circular protection plate (32). A number of installation holes (30) are formed on one side of the top of the fixing ring (7) close to the protection plate (32). Water quality detection heads (31) are installed on the inner walls at both ends of the installation holes (30).
8. A cleaning liquid separation and purification device for textile production in a garment factory according to claim 1, characterized in that, A circular flow guiding plate (10) is installed on the inner bottom of the tank body (1). A number of through holes (11) are formed at the bottom end of the outer wall of the flow guiding plate (10). A water outlet pipe (36) is installed at the bottom end of the tank body (1). The top end of the water outlet pipe (36) penetrates into the interior of the tank body (1), and the top end of the water outlet pipe (36) is located inside the circular flow guiding plate (10).
9. The cleaning liquid separation and purification equipment for textile production in a garment factory according to claim 1, characterized in that, A circular convex block is provided in the middle of the outer wall of the tank body (1). A number of tooth grooves (12) are provided at the bottom end of the convex block in the length direction. A support ring (3) is movably installed on the outer wall of the tank body (1) at the bottom end of the convex block. A number of support frames (4) are installed at the bottom end of the support ring (3). Protection grooves (33) are formed at the top ends of one side of two of the support frames (4) close to the tank body (1).
10. The cleaning liquid separation and purification equipment for textile production in a garment factory according to claim 9, characterized in that, The top ends of the protection grooves (33) penetrate through the support ring (3). Motors (5) are installed on the outer walls at both ends of the support ring (3). The output shafts of the motors (5) penetrate into the interior of the protection grooves (33) and are provided with gears (34). The top ends of the gears (34) penetrate through the protection grooves (33) and are meshed with a number of tooth grooves (12).