Knitted fabric washing device

By designing a knitted fabric water washing device, the combination of washing nozzles, adsorption components and water filter components is used to solve the problem of insufficient desorption treatment effect of knitted fabrics, achieving efficient removal of slurry and moisture, and recycling of moisture.

CN119932832APending Publication Date: 2025-05-06HANGZHOU LINBO SAND WASHING CO LTD
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Patent Information

Application Number
CN202311468118.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-11-06
Publication Date
2025-05-06

AI Technical Summary

Technical Problem

When the knitted fabric is placed directly into the water tank of the washing machine for washing, the adhesion of the slurry is strong, resulting in the desizing effect being less obvious.

Method used

A knitted fabric water washing device is designed, including a slurry collection box, a washing panel, a washing nozzle and an adsorption assembly. The water washing nozzle sprays clean water, and the adsorption assembly generates adsorption force through hollow circular rollers and long slots. The breathable mesh plate filters the moisture on the slurry, and the water filter assembly recovers moisture and avoids clogging of the filter mesh hole.

Benefits of technology

Effectively removes slurry and moisture from the surface of knitted fabrics, improves the effect of desizing treatment, and realizes the recycling of moisture, avoiding clogging of filter mesh holes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of fabric washing, in particular to a knitted fabric washing device which comprises a slurry collecting box, a plurality of washing panels arranged at the top of the slurry collecting box, washing nozzles arranged between every two adjacent washing panels, and an adsorption assembly arranged between every two adjacent washing panels. The adsorption assembly comprises a plurality of hollow round rollers rotationally installed between every two adjacent washing panels and a plurality of long-strip-shaped through grooves formed in the peripheral sides of the hollow round rollers. The hollow round roller is fixedly provided with a breathable net plate through the long-strip-shaped through grooves in the peripheral side of the hollow round roller. The desizing device has the effect that the problem that the desizing treatment effect is not obvious due to the fact that knitted fabric is directly put into the water tank of the washing machine is solved.
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Description

Technical Field

[0001] The invention relates to the technical field of fabric washing, in particular to a knitted fabric washing device. Background Art

[0002] Knitted fabrics are new fabrics with good extensibility and elasticity. Knitted fabrics go through dyeing and finishing steps during the production process. Solvents and sizing will remain on some surfaces of knitted fabrics, and the washing process is an important process during the production of knitted fabrics.

[0003] At present, knitted fabrics must be desized before dyeing, mainly by directly placing the knitted fabrics into the water tank of a washing machine for washing. After the knitted fabrics pass through multiple water tanks in the washing machine, the size on the knitted fabrics is removed.

[0004] With regard to the above-mentioned related technologies, the knitted fabric is directly placed in the water tank of a washing machine for washing to achieve desizing treatment. However, the strong adhesion of the slurry can make the slurry stubbornly adhere to the surface of the knitted fabric, so directly placing the knitted fabric in the water tank of a washing machine for washing will result in the problem of unclear desizing effect. Summary of the invention

[0005] In order to improve the problem that the desizing effect is not obvious when knitted fabrics are directly placed in the water tank of a washing machine, the present application provides a knitted fabric washing device.

[0006] The present application provides a knitted fabric washing device, which adopts the following technical solution: A knitted fabric washing device comprises a slurry collecting box, a plurality of washing panels arranged on the top of the slurry collecting box, a washing nozzle arranged between two adjacent washing panels, an adsorption assembly is arranged between two adjacent washing panels, the adsorption assembly comprises a plurality of hollow circular rollers rotatably mounted between the two adjacent washing panels, and a plurality of long through grooves arranged on the circumference of the hollow circular roller; the hollow circular roller is fixedly mounted with a breathable mesh plate through the long through grooves on its circumference.

[0007] By adopting the above technical scheme, the nozzle of the water washing nozzle first sprays clean water toward the surface of the knitted fabric, and the hollow circular roller generates adsorption force on the surface of the knitted fabric through the long through grooves. The moisture on the surface of the knitted fabric is adsorbed by the hollow circular roller and directed to the inner side of the hollow circular roller. The slurry on the surface of the knitted fabric adheres to the surface of the breathable mesh plate. The function of the breathable mesh plate is to filter the moisture contained in the slurry on the surface of the knitted fabric to the inner side of the hollow circular roller.

[0008] Optionally, a water filter assembly for slurry filtering is provided in the slurry collection box, and the water filter assembly includes two long mesh grooves arranged on two opposite inner walls of the slurry collection box, and a water filter mesh plate fixedly connected between the two long mesh grooves; the long mesh grooves and the water filter mesh plate are both made of filter mesh material.

[0009] By adopting the above technical solution, the moisture on the surface of the knitted fabric is filtered by the water filter mesh and flows into the bottom of the slurry collection box. The slurry is concentrated and falls to the inner side of the long mesh groove through the high-pressure water flow and the water filter mesh, thereby achieving the effect of water recycling.

[0010] Optionally, a cleaning component is provided in the slurry collection box for minimizing blockage of filter holes on the surface of the water filter screen. The cleaning component includes a cleaning pipe installed on the inner side of the slurry collection box and a plurality of cleaning nozzles arranged around the cleaning pipe; the plurality of cleaning nozzles correspond to the surface of the water filter screen.

[0011] By adopting the above technical solution, the high-pressure water flow in the cleaning pipe is sprayed onto the surface of the water filter mesh through several cleaning nozzles, and the slurry passes through the high-pressure water flow and the water filter mesh and falls to the inner side of the long mesh groove, thereby avoiding the problem of clogging of the filter holes on the surface of the water filter mesh as much as possible.

[0012] Optionally, a power assembly for causing several of the hollow circular rollers to generate suction is provided on the outer side of the hollow circular roller, and the power assembly includes a booster water pump fixedly arranged on the side wall of the slurry collection box and a limiting cylinder rotatably arranged on the bottom end of the hollow circular roller, the hollow circular roller is connected to the corresponding limiting cylinder, the limiting cylinder is connected to the water inlet end of the booster water pump, and the water outlet end of the booster water pump is connected to the cleaning pipe.

[0013] By adopting the above technical solution, the booster water pump draws the filtered water inside the hollow circular roller to the inner side of the cleaning pipe through the delivery pipe, so that the hollow circular roller can generate adsorption force on the surface of the knitted fabric through the long through groove, so as to achieve the effect of high-pressure water flow in the cleaning pipe being sprayed onto the surface of the water filter screen through several cleaning nozzles.

[0014] Optionally, a flattening assembly is provided between two adjacent water-washing panels, and a plurality of flattening assemblies and a plurality of adsorption assemblies are arranged alternately, and the flattening assembly includes a plurality of flattening circular rollers rotatably installed between two adjacent water-washing panels.

[0015] By adopting the above technical solution, the two round rolling rollers of the same rolling assembly can rotate in opposite directions through the reversing gears, and the two round rolling rollers of the rolling assembly can avoid the problem of wrinkles on the knitted fabric as much as possible.

[0016] Optionally, a driving assembly for driving the flattening roller and the hollow roller to rotate is arranged between two adjacent water washing panels, and the driving assembly includes a compound turbine engine arranged at the top of the flattening roller and the hollow roller of the water washing panel close to the same side, and reversing gears coaxially arranged on several hollow rollers and several flattening rollers; the compound turbine engines on the flattening roller and the adjacent hollow rollers are arranged in series; the reversing gears of several hollow rollers of the adsorption assembly and the reversing gears of several flattening rollers of the flattening assembly are meshed.

[0017] By adopting the above technical solution, the compound turbine engines at the top of the flattened round roller and the top of the hollow round roller are arranged in series so that several compound turbine engines rotate synchronously, thereby achieving the effect of synchronous rotation of the flattened round roller and the hollow round roller.

[0018] Optionally, the water inlet of the compound turbine engine at the front end of the water washing panel is connected to an existing water supply device, and the water outlet of the compound turbine engine at the rear end of the water washing panel is connected to the water washing nozzle.

[0019] By adopting the above technical solution, the water supply equipment injects high-pressure water flow toward the compound turbine engine at the front end of the water washing panel, and the high-pressure water flow is then diverted to the inner side of several water washing nozzles through the water outlet end of the compound turbine engine at the end of the water washing panel, thereby achieving the effect of the nozzle of the water washing nozzle spraying clean water toward the surface of the knitted fabric.

[0020] Optionally, a cleaning assembly for scraping off slurry is provided on the circumferential side of the hollow circular roller, and the cleaning assembly includes a cleaning trough plate installed between the two water-washing panels, and a scraper is provided on the circumferential side of the cleaning trough plate and is arranged in close contact with the circumferential side of the hollow circular roller.

[0021] By adopting the above technical solution, the slurry adsorbed on the surface of the breathable mesh plate is cleaned by the scraper on the cleaning groove plate and falls onto the surface of the water filter mesh plate, thereby avoiding the problem of clogging of the filter holes on the surface of the breathable mesh plate as much as possible.

[0022] In summary, the present application includes at least one of the following beneficial technical effects: 1. The nozzle of the water washing nozzle first sprays clean water toward the surface of the knitted fabric. The hollow round roller generates adsorption force on the surface of the knitted fabric through the long through groove. The moisture on the surface of the knitted fabric is adsorbed by the hollow round roller and directed to the inner side of the hollow round roller. The slurry on the surface of the knitted fabric adheres to the surface of the breathable mesh plate. The function of the breathable mesh plate is to filter the moisture contained in the slurry on the surface of the knitted fabric to the inner side of the hollow round roller. 2. The booster water pump draws the filtered water inside the hollow roller to the inner side of the cleaning pipe through the delivery pipe, so that the hollow roller can generate adsorption force on the surface of the knitted fabric through the long through groove, so as to achieve the effect of high-pressure water flow in the cleaning pipe being sprayed to the surface of the water filter screen through several cleaning nozzles; 3. The high-pressure water flow in the cleaning pipe is sprayed onto the surface of the water filter screen through several cleaning nozzles. The slurry passes through the high-pressure water flow and the water filter screen and falls to the inner side of the long screen groove, so as to avoid the problem of clogging of the filter screen holes on the surface of the water filter screen. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 It is a schematic diagram of the structure of a knitted fabric washing device in an embodiment of the present application.

[0024] Figure 2 It is a structural schematic diagram of the position of the electric drain valve in the embodiment of the present application.

[0025] Figure 3 It is a schematic diagram of the explosion inside the slurry collection box in the embodiment of the present application.

[0026] Figure 4 It is a schematic diagram of an explosion between two water-wash panels in an embodiment of the present application.

[0027] Figure numerals: 11, slurry collection box; 13, cleaning pipeline; 14, long mesh groove; 15, water filter mesh plate; 16, cleaning nozzle; 17, electric drain valve; 18, water washing panel; 19, limit strip one; 20, limit strip two; 21, flattening component; 22, adsorption component; 23, flattening roller; 24, reversing gear; 25, hollow roller; 26, long through groove; 27, breathable mesh plate; 28, limit cylinder; 29, booster pump; 30, delivery pipeline; 31, cleaning groove plate; 32, compound turbine engine; 33, water washing nozzle. DETAILED DESCRIPTION

[0028] The following is combined with Figure 1-4 This application is described in further detail.

[0029] Reference Figure 1-3As shown, a knitted fabric washing device includes a pulp collection box 11 with a long cross section, and the pulp collection box 11 is horizontally erected on the ground through a plurality of legs. A cleaning pipe 13 is provided on the inner side of the pulp collection box 11 along the direction of its own length, and the left and right ends of the cleaning pipe 13 are respectively fixedly installed on the left and right inner side walls of the pulp collection box 11, and the front and rear inner side walls of the pulp collection box 11 are both provided with long mesh grooves 14 along the direction of their own length. A water filter mesh plate 15 is installed on the peripheral side of the cleaning pipe 13 along the direction of its own length. One water filter mesh plate 15 is provided on both the front and rear sides of the cleaning pipe 13, and the material of the long mesh groove 14 and the water filter mesh plate 15 is a filter mesh, and the two water filter mesh plates 15 correspond to the two long mesh grooves 14 respectively.

[0030] Reference Figure 2-4 As shown, the water filter mesh plate 15 is fixedly connected to the side wall close to the corresponding long mesh groove 14, and the water filter mesh plates 15 on the front and rear sides of the cleaning pipe 13 are tilted from top to bottom in the direction close to the corresponding long mesh groove 14. Cleaning nozzles 16 are provided on the circumferential side of the cleaning pipe 13 corresponding to the two water filter mesh plates 15. The cleaning nozzles 16 are connected to the inner side of the cleaning pipe 13, and a plurality of cleaning nozzles 16 are provided along the length direction of the cleaning pipe 13. An electric drain valve 17 for draining filtered water is fixedly installed on the left side wall of the slurry collection box 11, and a water washing panel 18 is fixedly installed in the vertical direction at the top of the slurry collection box 11 near the front and rear sides of the slurry collection box 11.

[0031] Reference Figure 2-4 As shown, the two washing panels 18 are fixedly connected with a limiting strip 19 and a limiting strip 20. The limiting strip 19 and the limiting strip 20 are arranged along the width direction of the slurry collection box 11 and are respectively arranged at the top and bottom of the washing panel 18. A plurality of limiting strips 19 and 20 are arranged along the length direction of the slurry collection box 11. A rolling assembly 21 and an adsorption assembly 22 are arranged between the adjacent side walls of the two washing panels 18. The plurality of rolling assemblies 21 and the plurality of adsorption assemblies 22 are arranged alternately. The rolling assembly 21 includes a rolling roller 23 vertically arranged between the two washing panels 18. The two ends of the rolling roller 23 are rotatably mounted on the adjacent side walls of the limiting strip 19 and the limiting strip 20.

[0032] Reference Figure 2-4As shown, the top ends of the two rolling rollers 23 of the same rolling assembly 21 both pass through the limiting strip 19 and are coaxially fixed with a reversing gear 24, and the reversing gears 24 of the two rolling rollers 23 of the same rolling assembly 21 are meshed. The adsorption assembly 22 includes a hollow roller 25 vertically arranged between the two washing panels 18, and the circumference of the hollow roller 25 is provided with a long through groove 26 along the direction of its own length, and the circumference of the hollow roller 25 is fixedly installed with a breathable mesh plate 27 through the long through groove 26. The two ends of the hollow roller 25 are respectively rotatably installed on the side walls close to the limiting strip 19 and the limiting strip 20, and the top ends of the two hollow rollers 25 of the same adsorption assembly 22 both pass through the limiting strip 19 and are coaxially fixed with a reversing gear 24.

[0033] Reference Figure 2-4 As shown, the counter gears 24 of the two hollow rollers 25 of the same adsorption assembly 22 are meshed, the bottom ends of the two hollow rollers 25 of the same adsorption assembly 22 both pass through the limiting strip plate 20 and are coaxially rotatably mounted with the limiting cylinder 28, a booster water pump 29 is fixedly mounted on the outer wall of the slurry collection box 11, the ends of the hollow rollers 25 are respectively connected with the corresponding limiting cylinders 28, and the limiting cylinders 28 are fixedly mounted on the bottom of the limiting strip plate 20. A plurality of limiting cylinders 28 are connected with the water inlet port of the booster water pump 29 through a conveying pipe 30, and the water outlet port of the booster water pump 29 is connected with the end of the cleaning pipe 13, and the outer circumferential surface of the hollow roller 25 is provided with a cleaning slot plate 31 along the direction of its own length.

[0034] Reference Figure 2-4 As shown, a scraper is provided on the side wall of the cleaning slot plate 31 near the corresponding hollow roller 25 and is in close contact with the outer circumference of the hollow roller 25. The two ends of the cleaning slot plate 31 are respectively fixedly mounted on the side walls near the limiting strip plate 1 19 and the limiting strip plate 2 20. The tops of several flattening rollers 23 and several hollow rollers 25 near the washing panel 18 on the same side are coaxially fixedly mounted with compound turbine engines 32, and several compound turbine engines 32 are fixedly mounted on the top of the limiting strip plate 1 19. The compound turbine engine 32 at the top of the flattening roller 23 and the compound turbine engine 32 at the top of the adjacent hollow roller 25 are arranged in series.

[0035] Reference Figure 2-4As shown, the water inlet end of the compound turbine engine 32 on the far left of the water washing panel 18 is connected to the existing water supply equipment, and the adjacent side walls of the two water washing panels 18 are fixedly installed with water washing nozzles 33. The compound turbine engine 32 on the top of the flattened round roller 23 and the compound turbine engine 32 on the top of the hollow round roller 25 rotate in opposite directions to each other, and a plurality of water washing nozzles 33 are arranged along the length direction of the water washing panel 18, and the nozzles of the water washing nozzles 33 are arranged flat and along the width direction of the knitted fabric. A plurality of water washing nozzles 33 are connected to the water outlet end of the compound turbine engine 32 on the far right of the water washing panel 18 through a water pipe.

[0036] The implementation principle of a knitted fabric washing device disclosed in the embodiment of the present application is as follows: the water supply device pours high-pressure water flow toward the compound turbine engine 32 on the leftmost side of the washing panel 18, and the compound turbine engines 32 on the top of the flattening roller 23 and the top of the hollow roller 25 are arranged in series so that several compound turbine engines 32 rotate synchronously, and the high-pressure water flow is then directed to the inner side of several washing nozzles 33 through the water outlet end of the compound turbine engine 32 on the rightmost side of the washing panel 18. The knitted fabric passes through several flattening components 21 and adsorption components 22 in sequence from the leftmost side of the washing panel 18 to the rightmost side of the washing panel 18, and the knitted fabric passes between the two flattening rollers 23 of the same flattening component 21 and between the two hollow rollers 25 of the same adsorption component 22.

[0037] The nozzle of the water washing nozzle 33 sprays clean water toward the surface of the knitted fabric, and the compound turbine engine 32 drives the flattening roller 23 to rotate through the high-pressure water flow. The two flattening rollers 23 of the same flattening assembly 21 rotate in opposite directions through the reversing gear 24. The two flattening rollers 23 of the flattening assembly 21 try to avoid the problem of wrinkles on the knitted fabric. The booster water pump 29 extracts the filtered water inside the hollow roller 25 to the inner side of the cleaning pipe 13 through the delivery pipe 30, so that the hollow roller 25 generates adsorption force on the surface of the knitted fabric through the long through groove 26. The moisture on the surface of the knitted fabric is guided to the inner side of the hollow roller 25 through the adsorption of the hollow roller 25, and the slurry on the surface of the knitted fabric adheres to the surface of the breathable mesh plate 27. The function of the breathable mesh plate 27 is to filter the moisture contained in the slurry on the surface of the knitted fabric to the inner side of the hollow roller 25.

[0038] The compound turbine engine 32 at the top of the flattened round roller 23 rotates in opposite directions to the compound turbine engine 32 at the top of the hollow round roller 25. The counter-rotating hollow round roller 25 generates an adsorption force on the surface of the knitted fabric, which can clean the slurry and water on the surface of the knitted fabric more cleanly. The slurry adsorbed on the surface of the air-permeable mesh plate 27 is cleaned by the scraper on the cleaning slot plate 31 and falls to the surface of the water filter mesh plate 15, and the problem of clogging of the filter mesh holes on the surface of the air-permeable mesh plate 27 is avoided as much as possible. The water on the surface of the knitted fabric flows into the bottom of the slurry collection box 11 through the filtration of the water filter mesh plate 15, and the filtered water is discharged from the slurry collection box 11 through the electric drain valve 17. The high-pressure water flow in the cleaning pipe 13 is sprayed onto the surface of the water filter mesh plate 15 through a plurality of cleaning nozzles 16. The slurry falls to the inner side of the long mesh slot 14 through the high-pressure water flow and the inclined water filter mesh plate 15, and the problem of clogging of the filter mesh holes on the surface of the water filter mesh plate 15 is avoided as much as possible.

[0039] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.

Claims

1. A knitted fabric washing device, comprising a slurry collecting box (11), a plurality of washing panels (18) arranged on the top of the slurry collecting box (11), and a washing nozzle (33) arranged between two adjacent washing panels (18), characterized in that: An adsorption assembly (22) is provided between two adjacent water-washing panels (18), and the adsorption assembly (22) comprises a plurality of hollow circular rollers (25) rotatably mounted between the two adjacent water-washing panels (18), and a plurality of long through grooves (26) arranged on the circumference of the hollow circular rollers (25); the hollow circular rollers (25) are fixedly mounted with a breathable mesh plate (27) through the long through grooves (26) on the circumference of the hollow circular rollers (25).

2. A knitted fabric washing device according to claim 1, characterized in that: The slurry collection box (11) is provided with a water filter assembly for slurry filtering, and the water filter assembly comprises two long mesh grooves (14) arranged on two opposite inner side walls of the slurry collection box (11), and a water filter mesh plate (15) fixedly connected between the two long mesh grooves (14); the long mesh grooves (14) and the water filter mesh plate (15) are both made of filter mesh material.

3. A knitted fabric washing device according to claim 2, characterized in that: The slurry collection box (11) is provided with a cleaning component for preventing the filter mesh holes on the surface of the water filter screen (15) from being blocked as much as possible. The cleaning component comprises a cleaning pipe (13) installed on the inner side of the slurry collection box (11) and a plurality of cleaning nozzles (16) arranged on the periphery of the cleaning pipe (13); the plurality of cleaning nozzles (16) correspond to the surface of the water filter screen (15).

4. A knitted fabric washing device according to claim 3, characterized in that: A power assembly for causing a plurality of the hollow circular rollers (25) to generate suction is provided on the outer side of the hollow circular rollers (25), the power assembly comprising a booster water pump (29) fixedly arranged on the side wall of the slurry collection box (11) and a limiting cylinder (28) rotatably arranged on the bottom end of the hollow circular roller (25), the hollow circular roller (25) is connected to the corresponding limiting cylinder (28), the limiting cylinder (28) is connected to the water inlet end of the booster water pump (29), and the water outlet end of the booster water pump (29) is connected to the cleaning pipe (13).

5. A knitted fabric washing device according to claim 2, characterized in that: A flattening assembly (21) is provided between two adjacent water-washing panels (18), and a plurality of flattening assemblies (21) and a plurality of adsorption assemblies (22) are arranged alternately. The flattening assembly (21) comprises a plurality of flattening circular rollers (23) rotatably installed between two adjacent water-washing panels (18).

6. A knitted fabric washing device according to claim 5, characterized in that: A driving assembly for driving the flattened circular roller (23) and the hollow circular roller (25) to rotate is arranged between two adjacent water washing panels (18), and the driving assembly comprises a compound turbine engine (32) arranged at the top of the flattened circular roller (23) and the hollow circular roller (25) of the water washing panel (18) on the same side, and a counter gear (24) coaxially arranged on a plurality of the hollow circular rollers (25) and a plurality of the flattened circular rollers (23); the compound turbine engines (32) on the flattened circular roller (23) and the adjacent hollow circular rollers (25) are arranged in series; the counter gears (24) of the plurality of the hollow circular rollers (25) of the adsorption assembly (22) and the counter gears (24) of the plurality of the flattened circular rollers (23) of the flattening assembly (21) are meshed.

7. A knitted fabric washing device according to claim 6, characterized in that: The water inlet end of the compound turbine engine (32) at the head end of the water washing panel (18) is connected to the existing water supply equipment, and the water outlet end of the compound turbine engine (32) at the end of the water washing panel (18) is connected to the water washing nozzle (33).

8. The knitted fabric washing device according to claim 1, characterized in that: A cleaning assembly for scraping off slurry is provided on the circumferential side of the hollow circular roller (25), and the cleaning assembly comprises a cleaning trough plate (31) installed between the two water-washing panels (18), and a scraper is provided on the circumferential side of the cleaning trough plate (31) and is arranged in close contact with the circumferential side of the hollow circular roller (25).