Continuous washing device for garment materials
By designing a continuous garment fabric cleaning device, which employs high-pressure spraying, squeezing roller pressing, hot air drying, and multi-stage filtration, the problems of fabric damage, high energy consumption, difficulty in lint removal, and low water recovery efficiency during the fabric cleaning process are solved, achieving automated continuous processing and efficient cleaning.
Patent Information
- Application Number
- CN202511276183.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-08
- Publication Date
- 2025-11-07
AI Technical Summary
Existing garment fabric cleaning processes suffer from problems such as fabric damage, high energy consumption, difficulty in removing lint, low efficiency in washing water recycling, and insufficient water quality compliance. In particular, high-temperature drying causes fiber deformation, makes it difficult to intercept and remove fine lint, and makes it difficult to effectively filter impurities in the washing water.
A continuous garment fabric cleaning device was designed, including an upper guide belt, a lower guide belt, a spray cleaning component, a hot air drying component, a lint removal component, and a water circulation component. Through high-pressure spraying, squeezing roller pressing, hot air drying, lint removal roller cleaning, and multi-stage filtration, automated continuous processing is achieved, ensuring the fabric cleaning effect and the recycling of water resources.
It enables automated continuous cleaning of fabrics, reduces fabric damage, improves drying efficiency and water resource utilization, ensures cleaning effect and water quality stability, and reduces operating costs.
Smart Images

Figure CN120905889A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application is a continuous cleaning device for clothing fabric, belonging to the technical field of fabric cleaning equipment. BACKGROUND
[0002] In the existing clothing fabric cleaning process, the drying link has the disadvantages of fabric damage and high energy consumption. Natural fibers such as cotton and wool are prone to shrinkage and deformation under high-temperature drying, and synthetic fibers such as polyester fibers are prone to surface melting and balling. This is because most household dryers rely on high-temperature hot air to force dehydration, and the temperature and speed are not differentiated according to the poor thermal stability of the fabric. The conventional response method is low-temperature drying or manual airing. Although low-temperature drying reduces damage, the time is extended by 30%-50% and the efficiency is suddenly reduced. Manual airing is limited by weather and the fabric is prone to mildew in a humid environment. There are problems of lint residue on the surface of the fabric and blockage of the equipment in the lint cleaning process. This is because the fibers fall off during fabric washing and friction, and the filter screen aperture of the washing machine is usually larger than 0.5mm, making it difficult to intercept fine lint of 0.1-0.3mm. Manual cleaning with a lint remover or replacing a fine-aperture filter screen is required. Manual cleaning requires piece-by-piece operation, takes time and is prone to miss the fiber root lint. Fine-aperture filter screens are prone to frequent blockage due to lint accumulation and require daily disassembly and cleaning, increasing operating costs. The water quality standard rate is low and the recycling efficiency is insufficient in the cleaning water recycling process. Because the cleaning water contains surfactants, fiber debris, dye residues and other impurities, the existing household recycling device only relies on simple filter screens for filtration, which cannot remove dissolved pollutants. The adsorption capacity of activated carbon is limited, and it needs to be replaced after 2-3 uses, which is relatively high in cost. Quartz sand cannot remove colloidal impurities, and repeated use of recycled water can lead to secondary pollution of the fabric, color difference or odor. Therefore, there is an urgent need for a continuous cleaning device for clothing fabric to solve the above problems. SUMMARY
[0003] In view of the deficiencies of the prior art, the purpose of the present application is to provide a continuous cleaning device for clothing fabric, which includes an upper guide conveyor belt and a lower guide conveyor belt to solve the problems raised in the background art.
[0004] The technical solution of the present application is as follows: a continuous cleaning device for clothing fabric, comprising an upper guide conveyor belt and a lower guide conveyor belt, a group of waterproof housings for preventing cleaning water from soaking and damaging the clothing fabric is arranged on the outer side of the left end of the upper guide conveyor belt, a group of spray cleaning components for continuously spraying and cleaning the clothing fabric is arranged inside the right side of the waterproof housing, a group of water squeezing rollers for squeezing the water inside the clothing fabric from both top and bottom sides is arranged between the spray cleaning components and the hot air blowing and drying components, and a group of lower water return covers for receiving the sprayed water is arranged at the lower end of the middle position of the upper guide conveyor belt. The lower water return cover front side cross section is an isosceles trapezoidal structure, the lower water return cover is internally provided with a group of recovery cavities, the recovery cavity front side bottom is provided with a group of recovery grooves for mutual communication with the water circulation component inside, the recovery groove inside is provided with a sealed interface, the spray cleaning component left side is provided with a group of hot blow drying components for strong blow drying of the garment fabric, the hot blow drying component left side is provided with a group of lint cleaning components for surface lint adhesion of the dried garment fabric, the lint cleaning component is provided with two groups of lint adhesion rollers for lint adhesion on the upper and lower sides, the lint cleaning component front and back sides are respectively provided with a group of lint collection boxes for blow flow collection of the garment fabric outside surface lint removal.
[0005] The waterproof shell left side is provided with a group of guide covers for downward bending guide of the processed garment fabric, the guide cover front side cross section is a semicircular structure, and the inside is provided with a smooth arc surface, the guide cover lower end right side is provided with a group of lower conveying belts for garment fabric guide, the lower conveying belt upper end and front and back sides are respectively provided with a plurality of groups of lower drying combinations for garment fabric accelerated drying, the lower drying combination right side is provided in a concave structure, and the length of the upper side cross section is two-thirds of the length of the outer shell; The lower conveying belt lower end is provided with a group of lower support frames for bottom support, the lower support frame front side right end is provided with a group of control components for control of the opening and closing of each component in the device and output power, the control component is a touch control panel, the spray cleaning component front side is provided with a group of water circulation components for recycling of the spray cleaning water, the water circulation component water inlet end and water outlet end are both in sealed connection with the spray cleaning component inside, in actual use, first, the garment to be processed is laid on the upper conveying belt left end, the waterproof shell prevents the cleaning water from soaking and damaging the garment, the garment enters the spray cleaning component with the conveying belt, and the preliminary cleaning is completed through high pressure spraying, the waste water enters the water circulation component through the isosceles trapezoidal recovery cavity and the sealed interface of the lower water return cover for recycling after filtration, the cleaned garment passes through the water squeezing roller for internal water removal, and then enters the hot blow drying component for strong blow drying, the dried garment passes through the lint cleaning component, the upper and lower lint rollers remove the surface lint, and the two side lint collection boxes synchronously blow flow to collect the residual fibers, the processed garment is guided to the lower conveying belt through the semicircular guide cover smooth arc surface, the concave structure of the lower drying combination accelerates the overall drying of the garment, and finally, the control component adjusts the power and opening and closing of each module through the touch panel, and the whole process realizes automatic continuous processing.
[0006] As a preferred implementation, the spray cleaning component includes an upper water guide pipe and a downward spray head, the upper water guide pipe is sealed connected with an external cleaning water supplement source, the upper water guide pipe outside interface is a flange structure, the lower end of the upper water guide pipe is provided with a group of connecting three-way pipes for shunting the external supplement cleaning water, the rear side of the connecting three-way pipe is provided with a group of side shunt pipes one for guiding and transmitting the shunted cleaning water, the right side of the connecting three-way pipe is provided with a group of water transmission pipes one for conducting water, the lower end of the side shunt pipe one is uniformly distributed with five groups of side guide pipes one for shunting cleaning water, the internal water flow pressure of the five groups of side guide pipes one is the same, and the rear side of each group of side guide pipes one is respectively provided with five groups of leftward spray heads for spraying and cleaning the left side of the garment fabric, the five groups of leftward spray heads are arranged in a vertical structure, and the internal leftward spray head and the internal side guide pipe one are in communication with each other.
[0007] As a preferred implementation, the several groups of leftward spray heads are distributed in a 5*5 rectangular structure area, the right side of the water transmission pipe one is provided with a group of side shunt pipes two for supplying water to the several groups of side guide pipes two and side guide pipes three, the side shunt pipes two are connected with the water transmission pipe one, the left side of the side shunt pipes two is provided with five groups of side guide pipes two for providing water to the top spray head, the five groups of side guide pipes two are arranged in a uniform structure, and the lower end of each group of side guide pipes two is provided with five groups of top spray heads for spraying and cleaning the upper end of the garment fabric, the several groups of top spray heads are distributed in a 5*5 rectangular structure area, the lower end of the side guide pipes two is provided with five groups of side guide pipes three for supplying water to the several groups of rightward spray heads, the five groups of side guide pipes three are arranged in a uniform structure, and the left side of each group of side guide pipes three is provided with five groups of rightward spray heads arranged in a vertical structure.
[0008] As a preferred embodiment, several groups of the right spray head are distributed in a 5*5 rectangular structure area, the second side shunt pipe is provided with a group of water conveying pipe two for continuously conducting the cleaning water body, the right side of the water conveying pipe two is a mirror image L-shaped structure in cross section, the left side of the lower end of the water conveying pipe two is provided with five groups of side shunt pipe four for providing cleaning water source for the downward spray head, five groups of the side shunt pipe four are uniformly arranged, and the upper end of each group of the side shunt pipe four is provided with five groups of downward spray head for spraying and cleaning the bottom of the garment fabric, five groups of the downward spray head are arranged in a horizontal structure, and several groups of the downward spray head are distributed in a 5*5 rectangular structure area. In the spraying and cleaning part, several groups of left spray head, several groups of right spray head, several groups of top spray head and several groups of downward spray head form a rectangular cleaning surface on the left side, right side, upper side and lower side of the middle position of the upper conveying belt. The water pressure in the side shunt pipe one, the side shunt pipe two, the side shunt pipe three and the side shunt pipe four is constant. In actual use, after the garment fabric enters the spraying and cleaning part, the external cleaning water source enters the device through the flange interface connected upper water guide pipe, is shunted to the side shunt pipe one and the water conveying pipe one through the connection three-way pipe, the side shunt pipe one uniformly distributes the water body to five groups of side guide pipe one, drives five groups of left spray head to spray the left side of the fabric in vertical direction, forms a 5*5 rectangular cleaning surface, at the same time, the water conveying pipe one guides the water flow to the side shunt pipe two, supplies five groups of top spray head through the side guide pipe two, uniformly sprays the upper end of the fabric, the side shunt pipe two is further shunted to the side guide pipe three, activates five groups of right spray head to complete the right side cleaning of the fabric, the water conveying pipe two transports the water flow to the side shunt pipe four through the mirror image L-shaped structure, and finally drives five groups of horizontally arranged downward spray head to spray the bottom of the fabric. All groups of spray head form a three-dimensional cleaning network around the fabric, and the side shunt pipe system maintains constant water pressure to ensure uniform and stable spraying effect.
[0009] As a preferred embodiment, the hot blowing drying part includes an outer drying air inlet pipe and an inner drying air return pipe, the lower end of the outer drying air inlet pipe is provided with a group of uniform flow guide pipe one for shunting the external hot drying air, the lower end of the uniform flow guide pipe one is uniformly distributed with five groups, and the outer side of each group of the uniform flow guide pipe one is provided with a group of front drying air seat one for guiding the outer drying air to blow out, the front drying air seat is a triangular structure in cross section, and the front and rear ends of the right side of the front drying air seat one are arranged in a straight line structure. Several groups of drying holes for drying the left side of the garment fabric are arranged, and the several groups of drying holes arranged on the front and rear sides are arranged in an inclined direction to the two sides, and five groups of side drying air seat one are arranged in a square structure.
[0010] As a preferred embodiment, several groups of the same surface drying holes are oriented to perform drying operations in rectangular areas. Each group of the uniform air guide pipe has a connecting elbow pipe at the lower end for continuously conducting the external drying air. The cross-section of the front side of the connecting elbow pipe is J-shaped. The right side of the connecting elbow pipe has a lower drying air seat for drying and blowing the lower end of the garment fabric. Several groups of the lower drying air seat are uniformly distributed with the side drying air seat. Five groups of the lower drying air seat are arranged in a rectangular structure and perform upward drying and blowing. The right side of the connecting elbow pipe has a drying shunt pipe two for continuously transmitting drying gas. The drying shunt pipe two is in communication with the connecting elbow pipe. The drying shunt pipe two has five groups. The left side of each group of the drying shunt pipe two has a side drying air seat two for blowing the right side of the cleaned garment fabric. The upper end of the five groups of the drying shunt pipe two has a uniform air guide pipe two for collecting and re-shunting drying air. The left side of the uniform air guide pipe two is uniformly distributed with five groups of upper drying air seats for drying the upper end of the garment fabric. The upper drying air seat, the side drying air seat one, the lower drying air seat, and the side drying air seat two have the same specifications. The upper side, the left and right sides, and the lower side are designated as drying positions for designated drying and the same position area in the spraying and cleaning range for drying operations, so as to improve the overall drying effect of the garment fabric. After the garment fabric is sprayed and cleaned, it enters the hot blowing drying component. The external hot air is introduced into the uniform air guide pipe one through the external drying air inlet pipe. It is shunted to five groups of side drying air seats one. The inclined drying holes at the front end of the triangular structure perform rectangular area directional drying on the left side of the fabric. The connecting elbow pipe conducts hot air to the lower drying air seat. Five groups of the wind seat arranged in a rectangular shape perform synchronous drying on the bottom of the fabric. The drying shunt pipe two delivers the airflow to the side drying air seat two. After the right side of the fabric is dried, the uniform air guide pipe two collects the airflow and distributes it to the upper drying air seat for precise drying of the upper end of the fabric. All the air seats cooperate with the spraying and cleaning range to ensure that the drying positions of each area of the fabric are consistent. Finally, the hot air circulation is completed through the internal drying air return pipe.
[0011] As a preferred embodiment, the water circulation component includes a return elbow pipe and a cleaning water guide pipe. The front side of the return elbow pipe has a cleaning water guide branch for guiding the recovered cleaning water. The lower end of the washing water flow guide branch is provided with a group of washing water flow guide pipes for conveying the washing water to be recovered, the washing water flow guide branch and the washing water flow guide pipe are in communication with each other, the washing water flow guide pipe has a C-shaped structure as a whole, the lower end of the washing water flow guide branch is provided with six groups of internal filter cavities for filtering the washing water, each group of the internal filter cavities is internally provided with a group of internal separation filter screens for filtering the fiber components in the washing water, the internal separation filter screen has a hollow concave structure, the washing water flow guide pipe is arranged on the upper end of the six groups of internal filter cavities, and each group of the internal filter cavities is provided with a group of drain grooves corresponding to the upper end of the six groups of internal filter cavities, the drain grooves are located at the center positions of the internal separation filter screens, and the six groups of internal filter cavities are arranged in the upper filter layer, wherein the upper filter layer is provided at the upper end of the right front side with a group of aeration pipes for discharging excess gas in the upper filter layer; The lower end of the upper filter layer is provided with a lower filter layer for collecting and storing the washing water filtered preliminarily, the lower filter layer internally comprises a storage cavity and a secondary filter cavity, the storage cavity is arranged at the rear end of the lower filter layer, and the secondary filter cavity is arranged at the front end of the lower filter layer, wherein the front end and the rear end are sealed and separated by a group of sealing plates, and the secondary filter cavity is internally provided with three groups of internal filter elements for filtering the washing water again.
[0012] As a preferred embodiment, the internal filter element comprises a filter inlet and a sealing interface, the right end of the filter inlet is provided with a filter outlet for discharging the secondary-filtered washing water, the front side of the filter inlet and the filter outlet is provided with a side sealing seat for extracting the internal support plate, the rear side of the side sealing seat is provided with an internal filter screen shell for sealing and covering a plurality of internal filter sheets; The internal filter screen shell is internally provided with a group of internal support plates for providing positioning support for a plurality of groups of internal filter sheets, each group of the internal support plates is internally provided with a group of filter sheets for cross filtering the filtered washing water, a plurality of groups of the filter sheets are arranged in a strip-shaped structure, and each two groups of the internal support plates are provided with a sealing connection end for sealing and connecting the two groups of internal support plates, each group of the sealing connection end is respectively provided with a sealing interface on the left and right sides for providing sealing insertion for the inflow circulation flow channel and the outflow circulation flow channel, the left end of the external side of the internal filter screen shell is provided with an inflow circulation flow channel for guiding the filtered washing water to flow in, and the inflow circulation flow channel is arranged in sequence and has an arc-shaped structure. The right end of the external side of the internal filter screen shell is provided with an outflow circulation flow channel for discharging the secondary-filtered water, the inflow circulation flow channel and the outflow circulation flow channel are arranged alternately on the internal side of each two groups of internal filter sheets, the internal filter screen shell is provided with two groups, and the internal filter screen is provided with two rows, and the front side of each of the two rows of internal support plates is connected and fixed with the rear side of the external sealing shell, and the internal filter inlet, the internal inflow circulation flow channel, the internal sealing connection end, the internal outflow circulation flow channel and the internal filter outlet are in communication with each other. Three groups of the sub-filtered water inlets are sealingly connected with the upper filter layer and communicate with each other, the interiors of the three groups of the sub-filtered water outlets communicate with the interior of the storage cavity, a group of circulating flow guide pipes for guiding the filtered washing water are arranged on the left side of the storage cavity, a group of high-temperature sterilization cylinders for sterilizing the filtered washing water are arranged on the left side of the circulating flow guide pipes, a group of inner connecting water pipes for filtering the sterilized washing water again are arranged on the left side of the high-temperature sterilization cylinders, a group of multi-stage gravity filter cylinders for filtering the impurities in the washing water are arranged on the right side of the front end of the inner connecting water pipes, a group of upper circulating pipes for circulating the filtered washing water are arranged on the right side of the multi-stage gravity filter cylinders, and a group of circulating water outlets for communicating with the spraying and washing component are arranged on the rear side of the upper circulating pipes.
[0013] After the above technical scheme is adopted, the beneficial effects of the present application are as follows: in actual use, first, the fabric to be treated is laid on the left end of the upper conveying belt, the waterproof shell prevents the fabric from being damaged by soaking in the washing water, the fabric enters the spraying and washing component along with the conveying belt, and the preliminary cleaning is completed through high-pressure spraying, the waste water enters the water circulation component through the isosceles trapezoidal recovery cavity and the sealing interface of the lower backwater cover after being filtered, and is reused, the cleaned fabric is squeezed to remove the internal moisture through the squeezing roller, and then enters the hot blowing and drying component for strong blowing and drying, the dried fabric passes through the fluff cleaning component, and the surface fluff is removed by the upper and lower fluff rollers, the residual fibers are collected by the two side fluff collection boxes, the treated fabric is smoothly guided to the lower conveying belt through the semicircular guide cover, the concave structure of the lower drying combination accelerates the overall drying of the fabric, finally, the control component adjusts the power and opening and closing of each module through the touch panel, and the whole process realizes automatic and continuous processing. In actual use, after the garment fabric enters the spray cleaning part, the external cleaning water source enters the device through the flange interface connected upper water guide pipe, is shunted to side shunt pipe one and water guide pipe one through the connected three-way pipe, the side shunt pipe one uniformly distributes the water body to five groups of side guide pipes one, drives five groups of leftward nozzles to spray the left side of the garment fabric vertically, forms 5x5 rectangular cleaning surface, simultaneously, the water flow is guided to side shunt pipe two by water guide pipe one, five groups of upward nozzles are supplied through side guide pipe two, uniform spraying is implemented on the upper end of the garment fabric, side shunt pipe two is further shunted to side guide pipe three, five groups of rightward nozzles are activated to complete the right side cleaning of the garment fabric, water flow is delivered to side shunt pipe four by mirror image L-shaped structure through water guide pipe two, finally, five groups of horizontally arranged downward nozzles are driven to spray the bottom of the garment fabric, all nozzle groups form a three-dimensional cleaning network around the garment fabric, the side shunt pipe system keeps constant water pressure to ensure that the spraying effect is uniform and stable; After the garment fabric is sprayed and cleaned, the garment fabric enters the hot blowing and drying part, the external hot air is introduced into the uniform flow guide pipe one through the outer drying air body inlet pipe, is shunted to five groups of side drying air seats one, the inclined drying hole at the front end of the triangular structure of the air seat one implements directional drying on the left side of the garment fabric, the hot air is conducted to the lower drying air seat through the connected elbow pipe, the five groups of air seats arranged in a rectangle are upwardly synchronous drying to the bottom of the garment fabric, the airflow is delivered to side drying air seat two through drying shunt pipe two, after the right side of the garment fabric is dried, the airflow is collected and distributed to the upper drying air seat through the uniform flow guide pipe two, and the upper end of the garment fabric is precisely dried, all air seats are coordinated with the spray cleaning range, so that the drying positions of all regions of the garment fabric are consistent, and finally, the hot air circulation is completed through the inner drying air body return pipe; The cleaned waste water enters the cleaning water guide and shunt through the return flow pipe, is shunted to six groups of inner filter cavities through the C-shaped cleaning water guide pipe, the hollow concave structure of the inner partition filter screen intercepts the fiber impurities, the aeration pipe discharges the gas generated in the filtering process, the water flow after preliminary filtration enters the lower filter layer through the upper filter layer, is temporarily stored in the storage cavity, enters the secondary filter cavity through the sealing plate, and is finely filtered by the three groups of inner filter cartridges, the purified water is delivered to the high-temperature disinfection cylinder for sterilization through the circulation return pipe, is further purified through the multi-stage gravity filter cylinder, and finally is returned to the spray cleaning part for reuse through the circulation water outlet. BRIEF DESCRIPTION OF DRAWINGS
[0014] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description only show some embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative labor.
[0015] Figure 1 It is a structure schematic view of the continuous cleaning device for garment fabric. Figure 2It is the left rear oblique side overhead structure schematic diagram of a kind of clothing fabric continuous washing device of the application; Figure 3 It is the right rear side overhead structure schematic diagram of the inside of a kind of clothing fabric continuous washing device in the spraying washing component of the application; Figure 4 It is the left oblique front side overhead structure schematic diagram of the hot blow drying component in a kind of clothing fabric continuous washing device of the application; Figure 5 It is the left oblique front side overhead structure schematic diagram of the water circulation component in a kind of clothing fabric continuous washing device of the application; Figure 6 It is the overhead structure diagram of the internal separation filter screen in a kind of clothing fabric continuous washing device of the application; Figure 7 It is the right oblique front side overhead structure schematic diagram of the internal filter core in a kind of clothing fabric continuous washing device of the application; Figure 8 It is the overhead structure diagram of the inside of the outer sealing shell in a kind of clothing fabric continuous washing device of the application; Figure 9 It is the right oblique front side overhead structure diagram of the internal filter screen sheet and several groups of internal support plates in a kind of clothing fabric continuous washing device of the application; In the figure: 1-upper guide belt, 2-waterproof shell, 3-spraying washing component, 4-hot blow drying component, 5-fuzz cleaning component, 6-guide cover, 7-water circulation component, 8-control component, 9-lower support frame, 10-outer protective shell, 11-lower guide belt; 31-upper water guide pipe, 32-connection tee pipe, 33-side shunt pipe one, 34-side guide pipe one, 35-leftward nozzle, 36-water transmission pipe one, 37-side shunt pipe two, 38-side guide pipe two, 39-side guide pipe three, 301-rightward nozzle, 302-water transmission pipe two, 303-side shunt pipe group, 304-downward nozzle; 41-outer drying air body inlet pipe, 42-uniform flow air guide pipe one, 43-drying shunt pipe one, 44-side drying air seat one, 45-connection elbow pipe, 46-lower drying air seat, 47-drying shunt pipe two, 48-side drying air seat two, 49-uniform flow air guide pipe two, 401-drying shunt pipe three, 402-upper drying air seat, 403-inner drying air body return pipe; 71-return square pipe, 72-square pipe cover mouth, 73-cleaning water guide separation head, 74-sampling pipe, 75-quick cleaning cover body, 76-aeration pipe, 77-upper filter layer, 78-lower filter layer, 79-internal filter core, 701-circulation return pipe, 702-high temperature disinfection cylinder, 703-internal connection water pipe, 704-multistage gravity filtration cylinder, 705-upper circulation pipe, 706-circulation water outlet, 707-internal separation filter screen, 708-side hook seat, 709-cleaning water guide pipe; 91 - split filter water inlet, 92 - side seal seat, 93 - outer seal shell, 94 - split filter water outlet, 95 - inner filter screen shell, 96 - inlet flow circulation channel, 97 - outlet flow circulation channel, 98 - inner support plate, 99 - inner filter disc, 901 - sealing interface. DETAILED DESCRIPTION
[0016] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the present application.
[0017] Please refer to Figures 1-9 As a first embodiment of the present application, a continuous cleaning device for garment fabric comprises: an upper guide belt 1 and a lower guide belt 11. A group of waterproof housings 2 for preventing damage caused by immersion in cleaning water are arranged on the left outer side of the upper guide belt 1. A group of spray cleaning components 3 for continuously spraying and cleaning the garment fabric are arranged inside the right side of the waterproof housings 2. A group of water squeezing rollers for squeezing the water inside the garment fabric from the top and bottom are arranged between the spray cleaning components 3 and the hot blowing and drying components 4. A group of lower water return covers for receiving the sprayed water are arranged at the lower end of the middle position of the upper guide belt 1. The front side of the lower water return cover is in the shape of an isosceles trapezoid. A group of recovery cavities are arranged inside the lower water return cover. A group of recovery grooves for communicating with the inside of the water circulation components 7 are arranged at the bottom of the front side of the recovery cavities. A sealing interface 901 is arranged inside the recovery grooves. A group of hot blowing and drying components 4 for strongly blowing and drying the garment fabric are arranged on the left side of the spray cleaning components 3. A group of lint cleaning components 5 for removing the surface lint of the dried garment fabric are arranged on the left side of the hot blowing and drying components 4. The lint cleaning components 5 are provided with two groups of lint sticking rollers for sticking the lint on the top and bottom of the lint cleaning components 5. A group of lint collection boxes for collecting the blown and flowed lint on the outer surface of the garment fabric are arranged on the front and back sides of the lint cleaning components 5.
[0018] A group of guide covers 6 for downwardly bending and guiding the processed garment fabric are arranged on the left side of the waterproof housings 2. The front side of the guide covers 6 is in the shape of a semicircle and is provided with a smooth arc surface inside. A group of lower guide belts 11 for guiding out the garment fabric are arranged on the right side of the lower end of the guide covers 6. A group of lower drying combinations for accelerating the drying of the garment fabric are arranged on the upper end and the front and back sides of the lower guide belts 11. The right side of the lower drying combination is in the shape of a concave structure and the length of the top view cross section is two-thirds of the length of the outer protective shell 10. The lower end of the lower conveying belt 11 is provided with a group of lower support frames 9 for supporting the bottom thereof, the front side right end of the lower support frame 9 is provided with a group of control components 8 for controlling the opening and closing of each component in the device and the output power, the control component 8 is a touch control panel, the front side of the spray cleaning component 3 is provided with a group of water circulation components 7 for recycling and reusing the spray cleaning water, the water inlet end and the water outlet end of the water circulation component 7 are in sealed connection with the inside of the spray cleaning component 3, in actual use, first, the fabric to be treated is laid on the left end of the upper conveying belt 1, the waterproof shell 2 prevents the cleaning water from soaking and damaging the fabric, the fabric enters the spray cleaning component 3 along the conveying belt, and the preliminary cleaning is completed through high-pressure spraying, the waste water enters the water circulation component 7 through the isosceles trapezoidal recovery cavity and the sealing interface 901 of the lower water recovery cover and is reused after filtration, the cleaned fabric is squeezed by the squeezing roller to remove the internal moisture, and then enters the hot blowing drying component 4 for strong blowing and drying, the dried fabric passes through the lint cleaning component 5, the surface lint is removed by the upper and lower lint rollers, the residual fibers are collected by the synchronous blowing of the two side lint collection boxes, and the treated fabric is smoothly guided to the lower conveying belt 11 through the semicircular guide cover 6, the concave structure of the lower drying combination accelerates the overall drying of the fabric, and finally the control component 8 adjusts the power and opening and closing of each module through the touch panel.
[0019] Please refer to Figures 1-3 As a second embodiment of the present application: based on the description in the first embodiment, the spray cleaning component 3 includes an upper water guide pipe 31 and a downward nozzle 304, the upper water guide pipe 31 is in sealed connection with an external cleaning water supplement source, the interface on the outside of the upper water guide pipe 31 is a flange structure, the lower end of the upper water guide pipe 31 is provided with a group of connecting three-way pipes 32 for dividing the external supplement cleaning water, the rear side of the connecting three-way pipe 32 is provided with a group of side diversion pipes 33 for guiding and transmitting the spray water, the right side of the connecting three-way pipe 32 is provided with a group of water transmission pipes 36 for conducting water, the lower end of the side diversion pipe 33 is uniformly provided with five groups of side guide pipes 34 for dividing the cleaning water, the water flow pressure in the five groups of side guide pipes 34 is the same, and the rear side of each group of side guide pipes 34 is respectively provided with five groups of left nozzles 35 for spraying and cleaning the left side of the garment fabric, the five groups of left nozzles 35 are arranged in a vertical structure, and the inside of the left nozzle 35 is in communication with the inside of the side guide pipe 33.
[0020] The several groups of leftward nozzles 35 are distributed in a 5*5 rectangular structure area, and the right side of the water conveying pipe one 36 is provided with a group of side shunt pipes two 37 for supplying water to the several groups of side flow guide pipes two 38 and side flow guide pipes three 39, the side shunt pipes two 37 are connected with the water conveying pipe one 36 and communicate with each other, the left side of the side shunt pipes two 37 is provided with five groups of side flow guide pipes two 38 for providing water to the top nozzles, the five groups of side flow guide pipes two 38 are uniformly arranged in a structure, and the lower end of each group of side flow guide pipes two 38 is provided with five groups of top nozzles for spraying and cleaning the upper end of the garment fabric, the several groups of top nozzles are distributed in a 5*5 rectangular structure area, the lower end of the side flow guide pipes two 38 is provided with five groups of side flow guide pipes three 39 for supplying water to the several groups of rightward nozzles 301, the five groups of side flow guide pipes three 39 are uniformly arranged in a structure, and the left side of each group of side flow guide pipes three 39 is provided with five groups of rightward nozzles 301 arranged in a vertical structure.
[0021] The several groups of rightward nozzles 301 are distributed in a 5*5 rectangular structure area, the rear side of the side shunt pipes two 37 is provided with a group of water conveying pipes two 302 for continuously conducting the cleaning water, the right side of the water conveying pipes two 302 is a kind of mirror image L-shaped structure in cross section, the lower end left side of the water conveying pipes two 302 is provided with five groups of side shunt pipes four for providing cleaning water source to the downward nozzles 304, the five groups of side shunt pipes four are uniformly arranged in a structure, and the upper end of each group of side shunt pipes four is provided with five groups of downward nozzles 304 for spraying and cleaning the bottom of the garment fabric, the five groups of downward nozzles 304 are arranged in a horizontal structure, and the several groups of downward nozzles 304 are distributed in a 5*5 rectangular structure area, in the spraying and cleaning component 3, the several groups of leftward nozzles 35, the several groups of rightward nozzles 301, the several groups of top nozzles and the several groups of downward nozzles 304 form rectangular cleaning surfaces on the left side, the right side, the upper side and the lower side of the middle position of the upper conveying belt 1, wherein the water pressure in the side shunt pipes one 33, the side shunt pipes two 37, the side shunt pipes three and the side shunt pipes four is constant, in actual use, after the garment fabric enters the spraying and cleaning component 3, the external cleaning water source enters the device through the flange interface connected upper water guide pipe 31, is shunted to the side shunt pipes one 33 and the water conveying pipe one 36 through the connecting tee pipe 32, the side shunt pipes one 33 uniformly distributes the water to the five groups of side flow guide pipes one 34, drives the five groups of leftward nozzles 35 to spray the left side of the fabric in a vertical direction, forms a 5*5 rectangular cleaning surface, at the same time, the water conveying pipe one 36 guides the water flow to the side shunt pipes two 37, supplies the five groups of top nozzles through the side flow guide pipes two 38, uniformly sprays the upper end of the fabric, the side shunt pipes two 37 are further shunted to the side flow guide pipes three 39, activate the five groups of rightward nozzles 301 to complete the right side cleaning of the fabric, the water conveying pipes two 302 transport the water flow to the side shunt pipes four through the mirror image L-shaped structure, finally drive the five groups of horizontally arranged downward nozzles 304 to spray the bottom of the fabric, all the nozzle groups form a three-dimensional cleaning network around the fabric, the side shunt pipe system maintains constant water pressure to ensure that the spraying effect is uniform and stable.
[0022] Please refer toFigure 1 、 Figure 2 、 Figure 4 As a third embodiment of the present application: based on the first embodiment described, the hot-blow drying component 4 includes an outer drying air body inlet pipe 41 and an inner drying air body return pipe 403, the lower end of the outer drying air body inlet pipe is provided with a set of uniform flow guide pipes 42 for guiding the external hot-blow drying air into the flow, the lower end of each uniform flow guide pipe 42 is uniformly distributed with five sets, and the outer side of each set of uniform flow guide pipes 42 is provided with a set of front drying air seats one for guiding the external hot-blow drying air to blow out, the front drying air seat is a triangular structure in plan view, and the right side of the front drying air seat is arranged with a plurality of groups of drying holes for drying the left side of the garment fabric in a straight line structure, and the plurality of groups of drying holes arranged on the front and back sides are arranged in an inclined direction to the two sides, and the five groups of side drying air seats one 44 are arranged in a rectangular structure.
[0023] At the same time, a plurality of groups of the same surface drying holes are oriented for drying operations in a rectangular area, and the lower end of each uniform flow guide pipe 42 is respectively provided with a set of connecting elbow pipes 45 for continuously conducting the external hot-blow drying air, the front side view cross section of the connecting elbow pipe 45 is a J-shaped structure, the right end outer side of the connecting elbow pipe 45 is provided with a set of lower drying air seats 46 for drying and blowing the lower end of the garment fabric, a plurality of groups of lower drying air seats 46 are distributed in the same way as the side drying air seats one 44, and the five groups of lower drying air seats 46 are arranged in a rectangular structure and upwardly for drying and blowing, and the right side of the connecting elbow pipe 45 is provided with a set of drying shunt pipes two 47 for continuously transmitting the drying gas; The inside of the drying shunt pipe two 47 and the connecting elbow pipe 45 are in communication with each other. The drying shunt pipe two 47 is provided with five groups, and each group of the drying shunt pipe two 47 is provided with a group of side drying air seats two 48 on the left side for blowing out the outer drying air body to the right side of the cleaned garment fabric. The upper end of the five groups of drying shunt pipe two 47 is provided with a group of uniform flow air guide pipes two 49 for collecting and re-distributing the drying air body. The left side of the uniform flow air guide pipe two 49 is uniformly distributed with five groups of upper drying air seats 402 for drying the upper end of the garment fabric. The upper drying air seats 402 are of the same specification as the side drying air seat one 44, the lower drying air seat 46 and the side drying air seat two 48, and the upper side, the left and right sides and the lower side are designated as drying positions for drying, and cooperate with the spraying and cleaning range to perform drying operation in the same position area, so as to improve the overall drying effect of the garment fabric. After the garment fabric is sprayed and cleaned, it enters the hot blowing drying part 4. The external hot air is introduced into the uniform flow air guide pipe one 42 through the outer drying air body inlet pipe 41, and is distributed to five groups of side drying air seats one 44. The inclined drying holes at the front end of the triangular structure implement rectangular area directional drying on the left side of the fabric. The connecting elbow pipe 45 conducts the hot air to the lower drying air seat 46. The five groups of air seats arranged in a rectangular shape synchronously dry the bottom of the fabric. The air flow is delivered to the side drying air seat two 48 by the drying shunt pipe two 47. After the right side of the fabric is dried, the air flow is collected and distributed to the upper drying air seat 402 by the uniform flow air guide pipe two 49, which accurately dries the upper end of the fabric. All air seats cooperate with the spraying and cleaning range to ensure that the drying positions of each area of the fabric are consistent, and finally complete the hot air circulation through the inner drying air body return pipe 403.
[0024] Please refer to Figure 1 、 Figure 2 、 Figure 5 、 Figure 6 , as the fourth embodiment of the present application: based on the first and second embodiments, the water circulation part 7 includes a return pipe 71 and a cleaning water guide pipe 709. The front side of the return pipe 71 is provided with a group of cleaning water guide distribution heads 73 for guiding the recovered cleaning water; The lower end of the cleaning water guide distribution head 73 is provided with a group of cleaning water guide pipes 709 for conveying the cleaning water to be recovered. The inside of the cleaning water guide distribution head 73 and the cleaning water guide pipe 709 are in communication with each other. The cleaning water guide pipe 709 is in the shape of a C. The lower end of the cleaning water guide distribution head 73 is provided with six groups of internal filter cavities for filtering the cleaning water. Each group of filter cavities is internally provided with a group of internal partition filter screens 707 for filtering the fiber components in the cleaning water. The internal partition filter screen 707 is a hollow concave structure. The cleaning water guide pipe 709 is arranged from the upper end of the six groups of internal filter cavities, and each group of internal filter cavities is provided with a group of water troughs at the upper end. The water troughs are located at the center of the internal partition filter screen 707; The six groups of inner filter cavities are arranged inside the upper filter layer 77, wherein the upper filter layer 77 is provided with a group of aeration pipes 76 at the upper end of the front right side of the upper filter layer 77 for discharging excess gas inside the upper filter layer 77, and the upper filter layer 77 is provided with a group of lower filter layers 78 at the lower end of the upper filter layer 77 for collecting and storing the cleaning water after preliminary filtration, the lower filter layer 78 includes a storage cavity and a secondary filter cavity, the storage cavity is arranged at the rear end inside the lower filter layer 78, and the secondary filter cavity is arranged at the front end of the lower filter layer 78, wherein the front end and the rear end are sealed and separated by a group of sealing plates, and the secondary filter cavity is provided with three groups of inner filter cores 79 for filtering the cleaning water again.
[0025] Please refer to Figure 1 、 Figure 2 、 Figures 5-9 , as a fifth embodiment of the present application: based on the first and fourth embodiments, the inner filter core 79 includes a filter inlet 91 and a sealing interface 901, the filter inlet 91 is provided with a group of filter outlets 94 at the right end of the filter inlet 91 for discharging the secondary filtered cleaning water, the filter inlet 91 and the filter outlet 94 are provided with a group of side sealing seats 92 at the front side of the filter inlet 91 and the filter outlet 94 for extracting the inner support plate 98, and the side sealing seat 92 is provided with a group of inner filter mesh housings 95 for sealing and covering a plurality of inner filter sheets 99; The inner filter mesh housing 95 is provided with a group of inner support plates 98 for providing positioning and support for a plurality of groups of inner filter sheets 99, each group of inner support plates 98 is provided with a group of filter sheets for cross filtering the filtered cleaning water, a plurality of groups of filter sheets are arranged in a strip structure, and a group of sealing connection ends is arranged between every two groups of inner support plates 98 for sealing and connecting the two groups of inner support plates 98, and each group of sealing connection ends is provided with a group of sealing interfaces 901 at the left and right sides of each group of sealing connection ends for providing sealing and inserting of the inflow circulation flow channel 96 and the outflow circulation flow channel 97, and the outer side of the left end of the inner filter mesh housing 95 is provided with a group of inflow circulation flow channels 96 for guiding the filtered cleaning water to flow in, the inflow circulation flow channels 96 are arranged in sequence and have an arc structure; The outer side of the right end of the inner filter mesh housing 95 is provided with a group of outflow circulation flow channels 97 for discharging the secondary filtered water, the inflow circulation flow channel 96 and the outflow circulation flow channel 97 are arranged alternately inside the two groups of inner filter sheets, the inner filter mesh housing 95 is provided with two groups, and the inner filter mesh is provided with two rows, and the front side of the two rows of inner support plates 98 is connected and fixed with the rear side of the outer sealing shell 93, the inner part of the filter inlet 91, the inner part of the inflow circulation flow channel 96, the inner part of the sealing connection end, the inner part of the outflow circulation flow channel 97, and the inner part of the filter outlet 94 are in communication with each other; Three components filter inlet 91 and upper filter layer 77 inside the sealed connection, and communicate with each other, three components filter outlet 94 inside and storage cavity inside each other, storage cavity left side is provided with a group of for the filtration of clean water to flow circulation flow pipe, circulation flow pipe left side is provided with a group for the filtration of clean water to high temperature disinfection high temperature disinfection cylinder 702, high temperature disinfection cylinder 702 left side is provided with a group for the filtration of clean water to again filter transmission inner connecting water pipe 703, inner connecting water pipe 703 front end right side is provided with a group for the filtration of clean water to the final fine filtration multistage gravity filtration cylinder 704, multistage gravity filtration cylinder 704 right side is provided with a group for the filtration of clean water to circulation flow circulation pipe 705, circulation pipe 705 rear side is provided with a group for with spray cleaning parts 3 intercommunication circulation outlet 706, in actual use, the waste water after cleaning through backflow square pipe 71 into clean water flow distribution head 73, through C-shaped clean water flow pipe 709 shunt to six groups of inner filter cavity, hollow concave inner partition filter screen 707 intercept fiber impurities, aeration pipe 76 discharge filter gas, the water flow through the preliminary filtration of upper filter layer 77 into lower filter layer 78, after storage cavity temporary storage through the sealing plate into the secondary filter cavity, by three groups of inner filter core 79 complete fine filtration, inner filter core 79 through the arc-shaped flow circulation flow channel 96 and flow circulation flow channel 97 realize staggered filtration, the water after purification through circulation flow pipe into high temperature disinfection cylinder 702 sterilization, again through multistage gravity filtration cylinder 704 final purification, finally through the circulation pipe 705 and circulation outlet 706 back to spray cleaning parts 3 repeated use.
[0026] The above only for the preferred embodiments of the present application have, and not to limit the present application, any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application, should be included in the scope of protection of the present application.
Claims
1. A continuous garment fabric cleaning apparatus comprising: The upper guide conveyor (1) and the lower guide conveyor (11) are characterized in that: the left outer side of the upper guide conveyor (1) is provided with a group of waterproof housings (2) for preventing damage caused by soaking with washing water; the right inner side of the waterproof housing (2) is provided with a group of spray washing components (3) for continuously spraying and washing the garment fabric; a group of water squeezing rollers for squeezing water on the upper and lower sides of the garment fabric is arranged between the spray washing component (3) and the hot blowing drying component (4); and the lower end of the middle position of the upper guide conveyor (1) is provided with a group of lower water return covers for receiving the sprayed water. The front side of the lower water return cover is in the shape of an isosceles trapezoid, the inside of the lower water return cover is provided with a group of recovery cavities, the front side of the bottom of the recovery cavity is provided with a group of recovery grooves for communicating with the inside of the water circulation component (7), the inside of the recovery groove is provided with a sealed interface (901), the left side of the spray washing component (3) is provided with a group of hot blowing drying components (4) for strongly blowing and drying the garment fabric, the left side of the hot blowing drying component (4) is provided with a group of lint cleaning components (5) for removing the surface lint of the dried garment fabric, the lint cleaning component (5) is provided with two groups of lint sticking rollers for sticking lint on the upper and lower sides thereof, and the front and back sides of the lint cleaning component (5) are respectively provided with a group of lint collection boxes for collecting the lint blown from the outer surface of the garment fabric.
2. A continuous garment fabric cleaning apparatus as claimed in claim 1, wherein: The left side of the waterproof housing (2) is provided with a group of guide covers (6) for downwardly bending and guiding the processed garment fabric, the front side of the guide cover (6) is in the shape of a semicircle and is internally provided with a smooth arc surface, the right side of the lower end of the guide cover (6) is provided with a group of lower guide conveyors (11) for guiding the garment fabric, the upper end and the front and back sides of the lower guide conveyor (11) are respectively provided with a plurality of groups of lower drying combinations for accelerating the drying of the garment fabric, the right side of the lower drying combination is in the shape of a concave structure, and the length of the top view cross section is two-thirds of the length of the outer shell (10); The lower end of the lower guide conveyor (11) is provided with a group of lower support frames (9) for supporting the bottom thereof, the right end of the front side of the lower support frame (9) is provided with a group of control components (8) for controlling the opening and closing of each component in the device and the output power, the control component (8) is a touch control panel, the front side of the spray washing component (3) is provided with a group of water circulation components (7) for recycling and reusing the spray washing water, and the water inlet end and the water outlet end of the water circulation component (7) are both sealingly connected with the inside of the spray washing component (3).
3. A continuous garment fabric cleaning apparatus as claimed in claim 1, wherein: The spray cleaning component (3) comprises an upper water guide pipe (31) and a downward nozzle (304), the upper water guide pipe (31) is sealingly connected with an external cleaning water supplement source, the outer interface of the upper water guide pipe (31) is a flange structure, the lower end of the upper water guide pipe (31) is provided with a group of connecting three-way pipes (32) for shunting the external supplement cleaning water, the rear side of the connecting three-way pipe (32) is provided with a group of side shunt pipes (33) for guiding and transmitting the shunted water, the right side of the connecting three-way pipe (32) is provided with a group of water transmission pipes (36) for conducting water, the lower end of the side shunt pipe (33) is uniformly provided with five groups of side guide pipes (34) for shunting cleaning water, the water flow pressure in the five groups of side guide pipes (34) is the same, and the rear side of each group of side guide pipes (34) is respectively provided with five groups of left nozzles (35) for spraying and cleaning the left side of the garment fabric, the five groups of left nozzles (35) are arranged in a vertical structure, and the inside of the left nozzle (35) is in communication with the inside of the side guide pipe (34).
4. A continuous garment fabric cleaning apparatus as claimed in claim 2, wherein: The five groups of left nozzles (35) are distributed in a 5*5 rectangular structure area, the right side of the water transmission pipe (36) is provided with a group of side shunt pipes (37) for supplying water to a plurality of side guide pipes (38) and side guide pipes (39), the side shunt pipe (37) is connected with the water transmission pipe (36), the left side of the side shunt pipe (37) is provided with five groups of side guide pipes (38) for supplying water to the top nozzle, the five groups of side guide pipes (38) are arranged in a uniform structure, and the lower end of each group of side guide pipes (38) is provided with five groups of top nozzles for spraying and cleaning the upper end of the garment fabric, a plurality of groups of top nozzles are distributed in a 5*5 rectangular structure area, the lower end of the side guide pipe (38) is provided with five groups of side guide pipes (39) for supplying water to a plurality of right nozzles (301), the five groups of side guide pipes (39) are arranged in a uniform structure, and the left side of each group of side guide pipes (39) is provided with five groups of right nozzles (301) arranged in a vertical structure.
5. A continuous garment fabric cleaning apparatus as claimed in claim 3, wherein: If several groups of the right jet (301) are 5*5 rectangular structure area distribution, the side shunt pipe two (37) back side is equipped with a group of water pipe two (302) for the transmission of washing water body, the right side of the water pipe two (302) is a kind of mirror image L-shaped structure in cross section, the lower end left side of the water pipe two (302) is equipped with five groups of side shunt pipe four for providing washing water source for downward jet (304), five groups of the side shunt pipe four are uniformly arranged, and the upper end of each group of the side shunt pipe four is equipped with five groups of downward jet (304) for spraying and washing the bottom of garment fabric, five groups of the downward jet (304) are arranged in horizontal structure, and several groups of the downward jet (304) are 5*5 rectangular structure area distribution, in the spraying and washing component (3), several groups of left jet (35), several groups of right jet (301), several groups of top jet and several groups of downward jet (304) are formed on the left side, right side, upper side and lower side of the middle position of the upper conveying belt (1) The washing surface of rectangular structure, wherein the water pressure in the side shunt pipe one (33), the side shunt pipe two (37), the side shunt pipe three and the side shunt pipe four is constant.
6. A continuous garment fabric cleaning apparatus as claimed in claim 1, wherein: The hot blowing drying component (4) includes outer drying air inlet pipe (41) and inner drying air return pipe (403), the lower end of the outer drying air inlet pipe is equipped with a group of uniform flow guide pipe one (42) for guiding the external hot drying air into shunt, the lower end of the uniform flow guide pipe one (42) is uniformly distributed with five groups, and the outer side of each group of the uniform flow guide pipe one (42) is equipped with a group of front drying air seat one for guiding the outer drying air to blow out, the front drying air seat is a triangular structure in cross section, wherein the front and rear ends of the right side of the front drying air seat one are arranged in straight line structure Several groups of drying holes for drying the left side of garment fabric, the several groups of drying holes arranged on the front and rear sides are arranged in inclined direction to the two sides, wherein five groups of side drying air seat one (44) are arranged in square structure.
7. A continuous garment fabric washing apparatus as claimed in claim 5 wherein: Meanwhile, several groups of the same surface drying hole are oriented drying operation in rectangular area, the lower end of each group of the uniform flow guide pipe one (42) is respectively equipped with a group of connecting elbow pipe (45) for continuously conducting the outer drying air, the front side of the connecting elbow pipe (45) is a J-shaped structure in cross section, the outer side of the right end of the connecting elbow pipe (45) is equipped with a group of lower drying air seat (46) for drying and blowing the lower end of garment fabric, several groups of the lower drying air seat (46) are consistent with the distribution of the side drying air seat one (44), five groups of lower drying air seat (46) are arranged in square structure and upward drying blowing, the right side of the connecting elbow pipe (45) is equipped with a group of drying shunt pipe two (47) for continuously transmitting drying gas; The drying shunt pipe two (47) is communicated with the connecting elbow (45) inside, the drying shunt pipe two (47) is equipped with five groups, and each group of the drying shunt pipe two (47) left side is respectively equipped with a group of side drying air seat two (48) for the right side of the garment fabric after cleaning is carried out outside drying air body blows out, five groups of the drying shunt pipe two (47) upper end is equipped with a group of uniform flow guide pipe two (49) for the drying air body is collected and is shunted again, the uniform flow guide pipe two (49) left side is uniformly distributed with five groups of upper drying air seat (402) for the garment fabric upper end is carried out drying, the upper drying air seat (402) is same with side drying air seat one (44), lower drying air seat (46) and side drying air seat two (48) in specification, and the above side, left and right sides and lower side are drying positions and are specified drying, and are cooperated with the spray cleaning range and are carried out the drying operation in the same position area, so as to improve the overall drying effect of garment fabric.
8. A continuous garment fabric cleaning apparatus as claimed in claim 6, wherein: The water circulation component (7) includes a return flow square tube (71) and a cleaning water guide pipe (709), the return flow square tube (71) front side is equipped with a group of cleaning water guide branch (73) for guiding the cleaning water after recycling, the cleaning water guide branch (73) lower end is equipped with a group of cleaning water guide pipe (709) for transmitting the cleaning water to be recycled, the cleaning water guide branch (73) and the cleaning water guide pipe (709) are communicated with each other inside, the cleaning water guide pipe (709) is a C-shaped structure as a whole, the cleaning water guide branch (73) lower end is equipped with six groups of internal filter cavities for filtering the cleaning water, wherein each group of filter cavities is equipped with a group of internal separation filter screen (707) for filtering the fiber components in the cleaning water inside, the internal separation filter screen (707) is a hollow concave structure, the cleaning water guide pipe (709) is arranged from the upper end of the six groups of internal filter cavities, and a group of water grooves is arranged at the upper end of the six groups of internal filter cavities, and the water grooves are located at the center position of the internal separation filter screen (707); Six groups of the internal filter cavities are arranged inside the upper filter layer (77), wherein the upper filter layer (77) right front side upper end is equipped with a group of aeration pipe (76) for discharging excess gas inside, the lower end of the upper filter layer (77) is equipped with a group of lower filter layer (78) for collecting and storing the cleaning water after preliminary filtering, the lower filter layer (78) includes storage cavity and secondary filter cavity inside, the storage cavity is arranged at the rear end inside the lower filter layer (78), and the secondary filter cavity is arranged at the front end of the lower filter layer (78), wherein the front end and the rear end are sealed and separated by a group of sealing plates, and the secondary filter cavity is equipped with three groups of internal filter elements (79) for filtering the cleaning water again. 9. A continuous garment fabric cleaning apparatus as claimed in claim 7, wherein: The inner filter core (79) comprises a sub-filter water inlet (91) and a sealing interface (901), the right end of the sub-filter water inlet (91) is provided with a group of sub-filter water outlets (94) for guiding the secondary filtered cleaning water, the front side of the sub-filter water inlet (91) and the sub-filter water outlet (94) is provided with a group of side sealing seats (92) for extracting the inner support plate (98), the rear side of the side sealing seat (92) is provided with a group of inner filter mesh housings (95) for sealing cover for a plurality of groups of inner filter sheets (99); The inner filter mesh housing (95) is internally provided with a group of inner support plates (98) for providing positioning support for a plurality of groups of inner filter sheets (99), each group of the inner support plate (98) is internally provided with a group of filter sheets for cross filtering of the filtered cleaning water, a plurality of groups of the filter sheets are arranged in a strip structure, a group of sealing connection ends for sealing connection of the two groups of inner support plates (98) is arranged between every two groups of the inner support plates (98), each group of the sealing connection end is respectively provided with a group of sealing interfaces (901) for providing sealing insertion of the inflow circulation flow channel (96) and the outflow circulation flow channel (97) on the left and right sides thereof, the left end of the outer side of the inner filter mesh housing (95) is provided with a group of inflow circulation flow channels (96) for guiding the inflow of the filtered cleaning water, the inflow circulation flow channels (96) are arranged and installed in sequence and are in an arc structure; The right end of the outer side of the inner filter mesh housing (95) is provided with a group of outflow circulation flow channels (97) for discharging the secondary filtered water, the inflow circulation flow channel (96) and the outflow circulation flow channel (97) are arranged in an interlaced manner inside the adjacent two groups of inner filter sheets, the inner filter mesh housing (95) is provided with two groups, and the inner filter mesh is provided with two rows, the front sides of the two rows of inner support plates (98) are connected and fixed with the rear side of the outer sealing shell (93), the interiors of the sub-filter water inlet (91), the inflow circulation flow channel (96), the sealing connection end, the outflow circulation flow channel (97) and the sub-filter water outlet (94) are in communication with each other; Three groups of the sub-filter water inlets (91) and the interiors of the upper filter layers (77) are sealingly connected and in communication with each other, the interiors of the three groups of the sub-filter water outlets (94) and the interiors of the storage cavities are in communication with each other, the left side of the storage cavity is provided with a group of circulation flow guide pipes for guiding the filtered cleaning water, the left side of the circulation flow guide pipe is provided with a group of high-temperature disinfection cylinders (702) for high-temperature disinfection of the filtered cleaning water, the left side of the high-temperature disinfection cylinder (702) is provided with a group of inner connecting water pipes (703) for re-filtering and conducting of the cleaning water after disinfection, the right side of the front end of the inner connecting water pipe (703) is provided with a group of multi-stage gravity filtration cylinders (704) for final fine filtration of impurities in the cleaning water, the right side of the multi-stage gravity filtration cylinder (704) is provided with a group of upper circulation pipes (705) for circulation of the completely filtered cleaning water, the rear side of the upper circulation pipe (705) is provided with a group of circulation water outlets (706) for communication with the spray cleaning component (3).