An automatic reed washing machine

The design of the automatic reed cleaning machine solves the problems of time-consuming, labor-intensive, and resource-wasting reed cleaning, realizes automated cleaning and water recycling, and ensures the cleaning effect between the reed blades and shuttle.

CN116889987BActive Publication Date: 2025-10-31ANHUI HUAMAO TEXTILE
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
CN202310701231.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-13
Publication Date
2025-10-31
Estimated Expiration
2043-06-13

AI Technical Summary

Technical Problem

The existing steel reed cleaning process is time-consuming and labor-intensive, cannot guarantee that the densely distributed gaps between the reeds are cleaned thoroughly, and wastes a lot of water resources.

Method used

Design an automatic reed cleaning machine, including a feeding unit, a cleaning unit, and a circulation unit. The reed is moved by a conveying component, and the automatic cleaning and water recycling are achieved by combining a limiting component, a cleaning mechanism, and a circulation system.

Benefits of technology

It achieves fully automated cleaning of the reed, ensuring the cleaning effect at the gap between the blades and shuttle, reducing manual intervention, and saving water resources.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN116889987B_ABST
    Figure CN116889987B_ABST
Patent Text Reader

Abstract

This invention discloses an automatic reed washing machine, including a reed component, and further comprising: a feeding unit, including a conveying component for continuously pushing the reed component and a limiting component disposed on the upper end of the conveying component for limiting the reed component during the conveying process; a cleaning unit disposed on the upper end of the conveying component opposite to the limiting component, for continuously cleaning the continuously fed reed component; and a circulation unit disposed below the cleaning unit for collecting the cleaned water for recycling by the cleaning unit. By placing the reed component on the upper end of the conveying component, with both sides of the reed component limited by the limiting components, the conveying component drives the reed component, which is limited by the limiting components, to move along the cleaning unit. The cleaning unit continuously brushes the reed component, thereby achieving the effect of automatically feeding and cleaning the reed component along the cleaning unit through the conveying component, significantly reducing manual intervention.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of reed cleaning technology, specifically to an automatic reed cleaning machine. Background Technology

[0002] The reed is a key component in the textile process. During the textile process, the quality of the reed and the cleanliness of its surface directly affect the quality of the woven fabric. Therefore, the reed needs to be cleaned regularly during use.

[0003] In the current technology for cleaning reeds, the reed is usually fixed on a workbench, and then the reed is manually sprayed with a high-pressure water gun. The entire cleaning process requires constantly swinging the water gun up and down, and feeding along the surface of the reed. This method is not only time-consuming and labor-intensive, but also cannot automatically clean the reed. Furthermore, it cannot ensure that the gaps between the densely distributed blades on the surface of the reed are evenly cleaned, resulting in cleaning dead zones.

[0004] In addition, existing steel reeds cannot recycle the water used for cleaning, resulting in a significant waste of water resources each time the reed is cleaned.

[0005] The above content is only used to help understand the technical solution of the present invention and does not represent an admission that the above content is the closest prior art. Summary of the Invention

[0006] The purpose of this invention is to provide an automatic reed cleaning machine to solve the problems mentioned in the background art, such as the inability to achieve full automation of cleaning, the time and labor-intensive nature of the process, the inability to ensure thorough cleaning of the gaps between the reed blades, and the waste of a large amount of water resources.

[0007] To achieve the above objectives, the present invention provides the following technical solution:

[0008] An automatic reed washing machine includes reed components and also includes:

[0009] The feeding unit includes a conveying component for continuously pushing the reed and a limiting component located at the upper end of the conveying component for limiting the reed during the conveying process.

[0010] A cleaning unit is located on the upper end of the conveying assembly on one side opposite to the limiting assembly, and is used to continuously clean the continuously fed reed.

[0011] A circulation unit, located below the cleaning unit, is used to collect the water after cleaning for recycling by the cleaning unit.

[0012] Furthermore, the transmission component includes:

[0013] support;

[0014] A conveyor belt, rotatably mounted within the support frame, is used to continuously feed the steel reed during the cleaning process;

[0015] A drive motor, located on one side of the bracket, is used to drive the conveyor belt to rotate;

[0016] The propulsion mechanism has multiple sets evenly spaced along the outer side of the conveyor belt, which are used to work with the conveyor belt to continuously feed the reed.

[0017] Furthermore, the propulsion mechanism includes:

[0018] An exit groove is provided inside the conveyor belt;

[0019] The lifting plate is slidably disposed inside the retraction groove to continuously feed the reed.

[0020] A tensioning spring is connected to the lower end of the lifting plate and located inside the retraction groove. It is used to press the lifting plate upward when the reed is not pressing it down.

[0021] Furthermore, the limiting component includes:

[0022] Support plate, connected to the upper end of the bracket;

[0023] The guide plate is connected to the upper part of one side of the support plate. Its bottom is provided with a clamping groove corresponding to the steel reed, which is used to limit the upper two sides of the steel reed during the movement.

[0024] A pad, connected to the middle position on one side of the support plate, is used to limit one side of the middle of the reed during the movement process.

[0025] Furthermore, the cleaning unit includes:

[0026] The mounting bracket is connected to the upper end of the conveying assembly and located on the side of the reed relative to the limiting assembly. The mounting bracket is n-shaped and has a cross groove inside.

[0027] The lifting mechanism is slidably installed in the cross groove for cleaning the reed.

[0028] A cam is rotatably connected to the inside of the mounting bracket via a drive shaft;

[0029] A belt, with one end fitted on the outside of the cam and the other end connected to the drive motor, is used to drive the lifting mechanism to lift.

[0030] A water inlet pipe is connected to one side of the lifting mechanism, and a water tank is provided at one end opposite to the lifting mechanism for supplying water to the lifting mechanism through the water inlet pipe.

[0031] Furthermore, the lifting mechanism includes:

[0032] The lifting rod is slidably disposed inside the cross groove, and limit blocks are connected on both sides of the lifting rod inside the cross groove to limit its movement.

[0033] The roller is rotatably connected to the outside of the lifting rod and is used to cooperate with the cam to drive the lifting rod to move up and down.

[0034] A cleaning mechanism is connected to one end of the lifting rod located on the reed, and is used to clean the reed.

[0035] Furthermore, the cleaning mechanism includes:

[0036] A swing block is connected to one end of the lifting rod, and its interior is provided with a water guide hole that communicates with the water inlet pipe;

[0037] Multiple sets of spray nozzles are provided and connected to one end of the swing block for spraying impurities on the surface of the steel reed.

[0038] Multiple sets of brush bristles are attached to one end of the swing block and spaced apart from the spray nozzle, and are used to brush the steel reed during the spraying process in conjunction with the spray nozzle.

[0039] Furthermore, the loop unit includes:

[0040] A water-blocking frame is located at the upper end of the conveying assembly and distributed around the steel reed, used to intercept water flowing on the conveying assembly during the cleaning process.

[0041] A deflector plate, connected to the lower end of the conveying assembly and gradually retracting, is used to concentrate the dispersed water after washing. A water collection frame is connected to the lower end of the deflector plate to collect the water introduced by the deflector plate.

[0042] A return pipe is connected between the water collection frame and the cleaning unit, and is used to guide the water in the water collection frame into the cleaning unit.

[0043] A filtration mechanism is located between the guide plate and the water collection frame, and is used to filter impurities contained in the collected water.

[0044] Furthermore, the filtration mechanism includes:

[0045] A filter plate is slidably inserted into the water collection frame and located above the return pipe. It has a dirt collection tank inside for holding impurities, and a filter hole is provided inside the filter plate and at the lower end of the dirt collection tank.

[0046] A pull block, connected to one end of the filter plate, is used to pull the filter plate along the water collection frame.

[0047] Compared with the prior art, the beneficial effects of the present invention are:

[0048] This invention places the reed on the upper part of the conveying assembly, with the two sides of the reed limited by the limiting components. The conveying assembly drives the reed, which is limited by the limiting components, to move along the cleaning unit. The cleaning unit continuously brushes the reed, thereby achieving the effect of automatically feeding and cleaning the reed along the cleaning unit through the conveying assembly without the need for manual fixation, greatly reducing the need for manual intervention. Attached Figure Description

[0049] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0050] Figure 2 This is a diagram showing the cooperation relationship between the lifting mechanism and the mounting frame of the present invention;

[0051] Figure 3 This is a diagram showing the fit between the spray nozzle and the bristles of the present invention.

[0052] Figure 4 This is a schematic diagram showing the moving state of the steel reed component of the present invention;

[0053] Figure 5 This is a diagram showing the fit between the steel reed and the limiting component of the present invention;

[0054] Figure 6 This is a diagram showing the fit and relationship of the conveyor belt in the propulsion mechanism of this invention;

[0055] Figure 7 This is a schematic diagram of the cyclic unit structure of the present invention;

[0056] Figure 8 This is a diagram showing the relationship between the filtration mechanism and the water collection frame of the present invention.

[0057] Reference numerals: 1. Feeding unit; 2. Cleaning unit; 3. Circulation unit; 11. Conveying assembly; 12. Limiting assembly; 100. Reed; 111. Bracket; 112. Drive motor; 113. Conveyor belt; 114. Propulsion mechanism; 1141. Retraction groove; 1142. Lifting plate; 1143. Tightening spring; 121. Support plate; 122. Guide plate; 1221. Clamping groove; 123. Pad; 21. Mounting bracket; 211. Cross groove; 22. Lifting mechanism; 221. Lifting rod; 2211, Limiting block; 222, Roller; 223, Cleaning mechanism; 2230, Water guide hole; 2231, Swing block; 2232, Spray nozzle; 2233, Brush bristles; 224, Water inlet pipe; 2241, Limiting rod; 225, Water tank; 23, Belt; 24, Cam; 241, Drive shaft; 311, Water barrier frame; 312, Flow guide plate; 3121, Water collection frame; 313, Return pipe; 314, Filtration mechanism; 3141, Filter plate; 3142, Sludge collection tank; 3143, Pull block. Detailed Implementation

[0058] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0059] Example 1

[0060] Please see Figure 1-8 The present invention provides a technical solution:

[0061] An automatic reed washing machine includes a reed component 100, and also includes:

[0062] The feeding unit 1 includes a conveying component 11 for continuously pushing the reed 100 and a limiting component 12 disposed on the upper end of the conveying component 11 for limiting the reed 100 during the conveying process.

[0063] The cleaning unit 2 is located on the upper end of the conveying assembly 11 on one side opposite to the limiting assembly 12, and is used to continuously clean the continuously fed reed 100.

[0064] The circulation unit 3 is located below the cleaning unit 2 and is used to collect the water after cleaning for recycling by the cleaning unit 2.

[0065] It should be noted that during use, the reed 100 is placed on the upper end of the conveying assembly 11, and the two sides of the reed 100 are limited by the limiting assembly 12. The conveying assembly 11 drives the reed 100, which is limited by the limiting assembly 12, to move along the cleaning unit 2. The cleaning unit 2 continuously brushes the reed 100, thereby achieving the effect of automatically feeding and cleaning the reed 100 along the cleaning unit 2 through the conveying assembly 11 without the need for manual fixation, greatly reducing the need for manual intervention.

[0066] As an improvement, such as Figure 1 , Figure 6 As shown, the transmission component 11 includes:

[0067] Bracket 111;

[0068] The conveyor belt 113 is rotatably mounted inside the bracket 111 and is used to continuously feed the steel reed 100 during the cleaning process.

[0069] A drive motor 112 is located on one side of the bracket 111 and is used to drive the conveyor belt 113 to rotate.

[0070] The propulsion mechanism 114 is provided in multiple sets at equal intervals along the outer side of the conveyor belt 113, and is used to cooperate with the conveyor belt 113 to continuously feed the reed 100.

[0071] Furthermore, the propulsion mechanism 114 includes:

[0072] An exit groove 1141 is provided inside the conveyor belt 113;

[0073] The lifting plate 1142 is slidably disposed inside the retraction groove 1141 to continuously feed the reed 100.

[0074] The tensioning spring 1143 is connected to the lower end of the lifting plate 1142 and located inside the retraction groove 1141. It is used to tighten the lifting plate 1142 upward when the reed 100 does not press down on the lifting plate 1142.

[0075] Furthermore, such as Figure 1 , Figure 4-5 As shown, the limiting component 12 includes:

[0076] Support plate 121 is connected to the upper end of bracket 111;

[0077] The guide plate 122 is connected to the upper side of the support plate 121. Its bottom is provided with a clamping groove 1221 corresponding to the steel reed 100, which is used to limit the upper two sides of the steel reed 100 during the movement process.

[0078] The pad 123 is connected to the middle position on one side of the support plate 121 and is used to limit one side of the middle part of the reed 100 during the movement process.

[0079] As an improvement, such as Figure 1-2 As shown, the cleaning unit 2 includes:

[0080] Mounting bracket 21 is connected to the upper end of the conveying assembly 11 and located on the side of the reed 100 relative to the limiting assembly 12. The mounting bracket 21 is n-shaped and has a cross groove 211 inside.

[0081] The lifting mechanism 22 is slidably disposed in the cross groove 211 for cleaning the reed 100;

[0082] Cam 24 is rotatably connected to the inner side of the mounting bracket 21 via drive shaft 241;

[0083] The belt 23 has one end sleeved on the outside of the cam 24 and the other end connected to the drive motor 112, which is used to drive the lifting mechanism 22 to lift.

[0084] A water inlet pipe 224 is connected to one side of the lifting mechanism 22, and a water tank 225 is provided at one end of the pipe opposite to the lifting mechanism 22 for supplying water to the lifting mechanism 22 through the water inlet pipe 224;

[0085] A water pump is installed at one end of the water inlet pipe 224 located in the water storage tank 225;

[0086] Preferably, the outer side of the water inlet pipe 224 is provided with a limiting rod 2241 connected to the upper end of the bracket 111 to prevent the water inlet pipe 224 from becoming messy during the lifting operation of the lifting rod 221.

[0087] Furthermore, the lifting mechanism 22 includes:

[0088] The lifting rod 221 is slidably disposed inside the cross groove 211, and limit blocks 2211 are connected on both sides of the lifting rod 221 inside the cross groove 211 to limit the lifting rod 221.

[0089] Roller 222 is rotatably connected to the outside of the lifting rod 221 and is used to cooperate with cam 24 to drive the lifting rod 221 to move up and down;

[0090] The cleaning mechanism 223 is connected to one end of the lifting rod 221 located on the reed 100 and is used to clean the reed 100.

[0091] Furthermore, the cleaning mechanism 223 includes:

[0092] The swing block 2231 is connected to one end of the lifting rod 221, and its interior is provided with a water guide hole 2230 that communicates with the water inlet pipe 224;

[0093] Multiple sets of spray nozzles 2232 are provided and connected to one end of the swing block 2231 for spraying impurities on the surface of the reed 100.

[0094] Multiple sets of bristles 2233 are connected to one end of the swing block 2231 and spaced apart from the spray nozzle 2232, and are used to work with the spray nozzle 2232 to brush the reed 100 during the spraying process.

[0095] It should be noted that, in the specific implementation of this invention, such as Figure 5 As shown, the drive motor 112 is started, and the drive motor 112 drives the conveyor belt 113 to rotate continuously. The outer frame of the steel reed 100 to be cleaned is inserted along one end of the clamping groove 1221, and one end face of the outer frame of the steel reed 100 contacts the pad 123. This makes the upper left and right ends of the steel reed 100 limited by the clamping groove 1221, the lower end of the steel reed 100 limited by the conveyor belt 113, and the middle side of the steel reed 100 limited by the pad 123. This completes the overall limitation of the steel reed 100. After being limited, the steel reed 100 is driven by the conveyor belt 113 at a uniform speed to the bristles 2233 for washing, thereby achieving the effect of automatic washing of the steel reed 100.

[0096] like Figure 4 , Figure 6 As shown, during the brushing process of the brush bristles 2233 on the reed 100, there is resistance that prevents the reed 100 from being pushed by the conveyor belt 113, causing relative sliding between the reed 100 and the conveyor belt 113, resulting in excessively long local brushing time for the reed 100. Therefore, this invention addresses this by equidistantly setting a pushing mechanism 114 at the upper end of the conveyor belt 113. The lifting plate 1142 located directly below the reed 100, under the weight of the reed 100, compresses the pressing spring 1143 downwards along the retraction groove 1141, thus... The height of the lifting plate 1142 located directly below the reed 100 is lower than the height of the lifting plate 1142 located on one side of the reed 100. This ensures that the reed 100 can be pushed forward by the lifting plate 1142 on one side of the reed 100 during the conveyor belt 113 conveying process. This avoids the relative sliding between the reed 100 and the conveyor belt 113 caused by the resistance generated by the brush bristles 2233 when brushing the reed 100. This would prevent the cleaning time of each part of the reed 100 from being inconsistent during the cleaning process, resulting in poor cleaning effect.

[0097] like Figure 1-3As shown, when the reed 100 is conveyed to the brush bristles 2233 by the conveyor belt 113, the water pump in the water tank 225 is started. The water pump sends the water in the water tank 225 into the water guide hole 2230 through the water inlet pipe 224 and sprays it onto the corresponding shuttle of the reed 100 through the spray nozzle 2232. During the process of the drive motor 112 driving the reed 100 to feed through the conveyor belt 113, it also drives the cam 24 to rotate simultaneously through the belt 23. The cam 24 drives the lifting rod 221 to move up and down along the cross groove 211 through the roller 222. The lifting rod 221 drives the brush bristles 2233 to brush the shuttle inside the reed 100 up and down under the continuous spraying action of the spray nozzle 2232. There are no dead corners in the entire brushing process.

[0098] In addition, when the shuttle is brushed up and down, the reed 100 is always fed at a constant speed along the bristles 2233, so as to ensure that the gaps between the densely distributed shuttles on the reed 100 can be brushed evenly.

[0099] Example 2

[0100] like Figure 1 , Figure 8 As shown, components that are the same as or corresponding to those in Embodiment 1 are referred to using the same reference numerals as in Embodiment 1. For simplicity, only the differences from Embodiment 1 are described below. The difference between Embodiment 2 and Embodiment 1 is as follows:

[0101] As an improvement, the loop unit 3 includes:

[0102] A water-blocking frame 311 is located at the upper end of the conveying assembly 11 and distributed around the steel reed 100, and is used to intercept the water flowing on the conveying assembly 11 during the cleaning process.

[0103] A guide plate 312 is connected to the lower end of the conveying assembly 11 and gradually retracts to concentrate the dispersed water after washing. A water collection frame 3121 is connected to the lower end of the guide plate 312 to collect the water introduced by the guide plate 312.

[0104] A return pipe 313 is connected between the water collection frame 3121 and the cleaning unit 2, and is used to guide the water in the water collection frame 3121 into the cleaning unit 2.

[0105] The filtration mechanism 314 is located between the guide plate 312 and the water collection frame 3121, and is used to filter the impurities contained in the collected water.

[0106] Furthermore, the filtration mechanism 314 includes:

[0107] The filter plate 3141 is slidably inserted into the water collection frame 3121 and located above the return pipe 313. It has a dirt collection tank 3142 for accommodating impurities inside, and a filter hole is provided inside the filter plate 3141 and at the lower end of the dirt collection tank 3142.

[0108] Pull block 3143 is connected to one end of the filter plate 3141 and is used to pull the filter plate 3141 out along the water collection frame 3121.

[0109] It should be noted that when water is sprayed onto the reed 100 through the nozzle 2232, the water that passes through the gap between the reed 100 blades is blocked by the support plate 121 and falls into the area of ​​the water-blocking frame 311. The water that does not pass through the reed 100 blades falls directly into the area of ​​the water-blocking frame 311. The water that falls into the area of ​​the water-blocking frame 311 passes through the support 111 and is guided along the guide plate 312 to the filter plate 3141. The filter plate 3141 filters the impurities in the water and stores them in the sludge collection tank 3142. The water filtered by the filter plate 3141 enters the water collection frame 3121 and enters the water storage tank 225 along the return pipe 313 for secondary use by the cleaning unit 2. This achieves the effect of water recycling throughout the cleaning process and avoids water waste.

[0110] When the sludge collection tank 3142 is full of impurities, pull the pull block 3143 to pull out the filter plate 3141 along the water collection frame 3121 to remove the impurities in the sludge collection tank 3142. It is easy to use.

[0111] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0112] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An automatic reed washing machine, comprising a reed component (100), characterized in that, Also includes: The feeding unit (1) includes a conveying component (11) for continuously pushing the reed (100) and a limiting component (12) disposed on the upper end of the conveying component (11) for limiting the reed (100) during the conveying process. A cleaning unit (2) is provided on the upper end of the conveying assembly (11) on one side opposite to the limiting assembly (12) for continuously cleaning the continuously fed reed (100); A circulation unit (3) is located below the cleaning unit (2) and is used to collect the water after cleaning for the cleaning unit (2) to circulate. The transmission component (11) includes: Support (111); The conveyor belt (113) is rotatably mounted inside the bracket (111) and is used to continuously feed the steel reed (100) during the cleaning process; A drive motor (112) is located on one side of the bracket (111) and is used to drive the conveyor belt (113) to rotate. The propulsion mechanism (114) is provided in multiple sets at equal intervals along the outer side of the conveyor belt (113) to cooperate with the conveyor belt (113) to continuously feed the reed (100); The propulsion mechanism (114) includes: An exit groove (1141) is provided inside the conveyor belt (113); The lifting plate (1142) is slidably disposed inside the retraction groove (1141) to push the reed (100) to feed continuously; A tensioning spring (1143) is connected to the lower end of the lifting plate (1142) and located inside the retraction groove (1141). It is used to press the lifting plate (1142) upward when the reed (100) does not press the lifting plate (1142). The cleaning unit (2) includes: Mounting bracket (21) is connected to the upper end of the conveying assembly (11) and located on the side of the reed (100) relative to the limiting assembly (12). The mounting bracket (21) is n-shaped and has a cross groove (211) inside. The lifting mechanism (22) is slidably disposed in the cross groove (211) for cleaning the reed (100); The cam (24) is rotatably connected to the inside of the mounting bracket (21) via a drive shaft (241); A belt (23) is fitted on the outside of the cam (24) at one end and connected to the drive motor (112) at the other end, and is used to drive the lifting mechanism (22) to lift. A water inlet pipe (224) is connected to one side of the lifting mechanism (22), and a water storage tank (225) is provided at one end of the pipe opposite to the lifting mechanism (22) for supplying water to the lifting mechanism (22) through the water inlet pipe (224); The lifting mechanism (22) includes: The lifting rod (221) is slidably disposed inside the cross groove (211) on both sides and inside the cross groove (211) to limit the lifting rod (221). The roller (222) is rotatably connected to the outside of the lifting rod (221) and is used to cooperate with the cam (24) to drive the lifting rod (221) to move up and down; A cleaning mechanism (223) is connected to one end of the lifting rod (221) located on the reed (100) and is used to clean the reed (100). The cleaning mechanism (223) includes: The swing block (2231) is connected to one end of the lifting rod (221), and its interior is provided with a water guide hole (2230) that communicates with the water inlet pipe (224); Multiple sets of spray nozzles (2232) are provided and connected to one end of the swing block (2231) for spraying impurities on the surface of the steel reed (100); Multiple sets of bristles (2233) are connected to one end of the swing block (2231) and spaced apart from the spray nozzle (2232) for use in conjunction with the spray nozzle (2232) to brush the steel reed (100) during the spraying process.

2. The automatic reed washing machine according to claim 1, characterized in that: The limiting component (12) includes: Support plate (121) is connected to the upper end of the bracket (111); The guide plate (122) is connected to the upper side of the support plate (121), and its bottom is provided with a clamping groove (1221) corresponding to the steel reed (100) to limit the upper sides of the steel reed (100) during the movement process; A pad (123) is connected to the middle position on one side of the support plate (121) and is used to limit one side of the middle part of the reed (100) during the movement process.

3. An automatic reed washing machine according to claim 1, characterized in that, The loop unit (3) includes: A water-blocking frame (311) is provided at the upper end of the conveying assembly (11) and distributed around the steel reed (100) to intercept the water flowing on the conveying assembly (11) during the cleaning process. A guide plate (312) is connected to the lower end of the conveying assembly (11) and gradually retracts to concentrate the dispersed water after washing. A water collection frame (3121) is connected to the lower end of the guide plate (312) to collect the water introduced by the guide plate (312). A return pipe (313) is connected between the water collection frame (3121) and the cleaning unit (2) for guiding water in the water collection frame (3121) into the cleaning unit (2); A filtration mechanism (314) is located between the guide plate (312) and the water collection frame (3121) for filtering impurities contained in the collected water.

4. An automatic reed washing machine according to claim 3, characterized in that, The filtration mechanism (314) includes: The filter plate (3141) is slidably inserted into the water collection frame (3121) and located above the return pipe (313). It has a dirt collection tank (3142) for accommodating impurities inside, and a filter hole is provided inside the filter plate (3141) and at the lower end of the dirt collection tank (3142). A pull block (3143) is attached to one end of the filter plate (3141) for pulling the filter plate (3141) along the water collection frame (3121).

Citation Information

Patent Citations

  • Cloth smashing device for woven garment processing

    CN109046569A

  • Cleaning unit and sheet inserting device

    CN213103388U

  • Automatic reed washing machine

    CN220461438U