A fabric cleaner head
Patent Information
- Application Number
- CN202610955710.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-06-30
- Publication Date
- 2026-08-18
AI Technical Summary
其刷头底部设置有固定的刷毛或刷条,在使用时用户手持刷头,依靠手臂的往复运动对污渍区域进行反复刷洗,固定刷头完全依赖人工手动擦拭,需要用户进行刷洗,长时间操作容易导致手臂酸痛,清洁大面积区域时不仅耗时耗力,清洁效率也较低
1.动力源组件可带动清洁刷做自动偏心圆周刷洗,无需用户手动反复擦拭,能够有效降低操作负担,减少长时间操作带来的手臂酸痛问题,大幅提升大面积布艺清洁的工作效率;
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Figure CN122581632A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of cleaning equipment, and in particular to a cleaning head for fabric looms. Background Technology
[0002] Fabric products are widely used in home life due to their comfort and aesthetics, but they are also prone to attracting dust and stains. Fabric cleaning machines, also known as fabric washing machines or sofa cleaning machines, are specialized cleaning equipment that typically uses a combination of water spraying, brushing, and vacuuming to deeply clean fabric surfaces.
[0003] Most fabric cleaning machines on the market currently use a fixed brush head design. The brush head has fixed bristles or strips at the bottom. Users hold the brush head and rely on the reciprocating motion of their arm to repeatedly scrub the stained area. This fixed brush head relies entirely on manual wiping, which can easily lead to arm pain after prolonged use. Cleaning large areas is not only time-consuming and laborious, but also inefficient. Furthermore, the fixed brush head structure cannot flexibly adjust the scrubbing force for fabrics of different thicknesses and stiffnesses. Excessive scrubbing force can damage soft fabrics, while insufficient scrubbing force may fail to remove stubborn stains. The cleaning effect is greatly affected by the user's technique and the amount of force applied, making it difficult to adapt to the needs of different fabric cleaning scenarios and limiting its usability. Summary of the Invention
[0004] To improve cleaning efficiency and adaptability, this application provides a fabric cleaning head that can automatically clean stains and is suitable for cleaning various fabric materials.
[0005] This application provides a fabric machine cleaning head, which adopts the following technical solution: A fabric cleaning head includes: a base, including a mounting frame disposed at its output end; A cleaning brush is detachably mounted on the mounting frame; A water box, fixed to one side of the mounting frame, is used to store water and exchange water with the cleaning brush. A water outlet channel is provided within the base to supply clean water to the water box; A water intake channel is provided inside the base to return the wastewater source to the water box; A power source assembly is fixed inside the base, and the output end of the power source is assembled with the back of the mounting frame to drive the cleaning brush to perform circular motion. The tension adjustment component is fixed inside the base and is used to adjust the distance between the cleaning brush and the mounting frame.
[0006] By adopting the above technical solutions, the power source component can drive the cleaning brush to perform circular motion scrubbing, eliminating the need for manual repeated wiping of stained areas, effectively reducing the user's operational burden and improving the efficiency of cleaning large areas of fabrics; while the tension adjustment component can change the pressure of the cleaning brush against the fabric surface by adjusting the distance between the cleaning brush and the mounting frame, flexibly adjusting the scrubbing force according to the thickness and hardness of different fabrics, which is not easy to damage soft fabrics due to excessive pressure, and can also ensure sufficient scrubbing force to remove stubborn stains, adapting to the usage needs of different fabric cleaning scenarios and effectively improving cleaning adaptability.
[0007] Preferably, the power source assembly includes an internal gear fixed in the base; an external gear meshing with the internal gear; a central shaft with both ends connected to the external gear and the mounting frame bearing, respectively; and a drive member disposed in the base, wherein the output end of the drive member is fixedly connected to the central shaft, and the external gear and the internal gear always maintain meshing transmission.
[0008] The power source assembly includes a crankshaft, which is fixed to the end of the central shaft away from the drive member, and the output end of the crankshaft is assembled with a mounting frame.
[0009] By adopting the above technical solution, the drive component drives the central shaft to rotate when it is working. During the rotation of the central shaft, the internal gear rotates and meshes with the external gear to provide guidance and stability. The crankshaft drives the entire mounting frame to make eccentric circular motion, so that the cleaning brush can stably and continuously perform automatic brushing action.
[0010] Compared to fixed cleaning brushes, this application eliminates the need for manual back-and-forth brushing, effectively reducing user fatigue and maintaining stable brushing efficiency even when cleaning large areas, thus minimizing uneven force caused by manual operation. Compared to cleaning brushes that operate on a circular trajectory, this application employs an eccentric circular motion with a wider brushing range, covering a larger area of stains. The brushing motion more closely resembles the brushing logic of manual wiping, resulting in a more even and thorough cleaning effect.
[0011] Preferably, the tension adjustment assembly includes a connecting spring, a push rod, a moving block, and a sleeve. The outer wall of the sleeve has an external thread, and the middle of the moving block has an internal thread. The moving block is threadedly connected to the outer wall of the sleeve. One end of the push rod is assembled with the cleaning brush, and the other end is movably installed inside the sleeve, allowing the push rod to slide along the mounting frame. The connecting spring is sleeved on the outer wall of the push rod, with one end fixedly connected to the push rod and the other end assembled with the side wall of the moving block.
[0012] The tension adjustment assembly includes a first bevel gear and a second bevel gear with their central axes perpendicular to each other. The first bevel gear is fixed to the output end of the sleeve near the base, and the second bevel gear is rotatably connected to the base. The first bevel gear and the second bevel gear mesh with each other.
[0013] The tension adjustment assembly includes a mating block fixed to one side of the movable block, a mating rod movably installed in the base, one end of the mating rod being assembled with the cleaning brush, and the mating block and the mating rod being slidably connected. The extension direction of the mating rod is consistent with that of the push rod.
[0014] By adopting the above technical solution, rotating the second bevel gear can drive the first bevel gear and the sleeve to rotate synchronously. The rotation of the sleeve will drive the moving block connected to the outer wall thread to move along the sleeve axis. During the movement of the moving block, the connecting spring is compressed or released, which can change the pushing force of the connecting spring on the push rod, thereby adjusting the length of the cleaning brush extending out of the mounting frame and changing the pressure of the cleaning brush on the fabric surface. The adjustment operation is simple and convenient, and can quickly adapt to the cleaning needs of different fabric materials.
[0015] Preferably, the water box includes a box body and a water supply hole and a water absorption groove formed on the box body. The water absorption groove is located in the center of the box body, and the water supply hole is formed around the edge of the surface of the box body. The water absorption groove and the water supply hole are not connected in the box body.
[0016] The cleaning brush includes a support frame, bristles, and a water outlet. The support frame is slidably connected to one side of the mounting frame, the water outlet is a through-hole in a U-shape, and the bristles are fixed to the side of the support frame away from the mounting frame.
[0017] The box body is detachably fixed to the support frame, and the water absorption tank and water supply hole are both connected to the water outlet hole.
[0018] By adopting the above technical solution, clean water enters the water box through the water outlet channel and flows into the U-shaped water outlet of the cleaning brush through the water supply hole, providing continuous water supply to the washing area. After the washing is completed, the wastewater is sucked into the water suction groove inside the U-shaped water outlet and then discharged back through the water suction channel. Water supply, washing, and waste suction can be completed simultaneously, further improving cleaning efficiency.
[0019] Compared to the method where the water absorption groove is distributed outside the water supply hole, the water supply hole of this application first wets the cleaning area, and then the water absorption groove located inside the water supply hole promptly absorbs the wastewater after washing. This can prevent the wastewater from spreading to the outside of the cleaning area, reduce secondary soaking and pollution caused by excessive wetting, and also speed up the drying speed of the fabric surface, resulting in a better user experience.
[0020] This application designs the water outlet as a U-shaped hole instead of a dot-shaped one, and combines it with the eccentric rotation of the cleaning brush. This design ensures that the U-shaped water outlet can continuously and evenly supply water during the rotation of the cleaning brush. Combined with the eccentric rotation of the brush, the water supply can evenly cover the entire brushing area, eliminating any dead spots. This ensures that the water outlet covers the entire brushing area and prevents dry brushing during the brushing process. It also makes the process of wetting, brushing, and suction smoother and the cleaning effect more stable. At the same time, it can move synchronously with the inner water suction tank to ensure that the wastewater after brushing is fully recycled, resulting in better cleaning effect.
[0021] Preferably, the mounting frame has a movable groove along its edge, and a mounting slider slides within the groove. The support frame includes a hanging ear, which is detachably connected to the mounting slider.
[0022] By adopting the above technical solution, the cleaning brush can be easily removed from the mounting frame, making it convenient to clean and maintain the cleaning brush separately after use. It can also be replaced with cleaning heads of different bristle specifications according to different cleaning needs, further improving the adaptability of the device.
[0023] In summary, this application includes at least one of the following beneficial technical effects: 1. The power source component can drive the cleaning brush to perform automatic eccentric circumferential brushing, eliminating the need for users to manually wipe repeatedly, effectively reducing the burden of operation, reducing arm pain caused by prolonged operation, and greatly improving the work efficiency of cleaning large areas of fabric. 2. The tension adjustment component allows for flexible adjustment of the pressure of the cleaning brush on the fabric surface. It can adjust the brushing force according to the thickness and hardness of different fabrics, which is not easy to damage soft fabrics, but also ensures sufficient force to remove stubborn stains. It is suitable for a variety of different fabric cleaning scenarios and effectively improves cleaning adaptability. 3. Water supply, brushing, and vacuuming can be completed simultaneously, and the cleaning brush adopts a detachable installation design, which facilitates later cleaning, maintenance, and replacement of different brush heads, making it more flexible and convenient to use. Attached Figure Description
[0024] Figure 1 This is a schematic diagram showing the state of the cleaning head when it is installed on the fabric machine in the embodiment of this application.
[0025] Figure 2 This is a schematic diagram of the cleaning head structure in an embodiment of this application.
[0026] Figure 3 This is a schematic diagram of the cooperation between the cleaning brush and the water box in an embodiment of this application.
[0027] Figure 4 This is a schematic diagram of the power source component in an embodiment of this application.
[0028] Figure 5 This is a schematic diagram of the tension adjustment component in the embodiments of this application.
[0029] Explanation of reference numerals in the attached drawings: 1. Base; 2. Mounting frame; 21. Moving slide; 22. Mounting slider; 23. Threaded rod; 3. Cleaning brush; 31. Support frame; 32. Brush bristles; 33. Water outlet; 4. Water box; 41. Box body; 42. Water supply hole; 43. Water suction groove; 5. Water outlet channel; 6. Water suction channel; 71. Internal gear; 72. External gear; 73. Central shaft; 74. Driving component; 75. Crankshaft; 81. Connecting spring; 82. Push rod; 83. Moving block; 84. Sleeve; 85. First bevel gear; 86. Second bevel gear; 861. Rotating head; 87. Mating block; 88. Mating rod; 9. Fabric making machine. Detailed Implementation
[0030] The following is in conjunction with the appendix Figures 1-5 This application will be described in further detail.
[0031] This application discloses a cleaning head for fabric knitting machines.
[0032] Reference Figure 1 This application provides a cleaning head for a fabric cleaning machine that can be used on a conventional fabric cleaning machine 9 on the market. It can be used to clean the surfaces of fabrics or leathers such as car seats, genuine leather and fabric sofas, wool cushions, curtains and carpets. When in use, it relies on its own power to complete the automatic cleaning. The fabric cleaning machine 9 referred to here is equipped with at least a steam generator, a storage tank, a wastewater tank, a water pump, an air pump, and a wastewater processor. The storage tank is used to store cleaning water, and detergent can be added to the storage tank. The water pump can directly connect clean water to the water outlet channel 5 of this cleaning head through a pipe, thereby providing a water source for the cleaning process. Alternatively, the steam generator can be started to heat the cleaning water in the storage tank to generate steam. Under the action of the air pump, a negative pressure can be formed in the water outlet channel 5 of this cleaning head, which is connected to the water outlet channel 5 of this cleaning head through a pipe to provide high-temperature steam for the cleaning process to improve the cleaning effect. After cleaning is completed, the wastewater generated after brushing is sucked out by the water pump and returned to the wastewater storage tank for temporary storage. The wastewater processor performs preliminary treatment on the wastewater before discharging it out of the fabric cleaning machine 9 or returning it to the storage tank for reuse.
[0033] Reference Figure 1 and Figure 2A fabric cleaning machine head includes a base 1, an integrated mounting frame 2 at the output end of the base 1, a cleaning brush 3 detachably mounted on the mounting frame 2, a water box 4 fixed on the side of the base 1 near the mounting frame 2, and an outlet channel 5 and a suction channel 6 inside the base 1. The outlet channel 5 is used to deliver clean water from an external source to the water box 4, and the suction channel 6 is used to backflow and suck out the wastewater in the water box 4. A power source component and a tension adjustment component are fixedly installed inside the base 1. The output end of the power source component is assembled with the back of the mounting frame 2, which can drive the cleaning brush 3 to perform a circular brushing motion. The tension adjustment component is used to adjust the distance between the cleaning brush 3 and the mounting frame 2, thereby changing the brushing pressure of the cleaning brush 3 on the fabric surface.
[0034] Specifically, refer to Figure 4 and Figure 5 The base 1 has an internal mounting cavity to provide installation space for the power source assembly and tension adjustment assembly. At the same time, the sealed structure prevents water from contacting the electrical control components. The inner wall of the mounting cavity can be sealed and waterproofed to prevent water vapor leakage from corroding the internal components during cleaning.
[0035] The base 1 is internally equipped with a water outlet channel 5 and a water suction channel 6. Both channels are connected to the corresponding interfaces of the water box 4 and the fabric machine 9 via flexible rubber hoses. The water outlet channel 5 introduces clean water into the water box 4, while the water suction channel 6 sucks wastewater from the water box 4 and discharges it, achieving simultaneous water supply and wastewater suction. The flexible rubber hoses have good deformation capacity and will not interfere with the normal operation of the moving components inside the base 1. At the same time, the flexible rubber hoses themselves have good sealing properties and are resistant to bending, enabling stable delivery of clean water and suction of wastewater.
[0036] Reference Figures 3 to 5 The mounting frame 2 is fixed to the output end of the base 1. The cleaning brush 3 includes a support frame 31, bristles 32 and a water outlet 33. The water outlet 33 is a through-hole in the shape of a U-shape. The bristles 32 are fixed to the side of the support frame 31 away from the mounting frame 2. The support frame 31 is slidably connected to the mounting frame 2. Specifically, the left and right edges of the mounting frame 2 are provided with movable grooves 21 extending along their width. Each movable groove 21 is slidably connected to a mounting slider 22. The two sides of the support frame 31 are integrally provided with corresponding hanging ears. The hanging ears are inserted into the mounting sliders 22 at the corresponding positions. Then, the threaded rod 23 with a handle is screwed into the mounting slider 22 to complete the locking. The end of the threaded rod 23 is used to press against the hanging ears, so that the hanging ears and the mounting sliders 22 can be detachably hung and fixed.
[0037] The water box 4 includes a box body 41, which is divided into a clean water area and a wastewater area. The two areas are not connected. A water supply hole 42 and a water absorption groove 43 are provided on the outward-facing side of the box body 41. The water absorption groove 43 is located in the center of the box body 41. The water supply hole 42 is arranged around the edge of the surface of the box body 41. The two are not connected within the box body 41. In this application, the box body 41 and the support frame 31 are detachably fixed. Specifically, they can be fixed by snap-fit or by tightening bolts.
[0038] After installation, the water supply hole 42 of the box 41 is connected to the outer edge of the water outlet hole 33, and the water suction tank 43 is connected to the inner area enclosed by the water outlet hole 33. After the clean water source flows into the clean water area of the box 41 from the water outlet channel 5, it can flow into the U-shaped water outlet hole 33 through the water supply hole 42 and overflow evenly into the washing area. The wastewater after washing is sucked away by the negative pressure of the water suction channel 6 through the water suction tank 43, realizing simultaneous washing and cleaning and sewage discharge. Water supply and sewage suction are completed at the same time, reducing the time spent on multi-step operations and improving cleaning efficiency.
[0039] In this application, reference is made to Figure 4 The power source assembly specifically includes an internal gear 71, an external gear 72, a central shaft 73, and a drive component 74. The internal gear 71 is fixed inside the base 1, and the external gear 72 maintains meshing transmission with the internal gear 71. One connection method is that the two ends of the central shaft 73 are respectively connected to the external gear 72 and the bearings of the mounting frame 2. The drive component 74 is specifically a drive motor, which is fixed inside the base 1, and its output end is fixedly connected to the central shaft 73. When the drive component 74 is started, the mounting frame 2 directly rotates in a perfect circle. This installation method is suitable for objects with uniform soft stains on their surface.
[0040] Another connection method is that, based on the above structure, the power source assembly also includes a crankshaft 75. The crankshaft 75 is fixed at the end of the central shaft 73 away from the drive component 74. In this case, the output end of the crankshaft 75 is assembled with the mounting frame 2. After the drive component 74 is started, it drives the central shaft 73 to rotate. The external gear 72 meshes and revolves along the fixed internal gear 71. The crankshaft 75 drives the mounting frame 2 and the cleaning brush 3 to make eccentric circular motion. This installation method is suitable for scenarios where there are stubborn stains on the surface of the object, or the surface of the object is uneven or curved.
[0041] Reference Figure 5The tension adjustment assembly specifically includes a connecting spring 81, a push rod 82, a moving block 83, a sleeve 84, a first bevel gear 85, a second bevel gear 86, a mating block 87, and a mating rod 88. The moving block 83 is slidably connected inside the base 1. The middle of the moving block 83 has an internal thread, and the outer wall of the sleeve 84 has an external thread. The moving block 83 is threaded to the outer wall of the sleeve 84 through the internal thread in the middle. One end of the push rod 82 is assembled with the cleaning brush 3 and slidably connected with the mounting frame 2. The other end moves through the sleeve 84 and is fixed with an assembly block at that end, so that the assembly block is slidably connected with the base 1. The connecting spring 81 is sleeved on the outside of the push rod 82. One end of the connecting spring 81 is fixedly connected to the moving block 83, and the other end is fixedly connected to the assembly block.
[0042] The first bevel gear 85 is fixed to one end of the sleeve 84 near the mounting frame 2. The second bevel gear 86 is rotatably connected to the base 1 and meshes perpendicularly with the first bevel gear 85. Rotating the second bevel gear 86 will cause the sleeve 84 and the first bevel gear 85 to rotate synchronously, thereby causing the moving block 83 to move axially along the sleeve 84, changing the compression of the connecting spring 81, adjusting the spring's thrust on the push rod 82, and thus adjusting the extension length and clamping force of the cleaning brush 3. During this process, to facilitate user operation, a rotating head 861 can be fixed coaxially with the second bevel gear 86, so that the rotating head 861 protrudes outside the base 1.
[0043] The mating block 87 is fixed to one side of the moving block 83. The mating block 87 is slidably connected to the mating rod 88. Specifically, the mating rod 88 has the same structure as the push rod 82, and both extend in the same direction. It also has an assembly block, which is slidably installed in the base 1. An elastic element is also provided on the rod body of the mating rod 88. The two ends of the elastic element are fixed to the mating block 87 and the assembly block provided on the mating rod 88, respectively. When the moving block 83 moves, the connecting spring 81 is compressed, which drives the mating block 87 to slide synchronously along the mating rod 88. The elastic element is also compressed, which makes the force on the push rod 82 and the mating rod 88 more even and can change the pressure of the cleaning brush 3 on the fabric surface, so as to quickly adapt to the cleaning needs of different fabric materials.
[0044] The implementation principle of a fabric machine cleaning head according to an embodiment of this application is as follows: Before use, adjust the clamping force of the cleaning brush 3 according to the material of the fabric to be cleaned. Rotate the second bevel gear 86 to drive the sleeve 84 to rotate synchronously. This will drive the moving block 83 to move axially along the sleeve 84 through the threaded transmission. Adjust the compression of the connecting spring 81, thereby changing the pushing force of the push rod 82 on the cleaning brush 3. This will adjust the length of the cleaning brush 3 extending out of the mounting frame 2 to adapt to the cleaning needs of different materials.
[0045] During cleaning, the drive component 74 of the power source component is activated, and the cleaning brush 3 is driven to perform eccentric circumferential automatic brushing through meshing transmission. At the same time, clean water flows into the U-shaped water outlet 33 of the cleaning brush 3 through the water outlet channel 5 and the water supply hole 42, continuously and evenly wetting the brushing area. The wastewater generated by brushing is then sucked away by the central water suction tank 43 through the negative pressure of the water suction channel 6. Water supply, brushing, and wastewater suction are completed simultaneously.
[0046] After cleaning, the threaded rod 23 can be loosened to remove the support frame 31 from the mounting slider 22 of the mounting frame 2, and the cleaning brush 3 can be cleaned separately. Alternatively, the cleaning brush 3 head of the corresponding specification can be replaced according to different cleaning needs, making maintenance and use very convenient.
[0047] The above are all preferred embodiments of this application. These embodiments are merely explanations of this application and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape, and principle of this application should be covered within the scope of protection of this application.
Claims
1. A cleaning head for a fabric knitting machine, characterized in that, include: The base (1) includes a mounting frame (2) disposed at its output end; A cleaning brush (3) is detachably mounted on the mounting frame (2); A water box (4) is fixed to one side of the mounting frame (2) and is used to store water while exchanging water with the cleaning brush (3); A water outlet channel (5) is provided inside the base (1) to provide a clean water source for the water box (4); A water intake channel (6) is provided in the base (1) to return the sewage source to the water box (4); A power source assembly is fixed inside the base (1), and the output end of the power source is assembled with the back of the mounting frame (2) to drive the cleaning brush (3) to perform circular motion; The tension adjustment component is fixed inside the base (1) and is used to adjust the distance between the cleaning brush (3) and the mounting frame (2).
2. The fabric machine cleaning head according to claim 1, characterized in that, The power source assembly includes an internal gear (71) fixed in the base (1); an external gear (72) meshing with the internal gear (71); a central shaft (73) with both ends connected to the external gear (72) and the bearing of the mounting frame (2) respectively; and a drive member (74) disposed in the base (1), wherein the output end of the drive member (74) is fixedly connected to the central shaft (73), and the external gear (72) and the internal gear (71) always maintain meshing transmission.
3. A fabric machine cleaning head according to claim 2, characterized in that, The power source assembly includes a crankshaft (75) fixed to one end of the central shaft (73) away from the drive member (74), and the output end of the crankshaft (75) is assembled with the mounting frame (2).
4. A fabric machine cleaning head according to claim 1, characterized in that, The tension adjustment assembly includes a connecting spring (81), a push rod (82), a moving block (83), and a sleeve (84). The outer wall of the sleeve (84) is provided with an external thread, and the middle part of the moving block (83) is provided with an internal thread. The moving block (83) is threadedly connected to the outer wall of the sleeve (84). One end of the push rod (82) is assembled with the cleaning brush (3), and the other end is movably installed in the sleeve (84). At the same time, the push rod (82) is slidably connected along the mounting frame (2). The connecting spring (81) is sleeved on the outer wall of the push rod (82). One end of the connecting spring (81) is fixedly connected to the push rod (82), and the other end is assembled with the side wall of the moving block (83).
5. A fabric machine cleaning head according to claim 4, characterized in that, The tension adjustment assembly includes a first bevel gear (85) and a second bevel gear (86) with their central shafts (73) perpendicular to each other. The first bevel gear (85) is fixed to the output end of the sleeve (84) near the base (1), and the second bevel gear (86) is rotatably connected to the base (1). The first bevel gear (85) and the second bevel gear (86) mesh with each other.
6. A fabric machine cleaning head according to claim 5, characterized in that, The tension adjustment assembly includes a mating block (87) fixed to one side of the moving block (83) and a mating rod (88) movably installed in the base (1). One end of the mating rod (88) is assembled with the cleaning brush (3), while the mating block (87) and the mating rod (88) are slidably connected. The mating rod (88) extends in the same direction as the push rod (82).
7. A fabric machine cleaning head according to claim 1, characterized in that, The water box (4) includes a box body (41) and a water supply hole (42) and a water suction groove (43) opened on the box body (41). The water suction groove (43) is located in the center of the box body (41). The water supply hole (42) is opened around the edge of the surface of the box body (41). The water suction hole and the water supply hole (42) are not connected inside the box body (41).
8. A fabric machine cleaning head according to claim 7, characterized in that, The cleaning brush (3) includes a support frame (31), bristles (32) and a water outlet (33). The support frame (31) is slidably connected to one side of the mounting frame (2). The water outlet (33) is a through-hole in a U-shape. The bristles (32) are fixed to the side of the support frame (31) away from the mounting frame (2).
9. A fabric machine cleaning head according to claim 8, characterized in that, The box body (41) is detachably fixed to the support frame (31), and the water inlet and water outlet (42) are connected to the water outlet (33).
10. A fabric machine cleaning head according to claim 9, characterized in that, The mounting frame (2) has a movable groove (21) on its edge, and a mounting slider (22) is slidably connected in the groove. The support frame (31) includes a hanging ear, and the hanging ear is detachably connected to the mounting slider (22).