A recycling device for a cloth surface cleaning apparatus
By introducing filtration, containment, and separation mechanisms into the recycling unit of the fabric surface cleaning equipment, the problem of inconvenient solid waste disposal has been solved, achieving efficient solid waste collection and disposal.
Patent Information
- Application Number
- CN202310010698.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-01-05
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2043-01-05
AI Technical Summary
In existing fabric surface cleaning equipment, the recycling bins have a narrow channel for transferring solid waste out of the bins during solid-liquid separation, resulting in inconvenient and inefficient solid waste cleaning.
A recycling device for a fabric surface cleaning equipment was designed, which employs a filtration mechanism, a limiting mechanism, an isolation mechanism, and a cleaning mechanism. Solid waste in sewage is filtered onto the filter block through the outflow hole, and the limiting and isolation mechanisms fix the waste, while the cleaning mechanism facilitates the collection of waste.
It improves the efficiency of solid waste treatment, simplifies the solid waste cleaning process, reduces operation time, and enhances the collection effect of solid waste.
Smart Images

Figure CN115956849B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of cloth surface cleaning equipment, in particular to a cloth surface cleaning equipment recycling device. BACKGROUND
[0002] Cloth surface cleaning equipment can clean car seats, leather and cloth sofas, wool cushions, etc.
[0003] At present, a recycling box is disclosed in Chinese Patent No. CN215993848U, which comprises a body, an air inlet pipe and a filter. The body defines a storage space for storing dirt inside. The air inlet pipe is at least partially arranged in the storage space. The filter is arranged in the storage space and used for solid-liquid separation when the dirt is discharged from the pouring opening of the body.
[0004] When the above-mentioned recycling box performs solid-liquid separation, the solid waste is located in the box. Then, when the solid waste is treated, the sewage in the recycling box is filtered by the filter, and the solid waste is confined in the recycling box. When only solid waste is left in the recycling box, the solid waste in the recycling box is treated. However, due to the arrangement of the filter, the channel for transferring the solid waste out of the recycling box is relatively small, which makes it inconvenient for the operator to clean the solid waste and takes a long time, thereby reducing the efficiency. SUMMARY
[0005] In order to improve the cleaning efficiency of solid waste, the present application provides a cloth surface cleaning equipment recycling device.
[0006] The cloth surface cleaning equipment recycling device provided by the present application adopts the following technical scheme:
[0007] A cloth surface cleaning equipment recycling device, comprising a cup body, a cover body and a liquid inlet pipe, the liquid inlet pipe being arranged at one end of the cup body away from the dirt collecting cavity, the cover body being arranged on the cup body and capable of covering the dirt collecting cavity, further comprising a filtering mechanism, the filtering mechanism comprising a connecting block and a filtering block, a placing groove being formed on one end of the connecting block, a flow-out hole being formed on the connecting block and communicating with the placing groove, one end of the liquid inlet pipe near the cover body being located in the placing groove; the filtering block being arranged on the connecting block, the flow-out hole being located between the filtering block and one end of the cover body; and the filtering block filtering the sewage passing through the flow-out hole so that the solid waste is located on the filtering block.
[0008] By adopting the technical scheme, when the sewage with solid garbage enters the placing groove through the liquid inlet pipe, the sewage with solid garbage will fall on the filter block, and then the solid garbage will be blocked on the filter block; after the sewage collection is completed, the operator first separates the cover body from the body, then separates the connecting block from the liquid inlet pipe, takes out the connecting block from the cup body, and the solid garbage on the filter block will be transferred out of the cup body along with the connecting block; therefore, the filter mechanism is convenient for collecting the solid garbage, thereby improving the processing efficiency of the solid garbage.
[0009] Optionally, the outflow hole is arranged on the side wall of the liquid inlet pipe, the cross section of the filter block is smaller than the cross section of the cup body, the inner side wall of the cup body aligned with the outflow hole is in contact with the side wall of the filter block; the cross section of the filter block between the inner side wall of the cup body aligned with the outflow hole and the connecting block is larger than the cross section of the filter block between the connecting block and the inner side wall of the cup body aligned with the outflow hole, the filter block is arranged obliquely, the relative height of the filter block in contact with the inner side wall of the cup body is lower than the relative height of the connecting block on the filter block; the filter block is provided with a limiting mechanism, which can limit the solid garbage on the filter block.
[0010] By adopting the above technical scheme, the filter block is in contact with the inner side wall of the cup body, and the outflow hole is aligned with the inner side wall of the cup body in contact with the filter block, which can make the sewage flowing out of the outflow hole flow better on the filter block; the obliquely arranged filter block can make the solid garbage located at the end with lower relative height of the filter block, and the end with higher relative height of the filter block is in contact with the inner side wall of the cup body, which can make the filter block collect the solid garbage.
[0011] Optionally, the limiting mechanism comprises a first limiting block, a second limiting block and a third limiting block, the first limiting block is arranged on the filter block and located at the end away from the inner side wall of the cup body aligned with the outflow hole; the two ends of the first limiting block are provided with the second limiting block, the included angle between the second limiting block and the first limiting block is obtuse, and the two second limiting blocks are arranged on the filter block; the third limiting block is arranged on the filter block, the two ends of the third limiting block are connected with the two second limiting blocks respectively, the third limiting block is in contact with the inner side wall of the cup body, and the connecting block is located between the third limiting block and the first limiting block; the cross section of the third limiting block is in arc shape.
[0012] By adopting the above technical scheme, when the connecting block is arranged on the liquid inlet pipe, the first limiting block, the second limiting block and the third limiting block can block the solid garbage on the filter block, thereby reducing the phenomenon that the solid garbage on the filter block moves out of the filter block.
[0013] Optionally, the cup body is provided with a limiting mechanism, the limiting mechanism comprises a first limiting plate and a second limiting plate, the first limiting plate is arranged on the cover body, and the first limiting plate corresponds to the first limiting block and abuts against the first limiting block; the second limiting plate is arranged in two, and the two second limiting plates are arranged on the two sides of the first limiting plate respectively, the two second limiting plates correspond to the two second limiting blocks respectively, and each second limiting plate abuts against the corresponding second limiting block; the second limiting plate is provided with a chamfer at the end away from the cover body and the side away from the first limiting plate; the filtering block, the first limiting block, the second limiting block, the third limiting block, the first limiting plate, the second limiting plate and the cover body form a storage cavity for limiting solid waste.
[0014] By adopting the above technical scheme, when the filtering block is located in the cup body, the first limiting plate and the second limiting plate are first arranged in the cup body before the cover body is clamped on the cup body, the first limiting plate and the second limiting plate can adjust the positions of the first limiting block and the second limiting block, the first limiting block corresponds to the first limiting plate, and the second limiting block corresponds to the second limiting plate, so that the position of the filtering block in the cup body is adjusted; when the sewage containing solid waste flows out through the outflow hole, the sewage is limited on the filtering block in the storage cavity, and the phenomenon that the sewage containing solid waste does not pass through the filtering block when the filtering block filters the sewage again is reduced; therefore, the limiting mechanism can improve the collection effect of the filtering mechanism.
[0015] Optionally, the filtering block is provided with an isolation mechanism, the isolation mechanism comprises a fixing block, a connecting rod, an isolation cover and a fixing assembly, the fixing block is provided with a first through hole for the connecting block to pass through, and the fixing block is located between the outflow hole and the filtering block; the connecting rod is arranged on the side wall of the fixing block; the isolation cover is arranged on the connecting rod, and one end of the isolation cover abuts against the filtering block; the connecting block is located in the isolation cover, the relative height of one end of the isolation cover away from the filtering block is higher than the relative height of one end of the outflow hole away from the filtering block; and the fixing assembly is arranged on the fixing block and connected with the connecting block.
[0016] By adopting the above technical scheme, the fixing block is connected with the connecting block through the fixing assembly, so that when the sewage flows out through the outflow hole, the solid waste in the sewage is located on the filtering block in the isolation cover; after the sewage is collected, the isolation cover and the filtering block are directly taken out of the cup body, and under the action of the isolation cover, the solid waste is also better located on the filtering block; therefore, the isolation mechanism can better collect the solid waste on the filtering block, thereby improving the collection effect of the filtering mechanism.
[0017] Optionally, a cavity is formed in the fixing block, a second through hole is formed in the fixing block and communicates with the cavity, and a fixing groove is formed in the connecting block; the fixing assembly comprises an adjusting block, an adjusting rod, an adjusting plate, a fixing rod and a first spring, the adjusting block is slidingly arranged in the cavity, the adjusting rod is arranged on the adjusting block, the adjusting plate is arranged on the adjusting rod, the fixing rod is arranged on the adjusting plate, and one end of the fixing rod away from the adjusting plate can pass through the second through hole and be connected with the fixing groove; the first spring is sleeved on the adjusting rod, one end of the first spring is connected with the adjusting plate, and the other end of the first spring is connected with the side wall of the cavity.
[0018] By adopting the above technical scheme, when the fixing block needs to be installed on the connecting block, the adjusting block is first pressed in the direction of the first through hole, the adjusting rod on the adjusting block drives the adjusting plate to move, the fixing rod on the adjusting plate extends into the cavity, and at this time, the first spring is in a stretched state; then the connecting block passes through the first through hole of the fixing block, when the axis of the fixing rod coincides with the axis of the fixing groove, the adjusting block is released, the first spring restores the elastic deformation, under the action of the spring elastic force, the adjusting plate drives the fixing rod to move in the direction close to the connecting block, and the fixing rod passes through the second through hole and is connected with the fixing groove, so that the fixing block is connected on the connecting block.
[0019] Optionally, a shoulder groove is formed in one end of the liquid inlet pipe close to the cup body sewage collecting cavity, the connecting block abuts against the side wall of the shoulder groove, one end of the connecting block away from the filtering block is provided with a limiting block, the length between the limiting block and the cover body is less than the length of the liquid inlet pipe entering the placing groove, a handle is arranged on the outer side wall of the cup body, and the outflow hole is directed to the handle.
[0020] By adopting the above technical scheme, the length between the limiting block and the cover body is less than the length of the liquid inlet pipe entering the placing groove, so that the phenomenon that the connecting block is separated from the liquid inlet pipe when collecting sewage can be reduced; the handle is arranged, so that the cup body can be conveniently taken; and the outflow hole is aligned with the cup body, so that the position of the filtering block can be conveniently positioned.
[0021] Optionally, the cleaning mechanism comprises a rotating ring, a cleaning block, a rotating shaft, a driving rod and a driving assembly, the rotating ring is rotationally arranged at one end of the connecting block close to the filtering block, the cleaning block is arranged on the rotating ring and abuts against the filtering block, a driving groove is formed in the cleaning block, the rotating shaft is rotationally arranged on the cover body, the driving rod is fixedly arranged on the rotating shaft, and when the cover body is arranged on the cup body, one end of the driving rod away from the rotating shaft is located in the driving groove, and the driving assembly is arranged on the cover body and connected with the rotating shaft.
[0022] By adopting the technical scheme, when the cover body is connected with the cup body, the driving rod enters the driving groove of the cleaning block; when the solid waste accumulation causes the water to flow unsmoothly through the filter block, the driving assembly drives the rotating shaft to rotate, the driving rod on the rotating shaft drives the cleaning block to move, and the cleaning block drives the accumulated solid waste to move, so that the sewage can pass through the filter block more smoothly.
[0023] Optionally, the driving assembly comprises a first bevel gear, a second bevel gear, a driving shaft, a positioning block and a positioning rod, the driving shaft is rotationally arranged on the cover body, the first bevel gear is connected to the driving shaft, the second bevel gear is connected to the rotating shaft, and the second bevel gear is engaged with the first bevel gear; the positioning block is arranged on the cover body, and the positioning rod is arranged on the driving shaft and abuts against the positioning block.
[0024] By adopting the technical scheme, the positioning rod on the driving shaft abuts against the positioning block, so that the position of the driving rod relative to the cover body is fixed, thereby facilitating the alignment of the driving rod with the driving groove on the cleaning block; when the cover body is arranged on the cup body, the driving rod enters the driving groove, the driving shaft is rotated, the first bevel gear on the driving shaft drives the second bevel gear to rotate, the second bevel gear drives the rotating shaft to rotate, and the driving rod on the rotating shaft drives the cleaning block to move.
[0025] Optionally, the cleaning block is provided with a positioning assembly, the positioning assembly comprises a positioning bead and a second spring, the cleaning block is provided with a first recess, the positioning bead is slidably arranged in the first recess, and the filter block is provided with a second recess for clamping the positioning bead; and the second spring connects the bottom wall of the first recess and the positioning bead.
[0026] By adopting the technical scheme, when the positioning bead is clamped in the second recess, the position of the cleaning block is limited to a certain position of the filter block, which facilitates the alignment of the driving rod with the driving groove on the cleaning block, so that the driving rod enters the driving groove; when the driving rod drives the cleaning block to move, the positioning bead is pressed into the first recess, and the second spring is compressed.
[0027] In summary, the present application has at least one of the following beneficial technical effects:
[0028] 1. The filter mechanism facilitates the collection of solid waste, thereby improving the processing efficiency of solid waste;
[0029] 2. The limiting mechanism can improve the collection effect of the filter mechanism;
[0030] 3. The isolation mechanism can better collect solid waste on the filter block, thereby improving the collection effect of the filter mechanism. BRIEF DESCRIPTION OF DRAWINGS
[0031] Figure 1 This is a schematic diagram of the recycling device of the fabric surface cleaning equipment in Embodiment 1 of this application;
[0032] Figure 2 This is a schematic diagram of the filtration mechanism in Embodiment 1 of this application;
[0033] Figure 3 This is a schematic diagram of the structure of the mechanism defined in Embodiment 1 of this application;
[0034] Figure 4 This is a schematic diagram of the cleaning mechanism in Embodiment 1 of this application;
[0035] Figure 5 This is a schematic diagram of the positioning component in Embodiment 1 of this application;
[0036] Figure 6 This is a schematic diagram of the recycling device of the fabric surface cleaning equipment in Embodiment 2 of this application;
[0037] Figure 7 This is a schematic diagram of the isolation mechanism in Embodiment 2 of this application;
[0038] Figure 8 This is a schematic diagram of the structure of the fixing component in Embodiment 2 of this application.
[0039] Reference numerals: 11. Cup body; 12. Cover body; 13. Inlet pipe; 14. Handle; 2. Filtering mechanism; 21. Connecting block; 211. Placement slot; 212. Outlet hole; 22. Filter block; 3. Limiting mechanism; 31. First limiting block; 32. Second limiting block; 33. Third limiting block; 4. Restricting mechanism; 41. First limiting plate; 42. Second limiting plate; 5. Isolation mechanism; 51. Fixing block; 511. First through hole; 52. Connecting rod; 53. Isolation cover; 54. Fixing component; 541. Adjusting block; 542. Adjusting rod; 543. Adjusting plate; 544. Fixing rod; 545. First spring; 546. Mounting block; 55. Guide block; 6. Restricting block; 7. Cleaning mechanism; 71. Rotary ring; 72. Cleaning block; 721. Drive groove; 722. First groove; 73. Rotating shaft; 74. Drive rod; 75. Drive assembly; 751. First bevel gear; 752. Second bevel gear; 753. Drive shaft; 754. Positioning block; 755. Positioning rod; 8. Positioning assembly; 81. Positioning bead; 82. Second spring. Detailed Implementation
[0040] The following is in conjunction with the appendix Figures 1-8 This application will be described in further detail.
[0041] This application discloses a recycling device for fabric surface cleaning equipment.
[0042] Embodiment 1
[0043] With reference to Figure 1 And Figure 2 The recycling device of the cloth surface cleaning device comprises a cup body 11 with a sewage collecting cavity, the cup body 11 is made of transparent material, a handle 14 is fixedly connected to the outer side wall of the cup body 11, a bottom wall of the sewage collecting cavity is fixedly connected with a liquid inlet pipe 13, a cover body 12 is clamped on the cup body 11, the cover body 12 can cover the sewage collecting cavity of the cup body 11, a gas outlet hole is formed in the cover body 12, and a filtering mechanism 2 is arranged on the liquid inlet pipe 13 in the cup body 11.
[0044] Sewage enters the cup body 11 through the liquid inlet pipe 13, then the sewage passes through the filtering mechanism 2, and solid waste in the sewage is located on the filtering mechanism 2; after the sewage collection is completed, the cover body 12 is separated from the cup body 11, then the filtering mechanism 2 is separated from the liquid inlet pipe 13, the filtering mechanism 2 is used to transfer the solid waste out of the cup body 11, and finally the sewage in the cup body 11 can be poured out.
[0045] With reference to Figure 1 And Figure 3 An end of the liquid inlet pipe 13 close to the cover body 12 is provided with a shoulder groove; the filtering mechanism 2 comprises a connecting block 21 in a cylindrical shape, an end of the connecting block 21 is provided with a placing groove 211 along the length direction of the connecting block 21, the placing groove 211 is used for the liquid inlet pipe 13 to enter, a side wall of an end of the connecting block 21 away from the placing groove 211 is provided with a flow-out hole 212 in communication with the placing groove 211, the flow-out hole 212 faces the handle 14, and a limiting block 6 is fixedly connected to the end of the connecting block 21 away from the placing groove 211, the limiting block 6 corresponds to the handle 14. When the end of the liquid inlet pipe 13 close to the cover body 12 enters the placing groove 211 and the connecting block 21 abuts against the shoulder groove wall, the flow-out hole 212 is at a distance from the end of the liquid inlet pipe 13 close to the cover body 12, and the length of the liquid inlet pipe 13 entering the placing groove 211 is greater than the length from the limiting block 6 to the cover body 12.
[0046] With reference to Figure 2 And Figure 3 A filtering block 22 is fixedly connected to an end of the connecting block 21 away from the limiting block 6, the cross section of the filtering block 22 is smaller than the cross section of the cup body 11, the side wall of the filtering block 22 abuts against the inner side wall of the cup body 11 in alignment with the flow-out hole 212, that is, the side wall of the end of the filtering block 22 close to the handle 14 abuts against the inner side wall of the cup body 11, the cross section of the filtering block 22 between the inner side wall of the cup body 11 in alignment with the flow-out hole 212 and the connecting block 21 is greater than the cross section of the filtering block 22 between the inner side wall of the cup body 11 in alignment with the flow-out hole 212 and the connecting block 21 away from the flow-out hole 212. The filtering block 22 is arranged in an inclined manner, and the relative height of the end of the filtering block 22 abutting against the inner side wall of the cup body 11 is lower than the relative height of the end of the connecting block 21 in the filtering block 22.
[0047] The sewage with solid waste enters into the placing groove 211 of the connecting block 21 through the liquid inlet pipe 13, and then flows out of the connecting block 21 through the flow-out hole 212 on the connecting block 21; the sewage flowing out of the flow-out hole 212 falls on the filtering block 22, and then the solid waste in the sewage is located on the filtering block 22.
[0048] Reference Figure 2 And Figure 3 The limiting mechanism 3 is arranged on the filtering block 22, and the limiting mechanism 3 comprises a first limiting block 31 fixedly connected to the filtering block 22 away from the handle 14, both ends of the first limiting block 31 are fixedly connected with a second limiting block 32, and both the second limiting blocks 32 are fixedly connected to the filtering block 22; the included angle between each second limiting block 32 and the first limiting block 31 is obtuse, and the angles between the two second limiting blocks 32 and the first limiting block 31 are the same. The third limiting block 33 is fixedly connected to the filtering block 22 which abuts against the inner side wall of the cup body 11, both ends of the third limiting block 33 are fixedly connected with the two second limiting blocks 32 away from the first limiting block 31, the cross section of the third limiting block 33 is arc-shaped, and the third limiting block 33 also abuts against the inner side wall of the cup body 11.
[0049] The limiting mechanism 4 is arranged on the cover body 12, and the limiting mechanism 4 comprises a first limiting plate 41 fixedly connected to the cover body 12, the width of the first limiting plate 41 is the same as the width of the first limiting block 31, the first limiting plate 41 corresponds to the first limiting block 31 and abuts against the first limiting block 31; both sides of the first limiting plate 41 are fixedly connected with a second limiting plate 42, the two second limiting plates 42 correspond to the two second limiting blocks 32 respectively, and the two second limiting plates 42 abut against the two second limiting blocks 32 respectively, the side of the second limiting plate 42 away from the first limiting plate 41 abuts against the inner side wall of the cup body 11; the second limiting plate 42 is fixedly connected to the cover body 12, and the end of the second limiting plate 42 away from the cover body 12 and the side of the second limiting plate 42 away from the cover body 12 are provided with chamfers. The filtering block 22, the first limiting block 31, the second limiting block 32, the third limiting block 33, the first limiting plate 41, the second limiting plate 42 and the cover body 12 form a storage cavity for storing solid waste.
[0050] Before the filtering block 22 is located in the cup body 11 and the cover body 12 is clamped on the cup body 11, the first limiting plate 41 and the second limiting plate 42 are first entered into the cup body 11, when the first limiting plate 41 and the second limiting plate 42 are entered into the cup body 11, the first limiting plate 41 and the second limiting plate 42 can adjust the positions of the first limiting block 31 and the second limiting block 32, so that the first limiting block 31 corresponds to the first limiting plate 41, the second limiting block 32 corresponds to the second limiting plate 42, thereby adjusting the position of the filtering block 22 in the cup body 11, so that the third limiting block 33 also abuts against the inner side wall of the cup body 11.
[0051] In this way, when the sewage with solid waste flows out through the outflow hole 212, the solid waste is limited on the filter block 22 of the storage cavity, reducing the phenomenon that the sewage with solid waste does not pass through the filter block 22 when the filter block 22 filters the sewage.
[0052] Referring to Figure 1 and Figure 4 , the cup body 11 is provided with a cleaning mechanism 7, the cleaning mechanism 7 includes a rotating ring 71 rotatably connected between the outflow hole 212 and the filter block 22, the rotating ring 71 is fixedly connected with a cleaning block 72, the cleaning block 72 abuts against the filter block 22, and a driving groove 721 is formed in the side of the cleaning block 72 away from the filter block 22; the cover body 12 is rotatably connected with a rotating shaft 73, the rotating shaft 73 is fixedly connected with an L-shaped driving rod 74, and one end of the driving rod 74 away from the rotating shaft 73 enters the driving groove 721.
[0053] The cover body 12 is provided with a driving assembly 75, the driving assembly 75 includes a driving shaft 753 rotatably connected to the cover body 12, a first bevel gear 751 is keyed to one end of the driving shaft 753, and a second bevel gear 752 is keyed to the rotating shaft 73 and meshes with the first bevel gear 751; one end of the driving shaft 753 away from the first bevel gear 751 extends out of the cover body 12, and a positioning rod 755 is fixedly connected to the end of the driving shaft 753 extending out of the cover body 12; and the cover body 12 is fixedly connected with a positioning block 754.
[0054] Referring to Figure 4 and Figure 5 , a first recess 722 is formed in the side wall of the side of the cleaning block 72 facing the filter block 22, and a second recess is formed in the filter block 22; the cleaning block 72 is provided with a positioning assembly 8, the positioning assembly 8 includes a positioning bead 81 slidingly connected in the first recess 722, and the positioning bead 81 can be clamped with the second recess; a second spring 82 is connected to the bottom wall of the first recess 722, and one end of the second spring 82 away from the bottom wall of the first recess 722 is connected with the positioning bead 81.
[0055] When the cleaning block 72 is in the initial state, the positioning bead 81 is clamped with the second recess; when the positioning rod 755 abuts against the cleaning block 72, it is the initial state of the driving rod 74, so that when the cover body 12 is clamped with the cup body 11, the driving rod 74 can better enter the driving groove 721 of the cleaning block 72.
[0056] When the solid waste accumulation causes the filter block 22 to flow water not smoothly, the drive shaft 753 is rotated, the first bevel gear 751 is driven to rotate by the drive shaft 753, the second bevel gear 752 is driven to rotate by the first bevel gear 751, the rotating shaft 73 is driven to rotate by the second bevel gear 752, the drive rod 74 is driven to rotate by the rotating shaft 73, and the cleaning block 72 is driven to rotate by the drive rod 74. The cleaning block 72 will drive the solid waste accumulated together to move, so that the sewage can pass through the filter block 22 better.
[0057] The implementation principle of the embodiment 1 of the application is that the liquid inlet pipe 13 is first inserted into the placing groove 211 of the connecting block 21 and the flow-out hole 212 is aligned with the handle 14, and the connecting block 21 abuts against the shoulder groove on the liquid inlet pipe 13; then the first limiting plate 41 and the second limiting plate 42 are inserted into the cup body 11, so that the first limiting block 6 abuts against the first limiting block 31 and the second limiting plate 42 abuts against the second limiting block 32; when the cover body 12 is clamped with the cup body 11, the drive rod 74 is inserted into the drive groove 721 of the cleaning block 72.
[0058] The sewage with solid waste is introduced into the placing groove 211 of the connecting block 21 through the liquid inlet pipe 13, and then flows out through the flow-out hole 212 on the connecting block 21; the sewage with solid waste falls on the filter block 22, and then the solid waste remains on the filter block 22.
[0059] When the solid waste accumulation causes the filter block 22 to flow water not smoothly, the drive shaft 753 is rotated, the first bevel gear 751 is driven to rotate by the drive shaft 753, the second bevel gear 752 is driven to rotate by the first bevel gear 751, the rotating shaft 73 is driven to rotate by the second bevel gear 752, the drive rod 74 is driven to rotate by the rotating shaft 73, and the cleaning block 72 is driven to rotate by the drive rod 74. The cleaning block 72 will drive the solid waste accumulated together to move, so that the sewage can pass through the filter block 22 better.
[0060] When the liquid inlet pipe 13 no longer introduces sewage, the cover body 12 is first separated from the cup body 11, at this time the drive rod 74 is separated from the cleaning block 72, and then the first limiting plate 41 and the second limiting plate 42 are taken out of the cup body 11; the filter block 22 with solid waste is taken out of the cup body 11, and finally the sewage in the cup body 11 is poured out.
[0061] Embodiment 2
[0062] Reference Figure 6 and Figure 7The difference between the embodiment 1 and the embodiment 2 is that the filter block 22 is provided with the isolation mechanism 5, the isolation mechanism 5 comprises a fixed block 51, the fixed block 51 is provided with the first through hole 511 for the connecting block 21 to pass through, and the fixed block 51 is located between the outflow hole 212 and the filter block 22; the side wall of the fixed block 51 is fixedly connected with a connecting rod 52, the connecting rod 52 is fixedly connected with an isolation cover 53, the first limiting block 31, the second limiting block 32 and the third limiting block 33 all abut against the isolation cover 53, the connecting block 21 is located in the isolation cover 53, the relative height of the end, away from the filter block 22, of the isolation cover 53 is higher than the relative height of the end, away from the filter block 22, of the outflow hole 212, and the relative height of the end, away from the filter block 22, of the limiting block 6 is higher than the relative height of the end, away from the filter block 22, of the isolation cover 53.
[0063] The connecting block 21 is fixedly connected with a supporting block which abuts against the fixed block 51.
[0064] With reference to Figure 7 and Figure 8 The side wall of the first through hole 511 is fixedly connected with a guide block 55, and the side wall of the connecting block 21 is provided with a guide groove, and the guide block 55 can slide in the guide groove.
[0065] The fixed block 51 is provided with a cavity, the fixed block 51 is provided with a second through hole which is in communication with the cavity, and the side wall of the connecting block 21 is provided with a fixing groove.
[0066] The fixed block 51 is provided with a fixing assembly 54, the fixing assembly 54 comprises a mounting block 546 which is fixedly connected to the side wall of the cavity, and the mounting block 546 is provided with a third through hole; an adjusting block 541 is slidably connected in the cavity, the adjusting block 541 is fixedly connected with an adjusting rod 542, one end, away from the adjusting block 541, of the adjusting rod 542 passes through the third through hole in the mounting block 546, one end of the adjusting rod 542, passing through the third through hole, is fixedly connected with an adjusting plate 543, the adjusting plate 543 is fixedly connected with a fixing rod 544, one end, away from the adjusting plate 543, of the fixing rod 544 passes through the second through hole and is clamped with the fixing groove in the connecting block 21; a first spring 545 is sleeved on the adjusting rod 542 between the mounting block 546 and the adjusting plate 543, one end of the first spring 545 is connected with the adjusting plate 543 and the other end is connected with the mounting block 546.
[0067] Firstly, align the guide block 55 with the guide slot on the connecting block 21, then press the adjusting block 541 towards the direction of the mounting block 546, the adjusting rod 542 on the adjusting block 541 drives the adjusting plate 543 to move, the fixed rod 544 on the adjusting plate 543 will extend into the cavity, and the first spring 545 will be stretched. Then make the connecting block 21 pass through the first through hole 511 on the fixed block 51, and the guide block 55 slides into the guide slot of the connecting block 21. When the fixed block 51 abuts against the supporting block, release the adjusting block 541, the first spring 545 restores the elastic deformation, and under the action of the spring force, the adjusting plate 543 will move towards the direction of the connecting block 21, and the fixed rod 544 on the adjusting plate 543 will pass through the second through hole on the fixed block 51 and the fixed slot on the connecting block 21 to be clamped, so as to connect the fixed block 51 on the connecting block 21. At this time, the first limiting block 31, the second limiting block 32 and the third limiting block 33 all abut against the isolation cover 53.
[0068] The implementation principle of the embodiment 2 of the application is that: firstly, connect the fixed block 51 on the connecting block 21, then make the liquid inlet pipe 13 enter the placing slot 211 of the connecting block 21 and the outflow hole 212 align with the handle 14, and the connecting block 21 abuts against the shoulder slot on the liquid inlet pipe 13; then, clamp the cover body 12 and the cup body 11, and the driving rod 74 enters the driving slot 721 of the cleaning block 72.
[0069] The sewage with solid garbage enters the placing slot 211 of the connecting block 21 through the liquid inlet pipe 13, and then flows out through the outflow hole 212 on the connecting block 21; the sewage with solid garbage falls on the filtering block 22, and then the solid garbage stays on the filtering block 22 under the limitation of the isolation cover 53.
[0070] When the solid garbage accumulates and causes the water to flow unsmoothly on the filtering block 22, rotate the driving shaft 753 to make the cleaning block 72 drive the solid garbage to move, so that the sewage can pass through the filtering block 22 better.
[0071] When there is no more sewage in the liquid inlet pipe 13, firstly separate the cover body 12 and the cup body 11, at this time the driving rod 74 will be separated from the cleaning block 72, then take out the connecting block 21 and the fixed block 51 from the cup body 11, the filtering block 22 with solid garbage will also move out of the cup body 11, and finally pour out the sewage in the cup body 11.
[0072] The above are the preferred embodiments of the application, which do not limit the protection scope of the application, therefore: any equivalent changes made on the structure, shape and principle of the application should be covered within the protection scope of the application.
Claims
1. A recycling device of a cloth surface cleaning apparatus, comprising a cup body (11), a cover body (12) and a liquid inlet pipe (13), the liquid inlet pipe (13) is arranged at one end of the cup body (11) far from a dirt collecting cavity, the cover body (12) is arranged on the cup body (11) and can cover the dirt collecting cavity, characterized in that, Further comprising a filtering mechanism (2), the filtering mechanism (2) comprises a connecting block (21) and a filtering block (22), one end of the connecting block (21) is provided with a placing groove (211), the connecting block (21) is provided with an outflow hole (212) in communication with the placing groove (211), one end of the liquid inlet pipe (13) is located in the placing groove (211) close to the cover (12); The filtering block (22) is arranged on the connecting block (21), and the outflow hole (212) is located at one end of the filtering block (22) and the cover (12); And the filtering block (22) filters the sewage passing through the outflow hole (212), so that the solid waste is located on the filtering block (22), and the filtering block (22) is provided with an isolation mechanism (5), the isolation mechanism (5) comprises a fixed block (51), a connecting rod (52), an isolation cover (53) and a fixing assembly (54), the fixed block (51) is provided with a first through hole (511) for the connecting block (21) to pass through, and the fixed block (51) is located between the outflow hole (212) and the filtering block (22); The connecting rod (52) is arranged on the side wall of the fixed block (51); The isolation cover (53) is arranged on the connecting rod (52), and one end of the isolation cover (53) abuts against the filtering block (22); the connecting block (21) is located in the isolation cover (53), and the relative height of one end of the isolation cover (53) away from the filtering block (22) is higher than the relative height of one end of the outflow hole (212) away from the filtering block (22); The fixing assembly (54) is arranged on the fixed block (51) and connected with the connecting block (21), the fixed block (51) is provided with a cavity, the fixed block (51) is provided with a second through hole in communication with the cavity, and the connecting block (21) is provided with a fixing groove; The fixing assembly (54) comprises an adjusting block (541), an adjusting rod (542), an adjusting plate (543), a fixing rod (544) and a first spring (545), the adjusting block (541) is slidably arranged in the cavity, the adjusting rod (542) is arranged on the adjusting block (541), the adjusting plate (543) is arranged on the adjusting rod (542), the fixing rod (544) is arranged on the adjusting plate (543), and one end of the fixing rod (544) away from the adjusting plate (543) can pass through the second through hole and be connected with the fixing groove; The first spring (545) is sleeved on the adjusting rod (542), one end of the first spring (545) is connected with the adjusting plate (543), and the other end is connected with the side wall of the cavity.
2. A cloth surface cleaning apparatus recycling device according to claim 1, wherein, The outflow hole (212) is arranged on the side wall of the liquid inlet pipe (13), the cross section of the filtering block (22) is smaller than the cross section of the cup body (11), and the inner side wall of the cup body (11) abuts against the side wall of the filtering block (22) in alignment with the outflow hole (212). The cross section of the filter block (22) between the inner side wall of the cup body (11) aligned with the outflow hole (212) and the connecting block (21) is larger than the cross section of the filter block (22) between the connecting block (21) and the inner side wall of the cup body (11) away from the outflow hole (212), The filter block (22) is obliquely arranged, and the relative height of the filter block (22) abutting against the inner side wall of the cup body (11) aligned with the outflow hole (212) is lower than the relative height of the connecting block (21) at the position of the filter block (22); A limiting mechanism (3) is arranged on the filter block (22), and the limiting mechanism (3) can limit solid waste on the filter block (22).
3. A cloth surface cleaning apparatus recycling device according to claim 2, wherein, The limiting mechanism (3) comprises a first limiting block (31), a second limiting block (32) and a third limiting block (33), the first limiting block (31) is arranged on the filter block (22) and located at one end away from the inner side wall of the cup body (11) aligned with the outflow hole (212); Both ends of the first limiting block (31) are provided with the second limiting block (32), the included angle between the second limiting block (32) and the first limiting block (31) is obtuse, and the two second limiting blocks (32) are arranged on the filter block (22); The third limiting block (33) is arranged on the filter block (22), both ends of the third limiting block (33) are connected with the two second limiting blocks (32) respectively, the third limiting block (33) abuts against the inner side wall of the cup body (11), and the connecting block (21) is located between the third limiting block (33) and the first limiting block (31); the cross section of the third limiting block (33) is in the shape of a circular arc.
4. The cloth surface cleaning apparatus recycling device of claim 2, wherein, One end of the liquid inlet pipe (13) close to the collection cavity of the cup body (11) is provided with a shoulder groove, and the connecting block (21) abuts against the side wall of the shoulder groove; One end of the connecting block (21) away from the filter block (22) is provided with a limiting block (6); The length between the limiting block (6) and the cover body (12) is smaller than the length of the liquid inlet pipe (13) entering the placing groove (211); A handle (14) is arranged on the outer side wall of the cup body (11), and the outflow hole (212) faces the handle (14).
5. The cloth surface cleaning apparatus recycling device of claim 1, wherein, Further comprising a cleaning mechanism (7), the cleaning mechanism (7) comprises a rotating ring (71), a cleaning block (72), a rotating shaft (73), a driving rod (74) and a driving assembly (75), the rotating ring (71) is rotationally arranged at one end of the connecting block (21) close to the filter block (22); The cleaning block (72) is arranged on the rotating ring (71), and the cleaning block (72) abuts against the filter block (22); A driving groove (721) is arranged on the cleaning block (72); The rotating shaft (73) is rotationally arranged on the cover (12), the driving rod (74) is fixedly arranged on the rotating shaft (73), and when the cover (12) is arranged on the cup body (11), the end of the driving rod (74) away from the rotating shaft (73) is located in the driving groove (721). The driving assembly (75) is arranged on the cover (12) and connected with the rotating shaft (73).
6. A cloth surface cleaning apparatus recycling device according to claim 5, wherein, The driving assembly (75) comprises a first bevel gear (751), a second bevel gear (752), a driving shaft (753), a positioning block (754) and a positioning rod (755), The driving shaft (753) is rotationally arranged on the cover (12), the first bevel gear (751) is key-connected on the driving shaft (753), the second bevel gear (752) is key-connected on the rotating shaft (73), and the second bevel gear (752) is engaged with the first bevel gear (751). The positioning block (754) is arranged on the cover (12), and the positioning rod (755) is arranged on the driving shaft (753) and abuts against the positioning block (754).
7. A cloth surface cleaning apparatus recycling device according to claim 5, wherein, The cleaning block (72) is provided with a positioning assembly (8), the positioning assembly (8) comprises a positioning bead (81) and a second spring (82), the cleaning block (72) is provided with a first groove (722), the positioning bead (81) is slidingly arranged in the first groove (722), and the filter block (22) is provided with a second groove which is clamped with the positioning bead (81). The second spring (82) connects the bottom wall of the first groove (722) and the positioning bead (81).
Citation Information
Patent Citations
Recycling box
CN215993848U
Ground cleaning equipment
CN216167270U