A cleaning device with filtering function for toy processing

By designing a cleaning device including power module, linkage module, toy fastening module and liquid spray module, the problem of insufficient cleaning of toys is solved, and all-round cleaning of toys and resource savings are achieved.

CN119897311BActive Publication Date: 2025-08-26NANJING YUFAN TOYS CO LTD
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Patent Information

Application Number
CN202510378918.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2025-08-26
Estimated Expiration
2045-03-28

AI Technical Summary

Technical Problem

The existing cleaning device with filter function for toy processing. During the cleaning process, the toy cannot rotate, resulting in some corners being unable to be cleaned and sufficient cleaning cannot be achieved.

Method used

A cleaning device including a cleaning bucket, power module, linkage module, toy fastening module and liquid spray module is designed. The toy is driven to rotate through the power module, the liquid spray module flushes the rotating toy, and filters the cleaned water through the filter box to ensure that every corner of the toy is cleaned.

Benefits of technology

The toy is fully cleaned, ensuring that every corner of the toy is cleaned, and at the same time, the remaining liquid is removed by rotating, which facilitates the progress of subsequent processes and saves resources through the filtration function of the filter box.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a cleaning device with a filtering function for toy processing, belonging to the technical field of toy processing equipment. The cleaning device comprises a cleaning bucket, movable doors movably mounted on the front and rear sides of the cleaning bucket, a power module mounted at the upper end of the cleaning bucket, a linkage module mounted in the cleaning bucket, a toy fastening module mounted at the lower end of the linkage module, a liquid spray module mounted to the side of the toy fastening module, and a filter box mounted at the lower end of the cleaning bucket. The present invention solves the problem that existing cleaning devices with a filtering function for toy processing, while capable of achieving a certain cleaning effect on toys, cannot rotate during the cleaning process, resulting in some corners of the toy being unable to be cleaned, and thus the toy cannot be fully cleaned.
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Description

Technical Field

[0001] The invention belongs to the technical field of toy processing equipment, and in particular relates to a cleaning device with a filtering function for toy processing. Background Art

[0002] Children's toys are manufactured and sold. They primarily include figurine toys, technical toys, puzzle and assembly toys, building and structural toys, sports toys, musical toys, labor-related toys, decorative toys, and homemade toys. Before leaving the factory, all toys must be cleaned using a drum cleaning device to ensure safety during use.

[0003] Although the existing cleaning device with filtering function for toy processing can achieve a certain cleaning effect when cleaning toys, the toy cannot be rotated during the cleaning process, which causes some corners of the toy to be unable to be cleaned, resulting in the toy not being fully cleaned. Summary of the Invention

[0004] The present invention provides a cleaning device with a filtering function for toy processing, which aims to solve the problem that the existing cleaning device with a filtering function for toy processing can achieve a certain cleaning effect when cleaning toys, but the toys cannot be rotated during the cleaning process, which causes some corners of the toys to not be cleaned, resulting in the toy not being fully cleaned.

[0005] An embodiment of the present invention provides a cleaning device with a filtering function for toy processing, comprising a cleaning bucket, movable doors being movably installed on the front and rear sides of the cleaning bucket, a power module being installed at the upper end of the cleaning bucket, a linkage module being installed in the cleaning bucket, a toy fastening module being installed at the lower end of the linkage module, a liquid spraying module being installed on the side of the toy fastening module, and a filter box being installed at the lower end of the cleaning bucket.

[0006] Furthermore, the power module includes a cover body fixedly connected to the upper end of the washing barrel, a track fixedly connected to the right wall surface inside the cover body, a moving platform movably installed in the track, a motor fixedly connected to the upper wall surface of the moving platform, a cover screwed to the upper end of the cover body, an outer surface of the motor fixedly connected to the assembly cylinder, and the right side of the assembly cylinder fixedly connected to the moving platform, and further includes:

[0007] A pair of fastening units, each including a bending opening reserved for the right side of the assembly cylinder; a square bar movably mounted on the outer surface of the right side of the cover body; one end of the square bar extends into the cover body; the other end of the square bar is fixedly connected to the bending bar; a spiral beryllium copper wire is clamped around the outer surface of the square bar; the two ends of the spiral beryllium copper wire are respectively fixedly connected to the cover body and the bending bar; one end of the square bar in the cover body is fixedly connected to a wedge; the other end of the wedge extends into the bending opening and abuts against the bending opening; a constraint cylinder is fixedly connected to the outer wall surface of the cover body; the bending bar passes through the constraint cylinder and is movably connected to the constraint cylinder;

[0008] The cover body is fixed with a sound-absorbing sheet;

[0009] A stabilizing unit is installed in the cover body, and the stabilizing unit includes a plurality of variable columns installed in the cover body. The variable columns include an outer cylinder and an inner cylinder. The outer cylinder is movably connected to one end of the inner cylinder. The upper ends of the plurality of variable columns are fixedly connected to a ring-shaped piece. The outer surfaces of the plurality of variable columns are respectively connected to a spiral beryllium copper wire two. The upper ends of the plurality of spiral beryllium copper wires two are fixedly connected to the ring-shaped piece, and the upper wall surface of the ring-shaped piece fits with the motor.

[0010] Furthermore, the ring-shaped piece is screwed onto a connecting strip, the other end of the connecting strip is screwed onto a variable piece, the other end of the variable piece extends to the outside of the cover body and is movably connected to the cover body, and the end of the variable piece extending from the cover body is screwed onto the changing strip.

[0011] Furthermore, a concave strip is fixedly connected to the outer surface of the cover body, a movable hoop on the concave strip is connected to the variable platform, the other end of the variable strip is screwed to the variable platform, both lateral sides of the variable platform are fixedly connected to the assembly platform, and the opposite sides of a pair of assembly platforms are respectively attached to a pair of bending strips.

[0012] Furthermore, a cooling unit is installed in the cover body, and the cooling unit includes a square cover fixedly connected to the inner surface of the sound-absorbing sheet. A rotating rod is screwed into the square cover, and the lower end of the rotating rod is pyramid-shaped. The rotating rod passes through the square cover and is screwed to the square cover. The lower end of the rotating rod extends to the outside of the cover body, and a plurality of rotating sheets are fixed to the rotating rod.

[0013] Furthermore, a plurality of ventilation openings are reserved at the lower end of the cover body, and the plurality of ventilation openings all pass through the square cover. A scraper is fixedly connected to one end of the rotating rod, and one side of the scraper is in contact with the cover body.

[0014] Furthermore, a square opening is reserved at the upper end of the rotating rod 1, and the rotating rod 2 is installed on the rotating part of the motor. The lower end of the rotating rod 2 extends into the square opening and is inserted into the square opening.

[0015] Furthermore, a closing unit is installed at the upper end of the cover, and the closing unit includes a closing tube fixedly connected to the cover. The closing tube passes through the cover, and a plurality of through-holes are reserved at the lower end of the closing tube. The lower end inside the closing tube is fixedly connected to a spiral beryllium copper wire three, and the upper end of the spiral beryllium copper wire three is fixedly connected to a moving plate. The moving plate and the closing tube are movably connected, and a plurality of air vents are reserved around the upper end of the closing tube.

[0016] Furthermore, the linkage module includes a driving gear fixedly connected to the rotating rod and a plurality of driven gears connected to the upper wall of the washing barrel and arranged in a circular direction, and the driven gears and the driving gears are meshed with each other;

[0017] The toy fastening module includes a square rod fixedly connected to the lower end of the driven gear and a rotating column screwed on the lower wall surface of the washing barrel. A square tube is slidably installed on the lower end of the square rod. A plurality of sockets are reserved on the side wall of the square rod. A concave frame is fixedly connected to the side wall of the square tube. A pull rod is slidably installed on the concave frame. One end of the pull rod passes through the square tube and is inserted into the corresponding socket on the square rod. The surface of the pull rod is clamped with a spiral beryllium copper wire four, and the two ends of the spiral beryllium copper wire four are respectively fixedly connected to the inner wall of the concave frame and the outer surface of the pull rod. The lower end of the square tube and the upper end of the rotating column are fixedly connected to hemispherical block one. Multiple hemispherical blocks two are screwed on the fastening surface of hemispherical block one, and multiple V-shaped rubber blocks are fixed on the fastening surface of hemispherical block two.

[0018] Furthermore, the liquid spray module includes an annular tube fixedly connected to the lower wall surface of the inner wall of the cleaning bucket. The upper end of the annular tube is connected to multiple vertical steel pipes, which are arranged corresponding to the rotating columns. One side of the vertical steel pipe is connected to multiple nozzles, and the nozzles of the nozzles are arranged to face the fastened toy. One side of the annular tube is connected to a connecting pipe, and the lower end of the connecting pipe extends out of the cleaning bucket and is connected to a water pump. The other end of the water pump is connected to the interior of the filter box via a water pipe.

[0019] The upper end of the filter box is equipped with activated carbon filter plates, quartz sand, filter cotton and filter screen from bottom to top. The upper end of the filter box is clamped with a cover plate. A hose is installed between the cover plate and the cleaning bucket. The two ends of the hose are connected to the cleaning bucket and the filter box respectively.

[0020] The beneficial effects of the present invention are:

[0021] The present invention can fasten the toy via the toy fastening module, the power module drives the linkage module to operate, the linkage module drives the toy fastening module to operate, and then the fastened toy is rotated, and the liquid spraying module flushes the rotating toy, ensuring that every corner of the toy can be cleaned, ensuring that the toy is fully cleaned, and at the same time, the liquid left on the toy after cleaning can be thrown away by the rotation of the toy, which is convenient for subsequent processes, and the water dropped after cleaning can be filtered through the filter box, so that the water after cleaning can be reused, saving resources.

[0022] Other features and advantages of the present invention will be described in the following description, and in part will become apparent from the description, or will be understood by practicing the present invention. The purpose and other advantages of the present invention can be realized and obtained through the structures particularly pointed out in the description and the drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:

[0024] Figure 1 This is a schematic diagram of the main structure of an embodiment of the present invention;

[0025] Figure 2 This is a schematic diagram of the main cross-sectional structure of an embodiment of the present invention;

[0026] Figure 3 This is a schematic diagram of the three-dimensional structure of a power module according to an embodiment of the present invention;

[0027] Figure 4 Schematic diagram of the cross-sectional structure of a power module according to an embodiment of the present invention;

[0028] Figure 5 This is a schematic diagram of the structure of a power module according to an embodiment of the present invention;

[0029] Figure 6 For the embodiment of the present invention Figure 5 A schematic diagram of the structure at position M of FIG.

[0030] Figure 7 For the embodiment of the present invention Figure 5 A schematic diagram of the enlarged structure at N;

[0031] Figure 8 For the embodiment of the present invention Figure 4 A schematic diagram of the enlarged structure at J;

[0032] Figure 9 For the embodiment of the present invention Figure 4 Schematic diagram of the enlarged structure at K;

[0033] Figure 10 This is a schematic diagram of the internal structure of a power module according to an embodiment of the present invention;

[0034] Figure 11 For the embodiment of the present invention Figure 2 The enlarged structural diagram at R of FIG.

[0035] Figure 12 For the embodiment of the present invention Figure 2 A schematic diagram of the structure at S is enlarged;

[0036] Figure 13 Schematic diagram of the cross-sectional structure of a filter box according to an embodiment of the present invention;

[0037] Figure numerals: 1, cleaning bucket; 2, movable door; 3, power module; 4, linkage module; 5, toy fastening module; 6, spray module; 7, filter box; 31, cover; 32, track; 33, exercise platform; 34, motor; 341, cover; 342, assembly cylinder; 35, fastening unit; 352, bending mouth; 353, square bar; 354, spiral beryllium copper wire 1; 355, bending bar; 356, wedge-shaped piece; 357, restraint cylinder; 358, sound-absorbing piece; 36, stabilizing unit; 361, variable column; 363, ring-shaped piece; 364, spiral beryllium copper wire 2; 365, connecting bar; 366, variable piece; 367, variable bar; 368, concave bar; 369, variable platform; 3610, assembly platform; 37, cooling unit; 371 , square cover; 372, rotating rod one; 373, rotating plate; 374, air vent; 375, scraper; 376, square port; 377, rotating rod two; 38, closed unit; 381, closed tube; 382, ​​through-port; 383, spiral beryllium copper wire three; 384, moving plate; 385, vent; 41, driving gear; 42, driven gear; 51, square rod; 52, square tube; 53, concave frame; 54, pull rod; 55, spiral beryllium copper wire four; 56, rotating column; 57, hemispherical block one; 58, hemispherical block two; 59, V-shaped rubber block; 61, annular tube; 62, vertical steel pipe; 63, nozzle; 64, connecting pipe; 65, water pump; 71, activated carbon filter plate; 72, quartz sand; 73, filter cotton; 74, filter screen. DETAILED DESCRIPTION

[0038] In order to make the purpose, technical solution and advantages of the technical solution of the present invention clearer, the technical solution of the embodiment of the present invention will be clearly and completely described below in conjunction with the drawings of specific embodiments of the present invention. The same figure marks in the drawings represent the same components. It should be noted that the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the described embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0039] Reference Figure 1 and Figure 2 The embodiment of the present invention provides a cleaning device with a filtering function for toy processing, comprising a cleaning bucket 1, movable doors 2 are movably installed on the front and rear sides of the cleaning bucket 1, a power module 3 is installed at the upper end of the cleaning bucket 1, a linkage module 4 is installed in the cleaning bucket 1, a toy fastening module 5 is installed at the lower end of the linkage module 4, a liquid spraying module 6 is installed on the side of the toy fastening module 5, and a filter box 7 is installed at the lower end of the cleaning bucket 1.

[0040] The toy can be tightened through the toy fastening module 5, the power module 3 pulls the linkage module 4 to move, the linkage module 4 pulls the toy fastening module 5 to move, and then the tightened toy is rotated, and the spray module 6 flushes the rotating toy to ensure that every corner of the toy can be cleaned, ensuring that the toy is fully cleaned. At the same time, the liquid left on the toy after cleaning can be thrown away through the rotation of the toy, which is convenient for subsequent processes. The water dropped after cleaning can be filtered through the filter box 7 so that the water after cleaning can be reused to save resources.

[0041] Reference Figure 3-10 The power module 3 includes a cover 31 fixedly connected to the upper end of the cleaning barrel 1, a track 32 fixedly connected to the right wall surface inside the cover 31, a moving platform 33 movably installed in the track 32, a motor 34 fixedly connected to the upper wall surface of the moving platform 33, a cover 341 screwed onto the upper end of the cover 31, an outer surface of the motor 34 fixedly connected to an assembly cylinder 342, and the right side of the assembly cylinder 342 fixedly connected to the moving platform 33, and further includes:

[0042] A pair of fastening units 35, each including a bent opening 352 reserved for the right side of the assembly cylinder 342. A square bar 353 is movably mounted on the outer surface of the right side of the cover body 31. One end of the square bar 353 extends into the cover body 31, and the other end of the square bar 353 is fixedly connected to the bent bar 355. A spiral beryllium copper wire 354 is attached to the outer surface of the square bar 353. The two ends of the spiral beryllium copper wire 354 are respectively fixedly connected to the cover body 31 and the bent bar 355. The end of the square bar 353 in the cover body 31 is fixedly connected to a wedge 356. The other end of the wedge 356 extends into the bent opening 352 and abuts against the bent opening 352. A restraining cylinder 357 is fixedly connected to the outer wall of the cover body 31. The bending bar 355 passes through the restraining cylinder 357 and is movably connected to the restraining cylinder 357.

[0043] A sound absorbing sheet 358 is fixedly connected to the cover body 31.

[0044] Reference Figure 7 A stabilizing unit 36 ​​is installed in the cover body 31. The stabilizing unit 36 ​​includes a plurality of variable columns 361 installed in the cover body 31. The variable column 361 includes an outer cylinder and an inner cylinder. The outer cylinder is movably connected to one end of the inner cylinder. The upper ends of the plurality of variable columns 361 are fixedly connected to a ring-shaped piece 363. The outer surfaces of the plurality of variable columns 361 are respectively connected to a spiral beryllium copper wire 2 364. The upper ends of the plurality of spiral beryllium copper wire 2 364 are fixedly connected to the ring-shaped piece 363. The upper wall surface of the ring-shaped piece 363 is in contact with the motor 34.

[0045] After the wedge-shaped piece 356 has tightened the motor 34, the ring-shaped piece 363 no longer changes. At this time, the motor 34 is tightened for the second time with the cooperation of the spiral beryllium copper wire 364, thereby ensuring the stability of the motor 34 to prevent the motor 34 from generating strong vibration during continuous operation.

[0046] Reference Figure 8 The ring-shaped piece 363 is screwed onto the connecting strip 365, and the other end of the connecting strip 365 is screwed onto the variable piece 366. The other end of the variable piece 366 extends to the outside of the cover body 31 and is movably connected to the cover body 31. One end of the variable piece 366 extending out of the cover body 31 is screwed onto the variable strip 367.

[0047] During the movement of the ring-shaped piece 363 , the connecting strip 365 will be pulled to expand outward, the connecting strip 365 will pull the changing piece 366 to move outward, and the changing piece 366 will pull the changing strip 367 to move toward the side farther away from the changing piece 366 .

[0048] Reference Figure 8 A concave strip 368 is fixedly connected to the outer surface of the cover body 31, and a movable hoop on the concave strip 368 is connected to the variable platform 369. The other end of the variable strip 367 is screwed to the variable platform 369. The two lateral sides of the variable platform 369 are fixedly connected to the assembly platform 3610, and the opposite sides of a pair of assembly platforms 3610 are respectively attached to a pair of bending strips 355.

[0049] The adjustable plate 366 pulls the adjustable platform 369 to move together, and the adjustable platform 369 pulls a pair of assembly platforms 3610 to move together. The skewed walls of the pair of assembly platforms 3610 fit together with the surfaces of the pair of bending strips 355. Under the cooperation of the skew ratio of the pair of assembly platforms 3610, the pair of bending strips 355 are brought close to each other. The bending strips 355 pull the pair of square strips 353 close to each other, and further strengthen the fastening effect of the wedge plate 356 on the motor 34.

[0050] Reference Figure 7 A cooling unit 37 is installed in the cover body 31. The cooling unit 37 includes a square cover 371 fixedly connected to the inner surface of the sound-absorbing sheet 358. A rotating rod 372 is screwed into the square cover 371. The lower end of the rotating rod 372 is pyramid-shaped. The rotating rod 372 passes through the square cover 371 and is screwed to the square cover 371. The lower end of the rotating rod 372 extends to the outside of the cover body 31. A plurality of rotating plates 373 are fixed to the rotating rod 372.

[0051] The rotating rod 372 pulls the multiple rotating plates 373 to rotate, and the rotating plates 373 draw the external cold air inward. When the external cold air flows into the air vent 374, some debris will adhere to the air vent 374.

[0052] Reference Figure 7The lower end of the cover body 31 is reserved with multiple air holes 374, and the multiple air holes 374 all pass through the square cover 371. A scraper 375 is fixedly connected to the rotating rod 372, and one side of the scraper 375 is in contact with the cover body 31.

[0053] During the rotation of the rotating rod 372, the scraper 375 is pulled to rotate, and the scraper 375 removes the debris at the ventilation opening 374, thereby preventing the accumulation of debris from causing the ventilation opening 374 to be blocked from ventilation, causing the motor 34 to be unable to cool down in time.

[0054] Reference Figure 7 A square opening 376 is reserved at the upper end of the rotating rod 1 372 , and a rotating rod 2 377 is installed on the rotating part of the motor 34 . The lower end of the rotating rod 2 377 extends into the square opening 376 and is inserted into the square opening 376 .

[0055] After the wedge piece 356 is fastened to the motor 34, the rotating rod 2 377 is inserted into the square opening 376. Since the rotating rod 1 372 is screwed on, the tilted wall of the rotating rod 2 377 changes the orientation of the rotating rod 1 372 during the insertion of the rotating rod 2 377, and then the rotating rod 2 377 is tightly inserted into the square opening 376 to achieve connection.

[0056] Reference Figure 9 A closing unit 38 is installed at the upper end of the cover 341. The closing unit 38 includes a closing tube 381 fixedly connected to the cover 341. The closing tube 381 passes through the cover 341. A plurality of through-holes 382 are reserved at the lower end of the closing tube 381. The lower end of the inner side of the closing tube 381 is fixedly connected to a spiral beryllium copper wire 383. The upper end of the spiral beryllium copper wire 383 is fixedly connected to a moving piece 384. The moving piece 384 and the closing tube 381 are movably connected. A plurality of air vents 385 are reserved around the upper end of the closing tube 381.

[0057] The gas flows into the closed tube 381 through the through-hole 382, ​​and the gas compresses the moving piece 384 to move toward the side farther from the motor 34. At this time, the spiral beryllium copper wire 383 is extended, and after the moving piece 384 moves above the vent 385, the gas in the cover 31 is vented through the vent 385, thereby achieving the purpose of cooling. When the motor 34 is not working, the moving piece 384 returns to its original position with the cooperation of the spiral beryllium copper wire 383. At this time, the closed tube 381 is in a closed state, and then the debris in the gas cannot flow into the cover 31 through the vent 385, which can provide a certain degree of protection for the motor 34.

[0058] During operation, the moving platform 33 is moved to the track 32. When the moving platform 33 is moved, the motor 34 and the cover 341 are pulled to move. The cover 341 is fitted with the wedge 356 during the change. The wedge 356 moves toward the side farther away from the cover 341 with the cooperation of the skewed wall. At this time, the wedge 356 pulls the square bar 353 to move toward the side farther away from the cover 341. The spiral beryllium copper wire 354 changes its shape. When the assembly cylinder 342 changes, the wedge 356 moves along the bending mouth 352 to the socket of the bending mouth 352, allowing the wedge 356 to be inserted into the bending mouth 352. With the cooperation of the spiral beryllium copper wire 354, the wedge 356 presses against the bending mouth 352 to tighten the motor 34. During the change of the motor 34, the motor 34 is fitted with the ring piece 363, and the ring piece 363 changes toward the side close to the square cover 371. The motor 34 is tightened by the wedge-shaped piece 356, and the ring-shaped piece 363 is stationary. The motor 34 is tightened again with the cooperation of the second spiral beryllium copper wire 364. During the movement of the ring-shaped piece 363, the connecting bar 365 is pulled outward to expand. The connecting bar 365 pulls the variable piece 366 to move outward. The variable piece 366 pulls the variable piece 367 to move toward the side farther away from the variable piece 366. The variable piece 366 pulls the variable platform 369 to move together. The variable platform 369 pulls the pair of assembly platforms 3610 to move together. The inclined walls of the pair of assembly platforms 3610 are pressed against the surfaces of the pair of bending bars 355. With the cooperation of the inclined walls of the pair of assembly platforms 3610, the pair of bending bars 355 are brought closer to each other, and the bending bars 355 pull the pair of square bars 353 closer to each other.

[0059] After the wedge-shaped piece 356 is fastened to the motor 34, the second rotating rod 377 is inserted into the square opening 376. Since the first rotating rod 372 is screwed, the tilted wall of the second rotating rod 377 changes the orientation of the first rotating rod 372 during the insertion of the second rotating rod 377, and then the second rotating rod 377 is inserted into the square opening 376 to achieve connection. The motor 34 works. Under the cooperation of the second rotating rod 377 and the square opening 376, the motor 34 pulls the first rotating rod 372 to rotate. The first rotating rod 372 pulls the multiple rotating pieces 373 to rotate. The rotating pieces 373 draw external gas. When the external gas is drawn into the vent 374, some debris will adhere to the vent 374. During the rotation of the first rotating rod 372, the scraper 375 is pulled. Rotate, the scraper 375 removes the debris at the air vent 374; when the gas flows into the cover body 31, the pressure of the gas in the cover body 31 becomes greater due to the increase in gas, and the gas flows into the closed tube 381 through the through-hole 382. The gas compresses the moving piece 384 to move toward the side farther away from the motor 34. At this time, the spiral beryllium copper wire 383 is extended, and after the moving piece 384 moves to above the air vent 385, the gas in the cover body 31 is leaked from the air vent 385, thereby achieving the purpose of cooling. When the motor 34 is not working, with the cooperation of the spiral beryllium copper wire 383, the moving piece 384 returns to its original position. At this time, the closed tube 381 is closed, and then the external debris cannot flow into the cover body 31 through the air vent 385.

[0060] Reference Figure 2 The linkage module 4 includes a driving gear 41 fixedly connected to the rotating rod 372 and a plurality of driven gears 42 arranged circumferentially on the inner upper wall of the washing barrel 1, and the driven gears 42 and the driving gear 41 are meshed with each other.

[0061] The driving gear 41 is rotated by the rotating rod 1 372, and then the multiple driven gears 42 are rotated together, thereby pulling the toys fastened on the toy fastening module 5 to rotate, thereby achieving rotary cleaning of the toys and ensuring that the toys can be fully cleaned.

[0062] Reference Figure 2 、 Figure 11 and Figure 12The toy fastening module 5 includes a square rod 51 fixedly connected to the lower end of the driven gear 42 and a rotating column 56 screwed on the lower wall surface of the interior of the cleaning bucket 1. The lower end of the square rod 51 is slidably mounted with a square tube 52. A plurality of sockets are reserved on the side wall of the square rod 51. A concave frame 53 is fixedly connected to the side wall of the square tube 52. A pull rod 54 is slidably mounted on the concave frame 53. One end of the pull rod 54 passes through the square tube 52 and is inserted into the corresponding socket on the square rod 51. A spiral beryllium copper wire 55 is attached to the surface of the pull rod 54. The two ends of the spiral beryllium copper wire 55 are respectively fixedly connected to the inner wall of the concave frame 53 and the outer surface of the pull rod 54. The lower end of the square tube 52 and the upper end of the rotating column 56 are fixedly connected to a hemispherical block 1 57. A plurality of hemispherical blocks 2 58 are screwed on the fastening surface of the hemispherical block 1 57, and a plurality of V-shaped rubber blocks 59 are fixed on the fastening surface of the hemispherical block 2 58.

[0063] When tightening the toy, place the toy on the V-shaped rubber block 59 above the rotating column 56, pull out the pull rod 54, pull down the square tube 52, and let the V-shaped rubber block 59 below the square tube 52 press tightly on the top of the toy, then loosen the pull rod 54, and with the cooperation of the spiral beryllium copper wire 55, the pull rod 54 is inserted into the corresponding socket to constrain the square tube 52 and the square rod 51, and then tighten the toy to ensure that the toy can rotate smoothly so as to achieve rotary cleaning.

[0064] Reference Figure 2 The spray module 6 includes an annular tube 61 fixedly connected to the lower wall of the inner wall of the cleaning bucket 1. The upper end of the annular tube 61 is connected to a plurality of vertical steel pipes 62. The vertical steel pipes 62 are arranged corresponding to the rotating columns 56. One side of the vertical steel pipes 62 is connected to a plurality of nozzles 63. The nozzles of the nozzles 63 are arranged toward the fastened toys. One side of the annular tube 61 is connected to a connecting pipe 64. The lower end of the connecting pipe 64 extends out of the cleaning bucket 1 and is connected to a water pump 65. The other end of the water pump 65 is connected to the interior of the filter box 7 through a water pipe.

[0065] When cleaning the toy, the water pump 65 draws the water in the filter box 7 into the vertical steel pipe 62 through the connecting pipe 64, and then sends the water to the nozzle 63 through the vertical steel pipe 62. The nozzle 63 sprays the water onto the toy, and then cleans the rotating toy, which can fully clean the toy.

[0066] Reference Figure 2 and Figure 13 The upper end of the filter box 7 is equipped with an activated carbon filter plate 71, quartz sand 72, filter cotton 73 and filter screen 74 from bottom to top. The upper end of the filter box 7 is engaged with the cover plate. A hose is installed between the cover plate and the cleaning bucket 1. The two ends of the hose are connected to the cleaning bucket 1 and the filter box 7 respectively.

[0067] After the cleaned water falls into the filter box 7, the filter screen 74, filter cotton 73, quartz sand 72 and activated carbon filter plate 71 sequentially process the falling water to ensure that it can continue to be used for cleaning toys, greatly saving resources.

[0068] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.

Claims

1. A cleaning device with a filtering function for toy processing, comprising a cleaning bucket, characterized in that: Movable doors are movably installed on the front and back sides of the cleaning barrel, a power module is installed on the upper end of the cleaning barrel, a linkage module is installed in the cleaning barrel, a toy fastening module is installed at the lower end of the linkage module, a liquid spray module is installed on the side of the toy fastening module, and a filter box is installed at the lower end of the cleaning barrel; The power module includes a cover body fixedly connected to the upper end of the cleaning barrel, a track fixedly connected to the right wall inside the cover body, a moving platform movably installed in the track, a motor fixedly connected to the upper wall of the moving platform, a cover screwed to the upper end of the cover body, an outer surface of the motor fixedly connected to the assembly cylinder, and the right side of the assembly cylinder fixedly connected to the moving platform, and further includes: A pair of fastening units, each including a bending opening reserved for the right side of the assembly cylinder; a square bar movably mounted on the outer surface of the right side of the cover body; one end of the square bar extends into the cover body; the other end of the square bar is fixedly connected to the bending bar; a spiral beryllium copper wire is clamped around the outer surface of the square bar; the two ends of the spiral beryllium copper wire are respectively fixedly connected to the cover body and the bending bar; one end of the square bar in the cover body is fixedly connected to a wedge; the other end of the wedge extends into the bending opening and abuts against the bending opening; a constraint cylinder is fixedly connected to the outer wall surface of the cover body; the bending bar passes through the constraint cylinder and is movably connected to the constraint cylinder; The cover body is fixed with a sound-absorbing sheet; A stabilizing unit is installed in the housing. The stabilizing unit includes a plurality of variable columns installed in the housing. The variable columns include an outer cylinder and an inner cylinder. The outer cylinder is movably connected to one end of the inner cylinder. The upper ends of the plurality of variable columns are fixedly connected to a ring-shaped sheet. The outer surfaces of the plurality of variable columns are respectively connected to two spiral beryllium copper wires. The upper ends of the plurality of spiral beryllium copper wires are fixedly connected to the ring-shaped sheet. The upper wall of the ring-shaped sheet is in contact with the motor. The ring-shaped piece is screwed with a connecting strip, the other end of the connecting strip is screwed with a variable piece, the other end of the variable piece extends to the outside of the cover body and is movably connected to the cover body, and the end of the variable piece extending from the cover body is screwed with the changing strip; The outer surface of the cover body is fixedly connected to a concave strip, a movable hoop on the concave strip is connected to the variable platform, the other end of the variable strip is screwed to the variable platform, and both lateral sides of the variable platform are fixedly connected to the assembly platform, and the opposite sides of a pair of assembly platforms are respectively affixed to a pair of bending strips; A cooling unit is installed in the cover body, and the cooling unit includes a square cover fixedly connected to the inner surface of the sound-absorbing plate. A rotating rod is screwed into the square cover. The lower end of the rotating rod is pyramid-shaped. The rotating rod passes through the square cover and is screwed to the square cover. The lower end of the rotating rod extends to the outside of the cover body. A plurality of rotating plates are fixed to the rotating rod. The lower end of the cover is reserved with multiple ventilation holes, and the multiple ventilation holes all pass through the square cover. The rotating rod is fixedly connected to the scraper, and one side of the scraper is in contact with the cover. A square opening is reserved at the upper end of the rotating rod 1, and the rotating part of the motor is provided with the rotating rod 2, and the lower end of the rotating rod 2 extends into the square opening and is inserted into the square opening; A closing unit is installed at the upper end of the sealing cover, which includes a closing tube fixedly connected to the sealing cover. The closing tube passes through the sealing cover, and a plurality of through-holes are reserved at the lower end of the closing tube. The lower end inside the closing tube is fixedly connected to a spiral beryllium copper wire three, and the upper end of the spiral beryllium copper wire three is fixedly connected to a moving plate. The moving plate and the closing tube are movably connected, and a plurality of air vents are reserved around the upper end of the closing tube.

2. A cleaning device with a filtering function for toy processing according to claim 1, characterized in that: The linkage module includes a driving gear fixedly connected to the rotating rod and a plurality of driven gears connected to the upper wall of the washing barrel and arranged in a circular direction, and the driven gears and the driving gears are meshed with each other; The toy fastening module includes a square rod fixedly connected to the lower end of the driven gear and a rotating column screwed on the lower wall surface of the washing barrel. A square tube is slidably installed on the lower end of the square rod. A plurality of sockets are reserved on the side wall of the square rod. A concave frame is fixedly connected to the side wall of the square tube. A pull rod is slidably installed on the concave frame. One end of the pull rod passes through the square tube and is inserted into the corresponding socket on the square rod. The surface of the pull rod is clamped with a spiral beryllium copper wire four, and the two ends of the spiral beryllium copper wire four are respectively fixedly connected to the inner wall of the concave frame and the outer surface of the pull rod. The lower end of the square tube and the upper end of the rotating column are fixedly connected to hemispherical block one. Multiple hemispherical blocks two are screwed on the fastening surface of hemispherical block one, and multiple V-shaped rubber blocks are fixed on the fastening surface of hemispherical block two.

3. The cleaning device with filtering function for toy processing according to claim 1, characterized in that: The liquid spray module includes an annular tube fixedly connected to the lower wall of the washing bucket. The upper end of the annular tube is connected to multiple vertical steel pipes, which are arranged corresponding to the rotating columns. One side of the vertical steel pipe is connected to multiple nozzles, and the nozzles of the nozzles are arranged to face the fastened toy. One side of the annular tube is connected to a connecting pipe. The lower end of the connecting pipe extends out of the washing bucket and is connected to a water pump. The other end of the water pump is connected to the interior of the filter box via a water pipe. The upper end of the filter box is equipped with activated carbon filter plates, quartz sand, filter cotton and filter screen from bottom to top. The upper end of the filter box is clamped with a cover plate. A hose is installed between the cover plate and the cleaning bucket. The two ends of the hose are connected to the cleaning bucket and the filter box respectively.

Citation Information

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