An integrated machine for automatic cleaning and drying of ink cartridges
By designing an ink tank automatic cleaning and drying integrated machine, using brush balls and brush rods for cleaning, the problem of precipitate precipitation at the bottom of the tank is solved, the cleaning quality and efficiency are improved, and the integrated operation of cleaning and drying is achieved.
Patent Information
- Application Number
- CN202510009164.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-03
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2045-01-03
AI Technical Summary
During the cleaning process of the existing ink tank cleaning device, the precipitates are prone to settle at the bottom of the tank, resulting in the sewage being unable to be completely brought out when discharged, and requires multiple flushing, which affects the cleaning efficiency and quality.
A brush ball and brush rod are used to clean the inner wall and bottom of the ink tank. The water flow flows directly from the brush ball and brush rod to avoid cleaning with the ink tank, thereby preventing the precipitate from precipitating.
By inverting the ink tank for cleaning, the precipitation is effectively prevented, the cleaning quality and efficiency are improved, the water waste is reduced, and the integrated operation of cleaning and drying is achieved.
Smart Images

Figure CN119387263B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of cleaning, and in particular to an automatic cleaning and drying all-in-one machine for ink tanks. Background Art
[0002] An ink tank is a container for storing ink. Ink is a colloid. After storing ink in the ink tank for a long time, due to the evaporation of water, the interaction between the colloid particles in the ink increases, and they tend to aggregate into large particles, thereby forming precipitation. These precipitates will adhere to the inner wall of the ink tank. Therefore, the ink tank needs to be cleaned to deal with these precipitates before replacing it to store new ink.
[0003] The current cleaning device for cleaning the ink tank uses a brush tool to assist with water flow for cleaning, and the cleaning device basically directly adds water for cleaning. In order to enable the water flow to assist the brush tool for comprehensive cleaning, the cleaning device often adds water flow into the ink tank, uses the ink tank's containing function to carry water, and fills the ink tank with water to achieve a comprehensive cleaning effect; however, this method will cause the washed sediment to easily settle at the bottom of the ink tank. After the ink tank is cleaned and the sewage is discharged, these sediments will be left at the end and cannot be effectively taken out by the sewage, resulting in the need for multiple flushings, which affects the cleaning efficiency and cleaning quality of the ink tank. Summary of the invention
[0004] The present invention provides an automatic ink tank cleaning and drying machine, aiming to solve the technical problems raised in the above background technology.
[0005] The technical scheme includes: a mounting frame; a placing table fixedly connected to the mounting frame; a clamping plate arranged on the mounting frame; a supply pipe fixedly arranged on the mounting frame, the supply pipe being retractable; a hub X rotatably arranged on the mounting frame, the hub X being rotatably connected and communicated with the supply pipe; a ring frame arranged on the mounting frame; a straight pipe arranged on the ring frame, at least two straight pipes are arranged, each straight pipe is communicated with the hub X; a brush ball rotatably connected to the end of each straight pipe; a hub Y fixedly connected to the hub X, the hub X being communicated with the hub Y; a ring tube fixedly connected to the upper part of the ring frame, the ring tube being communicated with the hub Y; a brush rod arranged on the ring tube, the brush rod being communicated with the ring tube; holes are formed on the brush rod and the brush ball.
[0006] In some embodiments, it also includes: a threaded tube slidably connected to the mounting frame, and a ring frame is set on the threaded tube; a control ring rotatably connected to the mounting frame, and the control ring is threadedly connected to the threaded tube; a motor Y fixedly connected to the mounting frame, and the motor Y is transmission-connected to the control ring.
[0007] In some embodiments, it further includes: a mounting base fixedly connected to the threaded pipe; a rotating frame rotatably connected to the mounting base, with a ring frame fixedly connected to the rotating frame; a motor X fixedly connected inside the mounting base; a gear X fixedly connected to the output end of the motor X; a gear ring X fixedly connected to the rotating frame, and the gear X meshes with the gear ring X.
[0008] In some embodiments, a straight pipe is slidably connected to the ring frame, and it further includes: a motor Z fixedly connected to the ring frame; a gear Z rotatably connected to the ring frame, the number of gears Z being the same as the number of straight pipes, and one of the gears Z being fixedly connected to the output end of the motor Z; a gear ring Y rotatably connected inside the ring frame, and each gear Z meshes with the gear ring Y; racks respectively fixedly connected to each straight pipe, and each gear Z meshes with each rack respectively.
[0009] In some embodiments, a brush rod is rotatably connected to the ring pipe; it further includes: an elastic member Y fixedly connected between the brush rod and the ring pipe.
[0010] In some embodiments, it further includes: spline sleeves respectively rotatably connected inside each straight pipe, with the spline sleeves fixedly connected to the brush balls; spline shafts respectively slidably connected inside each spline sleeve, with the spline shafts rotatably connected to the rotating frame; a supply pipe fixedly connected with a bevel gear, each spline shaft being fixedly connected with a bevel gear, and the bevel gears connected to the spline shafts all mesh with the bevel gear connected to the supply pipe.
[0011] In some embodiments, it further includes: a control pipe slidably connected between the center X and the center Y; a through port is formed on the control pipe; an elastic member Z fixedly connected between the center Y and the control pipe.
[0012] In some embodiments, it further includes: a liquid pump machine fixedly connected to the mounting frame; a gas pump machine fixedly connected to the mounting frame; a mounting frame fixedly connected to the mounting frame, both the liquid pump machine and the gas pump machine communicate with the mounting frame; a connecting pipe Y fixedly connected and communicating between the mounting frame and the supply pipe; a ball valve rotatably connected inside the mounting frame; a motor U fixedly connected to the mounting frame, and the motor U is fixedly connected to the ball valve.
[0013] The beneficial effects of the present invention are as follows:
[0014] The present invention cleans the inner side wall and the inner bottom of the ink tank by setting a brush ball and a brush rod respectively, and the water flows directly out of the brush ball and the brush rod for cooperative cleaning, so that water can be effectively utilized without relying on the ink tank. Therefore, the present invention can clean the ink tank in an inverted state to prevent sediment from settling in the ink tank, so as to prevent these sediments from adding extra cleaning steps, achieving the effects of improving the cleaning quality and cleaning efficiency of the present invention; the present invention can control the range of the brush ball and the brush rod by setting a moving straight pipe and a rotating brush rod, enabling the present invention to pass through ink tanks with different sizes for cleaning work, improving the use effect of the present invention; the present invention sets a rotating brush ball so that it can rotate while revolving, enabling the brush ball to process sediments from multiple angles, improving the effect of cleaning sediments by the present invention, and further improving the cleaning quality of the present invention; the present invention sets a control pipe to control the water supply at the brush rod, reducing water waste and saving resources, and the control of the control pipe is automatically realized by the action of whether the brush rod contacts the ink tank for brushing work, improving the use cooperation degree of the present invention and facilitating the use of the present invention; the present invention sets a ball valve that can switch water / air flow supply, enabling the present invention to complete cleaning and drying work integrally, saving transfer work, facilitating the use of the present invention, and improving the washing and drying efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic diagram of the overall structure of the present invention.
[0016] Figure 2 It is a schematic diagram of the local connection structure of the present invention.
[0017] Figure 3 It is a schematic diagram of the connection structure of the cleaning component in the present invention.
[0018] Figure 4 It is an exploded view of the connection structure of the cleaning component in the present invention.
[0019] Figure 5 It is an exploded view of the connection structure of the driving component in the present invention.
[0020] Figure 6 It is a schematic diagram of the connection structure of the lifting component in the present invention.
[0021] Figure 7 It is a schematic diagram of the structural state of the lifting component in the present invention after rising.
[0022] Figure 8 It is a schematic diagram of the connection structure of the stretching component in the present invention.
[0023] Figure 9 It is an exploded view of the connection structure of the brush rod in the present invention.
[0024] Figure 10This is an exploded view of the connection structure of the rotating component in the present invention.
[0025] Figure 11 This is a cross-sectional view of the connection structure of the control component in the present invention.
[0026] Figure 12 This is a schematic diagram of the connection structure of the switching component in the present invention.
[0027] Figure 13 This is a cross-sectional view of the connection structure of the switching component in the present invention.
[0028] The reference signs in the drawings are: 101, mounting bracket; 102, placement table; 103, clamping plate; 104, elastic member X; 201, supply pipe; 202, center X; 203, ring bracket; 204, straight pipe; 205, brush ball; 206, center Y; 207, ring pipe; 208, brush rod; 209, hole; 210, elastic member Y; 301, mounting seat; 302, rotating bracket; 303, motor X; 304, gear X; 305, gear ring X; 401, sleeve; 402, threaded pipe; 403, control ring; 404, motor Y; 405, gear Y; 501, motor Z; 502, gear Z; 503, gear ring Y; 504, rack; 505, connecting pipe X; 601, spline sleeve; 602, spline shaft; 603, bevel gear; 701, control pipe; 702, through port; 703, elastic member Z; 801, liquid pump; 802, air pump; 803, mounting frame; 804, ball valve; 805, motor U; 806, connecting pipe Y. Detailed implementation manners
[0029] To illustrate in detail the possible application scenarios, technical principles, specific implementable solutions, achievable purposes and effects, etc. of the present invention, the following is described in detail in conjunction with the listed specific embodiments and the accompanying drawings. The embodiments described herein are only used to more clearly illustrate the technical solutions of the present invention, and therefore are only examples and cannot be used to limit the protection scope of the present invention.
[0030] Embodiment: An integrated ink tank automatic cleaning and drying machine, as Figure 1 shown, includes: a general frame, the ink tank is subjected to cleaning and drying treatment on the general frame, and the general frame includes: a mounting bracket 101; a placement table 102 fixedly installed on the top of the mounting bracket 101, the middle of the placement table 102 is hollow, the ink tank is inverted on the placement table 102, and its tank mouth faces the hollow part of the placement table 102; clamping plates 103 slidably installed on the left and right sides of the placement table 102; an elastic member X 104 fixedly installed between the clamping plates 103 and the placement table 102, the elastic member X 104 is a compression spring, and the elastic member X 104 is used to fix the ink tank through the clamping plates 103 and position the ink tank at a position facing the hollow part of the placement table 102.
[0031] As Figure 2 , Figure 3 , Figure 4 and Figure 9 shown, it further includes: a cleaning component disposed on the main frame for cleaning the ink tank; as Figure 2 and Figure 5 shown, it further includes: a driving component disposed on the main frame, the driving component is connected to the cleaning component to drive the cleaning component to rotate; as Figure 2 , Figure 6 and Figure 7 shown, it further includes: a lifting component disposed on the main frame, the lifting component is connected to the driving component to control the cleaning component and the driving component to move up and down;
[0032] The lifting component includes: a sleeve 401 fixedly installed on the mounting bracket 101; a threaded tube 402 slidably installed on the mounting bracket 101, the threaded tube 402 is slidably installed with the sleeve 401; a control ring 403 rotatably installed on the mounting bracket 101, the control ring 403 is threadedly installed with the threaded tube 402; a motor Y 404 fixedly installed on the mounting bracket 101; two gear Ys 405, one of the gear Ys 405 is fixedly installed on the output end of the motor Y 404, and the other gear Y 405 is fixedly installed on the control ring 403, and these two gear Ys 405 are meshed with each other, so that the motor Y 404 can drive the control ring 403 to rotate and control the threaded tube 402 to move up and down.
[0033] The driving component includes: a mounting seat 301 fixedly installed on the top of the threaded tube 402; a rotating frame 302 rotatably installed on the mounting seat 301; a motor X 303 fixedly installed in the mounting seat 301; a gear X 304 fixedly installed on the output end of the motor X 303; a tooth ring X 305 fixedly installed in the rotating frame 302, the gear X 304 is meshed with the tooth ring X 305, so that the motor X 303 can drive the rotating frame 302 to rotate.
[0034] The cleaning assembly includes: a supply pipe 201 disposed within a sleeve 401. The supply pipe 201 is telescopic, with its upper end fixedly installed on a threaded pipe 402 and its lower end fixedly installed on the sleeve 401. When the threaded pipe 402 moves relative to the sleeve 401, the supply pipe 201 will automatically expand and contract to adapt to the change in the relative position between the two; a central X 202 fixedly installed on a rotating frame 302, with the central X 202 rotatably installed and communicating with the supply pipe 201; a ring frame 203 fixedly installed on the top of the rotating frame 302; a straight pipe 204 slidably installed on the ring frame 203, with four straight pipes 204 provided, and all four straight pipes 204 communicating with the central X 202; a brush ball 205 rotatably installed at the end of the straight pipe 204. When the straight pipe 204 moves relative to the ring frame 203, the brush ball 205 will contact the inner wall of the ink tank; a central Y 206 fixedly installed on the central X 202, with the central X 202 communicating with the central Y 206; a ring pipe 207 fixedly installed on the upper part of the ring frame 203, with the ring pipe 207 communicating with the central Y 206; a brush rod 208 rotatably installed on the ring pipe 207, with the brush rod 208 communicating with the ring pipe 207; holes 209 are provided on both the brush rod 208 and the brush ball 205, enabling the water flow / air flow supplied to the two to flow out; an elastic member Y 210 fixedly installed between the brush rod 208 and the ring pipe 207. The elastic member Y 210 is a torsion spring, and the elastic member Y 210 forms an angle between the initial position of the brush rod 208 and the horizontal plane, thereby reducing the horizontal area occupied by the brush rod 208 in the initial position.
[0035] As Figure 2 and Figure 8 shown, it further includes: an extension assembly disposed on the cleaning assembly. The extension assembly is used to control the extension of the straight pipe 204. The extension assembly includes: a motor Z 501 fixedly installed on the ring frame 203; a gear Z 502 rotatably installed on the ring frame 203, with four gear Z 502 provided, and the positions of the four gear Z 502 are respectively arranged beside the four straight pipes 204, and one of the gear Z 502 is fixedly connected to the output end of the motor Z 501; a ring gear Y 503 rotatably installed within the ring frame 203, and all four gear Z 502 are meshed with the ring gear Y 503, enabling the motor Z 501 to drive the four gear Z 502 to rotate synchronously; racks 504 respectively fixedly installed on the four straight pipes 204, and the four gear Z 502 are respectively meshed with the four racks 504. Therefore, the four straight pipes 204 can be synchronously controlled to move; a connecting pipe X 505 fixedly installed between the central X 202 and the straight pipe 204. The connecting pipe X 505 is telescopic, and the straight pipe 204 communicates with the central X 202 through the connecting pipe X 505, such that the movement of the straight pipe 204 does not affect the supply function of the central X 202 to the straight pipe 204.
[0036] As Figure 2 and Figure 10As shown, it further includes a rotating component disposed within the cleaning component. The rotating component includes: spline sleeves 601 respectively rotatably mounted within four straight pipes 204, with the ends of the spline sleeves 601 fixedly mounted to the brush balls 205; spline shafts 602 respectively slidably mounted within the four spline sleeves 601, and the ends of the four spline shafts 602 are all rotatably mounted on the rotating frame 302; there are a total of five bevel gears 603, where four bevel gears 603 are respectively fixedly mounted to the four spline shafts 602, and another bevel gear 603 is fixedly mounted to the supply pipe 201, and the four bevel gears 603 are all meshed with the other bevel gear 603, such that when the rotating frame 302 rotates relative to the supply pipe 201, the four bevel gears 603 can be controlled to rotate by the other bevel gear 603.
[0037] As Figure 2 and Figure 11 As shown, it further includes a control component disposed between the central unit X202 and the central unit Y206. The control component is used to control whether the central unit X202 and the central unit Y206 are connected or not. The control component includes: a control pipe 701 slidably mounted between the central unit X202 and the central unit Y206; a through port 702 is provided on the control pipe 701. When the through port 702 is located between the central unit X202 and the central unit Y206, the central unit X202 will be connected to the central unit Y206, otherwise the connection relationship between the central unit X202 and the central unit Y206 is cut off; an elastic member Z703 fixedly mounted between the central unit Y206 and the control pipe 701. The elastic member Z703 is a compression spring, and the elastic member Z703 makes the initial position of the through port 702 on the control pipe 701 located within the central unit X202, that is, the central unit X202 and the central unit Y206 are not connected. And when the control pipe 701 is pushed so that the position of the through port 702 faces the position between the central unit X202 and the central unit Y206, the water / air flow within the central unit X202 can enter the central unit Y206.
[0038] As Figure 2 、 Figure 12 and Figure 13As shown, it further includes a switching component disposed on the main frame. The switching component is connected to the supply pipe 201 and is used to switch the water / air flow supplied into the supply pipe 201. The switching component includes: a liquid pump 801 fixedly installed on the mounting bracket 101, which is used to pump water flow for cleaning; an air pump 802 fixedly installed on the mounting bracket 101, which is used to pump air flow for drying; a mounting frame 803 fixedly installed on the mounting bracket 101, and both the liquid pump 801 and the air pump 802 are connected to the mounting frame 803; a connecting pipe Y806 fixedly installed and connected between the mounting frame 803 and the supply pipe 201; a ball valve 804 rotatably installed in the mounting frame 803, which is used to switch the connection between the air pump 802 / liquid pump 801 and the connecting pipe Y806; a motor U805 fixedly installed on the mounting frame 803, and the motor U805 is fixedly installed with the ball valve 804 to drive the ball valve 804 to rotate.
[0039] The working principle of the ink tank automatic cleaning and drying integrated machine is as follows:
[0040] Invert the ink tank to be cleaned on the placement table 102 and fix it with the clamping plate 103. Subsequently, according to the size of the ink tank mouth, control the motor Z501 to move the straight pipe 204 to narrow the range of the brush ball 205 to a size that can pass through the ink tank mouth. After completion, control the motor Y404 to move the rotating frame 302 and the brush rod 208 of the brush ball 205 thereon upward into the ink tank, and then control the straight pipe 204 to move in the reverse direction to make the brush ball 205 contact the inner wall of the ink tank; secondly, control the motor U805 to rotate the ball valve 804 to connect the liquid pump 801 with the connecting pipe Y806, so that the liquid pump 801 can supply the water flow for cleaning into the supply pipe 201.
[0041] After the above operations are completed, control the motors X303 and Y404 to run. The motor X303 rotates the rotating frame 302, thereby rotating the brush ball 205 and the brush rod 208. At the same time, the water supplied by the supply pipe 201 to the brush ball 205 will flow out from the holes 209. Therefore, the brush ball 205 can brush the inner wall of the ink tank. During the brushing process, the gravity will cause the water to flow downward and be discharged from the ink tank, thereby directly taking out the sediment from the ink tank, avoiding the sediment deposition and remaining in the ink tank, which may cause subsequent repeated cleaning. At the same time, the motor Y404 will control the brush ball 205 to move upward to change the position where the brush ball 205 cleans the ink tank, so as to comprehensively clean the inner wall of the ink tank; when the end of the brush rod 208 moves to contact the inner bottom of the ink tank, with the continuous upward movement of the rotating frame 302, the brush rod 208 will be squeezed and rotate relative to the annular pipe 207, and the elastic member Y210 will be twisted until the brush rod 208 is in full contact with the inner bottom of the ink tank. Then, control the motor Y404 to stop running, and no longer move the brush ball 205 and the brush rod 208 upward, so that the rotating brush rod 208 can fully clean the inner bottom of the ink.
[0042] At the same time that the brush rod 208 is rotated to be in full contact with the inner bottom of the ink tank, the control pipe 701 will also be squeezed by the inner bottom of the ink tank and move downward, and the elastic member Z703 will be compressed. Therefore, the through hole 702 on the control pipe 701 will move between the center X202 and the center Y206, and then the center X202 can supply water to the center Y206. That is, the brush rod 208 will only be supplied with water when it contacts the inner bottom of the ink tank for cleaning, and the water supply will be cut off at other times when no brushing work is carried out, thereby reducing the waste of water resources.
[0043] During the rotation of the rotating frame 302, while the brush ball 205 makes a revolution, the brush ball 205 will also be controlled to rotate self - under the drive control of the bevel gear 603, so that the brush ball 205 can brush the ink tank at multiple angles, improving the cleaning quality of the ink tank.
[0044] After the cleaning work of the ink tank is completed, control the motor U805 to rotate the ball valve 804, connect the air pump 802 to the connecting pipe Y806, and supply air flow into the supply pipe 201, so that the machine can dry the cleaned ink tank and remove the residual moisture; finally, control the brush ball 205 and the brush rod 208 to move out of the ink tank, that is, the washing and drying process of the ink tank is completed.
[0045] The above - described embodiments only represent several implementation manners of the present invention. The description is relatively specific and detailed, but it should not be construed as a limitation on the scope of the patent of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present invention, several deformations and improvements can still be made, and these all belong to the protection scope of the present invention.
Claims
1. An automatic ink tank cleaning and drying machine, characterized in that: include: A mounting frame (101); a placement table (102) fixedly connected to the mounting frame (101), the ink tank being placed upside down on the placement table (102); a clamping plate (103) disposed on the mounting frame (101) for fixing the ink tank; a supply pipe (201) fixedly disposed on the mounting frame (101), the supply pipe (201) being used for supplying water / air flow, and the supply pipe (201) being retractable; a hub X (202) rotatably disposed on the mounting frame (101), the hub X (202) being rotatably connected and communicated with the supply pipe (201); a ring frame (203) disposed on the mounting frame (101), the ring frame (203) being capable of rotating and moving up and down; and a straight pipe (204) disposed on the ring frame (203), at least two straight pipes (204) being disposed, each straight pipe (204) being connected to the hub X (202). ); a brush ball (205) connected to the end of each straight tube (204) is rotated, the ring frame (203) moves up and down so that the brush ball (205) moves back and forth in the ink tank, and the ring frame (203) rotates so that the brush ball (205) cleans the inner wall of the ink tank; a hub Y (206) is fixedly connected to the hub X (202), and the hub X (202) is connected to the hub Y (206); a ring tube (207) is fixedly connected to the upper part of the ring frame (203), and the ring tube (207) is connected to the hub Y (206); a brush rod (208) is arranged on the ring tube (207), and the brush rod (208) is connected to the ring tube (207), and the ring frame (203) rotates so that the brush rod (208) cleans the inner bottom of the ink tank; holes (209) for water to flow out are provided on the brush rod (208) and the brush ball (205); The straight tube (204) is slidably connected to the ring frame (203), and further comprises: a motor Z (501) fixedly connected to the ring frame (203); gears Z (502) rotatably connected to the ring frame (203), the number of gears Z (502) being the same as the number of the straight tubes (204), one of the gears Z (502) being fixedly connected to the output end of the motor Z (501); a gear ring Y (503) rotatably connected to the ring frame (203), each gear Z (502) being meshed with the gear ring Y (503); and racks (504) respectively fixedly connected to each straight tube (204), each gear Z (502) being meshed with each rack (504).
2. The automatic ink tank cleaning and drying machine according to claim 1, characterized in that: Also includes: A threaded tube (402) is slidably connected to the mounting frame (101), and a ring frame (203) is arranged on the threaded tube (402), so that the ring frame (203) is controlled to move up and down by the threaded tube (402); a control ring (403) is rotationally connected to the mounting frame (101), and the control ring (403) is threadedly connected to the threaded tube (402); a motor Y (404) is fixedly connected to the mounting frame (101), and the motor Y (404) is drivingly connected to the control ring (403) to drive the control ring (403) to rotate.
3. The automatic ink tank cleaning and drying machine according to claim 2, characterized in that: Also includes: A mounting seat (301) fixedly connected to the threaded tube (402); a rotating frame (302) rotatably connected to the mounting seat (301), a ring frame (203) fixedly connected to the rotating frame (302), so that the ring frame (203) is controlled to rotate by the rotating frame (302); a motor X (303) fixedly connected to the mounting seat (301); a gear X (304) fixedly connected to the output end of the motor X (303); and a ring gear X (305) fixedly connected to the rotating frame (302), the gear X (304) meshing with the ring gear X (305).
4. The automatic ink tank cleaning and drying machine according to claim 3, characterized in that: The brush rod (208) is rotatably connected to the ring tube (207); and further comprises an elastic member Y (210) fixedly connected between the brush rod (208) and the ring tube (207).
5. The automatic ink tank cleaning and drying machine according to claim 4, characterized in that: Also includes: The spline sleeves (601) are rotatably connected to the straight tubes (204) respectively, and the spline sleeves (601) are fixedly connected to the brush balls (205); the spline shafts (602) are slidably connected to the spline sleeves (601) respectively, and the spline shafts (602) are rotatably connected to the rotating frame (302); the supply tube (201) is fixedly connected to a bevel gear (603), each spline shaft (602) is fixedly connected to a bevel gear (603), and the bevel gears (603) connected to the spline shafts (602) are meshed with the bevel gears (603) connected to the supply tube (201).
6. The automatic ink tank cleaning and drying machine according to claim 5, characterized in that: Also includes: A control tube (701) is slidably connected between the hub X (202) and the hub Y (206); a through hole (702) is provided on the control tube (701); when the through hole (702) is located between the hub X (202) and the hub Y (206), the hub X (202) and the hub Y (206) are connected; and an elastic member Z (703) is fixedly connected between the hub Y (206) and the control tube (701).
7. The automatic ink tank cleaning and drying machine according to claim 6, characterized in that: Also includes: A liquid pump (801) fixedly connected to a mounting frame (101) for pumping water; an air pump (802) fixedly connected to the mounting frame (101) for pumping air; a mounting frame (803) fixedly connected to the mounting frame (101), the liquid pump (801) and the air pump (802) both being connected to the mounting frame (803); a connecting pipe Y (806) fixedly connected to and connected between the mounting frame (803) and a supply pipe (201); a ball valve (804) rotatably connected in the mounting frame (803) for controlling switching of an object connected to the connecting pipe Y (806); and a motor U (805) fixedly connected to the mounting frame (803), the motor U (805) being fixedly connected to the ball valve (804).
Citation Information
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