CN111743403A - Automatic cup-discharging water-receiving water dispenser - Google Patents

Automatic cup-discharging water-receiving water dispenser Download PDF

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Publication number
CN111743403A
CN111743403A CN202010753478.7A CN202010753478A CN111743403A CN 111743403 A CN111743403 A CN 111743403A CN 202010753478 A CN202010753478 A CN 202010753478A CN 111743403 A CN111743403 A CN 111743403A
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CN
China
Prior art keywords
cavity
water
cup
fixedly connected
chamber
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Withdrawn
Application number
CN202010753478.7A
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Chinese (zh)
Inventor
魏永萍
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Guangzhou Guida Electronic Products Co Ltd
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Guangzhou Guida Electronic Products Co Ltd
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Application filed by Guangzhou Guida Electronic Products Co Ltd filed Critical Guangzhou Guida Electronic Products Co Ltd
Priority to CN202010753478.7A priority Critical patent/CN111743403A/en
Publication of CN111743403A publication Critical patent/CN111743403A/en
Withdrawn legal-status Critical Current

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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J31/00Apparatus for making beverages
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J31/00Apparatus for making beverages
    • A47J31/44Parts or details or accessories of beverage-making apparatus
    • A47J31/4403Constructional details

Abstract

The invention discloses a water dispenser with an automatic cup discharging function; comprises a main box body, a water taking cavity with a forward opening and a through left and right is arranged in the main box body, water guide nozzles are fixedly connected on the upper end wall of the water taking cavity in a bilateral symmetry manner, water storage cavities positioned at the upper side of the water taking cavity are arranged in the main box body in a bilateral symmetry manner, the water storage cavities correspond to the water guide nozzles, water cup cavities with upward openings and positioned at the lower side of the water taking cavity are arranged in the main box body in a bilateral symmetry manner, water cups are arranged in the water cup cavities, a filling cavity with an outward opening is communicated with the outer side of the water cup cavity, a sleeve cavity is communicated with the, the process of water storage, cup lifting and cup filling is realized simultaneously by pressing the switch, the whole process of water receiving is more automatic, the filling device is arranged to ensure the continuous supply of the cup, meanwhile, a good storage environment is provided for storing the cups, the cups are used for storing water once, the waste of the cups is avoided, and meanwhile, the drinking water machine is convenient for people to use.

Description

Automatic cup-discharging water-receiving water dispenser
Technical Field
The invention relates to the technical field of water dispensers, in particular to a water dispenser capable of automatically discharging a cup to receive water.
Background
When people in public places use the water dispenser to receive water, the uppermost layer of water cup is generally required to be drawn out from the next water cup cavity and then placed at the appointed position of the water dispenser to receive water, the water cups attached to the water dispenser are generally separated and placed, so that the water cups are easy to waste and lose, the water cups are difficult to store and use, and meanwhile, the water dispenser needs a series of actions to receive water, so that certain inconvenience is caused to the water receiving behavior of people.
Disclosure of Invention
Aiming at the technical defects, the invention provides a water dispenser capable of automatically discharging a cup to receive water, which can overcome the defects.
The invention relates to an automatic cup-discharging water-receiving water dispenser, which comprises a main box body, wherein a water taking cavity with a forward opening and a through left and right opening is arranged in the main box body, water guide nozzles are fixedly connected on the upper end wall of the water taking cavity in a bilateral symmetry manner, water storage cavities positioned on the upper side of the water taking cavity are symmetrically arranged in the main box body in the bilateral symmetry manner, the water storage cavities correspond to the water guide nozzles, water cup cavities with upward openings and positioned on the lower side of the water taking cavity are symmetrically arranged in the main box body in the bilateral symmetry manner, water cups are corresponding to the water guide nozzles, water cups are arranged in the water cup cavities, a filling cavity with an outward opening is communicated outside the water cup cavities, sleeve slider cavities are symmetrically communicated in the front and back direction and are provided with sleeve slider cavities, sleeve sliders are connected in a sliding fit manner in the sleeve slider cavities, a sleeve cavity is communicated with the lower end wall of the water cup, the lower end wall of the sleeve cavity is communicated with a lifting shaft gear cavity, the outer side of the lifting shaft gear cavity is communicated with a transmission shaft bevel gear, the outer side of the transmission shaft bevel gear is provided with a belt wheel cavity, the inner end wall of the transmission shaft bevel gear is connected with a transmission shaft which extends outwards to the belt wheel cavity in a rotating fit manner, the lower side of the lifting shaft gear cavity is provided with a ratchet wheel cavity, the lower end wall of the lifting shaft gear cavity is connected with a lifting shaft which extends downwards to the ratchet wheel cavity and upwards penetrates through the lifting shaft gear cavity to the sleeve cavity in a rotating fit manner, the lifting shaft is connected with the sleeve in a threaded fit manner, the lower end wall of the ratchet wheel cavity is communicated with a torsion spring cavity, the outer side of the ratchet wheel cavity is communicated with a pawl slide block cavity, the pawl slide block is connected in the pawl slide, the utility model discloses a water dispenser, including water intaking chamber, water guide nozzle, lifting shaft, end wall, lifting shaft, water intaking chamber, water guide nozzle, anchor clamps chamber, wheel cavity, cam chamber, wheel cavity, ratchet chamber, end wall, fixedly connected with torsion spring under the lifting shaft, water intaking chamber rear side bilateral symmetry intercommunication be equipped with downwardly extending and with the anchor clamps guide bar chamber that the water guide nozzle corresponds, anchor clamps guide bar chamber lower end wall intercommunication is equipped with the lift push rod chamber, lift push rod chamber lower end wall intercommunication is equipped with the cam chamber, anchor clamps guide bar chamber and corresponding side the intercommunication is equipped with the ascending anchor clamps chamber of opening between the cup chamber, the cam chamber outside is equipped with.
On the basis of the technical scheme, a water inlet cavity positioned in the water taking cavity is communicated and arranged at the lower side of the water storage cavity, a water outlet cavity with a downward opening is communicated and arranged at the lower side of the water inlet cavity, a water outlet baffle cavity is communicated and arranged at the front side of the water outlet cavity, a water outlet baffle is connected in the water outlet baffle cavity in a sliding fit manner, a water outlet compression spring is fixedly connected between the front end surface of the water outlet baffle and the front end wall of the water outlet baffle cavity, a water outlet baffle groove corresponding to the water outlet baffle cavity is communicated and arranged at the rear side of the water outlet cavity, starting button cavities corresponding to the water guide nozzles and having forward openings are symmetrically arranged in the main box body from left to right, a contact switch is fixedly connected at the lower side of the starting button cavity close to the water storage cavity, a starting button is connected in the starting button cavity in a sliding fit manner, and a starting button spring is fixedly connected, the right end face of the starting button is also fixedly connected with a water storage pull rope, and the other end of the water storage pull rope is fixedly connected with the front end face of the water outlet baffle.
On the basis of the technical scheme, a stepping motor is fixedly connected to the outer side of the belt wheel cavity, a driving shaft is fixedly connected to the inner end face of the stepping motor, a cam is fixedly connected to the tail end of the inner side of the driving shaft, and a first belt wheel fixedly connected with the driving shaft is arranged in the belt wheel cavity.
On the basis of the technical scheme, the lifting push rod intracavity sliding fit is connected with and upwards extends to anchor clamps guide arm intracavity and downwardly extending extremely the lifting push rod in cam chamber, lifting push rod down the terminal surface with the cam butt, be equipped with the ascending push rod inner chamber of opening in the lifting push rod, anchor clamps guide arm intracavity upper end wall internal fixation be connected have downwardly extending with the anchor clamps guide arm that push rod inner chamber sliding fit connects, be equipped with in anchor clamps guide arm intracavity downside with anchor clamps guide arm spline fit is connected and is extended forward and run through anchor clamps chamber extremely the right anchor clamps arm in drinking cup chamber, right anchor clamps arm upside be equipped with anchor clamps guide arm spline fit is connected and is extended forward and run through anchor clamps chamber extremely the left anchor clamps arm in the drinking cup intracavity.
On the basis of the technical scheme, the permanent magnet cavity with an upward opening is communicated with the tail end of the upper side of the water cup cavity in a bilateral symmetry mode, the inner wall of the permanent magnet cavity is fixedly connected with a permanent magnet, the permanent magnet is close to the end face of the side of the water cup cavity and is fixedly connected with a sliding sheet, and the right clamp arm is close to the end face of the side of the clamp guide rod and the left clamp arm is close to the end face of the side of the clamp guide rod and is fixedly connected with a clamp.
On the basis of the technical scheme, a transmission shaft is connected between the end wall outside the belt wheel cavity and the end wall in the transmission shaft gear cavity in a rotating fit mode, a second belt wheel is fixedly connected onto the transmission shaft, a conveying belt is connected between the second belt wheel and the first belt wheel in a power fit mode, a transmission shaft bevel gear located in the transmission shaft gear cavity is further fixedly connected onto the transmission shaft, a one-way bearing located in the lifting shaft gear cavity is fixedly connected onto the lifting shaft, and a lifting shaft bevel gear meshed with the transmission shaft bevel gear is connected onto the one-way bearing in a rotating fit mode.
On the basis of the technical scheme, cover plates corresponding to the filling cavities are hinged to the left end wall and the right end wall of the main box body, outer filling magnets are fixedly connected to the ends of the lower sides of the cover plates, the inner ends of the lower sides of the cover plates are close to the filling cavities, filling magnet cavities corresponding to the outer filling magnets are arranged on the left end wall and the right end wall of the main box body, inner filling magnets are connected to the inner filling magnet cavities in a sliding fit mode, a filling compression spring is fixedly connected to the inner walls of the inner filling magnets and the inner walls of the filling magnet cavities, a filling pull rope is fixedly connected to the inner walls of the inner filling magnets, a pawl slider spring is fixedly connected to the outer side end face of the pawl slider cavity and the outer side end face of the pawl slider, a filling pull rope is fixedly connected.
On the basis of the technical scheme, a pawl cavity with an opening towards the side of the ratchet cavity is arranged in the pawl sliding block, a pawl connecting block is connected between the upper end wall and the lower end wall of the pawl cavity in a rotating fit mode, and a pawl which is located in the ratchet and can be abutted to the ratchet is fixedly connected to the pawl connecting block.
The invention has the beneficial effects that: realize the process of retaining, cup promotion and cup filler simultaneously through push switch, make the whole process of water receiving more automatic. The filling device is arranged to ensure the continuous supply of the cups and provide a good preservation environment for the storage of the cups. The cup is started to store water by one cup at a time, so that the waste of the cup is avoided, and meanwhile, the drinking water machine is convenient for people to use.
Drawings
In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the invention, and it is obvious for those skilled in the art that other drawings can be obtained based on these drawings without creative efforts.
FIG. 1 is a schematic view of an automatic cup-discharging water-receiving water dispenser according to the present invention;
FIG. 2 is a schematic sectional view taken along the line A-A in FIG. 1;
FIG. 3 is a schematic sectional view taken along line B-B in FIG. 1;
FIG. 4 is an enlarged view of the structure at C in FIG. 1;
FIG. 5 is an enlarged view of the structure of FIG. 2 at D;
fig. 6 is a schematic structural view of the section along the direction E-E in fig. 2.
Detailed Description
All of the features disclosed in this specification, or all of the steps in any method or process so disclosed, may be combined in any combination, except combinations of features and/or steps that are mutually exclusive.
The invention will now be described in detail with reference to fig. 1-6, for convenience of description, the following orientations will now be defined: the up, down, left, right, and front-back directions described below correspond to the up, down, left, right, and front-back directions in the projection relationship of fig. 1 itself.
As shown in fig. 1-6, the automatic cup discharging water drinking machine of the present invention comprises a main box 10, a water taking cavity 21 with a forward opening and a through left-right opening is arranged in the main box 10, water guide nozzles 20 are fixedly connected to the upper end wall of the water taking cavity 21 in a left-right symmetrical manner, a water storage cavity 32 located on the upper side of the water taking cavity 21 is arranged in the main box 10 in a left-right symmetrical manner, the water storage cavity 32 corresponds to the water guide nozzles 20, a cup cavity 18 with an upward opening and located on the lower side of the water taking cavity 21 is arranged in the main box 10 in a left-right symmetrical manner, the cup cavity 18 corresponds to the water guide nozzles 20, a cup 19 is arranged in the cup cavity 18, a filling cavity 16 with an outward opening is arranged outside the cup cavity 18 in a communicating manner, sleeve slider cavities 25 are arranged in a front-back symmetrical manner in the cup cavity 18, a sleeve slider 24 is connected in a sliding manner, a sleeve cavity 23 is arranged on the lower end wall of the cup, the sleeve 22 which is fixedly connected with the sleeve cavity 23 inwards is connected with the sleeve cavity 23 in a sliding fit mode, the lower end wall of the sleeve cavity 23 is communicated with a lifting shaft gear cavity 58, the outer side of the lifting shaft gear cavity 58 is communicated with a transmission shaft bevel gear 59, the outer side of the transmission shaft bevel gear 59 is provided with a belt wheel cavity 61, the inner end wall of the transmission shaft bevel gear 59 is connected with a transmission shaft 63 which extends outwards to the belt wheel cavity 61 in a rotating fit mode, the lower side of the lifting shaft gear cavity 58 is provided with a ratchet wheel cavity 54, the lower end wall of the lifting shaft gear cavity 58 is connected with a lifting shaft 55 which extends downwards into the ratchet wheel cavity 54 and upwards penetrates through the lifting shaft gear cavity 58 to extend into the sleeve cavity 23 in a rotating fit mode, the lifting shaft 55 is connected with the sleeve 22 in a threaded fit mode, the lower end wall of the ratchet wheel cavity 54 is communicated with a torsion spring cavity 52, the outer side of the ratchet, pawl slider 45 is connected with in the pawl slider chamber 49 sliding fit, ratchet chamber 54 downside rotates and is connected with and is located ratchet 51 in the ratchet chamber 54, lift axle 55 lower extreme terminal surface with fixedly connected with torsion spring 53 between the end wall under the ratchet 51, the intercommunication of water intaking 21 rear side bilateral symmetry is equipped with downwardly extending and with the anchor clamps guide bar chamber 33 that water guide nozzle 20 corresponds, anchor clamps guide bar chamber 33 lower extreme wall intercommunication is equipped with lift push-rod chamber 34, lift push-rod chamber 34 lower extreme wall intercommunication is equipped with cam chamber 37, anchor clamps guide bar chamber 33 and corresponding side the intercommunication is equipped with the ascending anchor clamps chamber 26 of opening between the drinking cup chamber 18, the cam chamber 37 outside is equipped with pulley chamber 61, the end wall normal running fit in cam chamber 37 is connected with and extends to the driving shaft 72 in pulley chamber 61.
In addition, in an embodiment, a water inlet cavity 69 located in the water taking cavity 21 is communicated with the lower side of the water storage cavity 32, a water outlet cavity 66 with a downward opening is communicated with the lower side of the water inlet cavity 69, a water outlet baffle cavity 64 is communicated with the front side of the water outlet cavity 66, a water outlet baffle 68 is connected in the water outlet baffle cavity 64 in a sliding fit manner, a water outlet compression spring 65 is fixedly connected between the front end surface of the water outlet baffle 68 and the front end wall of the water outlet baffle cavity 64, a water outlet baffle groove 67 corresponding to the water outlet baffle cavity 64 is communicated with the rear side of the water outlet cavity 66, a starting button cavity 31 corresponding to the water guide nozzle 20 and having a forward opening is symmetrically arranged in the main box body 10, a contact switch 27 is fixedly connected to the lower side of the starting button cavity 31 close to the water storage cavity 32, a starting button 29 is connected in the starting button cavity 31 in a sliding fit manner, and a starting button 29 is fixedly connected between the rear end surface of the starting button cavity 29 The spring 28, the start button 29 right-hand member face still fixedly connected with impoundment stay cord 30, impoundment stay cord 30 other end with go out the preceding terminal surface fixed connection of water baffle 68.
In addition, in one embodiment, a stepping motor 74 is fixedly connected to the outer side of the pulley cavity 61, a driving shaft 72 is fixedly connected to the inner end surface of the stepping motor 74, a cam 36 is fixedly connected to the inner end of the driving shaft 72, and a first pulley 73 fixedly connected to the driving shaft 72 is arranged in the pulley cavity 61.
In addition, in an embodiment, sliding fit connects in the lifting push rod cavity 34 and has a lifting push rod 35 that extends upward to in the clamp guide rod cavity 33 and extends downward to the cam cavity 37, the lower end face of the lifting push rod 35 abuts against the cam 36, a push rod inner cavity 71 with an upward opening is arranged in the lifting push rod 35, a clamp guide rod 70 that extends downward to and is connected with the push rod inner cavity 71 in sliding fit is fixedly connected in the upper end wall of the clamp guide rod cavity 33, a right clamp arm 39 that is connected with the clamp guide rod 70 in spline fit and extends forward to penetrate through the clamp cavity 26 to the cup cavity 18 is arranged in the lower side of the clamp guide rod cavity 33, and a left clamp arm 38 that is connected with the clamp guide rod 70 in spline fit and extends forward to penetrate through the clamp cavity 26 to the cup cavity 18 is arranged on the upper side of the right clamp arm 39.
In addition, in one embodiment, a permanent magnet cavity 41 with an upward opening is formed in the upper end of the cup cavity 18 in a left-right symmetrical manner, a permanent magnet 42 is fixedly connected to the inner wall of the permanent magnet cavity 41, a slide plate 43 is fixedly connected to the permanent magnet 42 near the side end face of the cup cavity 18, and a clamp compression spring 40 is fixedly connected between the side end face of the right clamp arm 39 near the clamp guide rod 70 and the side end face of the left clamp arm 38 near the clamp guide rod 70.
In addition, in one embodiment, a transmission shaft 63 is connected between the outer end wall of the pulley cavity 61 and the inner end wall of the transmission shaft gear cavity 60 in a rotating fit manner, a second pulley 44 is fixedly connected to the transmission shaft 63, a transmission belt 62 is connected between the second pulley 44 and the first pulley 73 in a power fit manner, a transmission shaft bevel gear 59 located in the transmission shaft gear cavity 60 is further fixedly connected to the transmission shaft 63, a one-way bearing 57 located in the lifting shaft gear cavity 58 is fixedly connected to the lifting shaft 55, and a lifting shaft bevel gear 56 meshed with the transmission shaft bevel gear 59 is connected to the one-way bearing 57 in a rotating fit manner.
In addition, in one embodiment, the left and right end walls of the main housing 10 are hinged with cover plates 17 corresponding to the stuffing chamber 16, a filler outer magnet 15 is fixedly connected in the lower end of the cover plate 17 close to the filler cavity 16, the left end wall and the right end wall of the main box body 10 are both provided with a filler magnet cavity 12 corresponding to the filler outer magnet 15, the inner wall of the filler magnet cavity 12 is connected with a filler compression spring 13 in a sliding fit manner, the inner wall of the filler magnet 14 and the inner wall of the filler magnet cavity 12 are fixedly connected, the inner wall of the magnet 14 in the packing is also fixedly connected with a packing pull rope 11, the end of the outer side wall of the pawl slide block cavity 49 and the end surface of the outer side of the pawl slide block 45 are fixedly connected with a pawl slide block spring 47, the outer end face of the pawl slide block 45 is also fixedly connected with a packing pull rope 11, and the other end of the packing pull rope 11 is fixedly connected with the inner end face of the inner magnet 14 in the packing.
In one embodiment, a pawl cavity 50 opening toward the ratchet cavity 54 is formed in the pawl slider 45, a pawl connecting block 46 is connected between upper and lower end walls of the pawl cavity 50 in a rotationally engaged manner, and a pawl 48 which is located in the ratchet 51 and can abut against the ratchet 51 is fixedly connected to the pawl connecting block 46.
In the following, the applicant will specifically describe an automatic cup-discharging water dispenser of the present application with reference to the accompanying fig. 1-6 and the above description:
in an initial state, the start button spring 28 is in a relaxed state, the water outlet compression spring 65 is in a stretched state, the water storage pull rope 30 is in a tightened state, the permanent magnet 42 is in a magnetic state, the packing compression spring 13 is in a compressed state, the packing compression spring 13 and the packing external magnet 15 are in a mutual exclusion state, the pawl slider spring 47 is in a relaxed state, the packing pull rope 11 is in a tightened state, the torsion spring 53 is in a loosened state, the clamp compression spring 40 is in a stretched state, the left clamp arm 38 and the right clamp arm 39 are in the clamp cavity 26, and the lower end face of the sleeve slider 24 is in contact with the lower end wall of the sleeve slider cavity 25;
when the water storage device starts to work, the starting button 29 is pressed against the pushing force of the starting button spring 28, so that the water outlet baffle plate 68 is driven to move forwards to be opened against the pushing force of the water outlet compression spring 65 through the water storage pull rope 30, the water outlet cavity 66 starts to discharge water, and the topmost water cup 19 starts to store water;
meanwhile, when the start button 29 is pressed, the start button 29 touches the contact switch 27, the contact switch 27 sends a signal to enable the permanent magnet 42 and the stepping motor 74 to be started at regular time, the permanent magnet 42 is electrified and demagnetized, the uppermost cup 19 is clamped under the action of the tension of the clamp compression spring 40 after the left clamp arm 38 and the right clamp arm 39 lose the attraction force with the permanent magnet 42, the stepping motor 74 is started to drive the driving shaft 72 to rotate, and the driving shaft 72 rotates to drive the first belt pulley 73 and the cam 36 to rotate;
the cam 36 rotates to drive the left clamp arm 38 and the right clamp arm 39 to move upwards along the clamp guide rod 70 to the top end of the clamp guide rod cavity 33 through the lifting push rod 35 and stay for a certain time, when the left clamp arm 38 and the right clamp arm 39 rise to the top end of the clamp guide rod cavity 33, water is just fully stored in the water cup, and at the moment, the water cup can be taken down from the left clamp arm 38 and the right clamp arm 39;
the first belt wheel 73 rotates to drive the second belt wheel 44 to rotate through the conveyor belt 62, so that the transmission shaft 63 is driven to rotate, the transmission shaft bevel gear 59 drives the lifting shaft bevel gear 56 to rotate through bevel gear transmission, the lifting shaft 55 is driven to rotate through the one-way bearing 57 to overcome the elastic force of the torsion spring 53, the lifting shaft 55 rotates to drive the sleeve 22 to ascend, so that the water cup 19 in the water cup cavity 18 is driven to ascend, the automatic filling of the water cup 19 is completed, and at the moment, the ratchet wheel 51 rotates forwards and cannot be limited by the pawl 48;
when the cam 36 rotates for one circle, the left clamp arm 38 and the right clamp arm 39 just move to the initial positions, the permanent magnet 42 and the stepping motor 74 are just closed, the permanent magnet 42 is closed to reset the left clamp arm 38 and the right clamp arm 39, and the ratchet wheel 51 cannot rotate reversely under the action of the pawl 48 after the stepping motor 74 is closed;
when the cup 19 in the cup cavity 18 is consumed, the cover plate 17 is opened, so that the filling external magnet 15 is driven to be away from the filling internal magnet 14, the repulsive force between the filling external magnet 15 and the filling internal magnet 14 disappears, thereby leading the packing compression spring 13 to pop up, leading the internal magnet 14 of the packing to slide towards the outer side of the packing magnet cavity 12 under the thrust action of the packing compression spring 13, thereby driving the packing pulling rope 11 to stretch and the other end to tighten, thereby compressing the pawl slide block spring 47, the pawl slide block 45 moves to the outer side of the pawl slide block cavity 49 under the action of the pulling force of the packing pulling rope 11, thereby moving the pawl 48 outwardly of the pawl slide cavity 49 to disengage the pawl slide cavity 49 from the ratchet wheel 51, therefore, the lifting shaft 55 is reversely rotated under the action of the torsion spring 53, the sleeve 22 and the sleeve slider 24 are driven to reset, and the reverse rotation does not affect the lifting shaft bevel gear 56 due to the action of the one-way bearing 57.
The invention has the beneficial effects that: realize retaining, cup promotion and the process that the cup was packed simultaneously through push switch, make the process of whole water receiving more automatic. The filling device is arranged to ensure the continuous supply of the cups and provide a good preservation environment for the storage of the cups. The cup is started to store water by one cup at a time, so that the waste of the cup is avoided, and meanwhile, the drinking water machine is convenient for people to use.
The above description is only an embodiment of the invention, but the scope of the invention is not limited thereto, and any changes or substitutions that are not thought of through the inventive work should be included in the scope of the invention. Therefore, the protection scope of the invention should be subject to the protection scope defined by the claims.

Claims (8)

1. The utility model provides an automatic go out cup water receiving water dispenser, includes the main tank body, its characterized in that: a water taking cavity with a forward opening and a through left and right is arranged in the main box body, water guide nozzles are symmetrically and fixedly connected to the upper end wall of the water taking cavity in the left and right direction, water storage cavities positioned at the upper side of the water taking cavity are symmetrically and bilaterally arranged in the main box body, water cup cavities with an upward opening and positioned at the lower side of the water taking cavity are symmetrically and bilaterally arranged in the main box body, the water cup cavities correspond to the water guide nozzles, water cups are arranged in the water cup cavities, a filling cavity with an outward opening is communicated with the outer side of the water cup cavity, sleeve slider cavities are symmetrically communicated with the front and the back of the water cup cavity, sleeve sliders are connected in a sliding fit manner in the sleeve slider cavities, a sleeve cavity is communicated with the lower end wall of the water cup cavity, a sleeve fixedly connected with the sleeve cavity inwards is connected in a sliding fit manner in the sleeve cavity, and a lifting shaft, the outer side of the lifting shaft gear cavity is communicated with a transmission shaft bevel gear, the outer side of the transmission shaft bevel gear is provided with a belt wheel cavity, the inner end wall of the transmission shaft bevel gear is connected with a transmission shaft which extends outwards to the belt wheel cavity in a rotating fit manner, the lower side of the lifting shaft gear cavity is provided with a ratchet wheel cavity, the lower end wall of the lifting shaft gear cavity is connected with a lifting shaft which extends downwards to the ratchet wheel cavity and upwards penetrates through the lifting shaft gear cavity to the sleeve cavity in a rotating fit manner, the lifting shaft is connected with the sleeve in a threaded fit manner, the lower end wall of the ratchet wheel cavity is communicated with a torsion spring cavity, the outer side of the ratchet wheel cavity is communicated with a pawl slide block cavity, the pawl slide block cavity is connected in a sliding fit manner, the lower side of the ratchet wheel cavity is connected with a ratchet wheel positioned in the ratchet, get water chamber rear side bilateral symmetry intercommunication be equipped with downwardly extending and with the anchor clamps guide rod chamber that the water guide nozzle corresponds, anchor clamps guide rod chamber lower extreme wall intercommunication is equipped with the lift push rod chamber, lift push rod chamber lower extreme wall intercommunication is equipped with the cam chamber, anchor clamps guide rod chamber and corresponding side the intercommunication is equipped with the ascending anchor clamps chamber of opening between the drinking cup chamber, the cam chamber outside is equipped with the pulley chamber, cam intracavity end wall normal running fit is connected to extend outwards the driving shaft in pulley chamber.
2. The automatic cup discharging water receiving water dispenser of claim 1, characterized in that: the lower side of the water storage cavity is communicated with a water inlet cavity positioned in the water taking cavity, the lower side of the water inlet cavity is communicated with a water outlet cavity with a downward opening, the front side of the water outlet cavity is communicated with a water outlet baffle cavity, the water outlet baffle cavity is connected with a water outlet baffle in a sliding fit manner, a water outlet compression spring is fixedly connected between the front end surface of the water outlet baffle and the front end wall of the water outlet baffle cavity, the rear side of the water outlet cavity is communicated with a water outlet baffle groove corresponding to the water outlet baffle cavity, starting button cavities which correspond to the water guide nozzles and are provided with forward openings are symmetrically arranged in the main box body in a left-right manner, the lower side of each starting button cavity is close to the water storage cavity and is fixedly connected with a contact switch, the inside of each starting button cavity is connected with a starting button in a sliding fit manner, a starting button spring is fixedly connected between the rear end surface of the starting button cavity, the other end of the water storage pull rope is fixedly connected with the front end face of the water outlet baffle.
3. The automatic cup discharging water receiving water dispenser of claim 1, characterized in that: the outer side of the belt wheel cavity is fixedly connected with a stepping motor, the inner end face of the stepping motor is fixedly connected with a driving shaft, the tail end of the inner side of the driving shaft is fixedly connected with a cam, and a first belt wheel fixedly connected with the driving shaft is arranged in the belt wheel cavity.
4. The automatic cup discharging water receiving water dispenser of claim 1, characterized in that: lifting rod intracavity sliding fit is connected with and upwards extends to anchor clamps guide arm intracavity and downwardly extending extremely the lifting rod in cam chamber, lifting rod down the terminal surface with the cam butt, be equipped with the ascending push rod inner chamber of opening in the lifting rod, anchor clamps guide arm intracavity upper end wall internal fixation be connected have downwardly extending to with the anchor clamps guide arm that push rod inner chamber sliding fit is connected, be equipped with in anchor clamps guide arm intracavity downside with anchor clamps guide arm spline fit is connected and has extended forward and run through anchor clamps chamber extremely the right anchor clamps arm in drinking cup chamber, right anchor clamps arm upside be equipped with anchor clamps guide arm spline fit is connected and extends forward and runs through anchor clamps chamber extremely the left anchor clamps arm in the drinking cup intracavity.
5. The automatic cup discharging water receiving water dispenser of claim 1, characterized in that: the water cup comprises a water cup cavity, wherein the end of the upper side of the water cup cavity is provided with a permanent magnet cavity which is provided with an upward opening in a bilateral symmetry mode, the inner wall of the permanent magnet cavity is fixedly connected with a permanent magnet, the permanent magnet is close to the end face of the side of the water cup cavity and is fixedly connected with a sliding sheet, the right clamp arm is close to the side end face of the clamp guide rod and the left clamp arm is close to the side end face of the clamp guide rod.
6. The automatic cup discharging water receiving water dispenser of claim 1, characterized in that: the outer end wall of the belt wheel cavity and the inner end wall of the transmission shaft gear cavity are connected with a transmission shaft in a rotating fit mode, a second belt wheel is fixedly connected onto the transmission shaft, a transmission belt is connected between the second belt wheel and the first belt wheel in a power fit mode, the transmission shaft is further fixedly connected with a transmission shaft bevel gear located in the transmission shaft gear cavity, a one-way bearing located in the lifting shaft gear cavity is fixedly connected onto the lifting shaft, and a lifting shaft bevel gear meshed with the transmission shaft bevel gear is connected onto the one-way bearing in a rotating fit mode.
7. The automatic cup discharging water receiving water dispenser of claim 1, characterized in that: the end walls of the left side and the right side of the main box body are hinged with cover plates corresponding to the packing cavities, the end inside the lower side of each cover plate is close to the corresponding packing cavity and is fixedly connected with a packing external magnet, the end walls of the left side and the right side of the main box body are respectively provided with a packing magnet cavity corresponding to the packing external magnet, a packing internal magnet is connected in the packing magnet cavity in a sliding fit manner, the inner wall of the packing internal magnet and the inner wall of the packing magnet cavity are fixedly connected with a packing compression spring, the inner wall of the packing internal magnet is also fixedly connected with a packing pull rope, the outer side end of the ratchet slider cavity and the outer side end face of the ratchet slider are fixedly connected with a ratchet slider spring, the outer side end face of the ratchet slider is.
8. The automatic cup discharging water receiving water dispenser of claim 1, characterized in that: the ratchet slider is internally provided with a ratchet cavity with an opening towards the side of the ratchet cavity, the upper end wall and the lower end wall of the ratchet cavity are connected with a ratchet connecting block in a rotating fit mode, and a pawl which is positioned in the ratchet and can be abutted to the ratchet is fixedly connected onto the ratchet connecting block.
CN202010753478.7A 2020-07-30 2020-07-30 Automatic cup-discharging water-receiving water dispenser Withdrawn CN111743403A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202010753478.7A CN111743403A (en) 2020-07-30 2020-07-30 Automatic cup-discharging water-receiving water dispenser

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202010753478.7A CN111743403A (en) 2020-07-30 2020-07-30 Automatic cup-discharging water-receiving water dispenser

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CN111743403A true CN111743403A (en) 2020-10-09

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CN202010753478.7A Withdrawn CN111743403A (en) 2020-07-30 2020-07-30 Automatic cup-discharging water-receiving water dispenser

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112545310A (en) * 2020-12-17 2021-03-26 南京旭丰和商贸有限公司 Temperature-sensing water drinking device with function of detecting clamping of water cup
CN115191329A (en) * 2022-08-09 2022-10-18 四川省农业科学院植物保护研究所 Be used for sick worm scientific research with field device of moisturizing

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112545310A (en) * 2020-12-17 2021-03-26 南京旭丰和商贸有限公司 Temperature-sensing water drinking device with function of detecting clamping of water cup
CN115191329A (en) * 2022-08-09 2022-10-18 四川省农业科学院植物保护研究所 Be used for sick worm scientific research with field device of moisturizing
CN115191329B (en) * 2022-08-09 2023-05-02 四川省农业科学院植物保护研究所 Be used for disease worm scientific research to use field moisturizing device

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