CN111012139A - Multifunctional water cup based on magnetic coupling principle - Google Patents

Multifunctional water cup based on magnetic coupling principle Download PDF

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Publication number
CN111012139A
CN111012139A CN202010001854.7A CN202010001854A CN111012139A CN 111012139 A CN111012139 A CN 111012139A CN 202010001854 A CN202010001854 A CN 202010001854A CN 111012139 A CN111012139 A CN 111012139A
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CN
China
Prior art keywords
stirring
water cup
magnetic coupling
main body
coaxially
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
CN202010001854.7A
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Chinese (zh)
Inventor
潘长霞
方华椿
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Luan Fengkaini Electromechanical Technology Co Ltd
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Luan Fengkaini Electromechanical Technology Co Ltd
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Application filed by Luan Fengkaini Electromechanical Technology Co Ltd filed Critical Luan Fengkaini Electromechanical Technology Co Ltd
Priority to CN202010001854.7A priority Critical patent/CN111012139A/en
Publication of CN111012139A publication Critical patent/CN111012139A/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Withdrawn legal-status Critical Current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
    • A47GHOUSEHOLD OR TABLE EQUIPMENT
    • A47G19/00Table service
    • A47G19/22Drinking vessels or saucers used for table service
    • A47G19/2205Drinking glasses or vessels
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F33/00Other mixers; Mixing plants; Combinations of mixers
    • B01F33/45Magnetic mixers; Mixers with magnetically driven stirrers
    • B01F33/453Magnetic mixers; Mixers with magnetically driven stirrers using supported or suspended stirring elements
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F35/00Accessories for mixers; Auxiliary operations or auxiliary devices; Parts or details of general application
    • B01F35/30Driving arrangements; Transmissions; Couplings; Brakes
    • B01F35/31Couplings
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47GHOUSEHOLD OR TABLE EQUIPMENT
    • A47G2200/00Details not otherwise provided for in A47G
    • A47G2200/10Magnetism
    • A47G2200/106Permanent

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  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Food-Manufacturing Devices (AREA)

Abstract

The invention provides a multifunctional water cup based on a magnetic coupling principle, which comprises a water cup main body, wherein a water cup handle is arranged outside the water cup main body, an installation shell coaxially extends from the closed end of the water cup main body to the direction departing from the open end of the water cup main body, a stirring device is arranged in the water cup main body, the stirring device comprises a stirring piece and a stirring driving mechanism, the stirring piece is arranged in the water cup main body and is used for stirring liquid in the water cup main body, the stirring driving mechanism is arranged in the installation shell, and the stirring driving mechanism is used for receiving power generated when the water cup handle rotates, carrying out acceleration energy storage treatment on the power and then transmitting the power to the stirring piece; it orders about the stirring piece through magnetic coupling principle and stirs the liquid in the drinking cup, and sealing performance is not influenced, and this stirring drinking cup simple structure simultaneously, manufacturing cost is lower to this stirring drinking cup's stirring process is held the drinking cup body through user one hand, and the other hand rotates the drinking cup handle and realizes, has the decompression effect.

Description

Multifunctional water cup based on magnetic coupling principle
Technical Field
The invention relates to the field of living appliances, in particular to a stirring water cup.
Background
The water cups are drinking devices commonly used in daily life of people, the water cups are used for brewing tea leaves, coffee, various powder additives and the like, in order to ensure better brewing effect, stirring is needed during brewing, or cooling is accelerated by stirring under the condition that water is too hot, the commonly used water cups do not have a stirring function, a stirring rod and other devices are additionally used, on one hand, the stirring rod and other devices are inconvenient to carry at any time, on the other hand, the stirring device needs to be cleaned before and after each use, and is inconvenient to use, therefore, water cups with the stirring function are available on the market, most of the water cups are provided with a stirring blade driven by a motor to rotate so as to realize the stirring purpose, a hole needs to be formed at the bottom of the cup so as to facilitate power connection between the motor and the stirring blade, the requirement on the internal sealing condition of the water cups is high, and extra caution is needed when the water, the stirring cup has the advantages that the stirring cup is prevented from being soaked or damped by a motor and other equipment, and great troubles are brought to daily use of the cup, therefore, the stirring cup is necessary to provide the stirring cup adopting the magnetic coupling principle, the stirring piece is driven to stir liquid in the cup through the magnetic coupling principle, compared with the prior art that the stirring piece is driven to stir the liquid in the cup by using the motor as a power source, the bottom of the stirring cup is not required to be provided with holes, the sealing performance is not influenced, the battery leakage phenomenon cannot occur, the stirring cup is healthier, meanwhile, the stirring cup is simple in structure and lower in production cost, the stirring process of the stirring cup is realized by holding the cup body by one hand of a user and rotating the handle of the cup by the other hand of the user; in addition, an acceleration gear structure is formed between the second transmission straight gear and the first transmission straight gear in the stirring driving mechanism of the stirring water cup, so that liquid in the water cup can be quickly stirred by the stirring piece while a user slowly rotates the handle of the water cup; the energy storage flywheel in the stirring driving mechanism can accumulate kinetic energy, and after a user stops rotating the handle of the water cup, the stirring piece can still stir liquid in the water cup, so that the stirring is more sufficient, and the effect is better.
Disclosure of Invention
In order to solve the defects of the prior art, the invention aims to provide a stirring cup, a stirring piece is driven to stir liquid in the cup through a magnetic coupling principle, compared with the prior art that a motor is used as a power source to drive the stirring piece to stir the liquid in the cup, the bottom of the stirring cup is not required to be provided with a hole, the sealing performance is not influenced, the battery leakage phenomenon cannot occur, the stirring cup is healthier, meanwhile, the stirring cup is simple in structure and lower in production cost, the stirring process of the stirring cup is realized by a user holding the cup body of the cup with one hand and rotating the handle of the cup with the other hand, and the pressure reduction effect is achieved.
In order to achieve the technical purpose, the technical scheme adopted by the invention is as follows.
The multifunctional water cup based on the magnetic coupling principle comprises a water cup main body, wherein the water cup main body is of a circular cylinder structure with one open end and one closed end, a water cup handle is arranged outside the water cup main body, an installation shell in a circular structure coaxially extends towards the direction deviating from the open end of the water cup main body from the closed end of the water cup main body, and a fixed cover is installed at the free end of the installation shell in a matched mode;
the stirring device is arranged in the water cup main body and is used for stirring liquid in the water cup main body.
The technical scheme is further improved and optimized.
The outer circular surface of the mounting shell is provided with a guide chute, and the guide chute is of an arc chute structure which penetrates through the radial thickness of the mounting shell and is coaxially arranged with the mounting shell;
the water cup handle comprises a handle, an installation ferrule and a fixing plate, wherein the installation ferrule is of an annular ring body structure, the installation ferrule is coaxially and movably sleeved outside the installation shell and can axially rotate around the installation ferrule, and the guide chute arranged on the outer circular surface of the installation shell is positioned in the installation ferrule;
the fixing plate is of a plate body structure with a large surface vertical to the axial direction of the mounting ferrule, one end of the fixing plate is fixedly connected with the inner annular surface of the mounting ferrule, the other end of the fixing plate penetrates through a guide chute arranged on the outer circular surface of the mounting shell and is positioned in the mounting shell, and the fixing plate and the guide chute arranged on the outer circular surface of the mounting shell form sliding guide fit;
one end of the handle is fixedly connected with the mounting ring, the other end of the handle is close to the opening end of the water cup main body, and the end of the handle is in contact with the outer circular surface of the water cup main body.
The technical scheme is further improved and optimized.
The stirring device comprises a stirring piece and a stirring driving mechanism, wherein the stirring piece is arranged in the water cup main body and is used for stirring liquid in the water cup main body, the stirring driving mechanism is arranged in the mounting shell and is used for receiving power generated when the water cup handle rotates, carrying out acceleration energy storage treatment on the power and then transmitting the power to the stirring piece for the operation of the stirring piece;
the stirring driving mechanism comprises a power connecting component, an overrunning clutch, an energy storage flywheel and a magnetic coupling driving part, wherein the power connecting component is used for receiving power generated when the water cup handle rotates and transmitting the power to the overrunning clutch, the overrunning clutch is used for transmitting the power to the energy storage flywheel and the magnetic coupling driving part in a one-way mode, the energy storage flywheel is used for accumulating kinetic energy and continuously dragging the magnetic coupling driving part to rotate through the overrunning clutch when the water cup handle stops rotating, and the magnetic coupling is used for driving the stirring part to rotate by utilizing the magnetic coupling principle and stirring liquid in the water cup main body.
The technical scheme is further improved and optimized.
The power connection component comprises a movable support, an installation shaft and a power connection assembly, the installation shaft is coaxially and fixedly installed on the end face of the fixed cover, the movable support is of a circular support structure, the movable support is coaxially sleeved outside the installation shaft in a movable mode and can rotate around the axial direction of the installation shaft, and the movable support is fixedly connected with the fixed plate.
The technical scheme is further improved and optimized.
The power connecting assembly comprises an input shaft, a transmission shaft and an output shaft, the axial directions of the input shaft and the transmission shaft are parallel to the axial direction of the mounting shaft, the input shaft and the transmission shaft are fixedly mounted on the end face of the fixed cover, the output shaft and the mounting shaft are coaxially arranged, the output shaft is movably mounted on the movable support and can rotate around the axial direction of the output shaft, and the output shaft and the movable support do not interfere with each other when rotating respectively;
the power connecting assembly further comprises a gear ring, an input straight gear, a first transmission straight gear, a second transmission straight gear and an output straight gear, the gear ring is coaxially and fixedly arranged on the movable support, the input straight gear is coaxially and movably arranged outside the input shaft and can axially rotate around the input shaft, and the input straight gear is meshed with the gear ring.
The first transmission straight gear is coaxially and movably arranged outside the input shaft, can axially rotate around the input shaft and is fixedly connected with the input straight gear;
the second transmission straight gear is coaxially and movably arranged outside the transmission shaft and can rotate around the axial direction of the transmission shaft, the second transmission straight gear and the first transmission straight gear are meshed with each other and form a speed-increasing gear structure;
the output straight gear is coaxially and fixedly arranged outside the output shaft, and the output straight gear is meshed with the second transmission straight gear.
The technical scheme is further improved and optimized.
The overrunning clutch and the energy storage flywheel are both positioned on one side of the power connecting component, which is far away from the fixed cover;
the output shaft is coaxially and fixedly connected with the inner ring body of the overrunning clutch, the energy storage flywheel is coaxially and fixedly arranged outside the outer ring body of the overrunning clutch, and the torque force of the output shaft can be transmitted in a one-way mode from the output shaft to the energy storage flywheel through the overrunning clutch.
The technical scheme is further improved and optimized.
The overrunning clutch is a ball type overrunning clutch.
The technical scheme is further improved and optimized.
The magnetic coupling driving piece is positioned on one side, away from the fixed cover, of the energy storage flywheel and comprises a mounting plate and magnets, the mounting plate is of a circular plate structure coaxially arranged with the energy storage flywheel and is coaxially and fixedly connected with the outer ring body of the overrunning clutch, mounting holes penetrating through the axial thickness of the mounting plate are formed in the end face of the mounting plate, and four groups of the mounting holes are arranged in an array mode in the circumferential direction of the mounting plate;
the magnets are fixedly arranged in mounting holes formed in the end face of the mounting plate, and four groups of magnets are arranged in the circumferential direction of the mounting plate correspondingly in an array mode.
The technical scheme is further improved and optimized.
The water cup is characterized in that a rotating groove is coaxially formed in the cavity bottom of the water cup main body, the stirring piece comprises a counterweight ball, the counterweight ball is placed in the rotating groove, the spherical surface of the counterweight ball is provided with a stirring column, the initial position of the stirring column is located right above the magnet, and four groups of stirring columns are correspondingly arrayed along the horizontal circumferential direction of the counterweight ball.
The technical scheme is further improved and optimized.
The balance weight ball and the stirring column are made of magnetic materials, and an interlayer harmless to human health is arranged outside the balance weight ball and the stirring column.
Compared with the prior art, the stirring cup has the advantages that the stirring piece is driven to stir liquid in the cup through the magnetic coupling principle, compared with the prior art that the stirring piece is driven to stir liquid in the cup by using a motor as a power source, the bottom of the stirring cup is not required to be provided with holes, the sealing performance is not affected, the battery leakage phenomenon cannot occur, the stirring cup is healthier, the structure of the stirring cup is simple, the production cost is lower, the stirring process of the stirring cup is realized by holding the cup body with one hand and rotating the cup handle with the other hand, and the pressure reduction effect is realized; in addition, an acceleration gear structure is formed between the second transmission straight gear and the first transmission straight gear in the stirring driving mechanism of the stirring water cup, so that liquid in the water cup can be quickly stirred by the stirring piece while a user slowly rotates the handle of the water cup; the energy storage flywheel in the stirring driving mechanism can accumulate kinetic energy, and after a user stops rotating the handle of the water cup, the stirring piece can still stir liquid in the water cup, so that the stirring is more sufficient, and the effect is better.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
Fig. 2 is a schematic cross-sectional view of the present invention.
FIG. 3 is a schematic cross-sectional view of the cup body of the present invention.
Fig. 4 is a schematic structural view of the stirring member of the present invention.
FIG. 5 is a schematic view of the combination of the handle of the cup and the stirring device of the present invention.
FIG. 6 is a schematic view of the structure of the grip of the cup of the present invention.
Fig. 7 is a schematic structural view of the stirring device of the present invention.
Fig. 8 is a schematic structural view of the stirring device of the present invention.
Fig. 9 is a schematic view showing the internal structure of the stirring device of the present invention.
Fig. 10 is a schematic view of the engagement between the power connecting member and the stationary plate of the present invention.
FIG. 11 is a partial schematic view of the power connecting member of the present invention.
Fig. 12 is a schematic structural view of the power connection assembly of the present invention.
Fig. 13 is a schematic structural view of a power connection assembly of the present invention.
Fig. 14 is a schematic diagram of the cooperation of the overrunning clutch, the energy storage flywheel and the magnetic coupling driving member according to the present invention.
Fig. 15 is a schematic diagram of the engagement among the overrunning clutch, the output shaft and the output spur gear of the present invention.
Fig. 16 is a schematic structural diagram of the magnetic coupling driving member of the present invention.
Detailed Description
The stirring cup has the advantages that the stirring piece is driven to stir liquid in the cup through the magnetic coupling principle, compared with the prior art that the stirring piece is driven to stir liquid in the cup by using a motor as a power source, the bottom of the stirring cup is not required to be provided with holes, the sealing performance is not influenced, the battery leakage phenomenon cannot occur, the stirring cup is healthier, the structure of the stirring cup is simple, the production cost is lower, the stirring process of the stirring cup is realized by holding the cup body by one hand of a user and rotating the handle of the stirring cup by the other hand, and the psychological decompression effect is achieved; in addition, an acceleration gear structure is formed between the second transmission straight gear and the first transmission straight gear in the stirring driving mechanism of the stirring water cup, so that liquid in the water cup can be quickly stirred by the stirring piece while a user slowly rotates the handle of the water cup; the energy storage flywheel in the stirring driving mechanism can accumulate kinetic energy, and after a user stops rotating the handle of the water cup, the stirring piece can still stir liquid in the water cup, so that the stirring is more sufficient, and the effect is better.
The multifunctional water cup based on the magnetic coupling principle comprises a water cup main body 100, wherein the water cup main body 100 is of a circular cylinder structure with one open end and one closed end, a water cup handle 110 is arranged outside the water cup main body 100, the closed end of the water cup main body 100 coaxially extends in a direction away from the open end of the water cup main body 100 to form an installation shell in a circular ring structure, and a free end of the installation shell is matched with and provided with a fixed cover 120.
The stirring device 200 is arranged in the cup main body 100, and the stirring device 200 is used for stirring the liquid in the cup main body 100.
The outer circular surface of the installation shell is provided with a guide chute, and the guide chute is of an arc groove structure which penetrates through the radial thickness of the installation shell and is coaxially arranged with the installation shell.
The cup handle 110 comprises a handle 111, an installation ferrule 112 and a fixing plate 113, the installation ferrule 112 is a circular ring structure, the installation ferrule 112 is coaxially and movably sleeved outside the installation shell, the installation ferrule 112 can axially rotate around the installation ferrule 112, and the guide chute arranged on the outer circumferential surface of the installation shell is positioned in the installation ferrule 112.
The fixing plate 113 is a plate structure with a large surface perpendicular to the axial direction of the mounting collar 112, one end of the fixing plate 113 is fixedly connected with the inner annular surface of the mounting collar 112, the other end of the fixing plate 113 penetrates through a guide chute arranged on the outer circumferential surface of the mounting shell and is positioned in the mounting shell, and the fixing plate 113 and the guide chute arranged on the outer circumferential surface of the mounting shell form sliding guide fit.
One end of the handle 111 is fixedly connected with the mounting collar 112, the other end is close to the opening end of the cup body 100 and is in contact with the outer circumferential surface of the cup body 100.
The user holds the cup body 100 with one hand, holds the handle 111 with the other hand, and rotates the handle 111, so that the handle 111 rotates axially around the cup body 100 and pulls the mounting collar 112 and the fixing plate 113 to rotate synchronously.
The stirring device 200 comprises a stirring piece 210 and a stirring driving mechanism 220, wherein the stirring piece 210 is arranged in the water cup main body 100, the stirring piece 210 is used for stirring liquid in the water cup main body 100, the stirring driving mechanism 220 is arranged in the installation shell, and the stirring driving mechanism 220 is used for receiving power generated when the water cup handle 110 rotates, performing acceleration energy storage treatment on the power, and then transmitting the power to the stirring piece 210 for the operation of the stirring piece 210.
The stirring driving mechanism 220 comprises a power connection component 2210, an overrunning clutch 2220, an energy storage flywheel 2230 and a magnetic coupling driving component 2240, wherein the power connection component 2210 is used for receiving power generated when the water cup handle 110 rotates and transmitting the power to the overrunning clutch 2220, the overrunning clutch 2220 is used for transmitting the power to the energy storage flywheel 2230 and the magnetic coupling driving component 2240 in a one-way manner, the energy storage flywheel 2230 is used for accumulating kinetic energy and continuously dragging the magnetic coupling driving component 2240 to rotate through the overrunning clutch 2220 when the water cup handle 110 stops rotating, and the magnetic coupling 2240 is used for driving the stirring component 210 to rotate by using the magnetic coupling principle and stirring the liquid in the water cup main body 100.
The power connecting member 2210 comprises a movable support 2211, a mounting shaft 2212 and a power connecting assembly, the mounting shaft 2212 is coaxially and fixedly mounted on the end surface of the fixed cover 120, the movable support 2211 is a circular support structure, the movable support 2211 is coaxially and movably sleeved outside the mounting shaft 2212, the movable support 2211 can axially rotate around the mounting shaft 2212, and the movable support 2211 is further fixedly connected with the fixed plate 113.
The power connection assembly comprises an input shaft, a transmission shaft and an output shaft 2218, the axial directions of the input shaft and the transmission shaft are parallel to the axial direction of the mounting shaft 2212 and are fixedly mounted on the end face of the fixed cover 120, the output shaft 2218 and the mounting shaft 2212 are coaxially arranged, the output shaft 2218 is movably mounted on the movable support 2211, the output shaft 2218 can axially rotate around the output shaft 2218, and the output shaft 2218 and the movable support 2211 do not interfere with each other when rotating respectively.
The power connecting assembly further comprises a gear ring 2213, an input straight gear 2214, a first transmission straight gear 2215, a second transmission straight gear 2216 and an output straight gear 2217, wherein the gear ring 2213 is coaxially and fixedly arranged on the movable support 2211, the input straight gear 2214 is coaxially and movably arranged outside the input shaft, the input straight gear 2214 can axially rotate around the input shaft, and the input straight gear 2214 is meshed with the gear ring 2213.
The first transmission spur gear 2215 is coaxially and movably arranged outside the input shaft, the first transmission spur gear 2215 can axially rotate around the input shaft, and the first transmission spur gear 2215 is also fixedly connected with the input spur gear 2214.
The second transmission spur gear 2216 is coaxially and movably arranged outside the transmission shaft, the second transmission spur gear 2216 can rotate around the axial direction of the transmission shaft, the second transmission spur gear 2216 and the first transmission spur gear 2215 are meshed with each other, and a speed-increasing gear structure is formed between the first transmission spur gear 2216 and the first transmission spur gear 2215.
The output spur gear 2217 is coaxially and fixedly arranged outside the output shaft 2218, and the output spur gear 2217 is meshed with the second transmission spur gear 2216.
The fixed plate 113 rotates around the axial direction of the cup body 100 and pulls the movable support 2211 to rotate synchronously, the movable support 2211 rotates and pulls the gear ring 2213 to rotate synchronously, the gear ring 2213 rotates and pulls the output shaft 2218 to rotate around the self axial direction through the input straight gear 2214, the first transmission straight gear 2215, the second transmission straight gear 2216 and the first output straight gear 2217, and as the speed increasing gear structure is formed between the second transmission straight gear 2216 and the first transmission straight gear 2215, the rotating speed of the output shaft 2218 is greater than that of the movable support 2211, namely the output rotating speed of the output shaft 2218 is greater than that of the user for rotating the cup handle 110.
The overrunning clutch 2220 and the energy storage flywheel 2230 are both located on the side of the power connection member 2210 facing away from the stationary cover 120.
The output shaft 2218 is coaxially and fixedly connected with the inner ring body of the overrunning clutch 2220, the energy storage flywheel 2230 is coaxially and fixedly arranged outside the outer ring body of the overrunning clutch 2220, and particularly, the torque force of the output shaft 2218 can be transmitted to the energy storage flywheel 2230 in a one-way mode through the overrunning clutch 2220.
In a further embodiment, the overrunning clutch 2220 is a ball type overrunning clutch.
Magnetic coupling driving piece 2240 be located the one side that energy storage flywheel 2230 deviates from fixed cover 120, magnetic coupling driving piece 2240 includes mounting panel 2241, magnet 2242, mounting panel 2241 is the circular plate structure with energy storage flywheel 2230 coaxial arrangement, and coaxial fixed connection between mounting panel 2241 and the outer lane body of freewheel clutch 2220, the mounting hole that runs through its axial thickness is seted up to mounting panel 2241's terminal surface, and the mounting hole is provided with four groups along mounting panel 2241's circumferencial direction array.
Magnet 2242 fixed mounting set up in the mounting hole of mounting panel 2241 terminal surface to magnet 2242 corresponds the array along mounting panel 2241's circumferencial direction and is provided with four groups.
The coaxial rotating groove that is provided with in the chamber bottom of drinking cup main part 100, stirring 210 include the counter weight ball, the counter weight ball is placed in the rotating groove, the sphere of counter weight ball is provided with stirring post and the initial position of stirring post and is located magnet 2242 directly over to the stirring post corresponds the array along the horizontal circumferencial direction of counter weight ball and is provided with four groups, counter weight ball and stirring post be magnetic material and make and both outsides all are provided with the one deck to harmless interlayer of human health.
The output shaft 2218 rotates around the self axial direction and pulls the energy storage flywheel 2230/the magnetic coupling driving piece 2240 to rotate around the self axial direction through the overrunning clutch 2220, wherein in the rotating process of the energy storage flywheel 2230, the rotating speed of the energy storage flywheel 2230 is gradually increased from zero due to the large mass of the energy storage flywheel 2230, and the energy storage purpose is realized, that is, after the user stops rotating the water cup handle 110, the energy storage flywheel 2230 can continue to rotate for a period of time under the driving of the kinetic energy stored by the energy storage flywheel 2230;
in the rotation process of the magnetic coupling driving member 2240, the magnetic coupling driving member 2240 drives the stirring member 210 to rotate synchronously by the magnetic coupling principle, and after the user stops rotating the cup handle 110, the stirring member 210 can be driven to rotate for a period of time by the kinetic energy accumulated by the energy storage flywheel 2230, and the stirring member 210 rotates to stir the liquid in the cup body 100.
During actual work, a user holds the cup main body 100 with one hand, holds the handle 111 with the other hand and rotates the handle 111, the handle 111 rotates around the cup main body 100 in the axial direction and pulls the mounting collar 112 and the fixing plate 113 to rotate synchronously, the fixing plate 113 rotates and pulls the movable support 2211 to rotate synchronously, the movable support 2211 rotates and pulls the gear ring 2213 to rotate synchronously, the gear ring 2213 rotates and pulls the output shaft 2218 to rotate around the self axial direction through the input straight gear 2214, the first transmission straight gear 2215, the second transmission straight gear 2216 and the first output straight gear 2217, and since a speed increasing gear structure is formed between the second transmission straight gear 2216 and the first transmission straight gear 2215, the rotating speed of the output shaft 2218 is greater than that of the movable support 2211, namely the output rotating speed of the output shaft 2218 is greater than that the user;
the output shaft 2218 rotates around the self axial direction and pulls the energy storage flywheel 2230/the magnetic coupling driving piece 2240 to rotate around the self axial direction through the overrunning clutch 2220, wherein, in the process of the energy storage flywheel 2230 rotating, the rotating speed of the energy storage flywheel 2230 is gradually increased from zero and the purpose of energy storage is achieved because the energy storage flywheel 2230 has larger mass per se, that is, after the user stops rotating the handle 110 of the cup, the energy storage flywheel 2230 can continue to rotate for a period of time under the driving of the kinetic energy accumulated by the user, and during the rotation of the magnetic coupling driving member 2240, the magnetic coupling driving member 2240 drives the stirring member 210 to rotate synchronously by the magnetic coupling principle, and when the user stops rotating the cup handle 110, under the driving of the kinetic energy accumulated by the energy accumulation flywheel 2230, the magnetic coupling driving member 2240 can further drive the stirring member 210 to rotate for a period of time, and the stirring member 210 rotates to stir the liquid in the water cup body 100.

Claims (10)

1. The multifunctional water cup based on the magnetic coupling principle is characterized by comprising a water cup main body, wherein the water cup main body is of a circular cylinder structure with one open end and one closed end, a water cup handle is arranged outside the water cup main body, an installation shell in a circular structure coaxially extends towards the direction deviating from the open end of the water cup main body from the closed end of the water cup main body, and a fixed cover is installed at the free end of the installation shell in a matched mode;
the stirring device is arranged in the water cup main body and is used for stirring liquid in the water cup main body.
2. The multifunctional water cup based on the magnetic coupling principle according to claim 1, wherein the outer circumferential surface of the mounting housing is provided with a guide chute, and the guide chute is an arc groove structure which penetrates through the radial thickness of the mounting housing and is coaxially arranged with the mounting housing;
the water cup handle comprises a handle, an installation ferrule and a fixing plate, wherein the installation ferrule is of an annular ring body structure, the installation ferrule is coaxially and movably sleeved outside the installation shell and can axially rotate around the installation ferrule, and the guide chute arranged on the outer circular surface of the installation shell is positioned in the installation ferrule;
the fixing plate is of a plate body structure with a large surface vertical to the axial direction of the mounting ferrule, one end of the fixing plate is fixedly connected with the inner annular surface of the mounting ferrule, the other end of the fixing plate penetrates through a guide chute arranged on the outer circular surface of the mounting shell and is positioned in the mounting shell, and the fixing plate and the guide chute arranged on the outer circular surface of the mounting shell form sliding guide fit;
one end of the handle is fixedly connected with the mounting ring, the other end of the handle is close to the opening end of the water cup main body, and the end of the handle is in contact with the outer circular surface of the water cup main body.
3. The multifunctional water cup based on the magnetic coupling principle according to claim 2, wherein the stirring device comprises a stirring piece and a stirring driving mechanism, the stirring piece is arranged in the water cup main body and is used for stirring liquid in the water cup main body, the stirring driving mechanism is arranged in the installation shell and is used for receiving power generated when the water cup handle rotates, performing acceleration energy storage treatment on the power and transmitting the power to the stirring piece for the operation of the stirring piece;
the stirring driving mechanism comprises a power connecting component, an overrunning clutch, an energy storage flywheel and a magnetic coupling driving part, wherein the power connecting component is used for receiving power generated when the water cup handle rotates and transmitting the power to the overrunning clutch, the overrunning clutch is used for transmitting the power to the energy storage flywheel and the magnetic coupling driving part in a one-way mode, the energy storage flywheel is used for accumulating kinetic energy and continuously dragging the magnetic coupling driving part to rotate through the overrunning clutch when the water cup handle stops rotating, and the magnetic coupling is used for driving the stirring part to rotate by utilizing the magnetic coupling principle and stirring liquid in the water cup main body.
4. The multifunctional water cup based on the magnetic coupling principle according to claim 3, wherein the power connection member comprises a movable bracket, an installation shaft and a power connection assembly, the installation shaft is coaxially and fixedly installed on the end surface of the fixed cover, the movable bracket is of a circular bracket structure, the movable bracket is coaxially and movably sleeved outside the installation shaft and can axially rotate around the installation shaft, and the movable bracket is further fixedly connected with the fixed plate.
5. The multifunctional water cup based on the magnetic coupling principle according to claim 4, wherein the power connection assembly comprises an input shaft, a transmission shaft and an output shaft, the axial directions of the input shaft and the transmission shaft are both parallel to the axial direction of the installation shaft and are both fixedly installed on the end surface of the fixed cover, the output shaft and the installation shaft are coaxially arranged, the output shaft is movably installed on the movable support and can axially rotate around the output shaft, and the output shaft and the movable support do not interfere with each other when rotating respectively;
the power connecting assembly further comprises a gear ring, an input straight gear, a first transmission straight gear, a second transmission straight gear and an output straight gear, wherein the gear ring is coaxially and fixedly arranged on the movable support, the input straight gear is coaxially and movably arranged outside the input shaft and can axially rotate around the input shaft, and the input straight gear is meshed with the gear ring;
the first transmission straight gear is coaxially and movably arranged outside the input shaft, can axially rotate around the input shaft and is fixedly connected with the input straight gear;
the second transmission straight gear is coaxially and movably arranged outside the transmission shaft and can rotate around the axial direction of the transmission shaft, the second transmission straight gear and the first transmission straight gear are meshed with each other and form a speed-increasing gear structure;
the output straight gear is coaxially and fixedly arranged outside the output shaft, and the output straight gear is meshed with the second transmission straight gear.
6. The multifunctional water cup based on the magnetic coupling principle according to claim 5, wherein the overrunning clutch and the energy storage flywheel are both positioned on one side of the power connecting component, which is far away from the fixed cover;
the output shaft is coaxially and fixedly connected with the inner ring body of the overrunning clutch, the energy storage flywheel is coaxially and fixedly arranged outside the outer ring body of the overrunning clutch, and the torque force of the output shaft can be transmitted in a one-way mode from the output shaft to the energy storage flywheel through the overrunning clutch.
7. The multifunctional water cup based on the magnetic coupling principle as claimed in claim 6, wherein the overrunning clutch is a ball type overrunning clutch.
8. The multifunctional water cup based on the magnetic coupling principle according to claim 6, wherein the magnetic coupling driving member is located on one side of the energy storage flywheel away from the fixing cover, the magnetic coupling driving member comprises a mounting plate and a magnet, the mounting plate is of a circular plate structure coaxially arranged with the energy storage flywheel, the mounting plate is coaxially and fixedly connected with the outer ring body of the overrunning clutch, mounting holes penetrating through the axial thickness of the mounting plate are formed in the end face of the mounting plate, and four groups of the mounting holes are arranged in an array manner along the circumferential direction of the mounting plate;
the magnets are fixedly arranged in mounting holes formed in the end face of the mounting plate, and four groups of magnets are arranged in the circumferential direction of the mounting plate correspondingly in an array mode.
9. The multifunctional water cup based on the magnetic coupling principle according to claim 8, wherein the cavity bottom of the water cup main body is coaxially provided with a rotating groove, the stirring member comprises a counterweight ball, the counterweight ball is placed in the rotating groove, the spherical surface of the counterweight ball is provided with stirring columns, the initial positions of the stirring columns are positioned right above the magnet, and four groups of the stirring columns are correspondingly arrayed along the horizontal circumferential direction of the counterweight ball.
10. The multifunctional water cup based on the magnetic coupling principle according to claim 9, wherein the balance weight ball and the stirring column are made of magnetic conductive materials and an isolation layer harmless to human health is arranged outside the balance weight ball and the stirring column.
CN202010001854.7A 2020-01-02 2020-01-02 Multifunctional water cup based on magnetic coupling principle Withdrawn CN111012139A (en)

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Application Number Priority Date Filing Date Title
CN202010001854.7A CN111012139A (en) 2020-01-02 2020-01-02 Multifunctional water cup based on magnetic coupling principle

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Application Number Priority Date Filing Date Title
CN202010001854.7A CN111012139A (en) 2020-01-02 2020-01-02 Multifunctional water cup based on magnetic coupling principle

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CN202010001854.7A Withdrawn CN111012139A (en) 2020-01-02 2020-01-02 Multifunctional water cup based on magnetic coupling principle

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111603014A (en) * 2020-05-15 2020-09-01 秦皇岛志肯商贸有限公司 Pressure boost water storage heat preservation device
CN112892346A (en) * 2021-03-22 2021-06-04 宝璟科技(深圳)有限公司 Magnetic rotor

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111603014A (en) * 2020-05-15 2020-09-01 秦皇岛志肯商贸有限公司 Pressure boost water storage heat preservation device
CN111603014B (en) * 2020-05-15 2021-11-26 江苏天一航空工业股份有限公司 Pressure boost water storage heat preservation device
CN112892346A (en) * 2021-03-22 2021-06-04 宝璟科技(深圳)有限公司 Magnetic rotor

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Application publication date: 20200417