CN111053462A - Multifunctional stirring water cup - Google Patents

Multifunctional stirring water cup Download PDF

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Publication number
CN111053462A
CN111053462A CN202010001853.2A CN202010001853A CN111053462A CN 111053462 A CN111053462 A CN 111053462A CN 202010001853 A CN202010001853 A CN 202010001853A CN 111053462 A CN111053462 A CN 111053462A
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CN
China
Prior art keywords
guide
stirring
limit
handle
mounting
Prior art date
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Withdrawn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
CN202010001853.2A
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Chinese (zh)
Inventor
潘长霞
方华椿
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Luan Fengkaini Electromechanical Technology Co Ltd
Original Assignee
Luan Fengkaini Electromechanical Technology Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Luan Fengkaini Electromechanical Technology Co Ltd filed Critical Luan Fengkaini Electromechanical Technology Co Ltd
Priority to CN202010001853.2A priority Critical patent/CN111053462A/en
Publication of CN111053462A publication Critical patent/CN111053462A/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Withdrawn legal-status Critical Current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
    • A47J43/00Implements for preparing or holding food, not provided for in other groups of this subclass
    • A47J43/04Machines for domestic use not covered elsewhere, e.g. for grinding, mixing, stirring, kneading, emulsifying, whipping or beating foodstuffs, e.g. power-driven
    • A47J43/042Mechanically-driven liquid shakers
    • 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
    • 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
    • A47J43/00Implements for preparing or holding food, not provided for in other groups of this subclass
    • A47J43/04Machines for domestic use not covered elsewhere, e.g. for grinding, mixing, stirring, kneading, emulsifying, whipping or beating foodstuffs, e.g. power-driven
    • A47J43/046Machines for domestic use not covered elsewhere, e.g. for grinding, mixing, stirring, kneading, emulsifying, whipping or beating foodstuffs, e.g. power-driven with tools driven from the bottom side
    • A47J43/0465Machines for domestic use not covered elsewhere, e.g. for grinding, mixing, stirring, kneading, emulsifying, whipping or beating foodstuffs, e.g. power-driven with tools driven from the bottom side with magnetic drive
    • 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
    • A47J43/00Implements for preparing or holding food, not provided for in other groups of this subclass
    • A47J43/04Machines for domestic use not covered elsewhere, e.g. for grinding, mixing, stirring, kneading, emulsifying, whipping or beating foodstuffs, e.g. power-driven
    • A47J43/07Parts or details, e.g. mixing tools, whipping tools
    • A47J43/0716Parts or details, e.g. mixing tools, whipping tools for machines with tools driven from the lower side
    • 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
    • A47J43/00Implements for preparing or holding food, not provided for in other groups of this subclass
    • A47J43/04Machines for domestic use not covered elsewhere, e.g. for grinding, mixing, stirring, kneading, emulsifying, whipping or beating foodstuffs, e.g. power-driven
    • A47J43/07Parts or details, e.g. mixing tools, whipping tools
    • A47J43/08Driving mechanisms
    • A47J43/085Driving mechanisms for machines with tools driven from the lower side

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Food Science & Technology (AREA)
  • Food-Manufacturing Devices (AREA)

Abstract

The invention provides a multifunctional stirring water cup, which comprises a water cup body and a stirring device, wherein a mounting shell coaxially extends towards the direction deviating from the cup opening of the water cup body from the cup bottom of the water cup body; the hole need not to be seted up at this stirring drinking cup bottom of cup, and sealing performance is not influenced and can not take place battery leakage phenomenon, and is more healthy, and the stirring process of this stirring drinking cup has the decompression effect simultaneously.

Description

Multifunctional stirring water cup
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 enable the brewing effect to be better, 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 the use is inconvenient, so that water cups with the stirring function are available on the market, most of the water cups are driven by a stirring blade through a motor to stir liquid in the water cup, the weight of the water cup is increased, the water cups are inconvenient to hold by one hand, a rotating shaft of the motor penetrates through a cup bottom and then is sleeved with the stirring blade, the sealing performance is poor, and besides, when the motor is, the storage battery is easy to leak after being used for a long time, the storage battery is easy to harm human bodies and is unhealthy, when the battery is driven by a temperature difference power generation mode, the production cost is high, the cooling speed of hot water is high, the stirring time is short, when the water is warm water, the motor cannot be driven to operate, in conclusion, the stirring blade driven by the motor to stir the liquid in the water cup has a plurality of defects, therefore, the invention needs to provide a stirring water cup which drives the stirring assembly to move up and down and stir the liquid in the water cup by adopting the magnetic principle that like poles repel each other and opposite poles attract each other, compared with the prior art that the stirring assembly is driven by the motor as a power source to stir the liquid in the water cup, the bottom of the stirring water cup is not required to be provided with holes, the sealing performance is not influenced, the battery leakage phenomenon cannot occur, the stirring, the production cost is low, the stirring process of the stirring water cup is realized by holding the cup body of the water cup by one hand and shaking the handle of the water cup by the other hand of a user, and the pressure reduction effect is achieved; in addition, the power transmission mechanism is provided with two groups of speed-increasing straight gear structures, so that a user can rapidly stir liquid in the water cup by the stirring assembly while shaking the handle, the stirring effect is better, the power transmission mechanism is also provided with the large flywheel, the large flywheel can accumulate kinetic energy, and after the user stops rotating the handle, the stirring assembly can still stir the 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, which adopts a magnetic principle that like poles repel each other and opposite poles attract each other to drive a stirring assembly to move up and down and stir liquid in the cup.
In order to achieve the technical purpose, the technical scheme adopted by the invention is as follows.
A multifunctional stirring water cup comprises a water cup body and a stirring device, wherein a mounting shell of a cylindrical shell structure with two open ends coaxially extends towards a direction deviating from a cup opening of the water cup body from the bottom of the water cup body, a bottom cover is coaxially fixed at the opening end of the mounting shell deviating from the water cup body, a first avoidance hole communicated with an inner cavity of the first avoidance hole is formed in the outer circular surface of the mounting shell, a handle is arranged on the outer circular surface of the water cup body, one end of the handle is in contact with the outer circular surface of the water cup body, a contact point is close to the cup opening of the water cup body, the other end of the handle is a connecting end, and the end;
agitating unit be used for stirring the processing to this internal liquid of drinking cup, agitating unit is including setting up the stirring subassembly in this internal drinking cup, set up power transmission mechanism and the magnetic vibration formula actuating mechanism in the installation shell, the stirring subassembly is used for stirring the processing to this internal liquid of drinking cup, power transmission mechanism and the link swing joint of handle and power transmission mechanism are used for receiving the handle and rock the power that produces and supply its rotation with this power transmission for magnetic vibration formula actuating mechanism, magnetic vibration formula actuating mechanism is used for utilizing like polarity to repel each other the magnetic principle that opposite sex was inhaled order about the stirring subassembly and rock and stir this internal liquid of drinking cup along drinking cup body axial undulation from top to bottom.
The technical scheme is further improved and optimized.
The power transmission mechanism comprises a separation housing, a power conversion component and a power transmission component, wherein the power conversion component is used for receiving power generated when the handle shakes and converting the power into power for driving the magnetic vibration type driving mechanism to rotate, and the power transmission component is used for receiving the power output by the power conversion component and transmitting the power to the magnetic vibration type driving mechanism;
the separating cover shell is of a circular shell structure with an opening at one end and a closed end, the opening end of the separating cover shell is coaxially fixed on the bottom cover, an avoidance hole II communicated with the inner cavity of the separating cover shell is formed in the outer circular surface of the separating cover shell, and the connecting end of the handle sequentially penetrates through the avoidance hole I/II and is positioned in the separating cover shell;
the power conversion component and the power transmission component are both arranged in the separation housing.
The technical scheme is further improved and optimized.
The power conversion component comprises a movable support, two groups of guide slide bars and two groups of reset springs, wherein the cavity wall of the separation housing is provided with guide grooves which are close to the avoidance hole II, the guide direction of each guide slide bar is parallel to the ground and the vertical surface of the handle, one end of each guide slide bar is positioned in each guide groove, the other end of each guide slide bar is a fixed end, the end of each guide slide bar is positioned in the separation housing, the guide slide bars and the guide grooves form sliding guide fit, and the two groups of guide slide bars are arranged and the two groups of guide grooves are correspondingly arranged;
the movable support is fixedly connected with the fixed end of the guide sliding rod, a guide area with the guide direction parallel to the axial direction of the water cup body is arranged on the movable support, the guide area is close to the avoidance hole II, the reset spring is sleeved outside the part, between the guide groove and the movable support, of the guide sliding rod, the movable support is driven by the elasticity of the reset spring to move away from the guide groove along the guide direction of the guide sliding rod, and two groups of reset springs are correspondingly arranged;
the handle with separate articulated between the housing be connected and the handle with separate the articulated shaft axial perpendicular to handle place vertical face that articulated junction constitutes between the housing, the link of handle is provided with the interlock arch, the interlock arch is provided with two sets ofly and the vertical face of handle place is perpendicular to apart from the direction between two sets of interlock arch, set up in the trace between two sets of interlock arch, fixed connection between the one end of trace and a set of interlock arch, the other end pass set up in the guide area on the movable support and with another group fixed connection between the interlock arch, constitute the sliding guide cooperation between the guide area of trace and movable support.
The technical scheme is further improved and optimized.
The power conversion component also comprises an input shaft and an output shaft, the axial directions of the input shaft and the output shaft are both parallel to the axial direction of the water cup body, the input shaft and the output shaft are movably arranged in the separation housing and can rotate around the axial direction of the input shaft, and the input shaft penetrates through the separation housing towards the end part of the water cup body and is positioned in the area between the separation housing and the cup bottom of the water cup body;
the power conversion component also comprises a driving rack and a driven spur gear, the extension direction of the driving rack is parallel to the guide direction of the guide slide rod, the driving rack is fixedly arranged on the movable bracket, the driven spur gear is coaxially and movably arranged outside the input shaft, the driven spur gear and the input shaft respectively rotate without interference, and the driven spur gear and the driving rack are meshed with each other;
the power conversion component also comprises an input straight gear and an output straight gear, the input straight gear is coaxially and movably arranged outside the input shaft, the input straight gear and the input shaft do not interfere with each other when rotating respectively, the input straight gear is also fixedly connected with the driven straight gear, the output straight gear is coaxially fixed outside the output shaft, the output straight gear and the input straight gear are mutually meshed, and a speed-up gear transmission structure is formed between the output straight gear and the input straight gear.
The technical scheme is further improved and optimized.
The power transmission component comprises an overrunning clutch, a receiving straight gear and a transmission straight gear, an inner ring body of the overrunning clutch is coaxially and fixedly connected with the output shaft, the receiving straight gear is coaxially and fixedly connected with an 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 receiving straight gear through the overrunning clutch;
the transmission straight gear is coaxially fixed outside the input shaft, the transmission straight gear and the receiving straight gear are meshed with each other, and a speed-up gear transmission structure is formed between the transmission straight gear and the receiving straight gear.
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 vibration type driving mechanism is positioned on one side, away from the bottom cover, of the power transmission mechanism and comprises a mounting disc, magnets, a magnetic isolation disc and a large flywheel, the mounting disc is of a disc body structure and is coaxially fixed at the end, facing the water cup body, of the input shaft, mounting holes penetrating through the axial thickness of the mounting disc are formed in the mounting disc, the magnets are fixed in the mounting holes, four groups of magnets are arranged in an array along the circumferential direction of the mounting disc, four groups of mounting holes are correspondingly formed in the mounting holes, and the magnetic poles, facing the water cup body, of any two adjacent groups of magnets in the four groups of magnets are opposite;
the large flywheel is coaxially fixed outside the mounting disc;
the magnetic isolation disc is made of magnetic isolation materials, is located on one side, facing the water cup body, of the mounting disc, is coaxially and fixedly connected with the mounting disc, is provided with a magnetic through hole penetrating through the axial thickness of the magnetic isolation disc, and is coaxially arranged with the mounting hole arranged on the mounting disc, and four groups of magnetic through holes are correspondingly arranged.
The technical scheme is further improved and optimized.
The stirring assembly comprises a counterweight ball, the counterweight ball is coaxially placed in the circular groove, the spherical surface of the counterweight ball is provided with stirring bulges, the magnetic through hole and the magnets are positioned on the same straight line, the stirring bulges are correspondingly provided with four groups, the stirring bulges are made of permanent magnetic materials, and the magnetic poles of two groups of stirring bulges positioned on the same diagonal line in the four groups of stirring bulges facing the magnets are opposite;
the stirring component is externally provided with an isolation layer made of materials harmless to human bodies.
The technical scheme is further improved and optimized.
The mounting shell is internally provided with a limit switch for limiting the movement of the movable bracket and further limiting the manual shaking of the handle by a user;
the outer circle surface of the mounting shell is provided with a sliding hole communicated with the inner cavity of the mounting shell, and the sliding hole and the handle are respectively positioned on one side of the mounting shell along the self axial direction;
the limit switch comprises a pressing slide rod, the guiding direction of the pressing slide rod is parallel to the guiding direction of the guiding slide rod, one end of the pressing slide rod is positioned in the mounting shell, a mounting block is fixedly arranged at the end of the pressing slide rod, the other end of the pressing slide rod penetrates through the slide hole and is positioned outside the mounting shell, a pressing cap is fixedly arranged at the end of the pressing slide rod, and the pressing slide rod and the slide hole form sliding guide fit;
the outside of pressing the slide bar still the cover be equipped with spacing spring, spacing spring's one end with press the cap conflict, the other end is contradicted with the outer disc of installation shell, spacing spring's elasticity orders about and does the motion of keeping away from the installation shell according to the cap.
The technical scheme is further improved and optimized.
One side of the movable support facing the sliding hole is provided with a guide area with a guide direction parallel to that of the guide sliding rod, the movable support is also provided with a limiting hole, the limiting hole is of a semicircular hole structure with an axial direction parallel to that of the installation shell, the limiting hole is positioned on one side of the guide area along the self guide direction, and the limiting hole is communicated with the guide area;
the limit switch also comprises a limit rack, a limit straight gear and a limit shaft, wherein the axial direction of the limit shaft is parallel to the axial direction of the installation shell, the limit shaft is movably installed in the installation shell and can rotate around the axial direction of the limit shaft, the limit shaft can be divided into three parts along the axial direction of the limit shaft and is respectively a first connecting section, a second connecting section and a limit section, the first connecting section and the second connecting section are of a smooth round shaft structure, the first connecting section is positioned on one side, facing the bottom cover, of the movable support, the second connecting section is positioned on one side, facing the water cup body, of the movable support, the limit section is of a semi-cylindrical structure matched with the limit hole, one end of the limit section is coaxially and fixedly connected with the first connecting section, and the;
the extending direction of the limiting rack is parallel to the guiding direction of the guide sliding rod, the limiting rack is fixedly connected with the mounting block, the limiting straight gear is coaxially fixed outside the limiting shaft, and the limiting straight gear is meshed with the limiting rack;
the motion state of the limit switch can be divided into a limit state that the limit section of the limit shaft is positioned in the limit hole, a cancel state that the limit shaft rotates and enables the limit section to rotate to the guide area of the movable support, and the initial state of the limit switch is a limit state.
Compared with the prior art, the stirring cup has the advantages that the stirring component is driven to move up and down and stir liquid in the cup by adopting the magnetic principle that like poles repel each other and opposite poles attract each other, compared with the prior art that the stirring component 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, 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 shaking the handle of the cup by the other hand of the user, and the pressure reduction effect is achieved; in addition, the power transmission mechanism is provided with two groups of speed-increasing straight gear structures, so that a user can rapidly stir liquid in the water cup by the stirring assembly while shaking the handle, the stirring effect is better, the power transmission mechanism is also provided with the large flywheel, the large flywheel can accumulate kinetic energy, and after the user stops rotating the handle, the stirring assembly can still stir the 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 view of the overall structure of the present invention.
Fig. 3 is a schematic cross-sectional view of the present invention.
FIG. 4 is a cross-sectional schematic view of the cup body of the present invention.
Fig. 5 is a schematic diagram of the combination of the handle, the stirring device and the limit switch.
Fig. 6 is a schematic structural view of the stirring assembly of the present invention.
Fig. 7 is a schematic diagram of the combination of the handle, the stirring device and the limit switch.
Fig. 8 is a schematic diagram of the cooperation among the handle, the power transmission mechanism and the limit switch of the present invention.
Fig. 9 is a schematic diagram of the cooperation among the handle, the power transmission mechanism and the limit switch of the present invention.
Fig. 10 is a schematic diagram of the cooperation among the handle, the power transmission mechanism and the limit switch of the present invention.
Fig. 11 is a schematic view of the engagement between the handle and the movable bracket of the present invention.
Fig. 12 is a schematic diagram of the engagement between the power transmission mechanism and the limit switch of the present invention.
Fig. 13 is a schematic structural view of a power conversion member of the present invention.
Fig. 14 is a schematic structural view of a power transmission member of the present invention.
Fig. 15 is a schematic view of the movable bracket of the present invention in cooperation with a limit switch.
Fig. 16 is a schematic structural diagram of a limit switch of the present invention.
Fig. 17 is a schematic view of the engagement between the limiting shaft and the movable bracket according to the present invention.
Fig. 18 is a schematic diagram of the magnetic vibration type driving mechanism of the present invention engaged with an input shaft.
Fig. 19 is a schematic diagram of the magnetic vibration type driving mechanism of the present invention engaged with an input shaft.
FIG. 20 is a schematic view of the magnetic vibration drive mechanism of the present invention engaged with an input shaft.
Fig. 21 is a schematic diagram of the magnetic vibration type driving mechanism of the present invention engaged with an input shaft.
FIG. 22 is a cross-sectional view of the magnetically resonant drive mechanism and input shaft of the present invention.
Detailed Description
The stirring cup has the advantages that the stirring assembly is driven to move up and down and stir the liquid in the cup by adopting the magnetic principle that like poles repel each other and opposite poles attract each other, compared with the prior art that the stirring assembly is driven to stir the 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, 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 with one hand and shaking the cup handle with the other hand of a user, and the pressure reduction effect is realized; in addition, the power transmission mechanism is provided with two groups of speed-increasing straight gear structures, so that a user can rapidly stir liquid in the water cup by the stirring assembly while shaking the handle, the stirring effect is better, the power transmission mechanism is also provided with the large flywheel, the large flywheel can accumulate kinetic energy, and after the user stops rotating the handle, the stirring assembly can still stir the liquid in the water cup, so that the stirring is more sufficient and the effect is better.
The utility model provides a multifunctional stirring drinking cup, it includes drinking cup body 100, agitating unit 200, the coaxial extension of the bottom of cup of drinking cup body 100 towards the direction that deviates from self rim of a cup has the installation shell 120 that is both ends open-ended cylindrical shell structure, and the coaxial bottom 121 that is fixed with of the open end that installation shell 120 deviates from drinking cup body 100, the hole of dodging one rather than the inner chamber switch-on is seted up to the excircle face of installation shell 120, the excircle face of drinking cup body 100 is provided with handle 110, the one end of handle 110 and the outer disc contact of drinking cup body 100 and the rim of a cup that the contact point is close to drinking cup body 100, the other end passes for link and this end and dodges the hole and be located.
The stirring device 200 is used for stirring liquid in the water cup body 100, the stirring device 200 comprises a stirring component 210 arranged in the water cup body 100, a power transmission mechanism 220 arranged in the installation shell 120 and a magnetic vibration type driving mechanism 230, the stirring component 210 is used for stirring the liquid in the water cup body 100, the power transmission mechanism 220 is movably connected with the connecting end of the handle 110, the power transmission mechanism 220 is used for receiving power generated when the handle 110 shakes and transmitting the power to the magnetic vibration type driving mechanism 230 for rotation, and the magnetic vibration type driving mechanism 230 is used for driving the stirring component 210 to shake up and down along the axial direction of the water cup body 100 and stir the liquid in the water cup body 100 by utilizing the magnetic principle that like poles repel each other and opposite poles attract each other.
The power transmission mechanism 220 includes a partition housing 2210, a power conversion member 2220, and a power transmission member 2230, wherein the power conversion member 2220 is used for receiving the power generated by shaking the handle 110 and converting it into the power for driving the magnetic vibration type driving mechanism 230 to rotate, and the power transmission member 2230 is used for receiving the power output by the power conversion member 2220 and transmitting it to the magnetic vibration type driving mechanism 230.
The separation cover 2210 is a circular shell structure with an open end and a closed end, the open end of the separation cover 2210 is coaxially fixed on the bottom cover 121, an avoiding hole two communicated with the inner cavity of the separation cover 2210 is formed on the outer circular surface of the separation cover 2210, and the connecting end of the handle 110 sequentially passes through the avoiding hole one/two and is positioned in the separation cover 2210.
Power conversion member 2220 and power transmission member 2230 are disposed within partition housing 2210.
The power conversion member 2220 includes a movable support 2221, a guide sliding bar 2222, and a return spring 2223, wherein a cavity wall of the partition housing 2210 is provided with a guide groove close to the second avoidance hole, a guiding direction of the guide sliding bar 2222 is parallel to the ground and a vertical plane of the handle 110, one end of the guide sliding bar 2222 is located in the guide groove, the other end is a fixed end and is located in the partition housing 2210, and the guide sliding bar 2222 and the guide groove form a sliding guide fit.
The fixed ends of the movable support 2221 and the guide sliding rod 2222 are fixedly connected, a guide area with a guide direction parallel to the axial direction of the water cup body 100 is arranged on the movable support 2221, the guide area is close to the avoidance hole II, the return spring 2223 is sleeved on the part of the guide sliding rod 2222 between the guide groove and the movable support 2221, the elastic force of the return spring 2223 drives the movable support 2221 to move away from the guide groove along the guide direction of the guide sliding rod 2222, and the return spring 2223 is correspondingly provided with two groups.
The handle 110 is hinged to the partition housing 2210, an axial direction of a hinge shaft formed at the hinged joint between the handle 110 and the partition housing 2210 is perpendicular to a vertical surface of the handle 110, the connecting end of the handle 110 is provided with two sets of linkage protrusions, the distance direction between the two sets of linkage protrusions is perpendicular to the vertical surface of the handle 110, the two sets of linkage protrusions are arranged on a linkage rod, one end of the linkage rod is fixedly connected with one set of linkage protrusions, the other end of the linkage rod penetrates through a guide area arranged on the movable support 2221 and is fixedly connected with the other set of linkage protrusions, and the linkage rod and the guide area of the movable support 2221 form sliding guide fit.
A user can hold the cup body 100 with one hand and hold the handle 110 with the other hand, and then, the user shakes the handle 110, i.e., the handle 110 is reciprocally rotated in the axial direction about the hinge axis between the handle 110 and the partition housing 2210, and the handle 110 is rotated and drives the movable bracket 2221 to be reciprocally moved in the guide direction of the guide slide bar 2222 by the cooperation between the linkage lever and the guide area of the movable bracket 2221.
The power conversion member 2220 further includes an input shaft 2228 and an output shaft 2229, the axial directions of the input shaft 2228 and the output shaft 2229 are both parallel to the axial direction of the cup body 100, and both are movably mounted in the partition housing 2210 and can rotate around the axial direction thereof, and the end of the input shaft 2228 facing the cup body 100 passes through the partition housing 2210 and is located in the area between the partition housing 2210 and the bottom of the cup body 100.
The power conversion member 2220 further includes a driving rack 2224 and a driven spur gear 2225, wherein the extending direction of the driving rack 2224 is parallel to the guiding direction of the guide slide bar 2222, the driving rack 2224 is fixedly mounted on the movable bracket 2221, the driven spur gear 2225 is coaxially and movably mounted outside the input shaft 2228, the driven spur gear 2225 and the input shaft 2228 do not interfere with each other during respective rotation, and the driven spur gear 2225 and the driving rack 2224 are engaged with each other.
The power conversion member 2220 further includes an input spur gear 2226 and an output spur gear 2227, the input spur gear 2226 is coaxially and movably mounted outside the input shaft 2228, the input spur gear 2226 and the input shaft 2228 do not interfere with each other during respective rotations, the input spur gear 2226 is further fixedly connected with the driven spur gear 2225, the output spur gear 2227 is coaxially fixed outside the output shaft 2229, the output spur gear 2227 and the input spur gear 2226 are engaged with each other, and a speed-increasing gear transmission structure is formed therebetween.
The movable support 2221 reciprocates in the guiding direction of the guide slide bar 2222 and drives the driven spur gear 2225 to rotate axially around itself through the driving rack 2224, the driven spur gear 2225 rotates and pulls the input spur gear 2226 to rotate synchronously, the input spur gear 2226 rotates and pulls the output shaft 2229 to rotate axially around itself through the output spur gear 2227, and since a speed-increasing gear transmission structure is formed between the output spur gear 2227 and the input spur gear 2226, the rotation speed of the output shaft 2229 is greater than that of the driven spur gear 2225.
The power transmission member 2230 includes an overrunning clutch 2231, a receiving spur gear 2232 and a transmission spur gear 2233, an inner ring body of the overrunning clutch 2231 is coaxially and fixedly connected with the output shaft 2229, and an outer ring body of the receiving spur gear 2232 is coaxially and fixedly connected with the outer ring body of the overrunning clutch 2231, and particularly, the torque of the output shaft 2229 can be transmitted from the output shaft 2229 to the receiving spur gear 2232 in a one-way manner through the overrunning clutch 2231.
In a further embodiment, the overrunning clutch 2231 is a ball type overrunning clutch.
The transmission spur gear 2233 is coaxially fixed to the outside of the input shaft 2228, and the transmission spur gear 2233 and the receiving spur gear 2232 are engaged with each other and form a speed-increasing gear transmission structure therebetween.
The output shaft 2229 rotates and drives the receiving spur gear 2232 to rotate through the overrunning clutch 2231, the receiving spur gear 2232 rotates and drives the input shaft 2228 to rotate axially around itself through the transmitting spur gear 2233, and since a speed-increasing gear transmission structure is formed between the transmitting spur gear 2233 and the receiving spur gear 2232, the output rotation speed of the input shaft 2228 is greater than that of the output shaft 2229.
The magnetic vibration type driving mechanism 230 is located on one side, away from the bottom cover 121, of the power transmission mechanism 220, the magnetic vibration type driving mechanism 230 comprises a mounting disc 231, magnets 232, a magnetic isolation disc 233 and a large flywheel 235, the mounting disc 231 is of a disc body structure, the mounting disc 231 is coaxially fixed to the end, facing the water cup body 100, of the input shaft 2228, mounting holes penetrating through the axial thickness of the mounting disc 231 are formed in the mounting disc 231, the magnets 232 are fixed in the mounting holes, four groups of the magnets 232 are arranged in an array along the circumferential direction of the mounting disc 231, the four groups of the mounting holes are correspondingly arranged, and the magnetic poles, facing the water cup body 100, of any two adjacent groups of the magnets 232 in.
The large flywheel 235 is coaxially fixed to the outside of the mounting plate 231.
The magnetic isolation disc 233 is made of a magnetic isolation material, the magnetic isolation disc 233 is located on one side, facing the water cup body 100, of the mounting disc 231, the magnetic isolation disc 233 is coaxially and fixedly connected with the mounting disc 231, a magnetic through hole 234 penetrating through the axial thickness of the magnetic isolation disc 233 is formed in the magnetic isolation disc 233, the magnetic through hole 234 and the mounting hole formed in the mounting disc 231 are coaxially arranged, and four groups of the magnetic through holes 234 are correspondingly arranged.
The input shaft 2228 rotates and pulls the magnetic vibration type driving mechanism 230 to rotate synchronously, and meanwhile, in the rotating process, because the mass of the large flywheel 235 is relatively large, the rotating speed of the large flywheel 235 is gradually increased from zero to achieve the purpose of energy storage, namely, after a user stops shaking the handle 110, the kinetic energy accumulated by the large flywheel 235 can still drive the magnetic vibration type driving mechanism 230 to continue to rotate for a period of time.
The coaxial circular slot that is provided with in the chamber bottom of drinking cup body 100, stirring subassembly 210 include the counter weight ball, the counter weight ball is coaxial to be placed in the circular slot, the sphere of counter weight ball is provided with the stirring arch, logical magnetic hole 234, magnet 232 three are located same straight line and the stirring arch corresponds and is provided with four groups, the stirring arch is made for permanent magnetic material and two sets of stirring archs that lie in same diagonal among four groups of stirring archs are opposite towards the magnetic pole of magnet 232.
The stirring assembly 210 is externally provided with an isolation layer made of a material harmless to the human body.
Because of the existence of the magnetic separation disc 233, the magnetic field of the magnet 232 can only act on the stirring protrusions through the magnetic through hole 234, and because any two adjacent groups of magnets 232 in the four groups of magnets 232 are opposite to each other in the magnetic poles facing the water cup body 100, and two groups of stirring protrusions on the same diagonal line in the four groups of stirring protrusions are opposite to each other in the magnetic poles facing the magnet 232, the stirring protrusions can reciprocate up and down along the axial direction of the water cup body 100 to stir the liquid in the water cup body 100 according to the magnetic principle that like poles repel each other and opposite poles attract each other.
More specifically, since the stirring cup stirs the liquid through the stirring device 200 by the shaking of the handle 110 by the user, when the user drinks water with the stirring cup, the user can only hold the cup body 100 to lift the cup, if the user accidentally or other people intend to lift the cup by holding the handle 110, the stirring cup cannot be lifted, the cup is easily shaken and the liquid inside the cup is splashed outwards, the cup is seriously overturned and the liquid inside the cup scalds the user or splashes to nearby important objects to damage the objects, and in order to solve the problem, the mounting shell 120 is further internally provided with the limit switch 300 for limiting the movement of the movable support 2221 and further limiting the manual shaking of the handle 110 by the user.
The outer circumferential surface of the mounting housing 120 is provided with a sliding hole communicated with the inner cavity of the mounting housing, and the sliding hole and the handle 110 are respectively located at one side of the mounting housing 120 along the axial direction thereof.
The limit switch 300 comprises a press slide bar, the guide direction of the press slide bar is parallel to the guide direction of the guide slide bar 2222, one end of the press slide bar is positioned in the installation shell 120 and the other end is fixedly provided with an installation block 301, the other end of the press slide bar passes through a slide hole and is positioned outside the installation shell 120 and the other end is fixedly provided with a press cap 302, and the press slide bar and the slide hole form sliding guide fit.
The outside of the pressing slide bar is also sleeved with a limiting spring 303, one end of the limiting spring 303 abuts against the pressing cap 302, the other end of the limiting spring abuts against the outer circular surface of the installation shell 120, and the elastic force of the limiting spring 303 drives the pressing cap 302 to move away from the installation shell 120.
One side of the movable support 2221 facing the sliding hole is provided with a guiding area with a guiding direction parallel to the guiding direction of the guiding sliding rod 2222, the movable support 2221 is further provided with a limiting hole, the limiting hole is of a semicircular hole structure with an axial direction parallel to the axial direction of the mounting shell 120, the limiting hole is positioned on one side of the guiding area along the guiding direction of the guiding area, and the limiting hole and the guiding area are communicated with each other.
The limit switch 300 further comprises a limit rack 304, a limit straight gear 305 and a limit shaft 306, the axial direction of the limit shaft 306 is parallel to the axial direction of the installation shell 120, the limit shaft 306 is movably installed in the installation shell 120 and can rotate around the axial direction of the limit shaft, the limit shaft 306 can be divided into three parts along the axial direction of the limit shaft and is respectively a first connecting section/second connecting section and a limit section, the first connecting section/second connecting section is of a smooth round shaft structure, the first connecting section is located on one side, facing the bottom cover 121, of the movable support 2221, the second connecting section is located on one side, facing the water cup body 100, of the movable support 2221, the limit section is of a semi-cylindrical structure matched with a limit hole, one end of the limit section is coaxially and fixedly connected with the first connecting section, and the other end of.
The extending direction of the limiting rack 304 is parallel to the guiding direction of the guide sliding bar 2222, the limiting rack 304 is fixedly connected with the mounting block 301, the limiting spur gear 305 is coaxially fixed outside the limiting shaft 306, and the limiting spur gear 305 is meshed with the limiting rack 304.
The motion state of the limit switch 300 can be divided into a limit state in which the limit section of the limit shaft 306 is located in the limit hole, a withdrawn state in which the limit shaft 306 rotates and enables the limit section to rotate to the guide area of the movable support 2221, and an initial state of the limit switch 300 is a limit state.
The motion state switching process of the limit switch 300 is specifically represented as follows: a user manually presses the pressing cap 302 and enables the pressing cap 302 to move close to the mounting shell 120, the pressing cap 302 moves and pulls the pressing sliding rod/mounting block 301/limiting rack 304 to synchronously move, the limiting rack 304 moves and pulls the limiting shaft 306 to axially rotate around the limiting shaft 306 through the limiting spur gear 305, the limiting shaft 306 rotates and finally enables the limiting section to rotate into a guiding area of the movable support 2221, and the limiting switch 300 is switched to a withdrawing state; when the user cancels the pressing of the pressing cap 302, the limit switch 300 moves reversely and is switched to the limit state under the elastic force of the limit spring 303;
when the limit switch 300 is in the limit state, because the limit section of the limit shaft 306 is located in the limit hole, the movable bracket 2221 cannot move close to the handle 110 along the guiding direction of the guiding slide bar 2222, so that the handle 110 cannot rotate around the hinge shaft between itself and the partition housing 2210 in an axial direction deviating from the outer circumferential surface of the cup body 100, i.e., the user can get up the cup body 100 by holding the end of the handle 110; when the limit switch 300 is in the withdrawn state, since the limit section of the limit shaft 306 is located in the guide area of the movable support 2221, the limit switch 300 does not affect the movement of the movable support 2221, that is, the limit switch 300 does not affect the stirring device 200 and the handle 110.
In actual operation, a user holds the cup body 100 with one hand and presses the limit switch 300 to switch to the withdrawn state, and holds the handle 110 with the other hand, and then swings the handle 110, that is, the handle 110 reciprocates axially around the hinge axis between the handle and the partition housing 2210, the handle 110 rotates and drives the movable bracket 2221 to reciprocate along the guide direction of the guide slide bar 2222 by the cooperation between the coupling lever and the guide area of the movable bracket 2221, the movable bracket 2221 reciprocates along the guide direction of the guide slide bar 2222 and drives the driven spur gear 2225 to rotate axially around itself by the driving rack 2224, the driven spur gear 2225 rotates and drives the input spur gear 2226 to rotate synchronously, the input spur gear 2226 rotates and drives the output shaft 2229 to rotate axially around itself by the output spur gear 2227, and since a speed-increasing gear transmission structure is formed between the output spur gear 2227 and the input spur gear 2226, therefore, the rotation speed of the output shaft 2229 is greater than the rotation speed of the driven spur gear 2225, then, the output shaft 2229 rotates and drives the receiving spur gear 2232 to rotate through the overrunning clutch 2231, the receiving spur gear 2232 rotates and drives the input shaft 2228 to rotate around its own axis through the transmitting spur gear 2233, since the transmitting spur gear 2233 and the receiving spur gear 2232 form a speed-increasing gear transmission structure, the output rotation speed of the input shaft 2228 is greater than the rotation speed of the output shaft 2229, then, the input shaft 2228 rotates and pulls the magnetic vibration type driving mechanism 230 to rotate synchronously, during the rotation of the magnetic vibration type driving mechanism 230, since the mass of the large flywheel 235 is greater, the rotation speed of the large flywheel 235 increases gradually from zero and achieves the purpose of energy storage, even after the user stops shaking the handle 110, the kinetic energy of the large flywheel 235 can still drive the magnetic vibration type driving mechanism 230 to rotate for a while according to the magnetic principle that like poles repel and opposite poles attract each other, during the rotation of the magnetic vibration type driving mechanism 230, the stirring protrusion can perform reciprocating fluctuation and shake along the axial direction of the water cup body 100, so as to stir the liquid in the water cup body 100;
after the stirring is finished, the user releases the handle 110 and the limit switch 300, wherein the limit switch 300 is switched to the limit state under the elastic force of the limit spring 303 in the limit switch, and the user can hold the end of the handle 110 to lift the water cup body 100.

Claims (10)

1. A multifunctional stirring water cup is characterized by comprising a water cup body and a stirring device, wherein a mounting shell of a cylindrical shell structure with two open ends coaxially extends from the bottom of the water cup body to the direction deviating from a cup opening of the water cup body, a bottom cover is coaxially fixed at the opening end of the mounting shell deviating from the water cup body, a first avoidance hole communicated with an inner cavity of the mounting shell is formed in the outer circumferential surface of the mounting shell, a handle is arranged on the outer circumferential surface of the water cup body, one end of the handle is in contact with the outer circumferential surface of the water cup body, a contact point is close to the cup opening of the water cup body, the other end of the handle is a connecting end, and the end penetrates through;
agitating unit be used for stirring the processing to this internal liquid of drinking cup, agitating unit is including setting up the stirring subassembly in this internal drinking cup, set up power transmission mechanism and the magnetic vibration formula actuating mechanism in the installation shell, the stirring subassembly is used for stirring the processing to this internal liquid of drinking cup, power transmission mechanism and the link swing joint of handle and power transmission mechanism are used for receiving the handle and rock the power that produces and supply its rotation with this power transmission for magnetic vibration formula actuating mechanism, magnetic vibration formula actuating mechanism is used for utilizing like polarity to repel each other the magnetic principle that opposite sex was inhaled order about the stirring subassembly and rock and stir this internal liquid of drinking cup along drinking cup body axial undulation from top to bottom.
2. The multifunctional stirring water cup as claimed in claim 1, wherein the power transmission mechanism comprises a separation housing, a power conversion member and a power transmission member, the power conversion member is used for receiving the power generated by shaking the handle and converting the power into the power for driving the magnetic vibration type driving mechanism to rotate, and the power transmission member is used for receiving the power output by the power conversion member and transmitting the power to the magnetic vibration type driving mechanism;
the separating cover shell is of a circular shell structure with an opening at one end and a closed end, the opening end of the separating cover shell is coaxially fixed on the bottom cover, an avoidance hole II communicated with the inner cavity of the separating cover shell is formed in the outer circular surface of the separating cover shell, and the connecting end of the handle sequentially penetrates through the avoidance hole I/II and is positioned in the separating cover shell;
the power conversion component and the power transmission component are both arranged in the separation housing.
3. The multifunctional stirring water cup as claimed in claim 2, wherein the power conversion member comprises a movable support, two guide slide bars and a return spring, the cavity wall of the separation housing is provided with a guide groove close to the avoidance hole II, the guide direction of the guide slide bars is parallel to the ground and the vertical plane of the handle, one end of the guide slide bars is positioned in the guide groove, the other end of the guide slide bars is a fixed end and the end is positioned in the separation housing, the guide slide bars and the guide grooves form a sliding guide fit, and the two guide slide bars are provided and the two guide grooves are correspondingly provided;
the movable support is fixedly connected with the fixed end of the guide sliding rod, a guide area with the guide direction parallel to the axial direction of the water cup body is arranged on the movable support, the guide area is close to the avoidance hole II, the reset spring is sleeved outside the part, between the guide groove and the movable support, of the guide sliding rod, the movable support is driven by the elasticity of the reset spring to move away from the guide groove along the guide direction of the guide sliding rod, and two groups of reset springs are correspondingly arranged;
the handle with separate articulated between the housing be connected and the handle with separate the articulated shaft axial perpendicular to handle place vertical face that articulated junction constitutes between the housing, the link of handle is provided with the interlock arch, the interlock arch is provided with two sets ofly and the vertical face of handle place is perpendicular to apart from the direction between two sets of interlock arch, set up in the trace between two sets of interlock arch, fixed connection between the one end of trace and a set of interlock arch, the other end pass set up in the guide area on the movable support and with another group fixed connection between the interlock arch, constitute the sliding guide cooperation between the guide area of trace and movable support.
4. The multifunctional stirring cup as claimed in claim 3, wherein the power conversion member further comprises an input shaft and an output shaft, the axial directions of the input shaft and the output shaft are both parallel to the axial direction of the cup body and are both movably mounted in the separation housing and can rotate around the axial direction of the input shaft, and the end part of the input shaft facing the cup body penetrates through the separation housing and is located in the area between the separation housing and the cup bottom of the cup body;
the power conversion component also comprises a driving rack and a driven spur gear, the extension direction of the driving rack is parallel to the guide direction of the guide slide rod, the driving rack is fixedly arranged on the movable bracket, the driven spur gear is coaxially and movably arranged outside the input shaft, the driven spur gear and the input shaft respectively rotate without interference, and the driven spur gear and the driving rack are meshed with each other;
the power conversion component also comprises an input straight gear and an output straight gear, the input straight gear is coaxially and movably arranged outside the input shaft, the input straight gear and the input shaft do not interfere with each other when rotating respectively, the input straight gear is also fixedly connected with the driven straight gear, the output straight gear is coaxially fixed outside the output shaft, the output straight gear and the input straight gear are mutually meshed, and a speed-up gear transmission structure is formed between the output straight gear and the input straight gear.
5. The multifunctional stirring water cup as claimed in claim 4, wherein the power transmission member comprises an overrunning clutch, a receiving spur gear and a transmitting spur gear, an inner ring body of the overrunning clutch is coaxially and fixedly connected with the output shaft, the receiving spur gear is coaxially and fixedly connected with an outer ring body of the overrunning clutch, and the torque force of the output shaft can be transmitted in one direction from the output shaft to the receiving spur gear through the overrunning clutch;
the transmission straight gear is coaxially fixed outside the input shaft, the transmission straight gear and the receiving straight gear are meshed with each other, and a speed-up gear transmission structure is formed between the transmission straight gear and the receiving straight gear.
6. The multifunctional stirring cup as claimed in claim 5, wherein the overrunning clutch is a ball type overrunning clutch.
7. The multifunctional stirring water cup as claimed in claim 5, wherein the magnetic vibration type driving mechanism is located on a side of the power transmission mechanism facing away from the bottom cover, the magnetic vibration type driving mechanism comprises a mounting plate, magnets, a magnetic isolation plate and a large flywheel, the mounting plate is of a disc body structure, the mounting plate is coaxially fixed on the end portion, facing the water cup body, of the input shaft, mounting holes penetrating through the axial thickness of the mounting plate are formed in the mounting plate, the magnets are fixed in the mounting holes, four groups of magnets are arranged in the circumferential direction of the mounting plate in an array mode, four groups of mounting holes are correspondingly arranged, and the magnetic poles of any two adjacent groups of magnets in the four groups of magnets facing the water cup body are opposite;
the large flywheel is coaxially fixed outside the mounting disc;
the magnetic isolation disc is made of magnetic isolation materials, is located on one side, facing the water cup body, of the mounting disc, is coaxially and fixedly connected with the mounting disc, is provided with a magnetic through hole penetrating through the axial thickness of the magnetic isolation disc, and is coaxially arranged with the mounting hole arranged on the mounting disc, and four groups of magnetic through holes are correspondingly arranged.
8. The multifunctional stirring cup as claimed in claim 7, wherein the cavity bottom of the cup body is coaxially provided with a circular groove, the stirring assembly comprises a counterweight ball, the counterweight ball is coaxially placed in the circular groove, the spherical surface of the counterweight ball is provided with stirring protrusions, the magnetic through holes and the magnets are positioned on the same straight line, four groups of the stirring protrusions are correspondingly arranged, the stirring protrusions are made of permanent magnetic materials, and two groups of the stirring protrusions positioned on the same diagonal line among the four groups of the stirring protrusions are opposite to each other towards the magnetic poles of the magnets;
the stirring component is externally provided with an isolation layer made of materials harmless to human bodies.
9. The multifunctional stirring cup as claimed in claim 3, wherein a limit switch for limiting the movement of the movable bracket and further limiting the manual shaking of the handle by a user is further provided in the mounting housing;
the outer circle surface of the mounting shell is provided with a sliding hole communicated with the inner cavity of the mounting shell, and the sliding hole and the handle are respectively positioned on one side of the mounting shell along the self axial direction;
the limit switch comprises a pressing slide rod, the guiding direction of the pressing slide rod is parallel to the guiding direction of the guiding slide rod, one end of the pressing slide rod is positioned in the mounting shell, a mounting block is fixedly arranged at the end of the pressing slide rod, the other end of the pressing slide rod penetrates through the slide hole and is positioned outside the mounting shell, a pressing cap is fixedly arranged at the end of the pressing slide rod, and the pressing slide rod and the slide hole form sliding guide fit;
the outside of pressing the slide bar still the cover be equipped with spacing spring, spacing spring's one end with press the cap conflict, the other end is contradicted with the outer disc of installation shell, spacing spring's elasticity orders about and does the motion of keeping away from the installation shell according to the cap.
10. The multifunctional stirring cup as claimed in claim 9, wherein a guide area with a guide direction parallel to the guide direction of the guide slide bar is provided on one side of the movable bracket facing the slide hole, a limit hole is further provided on the movable bracket, the limit hole is a semicircular hole structure with an axial direction parallel to the axial direction of the mounting housing, the limit hole is located on one side of the guide area along the guide direction thereof, and the limit hole and the guide area are communicated with each other;
the limit switch also comprises a limit rack, a limit straight gear and a limit shaft, wherein the axial direction of the limit shaft is parallel to the axial direction of the installation shell, the limit shaft is movably installed in the installation shell and can rotate around the axial direction of the limit shaft, the limit shaft can be divided into three parts along the axial direction of the limit shaft and is respectively a first connecting section, a second connecting section and a limit section, the first connecting section and the second connecting section are of a smooth round shaft structure, the first connecting section is positioned on one side, facing the bottom cover, of the movable support, the second connecting section is positioned on one side, facing the water cup body, of the movable support, the limit section is of a semi-cylindrical structure matched with the limit hole, one end of the limit section is coaxially and fixedly connected with the first connecting section, and the;
the extending direction of the limiting rack is parallel to the guiding direction of the guide sliding rod, the limiting rack is fixedly connected with the mounting block, the limiting straight gear is coaxially fixed outside the limiting shaft, and the limiting straight gear is meshed with the limiting rack;
the motion state of the limit switch can be divided into a limit state that the limit section of the limit shaft is positioned in the limit hole, a cancel state that the limit shaft rotates and enables the limit section to rotate to the guide area of the movable support, and the initial state of the limit switch is a limit state.
CN202010001853.2A 2020-01-02 2020-01-02 Multifunctional stirring water cup Withdrawn CN111053462A (en)

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Application Number Priority Date Filing Date Title
CN202010001853.2A CN111053462A (en) 2020-01-02 2020-01-02 Multifunctional stirring water cup

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Application Number Priority Date Filing Date Title
CN202010001853.2A CN111053462A (en) 2020-01-02 2020-01-02 Multifunctional stirring water cup

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Publication number Priority date Publication date Assignee Title
CN113936351A (en) * 2021-09-07 2022-01-14 资阳市人民医院 Storable camera recorder with prompting lamp for nurse patrol ward

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CA2376628C (en) * 2002-03-19 2004-06-22 Leonard L. Simba Drinking vessel stirrer
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CN108030357A (en) * 2018-01-24 2018-05-15 黄德懿 A kind of magnetic agitation cup of ergonomics
CN207604880U (en) * 2017-07-19 2018-07-13 合肥颂智商贸有限公司 A kind of fruit plays juice interlayer cup

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Publication number Priority date Publication date Assignee Title
US6471390B1 (en) * 2000-08-02 2002-10-29 Robert Cuthbertson Apparatus for pneumatically stirring a beverage
CA2376628C (en) * 2002-03-19 2004-06-22 Leonard L. Simba Drinking vessel stirrer
CN203468321U (en) * 2013-05-29 2014-03-12 杨珝筬 Structure of stirring container capable of controlling speed
CN103876653A (en) * 2014-03-28 2014-06-25 孙正标 Mechanical transmission stirring cup
CN203899140U (en) * 2014-06-26 2014-10-29 济南爱动动漫科技有限公司 Powerplant for inertial toy car
CN203987335U (en) * 2014-09-04 2014-12-10 黄远治 A kind of push type jar easy to use
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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113936351A (en) * 2021-09-07 2022-01-14 资阳市人民医院 Storable camera recorder with prompting lamp for nurse patrol ward
CN113936351B (en) * 2021-09-07 2023-06-16 资阳市人民医院 Storable camera recorder with prompt lamp for nurse tour ward

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