WO2006056137A1 - Dispositif de regulation de la temperature d'une boisson - Google Patents

Dispositif de regulation de la temperature d'une boisson Download PDF

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Publication number
WO2006056137A1
WO2006056137A1 PCT/CN2005/002014 CN2005002014W WO2006056137A1 WO 2006056137 A1 WO2006056137 A1 WO 2006056137A1 CN 2005002014 W CN2005002014 W CN 2005002014W WO 2006056137 A1 WO2006056137 A1 WO 2006056137A1
Authority
WO
WIPO (PCT)
Prior art keywords
strut
sleeve
temperature regulating
wine
regulating device
Prior art date
Application number
PCT/CN2005/002014
Other languages
English (en)
French (fr)
Inventor
Min Zhuang
Original Assignee
Min Zhuang
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 Min Zhuang filed Critical Min Zhuang
Priority to EP05813844A priority Critical patent/EP1817992A4/en
Priority to US11/791,779 priority patent/US7663331B2/en
Publication of WO2006056137A1 publication Critical patent/WO2006056137A1/zh

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D3/00Devices using other cold materials; Devices using cold-storage bodies
    • F25D3/02Devices using other cold materials; Devices using cold-storage bodies using ice, e.g. ice-boxes
    • F25D3/06Movable containers
    • 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
    • A47J36/00Parts, details or accessories of cooking-vessels
    • A47J36/24Warming devices
    • A47J36/2411Baby bottle warmers; Devices for warming baby food in jars
    • A47J36/2433Baby bottle warmers; Devices for warming baby food in jars with electrical heating means
    • A47J36/2438Baby bottle warmers; Devices for warming baby food in jars with electrical heating means for warming a water-bath or -jacket
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D2303/00Details of devices using other cold materials; Details of devices using cold-storage bodies
    • F25D2303/08Devices using cold storage material, i.e. ice or other freezable liquid
    • F25D2303/082Devices using cold storage material, i.e. ice or other freezable liquid disposed in a cold storage element not forming part of a container for products to be cooled, e.g. ice pack or gel accumulator
    • F25D2303/0822Details of the element
    • F25D2303/08222Shape of the element
    • F25D2303/08223Shape of the element having the shape of an ice cube
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D2331/00Details or arrangements of other cooling or freezing apparatus not provided for in other groups of this subclass
    • F25D2331/80Type of cooled receptacles
    • F25D2331/803Bottles
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D2331/00Details or arrangements of other cooling or freezing apparatus not provided for in other groups of this subclass
    • F25D2331/80Type of cooled receptacles
    • F25D2331/809Holders
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D2600/00Control issues
    • F25D2600/04Controlling heat transfer
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D31/00Other cooling or freezing apparatus
    • F25D31/006Other cooling or freezing apparatus specially adapted for cooling receptacles, e.g. tanks
    • F25D31/007Bottles or cans

Definitions

  • the invention relates to a wine temperature regulating device, in particular to an apparatus for cooling or warming a wine by using a liquid as a heat exchange medium, the wine temperature regulating device can make the liquid flow, and the liquid temperature is quickly and uniformly hooked.
  • Cooling or warming the wine more specifically, it relates to a wine temperature regulating device, which is driven by a motor to drive the bottled wine, and uses the bottle to move up and down, so that the liquid medium circulates around the bottle to quickly achieve the same temperature as the liquid. , thereby speeding up the effect of regulating the temperature of the wine, has a dynamic effect, and can stimulate the desire to drink. Background technique
  • Drinking is a habit, especially at festivals, where the atmosphere adds to the atmosphere. At the same time, people are also paying attention to drinking. For example, wines usually require drinking at a lower temperature, so the taste is better. Therefore, people often put the wine under ice and cool when drinking. For white wine, people like to be warm in winter. Drinking, you need to put the white wine in warm water.
  • Ice wine utensils such as ice buckets, put ice cubes and water in ice buckets, put wine and beer into ice water; and, like ice cups, have inner and outer cup walls, between inner and outer cup walls Fill the water, freeze the water to make it ice, and use the ice cup to hold the wine.
  • Warm wine utensils such as warm wine bottles (patent number: 02244887.X), put warm water in the outer bottle, put the inner bottle into the wine, put the inner bottle into the outer bottle; another example is the warm wine device (patent number: 98203364.8 ), the bottom of the appliance is provided with an electric heating element, and the temperature control element limits the temperature within a certain range, and the like. ⁇
  • the bottles are relatively fixed, seemingly dull, not dynamic, lacking in stimulating; at the same time, the equipment ice wine or warm wine, with water or water and ice as a heat carrier, through the wine bottle for heat exchange, although Liquid as a medium, the liquid is in a relatively static state, the efficiency of ice wine or warm wine is relatively low, especially water and ice together as a medium.
  • the object of the present invention is to provide a wine temperature regulator device which can reciprocate a bottled wine in a straight line in a liquid during cooling or warming of the wine, and has a dynamic feeling to stimulate people to drink. Desire, and can speed up the process of cooling or warming.
  • the object of the present invention is to provide a wine temperature regulator device which utilizes a liquid level change caused by a bottle moving up and down to create a liquid drop around the bottle so that the liquid flow can produce a waterfall effect, thereby increasing The fun of drinking, at the same time, forced liquid circulation, faster and consistent liquid temperature to further accelerate the cooling or heating process.
  • the object of the present invention is to provide a wine temperature regulator device which can be adapted to bottled wines of different specifications, and solves the difference in the surrounding gap due to the difference in the size of the bottle.
  • the gap is large, the liquid in the middle thereof is easy to form a reflow. It is inconvenient to form an overflow and generate a waterfall phenomenon.
  • a wine temperature regulating device comprising: a base; a container mounted on the base; a strut seat cover, the strut seat cover being fixed to the base, and Extending into the container from the bottom of the container and being fixed to the container; the strut device is located in the strut seat sleeve and forms a liquid-tight sleeve with the strut seat sleeve, and one end extends out of the strut seat a sleeve, the other end forming a driving end; and a driving device, the driving device cooperates with a driving end of the strut device to drive the strut device to move.
  • the bottled wine When in use, the bottled wine is placed in a container, and the bottom of the bottle is placed on the strut device, and ice water or warm water is injected into the container.
  • the conversion mechanism When the geared motor works, the conversion mechanism is driven to convert the rotary motion into a linear motion.
  • the rod device moves back and forth up and down, and drives the bottle to move up and down in cold water or warm water.
  • the wine temperature regulating device further includes an inner sleeve fixed in the container, and the strut sleeve protrudes from the bottom of the inner sleeve, and the inner sleeve is provided with a liquid inlet hole through which the liquid can enter the inside.
  • the surrounding area can be dedicated to the ice, and the water can flow freely in the central area and the surrounding area. Since the bottle shakes in the water in the central area, the water flows and exchanges heat with the ice water in the surrounding area, so that Quickly achieve the purpose of ice wine.
  • the inlet holes are distributed at the bottom of the inner sleeve, and a check valve is provided.
  • a check valve is provided.
  • the bottle moves downwards, it exerts a large pressure on the liquid to close the check valve.
  • the downward movement of the bottle will cause the liquid in the inner sleeve to overflow upward along the gap between the bottle and the inner sleeve.
  • the liquid in the peripheral area flows from the check valve into the central area. Prepared for the next overflow.
  • the lifting end of the strut device supports the tray, and the tray divides the inner sleeve Cutting into two regions, a fluid passage is formed between the two regions, the flow passage area of the fluid passage is not greater than the flow passage area of the inlet hole of the inner sleeve bottom, wherein the fluid passage is the tray and the
  • the gap defined between the inner sleeves may also be a through hole formed with a check valve formed on the tray.
  • the setting of the tray can solve the difference between the bottle and the inner sleeve due to the difference in the size of the bottle. When the gap is large, the liquid in the middle is easy to form a backflow, which is a problem of overflowing and generating a waterfall.
  • the wine temperature regulator device further includes a sealing sleeve, the sealing sleeve is connected and fixed to the strut seat sleeve at one end, and the other end is fixed to the lifting end of the strut device.
  • the driving device includes: a driving motor; and a switching mechanism that converts a rotational motion of the driving motor into a reciprocating linear movement of the strut device.
  • the conversion mechanism includes: a turntable that rotates under driving of the motor output shaft; a pin shaft, one end of the pin shaft being eccentrically disposed on the turntable; a guide rail connected to a driving end of the strut device, and the other end of the pin shaft is horizontally slidably loaded into the guide rail.
  • the conversion mechanism includes: a turntable that rotates under the driving of the motor output shaft; a pin shaft, one end of the pin shaft is connected to the driving end of the strut device And an annular guide rail formed on the turntable, the other end of the pin being slidably received in the annular guide rail.
  • the strut device includes a strut; a strut mount having one end of the strut as the drive end and the other end pivotally coupled to the strut mount; A strut sleeve slidably fits within the strut seat sleeve, and one end of the strut sleeve is fixed to the strut mount.
  • the conversion mechanism includes: a crank that rotates under driving of the motor output shaft; and a pin shaft, one end of the pin shaft is fixed to the cranking end of the crank, and the other end is pivotally Connect the drive end.
  • the strut device includes a strut; a strut mount having one end of the strut as the drive end and the other end pivotally coupled to the strut mount; A strut sleeve slidably fits within the strut seat sleeve, and one end of the strut sleeve is fixed to the strut mount.
  • the conversion mechanism includes: a turntable that rotates under driving of the motor output shaft; and a pin shaft, one end of the pin shaft is eccentrically disposed on the turntable, and the other end is pivotally connected The drive end.
  • the inner sleeve is formed with a plurality of overflow holes at an upper portion of the side surface. In this way, As the bottle moves downward, the liquid in the inner sleeve rises upwards, and then ejects from the overflow holes to form a fountain phenomenon.
  • a temperature adjusting device is provided in the helmet, and the temperature adjusting device may include a semiconductor cooling sheet or a semiconductor cooling heat generating sheet.
  • the liquid medium can be heated or cooled to achieve the purpose of automatically cooling or warming the wine, and it is no longer required to add hot water or cold water and ice in order to cool or warm the wine.
  • the ice warming device created by the invention makes the wine bottle reciprocate in a straight line in the process of ice wine or warm wine, which brings a dynamic feeling to the people and has the function of stimulating people's desire to drink, thereby showing its novel characteristics.
  • the ice warm wine device of the invention also utilizes the reciprocating linear motion of the wine bottle to make the liquid mix, and the temperature is even and uniform, which is convenient for quickly reaching the purpose of ice wine or warm wine, and exhibits its innovation.
  • the innovative ice warmer also utilizes the buoyancy of the liquid on the bottle to offset the downward gravity of the bottle, which helps to reduce the energy consumption of the appliance in order to achieve the power required for upward linear motion.
  • the ice wine warmer also uses the up and down movement of the wine bottle to cause a change in the liquid level, creating a liquid drop around the bottle, so that the liquid flow can produce a waterfall effect, thereby increasing the interest of drinking, and at the same time, forcing the liquid to circulate, faster
  • the liquid temperature is uniform and consistent to further accelerate the cooling or warming of the wine.
  • Figure 1 is a structural view of a first embodiment of the present invention
  • FIG. 2 is a schematic view of the conversion mechanism of the embodiment shown in Figure 1;
  • Figure 3 is a structural view of a second embodiment of the present invention.
  • Figure 4 is a schematic illustration of the shifting mechanism of the embodiment shown in Figure 3.
  • Figure 5 is a structural view of a third embodiment of the present invention.
  • Figure 6 is a schematic cross-sectional view of the shifting mechanism of the embodiment shown in Figure 5 taken along line A.
  • Figure 7 is a structural view of a fourth embodiment of the present invention.
  • Figure 8 is a schematic cross-sectional view of the shifting mechanism of the embodiment shown in Figure 7 taken along line B. detailed description
  • a wine temperature regulating device comprises: a base 1; a container 2 mounted on the base 1; a stay cover 4, The rod sleeve 4 is fixed on the base 1 and protrudes from the bottom of the container 2 into the container 2 and is fixed to the container 2; a strut device, the strut device is located in the strut sleeve 4 and forms a liquid with the strut sleeve 4 a sleeve that does not leak, one end of which extends from the strut sleeve 4 to form a lifting end, the other end extends into the base 1 to form a driving end; and a driving device, the driving device is disposed in the base 1 and is
  • the wine bottle 11 is placed in the container 2, and the bottom of the bottle is placed on the lifting end of the strut device.
  • the strut device can be a single strut 5
  • the support end of the strut device is formed integrally with the strut 5, which can simplify the overall structure.
  • the geared motor works, drive the switching mechanism to convert the rotary motion into a linear motion, so that the strut moves back and forth up and down, and drives the bottle to move up and down in cold or warm water. In this way, the dynamic effect can be achieved, stimulating people's desire to drink wine, and at the same time facilitating water flow and accelerating heat exchange.
  • the wine temperature regulating device further comprises an inner sleeve 3 fixed in the container 2, and the strut sleeve 4 protrudes from the bottom of the inner sleeve 3, and divides the container into a central area and a peripheral area,
  • the sleeve 3 is provided with a liquid inlet opening 9 through which liquid can enter.
  • the inlet hole 9 and the inner sleeve 3 can restrict the entry of the ice into the inner sleeve 3, preventing the struts 5 and the wine bottle 11 from being blocked during the movement, so that the ice water is mixed. Ice wine can be realized.
  • the inlet hole 9 is preferably distributed at the bottom of the inner sleeve 3 and is provided with a one-way valve which is arranged to ensure that the bottle moves downwardly to close the valve, and the liquid in the central portion does not flow from the bottom to the peripheral region, so that the liquid has A sufficient amount overflows from the upper part to enhance the effect of the waterfall.
  • the bottle moves up the valve to open, allowing the liquid in the surrounding area to flow to the central area to prepare for the next overflow.
  • a tray 6 may be disposed at the lifting end of the strut 5, and the tray 6 divides the inner sleeve into two regions, and a fluid passage is formed between the two regions, and the fluid passage overflow area is not larger than the bottom of the inner sleeve 3 The flow area of the hole.
  • the fluid passage may define a gap between the tray 6 and the inner sleeve 3, the overflow area of the gap being no greater than the flow area of the inlet hole at the bottom of the inner sleeve.
  • the fluid passage may also be a through hole formed on the tray 6 with the one-way valve 61 installed, thereby eliminating the gap between the tray 6 and the inner sleeve 3, so that the liquid flow can be from the tray.
  • the fluid passage may also be a gap between the tray 6 and the inner sleeve 3 and formed on the tray 6.
  • the setting of the tray 6 can solve the difference between the bottle and the inner sleeve due to the difference in the size of the bottle.
  • the liquid in the middle is easy to form a backflow due to its own weight, so that it is inconvenient to form a problem of overflowing and generating a waterfall.
  • the tray 6 can be moved upward, and the space below the space can quickly fill the liquid in the surrounding area, which is beneficial to the top of the tray. The remaining liquid moves up the tray and spills over to the surrounding area, causing the waterfall to continue.
  • the strut sleeve 4 is fixed to the base 1 and has one end extended.
  • the extended end of the strut sleeve 4 passes through the bottom of the container 2 and the inner sleeve 3 into the inner sleeve 3, and forms a closed with the container 2 and the inner sleeve 3.
  • the leak does not leak.
  • a seal ring pressed by the joint may be provided between the container 2 and the lifted end of the stay 5 to improve the seal between the two.
  • a plurality of through holes 31 are formed in the upper portion of the side of the inner sleeve 3, and these through holes 31 are preferably disposed on the same horizontal plane, so that when the liquid rises, liquid can be ejected from the through holes 31 to form a fountain.
  • a temperature adjustment device (not shown) may be disposed in the container.
  • the temperature adjustment device may include an electric heating tube 10 and a temperature adjustment circuit 15 to control the heating of the electric heating tube 10, and the liquid in the container 2 may be heated to meet the temperature.
  • the need for wine The temperature adjusting device further includes a semiconductor cooling plate, and more preferably, the temperature adjusting device may include a semiconductor cooling heat generating sheet to cause the temperature adjusting circuit 15 to heat and cool the liquid in the container 2 as needed.
  • the shifting mechanism 8 includes a turntable 81 that is rotated by the output shaft 84 of the motor 7; the pin 82 One end of the pin 82 is eccentrically disposed (ie, not disposed on the center of the turntable) on the turntable 81; and the guide rail 83 is fixed to the driving end of the stay 5, and the other end of the pin 82 is horizontally slidably mounted Into the guide rail 83.
  • the rotational motion of the turntable 81 can be converted into a linear motion of the guide rail, thereby realizing the reciprocating linear motion of the strut 5.
  • the height of the conversion mechanism can be made small, which contributes to overall miniaturization.
  • the conversion mechanism includes a turntable 81 which is rotated by the output shaft 84 of the motor 7; the pin 82a, the pin One end of the shaft 82a is fixed to the driving end of the stay 5; and an annular guide 83a is formed on the turntable 81, the center of which is not coincident with the center of the turntable 81, and the other end of the pin 82a is slidably fitted into the annular guide 83a, thereby constituting a linear motion for converting the rotational motion of the turntable 81 into the pin shaft 82a, thereby realizing the reciprocating linear motion of the stay 5.
  • a wine temperature regulating device comprising: a casing 18 having a cylindrical structure; a base 1; a container 2 mounted on the base 1 and disposed inside the casing 15 ; Set 4, the pole seat cover 4 is fixed to the base 1 And extending from the bottom of the container 2 into the container 2 and fixed to the container 2; the strut device, the strut device is located in the strut sleeve 4 and forms a liquid-tight sleeve with the strut sleeve 4, one end of which Extending the strut sleeve 4 to form a lifting end, the other end forming a driving end; and driving means, the driving device is disposed in the base 1 and cooperates with the driving end of the strut device to drive the supporting end of the strut device Move back and forth in a straight line.
  • the driving device comprises: a driving motor 7; and
  • the wine temperature regulating device further comprises an inner sleeve 3 fixed in the container 2, and the strut sleeve 4 protrudes from the bottom of the inner sleeve 3, and divides the container into a central area and a peripheral area,
  • the sleeve 3 is provided with a liquid inlet opening 9 through which liquid can enter.
  • the inlet hole 9 and the inner sleeve 3 can function to restrict the entry of the ice into the inner sleeve 3, preventing the stay 5 and the wine bottle 11 from being blocked during the movement.
  • the upper edge 32 of the inner sleeve 3 is raised, and the upper edge 32 forms an inner overflow level, which creates a drop in the overflowing liquid and produces a waterfall effect.
  • a plurality of through holes 31 may be formed in the upper portion of the side surface of the inner cover 3, and the through holes 31 are preferably disposed on the same horizontal surface, so that liquid can be ejected from the through holes 31 when the liquid rises. , forming a fountain.
  • the inlet hole 9 is preferably distributed at the bottom of the inner sleeve 3 and is provided with a one-way valve which is arranged to ensure that the bottle moves downwardly to close the valve, and the liquid in the central portion does not flow from the bottom to the peripheral region, so that the liquid has A sufficient amount overflows from the upper part to enhance the effect of the waterfall.
  • the bottle moves up the valve to open, allowing the liquid in the surrounding area to flow to the central area to prepare for the next overflow.
  • the strut device comprises a strut 5; a strut mount 14 having one end of the strut 5 being a drive end and the other end being pivotally connected to the strut mount And a strut sleeve 15, the strut sleeve 15 is slidably fitted in the strut sleeve 4, and the strut mount 14 is fixed to the inner top of the closed end of the strut sleeve 15.
  • the strut 5 can engage a cylindrical member at one end thereof, and a semi-arc shaped recess is formed in the middle of the strut mount 14 with a through hole in the center of the recess.
  • a tray 6 can be disposed on the strut mount 14 via the tray connector 16, and the tray 6 divides the inner sleeve into two regions, and a fluid passage is formed between the two regions, and the fluid passage overflow area is not more than The overflow area of the bottom 3 inlet hole.
  • the fluid passage may define a gap between the tray 6 and the inner sleeve 3, the overflow area of the gap being no greater than the flow area of the inlet hole at the bottom of the inner sleeve.
  • the fluid passage may also be a through hole formed in the tray 6 on which the one-way valve 61 is mounted, thereby eliminating the gap between the tray 6 and the inner sleeve 3, so that the liquid flow can enter the tray from below the tray 6.
  • the liquid above the tray 6 cannot be returned to the bottom of the tray, and the liquid circulation is also achieved.
  • the fluid passage may also be a gap between the tray 6 and the inner sleeve 3 and A combination of one-way valves formed on the tray 6.
  • the strut sleeve 4 is fixed to the base 1 and has one end extended.
  • the extended end of the strut sleeve 4 passes through the bottom of the container 2 and the inner sleeve 3 into the inner sleeve 3, and forms a closed with the container 2 and the inner sleeve 3.
  • the leak does not leak.
  • a seal ring 13 which is pressed by the joint member 17 is provided between the container 2 and the lifted end of the stay 5 to improve the sealing property.
  • a sealing sleeve 12 is disposed between the strut sleeve 4 and the strut mount 14.
  • the sleeve 15 is such that the strut sleeve 4 and the strut sleeve 15 form a non-leaking sleeve so that the strut 5 can move in the strut mount 4.
  • the gland can be directly connected between the strut sleeve 4 and the stud end of the strut 5.
  • a temperature adjustment device 19 may be disposed in the base 2, and the temperature adjustment device may include an electric heating tube 10 to control the heating of the electric heating tube 10 to heat the liquid in the container 2 to meet the needs of warm wine.
  • the temperature adjusting device further includes a semiconductor cooling plate, and more preferably, the temperature adjusting device may include a semiconductor cooling heat generating sheet to cause the temperature adjusting circuit 15 to heat and cool the liquid in the container 2 as needed.
  • the shifting mechanism 8 includes: a crank 83 that rotates under the drive of the output shaft 84 of the motor 7; and a pin shaft 82b that is fixed at one end of the crank 83 to the other end of the crank 83, and the other end The drive end of the strut 5 is pivotally connected.
  • the crank 83 of the third embodiment is replaced with a turntable 81, and one end of the pin 82c is eccentrically disposed on the turntable 81, the other end is pivotally connected to the driving end of the strut 5, and the structure and connection manner of the strut sleeve 15 are unchanged, and the description thereof is omitted here.

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  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Devices For Dispensing Beverages (AREA)
  • Table Equipment (AREA)

Description

酒温调节器具
技术领域
本发明涉及一种酒温调节器具, 具体地说, 涉及一种利用液体作为热量交换介 质对进行酒降温或加温的器具, 该酒温调节器具可使液体流动, 利用液体温度迅速均 勾的对酒进行降温或加温, 更具体地说, 涉及一种酒温调节器具, 其由电机驱动瓶装 酒,利用酒瓶上下运动,使液体介质在酒瓶周围循环运动,快速实现与液体温度一致, 从而加快调节酒的温度的效果, 具有动感效果、 而且可剌激饮用欲望。 背景技术
饮酒是人们的习惯, 尤其是在节日, 酒会增添气氛。 同时, 人们对于饮酒, 也有 讲究。 如葡萄酒, 通常要求在酒温较低的情形下饮用, 这样的味道会更好, 因此, 人 们在饮用时常将葡萄酒放在冰水下冷却; 对于白酒, 冬天时人们则喜欢在温热的情形 下饮用, 需要将白酒放在温水中温热。
现有的这类器具, 有相应的冰酒器具和温酒器具。 冰酒器具, 如冰桶, 在冰桶中 放入冰块和水, 将葡萄酒、 啤酒放入冰水中; 又如冰杯, 具有内、 外层的杯壁, 内、 外层杯壁之间可装入水, 经冷冻使水结冰, 用冰杯盛酒即可冰酒。 温酒器具, 如温酒 瓶(专利号为: 02244887.X), 在外瓶中装入温水, 内瓶装入酒, 将内瓶放入外瓶中; 又如温酒器(专利号为: 98203364.8), 器具的底部设置电热元件, 并由控温元件将温 度限定在某一范围之内, 等等。 ·
这类器具, 酒瓶均处于相对固定, 显得呆板, 没有动感, 缺乏激发性; 同时, 器 具冰酒或温酒, 均以水或水与冰作为热量载体, 通过酒瓶进行热交换, 虽有以液体作 为介质, 液体却处于相对静止的状态, 冰酒或温酒的效率也相对较低, 尤以水和冰共 同作为介质为甚。 发明内容
因此, 首先, 本发明的目的是提供一种的酒温调节器器具, 在对酒进行降温或加 温的过程中能使瓶装酒能在液体中以直线方式往复运动, 具有动感能激发人们饮用欲 望的、 并且可加快降温或加温过程。 其次, 本发明的目的还在于提供一种可供冰水混和物冰酒的酒温调节器器具。 再者, 本发明的目的还要提供一种酒温调节器器具, 其利用酒瓶上下运动时造成 的液位变化, 在酒瓶周围造就液体落差, 以便液流能产生瀑布的效果, 从而增加饮酒 的趣味性, 同时, 强迫液体循环流动, 更快达到液体温度均匀、 一致, 以进一步加快 降温或加温过程。
另外, 本发明的目的还在于提供一种酒温调节器器具, 其可适合不同规格的瓶装 酒, 解决由于瓶子大小不同, 造成周围间隙不同, 当间隙较大时, 其中间的液体容易 形成回流不便形成溢出产生瀑布现象。
• 本发明的目的是由下列方案实现的:提供一种酒温调节器具, 包括: 底座; 装配 在所述底座上的容器; 撑杆座套, 所述撑杆座套固定于底座上, 并从容器底部伸入容 器内, 且与容器固定; 撑杆装置, 所述撑杆装置位于撑杆座套内并与撑杆座套座形成 液体不泄漏的套接, 其一端伸出撑杆座套, 另一端形成驱动端; 以及驱动装置, 所述 驱动装置与所述撑杆装置的驱动端配合, 以驱动所述撑杆装置移动。
使用时,将瓶装酒放入容器内, 酒瓶底部置于撑杆装置上,在容器中注入冰水或 温水, 当减速电机工作时, 驱动转换机构, 将旋转运动转换为直线运动, 使撑杆装置 往复上下运动, 并带动酒瓶在冷水或温水中上下运动。 实现一种具有动感的、 能激发 人们饮用欲望的作用, 同时有利于水流动, 加快热交换。
上述酒温调节器具还包括固定于容器内的内套, 且撑杆座套从内套底部伸出, 内 套上设有可供液体进入其内部的进液孔。 这样, 周边区域可专供放入冰块, 水则可在 中心区域和周边区域自由流动, 由于酒瓶在中心区域水中抖动, 使水流动并与周边区 域的冰水较快进行热交换, 以便迅速实现冰酒的目的。
在上述酒温调节器器具中, 进液孔分布于内套的底部, 并设有单向阀。 当酒瓶向 下运动时, 对液体产生较大压力, 使单向阀关闭, 此时, 酒瓶的向下运动, 将使内套 中的液体沿着酒瓶与内套的间隙向上溢出,流向容器的周边区域;当酒瓶向上运动时, 对内套液体的压力减轻, 在内套下部区域内形成负压, 单向阀打开, 此时, 周边区域 液体从单向阀流入中心区域, 为下次溢出作了准备。 如此循环往复, 实现中心区域液 体从上部溢向周边区域以及周边区域液体从底部向中心区域补充的交替过程, 产生了 瀑布的现象, 增加了器具的观赏性以及增添了饮酒的趣味性, 同时, 更快达到液体温 度均勾、 一致, 进一步加快冰酒或温酒的作用。 - 在上述酒温调节器器具中, 撑杆装置的托起端支撑托盘, 所述托盘将所述内套分 割成两个区域, 这两个区域之间形成有流体通道, 所述流体通道过的流面积不大于内 套底部进液孔的过流面积, 其中所述流体通道为所述托盘和所述内套之间限定成的间 隙, 也可以为形成在所述托盘上的安装有单向阀的通孔。 托盘的设置, 可解决瓶装酒 由于瓶子大小的不同, 造成瓶子与内套间隙的不同, 当间隙较大时, 其中间的液体容 易形成回流不便形成溢出产生瀑布的问题, 另外, 当托盘与内套之间的过流面积不大 于内套底部进液孔的过流面积时, 托盘向上运动, 将继续带动原在托盘上方的剩余液 体从中心区域溢向周边区域, 从而, 可获得持续的瀑布现象的效果。
上述酒温调节器器具进一步包括密封套, 所述密封套一端连接固定于撑杆座套, 另一端固定于所述撑杆装置的托起端。 '
在上述酒温调节器器具中, 所述驱动装置包括: 驱动电机; 以及转换机构, 所述 转换机构将所述驱动电机的旋转运动转换为所述撑杆装置的往复直线移动。
在上述酒温调节器器具中,所述转换机构包括:转盘,所述转盘在所述电机输出 轴的驱动下旋转; 销轴, 所述销轴的一端偏心地设置在所述转盘上; 以及导轨, 所述 导轨与所述撑杆装置的驱动端连接, 所述销轴的另一端可水平滑动地装入所述导轨 中。
在上述酒温调节器器具中,所述转换机构包括: 转盘,所述转盘在所述电机输出 轴的驱动下旋转; 销轴, 所述销轴的一端与所述撑杆装置的驱动端连接; 以及环形导 轨, 所述环形导轨形成在所述转盘上, 所述销轴的另一端可滑动地装入所述环形导轨 内。
在上述酒温调节器器具中,所述撑杆装置包括撑杆;撑杆座,所述撑杆的一端为 所述驱动端, 另一端可枢轴转动地连接至所述撑杆座; 以及撑杆套, 所述撑杆套可滑 动地配合在所述撑杆座套内, 而且撑杆套的一端与所述撑杆座固定。 而且所述转换机 构包括: 曲柄, 所述曲柄在所述电机输出轴的驱动下旋转; 以及销轴, 所述销轴的一 端固定在所述曲柄的托起端, 另一端可枢轴转动地连接所述驱动端。
在上述酒温调节器器具中,所述撑杆装置包括撑杆;撑杆座,所述撑杆的一端为 所述驱动端, 另一端可枢轴转动地连接至所述撑杆座; 以及撑杆套, 所述撑杆套可滑 动地配合在所述撑杆座套内, 而且撑杆套的一端与所述撑杆座固定。 而且所述转换机 构包括: 转盘, 所述转盘在所述电机输出轴的驱动下旋转; 以及销轴, 所述销轴的一 端偏心地设置在所述转盘上, 另一端可枢轴转动地连接所述驱动端。
在上述酒温调节器器具中, 所述内套于侧面上部处形成有多个溢水孔。 这样, 在 瓶子向下移动时, 内套中的液体向上上升, 于是从这些溢水孔向外喷出, 形成喷泉 现象。
在上述酒温调节器器具中, 所述容盔内设有温度调节装置, 所述温度调节装置可 以包括半导体致冷片或半导体致冷致热片。 这样, 可对液体介质进行加热或制冷, 达 到自动对进行酒降温或加温的目的, 不再要求为了对进行酒降温或加温须加入热水或 冷水和冰块。
本发明创造的冰温酒器在冰酒或温酒过程中, 让酒瓶以直线的方式往复运动, 给 人们带来一种动感, 具有激发人们饮用欲望的作用, 从而显现出它的新颖特点。
本发明的冰温酒器还利用酒瓶的往复直线运动,使液体混和,较快达到温度均匀、 一致, 有利于迅速达到冰酒或温酒的目的, 表现出它的创新性。
本创新的冰温酒器还利用液体对酒瓶的浮力来抵除酒瓶受到的向下重力, 有利于 减少为实现向上作直线运动所需的动力而节约器具的能源消耗。
本冰温酒器还利用酒瓶上下运动造成液位的变化, 在酒瓶周围造就液体落差, 以 便液流能产生瀑布的效果, 从而增加饮酒的趣味性, 同时, 强迫液体循环流动, 更快 达到液体温度均匀、 一致, 以进一步加快对进行酒降温或加温的作用。 附图说明
图 1是本发明第一种具体实施方式的结构图;
图 2是图 1所示的实施例中转换机构的示意图;
图 3是本发明第二种具体实施方式的结构图;
图 4是图 3所示的实施例中转换机构的示意图。
图 5是本发明第三种具体实施方式的结构图;
图 6是图 5所示的实施例中的转换机构沿 A向剖开的示意图。
图 7是本发明第四种具体实施方式的结构图;
图 8是图 7所示的实施例中的转换机构沿 B向剖开的示意图。 具体实施方式
下面参照附图对本发明的具体实施例进行说明, 其中各附图中相同的附图标记表 示相同的部件, 而且附图中所示的实施例仅是实例性的, 并不是试图对本发明的保护 范围进行限制。 参照附图 1一 4说明本发明的第一和第二实施例, 根据本发明的一种酒温调节器 具, 包括: 底座 1 ; 装配在底座 1上的容器 2; 撑杆座套 4, 撑杆座套 4固定于底座 1 上, 并从容器 2底部伸入容器 2内, 且与容器 2固定; 撑杆装置, 撑杆装置位于撑杆 座套 4内并与撑杆座套 4形成液体不泄漏的套接, 其一端伸出撑杆座套 4以形成托起 端, 另一端延伸到底座 1内以形成驱动端; 以及驱动装置, 驱动装置设置在底座 1内 并与撑杆装置的驱动端配合, 以驱动撑杆装置的托起端作往复地直线移动。 其中驱动 装置包括: 驱动电机 7; 以及转换机构, 转换机构与撑杆装置的驱动端配合, 并将驱 动电机 7的旋转运动转换为撑杆装置托起端的往复直线移动。
使用时, 将酒瓶 11放入容器 2内, 酒瓶底部置于撑杆装置的托起端上, 在图 1 和 3所示的实施例中, 该撑杆装置可以是单个的撑杆 5, 此时撑杆装置的托起端和撑 杆 5—体形成, 这样可以使整体结构简化。 在容器中注入冷水或温水, 当减速电机工 作时, 驱动转换机构, 将旋转运动转化为直线运动, 使撑杆往复上下运动, 并带动酒 瓶在冷水或温水中上下运动。 这样, 可实现动感效果, 激发人们饮用酒的欲望, 同时 有利于水流动, 加快热交换。
进一步地, 根据本发明的酒温调节器具还包括固定于容器 2内的内套 3, 且撑杆 座套 4从内套 3的底部伸出, 并将容器分为中心区域和周边区域, 内套 3上设有可供 液体进入其内部的进液孔 9。 在利用冰块对酒进行降温时, 进液孔 9和内套 3可以起 到限制冰块进入内套 3内部的作用, 防止撑杆 5和酒瓶 11在运动过程中受阻, 使冰 水混和物冰酒得以实现。 另外, 将内套上边沿抬高, 可造就溢出的液体形成落差, 产 生瀑布的效果。 进液孔 9优选分布于内套 3的底部, 并装有单向阀, 该单向阀的设置 可保证酒瓶向下运动阀门关闭, 中心区域的液体不从底部流向周边区域, 使液体有足 够的量从上部溢出, 加强瀑布效果, 同时, 酒瓶向上运动阀门开启, 使周边区域的液 体流向中心区域, 为下次溢出作准备。
在撑杆 5的托起端可设置托盘 6, 托盘 6将所述内套分割成两个区域, 这两个区 域之间形成有流体通道, 流体通道过流面积不大于内套 3底部进液孔的过流面积。 流 体通道可以为托盘 6和内套 3之间限定成的间隙, 该间隙的过流面积不大于内套底部 进液孔的过流面积。 可供选择地, 参照图 3, 流体通道也可以为形成在托盘 6上的安 装有单向阀 61的通孔, 从而可消除托盘 6与内套 3之间的间隙, 使液流能从托盘 6 下方进入托盘上方, 而托盘 6上方的液体不能回流到托盘下方, 同样达到液流循环的 目的。 更优选地, 该流体通道也可以是托盘 6与内套 3之间的间隙和形成在托盘 6上 的单向阀的组合。
托盘 6的设置,可解决瓶装酒由于瓶子大小的不同,造成瓶子与内套间隙的不同, 当间隙较大时, 其中间的液体由于自重容易形成回流, 于是不便形成溢出产生瀑布的 问题,另外,由于托盘与内套之间间隙的过流面积不大于内套底部进液孔过流的面积, 可使托盘 6向上运动, 其下方的空间能迅速得到周边区域液体的填充, 有利于托盘上 方的剩余液体随托盘向上移动并溢向周边区域, 使瀑布现象持续。
撑杆座套 4固定于底座 1并让其一端伸出,撑杆座套 4伸出端穿过容器 2和内套 3的底部进入内套 3中, 且与容器 2和内套 3形成封闭的不泄漏固定。 可在容器 2与 撑杆 5的托起端之间设有通过连接件压紧的密封圈, 以提高二者之间的密封性。
内套 3的侧面上部处形成有多个通孔 31,这些通孔 31优选地设置在同一水平面 上, 这样, 当液体上升时, 可从这些通孔 31喷出液体, 形成喷泉。 在容器 内可设 有温度调节装置(图中未画出), 该温度调节装置可以包括电热管 10和温度调节电路 15, 控制电热管 10发热, 可对容器 2中的液体进行加热, 满足温酒的需要。 该温度 调节装置还包括半导体致冷片, 更优选地, 温度调节装置可包括半导体致冷致热片, 以使温度调节电路 15根据需要对容器 2内的液体进行加热和降温。
参照附图 1和 2, 说明本发明所述的酒温调节器具的转换机构的第一实施例, 转 换机构 8包括转盘 81, 转盘 81在电机 7的输出轴 84的驱动下旋转; 销轴 82, 销轴 82的一端偏心地(即不设置在转盘的圆心上)设置在转盘 81上; 以及导轨 83, 导轨 83与撑杆 5的驱动端固定,销轴 82的另一端可水平滑动地装入导轨 83中。釆用这种 结构, 可将转盘 81的旋转运动转化为导轨的直线运动, 从而实现撑杆 5往复直线运 动。 此外, 采用这种转换机构, 可以做到转换机构的高度较小, 有利于整体小型化。
参照附图 3和 4, 说明本发明所述的酒温调节器具的转换机构的第二实施例, 转 换机构包括转盘 81 , 转盘在电机 7的输出轴 84的驱动下旋转; 销轴 82a, 销轴 82a 的一端与撑杆 5的驱动端固定; 以及环形导轨 83a, 环形导轨 83a形成在转盘 81上, 其圆心和转盘 81的圆心不重合,销轴 82a的另一端可滑动地装入环形导轨 83a内,从 而构成将转盘 81的旋转运动转化为销轴 82a的直线运动, 进而实现撑杆 5的往复直 线运动。
参照附图 5— 8, 说明本发明所述的酒温调节器的第三和第四实施例。 根据该第 三和第四实施例所述的一种酒温调节器具, 包括: 为筒式结构的外壳 18; 底座 1 ; 装 配在底座 1上并设置在外壳 15内部的容器 2; 撑杆座套 4, 撑杆座套 4固定于底座 1 上, 并从容器 2底部伸入容器 2内, 且与容器 2固定; 撑杆装置, 撑杆装置位于撑杆 座套 4内并与撑杆座套 4形成液体不泄漏的套接, 其一端伸出撑杆座套 4以形成托起 端, 另一端形成驱动端; 以及驱动装置, 驱动装置设置在底座 1内并与撑杆装置的驱 动端配合, 以驱动撑杆装置的托起端作往复地直线移动。 其中驱动装置包括: 驱动电 机 7; 以及转换机构 8, 转换机构 8与撑杆装置的驱动端配合, 并将驱动电机 7的旋 转运动转换为撑杆装置托起端的往复直线移动。
进一步地, 根据本发明的酒温调节器具还包括固定于容器 2内的内套 3, 且撑杆 座套 4从内套 3的底部伸出, 并将容器分为中心区域和周边区域, 内套 3上设有可供 液体进入其内部的进液孔 9。 在利用冰块对酒进行降温时, 进液孔 9和内套 3可以起 到限制冰块进入内套 3内部的作用, 防止撑杆 5和酒瓶 11在运动过程中受阻。 另夕卜, 将内套 3的上边沿 32抬高,该上边沿 32形成内套溢水位,造就溢出的液体形成落差, 产生瀑布的效果。可供选择地, 也可在内套 3的侧面上部形成有多个通孔 31, 这些通 孔 31优选地设置在同一水平面上,这样,当液体上升时,可从这些通孔 31喷出液体, 形成喷泉。 进液孔 9优选分布于内套 3的底部, 并装有单向阀, 该单向阀的设置可保 证酒瓶向下运动阀门关闭, 中心区域的液体不从底部流向周边区域, 使液体有足够的 量从上部溢出, 加强瀑布效果, 同时, 酒瓶向上运动阀门开启, 使周边区域的液体流 向中心区域, 为下次溢出作准备。
在该实施例 3和 4中, 参见附图 5和 7, 撑杆装置包括撑杆 5; 撑杆座 14, 撑杆 5 的一端为驱动端, 另一端可枢轴转动地连接至撑杆座 14; 以及撑杆套 15, 撑杆套 15可滑动地配合在撑杆座套 4内, 而且撑杆座 14固定在撑杆套 15封闭端的内顶部。 在此实施例中, 撑杆 5可于其一端部衔接一个柱形的部件, 在撑杆座 14的中部向下 形成一个半弧形的凹槽中, 凹槽中央开有通孔, 撑杆 5的驱动端穿过该通孔, 使柱形 部件位于凹槽中, 这样, 撑杆 5可以在通孔中左右摆动, 由此可以消除撑杆 5左右摆 动的影响。 另外, 可在撑杆座 14上通过托盘连接件 16设置托盘 6, 托盘 6将所述内 套分割成两个区域, 这两个区域之间形成有流体通道, 流体通道过流面积不大于内套 3底部进液孔的过流面积。 流体通道可以为托盘 6和内套 3之间限定成的间隙, 该间 隙的过流面积不大于内套底部进液孔的过流面积。 可供选择地, 流体通道也可以为形 成在托盘 6上的安装单向阀 61的通孔, 从而可消除托盘 6与内套 3之间的间隙, 使 液流能从托盘 6下方进入托盘上方, 而托盘 6上方的液体不能回流到托盘下方, 同样 达到液流循环的目的。 更优选地, 该流体通道也可以是托盘 6与内套 3之间的间隙和 形成在托盘 6上的单向阀的组合。
撑杆座套 4固定于底座 1并让其一端伸出,撑杆座套 4伸出端穿过容器 2和内套 3的底部进入内套 3中, 且与容器 2和内套 3形成封闭的不泄漏固定。 可在容器 2与 撑杆 5的托起端之间设有通过连接件 17压紧的密封圈 13, 提高密封性。 优选地, 如 图 5、 7所示, 可在撑杆座套 4和撑杆座 14之间设置密封套 12, 密封套 12的一端连 接固定于撑杆座套 4, 另一端固定于撑杆套 15, 从而使撑杆座套 4与撑杆套 15形成 不泄漏的套接, 以便撑杆 5可在撑杆座套座 4中移动。 而在第一和第二实施例中, 该 密封套则可以直接连接在撑杆座套 4和撑杆 5的托起端之间。
在底座 2内可设有温度调节装置 19, 该温度调节装置可以包括电热管 10, 控制 电热管 10发热, 可对容器 2中的液体进行加热, 满足温酒的需要。 该温度调节装置 还包括半导体致冷片, 更优选地, 温度调节装置可包括半导体致冷致热片, 以使温度 调节电路 15根据需要对容器 2内的液体进行加热和降温。
参照附图 5和 6,转换机构 8包括: 曲柄 83, 曲柄 83在电机 7的输出轴 84的驱 动下旋转; 以及销轴 82b, 销轴 82b的一端固定在曲柄 83的托起端, 另一端可枢轴转 动地连接撑杆 5的驱动端。
可供选择地, 作为第三实施例的变形, 参见附图 7和 8, 在第四实施例中, 将第 三实施例的曲柄 83替换为转盘 81,销轴 82c的一端偏心地设置在转盘 81上, 另一端 可枢轴转动地连接撑杆 5的驱动端, 而且撑杆套 15的结构和连接方式不变, 其说明 在此省略。
领域技术人员将会清楚,在不脱离本发明精神和范围的情况下,能够对本发明进 行各种修改和变化。 因此, 本发明希望覆盖该发明的修改和变化, 但这些修改和变化 都处在所附的权利要求及其等效含义的范围中。 例如, 上述实施例已给出转换机构的 四种实现方式及其结构, 事实上, 转换机构的实现方式及结构还可以有多种, 对转换 机构采用替换的方式而实现本技术方案, 自然也属于本发明的保护范围, 即不能由此 而将上述四种转换机构解释成对本发明保护范围的限制。

Claims

权 利 要 求
1、 一种酒温调节器具, 包括:
底座;
装配在所述底座上的容器;
撑杆座套, 所述撑杆座套固定于底座上, 并从容器底部伸入容器内, 且与容器固 定;
撑杆装置, 所述撑杆装置位于撑杆座套内并与撑杆座套形成液体不泄漏的套接, 其一端伸出撑杆座套, 另一端形成驱动端; 以及
驱动装置,所述驱动装置与所述撑杆装置的驱动端配合, 以驱动所述撑杆装置运 动。
2、 根据权利要求 1所述的酒温调节器具, 进一步包括固定于容器内的内套, 且 撑杆座套从内套底部伸出, 内套上设有可供液体进入其内部的进液孔。
3、 根据权利要求 2所述的酒温调节器具, 其中所述进液孔分布于内套的底部, 并设有单向阀。
4、根据权利要求 3所述的酒温调节器具,其中所述撑杆装置的托起端支撑托盘, 所述托盘将所述内套分割成两个区域, 这两个区域之间形成有流体通道, 所述流体通 道的过流面积不大于内套底部进液孔的过流面积。
5、 根据权利要求 4所述的酒温调节器具, 其中所述流体通道为所述托盘和所述 内套之间限定成的间隙。
6、 根据权利要求 4所述的酒温调节器具, 其中所述流体通道为形成在所述托盘 上的安装有单向阀的通孔。
7、 根据权利要求 1所述的酒温调节器具, 进一步包括密封套, 所述密封套一端 连接固定于撑杆座套, 另一端固定于所述撑杆装置的托起端。
8、根据权利要求 1一 7中的任一项所述的酒温调节器具,其中所述驱动装置包括: 驱动电机; 以及
转换机构,所述转换机构将所述驱动电机的旋转运动转换为所述撑杆装置的往复 直线运动。
9、 根据权利要求 8所述的酒温调节器具, 其中所述转换机构包括- 转盘, 所述转盘在所述电机输出轴的驱动下旋转;
销轴, 所述销轴的一端偏心地设置在所述转盘上; 以及
导轨,所述导轨与所述撑杆装置的驱动端连接,所述销轴的另一端可滑动地装入 所述导轨中。
10、 根据权利要求 8所述的酒温调节器具, 其中所述转换机构包括: 转盘, 所述转盘在所述电机输出轴的驱动下旋转;
销轴, 所述销轴的一端与所述撑杆装置的驱动端连接; 以及
一 环形导轨,所述环形导轨形成在所述转盘上,所述销轴的另一端可滑动地装入所 述环形导轨内。
11、 根据权利要求 8所述的酒温调节器具, 其中所述撑杆装置包括:
撑杆;
撑杆座, 所述撑杆的一端为所述驱动端, 另一端可枢轴转动地连接至所述 撑杆座; 以及
撑杆套, 所述撑杆套可滑动地配合在所述撑杆座套内, 而且撑杆套的一端 与所述撑杆座固定;
所述转换机构包括:
曲柄, 所述曲柄在所述电机输出轴的驱动下旋转; 以及
销轴, 所述销轴的一端固定在所述曲柄的托起端, 另一端可枢轴转动地连 接所述驱动端。
12、 根据权利要求 8所述的冰温酒器, 其中所述撑杆装置包括:
撑杆;
撑杆座, 所述撑杆的一端为所述驱动端, 另一端可枢轴转动地连接至所述 撑杆座; 以及
撑杆套, 所述撑杆套可滑动地配合在所述撑杆座套内, 而且撑杆套的一端 与所述撑杆座固定;
而且所述转换机构包括- 转盘, 所述转盘在所述电机输出轴的驱动下旋转; 以及
销轴, 所述销轴的一端偏心地设置在所述转盘上, 另一端可枢轴转动地连 接所述驱动端。
13、 根据权利要求 2— 7中的任一项所述的酒温调节器具, 其中所述内套于侧面 上部处形成有多个溢水孔。
14、 根据权利要求 1一 7中的任一项所述的酒温调节器具, 其中所述容器内设有 温度调节装置。
15、 根据权利要求 14所述的酒温调节器具, 其中所述温度调节装置包括半导体 致冷片。
16、 根据权利要求 14所述的酒温调节器具, 其中所述温度调节装置包括半导体 致冷致热片。
17、 根据权利要求 1—7中的任一项所述的酒温调节器具, 其中所述容器与所述 撑杆座套之间设有通过连接件压紧的密封圈。
PCT/CN2005/002014 2004-11-29 2005-11-25 Dispositif de regulation de la temperature d'une boisson WO2006056137A1 (fr)

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EP1817992A1 (en) 2007-08-15
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