WO2020047845A1 - Appareil de commande de distribution et appareil de distribution - Google Patents

Appareil de commande de distribution et appareil de distribution Download PDF

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Publication number
WO2020047845A1
WO2020047845A1 PCT/CN2018/104624 CN2018104624W WO2020047845A1 WO 2020047845 A1 WO2020047845 A1 WO 2020047845A1 CN 2018104624 W CN2018104624 W CN 2018104624W WO 2020047845 A1 WO2020047845 A1 WO 2020047845A1
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WO
WIPO (PCT)
Prior art keywords
pressure
distribution
feeding
control device
container
Prior art date
Application number
PCT/CN2018/104624
Other languages
English (en)
Chinese (zh)
Inventor
刘育衡
Original Assignee
石榴创新有限公司
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 石榴创新有限公司 filed Critical 石榴创新有限公司
Priority to PCT/CN2018/104624 priority Critical patent/WO2020047845A1/fr
Priority to TW108130736A priority patent/TWI707653B/zh
Priority to CN201921441220.2U priority patent/CN211338784U/zh
Priority to CN201910816628.1A priority patent/CN110885056B/zh
Publication of WO2020047845A1 publication Critical patent/WO2020047845A1/fr

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67DDISPENSING, DELIVERING OR TRANSFERRING LIQUIDS, NOT OTHERWISE PROVIDED FOR
    • B67D1/00Apparatus or devices for dispensing beverages on draught
    • B67D1/08Details
    • B67D1/0888Means comprising electronic circuitry (e.g. control panels, switching or controlling means)
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J31/00Apparatus for making beverages
    • A47J31/44Parts or details or accessories of beverage-making apparatus
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67DDISPENSING, DELIVERING OR TRANSFERRING LIQUIDS, NOT OTHERWISE PROVIDED FOR
    • B67D1/00Apparatus or devices for dispensing beverages on draught
    • B67D1/08Details
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67DDISPENSING, DELIVERING OR TRANSFERRING LIQUIDS, NOT OTHERWISE PROVIDED FOR
    • B67D1/00Apparatus or devices for dispensing beverages on draught
    • B67D1/08Details
    • B67D1/12Flow or pressure control devices or systems, e.g. valves, gas pressure control, level control in storage containers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67DDISPENSING, DELIVERING OR TRANSFERRING LIQUIDS, NOT OTHERWISE PROVIDED FOR
    • B67D1/00Apparatus or devices for dispensing beverages on draught
    • B67D1/08Details
    • B67D1/12Flow or pressure control devices or systems, e.g. valves, gas pressure control, level control in storage containers
    • B67D1/1202Flow control, e.g. for controlling total amount or mixture ratio of liquids to be dispensed
    • B67D1/1234Flow control, e.g. for controlling total amount or mixture ratio of liquids to be dispensed to determine the total amount
    • B67D1/124Flow control, e.g. for controlling total amount or mixture ratio of liquids to be dispensed to determine the total amount the flow being started or stopped by means actuated by the vessel to be filled, e.g. by switches, weighing

Definitions

  • the present application relates to the field of distribution technology, and in particular, to a distribution control device and a distribution device.
  • a distribution control device includes a pressure sensing component and a logic control circuit.
  • the pressure sensing component is connected to the logic control circuit.
  • the logic control circuit is used to connect a distribution device.
  • the pressure sensing component is detachable. Fix the matching container and follow the container when it moves down,
  • the pressure sensing component is configured to detect pressure information when the container is pressed down, and send the pressure information to the logic control circuit;
  • the logic control circuit is configured to receive the pressure information, and send a feeding control instruction to the distribution device according to the correspondence relationship between the pressure information and a preset correspondence, and the feeding control instruction is used to control the distribution device to transfer materials,
  • the preset correspondence relationship is a correspondence relationship between the pressure information and the feeding control instruction; and after detecting that the distribution device finishes the feeding operation, generating a feeding stop operation instruction to the distribution device, the feeding stop The control instruction is used to control the distribution device to stop transferring materials.
  • a distribution device includes a distribution device and the distribution control device described above, the distribution control device is connected to the distribution device,
  • the distribution device is used for receiving a feeding control instruction, and extracting and transmitting a material according to the feeding control instruction.
  • the pressure sensing component is configured to detect the pressure information according to the pressure when the container is pressed down, and send the pressure information to the logic control circuit;
  • the logic control circuit is configured to receive the pressure information, and according to the pressure information Send a feeding control instruction to the distribution device with a preset correspondence relationship, and the feeding control instruction is used to control the distribution device to transfer the material, wherein the preset correspondence relationship is a correspondence relationship between the pressure information and the feeding control instruction; and when the distribution device is detected After the feeding operation is completed, a stop feeding operation instruction is generated to the distribution device, and the stop feeding control instruction is used to control the distribution device to stop transmitting the material.
  • the device After presetting the correspondence between the pressure information and the control instructions, it can omit the steps of manually selecting individual material categories, manually assigning the capacity and amount of materials, and controlling the allocation of different material categories.
  • the device can control the distribution device to automatically perform the distribution action, greatly reducing manual operation time and improving operating efficiency.
  • FIG. 1 is a structural block diagram of an allocation control device in an embodiment
  • FIG. 2 is a schematic structural diagram of a pressure sensing component in an embodiment
  • FIG. 3 is a schematic structural diagram of a container body in an embodiment
  • FIG. 4 is a schematic diagram of a container equipped with a pressure sensing component to follow the pressure movement of the container according to an embodiment
  • FIG. 5 is a schematic diagram of a control for executing a distribution instruction after a pressure sensing component is pressed in an embodiment
  • FIG. 6 is a control schematic diagram of the completion of distributing instructions after the pressure sensing component is pressed in an embodiment
  • FIG. 7 is a schematic diagram of the working principle of a pressure-acting induction component in an embodiment
  • FIG. 8 is a schematic diagram of the working principle of a pressure-acting induction component in another embodiment
  • FIG. 9 is a schematic diagram of the working principle of a pressure-acting induction component in another embodiment.
  • FIG. 10 is a schematic diagram of the working principle of a pressure-acting induction component in another embodiment
  • FIG. 11 is a structural block diagram of a distribution device in an embodiment
  • FIG. 12 is a structural block diagram of a distribution device in another embodiment
  • FIG. 13 is a structural block diagram of a distribution device in another embodiment
  • FIG. 14 is a structural block diagram of a distribution device in still another embodiment
  • 15 is a schematic structural diagram of an upper body of a material conveying device according to an embodiment
  • 16 is a schematic structural diagram of a lower body of a material conveying device according to an embodiment
  • FIG. 17 is a schematic structural diagram of a distribution device in an embodiment.
  • a distribution control device includes a pressure sensing component 110 and a logic control circuit 120.
  • the pressure sensing component 110 is connected to the logic control circuit 120, and the logic control circuit 120 is used to connect the distribution device.
  • the pressure sensing component 110 is used for detachably fixing a matching container and moves when the container is pressed.
  • the pressure sensing component 110 is used to detect the pressure information according to the pressure of the container and send the pressure information to the logic control.
  • Circuit 120 the logic control circuit 120 is used for receiving pressure information, and sends a feeding control instruction to the distribution device according to the correspondence relationship between the pressure information and the preset relationship, and the feeding control instruction is used to control the distribution device to transfer the material, wherein the preset correspondence relationship is pressure The corresponding relationship between the dynamic information and the feeding control instruction; and after detecting that the distribution device has completed the feeding operation, a stop feeding operation instruction is generated to the distribution device, and the stop feeding control instruction is used to control the distribution device to stop transmitting the material.
  • the logic control circuit 120 is a logic control circuit, and presses the pressure information detected by the motion sensing component to control the distribution device.
  • the logic control circuit 120 sets a correspondence relationship between the pressure information and the control instruction in advance. It can include multiple types and is not limited. It can be set according to actual needs, such as allocation capacity, preset correspondence, which is the selection of the material category corresponding to the pressure information, allocation capacity, etc.
  • the user first presets the corresponding pressure information to define the allocation. After the preset execution conditions are set, the user only needs to detachably fix the container on the pressure sensing component 110 to trigger the pressure sensing component 110 to send a signal to the logic control circuit 120, which allows the distribution.
  • the automatic selection of material categories, or the automatic execution of the capacity and quantity of allocated materials can be applied to various types of water, beverages, or other liquid / semi-liquid / solid materials that can be allocated, especially suitable for fast and frequent use Occasions (such as restaurants, fast food restaurants, and other crowded business environments), after the first preset is completed, different objects can be omitted
  • the need for material category allocation requires manual selection of individual material categories each time, the steps of allocating the capacity and quantity of materials.
  • the allocation control device can control the allocation device to automatically perform the allocation action. After the allocation device has performed the allocation action, the user can conveniently Taking the container away greatly reduces manual operation time and improves operational efficiency.
  • the compression information includes a compression position and / or a compression range
  • the logic control circuit 120 is configured to receive the compression position and / or the compression range, according to the compression position and / or the compression range and a preset
  • the corresponding relationship sends a feeding control instruction to the corresponding distribution device, and the feeding control instruction is used to control the corresponding distribution device to transfer the material.
  • the pressure position means that, for example, a pressure mechanism 111 is provided at different positions of the pressure induction component 110. As shown in FIG. 2, each position is preset to correspond to a feeding control instruction.
  • a pressure control component 110 is provided on the pressure induction component 110.
  • the pressure mechanisms are not limited to two, and can include any number of them.
  • the A pressure mechanism corresponds to 350 mL of water, and the B pressure mechanism corresponds to 5 ice cubes.
  • the amplitude refers to the degree of compression of each compression mechanism. Each amplitude is preset to correspond to a feed control command.
  • the A compression mechanism is pressed to the first gear, it corresponds to the distribution of 350mL of water and the pressure is moved to the second gear.
  • a groove is provided on the inner surface of the pressure sensing component 110 and a protrusion is provided on the outer surface of the container; or a groove is provided on the inner surface of the pressure sensing component 110 and a groove or protrusion is provided on the outer surface of the container. Or a groove and a protrusion are provided on the inner surface of the pressure sensing component 110, and a protrusion and a groove or protrusion are provided at the corresponding position on the outer surface of the container.
  • the convex position may be provided on the bottom of the container or the side of the container, and the concave position may be provided on the bottom of the container or the side of the container. And allow self-reaction to identify the desired material category, allocated capacity, and the recess or convex position set by the analogy, and so on.
  • the pressure sensing component 110 corresponding to the recess at the bottom of the container is set at the bottom for pairing and allows self-reaction
  • the pressure-sensing component 110 corresponds to the concave position on the side of the container. It is set on the side for pairing and allows itself to identify the required material category and allocation.
  • the convex position corresponding to the side of the container of the pressure sensing component 110 is set on the side for matching and allows itself to react to identify the required material type, allocated capacity, and the concave position set by the volume or volume. Convex position. It is a schematic structural diagram of the container body and the pressure sensing component 110 in one of the cases.
  • the positions, shapes, and amounts of the concave-convex portions of the container as exemplified in the above description, and the positions, shapes, and quantities of the concave-convex portions of the sensing component are not limited to the examples cited in the description. It is required to define the matching position as concave or convex, the relative matching amount of the concave and convex parts, and the position where the concave and convex parts are located in the container and the sensing component, and the concave and convex parts are not limited in shape.
  • a protrusion is provided on the inner surface of the pressure sensing component 110, and a groove is provided at a corresponding position on the outer surface of the container.
  • the user first presets the material category, allocated capacity, and quantity required for corresponding different amounts of convex containers. Execution specifications, so that the logic control circuit can be stored according to the preset conditions. For example, if there are 2 convex containers attached to the specified position, the user assigns the preset to 350mL. Water and 5 ice cubes are distributed. The user places the container with the pressure sensing component 110 aligned with the convex position (that is, the corresponding pressure position in the pressure information), and triggers the pressure sensing component 110 to generate pressure information to the logic.
  • the control circuit 120 and the logic control circuit 120 control the dispensing device to dispense 350 mL of water and 5 ice cubes according to preset conditions.
  • the convex position provided at the bottom of the container will press the pressing mechanism of the pressure sensing component 110 (in this example, the button (ie, the pressing mechanism, hereinafter referred to as a button) A and the button C are depressed, and The side of the button B is not pressed down.
  • the logic control circuit 120 obtains the signals of the buttons A and C of the pressure sensing component 110. Without the signal of B, it is identified according to the user's preset and needs to be assigned. 350mL of water and 5 ice cubes are dispensed.
  • the logic control circuit will stop the dispensation action. After that, the user can repeat the placement at will. Individual containers that have been assigned material categories and assigned presets trigger automatic execution of preset instructions.
  • the convex position provided on the side of the container will push the opposite pressure sensing component 110 (in this example, the button A and the button C are pushed, but the button B side is not pushed); in other embodiments , The recess provided at the bottom of the container will accommodate the relative sensing component (in this example, button A and button C are accommodated in the recess space without being depressed, but button B is depressed without space to accommodate); in other embodiments , The recess provided at the side of the container will accommodate the relative sensing component (in this example, the button A and the button C are accommodated in the recess space and not pushed, but the button B is pushed without space accommodation).
  • the example of the distribution material export described in this application is not limited or specified, and the pressure, push, and push parts of the sensing component are not limited to the examples in this description, and can be determined according to individual application requirements.
  • the pressure sensing assembly 110 includes a tray, a pressure mechanism, a magnetic induction switch integrated circuit 112, and a magnet 113.
  • the pressure mechanism is disposed on the tray, and the magnet 113 is disposed on the pressure mechanism.
  • the magnetic induction switch integrated circuit 112 is oppositely arranged.
  • the magnetic induction switch integrated circuit 112 is connected to the logic control circuit 120.
  • the pressure mechanism is used to move with the pressure of the container.
  • the magnetic induction switch integrated circuit 112 is used to generate the magnetic force induced by the magnet 113 when it is pressed.
  • the pressure information is sent to the logic control circuit 120.
  • the relative setting may be relatively vertical or relatively horizontal.
  • the magnet is provided on the compression mechanism. When the compression mechanism is pressed, pushed, or pushed close to the electronic components of the magnetic induction switch integrated circuit, the magnetic force of the magnet is enhanced until the magnetic induction. When the integrated circuit element senses sufficient magnetic force, the output of the magnetic induction integrated circuit element will generate a change in voltage and be converted into pressure information, so that the logic control circuit can distinguish the change in state, so as to control the distribution device to execute the corresponding response based on the received pressure information. Operation.
  • the pressure sensing component 110 includes a tray, a pressure sensing mechanism, a current sensing integrated circuit 114 and a conductive component 115.
  • the pressure sensing component is disposed on the tray, and the conductive component 115 is disposed on the pressure sensing component. It is opposite to the current-sensing integrated circuit 114.
  • the current-sensing integrated circuit 114 is connected to the logic control circuit 120.
  • the pressure mechanism is used to move with the pressure of the container.
  • the current-sensing integrated circuit 114 is used to The current change generates pressure information and sends it to the logic control circuit 120.
  • the conductive component is arranged on the compression mechanism.
  • the compression mechanism When the compression mechanism is pressed, pushed or pushed to contact the current sensing integrated circuit to generate current conduction, the current sensing integrated circuit will be converted into pressure information due to the change in current.
  • the logic control circuit is made to recognize the change of the state, so as to control the distribution device to perform corresponding operations according to the received pressure information.
  • the pressure sensing component 110 includes a tray, a pressure sensing device, a pressure sensing component, and a piezoelectric sensing integrated circuit 116.
  • the pressure sensing component is disposed on the tray, and the pressure sensing component is disposed on the pressure sensing component. It is opposite to the piezoelectric induction integrated circuit 116.
  • the pressure induction integrated circuit is connected to the logic control circuit 120. The pressure mechanism moves following the pressure of the container.
  • the piezoelectric induction integrated circuit 116 is used to The voltage or current change generates corresponding pressure information and sends it to the logic control circuit 120.
  • the piezo-electric component is disposed on the piezo-electric mechanism.
  • the piezo-electric mechanism When the piezo-electric mechanism is pressed, pushed, or pushed to the piezoelectric induction integrated circuit to apply pressure, the piezoelectric induction integrated circuit will be affected by the applied pressure.
  • a certain output (voltage / current) change is generated and converted into pressure information, so that the logic control circuit can distinguish the change in state, and thus control the distribution device to perform corresponding operations according to the received pressure information.
  • the pressure sensing component 110 includes a tray, a pressure mechanism, a pressure component 117, and a circuit switch 118.
  • the pressure mechanism is disposed on the tray, and the pressure component 117 is disposed on the pressure mechanism.
  • the circuit switch 118 is opposite to the circuit switch 118.
  • the circuit switch 118 is connected to the logic control circuit 120.
  • the pressure mechanism moves with the pressure of the container.
  • the circuit switch 118 is used to generate a corresponding circuit according to the state change of the circuit when the pressure component 117 is pressed.
  • the pressure information is sent to the logic control circuit 120.
  • the pressure component is provided on the pressure mechanism.
  • the circuit switch When the pressure mechanism is pressed, pushed, or pushed to the circuit switch, the circuit switch will change state due to the applied pressure, and change the change of the switch state.
  • the pressure information is generated, so that the logic control circuit can distinguish the change of the state, so as to control the distribution device to perform corresponding operations according to the received pressure information.
  • the pressure sensing component 110 may be a tray, a pressure mechanism, a conductive component, and a general circuit.
  • the pressure mechanism is disposed on the tray, the conductive component is disposed on the pressure mechanism, and is opposite to the general circuit, and the general circuit is connected.
  • Logic control circuit 120 The conductive component is set on the pressure mechanism. When the pressure mechanism is pressed, pushed, or pushed to contact the closed circuit, the logic control circuit can distinguish the change of state, so that according to the received pressure The dynamic information controls the distribution device to perform a corresponding operation.
  • the electronic induction methods exemplified above are not limited to the examples given. In particular, there are many electronic induction methods, which can be implemented by other electronic induction methods.
  • the inductive component in this application only uses simple on / off logic as an example.
  • the inductive method can also be set as the pressing, pressing, and pushing range of the inductive part to make different units to identify the required individual allocation instructions. Perform the action.
  • the above-mentioned distribution control equipment is also reducing the operating costs of many merchants (restaurants, cafes, bars, etc.). Therefore, it can bring the following economic advantages: ⁇ Significantly reduced by selecting material categories, distribution Capacity, quantity, time and material waste due to human error; ⁇ Reduce the time ratio of staff, waiters, etc. (especially in the case of hourly wages) in preparing the allocation of materials such as beverages, allowing more Time scheduling for other work tasks may reduce the required staff costs; ⁇ Compared with traditional distribution instruments and machines, it can allow a single container to be placed in multiple distribution ports without the need for individual material categories. The distribution port occupies an area, thereby omitting the positions of multiple distribution ports.
  • a distribution device includes a distribution device 300 and the above-mentioned distribution control device 100.
  • the distribution control device 100 is connected to the distribution device 300, and the distribution device 300 is configured to receive a feeding control instruction, and The instruction takes the material and transfers it.
  • the distribution device 300 is configured to extract the corresponding materials according to the feeding control instruction sent by the distribution control device 100 and transfer them to the container, and stop the corresponding materials to be extracted according to the stop feeding control instruction sent by the distribution control device 100 and transfer them to the container. Cooperate with them to complete the material distribution process.
  • the distribution device 300 includes a material storage container 310 and a feeding control device 320.
  • the material storage container 310 is connected to the feeding control device 320, and the feeding control device 320 is communicatively connected to the distribution control device 100 and the feeding control device.
  • 320 is used for receiving a feeding control instruction, extracting a corresponding amount of material from the material storage container 310 according to the feeding control instruction and transmitting, and receiving a stop feeding control instruction, and stopping extracting the material according to the stop feeding control instruction.
  • the material storage container 310 is a liquid, semi-liquid, or solid storage container.
  • a distribution device may include multiple material storage containers 310, which can be combined and matched according to actual needs, such as including both a semi-liquid and a solid storage container.
  • the specific type is not limited, and may be liquids such as water and beverages, semi-liquids such as ice cream, smoothies, soft ice cream, and solids such as ice cubes and sugar.
  • the feeding control device 320 includes a pump 322 and / or a quantity distribution device 324.
  • the material storage container 310 includes a liquid The semi-liquid material storage container 312 and the solid material storage container 314.
  • the distribution device further includes a material conveying device 330.
  • the liquid / semi-liquid material storage container 312 is connected to the pump 322 through the material conveying device 330.
  • the solid material storage container 314 is connected to the quantity distribution device 324.
  • the pump 322 and the quantity distribution device 324 are connected to the distribution control device.
  • the material storage container 310 is a liquid / semi-liquid material storage container 312.
  • the distribution device further includes a material conveying device 330 and a liquid / semi-liquid.
  • the material storage container 312 is connected to the pump 322 through the material conveying device 330, and the pump 322 is connected to the distribution control device.
  • the feeding control device 320 is a quantity distribution device 324
  • the material storage container 310 is a solid material storage container 314, and the solid material storage container 314 passes the quantity
  • the distribution device 324 is connected to a distribution control device.
  • the corresponding material storage container 310 is a liquid / semi-liquid material storage container 312
  • the corresponding feeding control device 320 is a pump 322
  • the corresponding material storage The container 310 is a solid material storage container 314, and the corresponding feeding control device 320 is a quantity distribution device 324.
  • the feeding control device 320 includes a pump 322, it also includes a material conveying device 330.
  • the pump 322 controls the material conveying device 330 to extract material from the material storage container 310 and convey it.
  • the material conveying device 330 includes an upper body (10) and a lower body (20), and the upper body (10) includes a fixing member (12), a lifting member (11), and a fixing member. (12) fixedly arranged on the inner bottom surface of the upper body (10), the lifting member (11) is arranged inside the fixing member (12) and can move up and down, and the side wall of the lifting member (11) is provided with a circulation hole (16), The middle part of the lifting member (11) is provided with a perfusion flow channel (15), and the perfusion flow channel (15) passes through the bottom of the upper body (10); the lower body (20) includes a cover plug (21), a rigid cylinder (22), and a cover The plug (21) is fixedly connected to the rigid post (22). The rigid post (22) has a channel inside, and the outer wall of the cover plug (21) can be engaged with the inner wall of the lifting member (11).
  • the upper body 10 includes a fixing member 12 and a lifting member 11.
  • the fixing member 12 is fixedly disposed on the inner bottom surface of the upper body 10.
  • the lifting member 11 is disposed inside the fixing member 12 and can move up and down.
  • the fixing member 12 The lifting member 11 is in the shape of a ring, of course, it can also be provided in other shapes; the side wall of the lifting member 11 is provided with a circulation hole 16 for perfusion, and the middle part of the lifting member 11 has a perfusion flow channel 15 and a perfusion flow channel 15 Pass through the bottom of the upper body 10.
  • the lower body 20 includes a cover plug 21, a rigid cylinder 22, an outer ring telescopic tube 24, an inner ring telescopic tube 26, an inner channel 28, and a connecting rubber tube 29.
  • the outer ring telescopic tube 24 includes a top plate 24a, a bottom plate 24b, and a connection for the two.
  • a spring 25 is provided between the side wall 24c, the top plate 24a and the bottom plate 24b, a spring 25 is provided between the top plate 24a and the bottom plate 24b, and a rigid column 22 is provided on the top plate 24a.
  • the rigid column 22 is made of a solid material and can provide support. It can be used, such as stainless steel, if stainless steel is used, it is not easy to rust.
  • the rigid cylinder 22 has a channel therein.
  • the inner ring telescopic tube 26 is provided inside the outer ring telescopic tube 24 and communicates with the rigid cylinder 22.
  • the inner ring telescopic tube 26 is made of an elastic material, such as a rubber material, and the cost of the rubber material is low, and Good elasticity and long service life.
  • the spring 25 is located outside the inner ring telescopic tube 26.
  • a second leak-proof ring 212 is provided at the connection between the rigid cylinder 22 and the top plate 24a.
  • a support base 27 is provided on the bottom plate 24b, and a support column 23 and a support column are provided on the support base 27. 23 passes through the inner ring telescopic tube 26 and extends into the rigid cylinder 22.
  • the top of the support column 23 is fixedly provided with a cover plug 21, which is fixedly connected to the top of the rigid column 22, and the cover plug 21 and the rigid column 22 A first leak-proof ring 211 is provided at the connection point.
  • the rigid cylinder 22 is located inside the lifting member 11.
  • the outer side wall of the cover plug 21 and the inner side wall of the top of the lifting member 11 are engaged through the cooperation of the latching position 14 and the protruding position 210.
  • the card position 14 is disposed on the inner side wall of the top of the lifting member 11, and the convex position 210 is disposed on the outer side wall of the cover plug 21.
  • the internal passage 28 is fixedly connected to the bottom plate 24b and communicates with the rigid cylinder 22, and the connection rubber pipe 29 is communicated with the bottom of the internal passage 28.
  • the material conveying device 330 is used in conjunction with the feeding control device 320 when it is used, and presses the upper body downwards, the fixing member moves downward with the upper body, and the rigid cylinder drives the lifting member to move upward through the cover plug, and the circulation hole is exposed. At this time, the liquid / semi-liquid can flow from the lower body to the upper body and be discharged from the circulation hole, thereby realizing the work of perfusion.
  • the material conveying device 330 can be applied to the pouring of various types of water, beverages, or other liquids / semi-liquids, as well as ice cream machines and smoothies. The pouring speed is high, the efficiency is high, and the safety performance is high. The splash generated from time to time will burn the user.
  • the method of infusion from the lower net reduces the leakage during the infusion and greatly reduces the foam generated by the carbonated liquid during the infusion, so that no liquid infusion is required.
  • Action with simple natural water flow principle, it is poured from the liquid supply source to the upper body in the design; the application of this design can break through the traditional drinks, beverages and other liquids, as well as semi-liquid materials from top to bottom
  • the pouring method is easy to operate.
  • the distribution device 200 further includes a temperature control device 340, the material conveying device 330 is connected to the temperature control device 340, and the pump 322 receives a feeding control instruction.
  • the feeding control instruction extracts material from the material storage container and transmits it, including: the pump 322 receives the feeding control instruction, and controls the material conveying device 330 to extract the material from the liquid / semi-liquid material storage container 312 to the temperature control device according to the feeding control instruction;
  • the temperature control device 340 transmits the temperature of the received material to a preset temperature.
  • the temperature control device 340 is used for temperature control of the material.
  • the control instruction includes corresponding temperature control information, and the pump 322 receives
  • the feeding control instruction controls the material conveying device 330 to extract the material from the liquid / semi-liquid material storage container 312 and transmit it to the temperature control device 340 according to the feeding control instruction.
  • the temperature control device 340 transmits the temperature of the received material to a preset temperature.
  • the distribution device further includes a flow detection device 350.
  • the flow detection device 350 is communicatively connected to the distribution control device 100.
  • the flow detection device 350 is configured to detect the flow of the material and send the flow to the distribution control.
  • Device 100 the distribution control device 100 receives the flow, and when it is detected that the flow is inconsistent with the preset flow, sends a flow control instruction to the pump 322 until the flow feedback from the flow detection device 350 is consistent with the preset flow; the pump 322 is configured to The flow control instruction controls the distribution flow.
  • the specific type of the flow detection device 350 is not limited. It is adjusted according to the type of the material, and the corresponding flow detection device 350 will feed back the flow of the material to the logic control circuit to ensure that the allocated capacity is correct.
  • the scope of application of this application includes, but is not limited to: the distribution applications of various liquids (such as the capacity of drinking water and beverages), the distribution applications of various semi-liquids (such as the capacity of smoothies, soft ice cream), and various solids Distribution applications (such as the amount of ice cubes, sugar particles).
  • the specific process is as follows: 1. The container is placed at the designated position of the distribution equipment; 2. The container The convex position at the bottom will depress the opposite pressing mechanism (button a and button c are depressed, but button b side is not depressed). At this time, the relevant signals are transmitted to the logic control circuit; further, the container can It is a special container or an ordinary container.
  • the corresponding device When it is an ordinary container, the corresponding device can be detachably fixed at the corresponding position of the ordinary container to press down the corresponding pressure mechanism; 3, the logic control circuit presses The status signal of the induction component pressed at the bottom of the container is used for control, starting the pump 222 motor (corresponding to the feeding control device 220) to distribute water, and sending instructions to allow the ice cube meter (corresponding to the feeding control device 220) to distribute only 5 ice cubes; 4.
  • the designated pump 222 motor starts, the corresponding flow meter will feed back the water flow to the logic control circuit.
  • the logic control circuit When the capacity of 350mL is reached, the logic control circuit will stop the pump 222. The motor stops dispensing water; 5.
  • the above-mentioned distribution control device and distribution equipment are a principle that promotes efficiency and innovative automatic capacity and quantity identification distribution structure, (can be applied to, and not limited to, various types of water, beverages, or other liquids / semi-liquids / solids And other materials that can be allocated and distributed), especially suitable for occasions that require fast and frequent use (such as restaurants, fast food restaurants, and other crowded business environments).
  • the first preset After the first preset is completed, it can omit the different material categories, and the need for allocation and allocation requires manual selection of individual material categories each time, and the steps of allocation and allocation of the capacity and quantity of materials, such as those used in restaurants on the market Soda machine, restaurant waiter needs to manually select individual required dispenser capacity buttons on the soda machine according to the type of beverage ordered by the customer, and the capacity (large, medium and small) cups, but this allocation can inform the device and the distribution equipment and can omit the waiter It is necessary to manually select the step of pressing the individual allocation capacity button each time, which can relatively greatly reduce the operating time of the waiter and promote operating efficiency.

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  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Devices For Dispensing Beverages (AREA)

Abstract

La présente invention concerne un appareil de commande de distribution et un appareil de distribution comprenant un ensemble de détection de mouvement de pression et un circuit de commande logique, l'ensemble de détection de mouvement de pression étant connecté au circuit de commande logique, le circuit de commande logique étant utilisé pour connecter un appareil de commande de distribution, l'ensemble de détection de mouvement de pression étant utilisé pour fixer de manière amovible un contenant adapté et se déplacer en même temps que le contenant lorsque celui-ci est pressé vers le bas, et l'ensemble de détection de mouvement de pression étant utilisé pour détecter des informations de mouvement de pression sur la base de la pression vers le bas du contenant et envoyer les informations de mouvement de pression au circuit de commande logique ; le circuit de commande logique est utilisé pour recevoir les informations de mouvement de pression et, sur la base des informations de mouvement de pression et d'une relation correspondante prédéfinie, envoyer une instruction de commande d'alimentation à l'appareil de distribution, l'instruction de commande d'alimentation étant utilisée pour commander l'appareil de distribution pour transporter un matériau ; et, après avoir détecté que l'appareil de distribution a terminé l'opération d'alimentation, générer une commande de fin d'opération d'alimentation destinée à l'appareil de distribution, l'instruction de fin d'opération d'alimentation étant utilisée pour commander l'appareil de distribution pour arrêter le matériau de transport. L'étape de sélection manuelle peut être omise et l'appareil de distribution peut être commandé afin d'exécuter automatiquement une action de distribution, ce qui permet de réduire considérablement le temps de fonctionnement manuel et d'augmenter l'efficacité opérationnelle.
PCT/CN2018/104624 2018-09-07 2018-09-07 Appareil de commande de distribution et appareil de distribution WO2020047845A1 (fr)

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PCT/CN2018/104624 WO2020047845A1 (fr) 2018-09-07 2018-09-07 Appareil de commande de distribution et appareil de distribution
TW108130736A TWI707653B (zh) 2018-09-07 2019-08-28 分配控制裝置和分配設備
CN201921441220.2U CN211338784U (zh) 2018-09-07 2019-08-30 分配控制装置和分配设备
CN201910816628.1A CN110885056B (zh) 2018-09-07 2019-08-30 分配控制装置和分配设备

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WO2020047845A1 (fr) * 2018-09-07 2020-03-12 石榴创新有限公司 Appareil de commande de distribution et appareil de distribution

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CN202589291U (zh) * 2012-04-27 2012-12-12 邵禹中 汽车自助饮料装置以及汽车
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CN211338784U (zh) 2020-08-25
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TWI707653B (zh) 2020-10-21
CN110885056B (zh) 2021-08-27

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