WO2017153803A1 - Équipement de distribution de produits chimiques liquides et visqueux avec système de contrôle intégré - Google Patents

Équipement de distribution de produits chimiques liquides et visqueux avec système de contrôle intégré Download PDF

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Publication number
WO2017153803A1
WO2017153803A1 PCT/IB2016/051259 IB2016051259W WO2017153803A1 WO 2017153803 A1 WO2017153803 A1 WO 2017153803A1 IB 2016051259 W IB2016051259 W IB 2016051259W WO 2017153803 A1 WO2017153803 A1 WO 2017153803A1
Authority
WO
WIPO (PCT)
Prior art keywords
control
filling
card
tank
level
Prior art date
Application number
PCT/IB2016/051259
Other languages
English (en)
Spanish (es)
Other versions
WO2017153803A8 (fr
Inventor
Jesus Antonio LEON GARCIA
Original Assignee
Leon Garcia Jesus Antonio
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 Leon Garcia Jesus Antonio filed Critical Leon Garcia Jesus Antonio
Priority to MX2017005464A priority Critical patent/MX2017005464A/es
Priority to PCT/IB2016/051259 priority patent/WO2017153803A1/fr
Priority to BR112017009460A priority patent/BR112017009460A2/pt
Publication of WO2017153803A1 publication Critical patent/WO2017153803A1/fr
Publication of WO2017153803A8 publication Critical patent/WO2017153803A8/fr

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Classifications

    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F13/00Coin-freed apparatus for controlling dispensing or fluids, semiliquids or granular material from reservoirs
    • G07F13/06Coin-freed apparatus for controlling dispensing or fluids, semiliquids or granular material from reservoirs with selective dispensing of different fluids or materials or mixtures thereof

Definitions

  • the present invention relates to the field of Engineering, particularly in the area of electromechanics, by providing liquid and viscous chemical dispensing equipment with an integrated control system, for domestic, institutional and industrial use.
  • the purpose is to offer the user products in bulk or environmentally friendly, that meet their needs, avoiding the manufacture of new plastic packaging by reusing existing ones.
  • the dispensing equipment is friendly and works with a supply system capable of accepting any container, according to the volumes dispensed by the
  • the equipment has a remote and local communication system, achieving connectivity via Internet (wi-fi) or through a telephone line (sim card) which allows to report the status of its components, level of filling of product tanks , rebozo and transactions made.
  • Wi-fi Internet
  • im card telephone line
  • US3701202A entitled “Distributor for liquid textile conditioners” October 31, 1972 invented by Compa, Russel Edward, et al; it consists of a buidor of liquid textile conditioners for use in combination with the dryer drum comprising a detachable elongate container. Likewise, the container has a series of outlet openings and is covered with a porous material for the distribution of the substance.
  • the new invention does not require fixing to the dryer drum for its execution, in addition the new invention has control and handling characteristics that do not exist in the state of the art such as electronic integrated control mechanisms, communication device, injection pumps, injection sensors filling, monitoring and execution.
  • US646361 entitled “Apparatus for dispensing incompatible chemicas to a common utilization point" October 15, 2002, by Mattia, Paul J., et al; it is an apparatus that avoids an undesirable chemical reaction between different streams of liquid chemical in a dispenser comprising a dispenser having a common collector that leads to a place of use.
  • the common collector has a pumping station directed to the common collector and the pumping station has at least two chemical inlet lines.
  • the dispenser is controlled by an electromechanical controller that prevents the pumping of two chemical liquid streams in sequence without the intervention of a water wash and simultaneously prevents the pumping of two liquid streams.
  • the liquid inlets to the pumping station are adapted so that the inlets can be connected only to containers that fit the keys.
  • US646361 1 is specially designed to dispense incompatible series liquid chemicals that guarantee safety conditions, to avoid undesirable chemical reactions.
  • the new invention allows bulk content to be dispensed either in the liquid state or in the solid state to dilute, a solution that improves the limited dispensing function of this background US646361 1.
  • the magnetically coupled pump with heads is inexpensive, allows simple installation, and is disposable.
  • Multiple pump heads can be coupled to a single drive or module control module to provide simultaneous measurement of multiple fluids and to maintain the precise volume ratio of multiple fluids to each other.
  • the magnetic pump head can be integrated with radiofrequency identification devices (RFID) and Hall Effect Sensors to provide personalized control and fault-free operation.
  • RFID radiofrequency identification devices
  • the new invention does not have magnetic coupling heads in the pump, since it has its own form of adjustment, in addition its monitoring and control system has GSM, Wi-Fi, Sensors, UPS connection devices that do not exist in the state of the art.
  • Figure 1 It is a perspective figure of a dispensing device with all its electro-mechanical elements that integrate it.
  • Figure 2 It is a perspective figure of the main structure of a dispensing equipment with all flat views that detail it.
  • Figure 3 It is a frame for the assembly of a convex door provided with a central cavity for the insertion of another frame or window for the base of the containers to be filled.
  • Figure 4 It is the static mixing system with all its mechanical elements that compose it.
  • Figure 5 It is the dynamic mixing system with all its mechanical elements that compose it.
  • Figure 6 It is the injection system of the liquid or viscous product.
  • Figure 7 It is one of the base variants for the selected bottles.
  • Figure 8 It is another of the base variants for the selected bottles.
  • Figure 9 It is the main and overflow tank of the liquid or viscous product.
  • Figure 10 It is a block diagram of the finished product control system.
  • Figure 11 It is a block diagram of the control system with the static mixer.
  • Figure 12 It is a block diagram of the control system with the dynamic mixer.
  • Figure 13 It is a diagram of the electronic control system provided with a main control card; of a connection card, and other integrated elements for its ideal operation. Detailed description of the figures.
  • the description of the invention begins with the perspective figure of a dispensing equipment finished with all its electro-mechanical elements that integrate it comprised of the Metallic structure (figure 2) that can vary according to the available physical spaces, and with Adjustable load capacity according to the size and weight of the main tank.
  • the structure of Figure 2 is illustrated by Figures 2A, 2B and 2C in flat views; the metal door figure 3: it is convex in shape with space available for the insertion of advertising image figure 3B which in turn receives a frame and window figure 3B, it is made with high impact material that allows to protect the internal parts of machine.
  • Figure 4 represents the Static Mixing system, which consists of the union of fluids through a mixing process, it is designed to handle varying proportions of different liquids, the mixing process occurs in three stages:
  • a first injector sucks filtered water from a tank in a certain proportion.
  • a second injector sucks the concentrate from the main tank in a previously defined proportion.
  • Both injectors feed the static mixer with a constant flow and pressure in order to achieve a homogeneous mixture, which is deposited in a tank of finished product, from which it is subsequently suctioned by the injection system to be dispensed into of the container
  • Figure 5 is the dynamic mixing system, which consists of the union of fluids through a mixing process, it is designed to handle varying proportions of different liquids, the mixing process occurs in three stages:
  • a diaphragm pump sucks filtered water from a tank in a certain proportion.
  • a second diaphragm pump sucks the concentrate from the main tank in a previously defined proportion.
  • Figure 6 is the system of Injection of liquids for domestic, institutional and industrial use, with dispenser for filling containers of different sizes according to the preference of the consumer, it contains a cylinder that allows the laminar flow of liquids avoiding Foaming and occlusion thereof, on the other hand, has two solenoid valves, one for filling and the other for the return of liquid from the Cylinder to the Main tank.
  • the dispensing spout has perforations distributed in such a way that guarantees the filling of the bottle without generating foam. Additionally, it has a filling control sensor that prevents product spillage. Finally, there is a gate for drip control of the filling peak.
  • Figures 7 and 8 are the optional bottle bases: Replaceable or replaceable bases capable of adapting to the most commonly used containers in each country or region, they have three sensors one at each level that detect the presence of the container and activate The filling system.
  • Figure 9 is that of the main tank; Its design allows you to efficiently take advantage of the available internal spaces, being able to adapt the size according to market demand.
  • the tank cover has three connections: one for filling with safety coupling that guarantees the correct supply of the product selected by the user, another connection for liquid level control, and a third connection for suction from the tank to the injection cylinder .
  • In said figure 9G is the overflow tank; used to store spilled liquid, it is placed on a platform that has sensors proximity, which by weight allow to determine the level of filling of the tank.
  • FIG. 10 is a block diagram of the control system: content of all electronic parts and parts that control all equipment processes. It is made up of:
  • UPS used to energize the machine at the time of a power cut.
  • Power source its function is to power the control card.
  • Electro fans Used to guarantee the temperature of the following parts: power source, control and communication card, relay card and motor.
  • WIFI Control Card responsible for managing all machine functions and establishing local wireless communication through the TCP / IP protocol.
  • GSM Card Establish remote connectivity with the control center via SMS.
  • Relay Cards Used to control the Output signals sent by the control card to the following components: Motor, valves and electro motor fan.
  • Packaging detector sensors determines that the bottle placed corresponds to the shapes and measures that equipment allows.
  • Filling control sensor Used to define a starting or starting point in the bottle filling process.
  • Spill control sensor Used for spill control during the bottle filling process.
  • Discharge volume control sensor Controls the amount of product requested by the user.
  • Inventory level sensor Used to control the Inventory level of the Main Tank.
  • Overflow level sensor It has two functions, the first one controlling the filling level of the tank avoiding the spillage of the liquid and the second turning off the machine at the time of a spill.
  • Process status screen informs the user of the steps to follow to execute the purchase of the product.
  • Scanner Bar code reader system used to activate the bottle filling process.
  • Figures 1 1 and 12 are the block diagrams illustrating the interconnection between the different elements to control the systems of static and dynamic mixers.
  • Figure 13 is the main control card:
  • the Atheros processor supports an OpenWrt-based Linux distribution called OpenWrt-Yun.
  • the YUN card has built-in Ethernet and WiFi connections, USB-A port, micro-SD card port, for storage of large volumes of information, 20 digital Input / Output ports, of which pin 7 can be used for outputs PWM type and 12 analog inputs of 0-5VDC.
  • the programming of the YUN card is carried out in the programming language C, in a development environment provided by the same card manufacturer that has been selected in a standard for the development of process control applications.
  • Figure 13A is a communication card, of USM Card, which allows an ARDUINO YUN card (Main Control Card) to connect to the telephone network and through it to the internet, make and receive voice calls (requires hearing aid and microphone not included with the card) and send and receive SMS text messages.
  • the ARDUINO-GSM card uses a M10 radio frequency modem brand Quectel. Digital pins 2 and 3 are used for serial communication with the M10 modem. Pin 2 is connected to the TX pin of modem M1 0 and pin 3 to the pin RX of the modem.
  • the M10 modem is Quad-band GSM / GPRS that works at frequencies GSM850MHz, GSM900MHz, DCS1800MHz and PCS 1900MHz.
  • FIG. 1 3B is a relay card; This card has 8 relays with 12 VDC coil and with capacity to withstand loads of up to 10 amps. It is used, together with the ARDUINO YUN program card (Main Control Card), to activate / deactivate control elements, such as valves, motors, etc. Each relay is an independent output that can be used at any time by the control program, resident in the ARDUINO YUN Card (Main Control Card), to take action on the control elements of the process in operation.
  • Figure 13C is a "Switching" power source of 12 VDC and 10 amp capacity.
  • Figure 13D is a barcode reader that captures virtually all 1D and 2D barcodes designed to be installed in a fixed position, has a 624 MHz processor, RS232 interface, USB and RS485.
  • Figure 13E is the text screen; LCD display with 4 lines of text, with a capacity of 20 characters per line. It is connected to the ARDUINO YUN control card (Main Control Card) through the I2C communications protocol. It has backlight illumination and is powered by 5VDC that are supplied by the main control card. The program that runs on the control card uses this monitor to inform the user of the status of the purchase process and possible errors that may occur.

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Accessories For Mixers (AREA)
  • Control Of Non-Electrical Variables (AREA)
  • Devices For Dispensing Beverages (AREA)
  • Feeding, Discharge, Calcimining, Fusing, And Gas-Generation Devices (AREA)
  • Control And Other Processes For Unpacking Of Materials (AREA)

Abstract

La présente invention concerne le domaine de l'électromécanique constituée d'un équipement de distribution de produits chimiques liquides et visqueux avec un système de contrôle intégré, à usage domestique, institutionnel et industriel. L'objet est d'offrir à l'utilisateur des produits en vrac écologiques, qui satisfassent ses besoins, évitant la fabrication de nouveaux emballages plastiques par la réutilisation de ceux déjà existants. L'équipement de distribution est écologique et fonctionne avec un système d'administration pouvant accepter n'importe quel récipient, selon les volumes distribués par l'équipement. Ledit équipement peut fonctionner avec le mélange préparé et déposé dans un réservoir principal ou utiliser un mélangeur statique ou dynamique, pour distribuer un produit final selon différentes quantités définies, au moyen d'un système électromécanique intégré à l'équipement avec des capteurs de niveau et commandés à leur tour par une carte électronique qui gère tous les éléments et procédés qui sont associés. L'équipement comprend un système de communication à distance et local, permettant la connectivité par Internet (wi-fi) ou par l'intermédiaire d'une ligne téléphonique (carte SIM), permettant de communiquer l'état de ses composants, le niveau de remplissage des réservoirs de produit et le trop-plein, ainsi que les transactions effectuées.
PCT/IB2016/051259 2016-03-05 2016-03-05 Équipement de distribution de produits chimiques liquides et visqueux avec système de contrôle intégré WO2017153803A1 (fr)

Priority Applications (3)

Application Number Priority Date Filing Date Title
MX2017005464A MX2017005464A (es) 2016-03-05 2016-03-05 Maquina automatica dispensadora de detergentes liquidos y viscosos con sistema de control remoto integrado.
PCT/IB2016/051259 WO2017153803A1 (fr) 2016-03-05 2016-03-05 Équipement de distribution de produits chimiques liquides et visqueux avec système de contrôle intégré
BR112017009460A BR112017009460A2 (pt) 2016-03-05 2016-03-05 máquina automática dispensadora de detergentes líquidos e viscosos com sistema de controle remoto integrado

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/IB2016/051259 WO2017153803A1 (fr) 2016-03-05 2016-03-05 Équipement de distribution de produits chimiques liquides et visqueux avec système de contrôle intégré

Publications (2)

Publication Number Publication Date
WO2017153803A1 true WO2017153803A1 (fr) 2017-09-14
WO2017153803A8 WO2017153803A8 (fr) 2017-11-30

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Family Applications (1)

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PCT/IB2016/051259 WO2017153803A1 (fr) 2016-03-05 2016-03-05 Équipement de distribution de produits chimiques liquides et visqueux avec système de contrôle intégré

Country Status (3)

Country Link
BR (1) BR112017009460A2 (fr)
MX (1) MX2017005464A (fr)
WO (1) WO2017153803A1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ES2724776A1 (es) * 2018-03-09 2019-09-16 Elortegui Josu Larrauri Sistema para la gestión y control de botellas o garrafas de agua

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2003038770A2 (fr) * 2001-10-29 2003-05-08 Alfredo Con Distributeur de boissons autonome
US20150013545A1 (en) * 2012-03-09 2015-01-15 Schaerer Ag Beverage vending machine and outflow module for such a beverage vending machine
US20150102049A1 (en) * 2011-10-05 2015-04-16 Brett Fleishman Automatic dispensing system method and apparatus
US20150225224A1 (en) * 2010-02-05 2015-08-13 Ecowell, Llc Container-less custom beverage vending invention
US20150230653A1 (en) * 2014-02-19 2015-08-20 Bi Cheng Method and apparatus for facilitating automatic beverage preparation via cyber ordering

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2003038770A2 (fr) * 2001-10-29 2003-05-08 Alfredo Con Distributeur de boissons autonome
US20150225224A1 (en) * 2010-02-05 2015-08-13 Ecowell, Llc Container-less custom beverage vending invention
US20150102049A1 (en) * 2011-10-05 2015-04-16 Brett Fleishman Automatic dispensing system method and apparatus
US20150013545A1 (en) * 2012-03-09 2015-01-15 Schaerer Ag Beverage vending machine and outflow module for such a beverage vending machine
US20150230653A1 (en) * 2014-02-19 2015-08-20 Bi Cheng Method and apparatus for facilitating automatic beverage preparation via cyber ordering

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ES2724776A1 (es) * 2018-03-09 2019-09-16 Elortegui Josu Larrauri Sistema para la gestión y control de botellas o garrafas de agua

Also Published As

Publication number Publication date
WO2017153803A8 (fr) 2017-11-30
MX2017005464A (es) 2017-11-30
BR112017009460A2 (pt) 2019-09-24

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