WO2012097632A1 - Machine de remplissage de matériau quantitativement irrégulier et procédé de remplissage quantitativement irrégulier - Google Patents

Machine de remplissage de matériau quantitativement irrégulier et procédé de remplissage quantitativement irrégulier Download PDF

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Publication number
WO2012097632A1
WO2012097632A1 PCT/CN2011/082019 CN2011082019W WO2012097632A1 WO 2012097632 A1 WO2012097632 A1 WO 2012097632A1 CN 2011082019 W CN2011082019 W CN 2011082019W WO 2012097632 A1 WO2012097632 A1 WO 2012097632A1
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WIPO (PCT)
Prior art keywords
weighing
compensation
hopper
feeding
station
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PCT/CN2011/082019
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English (en)
Chinese (zh)
Inventor
丁维扬
吴光辉
刘佛福
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广州市锐嘉包装设备有限公司
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Publication of WO2012097632A1 publication Critical patent/WO2012097632A1/fr

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B1/00Packaging fluent solid material, e.g. powders, granular or loose fibrous material, loose masses of small articles, in individual containers or receptacles, e.g. bags, sacks, boxes, cartons, cans, or jars
    • B65B1/30Devices or methods for controlling or determining the quantity or quality or the material fed or filled
    • B65B1/32Devices or methods for controlling or determining the quantity or quality or the material fed or filled by weighing
    • B65B1/34Adjusting weight by trickle feed
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B1/00Packaging fluent solid material, e.g. powders, granular or loose fibrous material, loose masses of small articles, in individual containers or receptacles, e.g. bags, sacks, boxes, cartons, cans, or jars
    • B65B1/30Devices or methods for controlling or determining the quantity or quality or the material fed or filled
    • B65B1/36Devices or methods for controlling or determining the quantity or quality or the material fed or filled by volumetric devices or methods
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01GWEIGHING
    • G01G15/00Arrangements for check-weighing of materials dispensed into removable containers
    • G01G15/001Volumetric pre-dispensing to an estimated weight; Gravimetric make-up device for target device

Definitions

  • the invention relates to the technical field of material canning, in particular to an irregular material quantitative filling machine and a quantitative filling method.
  • the canning method can meet the standard of the weight of each canned material, but there are many materials with irregular shapes, for example, pickles. Materials, granular Chinese patent medicines, etc. Therefore, the same weight of the same irregular material may have a large difference in its volume. In real life, articles of the same standard often need approximately the same amount in volume. In order to indicate the same standard, it is difficult to meet the canning requirements by simply weighing the cans; and, in the prior art, the canning is achieved by the volumetric method, for example, by using a single horizontal turntable. The scraper plate is installed on the surface of the turntable. When the can is installed, the excess material at the cup mouth is peeled off, and some are passed through the inclined turntable type; for the same volume of the same irregular material, the weight is also quite different. The amount of cans is very inaccurate.
  • the present invention is directed to the absence of the prior art, and its main object is to provide an irregular material quantitative filling machine and a quantitative filling method, which combines a fixed volume canned and a fixed weight canned.
  • the container is transported to different stations by means of conveyors and automated and accurate dosing of irregular materials is achieved.
  • An irregular material quantitative canning machine comprising a programmable logic controller, a rack and a conveying device sequentially disposed on the frame, a first weighing device, a main feeding device, and a second weighing device And a compensation unloading device, wherein the programmable controller is respectively connected to the conveying device, the first weighing device, the main feeding device, the second weighing device and the compensation feeding device;
  • the first weighing station, the fixed product unloading station, the second weighing station and the compensation unloading station are sequentially arranged along the conveying direction of the conveying device;
  • the first weighing device is located below the first weighing station, and includes a first weighing mechanism and a first lifting mechanism for driving the first weighing mechanism to lift; the first weighing mechanism is in the first lifting The container is lifted from the aforementioned conveyor belt by the mechanism for weighing;
  • the main feeding device is located above the above-mentioned fixed material unloading station, and comprises a fixed material discharging mechanism and a telescopic feeding mechanism, and a stepping motor and a driving device respectively arranged for the fixed material discharging mechanism and the telescopic feeding mechanism a cylinder body;
  • the fixed material discharging mechanism comprises a fixed hopper, a fixed conveyor belt and a conveying conduit, wherein a feeding end of the fixed conveyor belt is connected to an outlet of the lower end of the predetermined hopper, and the discharging of the fixed conveyor belt The end is connected to the opening of the upper end of the conveying conduit, and a dispensing valve is arranged in the conveying conduit near the upper end opening.
  • the conveying conduit is partially formed into two tubes, each of which is provided with a charging valve, and the lower ends of the two tubes are merged to form a a conduit discharge port;
  • the telescopic feeding mechanism is connected to the conduit discharge port, and comprises a fixed lower hopper, a telescopic lower hopper and a dustproof rubber ring, wherein the telescopic lower hopper can be slidably sleeved up and down in the hopper In the outer circumference, the dustproof rubber ring is sleeved on the outer circumference of the telescopic lower hopper.
  • the second weighing device is located below the second weighing station, and includes a second weighing mechanism and a second lifting mechanism for driving the second weighing mechanism to lift, the second weighing mechanism is in the second lifting
  • the container is lifted from the aforementioned conveyor belt by the mechanism for weighing;
  • the compensation unloading device is located above the compensation blanking station, and comprises a compensation hopper, a vibration tray and a compensation material discharge weighing bucket, the vibration tray is located under the compensation hopper, and the compensation blanking bucket is located at the vibration Below the tray, the material in the compensating hopper falls onto the vibrating tray. Under the vibration of the vibrating tray, the material falls into the aforementioned compensation weighing bucket, and the compensation is called the compensation.
  • the programmable logic controller controls the hopper to stop the feeding, and the vibrating tray stops vibrating, and the vibrating tray stops feeding to compensate the unloading scale.
  • An irregular material quantitative canning machine comprising a programmable logic controller, a rack and a conveying device sequentially disposed on the frame, a first weighing device, a main feeding device, and a second weighing device And a compensation unloading device, wherein the programmable controller is respectively connected to the conveying device, the first weighing device, the main feeding device, the second weighing device and the compensation feeding device;
  • the first weighing station, the fixed product unloading station, the second weighing station and the compensation unloading station are sequentially arranged along the conveying direction of the conveying device;
  • the first weighing device is located below the first weighing station, and includes a first weighing mechanism and a first lifting mechanism for driving the first weighing mechanism to lift; the first weighing mechanism is in the first lifting The container is jacked up for weighing by the mechanism;
  • the main feeding device is located above the predetermined lowering work station, and comprises a main hopper, a feeding screw, a lowering pressing rod, a feeding turntable and a plurality of measuring measuring cups circumferentially distributed on the feeding turntable;
  • the feeding turntable is rotated such that the corresponding blanking cup is open to the lower end of the main hopper, the feeding screw is located in the main hopper, driven by a motor, and the feeding screw is rotated and fed to the corresponding measuring cup, and
  • the measuring cup filled with the material is rotated above the container of the material to be loaded, the cutting rod is extended into the measuring cup and the material in the measuring cup is pressed downward into the container;
  • the second weighing device is located below the second weighing station, and includes a second weighing mechanism and a second lifting mechanism for driving the second weighing mechanism to lift, the second weighing mechanism is in the second lifting
  • the container is jacked up for weighing by the mechanism
  • the compensation unloading device is located above the compensation and unloading station, and comprises a compensation hopper, a compensation blanking hopper, a laterally disposed compensation feeding screw and a cutter at an output end of the compensation feeding screw; wherein The compensation feeding screw is located below the compensation hopper, and the compensation lowering weighing hopper is located below the output end of the compensation feeding screw, and the compensation feeding screw rotates to feed the material in the compensation hopper to the output end thereof, through the foregoing cutting
  • the knife cuts the material so that the material falls into the compensation weighing lowering bucket; when the compensation blanking said that the compensation material is sufficient, the programmable logic controller controls the compensation feeding screw to stop rotating, and the foregoing The cutter stops cutting the material to stop feeding the previously compensated blanking hopper.
  • the conveying device is provided with two blocking levers parallel to each other in the driving direction, and a conveying aisle for preventing the container from being displaced in the conveying direction is formed between the two blocking levers, and the first weighing station and the definite product are formed.
  • the unloading station, the second weighing station and the compensation unloading station are all disposed on the conveying aisle.
  • a waiting space is set between the second weighing station and the compensation blanking station.
  • a material quantitative canning method which transports a container through a conveying device and automatically completes the canning of the material, and the canning step is as follows:
  • the container is weighed by the first weighing device, and the numerical information is input to the programmable controller;
  • the main feeding device can container the container according to the single blanking volume set by the programmable controller
  • the charging container is weighed by the second weighing device, and the weight information is input to the programmable controller, and the programmable controller is compared with the canned weight according to the set standard canning weight.
  • the weight of the required compensation material is compared with the canned weight according to the set standard canning weight.
  • the programmable controller controls the compensation blanking device to perform compensation and cutting
  • the first weighing device, the main feeding device, the second weighing device and the compensation feeding device controlled by the programmable controller are sequentially arranged along the conveying direction, and the irregular material is passed through the main feeding device.
  • the fixed volume canning is carried out to realize the majority of the canning of the container, and then the micro-adjusting canning is performed by the compensation blanking device to realize the fixed-weight canning, so that the canning is more precise, and the volume and weight are from the volume and the weight.
  • the canning standard can be well met; and the entire canning process is to transport the container to different stations through the conveying device and carry out automatic weighing, canning, etc., and the degree of automation is high, thereby enabling rapid canning. , to improve production efficiency, suitable for large-scale production; In addition, the structure of the whole machine is compact, reducing the space occupied by it, which is conducive to the overall layout of the production workshop;
  • the foregoing main feeding device adopts a fixed volume by a fixed hopper and a fixed product, and is inserted into the container through the telescopic feeding mechanism for canning, which reduces the collision of materials during the conveying and cutting process. Good protection of materials, ideal for canning of granular fragile materials;
  • the foregoing main feeding device adopts multiple feedings, that is, two pipes are connected between the upper end opening and the lower end opening of the conveying pipe, so that the feeding is smoother, and at the same time, the material in the conveying pipe is reduced due to the material phase.
  • the foregoing main feeding device rotates the feeding through the feeding screw, and is provided with a pressing bar to push the material into the container.
  • the design of the structure is very suitable for the canning of the easily-compressed materials of the pickles.
  • the application of the material screw makes the feeding uniform and smooth, and the feeding pressure bar can realize the blanking into the container on the one hand, and at the same time, the material pressing bar can make the material evenly packed in the container, and the material in the container is topped up. The surface remains flat;
  • the foregoing canning steps are as follows: weighing the empty container, filling the volume, weighing and obtaining the difference to be compensated, compensating for the corresponding difference of the blanking, and all the data information in the process are feedback.
  • the entire canning process is simple, the canning is precise and the automation is high.
  • Figure 1 is a front elevational view showing a preferred embodiment of the first irregular material dosing machine of the present invention
  • Figure 2 is a side elevational view of a preferred embodiment of the first irregular material dosing machine of the present invention
  • Figure 3 is a plan view showing a preferred embodiment of the first irregular material dosing machine of the present invention.
  • FIG. 4 is a block diagram of a PLC control principle in the first irregular material quantitative filling machine of the present invention.
  • Figure 5 is a view showing the canning step of the first irregular material quantitative filling machine of the present invention.
  • Figure 6 is a front elevational view of a preferred embodiment of a second type of irregular material dosing machine of the present invention.
  • Figure 7 is a side elevational view of a preferred embodiment of a second irregular material dosing machine of the present invention.
  • Figure 8 is a plan view showing a preferred embodiment of a second irregular material dosing machine of the present invention.
  • FIG. 9 is a block diagram of a PLC control principle in a second type of irregular material quantitative canning machine of the present invention.
  • Figure 10 is a view showing the canning step of the second irregular material quantitative canning machine of the present invention.
  • FIG. 1 to FIG. 5 it shows the structure and working principle of the first irregular material quantitative filling machine of the present invention, and the irregular material quantitative filling machine of the structure is especially suitable for the granular shape.
  • Canned materials of fragile materials for example, irregular granular Chinese patent medicines, etc., which may be in bags or bottles;
  • the irregular material quantitative canning machine is connected with a bottle unscrambler at one end, and the other end is connected with a capping machine;
  • the utility model comprises a programmable logic controller, a frame 46 and a conveying device arranged on the frame 46 in sequence, first Secondary weighing device, main feeding device, second weighing device and compensation feeding device, the programmable controller is respectively connected with the foregoing conveying device, the first weighing device, the main feeding device, and the second weighing device
  • the device and the compensation unloading device are connected, and the programmable controller has a touch screen 11 to facilitate the operator to input relevant parameter values and the like, and the bottom of the rack 46 is provided with casters 47 and positioning legs 48;
  • the conveying device comprises a conveyor belt 30 and a motor for driving the conveyor belt 30, the motor adopts a frequency conversion speed regulating motor, which can be steplessly regulated; two gears parallel to each other are arranged along the transmission direction of the conveyor belt 30.
  • the rod 31 forms a conveying aisle between the two blocking rods 31 to prevent the bottle from being displaced in the conveying direction, and the first weighing station, the fixed product cutting station and the second are sequentially arranged along the conveying direction on the conveying aisle. Secondary weighing station, waiting for avoidance and compensation for the blanking station;
  • the first weighing device is located below the first weighing station, and includes a first weighing mechanism 32 and a first lifting mechanism 32 that drives the first weighing mechanism 31 to move up and down; the first weighing mechanism 31
  • the weighing platform 32 is lifted by the first lifting mechanism 32 to lift the bottle from the conveyor belt 30 for weighing;
  • the main feeding device is located above the fixed material unloading station, and comprises a fixed material discharging mechanism and a telescopic feeding mechanism, and a motor and a driving cylinder respectively disposed for the fixed material discharging mechanism and the telescopic feeding mechanism 20, for example, a hydraulic cylinder or a pneumatic cylinder;
  • the fixed discharge mechanism includes a fixed hopper 12, a fixed conveyor belt 13, and a delivery conduit 21, which is driven by a stepping motor 14,
  • the feeding end of the collecting conveyor belt 13 is connected to the outlet of the lower end of the above-mentioned fixed hopper 12, and the discharge end of the fixed conveyor belt 13 is connected to the opening of the upper end of the conveying duct 21, and the inside of the conveying duct 21 is disposed near the opening of the upper end
  • the second weighing device is located below the second weighing station, and includes a second weighing mechanism 44 and a second lifting mechanism 45 that drives the second weighing mechanism 44 to lift up and down.
  • the second weighing mechanism 44 The weighing platform 45 is lifted by the second lifting mechanism 45 to lift the bottle from the conveyor belt 30 for weighing;
  • the compensating and unloading device is located above the compensation and unloading station, and includes a compensating hopper 34, a vibrating tray 35 and a compensating material weighing bucket 36.
  • the vibrating tray 35 is located below the compensating hopper 34, and the compensating blank is provided.
  • the weighing 36 is located under the vibrating tray 35.
  • the compensating blank 36 has a single-chip microcomputer, and the material in the compensating hopper 34 falls onto the vibrating tray 35.
  • the programmable logic controller controls the compensation hopper 34 to stop the cutting, and the vibration tray 35 The vibration is stopped, and the vibrating tray 35 stops feeding to compensate for the unloading scale 36, and then the compensating material 36 is loaded into the bottle to be compensated by the compensating blank.
  • the bottle is transported by the transport device and the canning of the material is completed automatically.
  • the canning steps are as follows:
  • the main feeding device can not bottle the bottle according to the single blanking volume set by the programmable controller, for example, about 90% of the standard volume of the first can be set;
  • the weight information is input to the programmable controller, and the programmable controller is based on the set standard canned weight.
  • the programmable controller controls the compensation blanking device to perform the compensation blanking, and the compensation blanking weight is the above compensation amount;
  • FIG. 6 to FIG. 10 shows the structure and working principle of the second irregular material quantitative filling machine of the present invention, and is particularly suitable for the canning of the easily-compressed materials of pickles, for example, sauerkraut, Mustard, etc., which can be bottled or bagged, which is substantially the same as the structure and the canning step of the above-mentioned first material weighing cylinder, and the difference is that the main feeding device is different for the different characteristics of the material. And the structure of the compensation unloading device is different, and the specific description is as follows:
  • the main feeding device is located above the predetermined unloading station, and includes a main hopper 38, a feeding screw 37, a lower pressing rod 39, a feeding turntable 40, and a plurality of circumferentially distributed on the feeding turntable 40.
  • the measuring cup 41 is disposed in a direction perpendicular to the upper surface of the supply turntable 40, that is, the measuring cup 41 is in the height direction of the supply turntable 40; the feeding turntable 40 is rotated to make the corresponding
  • the measuring cup 41 is open to the lower end of the main hopper 38, and the feeding screw 37 is located in the main hopper 38, is driven by a motor, and the feeding screw 37 is rotated and fed into the corresponding blanking cup 41, and When the blanking cup 41 filled with the material is rotated above the empty bottle of the material to be loaded, the cutting rod 39 is extended into the measuring cup and the material in the measuring cup 41 is pressed downward into the bottle;
  • the compensating blanking device is located above the compensating blanking station, and includes a compensating hopper 34, a compensating blanking weigher 36, a laterally disposed compensating feeding screw 42 and a cutting at the output end of the compensating feeding screw 42.
  • the ram 43 is located below the compensating hopper 34.
  • the compensating blank 36 is located below the output end of the compensating feeding screw 42.
  • the compensating feeding screw 42 rotates to compensate the hopper 36.
  • the material is conveyed to the output end thereof, and the material is cut by the cutter 42 to make the material fall into the compensation for the lower weighing scale 36; when the compensation blank 36 is said to be sufficient for the compensation material, the foregoing programmable
  • the logic controller controls the compensation feed screw 42 to stop rotating, and the cutter 43 stops cutting the material to stop feeding the compensation blank 36, and then loads the compensation material into the bottle to be compensated by the compensation blank 36 Inside.
  • the design of the present invention is mainly focused on the first weighing device, the main feeding device, the second weighing device and the compensating feeding device controlled by the programmable controller in the conveying direction, and mainly through the main
  • the feeding device performs a fixed-volume filling of the irregular material to realize the majority of the canning of the container, and then, through the compensation of the feeding device, the micro-adjusting canning is carried out to realize the fixed-weight canning, so that the canning is more accurate.
  • it can meet the canning standard well in terms of volume and weight; and the whole canning process is to send the container to different stations through the conveying device and carry out automatic weighing, canning, etc., and the degree of automation is high.
  • the rapid canning can be realized, the production efficiency is improved, and the production is suitable for large-scale production; in addition, the structure of the whole machine is compactly arranged, the space occupied by the whole machine is reduced, and the overall layout of the production workshop is facilitated;
  • the aforementioned main feeding device is fixed in volume by the fixed hopper and the fixed conveying, and is inserted into the container through the telescopic feeding mechanism for canning, which reduces the collision of materials during the conveying and cutting process.
  • the foregoing main feeding device rotates the feeding material through the feeding screw, and is provided with a lowering pressing rod to push the material into the container.
  • the design of the structure is very suitable for the canning of the easily-compressed materials of the pickles.
  • the application of the feeding screw makes the feeding uniform and smooth, and the feeding bar can realize the blanking to the container on the one hand, and at the same time, the feeding bar can make the material evenly packed in the container and make the material in the container The uppermost surface remains flat;
  • the foregoing canning steps are: weighing the empty container, filling the volume, weighing, and obtaining the difference to be compensated, compensating for the corresponding difference of the blanking, and all the data information in the process are feedback.
  • the entire canning process is simple, the canning is precise and the automation is high.

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  • Engineering & Computer Science (AREA)
  • Quality & Reliability (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Filling Or Emptying Of Bunkers, Hoppers, And Tanks (AREA)
  • Basic Packing Technique (AREA)
  • Weight Measurement For Supplying Or Discharging Of Specified Amounts Of Material (AREA)

Abstract

L'invention porte sur une machine de remplissage de matériau quantitativement irrégulier et sur un procédé de remplissage quantitativement irrégulier. La machine de remplissage de matériau quantitativement irrégulier comprend un dispositif de pesage en un premier temps, un dispositif d'alimentation principal, un dispositif de pesage en un second temps et un dispositif d'alimentation de compensation, lesquels sont disposés en séquence le long de la direction de transport, et sont commandés par un dispositif de commande programmable. Le dispositif d'alimentation principal est utilisé pour un remplissage à volume constant de matériau irrégulier afin de réaliser un remplissage principal du récipient, après quoi le dispositif d'alimentation de compensation est utilisé pour un remplissage de réglage fin de façon à réaliser un remplissage à poids constant, de sorte que le remplissage soit plus précis et puisse satisfaire efficacement aux exigences de normes de remplissage vis-à-vis du volume et du poids. Par ailleurs, dans la totalité du processus de remplissage, les récipients sont transportés par un dispositif de transport vers différentes stations, et sont automatiquement pesés, remplis, etc. Elle présente les caractéristiques d'automatisation de haut niveau, de façon à réaliser ainsi un remplissage rapide, à améliorer le rendement de production, et à être appropriée pour une production à grande échelle. En outre, la structure de toute la machine est de configuration compacte, réduisant l'espace occupé par la machine et bénéficiant à l'agencement intégral d'un atelier.
PCT/CN2011/082019 2011-01-18 2011-11-10 Machine de remplissage de matériau quantitativement irrégulier et procédé de remplissage quantitativement irrégulier WO2012097632A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201110020517.3 2011-01-18
CN 201110020517 CN102582856B (zh) 2011-01-18 2011-01-18 不规则物料定量罐装机

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WO2012097632A1 true WO2012097632A1 (fr) 2012-07-26

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