CN214566298U - Biochemical quantitative partial shipment device - Google Patents

Biochemical quantitative partial shipment device Download PDF

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Publication number
CN214566298U
CN214566298U CN202120861616.3U CN202120861616U CN214566298U CN 214566298 U CN214566298 U CN 214566298U CN 202120861616 U CN202120861616 U CN 202120861616U CN 214566298 U CN214566298 U CN 214566298U
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module
weighing
medicament
control unit
weighing sensor
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CN202120861616.3U
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刘红僯
张玉庭
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Pinran Guangzhou Biotech Co ltd
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Pinran Guangzhou Biotech Co ltd
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Abstract

The utility model discloses a biochemical quantitative subpackaging device, which comprises a supporting module, a control unit, a material conveying module and a weighing module, wherein the control unit, the material conveying module and the weighing module are all arranged at the supporting module; this biochemical quantitative subpackage device pumps the medicament in the storage bucket to placing in the mould of fly leaf department and pressing in the medicament bottle on weighing sensor through defeated material module, the weight of medicament in the weighing sensor real-time measurement medicament bottle, and then opening of real time control peristaltic pump stops, it is invariable to guarantee the medicament volume in each medicament bottle, simultaneously can remove empty medicament bottle to defeated material module below through the fly leaf and carry out the feeding operation of empty bottle fast, can also remove the medicament bottle of the good medicament of dress from the working range of defeated material module, be convenient for retrieve the medicament bottle and place new medicament bottle, effectively accelerate production efficiency.

Description

Biochemical quantitative partial shipment device
Technical Field
The utility model relates to a biochemical field, concretely relates to biochemical ration partial shipment device.
Background
Nowadays, with the progress of society, various high-end field technologies are continuously advanced, and the biochemical field is one of the fields; various medicaments are required to be used for quantitative subpackage in medicament batch production in the biochemical field, and the subpackage in the existing biochemical medicaments in small batch production is generally carried out manually, so that the efficiency is low, the medicaments are artificially subpackaged, the subpackage amount error of the medicaments is large, and the subsequent operation and use are not facilitated.
SUMMERY OF THE UTILITY MODEL
The utility model discloses it is anticipated to provide a biochemical ration partial shipment device high-efficient, accurate.
In order to achieve the above purpose, the following scheme is provided: the utility model provides a biochemical quantitative partial shipment device, includes support module, the control unit, defeated material module and weighing module, the control unit, defeated material module, weighing module are all installed in support module department, weighing module installs in defeated material module below, defeated material module, weighing module all are connected with the control unit electricity, weighing module includes fly leaf, weighing sensor and mould, the fly leaf is installed in support module department and fly leaf and support module interactive connection, be equipped with a plurality of mounting grooves on the fly leaf, the die mounting is in the mounting groove, be equipped with the weighing sensor who is connected with the control unit electricity in the support module, weighing sensor is located the mould under and weighing sensor is located defeated material module.
Further, the support module includes base and organism, the organism is installed on the base, defeated material module and the control unit are all installed on the organism, weigh the module and install on the base, are equipped with the movable groove on the base, and the both sides of movable groove are equipped with the spout, the both sides of fly leaf all are equipped with the slider, and the fly leaf is installed in the movable groove and fly leaf and movable groove are sliding connection, slider and spout adaptation and both are sliding connection.
Further, the feeding module comprises a plurality of feeding mechanisms, each feeding mechanism comprises a feeding pipe, a peristaltic pump and a material dripping head, the peristaltic pump and the material dripping heads are both installed on the machine body, the material dripping heads are connected with one ends of the feeding pipes, the feeding pipes are installed at the positions of the peristaltic pumps, and the material dripping heads are located above the weighing sensors.
Further, the defeated material of weighing sensor is the same with the defeated material of defeated material mechanism, and the mounting groove quantity of fly leaf department is weighing sensor's twice.
Further, the control unit comprises a main control board, an operation panel and a display panel, wherein the operation panel and the display panel are both installed on the surface of the machine body, the main control board is installed in the machine body, and the main control board is electrically connected with the operation panel, the display panel and the weighing sensor.
Furthermore, the control unit also comprises a plurality of infrared sensors, the infrared sensors are electrically connected with the main control board, the number of the infrared sensors is the same as that of the weighing sensors, and the infrared sensors are installed on the machine body and are positioned below the material dripping head.
The utility model discloses a theory of operation and advantage lie in: this biochemical quantitative subpackage device pumps the medicament in the storage bucket to placing in the mould of fly leaf department and pressing in the medicament bottle on weighing sensor through defeated material module, the weight of medicament in the weighing sensor real-time measurement medicament bottle, and then opening of real time control peristaltic pump stops, it is invariable to guarantee the medicament volume in each medicament bottle, simultaneously can remove empty medicament bottle to defeated material module below through the fly leaf and carry out the feeding operation of empty bottle fast, can also remove the medicament bottle of the good medicament of dress from the working range of defeated material module, be convenient for retrieve the medicament bottle and place new medicament bottle, effectively accelerate production efficiency.
Drawings
Fig. 1 is a schematic structural view of the present invention;
fig. 2 is a front view of the present invention.
Reference numerals in the drawings of the specification include:
1. the automatic feeding device comprises a base, a machine body, a material conveying pipe, a peristaltic pump, a material dripping head, an operation panel, a display panel, an infrared sensor, a movable plate, a sliding block, a movable groove, a sliding groove, a weighing sensor, a mounting groove and a die, wherein the material conveying pipe is arranged at 3, the peristaltic pump is arranged at 4, the material dripping head is arranged at 5, the operation panel is arranged at 6, the display panel is arranged at 7, the infrared sensor is arranged at 8, the movable plate is arranged at 9, the sliding block is arranged at 10, the movable groove is arranged at 11, the sliding groove is arranged at 12, the weighing sensor is arranged at 13, the mounting groove is arranged at 14, and the die is arranged at 15.
Detailed Description
The following is further detailed by the specific embodiments:
as shown in fig. 1 and 2, a biochemical quantitative subpackaging device comprises a supporting module, a control unit, a material conveying module and a weighing module, wherein the control unit, the material conveying module and the weighing module are all installed at the supporting module, the weighing module is installed below the material conveying module, the material conveying module and the weighing module are all electrically connected with the control unit, the weighing module comprises a movable plate 9, a weighing sensor 13 and a mold 15, the movable plate 9 is installed at the supporting module and is interactively connected with the movable plate 9, a plurality of mounting grooves 14 are formed in the movable plate 9, the mold 15 is installed in the mounting grooves 14, a weighing sensor 13 electrically connected with the control unit is arranged in the supporting module, the weighing sensor 13 is located under the mold 15, and the weighing sensor is located under the material conveying module.
Wherein, the supporting module is the basic supporting component of this device, the control unit is the controlling element of this device, a module and the finished product module are failed in the control, defeated material module is arranged in inputing the medicament to empty medicament bottle, weighing module is arranged in real-time detection will extremely the medicament weight in, portable plate 9 is installed in the position of mould 15 restriction medicament bottle wherein in coordination, mould 15 is removable, mould 15 specific model size can be according to the customization of medicament bottle, weighing sensor 13 is used for weighing medicament bottle and the medicament weight in it, and in real-time passback to the control unit, weighing sensor 13 is current mature technique, no longer give unnecessary details here.
As shown in fig. 1 and 2, the supporting module includes a base 1 and a machine body 2, the machine body 2 is installed on the base 1, the material conveying module and the control unit are both installed on the machine body 2, the weighing module is installed on the base 1, a movable groove 11 is arranged on the base 1, sliding grooves 12 are arranged on both sides of the movable groove 11, sliding blocks 10 are arranged on both sides of the movable plate 9, the movable plate 9 is installed in the movable groove 11, the movable plate 9 is in sliding connection with the movable groove 11, and the sliding blocks 10 are in sliding connection with the sliding grooves 12 and are in sliding connection with the sliding grooves 9.
The base 1 and the machine body 2 are mounted in an L shape, the movable groove 11 on the base 1 is matched with the movable plate 9, and the sliding groove 12 is matched with the sliding block 10 and used for limiting the movement of the movable plate 9.
As shown in fig. 1 and 2, the feeding module comprises a plurality of feeding mechanisms, each feeding mechanism comprises a feeding pipe 3, a peristaltic pump 4 and a material dropping head 5, the peristaltic pump 4 and the material dropping head 5 are both mounted on the machine body 2, the material dropping head 5 is connected with one end of the feeding pipe 3, the feeding pipe 3 is mounted at the peristaltic pump 4, and the material dropping head 5 is located above the weighing sensor 13.
Wherein, conveying pipeline 3 is used for connecting feed cylinder and dripper 5, and peristaltic pump 4 is used for extrudeing conveying pipeline 3 and carries the medicament in the feed cylinder to dripper 5 in through conveying pipeline 3.
As shown in fig. 2, the material feeding of the weighing sensor 13 is the same as the material feeding of the material feeding mechanism, and the number of the mounting grooves 14 at the movable plate 9 is twice that of the weighing sensor 13.
Wherein, the mounting groove 14 quantity of fly leaf 9 department is the twice of defeated material mechanism and weighing sensor 13 for fly leaf 9 mountable is twice the medicament bottle of defeated material mechanism, can be when partly medicament bottle irritates the material operation, and the operation of receiving the material and placing empty medicament bottle is located to another part mould 15, makes production efficiency faster.
As shown in fig. 1 and 2, the control unit includes a main control board, an operation panel 6 and a display panel 7, the operation panel 6 and the display panel 7 are both installed on the surface of the machine body 2, the main control board is installed in the machine body 2, and the main control board is electrically connected with the operation panel 6, the display panel 7 and the weighing sensor 13.
The main control panel comprises a single chip microcomputer controller and other auxiliary control circuits, the operation panel 6 is used for operating the device, and the display panel 7 is used for displaying the operation parameters of the device.
As shown in fig. 1 and 2, the control unit further includes a plurality of infrared sensors 8, the infrared sensors 8 are electrically connected to the main control board, the number of the infrared sensors 8 is the same as that of the weighing sensors 13, and the infrared sensors 8 are mounted on the machine body 2 and located below the material dropping head 5.
Wherein, infrared ray sensor 8 is infrared ray range finding sensor, and for current mature technique, infrared ray sensor 8 is used for detecting whether the object has been placed to weighing sensor 13 top.
The specific implementation process is as follows:
when the biochemical quantitative subpackaging device is used, firstly, the empty bottle tare weight range and the filling weight of the medicament bottle are set through the operation panel 6, then the empty bottle is placed at each mould 15 at the movable plate 9, the moulds 15 and the empty bottle are in clearance fit, and the weighing error of the weighing sensor 13 caused by the force between the moulds 15 and the empty bottle is avoided; then, the movable plate 9 is pushed, so that the empty medicament bottle moves to a position right below a material dripping head 5 of the material conveying mechanism, the weighing sensor 13 detects the weight of the empty medicament bottle and transmits the weight back to the main control board, the main control board compares the weight of the empty medicament bottle with a preset weight to identify whether the matched empty medicament bottle is placed or not, meanwhile, the infrared sensor 8 detects whether the medicament bottle exists on a corresponding station or not, and the main control board identifies whether the correct medicament bottle is placed or not according to the returned data of the weighing sensor and the infrared sensor 8; if the main control board judges that a correct medicament bottle is placed, the main control board controls the peristaltic pump 4 to be started, the peristaltic pump 4 pumps the biochemical medicament in the material barrel to the medicament bottle through the material conveying pipe 3 and the material dropping head 5, the weighing sensor 13 detects the weight of the medicament bottle and the filled medicament in real time and transmits the weight back to the main control board in real time, when the main control board receives the medicament bottle and the weight of the medicament in the medicament bottle reaches a preset value, the main control board controls the peristaltic pump 4 to rotate reversely, the residual medicament at the material dropping head 5 is pumped back, and the phenomenon that the medicament of the material dropping head 5 drops to the medicament bottle due to the gravity to cause the filling error of the medicament is avoided; after the medicament bottle is filled, the movable plate 9 is pushed, so that a new empty medicament bottle enters the position above the weighing sensor 13, namely the filling area, and the filled medicament bottle is manually taken down and put into the new empty medicament bottle; the biochemical agents can be continuously filled by circulating the processes.
This biochemical quantitative subpackage device pumps the medicament in the storage bucket to placing in fly leaf 9 department's mould 15 and pressing in the medicament bottle on weighing sensor 13 through defeated material module, the weight of the interior medicament of weighing sensor 13 real-time measurement medicament bottle, and then real-time control peristaltic pump 4 opens and stops, guarantee that the medicament volume in each medicament bottle is invariable, simultaneously can remove empty medicament bottle to defeated material module below through fly leaf 9 fast and carry out the feeding operation of empty bottle, can also remove the medicament bottle of the good medicament of dress from the working range of defeated material module, be convenient for retrieve the medicament bottle and place new medicament bottle, effectively accelerate production efficiency.
The foregoing are merely exemplary embodiments of the present invention, and no attempt is made to show structural details, features, or other details of the present invention in the form of a more detailed description, which is presented for the purpose of illustration only, the more detailed description being taken by way of example only, and the more detailed description being presented for the purpose of illustrating the principles of the invention as embodied in the form of a more complete and readily available computer-readable medium. It should be noted that, for those skilled in the art, without departing from the structure of the present invention, several modifications and improvements can be made, which should also be regarded as the protection scope of the present invention, and these will not affect the effect of the implementation of the present invention and the applicability of the patent. The scope of the claims of the present application shall be determined by the contents of the claims, and the description of the embodiments and the like in the specification shall be used to explain the contents of the claims.

Claims (6)

1. The utility model provides a biochemical ration partial shipment device which characterized in that: including support module, the control unit, defeated material module and weighing module, the control unit, defeated material module, weighing module are all installed in support module department, weighing module installs in defeated material module below, defeated material module, weighing module all are connected with the control unit electricity, weighing module includes fly leaf, weighing sensor and mould, the fly leaf is installed in support module department and fly leaf and support module interactive connection, be equipped with a plurality of mounting grooves on the fly leaf, die mounting is in the mounting groove, be equipped with the weighing sensor who is connected with the control unit electricity in the support module, weighing sensor is located the mould under and weighing sensor is located defeated material module.
2. The biochemical quantitative racking device according to claim 1, wherein: the supporting module comprises a base and a machine body, the machine body is installed on the base, the material conveying module and the control unit are installed on the machine body, the weighing module is installed on the base, a movable groove is formed in the base, sliding grooves are formed in the two sides of the movable groove, sliding blocks are arranged on the two sides of the movable plate, the movable plate is installed in the movable groove, the movable plate is in sliding connection with the movable groove, and the sliding blocks are in sliding connection with the sliding grooves in an adaptive mode.
3. The biochemical quantitative racking device according to claim 1, wherein: the material conveying module comprises a plurality of material conveying mechanisms, each material conveying mechanism comprises a material conveying pipe, a peristaltic pump and a material dripping head, the peristaltic pumps and the material dripping heads are both installed on the machine body, the material dripping heads are connected with one ends of the material conveying pipes, the material conveying pipes are installed at the positions of the peristaltic pumps, and the material dripping heads are located above the weighing sensors.
4. The biochemical quantitative racking device according to claim 1, wherein: the defeated material of weighing sensor is the same with the defeated material of defeated material mechanism, and the mounting groove quantity of fly leaf department is weighing sensor's twice.
5. The biochemical quantitative racking device according to claim 1, wherein: the control unit comprises a main control board, an operation panel and a display panel, wherein the operation panel and the display panel are both installed on the surface of the machine body, the main control board is installed in the machine body, and the main control board is electrically connected with the operation panel, the display panel and the weighing sensor.
6. The biochemical quantitative packaging device according to claim 5, wherein: the control unit further comprises a plurality of infrared sensors, the infrared sensors are electrically connected with the main control board, the number of the infrared sensors is the same as that of the weighing sensors, and the infrared sensors are installed on the machine body and located below the material dripping head.
CN202120861616.3U 2021-04-25 2021-04-25 Biochemical quantitative partial shipment device Active CN214566298U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120861616.3U CN214566298U (en) 2021-04-25 2021-04-25 Biochemical quantitative partial shipment device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120861616.3U CN214566298U (en) 2021-04-25 2021-04-25 Biochemical quantitative partial shipment device

Publications (1)

Publication Number Publication Date
CN214566298U true CN214566298U (en) 2021-11-02

Family

ID=78328060

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120861616.3U Active CN214566298U (en) 2021-04-25 2021-04-25 Biochemical quantitative partial shipment device

Country Status (1)

Country Link
CN (1) CN214566298U (en)

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