CN215323497U - Multi-channel automatic sorting and material placing device for long cylindrical products and packaging production line - Google Patents
Multi-channel automatic sorting and material placing device for long cylindrical products and packaging production line Download PDFInfo
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- CN215323497U CN215323497U CN202120676380.6U CN202120676380U CN215323497U CN 215323497 U CN215323497 U CN 215323497U CN 202120676380 U CN202120676380 U CN 202120676380U CN 215323497 U CN215323497 U CN 215323497U
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Abstract
The utility model relates to a multi-channel automatic sequencing and material placing device for long cylindrical products and a packaging production line, which comprises a storage bin, a material placing mechanism, a material stirring and feeding block and a material storing block, wherein the storage bin is provided with a material placing mechanism; the material bin, the material stirring and feeding block, the material storage block and the material discharging mechanism are arranged from top to bottom, wherein the material bin and the material storage block are fixedly arranged, and the material stirring and feeding block horizontally reciprocates under the driving of power; the bottom of the storage bin is open, the storage block is provided with a plurality of rows of vertical storage channels, long cylindrical products are stacked in the storage bin, and a part of the products fall into the storage channels; the discharging mechanism is used for discharging the row of products output from the lower end of the material storage channel; the material poking and feeding block is provided with a plurality of material poking rods, and long cylindrical products in the storage bin are poked into the storage channel through left and right movement. The material placing device is suitable for automatic placing of longer products such as an outer cylinder, a similar cylinder body type and an elliptical cylinder, saves a large amount of labor cost, and simultaneously reduces pollution of operators to the products.
Description
Technical Field
The utility model relates to the technical field of packaging, in particular to a multi-channel automatic sequencing material arranging device for long cylindrical products and a packaging production line.
Background
In the operations such as packing or equipment of product, for saving artifical raise the efficiency, improve the operational reliability, often need use automatic device of putting, arrange in order the sequencing and the ejection of compact is put to unordered material is automatic. For example, patent No. CN210555835U discloses a multichannel automatic sorting and material placing device for suspensible products, which is suitable for placing thick and short products, but not suitable for long cylindrical products, and therefore, it is necessary to design a multichannel automatic sorting and material placing device suitable for long cylindrical products.
SUMMERY OF THE UTILITY MODEL
The utility model aims to overcome the defects in the prior art and provide the multi-channel automatic sorting and material placing device for long cylindrical products, which is reasonable in structural design.
The technical scheme adopted by the utility model for solving the problems is as follows: the utility model provides a multichannel automatic sequencing pendulum material device for long cylinder class product, includes feed bin and drop feed mechanism, its characterized in that: the device also comprises a material poking and feeding block and a material storage block; the material bin, the material stirring and feeding block, the material storage block and the material discharging mechanism are arranged from top to bottom, wherein the material bin and the material storage block are fixedly arranged, and the material stirring and feeding block horizontally reciprocates under the driving of power; the bottom of the storage bin is open, the storage block is provided with a plurality of rows of vertical storage channels, long cylindrical products are stacked in the storage bin, and a part of the products fall into the storage channels; the discharging mechanism is used for discharging the row of products output from the lower end of the material storage channel; the material poking and feeding block is provided with a plurality of material poking rods, and long cylindrical products in the storage bin are poked into the storage channel through left and right movement.
Preferably, the discharging mechanism comprises a feeding guide plate and a discharging plate; the feeding guide plate is fixedly installed, and the discharging plate is positioned on the feeding guide plate and horizontally reciprocates under the driving of power; all set up the slotted hole that the multiseriate is used for holding long cylinder class product on feeding deflector and the blowing board, and the column number between them is unanimous with the column number of storage passageway.
Preferably, the material poking and feeding block is provided with five material poking rods; the material shifting and feeding block is driven by a first air cylinder, the first air cylinder is positioned on one side of the material shifting and feeding block, and a first limit stop block for limiting the movement of the material shifting and feeding block is arranged on the other side of the material shifting and feeding block; the material shifting and feeding block is further provided with a pair of guide rail mechanisms, the guide rail mechanisms are arranged on the material storing block, and the material shifting and feeding block is connected with a sliding block in the guide rail mechanisms.
Preferably, the up-down position relationship between the multiple rows of slotted holes on the feeding guide plate and the multiple rows of material storage channels is staggered in sequence; the blowing board is through the translation, and when the slotted hole on the blowing board was just being located storage channel output end below, the product fell into the slotted hole on the blowing board from storage channel output end, and when the slotted hole on the blowing board was just to the time with the slotted hole on the feeding deflector, the product fell into the slotted hole on the feeding deflector to the material is put in the downwards falling out.
Preferably, the material discharging plate is driven by a second cylinder, the second cylinder is positioned on one side of the material discharging plate, and a second limit stop block for limiting the movement of the material discharging plate is arranged on the other side of the material discharging plate; the feeding plate is further provided with a pair of second guide rail mechanisms, the second guide rail mechanisms are installed on the feeding guide plate, and the feeding plate is connected with a sliding block in the second guide rail mechanisms.
Preferably, the storage bin is in a rectangular box shape with an open bottom, and an organic glass lower baffle and an organic glass door positioned above the organic glass lower baffle are arranged on the front side of the storage bin; a vertical bin partition plate is arranged in the middle of the upper space in the bin.
Preferably, two low material level alarm probes are respectively arranged at the two sides of the lower part of the storage bin.
The utility model also provides a packaging production line, which comprises a blister packaging machine and is characterized in that: the multi-channel automatic sorting and material placing device for the long cylindrical products is mounted on the blister packaging machine.
Compared with the prior art, the utility model has the following advantages and effects: the material placing device is suitable for automatically placing longer products such as a cylindrical shape, a cylinder-like shape, an elliptical cylinder and the like, such as sterile swabs and the like; this pendulum material device has saved a large amount of human costs, has also reduced the pollution of operating personnel to the product simultaneously.
Drawings
In order to illustrate the embodiments of the present invention or the solutions in the prior art more clearly, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and other drawings can be obtained by those skilled in the art without inventive effort.
Fig. 1 is a schematic front view of an embodiment of the present invention.
Fig. 2 is a left side view structural diagram of the embodiment of the utility model.
Fig. 3 is an enlarged schematic structural diagram of a point a in fig. 1 (the discharging plate moves to the left, and the slot hole on the discharging plate is located right below the output end of the material storage channel to receive the material).
FIG. 4 is another enlarged view of the structure at A in FIG. 1 (the discharging plate is moved to the right side, and the slot on the discharging plate is opposite to the slot on the feeding guide plate, and the discharging is ready).
Fig. 5 is an enlarged schematic view at B in fig. 1 (illustrating the material-setting lever moved to the left and ready for setting).
Fig. 6 is another enlarged schematic view of the position B in fig. 1 (illustrating that the material poking rod moves to the right, and the material is poked into the material storage channel during the process of moving the material poking rod to the right).
Description of reference numerals:
a feeding guide plate 1; a material placing plate 2; a material storage block 3; a material pulling and feeding block 4; a storage bin 5; a blister packaging machine 6;
a second cylinder 2.1; a second limit stop 2.2; a second guide rail mechanism 2.3;
a material storage channel 3.1;
4.1 of a material poking rod; cylinder number one 4.2; a first limit stop 4.3; a first guide rail mechanism 4.4;
a bin partition plate 5.1; an organic glass lower baffle 5.2; an organic glass door 5.3; and 5.4 of a low material level alarm probe.
Detailed Description
The present invention will be described in further detail below by way of examples with reference to the accompanying drawings, which are illustrative of the present invention and are not to be construed as limiting the present invention.
Examples are given.
See fig. 1-6.
The embodiment discloses a multichannel automatic sequencing and material placing device for long cylindrical products, which can be used for automatically placing longer products such as cylindrical products, similar cylindrical products, elliptical cylindrical products and the like, for example, sterile swabs and placing the products in rows into bubble caps.
Fig. 1 is a schematic front view of the blister packaging machine 6 of the present embodiment, the blister packaging machine 6 being part of a packaging line, the blister packaging machine 6 being fed with blisters.
The multichannel automatic sequencing and material placing device for the long cylindrical products comprises a stock bin 5, a material poking and feeding block 4, a material storage block 3 and a material placing mechanism. The discharging mechanism comprises a feeding guide plate 1 and a discharging plate 2. The material bin 5, the material stirring and feeding block 4, the material storage block 3, the material discharging plate 2 and the material feeding guide plate 1 are arranged from top to bottom, wherein the material bin 5, the material storage block 3 and the material feeding guide plate 1 are fixedly installed, the material stirring and feeding block 4 and the material discharging plate 2 are driven by respective power to horizontally reciprocate, specifically, the material feeding guide plate 1 is fixedly connected with the blister packaging machine 6, and the material bin 5 and the material storage block 3 are fixedly connected with the material feeding guide plate 1.
In the embodiment, as a preferable scheme, the storage bin 5 is designed into a rectangular box shape with an open bottom in consideration of convenience in tidying and placing long cylindrical products, an organic glass lower baffle 5.2 and an organic glass door 5.3 positioned above the organic glass lower baffle 5.2 are arranged on the front side of the storage bin 5, and the organic glass door 5.3 is opened to supplement the products into the storage bin 5; baffle 5.2 plays limiting displacement to the product under the organic glass, make elongated cylinder class product be the ground pile of keeping flat in feed bin 5, the intermediate position in upper portion space sets up a vertical feed bin division board 5.1 in feed bin 5, feed bin division board 5.1 makes the product neatly put, separate the product, prevent the product slope, in addition respectively set up a low material level warning probe 5.4 in 5 lower part both sides positions of feed bin, when the product in feed bin 5 is not enough, to siren signals, inform the staff in time reinforced or shut down.
In this embodiment, the storage block 3 has a plurality of columns of vertical storage channels 3.1, and when long cylindrical products are stacked in the storage bin 5, a part of the products fall into the storage channels 3.1. The material poking and feeding block 4 is provided with five material poking rods 4.1, the material poking and feeding block 4 drives the material poking rods 4.1 to move left and right, and fig. 5 and 6 are position diagrams showing the material poking rods 4.1 moving to the left and right, and long cylindrical products in the bin 5 are poked into the material storage channel 3.1 through left and right movement. As for the number of the setting out bars 4.1, the number of the setting out bars 4.1 can be six, seven, etc. in other embodiments, depending on the size of the device.
In the embodiment, the material stirring and feeding block 4 is driven by a first air cylinder 4.2, the first air cylinder 4.2 is positioned at one side of the material stirring and feeding block 4, and a first limit stop 4.3 for limiting the movement of the material stirring and feeding block 4 is arranged at the other side of the material stirring and feeding block 4; the material poking and feeding block 4 is also provided with a pair of first guide rail mechanisms 4.4, the first guide rail mechanisms 4.4 are arranged on the material storage block 3, and the material poking and feeding block 4 is connected with a sliding block in the first guide rail mechanisms 4.4. The direction of the reciprocating movement of the kick-out feed block 4 is perpendicular to the direction of the blister movement in the blister-packing machine 6.
In the embodiment, the discharging mechanism is used for discharging the row of products output from the lower end of the material storage channel 3.1 into the bubble cap; specifically, all set up the slotted hole that the multiseriate is used for holding elongated cylinder class product on feeding deflector 1 and the blowing board 2, and the column number of both is unanimous with storage channel 3.1's column number. The up-down position relation between the multi-row slotted holes on the feeding guide plate 1 and the multi-row material storage channels 3.1 is staggered in sequence, namely the up-down position relation is not the position relation which is in positive correspondence. Referring to fig. 3 and 4, the material discharging plate 2 is moved horizontally, when the slot hole on the material discharging plate 2 is located right below the output end of the material storing channel 3.1, the product falls into the slot hole on the material discharging plate 2 from the output end of the material storing channel 3.1, and when the slot hole on the material discharging plate 2 is right opposite to the slot hole on the material feeding guide plate 1, the product falls into the slot hole on the material feeding guide plate 1, and then falls downwards to be discharged into the bubble cap.
In the embodiment, the material placing plate 2 is driven by a second cylinder 2.1, the second cylinder 2.1 is positioned at one side of the material placing plate 2, and the other side of the material placing plate 2 is provided with a second limit stop 2.2 for limiting the movement of the material placing plate; the discharging plate 2 is also provided with a pair of second guide rail mechanisms 2.3, the second guide rail mechanisms 2.3 are arranged on the feeding guide plate 1, and the discharging plate 2 is connected with the sliding blocks in the second guide rail mechanisms 2.3.
In this embodiment, cylinder 4.2 and No. two cylinders 2.1 are located the homonymy, and a limit stop 4.3 and No. two limit stop 2.2 are located the homonymy.
In addition, it should be noted that the specific embodiments described in the present specification may be different in the components, the shapes of the components, the names of the components, and the like, and the above description is only an illustration of the structure of the present invention. All equivalent or simple changes in the structure, characteristics and principles of the utility model are included in the protection scope of the patent. Various modifications, additions and substitutions for the specific embodiments described may be made by those skilled in the art without departing from the scope of the utility model as defined in the accompanying claims.
Claims (8)
1. The utility model provides a multichannel automatic sequencing pendulum material device for long cylinder class product, includes feed bin (5) and drop feed mechanism, its characterized in that: the device also comprises a material poking and feeding block (4) and a material storage block (3); the material bin (5), the material stirring and feeding block (4), the material storage block (3) and the material discharging mechanism are arranged from top to bottom, wherein the material bin (5) and the material storage block (3) are fixedly arranged, and the material stirring and feeding block (4) horizontally reciprocates under the driving of power; the bottom of the storage bin (5) is open, the storage block (3) is provided with a plurality of vertical storage channels (3.1), long cylindrical products are stacked in the storage bin (5), and a part of the products fall into the storage channels (3.1); the discharging mechanism is used for discharging the row of products output from the lower end of the material storage channel (3.1); the material poking and feeding block (4) is provided with a plurality of material poking rods (4.1), and long cylindrical products in the storage bin (5) are poked into the storage channel (3.1) through left and right movement.
2. The multi-channel automatic sequencing pendulum material device for long cylindrical products of claim 1, wherein: the discharging mechanism comprises a feeding guide plate (1) and a discharging plate (2); the feeding guide plate (1) is fixedly installed, and the material discharging plate (2) is positioned on the feeding guide plate (1) and horizontally reciprocates under the driving of power; all set up the slotted hole that the multiseriate is used for holding long cylinder class product on feeding deflector (1) and blowing board (2), and the line number of both is unanimous with the line number of storage channel (3.1).
3. The multi-channel automatic sequencing pendulum material device for long cylindrical products of claim 1, wherein: the material stirring and feeding block (4) is driven by a first air cylinder (4.2), the first air cylinder (4.2) is positioned on one side of the material stirring and feeding block (4), and a first limit stop block (4.3) for limiting the movement of the material stirring and feeding block (4) is arranged on the other side of the material stirring and feeding block (4); the material poking and feeding block (4) is further provided with a pair of guide rail mechanisms (4.4), the guide rail mechanisms (4.4) are installed on the material storage block (3), and the material poking and feeding block (4) is connected with a sliding block in the guide rail mechanisms (4.4).
4. The multi-channel automatic sequencing pendulum material device for long cylindrical products of claim 2, wherein: the vertical position relationship between the multiple rows of slotted holes on the feeding guide plate (1) and the multiple rows of material storage channels (3.1) is staggered in sequence; the feeding plate (2) is in translation, when a slotted hole in the feeding plate (2) is located below the output end of the storage channel (3.1), a product falls into a slotted hole in the feeding plate (2) from the output end of the storage channel (3.1), and when the slotted hole in the feeding plate (2) is aligned with the slotted hole in the feeding guide plate (1), the product falls into the slotted hole in the feeding guide plate (1), so that the product falls downwards to be placed.
5. The multi-channel automatic sequencing pendulum material device for long cylindrical products of claim 2, wherein: the feeding plate (2) is driven by a second cylinder (2.1), the second cylinder (2.1) is positioned at one side of the feeding plate (2), and a second limit stop block (2.2) for limiting the movement of the feeding plate (2) is arranged at the other side of the feeding plate (2); the feeding plate (2) is further provided with a pair of second guide rail mechanisms (2.3), the second guide rail mechanisms (2.3) are installed on the feeding guide plate (1), and the feeding plate (2) is connected with sliding blocks in the second guide rail mechanisms (2.3).
6. The multi-channel automatic sequencing pendulum material device for long cylindrical products of claim 1, wherein: the storage bin (5) is in a rectangular box shape with an open bottom, and an organic glass lower baffle (5.2) and an organic glass door (5.3) positioned above the organic glass lower baffle (5.2) are arranged on the front side of the storage bin; a vertical silo division plate (5.1) is arranged in the middle of the upper space in the silo (5).
7. The multi-channel automatic sequencing pendulum material device for long cylindrical products of claim 1, wherein: two low material level alarm probes (5.4) are respectively arranged at the two sides of the lower part of the storage bin (5).
8. A packaging line comprising a blister-packaging machine (6), characterized in that: the blister packaging machine (6) is provided with a multi-channel automatic sequencing material arranging device for long cylindrical products as claimed in any one of claims 1 to 7.
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN117161301A (en) * | 2023-09-22 | 2023-12-05 | 河北博途自动化设备有限公司 | Automatic hot mound machine of bolt |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
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CN117161301A (en) * | 2023-09-22 | 2023-12-05 | 河北博途自动化设备有限公司 | Automatic hot mound machine of bolt |
CN117161301B (en) * | 2023-09-22 | 2024-05-14 | 河北博途自动化设备有限公司 | Automatic hot mound machine of bolt |
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