CN211443061U - Gear transmission positioning and labeling system of rotary machine - Google Patents

Gear transmission positioning and labeling system of rotary machine Download PDF

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Publication number
CN211443061U
CN211443061U CN201922382917.3U CN201922382917U CN211443061U CN 211443061 U CN211443061 U CN 211443061U CN 201922382917 U CN201922382917 U CN 201922382917U CN 211443061 U CN211443061 U CN 211443061U
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CN
China
Prior art keywords
bottle
positioning
labeling
transfer mechanism
conveying belt
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CN201922382917.3U
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Chinese (zh)
Inventor
曾启悦
范文武
饶晓辉
潘烁楷
王小燕
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Guangzhou Tide Machinery Equipment Co ltd
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Guangzhou Tide Machinery Equipment Co ltd
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Priority to CN201922382917.3U priority Critical patent/CN211443061U/en
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Abstract

The utility model discloses a gear transmission positioning and labeling system of a rotary machine, which is arranged on a frame and comprises a conveying belt, a bottle feeding component, a transfer mechanism, a labeling device and a bottle discharging component; the conveying belt is arranged according to a specified path and penetrates through the rack; the bottle feeding assembly is arranged at the feeding end of the conveying belt and used for conveying the packaging bottles on the conveying belt to the transfer mechanism one by one; the transfer mechanism is arranged on the rack on the side edge of the conveying belt and used for compressing the packaging bottles and conveying the packaging bottles to the labeling device for labeling; the labeling device is arranged on the rack on the side edge of the transfer mechanism and is used for labeling the packaging bottles; go out the bottle subassembly, the utility model discloses in be equipped with transfer mechanism, transfer mechanism can compress tightly the packing bottle, then carry and paste the mark to pasting in the mark device to this lets the packing bottle steadily remove in transportation process, and can not make packing bottle skew relevant position, thereby reaches the accuracy and pastes the mark, and improves and pastes the mark precision.

Description

Gear transmission positioning and labeling system of rotary machine
Technical Field
The utility model relates to a labeller field, concretely relates to wheel change machine gear drive location pastes mark system.
Background
At present, some labeling devices on the market perform labeling processes as follows: the packaging bottles are conveyed to the labeling mechanism on the conveying belt, so that the packaging bottles pass through the label outlet plate of the labeling mechanism, the labels on the label outlet plate are made to be adhered to the packaging bottles, and labeling is achieved.
However, in the labeling mode, the packaging bottles are not positioned by the corresponding positioning mechanisms on the conveyor belt, so that the packaging bottles may have a certain degree of position deviation in the moving process, so that the labels on the label discharging plate are not attached to the corresponding positions of the packaging bottles, and then the labeling precision is influenced.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to prior art's weak point, provide a mark system is pasted in wheel rotating machine gear drive location to reach the purpose that improves the mark precision of pasting.
The utility model adopts the technical proposal that: a gear transmission positioning labeling system of a rotary machine is arranged on a rack and comprises a conveying belt, a bottle feeding assembly, a transfer mechanism, a labeling device and a bottle discharging assembly; the conveying belt is arranged according to a specified path and penetrates through the rack; the bottle feeding assembly is arranged at the feeding end of the conveying belt and used for conveying the packaging bottles on the conveying belt to the transfer mechanism one by one; the transfer mechanism is arranged on the rack on the side edge of the conveying belt and used for compressing the packaging bottles and conveying the packaging bottles to the labeling device for labeling; the labeling device is arranged on the rack on the side edge of the transfer mechanism and is used for labeling the packaging bottles; the bottle discharging assembly is arranged on the rack on the side edge of the conveying belt and used for conveying the packaging bottles with labels attached to the transfer mechanism onto the conveying belt.
Furthermore, the bottle feeding assembly comprises a bottle feeding guide rod and a bottle feeding star wheel; the bottle feeding guide rods are arranged above the conveying belt, the number of the bottle feeding guide rods is two, and a gap is formed between the two bottle feeding guide rods, so that a packaging bottle passes through the gap between the two bottle feeding guide rods; the bottle feeding star wheel is installed on the rack and located in the semicircular groove of the bottle feeding guide block, a packaging bottle fed on the bottle feeding guide rod is conveyed to the transfer mechanism, the bottle feeding star wheel is driven to rotate by a motor, and a plurality of wheel grooves are uniformly formed in the bottle feeding star wheel, and the diameter of each wheel groove corresponds to the diameter of the side wall of the packaging bottle.
Furthermore, the bottle discharging assembly comprises a bottle discharging star wheel and a bottle discharging guide block, wherein the bottle discharging star wheel is used for conveying the packaging bottles on the transfer mechanism to the conveying belt, and the bottle discharging guide block is arranged on the side edge of the conveying belt; a semicircular groove is formed in the bottle outlet guide block, and the bottle outlet star wheel is positioned in the semicircular groove; the bottle discharging star wheel is installed on the rack and driven by a motor to rotate, a plurality of wheel grooves are uniformly formed in the bottle discharging star wheel, and the diameters of the wheel grooves correspond to the diameters of the side walls of the packaging bottles.
Furthermore, the transfer mechanism comprises a main shaft, a main turntable arranged on the main shaft and a rotary drum arranged at the upper end of the main shaft, and the main shaft is arranged on the rack through a shaft sleeve; the rotary drum is uniformly provided with a plurality of bottle pressing assemblies, and a bottle support assembly is arranged at the position of the main rotary disc below each bottle pressing assembly.
Furthermore, a turnover large gear is arranged on the shaft sleeve and is in meshed connection with the bottle support component.
Furthermore, the bottle pressing assembly comprises a sleeve arranged on the rotary drum, a lifting shaft arranged in the sleeve and capable of moving up and down, and a bottle pressing head arranged at the lower end of the lifting shaft; a first spring is arranged in the sleeve and sleeved outside the lifting shaft, the lower end of the first spring is fixedly connected with the sleeve, and the upper end of the first spring is fixedly connected with the lifting shaft; two symmetrical strip-shaped holes are formed in the sleeve; the lifting shaft is provided with a support rod, and the support rod penetrates through the lifting shaft and penetrates through the strip-shaped hole to extend to the outside of the sleeve; a rotating wheel is arranged at the position of the supporting rod extending out of the sleeve, and the rotating wheel rotates around the main shaft.
Furthermore, a lug is arranged in the rotary drum and is positioned in the rotating track of the rotating wheel; the fixed plate is arranged below the convex block, the connecting shaft is arranged on the upper end face of the fixed plate, and the upper end of the connecting shaft is connected with the rack, so that the fixed plate and the convex block are fixedly installed on the rack.
Furthermore, the bottle support assembly comprises a bottle support shaft sleeve arranged on the main rotary table and a mandrel arranged in the bottle support shaft sleeve through a bearing; the bottle support shaft sleeve is provided with a positioning groove at the upper end face, the positioning groove is of an inverted round table-shaped structure, an inner cavity is arranged at the bottle support shaft sleeve below the positioning groove, and the positioning groove is communicated with the inner cavity; the lower end of the mandrel is provided with a turnover pinion; the positioning device is characterized in that a positioning disc is arranged at the upper end of the core shaft and is positioned in the inner cavity, a positioning pin is arranged on the positioning disc, the upper portion of the positioning pin is positioned in the positioning groove, the top of the upper end of the positioning pin is flush with the upper end face of the positioning groove, and a positioning spring is connected between the positioning pin and the positioning disc so that the positioning pin can move up and down in the positioning disc.
Furthermore, a second spring is arranged in the inner cavity of the bottle support shaft sleeve, and an ejection ring is arranged at the upper end of the second spring, so that the ejection ring can move up and down in the positioning groove.
Furthermore, the labeling device comprises a first labeling mechanism and a second labeling mechanism which are identical in structure, and the first labeling mechanism and the second labeling mechanism are both installed on the rack on the side edge of the transfer mechanism.
The utility model has the advantages that: the utility model discloses in be equipped with transfer mechanism, transfer mechanism can compress tightly the packing bottle, then carry and paste the mark to pasting in the mark device to this lets the packing bottle stably remove in transportation process, and can not make packing bottle skew relevant position, thereby reaches the accurate mark that pastes, and improves and pastes the mark precision.
Drawings
Fig. 1 is a top view of the present invention;
fig. 2 is a sectional view of the transfer mechanism of the present invention;
FIG. 3 is a schematic structural view of the bottle feeding assembly and the bottle discharging assembly of the present invention;
FIG. 4 is a schematic structural view of the bottle pressing assembly of the present invention;
FIG. 5 is a schematic structural view of the bottle holder assembly of the present invention;
FIG. 6 is a cross-sectional view of the bottle holder assembly of the present invention;
fig. 7 is a schematic structural view of the first labeling mechanism of the present invention;
fig. 8 is a schematic structural view of the bottle inlet guide block and the bottle outlet guide block of the present invention.
The label feeding device comprises a machine frame 1, a machine frame 2, a conveying belt 3, a bottle feeding assembly 4, a first labeling mechanism 5, a second labeling mechanism 6, a transfer mechanism 7, a bottle discharging assembly 8, a packaging bottle 31, a bottle feeding guide rod 32, a bottle feeding star wheel 33, a bottle feeding guide block 61, a main shaft 62, a main rotating disc 63, a bottle holder assembly 64, a bottle pressing assembly 65, a fixing plate 66, a turnover gear wheel 67, a rotating drum 71, a bottle discharging star wheel 72, a bottle discharging guide block 410, a label feeding disc assembly 411, a rubber roller assembly 412, a label discharging plate assembly 413, a paper receiving disc assembly 631, a bottle holder shaft sleeve 632, a positioning disc 633, a positioning pin 634, an ejection ring 635, a core shaft 636, a pinion gear 637, a second spring 638, a positioning spring 640, a sleeve 641, a bottle pressing head 642, a lifting shaft 643, a first spring, 644, a rotating wheel 645, a supporting rod 646, a first labeling mechanism, a second labeling mechanism 5, a bottle discharging assembly 64, a bottle pressing assembly 64, a fixing, Lug, 6311, inner chamber, 6312, constant head tank.
Detailed Description
The present invention will be further explained with reference to the embodiments of the drawings.
Preferably, its bottom terminal surface department of packing bottle in the utility model is equipped with the recess, and the recess size is corresponding with the cylinder head on locating pin 633 upper portions.
As shown in fig. 1, a gear-driven positioning labeling system of a rotary machine is installed on a frame 1 and comprises a conveying belt 2, a bottle feeding assembly 3, a transfer mechanism 6, a labeling device and a bottle discharging assembly 7.
The conveying belt 2 is arranged according to a specified path and penetrates through the rack 1, and the conveying belt 2 is used for conveying packaging bottles 8.
As shown in fig. 3, the bottle feeding assembly 3 is arranged at the feeding end of the conveyor belt 2, and the bottle feeding assembly 3 provides a guiding function so that the packaging bottles 8 can move to corresponding positions; the bottle feeding assembly 3 comprises a bottle feeding guide rod 31 and a bottle feeding star wheel 32; the bottle feeding guide rods 31 are arranged above the conveying belt 2, the number of the bottle feeding guide rods 31 is two, and meanwhile, the two bottle feeding guide rods 31 are arranged at a certain distance, so that a gap is reserved between the two bottle feeding guide rods 31, a bottle feeding guide block 33 is arranged at the tail end of one of the two bottle feeding guide rods 31, a semicircular groove is formed in the bottle feeding guide block 33, the discharge position of the semicircular groove of the bottle feeding guide block 33 corresponds to the position of a bottle support assembly 63 in the transfer mechanism 6, wherein the packaging bottles 8 can move from the conveying belt 2 to the bottle support assembly 63 through the guidance of the bottle feeding guide rods 31 and the bottle feeding guide block 33, and the packaging bottles 8 can immediately enter the position right above the bottle support assembly 63 after leaving the bottle feeding assembly 3; it installs in frame 1, just is located to advance a bottle star gear 32 advance in the semicircular groove of bottle guide 33, advance a bottle star gear 32 and rotate by motor drive, it evenly is equipped with a plurality of race on the bottle star gear 32 and race diameter is corresponding with 8 lateral wall diameters of packing bottle to this will advance packing bottle 8 between the bottle guide arm 31 and carry one by one to transfer mechanism 6 in, and the discharge speed that makes into bottle subassembly 3 is corresponding with the bottle support subassembly 63 slew velocity in the transfer mechanism 6.
As shown in fig. 2, the transfer mechanism 6 is arranged on the frame 1 at the side of the conveying belt 2 and used for compressing the packaging bottles 8 and conveying the packaging bottles to the labeling device for labeling, so that stable conveying of the packaging bottles is ensured, and labeling precision is improved.
The transfer mechanism 6 comprises a main shaft 61, a main turntable 62 mounted on the main shaft 61, and a rotary drum 67 mounted at the upper end of the main shaft 61, wherein the main shaft 61 is mounted on the frame 1 through a shaft sleeve, and the main shaft 61 is driven by a motor to rotate so as to drive the main turntable 62 and the rotary drum 67 mounted on the main shaft 61; the rotary drum 67 is evenly provided with a plurality of bottle pressing assemblies 64, and a bottle support assembly 63 is arranged at the main rotary disc 62 below each bottle pressing assembly 64, wherein the bottle pressing assemblies 64 are used for pressing the packaging bottles 8 on the bottle support assemblies 63, so that the packaging bottles 8 are stably conveyed to the labeling device for labeling, the bottle support assemblies 63 are used for providing positions to receive the packaging bottles 8 coming from the bottle feeding assemblies 3, and the packaging bottles 8 are jacked up when being moved to the bottle discharging assemblies 7, so that the bottle discharging assemblies 7 can convey the packaging bottles 8 to the conveying belt 2.
The bottle pressing assembly 64 comprises a sleeve 640 mounted on the drum 67, a lifting shaft 642 mounted inside the sleeve 640 and capable of moving up and down, and a bottle pressing head 641 mounted at the lower end of the lifting shaft 642; the lower end of the bottle pressing head 641 is provided with a groove corresponding to the bottle cap of the packaging bottle 8 so as to be matched with the bottle cap of the packaging bottle 8, and the bottle pressing head 641 presses the packaging bottle 8 when the lifting shaft 642 moves downwards; a first spring 643 is arranged in the sleeve 640, the first spring 643 is sleeved outside the lifting shaft 642, the lower end of the first spring 643 is fixedly connected with the sleeve 640, and the upper end of the first spring 643 is fixedly connected with the lifting shaft 642; the first spring 643 is used for providing an elastic limiting force, when the lifting shaft 642 is moved upwards by an external force, the first spring 643 is stretched, and after the external force disappears, the lifting shaft 642 is moved downwards in the restoration of the first spring 643, so that the bottle pressing head 641 moves upwards and downwards, and the packaging bottle 8 is pressed and loosened.
Two symmetrical strip-shaped holes are formed in the sleeve 640; a supporting rod 645 is arranged on the lifting shaft 642, and the supporting rod 645 passes through the lifting shaft 642 and the strip-shaped hole to extend out of the sleeve 640; a rotating wheel 644 is arranged at the supporting rod 645 extending out of the sleeve 640, and the rotating wheel 644 rotates around the main shaft 61 when the rotating drum 67 rotates; a lug 646 is arranged in the rotary drum 67, the lug 646 is positioned in the rotating track of the rotating wheel 644, and the rotating wheel 644 is contacted with the upper end surface of the lug 646 when rotating; a fixing plate 65 is arranged below the convex block 646, a connecting shaft is arranged on the upper end face of the fixing plate 65, and the upper end of the connecting shaft is connected with the rack 1, so that the fixing plate 65 and the convex block 646 are fixedly arranged on the rack 1; when the rotating wheel 644 rotates around the main shaft 61, the rotating wheel 644 passes through the upper end face of the protruding block 646, and the moving track of the rotating wheel 644 is changed through the protruding part above the protruding block 646 to move upwards, so that external force is provided, the lifting shaft 642 is lifted upwards, at this time, the bottle pressing head 641 releases the packaging bottle 8, after the rotating wheel passes through the protruding block 646, the external force disappears, the lifting shaft 642 moves downwards under the action of the first spring 643, and at this time, the bottle pressing head 641 presses the packaging bottle 8.
Be equipped with turnover gear wheel 66 on the outside axle sleeve of main shaft 61, turnover gear wheel 66 fixed mounting just can not rotate on the axle sleeve, turnover gear wheel 66 is connected with the turnover pinion 636 meshing on the bottle holds in the palm subassembly 63 to this lets bottle hold in the palm subassembly 63 and when following main rotary table 62 rotates around main shaft 61, also can let packing bottle 8 and axle core 635 synchronous revolution on the bottle holds in the palm subassembly 63, thereby lets the complete wall of pasting packing bottle 8 of label paper.
As shown in fig. 5 and 6, the bottle holder assembly 63 includes a bottle holder sleeve 631 mounted on the main turntable 62, and a spindle 635 mounted inside the bottle holder sleeve 631 through a bearing; the positioning groove 6312 is formed in the upper end face of the bottle support shaft sleeve 631, the positioning groove 6312 is of an inverted circular truncated cone-shaped structure, and the opening diameter of the upper end of the positioning groove 6312 is slightly larger than the diameter of the side wall of the bottom end of the packaging bottle 8, so that the packaging bottle 8 can be pressed into the positioning groove 6312; an inner cavity 6311 is formed in the bottle holder sleeve 631 below the positioning groove 6312, and the positioning groove 6312 is communicated with the inner cavity 6311, and the inner cavity 6311 is used for installing other components and providing a position for moving the ejecting ring 634 up and down.
The lower end of the mandrel 635 is provided with a turnover pinion 636, and the turnover pinion 636 is meshed with a turnover gearwheel 66, so that when the main turntable 62 drives the bottle holder assembly 63 to rotate, the mandrel 635 can rotate, and the packaging bottle 8 rotates in the bottle holder assembly 63; a positioning disc 632 is arranged at the upper end of the mandrel 635, the positioning disc 632 is located in the inner cavity 6311, a positioning pin 633 is arranged on the positioning disc 632, the upper portion of the positioning pin 633 is located in the positioning groove 6312, the top of the upper end of the positioning pin 633 is flush with the upper end face of the positioning groove 6312, and a positioning spring 638 is connected between the positioning pin 633 and the positioning disc 632; when the spindle 635 rotates, the positioning disc 632 and the positioning pin 633 thereon can rotate, and when the packaging bottle 8 is pressed into the positioning groove 6312, if the groove on the lower end surface of the packaging bottle 8 does not correspond to the positioning pin 633, the spindle 635 can drive the positioning pin 633 to rotate, so that the upper portion of the positioning pin 633 is clamped into the groove of the packaging bottle 8, and the positioning of the packaging bottle 8 is realized, and the packaging bottle 8 can rotate on the bottle holder assembly 63; wherein, packing bottle 8 can be down pressed locating pin 633 when getting into in the constant head tank 6312 to compress locating spring 638, when locating pin 633 aimed at the recess on packing bottle 8, locating spring 633 deformation recovered, with this jack-up locating pin 633 upwards, thereby make its card go into in the recess.
Further, a second spring 637 is arranged in the inner cavity 6311 of the bottle holder sleeve 631, an ejection ring 634 is arranged at the upper end of the second spring 637, the ejection ring 634 surrounds the positioning disc 634, and the upper part of the ejection ring 634 is circular and has a diameter corresponding to the diameter of the lower port of the positioning groove 6312; the ejector ring 634 is moved up and down in the positioning groove 6312 by the second spring 637, so that the ejector ring 634 ejects the packaging bottle 8 out of the positioning groove 6312.
As shown in fig. 7, the labeling device is arranged on the rack 1 at the side of the transfer mechanism 6 and is used for labeling the packaging bottle 8; the labeling device comprises a first labeling mechanism 4 and a second labeling mechanism 5 which are identical in structure, wherein the first labeling mechanism 4 and the second labeling mechanism 5 are both arranged on the rack 1 on the side edge of the transfer mechanism 6, and two labels are adhered to the packaging bottles 8 through the first labeling mechanism 4 and the second labeling mechanism 5.
The first labeling mechanism 4 is arranged at the side edge of the conveying belt 2, and the first labeling mechanism 4 comprises a label feeding tray assembly 410, a rubber roller assembly 411, a label discharging plate assembly 412 and a paper collecting tray assembly 413; the label feeding disc assembly 410 is arranged on the side of the transfer mechanism 6 and used for installing the label tape, and meanwhile, the label tape can rotate in the label feeding disc so as to receive and release the label tape; the rubber roller assembly 411 is arranged at the side edge of the label feeding disc assembly 410, the rubber roller assembly 411 is used for conveying the label tape, so that the label tape can move in the corresponding part, the rubber roller assembly 411 comprises a plurality of rubber rollers, the surfaces of some of the rubber rollers have certain friction force to ensure the conveying of the label tape, and the surfaces of the rest of the rubber rollers are smooth; the label discharging plate assembly 412 is arranged at the side of the transfer mechanism 6 and is used for separating the label tape conveyed by the adhesive roller assembly 411 into base paper and label paper which is used for being stuck on the packaging bottle 8; the delivery reel assembly 413 is disposed at a side of the label feeding tray assembly 410, and is used for winding the base paper passing through the label discharging plate assembly 412 into a roll shape.
As shown in fig. 3, go out bottle subassembly 7, set up in the frame 1 of conveyer belt 2 side, wherein, go out bottle subassembly 7 including be used for carrying the packing bottle 8 on the transfer mechanism 6 to the play bottle star gear 71 on the conveyer belt 2 and the play bottle guide block 72 of installation conveyer belt 2 side, go out bottle guide block 72 and go out bottle guide block 33 integrated into one piece, it rotates by motor drive to go out bottle star gear 71, it evenly is equipped with a plurality of race on the bottle star gear 71 and the race diameter is corresponding with packing bottle 8 lateral wall diameter, goes out bottle star gear 71 and packs bottle 8 card and goes into the race to through the cooperation of going out bottle guide block 72, with this with packing bottle 8 from transfer mechanism 6 department carry conveyer belt 2 above.
The specific working process is as follows: the packaging bottles 8 are conveyed from one end of the conveying belt 2 and then gradually enter the bottle feeding assembly 3, the packaging bottles 8 can be conveyed to the position right above the bottle support assembly 63 through the guide of the bottle feeding guide rod 31 and the bottle feeding guide block 33, and the packaging bottles 8 are separated through the bottle feeding star wheel 32 and can be conveyed one by one.
The bottle holder assembly 63 is driven by the main turntable 62 to rotate around the main shaft 61, when the packaging bottle 8 comes out from the bottle feeding assembly 3, just one bottle holder assembly 63 moves to the lower side of the packaging bottle 8 to receive the packaging bottle 8, and then the bottle pressing head 641 comes down to press the packaging bottle 8 on the bottle holder assembly 63, so that the packaging bottle 8 is stably conveyed to the labeling device in the transfer mechanism 6, wherein the bottle pressing head 641 presses the packaging bottle 8 into the positioning groove 6312, and the positioning pin 633 and the ejecting ring 634 move downwards for a certain distance to make the positioning spring 638 and the second spring 637 in a compressed state.
Then, the main turntable 62 continues to rotate, so as to convey the packaging bottle 8 to the labeling device for labeling, wherein, while the bottle holder assembly 63 rotates along with the main turntable 62, the spindle 635 rotates through the meshing connection of the turnover pinion 636 and the turnover gearwheel 66, so that the positioning pin 633 above the spindle rotates, so that the positioning pin 633 moves into the groove on the lower end face of the packaging bottle 8, and then the positioning pin 633 is clamped into the groove through the positioning spring 638, so that the packaging bottle 8 can rotate on the bottle holder assembly 63 (the bottle pressing head is slidably connected with the bottle cap, so that the bottle cap is not damaged in the rotating process of the packaging bottle), and the main turntable 62 moves the labeling device.
The first labeling mechanism 4 is provided with a sensor, when the sensor senses the information of the packaging bottle 8, the first labeling mechanism 4 is started through the controller to pull the label tape to peel off the label paper, so that the label paper is pasted on the wall surface when the packaging bottle 8 passes through; in the first labeling mechanism 4, the label tape is mounted in the label feeding tray assembly 410 and fed therefrom, and then the label tape is fed by the glue roller assembly 411, pulled into the label discharging plate assembly 412 to peel off the base paper and the label paper, and then the label paper is attached to the packaging bottle 8, and the base paper is wound around the paper collecting tray assembly 413 into a roll shape to be collected.
Wherein the tab component 412 comprises a tab.
The stripping process of the label paper is that the label belt is in a tensioning state after passing through each part, when the base paper of the label belt is tightly attached to the label outlet plate and changes direction, the label belt has certain stiffness due to the material of the label belt, the base paper is forcedly stripped from the label paper at the front end and enters a labeling state, and finally the label paper can be attached to the packaging bottle 8 conveyed by the conveying belt.
In the first labeling mechanism 4, a label is attached to the packaging bottle 8, then a second label is attached to the packaging bottle in the second labeling mechanism 5, and after the label is attached, the packaging bottle 8 moves to the bottle outlet assembly 7.
When the bottle holder assembly 63 approaches the bottle star wheel 71, the wheel 644 starts to move to the upper end surface of the protrusion 646, so as to lift the lifting shaft 642, thereby allowing the bottle pressing head 641 to release the packaging bottle 8, and after the acting force of the bottle pressing head 641 is not applied, the ejection ring 634 is lifted upwards under the action of the second spring 637, thereby ejecting the packaging bottle 8 out of the positioning groove 6312, and then allowing the bottle star wheel 71 to convey the packaging bottle onto the conveying belt 2 and into the collecting device through the conveying belt 2.
After the rotating wheel 644 passes through the protrusion 646, the lifting shaft 642 moves downward under the action of the first spring 643, and when the bottle holder assembly 63 moves to the bottle feeding assembly 3, the next packaging bottle 8 moves to the bottle holder assembly 3, and at this time, the bottle pressing head 641 moves to the bottom end and presses the packaging bottle 8, so as to transport the next packaging bottle 8.
The utility model discloses in compress tightly packing bottle 8 through transfer mechanism 6, then carry and paste the mark to pasting in the mark device to this lets packing bottle 8 stably remove in transportation process, and can not make packing bottle 8 skew relevant position, thereby reaches the accurate mark that pastes, and improves and pastes the mark precision
The above is only the preferred embodiment of the present invention, the present invention is not limited to the above embodiment, there may be local minor structural modification in the implementation process, if it is right that various modifications or variations of the present invention do not depart from the spirit and scope of the present invention, and belong to the claims and the equivalent technical scope of the present invention, then the present invention is also intended to include these modifications and variations.

Claims (10)

1. The utility model provides a mark system is pasted in gear drive location of rotary machine, installs in the frame, its characterized in that: comprises a conveying belt, a bottle feeding assembly, a transfer mechanism, a labeling device and a bottle discharging assembly;
the conveying belt is arranged according to a specified path and penetrates through the rack;
the bottle feeding assembly is arranged at the feeding end of the conveying belt and used for conveying the packaging bottles on the conveying belt to the transfer mechanism one by one;
the transfer mechanism is arranged on the rack on the side edge of the conveying belt and used for compressing the packaging bottles and conveying the packaging bottles to the labeling device for labeling;
the labeling device is arranged on the rack on the side edge of the transfer mechanism and is used for labeling the packaging bottles;
the bottle discharging assembly is arranged on the rack on the side edge of the conveying belt and used for conveying the packaging bottles with labels attached to the transfer mechanism onto the conveying belt.
2. The rotary machine gear drive positioning labeling system of claim 1, wherein: the bottle feeding assembly comprises a bottle feeding guide rod and a bottle feeding star wheel; the bottle feeding guide rods are arranged above the conveying belt, the number of the bottle feeding guide rods is two, and a gap is formed between the two bottle feeding guide rods, so that a packaging bottle passes through the gap between the two bottle feeding guide rods; the bottle feeding star wheel is installed on the rack and located in the semicircular groove of the bottle feeding guide block, a packaging bottle fed on the bottle feeding guide rod is conveyed to the transfer mechanism, the bottle feeding star wheel is driven to rotate by a motor, and a plurality of wheel grooves are uniformly formed in the bottle feeding star wheel, and the diameter of each wheel groove corresponds to the diameter of the side wall of the packaging bottle.
3. The rotary machine gear drive positioning labeling system of claim 2, wherein: the bottle discharging assembly comprises a bottle discharging star wheel and a bottle discharging guide block, wherein the bottle discharging star wheel is used for conveying the packaging bottles on the transfer mechanism to the conveying belt, and the bottle discharging guide block is arranged on the side edge of the conveying belt; a semicircular groove is formed in the bottle outlet guide block, and the bottle outlet star wheel is positioned in the semicircular groove; the bottle discharging star wheel is installed on the rack and driven by a motor to rotate, a plurality of wheel grooves are uniformly formed in the bottle discharging star wheel, and the diameters of the wheel grooves correspond to the diameters of the side walls of the packaging bottles.
4. The rotary machine gear drive positioning labeling system of claim 1, wherein: the transfer mechanism comprises a main shaft, a main turntable and a rotary drum, wherein the main turntable is mounted on the main shaft, the rotary drum is mounted at the upper end of the main shaft, and the main shaft is mounted on the rack through a shaft sleeve; the rotary drum is uniformly provided with a plurality of bottle pressing assemblies, and a bottle support assembly is arranged at the position of the main rotary disc below each bottle pressing assembly.
5. The rotary machine gear drive positioning labeling system of claim 4, wherein: the bottle support component is characterized in that a turnover large gear is arranged on the shaft sleeve and is connected with the bottle support component in a meshing manner.
6. The rotary machine gear drive positioning labeling system of claim 4, wherein: the bottle pressing component comprises a sleeve arranged on the rotary drum, a lifting shaft arranged in the sleeve and capable of moving up and down, and a bottle pressing head arranged at the lower end of the lifting shaft; a first spring is arranged in the sleeve and sleeved outside the lifting shaft, the lower end of the first spring is fixedly connected with the sleeve, and the upper end of the first spring is fixedly connected with the lifting shaft; two symmetrical strip-shaped holes are formed in the sleeve; the lifting shaft is provided with a support rod, and the support rod penetrates through the lifting shaft and penetrates through the strip-shaped hole to extend to the outside of the sleeve; a rotating wheel is arranged at the position of the supporting rod extending out of the sleeve, and the rotating wheel can rotate around the main shaft.
7. The rotary machine gear drive positioning labeling system of claim 6, wherein: a lug is arranged in the rotary drum and is positioned in the rotating track of the rotating wheel; the fixed plate is arranged below the convex block, the connecting shaft is arranged on the upper end face of the fixed plate, and the upper end of the connecting shaft is connected with the rack, so that the fixed plate and the convex block are fixedly installed on the rack.
8. The rotary machine gear drive positioning labeling system of claim 4, wherein: the bottle support assembly comprises a bottle support shaft sleeve arranged on the main rotary table and a mandrel arranged in the bottle support shaft sleeve through a bearing; the bottle support shaft sleeve is provided with a positioning groove at the upper end face, the positioning groove is of an inverted round table-shaped structure, an inner cavity is arranged at the bottle support shaft sleeve below the positioning groove, and the positioning groove is communicated with the inner cavity; the lower end of the mandrel is provided with a turnover pinion; the positioning device is characterized in that a positioning disc is arranged at the upper end of the core shaft and is positioned in the inner cavity, a positioning pin is arranged on the positioning disc, the upper portion of the positioning pin is positioned in the positioning groove, the top of the upper end of the positioning pin is flush with the upper end face of the positioning groove, and a positioning spring is connected between the positioning pin and the positioning disc so that the positioning pin can move up and down in the positioning disc.
9. The rotary machine gear drive positioning labeling system of claim 8, wherein: and a second spring is arranged in the inner cavity of the bottle support shaft sleeve, and an ejection ring is arranged at the upper end of the second spring, so that the ejection ring can move up and down in the positioning groove.
10. The rotary machine gear drive positioning labeling system of claim 1, wherein: the labeling device comprises a first labeling mechanism and a second labeling mechanism which are identical in structure, and the first labeling mechanism and the second labeling mechanism are both installed on the machine frame on the side edge of the transfer mechanism.
CN201922382917.3U 2019-12-26 2019-12-26 Gear transmission positioning and labeling system of rotary machine Active CN211443061U (en)

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Application Number Priority Date Filing Date Title
CN201922382917.3U CN211443061U (en) 2019-12-26 2019-12-26 Gear transmission positioning and labeling system of rotary machine

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112061532A (en) * 2020-09-10 2020-12-11 邵阳博亿技术服务有限公司 Labeling equipment for wine
CN113104338A (en) * 2021-04-01 2021-07-13 江苏新美星包装机械股份有限公司 Rotary labeling machine and positioning labeling method

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112061532A (en) * 2020-09-10 2020-12-11 邵阳博亿技术服务有限公司 Labeling equipment for wine
CN112061532B (en) * 2020-09-10 2022-02-08 邵阳博亿技术服务有限公司 Labeling equipment for wine
CN113104338A (en) * 2021-04-01 2021-07-13 江苏新美星包装机械股份有限公司 Rotary labeling machine and positioning labeling method

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