CN215903981U - Feeding, welding and conveying device for assembling integrated bottle cap - Google Patents
Feeding, welding and conveying device for assembling integrated bottle cap Download PDFInfo
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- CN215903981U CN215903981U CN202121599526.8U CN202121599526U CN215903981U CN 215903981 U CN215903981 U CN 215903981U CN 202121599526 U CN202121599526 U CN 202121599526U CN 215903981 U CN215903981 U CN 215903981U
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Abstract
A feeding, welding and conveying device for assembling an integrated bottle cap comprises a workbench, wherein a turntable and a grooved pulley are arranged on the workbench; wherein, a single-way channel is fixed at the turntable, and the bottle cap enters the grooved wheel through the single-way channel; a welding mechanism and an upper cover feeding mechanism are sequentially arranged on the outer side of the grooved pulley; the welding mechanism comprises an ultrasonic plastic welding machine, one side of the ultrasonic plastic welding machine is in sliding fit with the guide rail through a linear bearing, and the upper end of the ultrasonic plastic welding machine is driven by a first air cylinder to intermittently move up and down; the upper cover feeding mechanism comprises a material receiving plate, a material receiving groove is formed in the material receiving plate, and the material receiving plate is driven to move left and right through a second air cylinder; when the second cylinder stretches out, the material receiving groove is opposite to the discharge hole of the chute, when the second cylinder retracts, the material receiving groove is opposite to the sucker, and the sucker is driven to move through the moving mechanism. The feeding, welding and conveying device for the integrated bottle cap assembly is suitable for feeding and local assembly welding of bottle caps with three parts, and improves efficiency.
Description
Technical Field
The utility model relates to bottle cap processing equipment, in particular to a feeding, welding and conveying device for integrated bottle cap assembly.
Background
The bottle caps are processed into different styles according to requirements, wherein one type of the wine bottle cap comprises a lower cap, an inner plug and an upper cap. The inner plug is manually buckled on the lower cover and then welded by an ultrasonic plastic welding machine, and the upper cover is screwed on the inner plug by a clamp in a rotating mode. The conventional operation needs to be completed on a plurality of devices, and only one device can be welded at a time when an ultrasonic plastic welding machine is adopted for welding.
The patent with the application number of 201922141083.7 discloses a bottle cap ultrasonic plastic welding machine, which adopts a motor to drive a turntable to rotate so as to realize the continuous welding of bottle caps. This does improve the production efficiency, but is directed to the welding of closures having only two parts, an upper and a lower closure. This is not applicable when a closure has three components.
The patent "201610918730.9" for automatic bottle cap screwing and ultrasonic welding equipment and its operation method "is a patent previously applied by the present company, and the design of the feeding manipulator for the upper portion of the bottle cap in the device is not perfect and is not specifically described, so that the present application needs to be further improved.
Disclosure of Invention
The utility model aims to solve the technical problem of providing a feeding, welding and conveying device for integrated bottle cap assembly, which is suitable for feeding and local assembly welding of bottle caps with three parts and improves the efficiency.
In order to solve the technical problems, the technical scheme adopted by the utility model is as follows:
a feeding, welding and conveying device for assembling an integrated bottle cap comprises a workbench, wherein a turntable and a grooved pulley are arranged on the workbench and driven to rotate by a driving device; wherein, a single-way channel is fixed at the turntable, and the semi-finished product of the bottle cap enters the grooved wheel through the single-way channel;
a welding mechanism and an upper cover feeding mechanism are sequentially arranged on the outer side of the grooved pulley;
the welding mechanism comprises an ultrasonic plastic welding machine, one side of the ultrasonic plastic welding machine is in sliding fit with the guide rail through a linear bearing, and the upper end of the ultrasonic plastic welding machine is driven by a first air cylinder to intermittently move up and down;
the upper cover feeding mechanism comprises a material receiving plate, a material receiving groove is formed in the material receiving plate, and the material receiving plate is driven to move left and right through a second air cylinder; when the second cylinder stretches out, the material receiving groove is opposite to the discharge hole of the chute, when the second cylinder retracts, the material receiving groove is opposite to the sucker, and the sucker is driven to move through the moving mechanism.
The upper surface of the rotary table is flush with the upper surface of the workbench, the grooved wheels are positioned on the upper surface of the workbench, and the rotary tables are partially staggered.
The outer sides of the turntable and the grooved wheel are provided with enclosing baffles, and the discharge end of the grooved wheel is provided with a discharge channel.
And a material collecting enclosure is arranged at the position of the workbench on one side of the turntable.
The moving mechanism comprises a third air cylinder, the third air cylinder drives the sucker to move up and down, one side of the third air cylinder is connected with the sliding rail, and the sliding rail is arranged on the fixed sliding block in a sliding mode and is driven to move back and forth through a fourth air cylinder.
The utility model discloses a feeding, welding and conveying device for assembling an integrated bottle cap, which has the following technical effects: through the arrangement of the turntable and the grooved pulley, semi-finished products formed by the upper cover and the inner plug can be queued for conveying; the grooved pulley rotates intermittently, so that the welding mechanism and the upper cover feeding mechanism can conveniently act, continuous intermittent welding is realized through the ultrasonic plastic welding machine, and the working efficiency is improved; through setting up the material receiving plate, utilize the cylinder to remove about and realize connecing the material or not connecing the material, utilize moving mechanism and sucking disc to realize the absorption of upper cover and transfer to on the inner plug, realize like this that three spare part constitutes integratively, for follow-up completion final assembly lay the basis, need not to operate on a plurality of workstations, reduce the transfer, raise the efficiency.
Drawings
The utility model is further illustrated by the following examples in conjunction with the accompanying drawings:
FIG. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural diagram of the present invention.
Fig. 3 is a schematic structural view of the welding mechanism of the present invention.
Fig. 4 is a schematic structural diagram of an upper cover feeding mechanism in the utility model.
Fig. 5 is a schematic structural view of the upper cover feeding mechanism in the utility model.
Fig. 6 is a schematic view of the working state of the present invention.
In the figure: the device comprises a workbench 1, a turntable 2, a grooved pulley 3, a single-row channel 4, a welding mechanism 5, an upper cover feeding mechanism 6, a surrounding baffle 7, a discharging channel 8, an aggregate surrounding baffle 9, an ultrasonic plastic welding machine 5.1, a linear bearing 5.2, a guide rail 5.3, a first cylinder 5.4, a material receiving plate 6.1, a material receiving groove 6.2, a second cylinder 6.3, a chute 6.4, a sucking disc 6.5, a moving mechanism 6.6, a third cylinder 6.6.1, a sliding rail 6.6.2, a fixed sliding block 6.6.3 and a fourth cylinder 6.6.4.
Detailed Description
As shown in fig. 1-2, a feeding, welding and conveying device for assembling an integrated bottle cap comprises a workbench 1, wherein a turntable 2 and a grooved pulley 3 are arranged on the workbench 1, and the turntable 2 and the grooved pulley 3 are driven by a motor in a chassis below the workbench 1 to rotate respectively. Wherein the turntable 2 is continuously rotated and the grooved pulley 3 is intermittently started and stopped.
Here the upper surface of the turntable 2 is flush with the upper surface of the table 1 and the sheave 3 is located above the upper surface of the table 1. The edge part of the sheave 3 is located above the turntable 2. Thus, the semi-finished bottle cap can be driven to move by the rotary disc 2 and enter the groove of the grooved wheel 3.
In addition, the proper positions outside the turntable 2 and the grooved pulley 3 are provided with an enclosure 7, and the worktable 1 on the left side of the turntable 2 is provided with an aggregate enclosure 9. The aggregate enclosure 9 may be filled with a lower cover and an inner plug to be treated. Where it can be manually snapped into the lower cover and then placed vertically on the turntable 2, with the rotation of the turntable 2 into the sheave 3. A discharging channel 8 is arranged at the discharging end of the grooved pulley 3. Through this discharge channel 8, the semi-finished closure can be removed.
As shown in fig. 1-2, a welding mechanism 5 and an upper cover feeding mechanism 6 are sequentially installed on the outer side of the grooved pulley 3. The welding mechanism 5 is used for welding and fixing the buckled lower cover and the inner plug. And upper cover feed mechanism 6 is used for moving the upper cover to the stopper in, convenient follow-up fixed.
As shown in fig. 3, the welding mechanism 5 includes an ultrasonic plastic welder 5.1, which is the same as the ultrasonic plastic welder in the "ultrasonic plastic welder for bottle caps" of the patent application No. 201922141083.7. One side of the ultrasonic plastic welding machine 5.1 is in sliding fit with the guide rail 5.3 through the linear bearing 5.2, the upper end of the ultrasonic plastic welding machine 5.1 is connected with a piston rod of the first air cylinder 5.4, and a cylinder body of the first air cylinder 5.4 is fixed above the guide rail 5.3 through a mounting plate. When the bottle cap semi-finished product rotates to a position opposite to the ultrasonic plastic welding machine 5.1, the first air cylinder 5.4 extends out, the ultrasonic plastic welding machine 5.1 moves downwards to realize welding, then the first air cylinder 5.4 contracts, and the ultrasonic plastic welding machine 5.1 moves upwards.
As shown in fig. 4-5, the upper cover feeding mechanism 6 includes a material receiving plate 6.1, a U-shaped material receiving groove 6.2 is formed in one side of the middle of the material receiving plate 6.1, and the width of the material receiving groove 6.2 is matched with the diameter of the upper cover. A second cylinder 6.3 is arranged below the material receiving plate 6.1 at a small interval (about 3 mm), and the second cylinder 6.3 is connected with a side plate on one side of the workbench 1 through a connecting plate. The piston rod of the second cylinder 6.3 is connected with the material receiving plate 6.1, and a guide rod is further fixed on the cylinder body on one side of the second cylinder 6.3 and freely penetrates through a hole in the material receiving plate 6.1. When the second cylinder 6.3 stretches out and draws back, the receiving groove 6.2 moves left and right. When the second cylinder 6.3 stretches out, the material receiving groove 6.2 is right opposite to the discharge hole of the chute 6.4, and one side of the chute 6.4 inclines upwards and is connected with the vibrating disk. And orderly blanking through a vibrating disk. When the second cylinder 6.3 retracts, the material receiving groove 6.2 is right opposite to the sucking disc 6.5, and the sucking disc 6.5 is connected with the vacuum pump. The sucker 6.5 is used for sucking and grabbing the upper cover. And the suction cup 6.5 is connected with the moving mechanism 6.6 and moves back and forth and up and down through the moving mechanism 6.6.
The moving mechanism 6.6 comprises a third cylinder 6.6.1, the third cylinder 6.6.1 drives the sucker 6.5 to move up and down, one side of the third cylinder 6.6.1 is fixedly connected with a sliding rail 6.6.2, the sliding rail 6.6.2 is arranged on the fixed sliding block 6.6.3 in a sliding manner, and the fixed sliding block 6.6.3 is connected with a side plate on one side of the workbench 1 through a connecting plate. And the lower end of the slide rail 6.6.2 is connected with a piston rod of a fourth air cylinder 6.6.4 through a connecting plate and is driven to move back and forth through a fourth air cylinder 6.6.4. The cylinder body of the fourth cylinder 6.6.4 is fixedly arranged on the connecting plate.
The vibrating pan vibrates so that the lids move down the chute 6.4 in line. When the material is required to be fed, the second cylinder 6.3 extends out, the material receiving groove 6.2 is just opposite to the material outlet of the chute 6.4 for receiving the material, then the second cylinder 6.3 retracts, the material receiving groove 6.2 is just opposite to the sucker 6.5, and the material outlet of the chute 6.4 is blocked by the material receiving plate 6.1. The piston rod of the third cylinder 6.6.1 extends out, and the sucking disc 6.5 sucks the upper cover. Subsequently, the piston rod of the third cylinder 6.6.1 retracts, and at the same time, the fourth cylinder 6.6.4 extends, so that the upper cover below the suction cup 6.5 is opposite to the semi-finished product of the bottle cover at the grooved pulley 3. At the moment, the sucking disc 6.5 stops sucking air to the upper cover, and the upper cover just falls on the semi-finished product of the bottle cap. At the moment, the lower cover is welded with the inner plug, the upper cover is buckled on the upper part of the inner plug, and the upper cover is subsequently screwed up through the rotating mechanism.
The working principle and the process are as follows: as shown in fig. 6, the lower cover and the inner plug are manually fastened and then vertically placed on the rotating disc 2, and the rotating disc 2 continuously feeds the semi-finished products formed by the lower cover and the inner plug into the single-row passage 4 in the continuous rotating process, and then the semi-finished products enter the grooves of the grooved pulley 3 one by one. In the intermittent rotation process of the grooved pulley 3, the ultrasonic plastic welding machine 5.1 is matched with the grooved pulley to complete downward welding action, and a semi-finished product formed by the welded lower cover and the inner plug is sent to the upper cover feeding mechanism 6. When the sheave 3 stops, the upper cover feeding mechanism 6 puts the upper cover on the inner plug, then the upper cover is conveyed forwards continuously, finally the upper cover is moved out through the discharging channel 8, then the upper cover is conveyed forwards through the belt conveyor, and then the upper cover is screwed down through the screwing mechanism.
Claims (5)
1. The utility model provides an integration bottle lid assembly is with material loading welding conveyor which characterized in that: the device comprises a workbench (1), wherein a turntable (2) and a grooved pulley (3) are arranged on the workbench (1), and the turntable (2) and the grooved pulley (3) are driven to rotate by a driving device; wherein, a single-way channel (4) is fixed at the turntable (2), and the semi-finished product of the bottle cap enters the grooved wheel (3) through the single-way channel (4);
a welding mechanism (5) and an upper cover feeding mechanism (6) are sequentially arranged on the outer side of the grooved pulley (3);
the welding mechanism (5) comprises an ultrasonic plastic welding machine (5.1), one side of the ultrasonic plastic welding machine (5.1) is in sliding fit with the guide rail (5.3) through a linear bearing (5.2), and the upper end of the ultrasonic plastic welding machine (5.1) is driven to intermittently move up and down through a first air cylinder (5.4);
the upper cover feeding mechanism (6) comprises a material receiving plate (6.1), a material receiving groove (6.2) is formed in the material receiving plate (6.1), and the material receiving plate (6.1) is driven to move left and right through a second cylinder (6.3); when the second cylinder (6.3) extends out, the material receiving groove (6.2) is just opposite to the discharge hole of the chute (6.4), when the second cylinder (6.3) retracts, the material receiving groove (6.2) is just opposite to the sucker (6.5), and the sucker (6.5) is driven to move through the moving mechanism (6.6).
2. The feeding, welding and conveying device for assembling the integrated bottle cap as claimed in claim 1, wherein: the upper surface of the rotary table (2) is flush with the upper surface of the workbench (1), and the grooved wheels (3) are positioned on the upper surface of the workbench (1) and the rotary tables (2) are partially staggered.
3. The feeding, welding and conveying device for assembling the integrated bottle cap as claimed in claim 1, wherein: the outer sides of the turntable (2) and the grooved pulley (3) are provided with an enclosure (7), and the discharge end of the grooved pulley (3) is provided with a discharge channel (8).
4. The feeding, welding and conveying device for assembling the integrated bottle cap as claimed in claim 1, wherein: and a material collecting enclosure (9) is arranged at the position of the workbench (1) on one side of the turntable (2).
5. The feeding, welding and conveying device for assembling the integrated bottle cap as claimed in claim 1, wherein: the moving mechanism (6.6) comprises a third cylinder (6.6.1), the third cylinder (6.6.1) drives the sucker (6.5) to move up and down, one side of the third cylinder (6.6.1) is connected with the sliding rail (6.6.2), and the sliding rail (6.6.2) is arranged on the fixed sliding block (6.6.3) in a sliding mode and is driven by the fourth cylinder (6.6.4) to move back and forth.
Priority Applications (1)
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CN202121599526.8U CN215903981U (en) | 2021-07-14 | 2021-07-14 | Feeding, welding and conveying device for assembling integrated bottle cap |
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CN202121599526.8U CN215903981U (en) | 2021-07-14 | 2021-07-14 | Feeding, welding and conveying device for assembling integrated bottle cap |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114749758A (en) * | 2022-03-18 | 2022-07-15 | 宜昌崟锦包装有限责任公司 | Welding device and welding method for sealing cover of plastic wine bottle cap |
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2021
- 2021-07-14 CN CN202121599526.8U patent/CN215903981U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114749758A (en) * | 2022-03-18 | 2022-07-15 | 宜昌崟锦包装有限责任公司 | Welding device and welding method for sealing cover of plastic wine bottle cap |
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