CN219115910U - Finished product delivering mechanism of inner and outer double-layer filling cap screwing machine - Google Patents
Finished product delivering mechanism of inner and outer double-layer filling cap screwing machine Download PDFInfo
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- CN219115910U CN219115910U CN202321067320.XU CN202321067320U CN219115910U CN 219115910 U CN219115910 U CN 219115910U CN 202321067320 U CN202321067320 U CN 202321067320U CN 219115910 U CN219115910 U CN 219115910U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E60/00—Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
- Y02E60/10—Energy storage using batteries
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Abstract
The utility model provides a inside and outside bilayer fills finished product of spiral cover machine and sends out mechanism, is driven its characterized in that including frame and the finished product that installs respectively in the frame send out device, by carousel drive arrangement: the finished product delivering device comprises a locating rack and at least one suction nozzle bag delivering unit, wherein the locating rack is arranged on the rack, the suction nozzle bag delivering units are arranged on the locating rack, and each suction nozzle bag delivering unit corresponds to at least one different suction nozzle bag hanging groove. The utility model has the beneficial effects that as each suction nozzle bag delivering unit corresponds to a plurality of suction nozzle bag hanging grooves, suction nozzle bag finished products in the suction nozzle bag hanging grooves can be delivered simultaneously; the optional discharging device can raise the discharging bag pushing piece corresponding to a suction nozzle bag when a certain suction nozzle bag is found to be not provided with a sealing cover, so that unqualified suction nozzle bags are prevented from being discharged; therefore, the finished product delivery mechanism can well cooperate with the turntable to work, and simultaneously, the push-out of the finished product of the suction nozzle bags in the plurality of suction nozzle bag hanging grooves of the turntable is completed rapidly.
Description
Technical Field
The utility model relates to finished product delivery equipment of a filling cap screwing machine, in particular to a finished product delivery mechanism of an inner and outer double-layer filling cap screwing machine, which can simultaneously and rapidly finish the pushing out of finished suction nozzle bags of a plurality of suction nozzle bag hanging grooves of a turntable.
Background
At present, a rotary disc type filling cap screwing machine is filling and packaging equipment designed for effectively reducing the occupied area of the equipment. The rotary disc type filling cap screwing machine adopts the rotary disc to carry a plurality of suction nozzle bags to rotate, realizes intermittent conveying of the suction nozzle bags, and enables processing equipment positioned around the rotary disc to sequentially finish the processing of filling, sealing cap installation, finished product delivery and the like of the plurality of suction nozzle bags suspended at the edge of the rotary disc. The patent document of China, with the publication number of CN210175278U, entitled "detection control system of suction nozzle bag filling and cap screwing production line", discloses a suction nozzle bag filling and cap screwing production line, which comprises a rotary table, a control device, a rotary table driving device for driving the rotary table, and a bag hanging mechanism, a bag missing detection mechanism, a filling mechanism, a cap sleeving mechanism, a cap missing detection mechanism, a cap screwing and synchronous torque detection mechanism and a finished product delivering mechanism which are sequentially arranged along the circumferential direction of the rotary table according to the processing sequence, wherein a plurality of stations are arranged at the edge of the rotary table, and a plurality of suction nozzle bag hanging units are arranged at each station. However, since the work efficiency is difficult to be greatly improved, it is difficult to satisfy the demand for large-scale industrial production.
In order to effectively improve the yield, only a method of increasing the number of rotary disc type filling cap screwing machines or increasing the area of a rotary disc can be adopted to improve the working efficiency of the rotary disc type filling cap screwing machines. However, both of these methods require a large increase in the floor space of the equipment, and not only do the two methods result in a large increase in the cost of the production equipment, but also a large increase in the production plant area or the addition of new production plants. Once the plant area is difficult to be greatly increased, or a proper plant for placing new equipment cannot be found, the producer cannot adopt the two methods to improve the yield.
In order to effectively improve the yield without greatly increasing the occupied area of equipment, the applicant improves the rotary table structure in the prior art, a plurality of suction nozzle bag hanging grooves which are distributed in sequence along the circumferential direction of the rotary table are formed in the rotary table, each suction nozzle bag hanging groove is provided with at least two suction nozzle bag grooves, the suction nozzle bag grooves are sequentially arranged from outside to inside along the extending direction of the suction nozzle bag hanging groove, and all suction nozzle bag hanging grooves are arranged in the suction nozzle bag grooves in the same sequence to form an annular suction nozzle bag conveying unit. Therefore, the floor area of the cap screwing machine is not changed because the size of the turntable is not changed, and the cap screwing machine can be realized by modifying the existing filling cap screwing machine. All processing equipment can be unchanged or can be matched with the turntable by only increasing the number of processing devices.
However, the applicant found that the existing product delivery mechanism can deliver only one suction nozzle bag product from the suction nozzle bag suspension tank at a time, and the working efficiency is low, and the requirement of the filling cap screwing machine adopting the turntable cannot be met. In addition, once one or more suction nozzle bags are out of the finished product of the suction nozzle bags in a certain suction nozzle bag hanging groove, the installation of the sealing cover is not finished (namely, the suction nozzle bags are waste products), and the existing finished product delivery mechanism cannot avoid the waste products and only delivers the finished product of the suction nozzle bags.
Disclosure of Invention
The utility model aims to provide a finished product delivery mechanism of an inner and outer double-layer filling cap screwing machine, which can rapidly push out finished suction nozzle bags of a plurality of suction nozzle bag hanging grooves of a turntable. The technical scheme adopted is as follows:
the utility model provides a inside and outside bilayer fills finished product of spiral cover machine and sends out mechanism, is driven its characterized in that including frame and the finished product that installs respectively in the frame send out device, by carousel drive arrangement: the rotary table is provided with a plurality of suction nozzle bag hanging grooves which are distributed along the circumferential direction of the rotary table in sequence, the finished product delivering device comprises a positioning frame and at least one suction nozzle bag delivering unit, the positioning frame is arranged on the machine frame, the suction nozzle bag delivering units are arranged on the positioning frame, and each suction nozzle bag delivering unit corresponds to at least one different suction nozzle bag hanging groove.
The preferred scheme, suction nozzle bag send out the unit includes sending out cylinder, mounting panel, a plurality of optional send out device, and send out the cylinder and install on the locating rack, send out the piston shaft of cylinder along horizontal direction orientation corresponding suction nozzle bag and hang the groove outside and extend, the mounting panel is installed on sending out the piston shaft of cylinder, and each optional send out device is installed on the mounting panel.
Compared with the prior art, the utility model has the beneficial effects that as each suction nozzle bag sending unit corresponds to a plurality of suction nozzle bag hanging grooves, suction nozzle bag finished products in the suction nozzle bag hanging grooves can be sent out simultaneously; the optional discharging device can raise the discharging bag pushing piece corresponding to a suction nozzle bag when a certain suction nozzle bag is found to be not provided with a sealing cover, so that unqualified suction nozzle bags are prevented from being discharged; therefore, the finished product delivery mechanism can well cooperate with the turntable to work, and simultaneously, the push-out of the finished product of the suction nozzle bags in the plurality of suction nozzle bag hanging grooves of the turntable is completed rapidly.
Drawings
FIG. 1 is a schematic diagram of the structure of one embodiment of the present utility model;
FIG. 2 is an enlarged view of the product delivery mechanism of FIG. 1;
FIG. 3 is a left side view of FIG. 2;
fig. 4 is a front view of one nozzle bag feeding unit of fig. 2.
Detailed Description
As shown in fig. 1-4, the finished product delivering mechanism of the inner and outer double-layer filling cap screwing machine in one embodiment of the present application comprises a frame 4, a finished product delivering device 1 respectively installed on the frame 4, and a turntable 2 driven by the turntable driving device 3, wherein a plurality of suction nozzle bag hanging grooves 201 sequentially distributed along the circumferential direction of the turntable 2 are formed in the turntable 2, the finished product delivering device 1 comprises a positioning frame 101 and two suction nozzle bag delivering units 102, the positioning frame 101 is installed on the frame 1, the suction nozzle bag delivering units 102 are installed on the positioning frame 101, and each suction nozzle bag delivering unit 102 corresponds to at least one different suction nozzle bag hanging groove 201.
As shown in fig. 2, in an alternative embodiment, each suction nozzle bag delivering unit 102 corresponds to 3 different suction nozzle bag hanging slots 201.
As shown in fig. 2 and 4, in an alternative embodiment, the suction nozzle bag delivering unit 102 includes a delivering cylinder 1021, a mounting plate 1022, and a plurality of alternative delivering devices 1023, the delivering cylinder 1021 is mounted on the positioning frame 101, the piston axis of the delivering cylinder 1021 extends along the horizontal direction toward the outer sides of the corresponding 3 suction nozzle bag hanging slots 201 (because the 3 corresponding suction nozzle bag hanging slots 201 are close together and have substantially the same outer directions), the mounting plate 1022 is mounted on the piston axis of the delivering cylinder 1021, and each alternative delivering device 1023 is mounted on the mounting plate 1022.
As shown in fig. 2 and 3, in an alternative embodiment, the number of the suction nozzle bag delivering units 102 is 2.
Each suction nozzle bag hanging slot 201 has at least two suction nozzle bag slots for hanging suction nozzle bags, and the optional delivering device 1023 is the same in number and one-to-one correspondence with the suction nozzle bag slots (all suction nozzle bag slots of the suction nozzle bag hanging slots 201 corresponding to all suction nozzle bag delivering units 102).
As shown in fig. 1, 2 and 4, in an alternative embodiment, each suction nozzle bag hanging slot 201 has two suction nozzle bag slots for hanging suction nozzle bags, the total number of the suction nozzle bag slots is 12, the number of the optional sending-out devices 1023 is the same as the number of the suction nozzle bag slots, and the number of the optional sending-out devices 1023 is 12, and the optional sending-out devices 1023 are in one-to-one correspondence with the suction nozzle bag slots.
In an alternative embodiment, each suction nozzle bag hanging slot 201 has 3 suction nozzle bag slots for hanging suction nozzle bags, the total number of the suction nozzle bag slots is 18, the number of the optional sending-out devices 1023 is the same as the number of the suction nozzle bag slots, and the number of the optional sending-out devices 1023 is 18, and the optional sending-out devices 1023 are in one-to-one correspondence with the two suction nozzle bag slots.
As shown in fig. 4, in an alternative embodiment, the optional delivering device 1023 includes a second lifting cylinder 10231, and a delivering bag pushing member 10232, where the second lifting cylinder 10231 is mounted on the mounting plate 1022, and a second piston shaft of the second lifting cylinder 10231 extends upward in a vertical direction, and the delivering bag pushing member 10232 is mounted on the second piston shaft of the second lifting cylinder 10231, and a bottom end of the delivering bag pushing member 10232 is inserted into a suction nozzle bag slot of the corresponding suction nozzle bag hanging slot 201.
As shown in fig. 1-4, the operation of the product delivery mechanism is described as follows:
the two suction nozzle bag delivering units 102 of the finished product delivering mechanism work respectively, and the delivering cylinder 1021 of each suction nozzle bag delivering unit 102 drives the mounting plate 1022 to move forward, and all the suction nozzle bag finished products hung on the suction nozzle bag slot positions corresponding to the lower parts of the suction nozzle bag delivering units are pushed out from the suction nozzle bag hanging slot 201 by the optional delivering device 1023.
If a sealing cover is not installed on the suction nozzle of a certain suction nozzle bag, before the feeding cylinder 1021 starts to work, the second lifting cylinder 10231 of the optional feeding device 1023 corresponding to the suction nozzle bag works to drive the feeding bag member 10232 to move upwards to the highest position, so that the feeding bag member 10232 cannot push the suction nozzle bag out when the feeding cylinder 1021 works. For example, in an alternative embodiment, when the detecting mechanism detects that the sealing cover is not mounted on the suction nozzle of a certain suction nozzle bag, a detecting signal is sent to the PLC control device of the inner and outer double-layer filling cap screwing machine, and the PLC control device controls the second lifting cylinder 10231 of the alternative discharging device 1023 corresponding to the suction nozzle bag to work, so that the discharging bag pushing member 10232 is driven to move upwards to the highest position, and when the discharging cylinder 1021 works, the discharging bag pushing member 10232 does not push the suction nozzle bag out.
Each suction nozzle bag delivering unit 102 of the finished product delivering mechanism corresponds to the plurality of suction nozzle bag hanging grooves 201, so that suction nozzle bag finished products of the plurality of suction nozzle bag hanging grooves 201 can be delivered simultaneously, and the optional delivering device 1023 can lift the delivering bag pushing member 10232 when the suction nozzle bag is not provided with the sealing cover, so that disqualified suction nozzle bags are prevented from being delivered.
In addition, it should be noted that, in the specific embodiments described in the present specification, names of various parts and the like may be different, and all equivalent or simple changes of the structures, features and principles described in the conception of the present utility model are included in the protection scope of the present utility model. Those skilled in the art may make various modifications or additions to the described embodiments or substitutions in a similar manner without departing from the scope of the utility model as defined in the accompanying claims.
Claims (5)
1. The utility model provides a inside and outside bilayer fills finished product of spiral cover machine and sends out mechanism, is driven its characterized in that including frame and the finished product that installs respectively in the frame send out device, by carousel drive arrangement: the rotary table is provided with a plurality of suction nozzle bag hanging grooves which are distributed along the circumferential direction of the rotary table in sequence, the finished product delivering device comprises a positioning frame and at least one suction nozzle bag delivering unit, the positioning frame is arranged on the machine frame, the suction nozzle bag delivering units are arranged on the positioning frame, and each suction nozzle bag delivering unit corresponds to at least one different suction nozzle bag hanging groove.
2. The finished product delivery mechanism of the inner and outer double-layer filling cap screwing machine as claimed in claim 1, wherein: the number of the suction nozzle bag sending units is 2-4.
3. The finished product delivery mechanism of the inner and outer double-layer filling cap screwing machine as claimed in claim 1, wherein: the suction nozzle bag sending-out unit comprises a sending-out cylinder, a mounting plate and a plurality of optional sending-out devices, wherein the sending-out cylinder is mounted on the positioning frame, a piston shaft of the sending-out cylinder extends towards the outer side of the corresponding suction nozzle bag hanging groove along the horizontal direction, the mounting plate is mounted on the piston shaft of the sending-out cylinder, and each optional sending-out device is mounted on the mounting plate.
4. A finished product delivery mechanism of an inner and outer double-layer filling cap screwing machine as claimed in claim 3, wherein: each suction nozzle bag hanging groove is provided with at least two suction nozzle bag grooves for hanging the suction nozzle bags, and the number of the optional sending-out devices is the same as that of the suction nozzle bag grooves and the feeding-out devices are in one-to-one correspondence with the suction nozzle bag grooves.
5. The finished product delivery mechanism of the inner and outer double-layer filling cap screwing machine as claimed in claim 4, wherein: the optional sending-out device comprises a second lifting cylinder and a sending-out bag pushing piece, wherein the second lifting cylinder is arranged on the mounting plate, a second piston shaft of the second lifting cylinder extends upwards along the vertical direction, the sending-out bag pushing piece is arranged on the second piston shaft of the second lifting cylinder, and the bottom end of the sending-out bag pushing piece is inserted into a suction nozzle bag groove position of a corresponding suction nozzle bag hanging groove.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202321067320.XU CN219115910U (en) | 2023-05-06 | 2023-05-06 | Finished product delivering mechanism of inner and outer double-layer filling cap screwing machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202321067320.XU CN219115910U (en) | 2023-05-06 | 2023-05-06 | Finished product delivering mechanism of inner and outer double-layer filling cap screwing machine |
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CN219115910U true CN219115910U (en) | 2023-06-02 |
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CN202321067320.XU Active CN219115910U (en) | 2023-05-06 | 2023-05-06 | Finished product delivering mechanism of inner and outer double-layer filling cap screwing machine |
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CN (1) | CN219115910U (en) |
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2023
- 2023-05-06 CN CN202321067320.XU patent/CN219115910U/en active Active
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