CN114148569B - Double-aluminum-pack doubling mechanism of cigarette hard box packaging machine - Google Patents

Double-aluminum-pack doubling mechanism of cigarette hard box packaging machine Download PDF

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Publication number
CN114148569B
CN114148569B CN202111451893.8A CN202111451893A CN114148569B CN 114148569 B CN114148569 B CN 114148569B CN 202111451893 A CN202111451893 A CN 202111451893A CN 114148569 B CN114148569 B CN 114148569B
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cam
push rod
aluminum
rotating shaft
connecting block
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CN114148569A (en
Inventor
刘双云
倪敏
许晓鹏
郑江
韩国栋
刘飞
张帆
王兵
胡力文
张志文
董瑞峰
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Yunnan Tobacco Machinery Co ltd
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Yunnan Tobacco Machinery Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B19/00Packaging rod-shaped or tubular articles susceptible to damage by abrasion or pressure, e.g. cigarettes, cigars, macaroni, spaghetti, drinking straws or welding electrodes
    • B65B19/02Packaging cigarettes

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Wrapping Of Specific Fragile Articles (AREA)

Abstract

The invention discloses a double-aluminum-package doubling mechanism of a cigarette hard box packaging machine, which comprises a distribution gearbox and a doubling execution mechanism, wherein the doubling execution mechanism comprises a first single-aluminum-package containing grid and a second single-aluminum-package containing grid, the first single-aluminum-package containing grid and the second single-aluminum-package containing grid are symmetrically arranged left and right, the distribution gearbox comprises a main transmission shaft, a first push rod and a second push rod, the first push rod and the second push rod are connected with the main transmission shaft through a doubling transmission mechanism, the first push rod is in transmission connection with the first single-aluminum-package containing grid, the second push rod is in transmission connection with the second single-aluminum-package containing grid, the first push rod and the second push rod drive the first single-aluminum-package containing grid and the second single-aluminum-package containing grid to move towards each other or away from each other, and the double-aluminum-package doubling mechanism power is provided by a power source of an original FK350S model, and the single-aluminum-package containing grids are driven to be mutually close by the mode of the opposite or back movement of the first push rod and the second push rod, so that doubling of two aluminum packages can be achieved.

Description

Double-aluminum-pack doubling mechanism of cigarette hard box packaging machine
Technical Field
The invention relates to the technical field of transformation of FK350S packaging machines, in particular to a double-aluminum-pack combining mechanism of a cigarette hard box packaging machine.
Background
The FOCKE350S hard box packing machine is a single packet hard box packing device. Mainly comprises a 350-type hard box packaging machine, an 802 automatic smoke storage cabinet, a 401-type Bao Baomo packaging machine, a 408-type carton packaging machine and the like.
350 hard box packagine machine realizes the input feed of cigarette by automatic tray machine or cigarette feed system upstream. As shown in fig. 1, the 350-type hard box packing machine mainly includes: a cigarette sorting and pushing section 1, an aluminum paper conveying section 2, an aluminum paper cutting and packing section 3, an inner frame paper conveying and cutting section 4, a hard shell label paper conveying section 5, a first drying drum 6 and a second drying drum 7. The general workflow is as follows: and after the cigarette bundles are conveyed, the aluminum foil paper wraps the cigarette bundles, and after the cigarette bundles pass through the folding plow, the aluminum foil paper wraps the cigarette bundles into a U shape, and the side face is sealed. Simultaneously, the inner frame paper conveying and shearing section 4 shears the inner frame paper into inner frame paper sheets meeting the requirements, then the inner frame paper sheets are conveyed to an aluminum packet, and then the tobacco packet is conveyed into a die box of a die wheel disc. The small box folded into L shape is put on the die box of the die disc in advance, and the cigarette packet is put in the L-shaped cigarette box. The cigarette case is fed by a cigarette case hopper, glue spreading and date printing are completed through a cigarette case unit, and finally, the cigarette case is pressed into a die box of a die wheel disc by a clapping plate. The cigarette case coated with the glue is picked up from the second propeller by the lifter, and is sent into the conveying folding die wheel to complete folding of the side cover plate of the cigarette case. The packs are then transported to a first drying drum 6 and a second drying drum 7 for drying and the glue at the bond is dried. And the wrapped tobacco packages enter a 401 small package film packaging machine for transparent paper packaging.
For the moisturizing and fragrance-preserving of cigarettes, the novel tobacco adopts a double-aluminum-package packaging mode, but at present, in cigarette packaging, a lot of workshops still use FOCKE350S type packaging machines, but the packaging machines of the machine type only have simple single-aluminum-package packaging functions, and when the FOCKE350S type packaging machines are subjected to double-aluminum-package transformation, the FOCKE350S type packaging machines cannot carry out double-aluminum-package packaging because of not having the double-aluminum-package packaging functions. Therefore, there is an urgent need for a doubling mechanism suitable for FOCKE350S to implement the doubling function.
Disclosure of Invention
To solve the deficiencies in the prior art, the inventor provides a double aluminum bag doubling mechanism suitable for an FK350S packaging machine to realize the doubling operation of the FK350S packaging machine.
Specifically, the invention is realized as follows:
the double-aluminum-package doubling mechanism of the cigarette hard box packaging machine comprises a distribution gear box and a doubling executing mechanism, wherein the doubling executing mechanism comprises a first single-aluminum-package cell and a second single-aluminum-package cell, the first single-aluminum-package cell and the second single-aluminum-package cell are arranged in bilateral symmetry, the distribution gear box comprises a main transmission shaft, a first push rod and a second push rod, the first push rod and the second push rod are connected with the main transmission shaft through a doubling transmission mechanism, the first push rod and the first single-aluminum-package cell are in transmission connection, the second push rod and the second single-aluminum-package cell are in transmission connection, and the first push rod and the second push rod drive the first single-aluminum-package cell and the second single-aluminum-package cell to move towards each other or away from each other.
Further, the packet combining execution mechanism comprises: the two fixing seats symmetrically arranged left and right, a first connecting arm fixedly connected with the first push rod, a second connecting arm fixedly connected with the second push rod, wherein the first push rod and the second push rod drive the first connecting arm and the second connecting arm to move oppositely or back to back, a guide rail is arranged between the two fixing seats, a first mounting seat is arranged on the first connecting arm, a second mounting seat is arranged on the second connecting arm, a first single aluminum containing lattice is arranged on the first mounting seat, a second single aluminum containing lattice is arranged on the second mounting seat, and the first mounting seat and the second mounting seat are slidably connected on the guide rail.
Further, a first tobacco bundle stabilizing device is arranged on the first mounting seat, a second tobacco bundle stabilizing device is arranged on the second mounting seat, a tobacco bundle container cavity is formed between the first/second tobacco bundle stabilizing device and the first/second single aluminum containing grids, and a tobacco pushing channel is arranged between the first tobacco bundle stabilizing device and the second tobacco bundle stabilizing device.
Further, the parallel package actuating mechanism further includes: cam gear, first pivot, second pivot, preceding separation blade and back separation blade, first pivot and second pivot are connected with the fixing base respectively, first pivot, second pivot are connected with cam gear, preceding separation blade is located the entrance that first single aluminium held check and second single aluminium held check, preceding separation blade passes through first link mechanism and is connected with first pivot, first pivot drives preceding separation blade and goes up and down, the back separation blade is located the exit that first single aluminium held check and second single aluminium held check, the back separation blade passes through second link mechanism and is connected with the second pivot, the second pivot rotates, drives back separation blade goes up and down.
Further, the folding executing mechanism further comprises a third rotating shaft and an inner frame paper folding mechanism arranged behind the rear baffle, the third rotating shaft is connected with the fixing seat, the inner frame paper folding mechanism is connected with the third rotating shaft, and the third rotating shaft rotates to drive the inner frame paper folding mechanism to lift.
Further, a first connecting block and a second connecting block are arranged on the second rotating shaft, the first connecting block is movably connected with the second rotating shaft, the first connecting block is connected with the inner frame paper folding mechanism, the second connecting block is fixedly connected with the second rotating shaft, and the second connecting block is connected with the second connecting rod mechanism;
the third rotating shaft is provided with a third connecting block and a fourth connecting block, the third connecting block is fixedly connected with the third rotating shaft, the third connecting block is connected with the inner frame paper flanging mechanism, the fourth connecting block is movably connected with the third rotating shaft, and the fourth connecting block is connected with the second connecting rod mechanism.
Further, the first link mechanism includes: the front baffle plate is fixed on the arc block, one end of the first connecting rod is connected with the arc block, the other end of the first connecting rod is connected with the first rotating shaft, and the arc block is positioned below the guide rail;
the second link mechanism includes: the baffle mounting seat is arranged at the top end of the second connecting rod, and the second connecting rod is connected with the second connecting block and the fourth connecting block respectively;
the inner frame paper hem mechanism includes: the hemmer is positioned at the top end of the third connecting rod, and the third connecting rod is connected with the first connecting block and the third connecting block respectively.
Further, the cam gear includes: the first cam mechanism is connected with the first rotating shaft, the second cam mechanism is connected with the second rotating shaft, and the third cam mechanism is connected with the third rotating shaft.
Further, the first cam mechanism comprises a first cam and a first swing rod mechanism; the second cam mechanism comprises a second cam and a second swing rod mechanism; the third cam mechanism comprises a third cam and a third swing rod mechanism; the first cam, the second cam and the third cam are coaxial, and the cam angles of the first cam, the second cam and the third cam are different.
Further, the parallel driving mechanism comprises: and the first push rod and the second push rod are respectively connected with two ends of the crank swing rod mechanism.
The working principle of the invention is as follows:
when the combination operation is carried out, the main transmission shaft rotates to drive the first push rod to push forward, the first connecting arm is driven to approach the second connecting arm, meanwhile, the second push rod is retracted backwards to drive the second connecting arm to approach the first connecting arm, the single aluminum bags respectively positioned in the two single aluminum containing grids are mutually approached until the single aluminum bags are combined together, and after the combination is finished, the first connecting arm and the second connecting arm are separated under the action of the first push rod and the second push rod, and the next combination operation is waited.
Compared with the prior art, the invention has the beneficial effects that:
(1) The double aluminum package doubling mechanism of the cigarette hard box packaging machine provided by the invention has the advantages that the power is provided by the power source of the original FK350S type, and the power is stably provided for doubling two aluminum packages in a mode that the first push rod and the second push rod do opposite or opposite movement, so that the equipment cost is reduced.
(2) The double aluminum package doubling mechanism is additionally arranged before the trademark paper packaging turret, and a manner that two single aluminum packages are inwards close to each other is adopted to carry out doubling operation on the single aluminum packages, so that doubling function is realized.
(3) The double-aluminum-ladle doubling mechanism is reasonable and compact in layout, and the basic function of doubling is realized in a limited space.
Drawings
Fig. 1 is a process schematic diagram of a hard box packing machine of type 350 in FK350S model;
FIG. 2 is a process flow diagram of a double aluminum packet small box packing unit;
fig. 3 is a perspective view of a double aluminum pack combining mechanism of the cigarette hard pack packing machine in example 1;
FIG. 4 is a perspective view of the distribution gearbox of example 1;
FIG. 5 is a schematic view showing the internal structure of the distribution gearbox in embodiment 1;
FIG. 6 is a schematic view showing the back structure of the distribution gearbox in embodiment 1;
FIG. 7 is a schematic view of the working principle of the distribution gearbox in embodiment 1
FIG. 8 is a perspective view of the parallel-pack actuator of example 1;
FIG. 9 is a schematic process diagram of the parallel-pack actuator of example 1;
FIG. 10 is an exploded view of the parallel-pack actuator of example 1;
FIG. 11 is a side view of the parallel actuator of example 2;
FIG. 12 is an enlarged view of a portion of FIG. 7 at A;
fig. 13 is an exploded view of the cam gear unit in embodiment 2.
Reference numerals:
8-a distribution gearbox; 81-a box body; 82-a main drive shaft; 83-a first pushrod; 84-a second pushrod; 85-fourth cam; 851-cam swing rod; 86-crank swing rod mechanism; 861-first swing link; 862-crank swing rod; 863-a second swing link; 9-a packet combining executing mechanism; 91-fixing seat; 921-a first connecting arm; 922-a second connecting arm; 923-a first mount; 924-a second mount; 925-a first smoke stabilization device; 926-a second smoke stabilization device; 927-a first single aluminum cell; 928-a second single aluminum cell; 93-front baffle; 931-a first rotation shaft; 932—a first link mechanism; 9321-a connector; 9322-a first link; 9323 arc blocks; 94-a rear baffle; 941-a second shaft; 9411-a first connection block; 9412-a second connection block; 942-second link; 943-a baffle mounting base; 95-inner frame paper flanging mechanism; 951-a third spindle; 9511-a third connection block; 9512-fourth connection block; 952-a third link; 953-hemmer; 96-cam gear; 961-a first cam; 9621-first swing link; 9622-second swing rod; 963-a second cam; 964-a second swing link mechanism; 965-a third cam; 9661-third pendulum bar; 9662-fourth swing link; 9663-fifth pendulum bar; 97-guide rail; 10-a second pushing hand.
Detailed Description
The invention will be described in further detail below with reference to the drawings by means of specific embodiments.
Example 1
As shown in fig. 2, the double aluminum ladle doubling process flow is as follows: the actions of wrapping the aluminum paper by the two cigarette bundles are carried out independently, after the aluminum paper is wrapped, the two aluminum packages are combined, meanwhile, the middle part of the inner frame paper is mixed between the two aluminum packages, and the package is completed and enters the package turret. The invention aims to provide a double-aluminum-package doubling mechanism suitable for an FK350S packaging machine, which is characterized in that an original distribution gear box is improved while a doubling executing mechanism is additionally arranged, power is separated from the original distribution gear box, and the doubling executing mechanism is driven to work so as to realize the basic function of doubling.
Specifically, as shown in fig. 3, the double aluminum packet combining mechanism of the cigarette hard packet packaging machine comprises a distribution gear box 8 and a packet combining actuating mechanism 9, wherein, as shown in fig. 4-6, the distribution gear box 8 comprises a box body 81, a main transmission shaft 82 rotatably arranged in the box body 81, a first push rod 83 and a second push rod 84 which are in transmission connection with the main transmission shaft 82, and the main transmission shaft 82 is connected with an FK350S original power system. The box 81 is internally provided with a packet transmission mechanism, and the packet transmission mechanism is in transmission connection with the main transmission shaft 82 and comprises: a fourth cam 85 fixed on the main transmission shaft 82, a cam swing link 851 drivingly connected to the fourth cam 85, a crank swing link mechanism 86 drivingly connected to the cam swing link 851, the crank swing link mechanism 86 including: the first swinging connecting piece 861, the crank swinging rod 862 and the second swinging connecting piece 863 are connected in sequence, the first swinging connecting piece 861 is in transmission connection with the cam swinging rod 851, the first push rod 83 penetrates through the box body 81 to be connected with the first swinging connecting piece 861, and the second push rod 84 penetrates through the box body 81 to be connected with the second swinging connecting piece 863. Specifically, as shown in fig. 7, when the main transmission shaft 82 rotates, the fourth cam 85 is driven to rotate, so that the cam swing rod 851 swings along with the fourth cam, and then the crank swing rod mechanism 86 is driven to move (i.e. the crank swing rod 862 is driven to swing), so that the first push rod 83 and the second push rod 84 are respectively driven to move in opposite directions or in opposite directions (i.e. the first push rod 83 and the second push rod 84 are driven to extend out and retract) through the first swing connecting piece 861 and the second swing connecting piece 863, so as to provide power for the doubling action.
As shown in fig. 8, the packet actuator 9 includes: the fixing seat 91 that the symmetry set up, with first push rod 83 fixed connection's first linking arm 921, with second push rod 84 fixed connection's second linking arm 922, be equipped with guide rail 97 between the two fixing seats, first linking arm 921 and second linking arm 922 are L-shaped, be equipped with first mount pad 923 on the top of first linking arm 921, be equipped with the second mount pad 924 on the top of second linking arm 922, be equipped with first single aluminium and hold check 927 and first cigarette bundle stabilizer 925 on the first mount pad 923, be equipped with second single aluminium and hold check 928 and second cigarette bundle stabilizer 926 on the second mount pad 924, all form the cigarette bundle container chamber between first cigarette bundle stabilizer 925 and first single aluminium hold check 927, second cigarette bundle stabilizer 926 and the second single aluminium hold check 928, be equipped with between first cigarette bundle stabilizer 925 and the second cigarette bundle stabilizer 926, push away the cigarette passageway and be used for pushing away the next process with the cigarette package by the second pushing hands 10 after the package. In this embodiment, the first beam stabilizer 925 and the second beam stabilizer 926 are L-shaped baffles, and a regular cube structure is formed between the baffles and the single aluminum cell, and the baffles are matched with the single aluminum cell to stabilize the tobacco package. As shown in fig. 9, when the two cigarettes are combined, the two cigarettes are conveyed to the two single aluminum containing grids 925 by the previous process, the first push rod 83 pushes out to push the first connecting arm 921 to be close inwards, meanwhile, the second push rod retracts to drive the second connecting arm 922 to be close inwards, the first single aluminum containing grid 927 and the second single aluminum containing grid 928 are driven to approach along the guide rail 97, the two cigarettes are finally combined together, and then after the cigarettes are pushed out by the second push rod 10, the first push rod 83 and the second push rod 84 work reversely to drive the first connecting arm 921 and the second connecting arm 922 to be separated.
Further, as shown in fig. 10, the fixing seat 91 is provided with a first rotating shaft 931, a second rotating shaft 941 and a third rotating shaft 951, the entrance of the single aluminum containing grid 925 is provided with a front baffle 93, the front baffle 93 is connected with the first rotating shaft 931 through a first link mechanism 932, and the front baffle 93 is driven to lift by the rotation of the first rotating shaft 931. Similarly, a rear baffle plate 94 is arranged at the outlet of the single aluminum containing grid 925, the rear baffle plate 94 is connected with a second rotating shaft 941 through a second connecting rod mechanism, and the rear baffle plate 94 is driven to lift through the rotation of the second rotating shaft. The front baffle plate 93 is used for preventing the lower short edge of the aluminum paper folded by the folder from rebounding, and the rear baffle plate 94 plays a role in blocking the cigarette packet, so that the cigarette packet is prevented from being impacted by inertia to punch out a single aluminum containing grid. Meanwhile, the front baffle plate 93, the rear baffle plate 94, the cigarette bundle stabilizing device and the single aluminum containing grid enable the cigarette packet to be in a surrounded state, so that the stability of the cigarette packet is effectively ensured, and the smooth process of merging the packets is facilitated. The back separation blade 94 rear is equipped with inside casing paper hem mechanism 95, and inside casing paper hem mechanism 95 is connected with the third pivot, drives inside casing paper hem mechanism 95 through the rotation of third pivot 951 and goes up and down, folds inside casing paper, makes the both sides of inside casing paper fold into the state of laminating with the tobacco bale side.
Specifically, as shown in fig. 11, the first link mechanism 932 includes: the connecting piece 9321 fixedly arranged on the first rotating shaft 931, the first connecting rod 9322 and the arc-shaped block 9323 positioned below the guide rail 97, the front baffle 93 is fixed in front of the arc-shaped block 9323, one end of the first connecting rod 9322 is connected with the arc-shaped block 9323, and the other end is connected with the connecting piece 9321. When the front baffle 93 needs to be lifted, the first rotating shaft 931 rotates to drive the first link 9322 to lift, so that the front end of the arc block 9323 swings upwards, thereby achieving the purpose of lifting the front baffle 93. Conversely, when lowering is required, the first shaft 931 may be reversed. The second rotating shaft 941 is provided with a first connecting block 9411 and a second connecting block 9412, the first connecting block 9411 is movably connected with the second rotating shaft 941 and is connected with the inner frame paper flanging mechanism 95, and the second connecting block 9412 is fixedly connected with the second rotating shaft 941. The third rotating shaft 951 is provided with a third connecting block 9511 and a fourth connecting block 9512, the third connecting block 9511 is fixedly connected with the third rotating shaft 951, the third connecting block 9511 is connected with the inner frame paper flanging mechanism 95, and the fourth connecting block 9512 is movably connected with the third rotating shaft 951. The second link mechanism includes: the stopper mount 943 and the second link 942, the stopper mount 943 is provided at the top end of the second link 942. The inner frame paper hemming mechanism 95 includes: hemmer 953 and third link 952. Hemmer 953 is located at the top end of third link 952. In this embodiment, the hemmer 953 is "" and is pushed down by the third link 952 to perform the inner frame paper side hemming operation. The second connecting rod 942 is respectively connected with the second connecting block 9412 and the fourth connecting block 9512, when the rear baffle 94 needs to rise, the second rotating shaft 941 rotates to drive the second connecting block 9412 to swing upwards, and the baffle mounting seat 943 and the rear baffle 94 are driven to rise through the second connecting rod 942; conversely, when the rear baffle 94 descends, the second shaft is reversed. The second connecting rod 942 is movably connected with the fourth connecting block 9512, so that stability of the second connecting rod 942 in the lifting process can be ensured. Similarly, the third link 952 is connected to the first connection block 9411 and the third connection block 9511, respectively, and drives the third link 952 through the third rotation shaft 951, so as to realize the lifting function of the folder 953.
Example 2
On the basis of embodiment 1, as shown in fig. 11, the combination actuator 9 further includes a cam gear 96, and the cam gear 96 includes: the first cam mechanism, the second cam mechanism and the third cam mechanism are coaxially arranged. As shown in fig. 12 and 13, the first cam mechanism includes a first cam 961, a first swing link mechanism formed by sequentially connecting a first swing link 9621 and a second swing link 9622, the first swing link 9621 is connected to the first cam 961, and the second swing link 9622 is connected to the first rotating shaft 931. The first rotation shaft 931 is rotated by the rotation of the first cam 961. Similarly, the second cam mechanism includes a second cam 963 and a second swing link mechanism 964, the third cam mechanism includes a third cam 965 and a third swing link mechanism formed by sequentially connecting a third swing link 9661, a fourth swing link 9662 and a fifth swing link 9663, the second cam mechanism is used for driving the second rotating shaft 941 to rotate, and the third cam mechanism is used for driving the third rotating shaft 951 to rotate. The first cam 961, the second cam 963, and the third cam 965 are coaxially assembled, and the power thereof comes from the cigarette clamping mechanism of the original FK350S packing machine. The cam angles of the first cam 961, the second cam 963 and the third cam 965 are different, so that the three cam mechanisms of the same power source drive the three rotating shafts to rotate respectively.
The foregoing description of the invention has been presented for purposes of illustration and description, and is not intended to be limiting. Several simple deductions, modifications or substitutions may also be made by a person skilled in the art to which the invention pertains, based on the idea of the invention.

Claims (9)

1. The double-aluminum-pack doubling mechanism of the cigarette hard box packing machine is characterized by comprising a distribution gear box and a doubling executing mechanism, wherein the doubling executing mechanism comprises a first single aluminum containing grid and a second single aluminum containing grid, the first single aluminum containing grid and the second single aluminum containing grid are symmetrically arranged left and right, the distribution gear box comprises a main transmission shaft, a first push rod and a second push rod, the main transmission shaft is connected with an FK350S original power system, the first push rod and the second push rod are connected with the main transmission shaft through a doubling transmission mechanism, the first push rod is in transmission connection with the first single aluminum containing grid, the second push rod is in transmission connection with the second single aluminum containing grid, and the first push rod and the second push rod drive the first single aluminum containing grid and the second single aluminum containing grid to move oppositely or back to back;
the package drive mechanism includes: and the first push rod and the second push rod are respectively connected with two ends of the crank swing rod mechanism.
2. The dual aluminum packet combining mechanism of the cigarette hard box packing machine of claim 1, wherein the combining actuating mechanism comprises: the two fixing seats symmetrically arranged left and right, a first connecting arm fixedly connected with the first push rod, a second connecting arm fixedly connected with the second push rod, wherein the first push rod and the second push rod drive the first connecting arm and the second connecting arm to move oppositely or back to back, a guide rail is arranged between the two fixing seats, a first mounting seat is arranged on the first connecting arm, a second mounting seat is arranged on the second connecting arm, a first single aluminum containing lattice is arranged on the first mounting seat, a second single aluminum containing lattice is arranged on the second mounting seat, and the first mounting seat and the second mounting seat are slidably connected on the guide rail.
3. The dual aluminum packet combining mechanism of a cigarette hard packet packing machine according to claim 2, wherein a first tobacco bundle stabilizing device is arranged on the first mounting seat, a second tobacco bundle stabilizing device is arranged on the second mounting seat, a tobacco bundle container cavity is formed between the first/second tobacco bundle stabilizing device and the first/second single aluminum containing grids, and a tobacco pushing channel is arranged between the first tobacco bundle stabilizing device and the second tobacco bundle stabilizing device.
4. The dual aluminum packet combining mechanism of the cigarette hard box packing machine of claim 3, wherein the combining actuating mechanism further comprises: cam gear, first pivot, second pivot, preceding separation blade and back separation blade, first pivot and second pivot are connected with the fixing base respectively, first pivot, second pivot are connected with cam gear, preceding separation blade is located the entrance that first single aluminium held check and second single aluminium held check, preceding separation blade passes through first link mechanism and is connected with first pivot, first pivot drives preceding separation blade and goes up and down, the back separation blade is located the exit that first single aluminium held check and second single aluminium held check, the back separation blade passes through second link mechanism and is connected with the second pivot, the second pivot rotates, drives back separation blade goes up and down.
5. The double aluminum bag combining mechanism of the cigarette hard box packing machine according to claim 4, wherein the combining executing mechanism further comprises a third rotating shaft and an inner frame paper folding mechanism arranged behind the rear baffle, the third rotating shaft is connected with the fixing seat, the inner frame paper folding mechanism is connected with the third rotating shaft, and the third rotating shaft rotates to drive the inner frame paper folding mechanism to lift.
6. The double aluminum bag combining mechanism of the cigarette hard box packaging machine according to claim 5, wherein a first connecting block and a second connecting block are arranged on the second rotating shaft, the first connecting block is movably connected with the second rotating shaft, the first connecting block is connected with the inner frame paper flanging mechanism, the second connecting block is fixedly connected with the second rotating shaft, and the second connecting block is connected with the second connecting rod mechanism;
the third rotating shaft is provided with a third connecting block and a fourth connecting block, the third connecting block is fixedly connected with the third rotating shaft, the third connecting block is connected with the inner frame paper flanging mechanism, the fourth connecting block is movably connected with the third rotating shaft, and the fourth connecting block is connected with the second connecting rod mechanism.
7. The dual aluminum packet combining mechanism of the cigarette hard box packing machine of claim 6, wherein the first link mechanism comprises: the front baffle plate is fixed on the arc block, one end of the first connecting rod is connected with the arc block, the other end of the first connecting rod is connected with the first rotating shaft, and the arc block is positioned below the guide rail;
the second link mechanism includes: the baffle mounting seat is arranged at the top end of the second connecting rod, and the second connecting rod is connected with the second connecting block and the fourth connecting block respectively;
the inner frame paper hem mechanism includes: the hemmer is positioned at the top end of the third connecting rod, and the third connecting rod is connected with the first connecting block and the third connecting block respectively.
8. The dual aluminum packet combining mechanism of a cigarette hard packet packing machine of claim 5, wherein the cam gear comprises: the first cam mechanism is connected with the first rotating shaft, the second cam mechanism is connected with the second rotating shaft, and the third cam mechanism is connected with the third rotating shaft.
9. The dual aluminum packet combining mechanism of the cigarette hard box packing machine of claim 8, wherein the first cam mechanism comprises a first cam and a first swing rod mechanism; the second cam mechanism comprises a second cam and a second swing rod mechanism, and the third cam mechanism comprises a third cam and a third swing rod mechanism; the first cam, the second cam and the third cam are coaxial, and the cam angles of the first cam, the second cam and the third cam are different.
CN202111451893.8A 2021-12-01 2021-12-01 Double-aluminum-pack doubling mechanism of cigarette hard box packaging machine Active CN114148569B (en)

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