High-speed horizontal double-aluminum packaging machine
The high-speed double aluminum packaging machine with a horizontal structure, using components such as a material control servo motor and a correction sensor, solves the speed matching and accuracy problems of the vertical packaging machine, achieving efficient and precise packaging results and supporting packaging of irregularly shaped plates.
Patent Information
- Application Number
- CN202520075848.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-14
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-01-14
AI Technical Summary
Existing vertical double aluminum packaging machines have problems such as speed mismatch between the heat sealing device and the easy-tear line pressing device and batch number pressing device, resulting in blurring or position deviation, incomplete packaging after heat sealing, inaccurate material feeding, and inability to package irregularly shaped plates.
The high-speed double aluminum packaging machine with a horizontal structure uses components such as a material control device, a packaging material tension storage device, and a punching device, combined with a material control servo motor, a film feeding servo motor, and a correction sensor, to achieve synchronous movement and precise control of the material. It is equipped with a modular punching device and an electronic cam assembly to improve the equipment's responsiveness and packaging accuracy.
It achieves strong interchangeability of panels, high packaging efficiency, and high packaging precision, solves the speed matching problem, ensures packaging quality and material flatness, and supports packaging of irregularly shaped panels.
Smart Images

Figure CN223919663U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of packing machines, in particular to a kind of high-speed horizontal double-aluminum packing machine. BACKGROUND
[0002] Double-aluminum packing machine is a kind of equipment for packaging medicine by double-layer aluminum film, with good barrier property, can be well blocked oxygen, optical fiber, water stain water vapor, impurity oil dirt etc., also has good air tightness, puncture resistance etc., is used for food packaging and pharmaceutical packaging, existing double-aluminum medicine plate packing machine includes rack, feeding device, heat sealing device, easy tear line pressing device, batch number pressing device, traction device and punching device, but the double-aluminum packing machine of current market scene mostly adopts vertical structure, i.e. feeding device, heat sealing device, easy tear line pressing device, batch number pressing device, traction device and punching device are installed from top to bottom in turn, although vertical structure can make the floor space of whole machine reduce, but there are many technical problems: 1, vertical double-aluminum packing machine adopts continuous traction structure, so heat sealing device and easy tear line pressing device, batch number pressing device are completed work under the condition that coiled material continuously moves, leading to easy tear line pressing and batch number pressing occur trace fuzzy even position deviation condition to make up with the speed of heat sealing device;2, when heat sealing, two coiled material conveyors will produce speed difference, leading to packaging after heat sealing occurs misalignment, thereby affecting the quality of subsequent packaging production;3, when material is put into heat sealing, easy to appear that material does not accurately enter bubble, sometimes multiple materials or no material enter bubble, affect the overall effect of packaging bag;4, vertical double-aluminum packing machine can only package general board, cannot be applied to the packaging of special-shaped board. SUMMARY
[0003] The utility model aims at solving the deficiency of prior art, provide a kind of high-speed horizontal double-aluminum packing machine with simple structure, reasonable in design, strong board interconvertibility, high packaging efficiency, high packaging qualified rate, high packaging precision.
[0004] The utility model discloses a technical scheme that solves its technical problem is: a high -speed horizontal double aluminium packing machine, including frame, control panel, be equipped with control box on the frame, be equipped with feeding device, discharging device on the frame, control panel, feeding device, discharging device and control box electric connection, the frame is equipped with heat sealing device, cold -blast device, primary traction device, secondary traction device, camera detection device, easy tear line pressing device, batch number pressing device, slitting device, tertiary traction device, punching device between feeding device and discharging device and control box electric connection, the frame is equipped with control device between feeding device and heat sealing device, the control device includes blanking rail, be equipped with a plurality of blanking passageway of connecting feeding device and heat sealing device in blanking rail, the bottom both sides of blanking rail are through control slide bar slip and be equipped with the sheet release board of putting, the sheet release board of stopping, the sheet release board and the sheet release board are respectively equipped with the sheet release column of putting, the sheet release column of stopping in each blanking passageway place of blanking rail one side correspondence, the frame still is equipped with control pivot, control bearing seat, the control pivot is driven by control servo motor and is equipped with control eccentric wheel, control slide bar slip is arranged on control bearing seat, the sheet release board is equipped with eccentric rail board of being equipped with on the outside of eccentric wheel, the frame is equipped with package material tension accumulator between primary traction device and secondary traction device, and the package material tension accumulator includes slip and is arranged on the film walking installation board of frame, and the film walking servo motor of driving film walking installation board on the frame slip, the film walking installation board is rotatably equipped with film walking shaft, the punching device includes punching frame, the punching frame is equipped with punching upper push plate, lower punching female die, punching lower push plate in proper order, the punching upper push plate, punching lower push plate slip and are arranged in punching frame and are connected through punching guide shaft, the lower side of punching upper push plate is equipped with the upper punching male die that is matched with lower punching female die, the punching frame still is equipped with the punching servo motor for driving punching lower push plate, eccentric cam assembly, the punching servo motor is equipped with electronic cam controller, the upper punching male die is equipped with the material release board in, the punching upper push plate is equipped with the material release cylinder for driving material release board, the punching frame still is through deviation adjusting screw rod slip and is equipped with deviation sensor, control servo motor and film walking servo motor, punching servo motor, deviation sensor and control box electric connection.Adopting the above structure, the whole machine is controlled by the control box, the reaction sensitivity of the equipment is improved, the response time of each station is short, the material control adopts the inner eccentric wheel, the servo drive and the control box control, the film placing column and the film stopping column make uniform and parallel reciprocating motion, the feeding speed and the synchronization are effectively improved, so that the high-speed operation of the machine is met, the second traction device and the third traction device are arranged to change the speed of the auxiliary machine part, and the film moving shaft is arranged to store and transition the material drawn by the traction, so that the heat sealing process and the auxiliary machine part process are synchronized to ensure the flatness of the material in the auxiliary machine process, improve the overall packaging efficiency and packaging precision, the punching device adopts modular design, which is troublesome to install and replace, the electronic cam and the eccentric cam assembly are combined to drive the upper punching punch to move, so that the upper punching punch has the fastest speed when falling to the lowest point and slower speed when rising to the highest point, and the stripping cylinder and the stripping plate can quickly strip the punched and cut packaging material.
[0005] As preferred, the rack is provided with a vibration lifting device on the side of the feeding device, the vibration lifting device comprises a vibration frame and a lifting frame, the vibration frame is provided with a vibrator and a vibrating sieve plate, the vibrating sieve plate is arranged on the upper side of the vibrator and uniformly provided with sieve holes, the vibration frame is provided with a dust suction hopper below the sieve hole of the vibrating sieve plate, the upper side of the vibrating sieve plate is provided with a plurality of air nozzles, the vibrating sieve plate is provided with a dust curtain on both sides of the air nozzle, the vibration frame is provided with a feeding hopper above one side of the vibrating sieve plate, the lifting frame is provided with a lifting assembly, the lifting assembly is reversely provided with a feeding skip, the vibrating sieve plate and the feeding skip are provided with a movable sieve plate, one side of the lifting frame is provided with a feeding slide connected with the feeding device, the lifting frame is provided with a skip limiting block at the feeding slide, and the feeding skip is provided with a reversing limiting block. Adopting the above structure, the vibration dust removal and lifting feeding are arranged in front of the feeding device, which not only solves the defective materials and dust in the previous process, but also reduces the labor intensity of the user and reduces the secondary pollution of the materials through lifting feeding.
[0006] As preferred, the rack is provided with material bearing rollers on both sides of the heat sealing device, the rack is provided with a film butt joint device between the material bearing rollers and the heat sealing device, the film butt joint device comprises a butt joint bottom plate, the rack is provided with butt joint rotating rollers on both sides of the butt joint bottom plate, the upper side of both ends of the butt joint bottom plate is provided with a butt joint pressing plate which is turned over, the upper side of the butt joint pressing plate on the side of the butt joint bottom plate facing the material bearing rollers is provided with a cutting guide rail, the cutting guide rail is slidably provided with a cutting knife plate and a cutting blade, the rack is provided with a butt joint transmission shaft and a butt joint motor on the lower side of the butt joint bottom plate, the rack is provided with a color mark sensor between the heat sealing device and the butt joint transmission shaft, the side of the butt joint bottom plate close to the cutting knife plate is provided with a detection port, the rack is provided with a tail material detection device in the detection port, and the color mark sensor, the butt joint motor and the tail material detection device are electrically connected with the control box. By using the above structure, the two butt joint pressing plates and the cutting blade are used to press and cut the coiled material, so that it is more convenient and fast to replace the coiled material or remove the damaged coiled material, the color mark sensor detects the position of the material, when there is deviation, the material is elongated by the butt joint transmission shaft outputting a reverse tension to the coiled material, the material misplacement phenomenon is solved, the heat sealing precision is improved, and the tail material detection device is used to detect the remaining amount of the coiled material passing through the film butt joint device, when the coiled material is exhausted, the control box controls the whole machine to stop, so that the film butt joint of the coiled material is convenient.
[0007] As preferred, the heat sealing device comprises a heat sealing frame, the heat sealing frame is provided with two groups of hot pressing rollers at the outlet of the material falling channel, the heat sealing frame is slidably provided with heat sealing bearing seats on the inner and outer sides, the two groups of hot pressing rollers are respectively arranged on the heat sealing bearing seats, the rack is further provided with two groups of heat sealing connecting plates, the two groups of heat sealing connecting plates are respectively provided with heat sealing reducers for driving the two groups of hot pressing rollers to rotate, the two groups of heat sealing reducers are connected through a spline sleeve assembly, one of the heat sealing connecting plates is provided with a heat sealing drive motor for driving the heat sealing reducer on the heat sealing connecting plate, the heat sealing drive motor is electrically connected with the control box, the heat sealing frame is provided with heat sealing wheel shafts on both sides for controlling the sliding of the heat sealing bearing seats, the rack is provided with a heat sealing adjusting motor for driving one of the heat sealing wheel shafts to rotate, the heat sealing adjusting motor is electrically connected with the control box, the heat sealing wheel shafts are provided with transmission worms, the heat sealing frame is rotatably provided with an adjusting screw which is in transmission connection with the heat sealing bearing seats, the end of the adjusting screw is provided with a transmission turbine connected with the transmission worm, and the outer end of the heat sealing wheel shaft is provided with a heat sealing hand wheel. By using the above structure, the heat sealing drive motor is used as power, and the control box controls the driving of the two hot pressing rollers to rotate in opposite directions, so that the material is quickly sealed and then quickly and uniformly enters the next process, the packaging efficiency is improved, in order to ensure the packaging sealing strength, the distance between the two hot pressing rollers is adjusted through the heat sealing wheel shaft, and the transmission worm and the transmission turbine are connected therebetween, the worm and turbine have self-locking property at a certain angle, the packaging coiled material is quickly bonded under the condition of uniform stress, and it is also convenient for users to replace hot pressing rollers with different diameters according to product specifications.
[0008] As preferred, the rack is provided with a track moving base, a horizontal moving groove is formed in the side wall of the track moving base, the blanking track is slidably arranged in the moving groove through a track linear bearing, a track positioning plate and a loose knob are arranged on the outer side of the track moving base for locking the blanking track, and a dust suction cover is arranged on the side opposite to the blanking track and communicated with the inner cavity of the blanking track.
[0009] As preferred, the package material tension accumulator is arranged below the secondary traction device, the package material tension accumulator further comprises a rotating shaft and a tension motor for driving the rotating shaft to rotate, the tension motor is electrically connected with a control box, the rotating shaft is provided with two tension swing arms at two ends, a tension shaft is arranged between the two tension swing arms, a rear wall plate is arranged on the rack, a long sliding hole is horizontally formed in the rear wall plate, accumulator linear bearings are arranged on the rear side of the rear wall plate at the upper and lower sides of the long sliding hole, a film running mounting plate is slidably arranged on the accumulator linear bearings, a long sliding groove is arranged on the rear side of the rear wall plate and covers the long sliding hole, a cover plate is arranged on the film running mounting plate and slidably arranged in the long sliding groove. With the above structure, according to the size of the package, the control box drives the tension swing arms to move upward or downward through the tension motor, so that the tension shaft generates a certain tension on the package material, so that the package material does not jump due to the pulling of the speed change in the subsequent process, the material conveying is smooth, the packaging precision is improved, the sealing of the whole machine is improved by arranging the cover plate, and the stability of the film running shaft movement is improved by sliding the cover plate in the long sliding groove.
[0010] As preferred, the rack is provided with a work station mounting frame, the secondary traction device and the punching device are arranged at two ends of the work station mounting frame, an optical shaft sliding rail is arranged on the work station mounting frame, the camera detection device, the easy-to-tear line pressing device, the batch number pressing device, the slitting device and the tertiary traction device are slidably arranged on the optical shaft sliding rail, the bottom of each of the camera detection device, the easy-to-tear line pressing device, the batch number pressing device, the slitting device and the tertiary traction device is provided with a moving rack, a locking assembly and a moving scale, a gear shaft engaged with the moving rack and a worm handle driving the gear shaft to rotate are arranged on the work station mounting frame, and a decorative scale is arranged on the outer side of the work station mounting frame corresponding to the moving scale. With the above structure, each device is independent of each other, the position of each device can be adjusted or replaced according to actual needs, and the interchangeability of the plates is improved.
[0011] As preferred, the discharging device comprises an outer conveying belt, one end of the outer conveying belt extends to the inside of the punching device, a plurality of partition convex strips are uniformly arranged on the surface of the outer conveying belt, a manipulator module is arranged on the upper side of the frame and extends to the outside of the outer conveying belt, a suction cup mounting rack is slidably arranged on the manipulator module, a manipulator cylinder is fixedly arranged at the lower end of the suction cup mounting rack, a suction cup large plate is arranged at the end of the piston rod of the manipulator cylinder, a plurality of groups of vacuum suction cups are arranged on the suction cup large plate, and the vacuum suction cups are electrically connected with the control box. By adopting the above structure, the camera detection device detects and controls the qualified packaging materials to be sucked by the vacuum suction cups and conveyed to the corresponding position by the control box. The unqualified products are not sucked by the corresponding vacuum suction cups, so that they are directly conveyed out on the conveying belt, thereby completing the work of moving the packaging materials and removing the waste products, and facilitating the seamless connection and cooperative work of the user in the subsequent process.
[0012] As preferred, the frame is provided with a deviation rectifying device between the punching device and the output device, the deviation rectifying device comprises a rectifying guide shaft, a rectifying rack plate slidably arranged on the rectifying guide shaft, a deviation rectifier arranged between the rectifying rack plate and the frame, the deviation rectifier controls the movement of the rectifying rack plate according to the signal fed back by the deviation sensor, a traction bearing seat is arranged at the bottom of the rectifying rack plate, a rectifying driving shaft is arranged on the traction bearing seat, a traction sliding block is slidably arranged in the traction bearing seat through a traction adjusting screw, a rectifying driven shaft is arranged on the traction sliding block, a transmission gear is sleeved on the rectifying driving shaft and the rectifying driven shaft and meshes with each other, a rectifying motor for driving the rectifying driving shaft to rotate is arranged on the rectifying rack plate, and the rectifying motor is electrically connected with the control box. By adopting the above structure, the plate deviation phenomenon is solved, the position accuracy of the plate is improved, and the punching accuracy is improved.
[0013] As preferred, the frame is provided with an internal edge recovery device below the slitting device, the internal edge recovery device comprises a recovery fan and a recovery hopper connected with the recovery fan, a recovery pipe is arranged between the inner cavity of the recovery hopper and the slitting device, and a recovery cutter plate is rotatably arranged at the pipe opening of the recovery pipe; an external edge recovery device is arranged on the rectifying rack plate, the external edge recovery device comprises a waste material shaft and a recovery motor for driving the waste material shaft to rotate, two groups of recovery turning rollers are arranged on the top of the rectifying rack plate, and a floating roller is slidably arranged in the rectifying rack plate between the two groups of recovery turning rollers. By adopting the above structure, the internal edge recovery device and the external edge recovery device are arranged, so that the user can recover the edge generated according to the cutting mode of different products.
[0014] The utility model has the advantages of simple structure, reasonable design, strong plate interconvertibility, high packaging efficiency, high packaging qualification rate, high packaging precision and the like. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 is the whole structure schematic diagram of the embodiment of the utility model;
[0016] Figure 2 is a front view of the embodiment of the utility model;
[0017] Figure 3 is the structure schematic diagram of the utility model vibration lifting device;
[0018] Figure 4 is a sectional view of the utility model vibration lifting device;
[0019] Figure 5 is the structure schematic diagram of the utility model heat seal part;
[0020] Figure 6 is a front view of the utility model heat seal frame;
[0021] Figure 7 is the structure schematic diagram of the utility model heat seal device;
[0022] Figure 8 is the drive structure diagram of the utility model heat seal bearing seat;
[0023] Figure 9 is the structure schematic diagram of the utility model control material device;
[0024] Figure 10 is a top view of the utility model control material device;
[0025] Figure 11 is a sectional view of the utility model control material device;
[0026] Figure 12 is a front view of the utility model alignment film splicing device;
[0027] Figure 13 is the structure schematic diagram of the utility model alignment film splicing device;
[0028] Figure 14 is the structure schematic diagram of the utility model alignment bottom plate;
[0029] Figure 15 is the structure schematic diagram of the utility model auxiliary machine part;
[0030] Figure 16 is the structure schematic diagram of the utility model punching device;
[0031] Figure 17 is a sectional view of the utility model punching device;
[0032] Figure 18is a front view structural schematic diagram of the package material tension accumulator of the utility model;
[0033] Figure 19 is a rear view structural schematic diagram of the package material tension accumulator of the utility model
[0034] Figure 20 is a structural schematic diagram of the station mounting frame of the utility model;
[0035] Figure 21 is a structural schematic diagram of the built-in material edge recovery device of the utility model;
[0036] Figure 22 is a front view structural schematic diagram of the output end of the auxiliary machine part of the utility model;
[0037] Figure 23 is a rear view structural schematic diagram of the output end of the auxiliary machine part of the utility model;
[0038] Figure 24 is a structural schematic diagram of the discharge device of the utility model;
[0039] Figures 1 to 25 is a structural schematic diagram of the traction bearing seat of the utility model.
[0040] In the figure: 1, rack; 2, control panel; 3, control box; 4, feeding device; 5, discharging device; 501, outer conveying belt; 502, partition convex strip; 503, manipulator module; 504, suction cup mounting rack; 505, manipulator cylinder; 506, suction cup large plate; 507, vacuum suction cup; 6, heat sealing device; 601, heat sealing frame; 602, hot pressing roller; 603, heat sealing bearing seat; 604, heat sealing connecting plate; 605, heat sealing speed reducer; 606, spline sleeve assembly; 607, heat sealing drive motor; 608, heat sealing wheel shaft; 609, heat sealing adjusting motor; 610, transmission worm; 611, adjusting screw; 612, transmission turbine; 613, heat sealing hand wheel; 7, cold air device; 8, primary traction device; 9, secondary traction device; 10, camera detection device; 11, easy-to-tear line pressing device; 12, batch number pressing device; 13, slitting device; 14, tertiary traction device; 15, punching device; 1501, punching frame; 1502, punching upper push plate; 1503, lower punching concave die; 1504, punching lower push plate; 1505, punching guide shaft; 1506, upper punching convex die; 1507, punching servo motor; 1508, eccentric cam assembly; 1509, electronic cam controller; 1510, stripping plate; 1511, stripping cylinder; 1512, deviation correction adjusting screw; 1513, deviation correction sensor; 16, material control device; 1601, material falling track; 1602, material falling channel; 1603, material control sliding rod; 1604, sheet placing plate; 1605, sheet stopping plate; 1606, sheet placing column; 1607, sheet stopping column; 1608, material control rotating shaft; 1609, material control bearing seat; 1610, material control servo motor; 1611, material control eccentric wheel; 1612, eccentric track plate; 1613, track moving seat; 1614, moving groove; 1615, track linear bearing; 1616, track positioning plate; 1617, tension knob; 1618, dust collection cover; 17, wrapping material tension accumulator device; 1701, film running mounting plate; 1702, film running servo motor; 1703, film running shaft; 1704, rotating shaft; 1705, tension motor; 1706, tension swing arm; 1707, tension shaft; 1708, rear wall plate; 1709, long sliding hole; 1710, accumulator linear bearing; 1711, long sliding groove; 1712, cover plate; 18, vibration lifting device; 1801, vibration frame; 1802, lifting frame; 1803, vibrator; 1804, vibrating sieve disc; 1805, sieve hole; 1806, dust collection hopper; 1807, air nozzle; 1808, dust blocking curtain; 1809, feeding hopper; 1810, lifting assembly; 1811, feeding hopper; 1812, movable sieve disc; 1813, feeding slide; 1814, hopper limiting block; 1815, overturning limiting block; 19, material bearing roller; 20, version matching and film connecting device; 2001, matching bottom plate; 2002, matching rotating roller; 2003, matching pressing plate; 2004, cutting guide rail; 2005, cutting knife plate;2006, cutting blade; 2007, register transmission shaft; 2008, register motor; 2009, color mark sensor; 2010, detection port; 2011, tail material detection device; 21, work station mounting frame; 2101, optical axis sliding rail; 2102, moving rack; 2103, locking assembly; 2104, moving scale; 2105, gear shaft; 2106, worm hand wheel; 2107, decorative scale; 22, deviation rectifying device; 2201, edge rectifying guide shaft; 2202, edge rectifying frame plate; 2203, deviation rectifier; 2204, traction bearing seat; 2205, edge rectifying driving shaft; 2206, traction adjusting screw; 2207, traction sliding block; 2208, edge rectifying driven shaft; 2209, transmission gear; 2210, edge rectifying motor; 23, built-in material edge recycling device; 2301, recycling fan; 2302, recycling hopper; 2303, recycling pipe; 2304, recycling cutter plate; 24, external material edge recycling device; 2401, waste material shaft; 2402, recycling motor; 2403, recycling turning roller; 2404, floating roller. DETAILED DESCRIPTION
[0041] The technical scheme of the utility model will be further specifically explained below by means of specific embodiments and in combination with the drawings. EMBODIMENT
[0042] As The illustrated high-speed horizontal double aluminum packaging machine includes a rack 1, a control panel 2, a control box 3 provided on the rack 1, a feeding device 4 and a discharging device 5 provided on the rack 1, the control panel 2, the feeding device 4 and the discharging device 5 being electrically connected with the control box 3, the rack 1 being sequentially provided with a heat sealing device 6, a cold air device 7, a first-stage traction device 8, a second-stage traction device 9, a camera detection device 10, a easy-to-tear line pressing device 11, a batch number pressing device 12, a slitting device 13, a third-stage traction device 14 and a punching device 15 between the feeding device 4 and the discharging device 5, the devices being electrically connected with the control box 3, the whole machine being controlled through the control box 3, the reaction sensitivity of the equipment being improved, and the response time of each station being short; the rack 1 is provided with a station mounting frame 21, the second-stage traction device 9 and the punching device 15 are arranged at both ends of the station mounting frame 21, the station mounting frame 21 is provided with an optical axis sliding rail 2101, the camera detection device 10, the easy-to-tear line pressing device 11, the batch number pressing device 12, the slitting device 13 and the third-stage traction device 14 are slidably arranged on the optical axis sliding rail 2101, the bottom of each of the camera detection device 10, the easy-to-tear line pressing device 11, the batch number pressing device 12, the slitting device 13 and the third-stage traction device 14 is provided with a moving rack 2102, a locking assembly 2103 and a moving scale 2104, the station mounting frame 21 is provided with a gear shaft 2105 engaged with the moving rack 2102 and a worm handle 2106 driving the gear shaft 2105 to rotate, the outside of the station mounting frame 21 is provided with a decorative scale 2107 corresponding to the moving scale 2104, each device is independent of each other, the position of each device can be adjusted or replaced according to actual needs, and the interchangeability of the plates is improved.
[0043] The rack 1 is provided with a material control device 16 between the feeding device 4 and the heat sealing device 6, the material control device 16 comprises a material falling track 1601, a plurality of material falling channels 1602 connected with the feeding device 4 and the heat sealing device 6 are arranged in the material falling track 1601, the rack 1 is provided with a sheet placing plate 1604 and a sheet stopping plate 1605 on both sides of the bottom of the material falling track 1601 through a material control sliding rod 1603, the sheet placing plate 1604 and the sheet stopping plate 1605 are respectively provided with a sheet placing column 1606 and a sheet stopping column 1607 corresponding to each material falling channel 1602 on the side of the material falling track 1601, the rack 1 is further provided with a material control rotating shaft 1608 and a material control bearing seat 1609, the material control rotating shaft 1608 is driven by a material control servo motor 1610 and is sleeved with a material control eccentric wheel 1611, the material control sliding rod 1603 is slidably arranged on the material control bearing seat 1609, the sheet placing plate 1604 is provided with an eccentric track plate 1612 sleeved on the outside of the eccentric wheel, the material control servo motor 1610 is electrically connected with the control box 3, the material control adopts an inner eccentric wheel, a servo drive and the control box 3 control, so that the sheet placing column 1606 and the sheet stopping column 1607 make uniform and parallel reciprocating motion, effectively improving the feeding speed and synchronism, so as to meet the high-speed operation of the machine; the rack 1 is provided with a track moving seat 1613, a moving groove 1614 horizontally arranged on the side wall of the track moving seat 1613, the material falling track 1601 is slidably arranged in the moving groove 1614 through a track linear bearing 1615, the outer side of the track moving seat 1613 is provided with a track positioning plate 1616 and a loose knob 1617 for locking the material falling track 1601, the track moving seat 1613 is provided with a dust collection cover 1618 communicated with the inner cavity of the material falling track 1601 on the side opposite to the material falling track 1601, the material falling track 1601 can be replaced according to production requirements, and the dust collection cover 1618 can clear the dust remaining in the material falling track 1601.
[0044] The rack 1 is provided with a packaging material tension accumulator 17 between the first traction device 8 and the second traction device 9, the packaging material tension accumulator 17 comprises a film running installation plate 1701 slidingly arranged on the rack 1, a film running servo motor 1702 driving the film running installation plate 1701 to slide on the rack 1, a film running shaft 1703 is rotatably arranged on the film running installation plate 1701, the film running servo motor 1702 is electrically connected with the control box 3, the second traction device and the third traction device are arranged to drive the auxiliary machine part at variable speed, and the film running shaft 1703 is arranged to store and transition the material drawn by traction, so that the heat sealing process and the auxiliary machine part process are synchronized, the material is kept flat in the auxiliary machine process, and the overall packaging efficiency and packaging precision are improved; the packaging material tension accumulator 17 is arranged on the lower side of the second traction device 9, the packaging material tension accumulator 17 further comprises a rotating shaft 1704, a tension motor 1705 driving the rotating shaft 1704 to rotate, the tension motor 1705 is electrically connected with the control box 3, the rotating shaft 1704 is provided with a tension swing arm 1706 at both ends, and a tension shaft 1707 is arranged between the two tension swing arms 1706; according to the size of the packaging, the control box 3 drives the tension motor 1705 to drive the tension swing arm 1706 to move upward or downward, so that the tension shaft 1707 generates a certain tension on the packaging material, so that the packaging material does not jump due to the pulling of the variable speed process in the later process, the material conveying is flat, and the packaging precision is improved; the rack 1 is provided with a rear wall plate 1708, a long strip sliding hole 1709 is horizontally arranged on the rear wall plate 1708, a storage linear bearing 1710 is arranged on the upper and lower sides of the long strip sliding hole 1709 at the rear side of the rear wall plate 1708, the film running installation plate 1701 is slidingly arranged on the storage linear bearing 1710, a long strip sliding groove 1711 is arranged on the rear side of the rear wall plate 1708 and covers the long strip sliding hole 1709, a cover plate 1712 is arranged on the film running installation plate 1701, and the cover plate 1712 is slidingly arranged in the long strip sliding groove 1711; the sealing property of the whole machine is improved by arranging the cover plate 1712, and the stability of the movement of the film running shaft 1703 is improved by sliding the cover plate 1712 in the long strip sliding groove 1711.
[0045] The rack 1 is provided with a vibration lifting device 18 on the side of the feeding device 4, the vibration lifting device 18 comprises a vibration frame 1801, a lifting frame 1802, the vibration frame 1801 is provided with a vibrator 1803 and a vibrating sieve plate 1804, the vibrating sieve plate 1804 is arranged on the upper side of the vibrator 1803 and is uniformly provided with sieve holes 1805, the vibration frame 1801 is provided with a dust suction hopper 1806 on the lower side of the vibrating sieve plate 1804 at the position of the sieve holes 1805, the upper side of the vibrating sieve plate 1804 is provided with a plurality of air nozzles 1807, the vibrating sieve plate 1804 is provided with dustproof curtains 1808 on the two sides of the air nozzles 1807, the vibration frame 1801 is provided with a feeding hopper 1809 above the side of the vibrating sieve plate 1804, the lifting frame 1802 is provided with a lifting assembly 1810, the lifting assembly 1810 is reversely provided with a feeding bucket 1811, the vibrating sieve plate 1804 and the feeding bucket 1811 are provided with a movable sieve plate 1812, the lifting frame 1802 is provided with a feeding slide 1813 connected with the feeding device 4, the lifting frame 1802 is provided with a bucket limiting block 1814 at the feeding slide 1813, the feeding bucket 1811 is provided with a reversing limiting block 1815, the vibration dust removal and lifting feeding are arranged in front of the feeding device 4, which not only solves the residual material and dust in the previous process, but also reduces the labor intensity of the user and reduces the secondary pollution of the material through the lifting feeding.
[0046] The rack 1 is provided with material bearing rollers 19 on both sides of the heat sealing device 6, and is provided with a film butt joint device 20 between the material bearing rollers 19 and the heat sealing device 6, the film butt joint device 20 comprises a butt joint bottom plate 2001, the rack 1 is provided with butt joint rotating rollers 2002 on both sides of the butt joint bottom plate 2001, the butt joint bottom plate 2001 is provided with butt joint pressing plates 2003 on both ends of the upper side, the butt joint bottom plate 2001 is provided with a cutting guide rail 2004 on the upper side of the butt joint pressing plate 2003 on the side facing the material bearing rollers 19, and the cutting guide rail 2004 is provided with a cutting knife plate 2005 and a cutting blade 2006 sliding thereon, the two butt joint pressing plates 2003 and the cutting blade 2006 are used to press and cut the coiled material, so that it is more convenient and fast to replace the coiled material or remove the damaged coiled material, the rack 1 is provided with a butt joint transmission shaft 2007 and a butt joint motor 2008 on the lower side of the butt joint bottom plate 2001, the rack 1 is provided with a color mark sensor 2009 between the heat sealing device 6 and the butt joint transmission shaft 2007, the butt joint bottom plate 2001 is provided with a detection port 2010 on the side close to the cutting knife plate 2005, the rack 1 is provided with a tail material detection device 2011 in the detection port 2010, the color mark sensor 2009, the butt joint motor 2008 and the tail material detection device 2011 are electrically connected with the control box 3, the color mark sensor 2009 detects the position of the material, when there is deviation, the material is elongated by the butt joint transmission shaft 2007 outputting a reverse tension to the coiled material, the material misalignment phenomenon is solved, the heat sealing precision is improved, and the tail material detection device 2011 is used to detect the remaining amount of the coiled material passing through the film butt joint device 20, when the coiled material is exhausted, the control box 3 controls the whole machine to stop, so that the coiled material is conveniently butt jointed.
[0047] The heat sealing device 6 comprises a heat sealing frame 601, which is provided with two groups of hot pressing rollers 602 at the outlet of the blanking channel 1602, and is provided with heat sealing bearing seats 603 on the inner and outer sides of the heat sealing frame 601, and the two groups of hot pressing rollers 602 are arranged on the heat sealing bearing seats 603, respectively. The rack 1 is also provided with two groups of heat sealing connecting plates 604, and the two groups of heat sealing connecting plates 604 are respectively provided with heat sealing reducers 605 for driving the two groups of hot pressing rollers 602 to rotate, and the two groups of heat sealing reducers 605 are connected through a spline sleeve assembly 606, wherein one of the heat sealing connecting plates 604 is provided with a heat sealing drive motor 607 for driving the heat sealing reducer 605 on the heat sealing connecting plate 604, and the heat sealing drive motor is electrically connected with the control box 3, so that the heat sealing drive motor is powered, and the control box 3 controls the driving of the two hot pressing rollers 602 to rotate in opposite directions, so that the material is quickly sealed and then quickly and uniformly enters the next process, improving the packaging efficiency; The heat sealing frame 601 is provided with heat sealing wheel shafts 608 on both sides for controlling the sliding of the heat sealing bearing seats 603, and the rack 1 is provided with a heat sealing adjusting motor 609 for driving one of the heat sealing wheel shafts 608 to rotate, and the heat sealing adjusting motor 609 is electrically connected with the control box 3. In order to ensure the sealing strength of the package, the distance between the two hot pressing rollers 602 is adjusted through the heat sealing wheel shaft 608, and the heat sealing wheel shaft 608 is provided with a transmission worm 610, and the heat sealing frame 601 is rotatably provided with an adjusting screw 611 which is in transmission connection with the heat sealing bearing seat 603, and the end of the adjusting screw 611 is provided with a transmission turbine 612 which is connected with the transmission worm 610, and the outer end of the heat sealing wheel shaft 608 is provided with a heat sealing hand wheel 613. The transmission worm 610 and the transmission turbine 612 are connected, and the worm and turbine have self-locking property at a certain angle, so that the packaging material is quickly bonded under uniform stress, and it is also convenient for users to replace hot pressing rollers 602 with different diameters according to product specifications.
[0048] The punching device 15 comprises a punching frame 1501, a punching upper push plate 1502, a lower punching concave die 1503, a punching lower push plate 1504 arranged in sequence in the punching frame 1501, the punching upper push plate 1502 and the punching lower push plate 1504 are slidingly arranged in the punching frame 1501 and are connected through a punching guide shaft 1505, the lower side of the punching upper push plate 1502 is provided with a punching upper convex die 1506 matched with the lower punching concave die 1503, the punching frame 1501 is further provided with a punching servo motor 1507 and an eccentric cam assembly 1508 for driving the punching lower push plate 1504, the punching servo motor 1507 is provided with an electronic cam controller 1509, the punching upper convex die 1506 is provided with a stripping plate 1510, the punching upper push plate 1502 is provided with a stripping cylinder 1511 for driving the stripping plate 1510, the punching frame 1501 is further slidingly provided with a deviation correction sensor 1513 through a deviation correction adjusting screw 1512, the punching servo motor 1507 and the deviation correction sensor 1513 are electrically connected with the control box 3, the punching device 15 adopts modular design, and the punching device 15 is troublesome to install and replace, the general plate lower punching concave die 1503 and the punching upper convex die 1506 or the special-shaped plate lower punching concave die 1503 and the punching upper convex die 1506 are used according to actual production needs, the electronic cam and the eccentric cam assembly 1508 are combined to drive the punching upper convex die 1506 to move, so that the punching upper convex die 1506 has the fastest speed when falling to the lowest point and has slower speed when rising to the highest point, and the stripping cylinder 1511 and the stripping plate 1510 can quickly strip the completed package material.
[0049] The discharging device 5 comprises an outer conveying belt 501 extending to the inside of the punching device 15, a plurality of separation convex strips 502 are uniformly arranged on the surface of the outer conveying belt 501, a mechanical hand module 503 is arranged on the upper side of the outer conveying belt 501, the end of the mechanical hand module 503 extends to the outside of the outer conveying belt 501, a suction cup mounting frame 504 is slidingly arranged on the mechanical hand module 503, a mechanical hand cylinder 505 is fixedly arranged at the lower end of the suction cup mounting frame 504, a suction cup large plate 506 is arranged at the end of the piston rod of the mechanical hand cylinder 505, a plurality of groups of vacuum suction cups 507 are arranged on the suction cup large plate 506, the vacuum suction cups 507 are electrically connected with the control box 3, the camera detection device 10 detects and controls the qualified package material to be sucked and conveyed to the corresponding position by the vacuum suction cups 507, the vacuum suction cups 507 corresponding to the unqualified products do not have the adsorption effect, so that the unqualified products are directly conveyed out on the conveying belt, thereby completing the work of moving the package material and removing the waste products, and facilitating the seamless connection and cooperative work of the user in the subsequent process.
[0050] The rack 1 is provided with a deviation rectifying device 22 between the punching device 15 and the output device, the deviation rectifying device 22 comprises a rectifying guide shaft 2201, a rectifying frame plate 2202 which is slidably arranged on the rectifying guide shaft, a deviation rectifier 2203 which is arranged between the rectifying frame plate 2202 and the rack 1, the deviation rectifier 2203 controls the movement of the rectifying frame plate 2202 according to the feedback signal of the deviation sensor 1513, the rectifying frame plate 2202 is provided with a traction bearing seat 2204 at the bottom, the traction bearing seat 2204 is provided with a rectifying driving shaft 2205, the traction bearing seat 2204 is slidably provided with a traction sliding block 2207 through a traction adjusting screw 2206, the traction sliding block 2207 is provided with a rectifying driven shaft 2208, the rectifying driving shaft 2205 and the rectifying driven shaft 2208 are provided with transmission gears 2209 which are in meshing relationship, the rectifying frame plate 2202 is provided with a rectifying motor 2210 which drives the rectifying driving shaft 2205 to rotate, the rectifying motor 2210 is electrically connected with the control box 3, the plate deviation phenomenon is solved, the position accuracy of the plate is improved, and the punching accuracy is improved.
[0051] The rack 1 is provided with an internal edge recovery device 23 below the slitting device 13, the internal edge recovery device 23 comprises a recovery fan 2301 and a recovery hopper 2302 which is connected with the recovery fan 2301, the internal cavity of the recovery hopper 2302 is provided with a recovery pipe 2303 between the slitting device 13, and the internal cavity of the recovery hopper 2302 is rotatably provided with a recovery cutter plate 2304 at the pipe opening of the recovery pipe 2303; the rectifying frame plate 2202 is provided with an external edge recovery device 24, the external edge recovery device 24 comprises a waste shaft 2401 and a recovery motor 2402 which drives the waste shaft 2401 to rotate, the rectifying frame plate 2202 is provided with two groups of recovery turning rollers 2403 at the top, and the rectifying frame plate 2202 is slidably arranged with a floating roller 2404 between the two groups of recovery turning rollers 2403, the internal edge recovery device 23 and the external edge recovery device 24 are arranged, so that the user can recover the edge according to the cutting mode of different products.
[0052] The utility model discloses a working principle: first traction device is drawn to the two hot pressure rolls 602 between heat sealing device 6 with the coiled material on two material bearing rollers 19 through the film device 20 of edition, when color standard sensor 2009 detects material position deviation, edition drive shaft 2007 carries out the rope correction of coiled material, when coiled material appears breakage or replacement, through the cutting blade 2006 of joint pressure plate and to the coiled material of pressure, cutting and splicing, after material carries out vibration dust removal through vibration lifting device 18, and promotes the feeding to feeding device 4, and feeding device 4 passes through control material device 16 and feeds to the hot pressure rolls 602 between heat sealing device 4 according to the material of demand in turn and carries out the sealing of the coiled material, and the coiled material is entered into auxiliary machine process after the cooling of air cooling device and is drawn in turn through the camera detection device 10, easy tearing line pressing device 11, batch number pressing device 12, slitting device 13 by second traction device and third traction device and carries out operation, because the excess coiled material of the speed difference between first traction device and second traction device, third traction device is stored in coiled material tension accumulator 17, so that the coiled material keeps even in auxiliary machine, according to the different selection of coiled material specification slitting device 13 or punch cutting device 15 carries out cutting, and the material edge produced by slitting is recycled by built-in material edge recovery device 23 and is discharged, and the material edge produced by cutting is recycled by external material edge recovery device 24 and is handled, when punch cutting device 15 carries out cutting, and deviation rectifying device 22 carries out edge correction to the coiled material and guarantees its cutting accuracy, and finally the coiled material is output by external conveying belt 501, and the qualified coiled material is conveyed to the subsequent process by vacuum chuck 507, and the unqualified coiled material is directly output by external conveying belt 501 and is recycled.
[0053] The above-described embodiments are only a preferred scheme of the utility model, and do not limit the utility model in any form, and other variants and modifications are still possible without exceeding the technical scheme recorded in the claims.
Claims
1. A high-speed horizontal double-aluminum packaging machine, comprising a frame (1), a control panel (2), and a control box (3) provided on the frame (1), characterized in that: The rack (1) is provided with a feeding device (4) and a discharging device (5), the control panel (2), the feeding device (4) and the discharging device (5) are electrically connected with the control box (3), the rack (1) is sequentially provided with a heat sealing device (6), a cold air device (7), a first level traction device (8), a second level traction device (9), a camera detection device (10), an easy-to-tear line pressing device (11), a batch number pressing device (12), a slitting device (13), a third level traction device (14) and a punching device (15) between the feeding device (4) and the discharging device (5) and are electrically connected with the control box (3); the rack (1) is provided with a material control device (16) between the feeding device (4) and the heat sealing device (6), the material control device (16) comprises a blanking track (1601), a plurality of blanking channels (1602) connected with the feeding device (4) and the heat sealing device (6) are arranged in the blanking track (1601), the rack (1) is provided with a film placing plate (1604) and a film stopping plate (1605) on both sides of the bottom of the blanking track (1601) and is slidably connected through a material control sliding rod (1603), the film placing plate (1604) and the film stopping plate (1605) are respectively provided with a film placing column (1606) and a film stopping column (1607) corresponding to each blanking channel (1602) on the side facing the blanking track (1601), the rack (1) is further provided with a material control rotating shaft (1608) and a material control bearing seat (1609), the material control rotating shaft (1608) is driven by a material control servo motor (1610) and is sleeved with a material control eccentric wheel (1611), the material control sliding rod (1603) is slidably arranged on the material control bearing seat (1609), and the film placing plate (1604) is provided with an eccentric track plate (1612) sleeved on the outside of the material control eccentric wheel (1611); the rack (1) is provided with a material wrapping tension storage device (17) between the first level traction device (8) and the second level traction device (9), the material wrapping tension storage device (17) comprises a film running mounting plate (1701) slidably arranged on the rack (1) and a film running servo motor (1702) for driving the film running mounting plate (1701) to slide on the rack (1), and a film running shaft (1703) is rotationally arranged on the film running mounting plate (1701).The punching device (15) comprises a punching frame (1501), a punching upper push plate (1502), a lower punching concave die (1503), a punching lower push plate (1504) are sequentially arranged in the punching frame (1501), the punching upper push plate (1502) and the punching lower push plate (1504) are slidingly arranged in the punching frame (1501) and are connected through a punching guide shaft (1505), the lower side of the punching upper push plate (1502) is provided with a punching upper convex die (1506) matched with the lower punching concave die (1503), the punching frame (1501) is further provided with a punching servo motor (1507) and an eccentric cam assembly (1508) for driving the punching lower push plate (1504), the punching servo motor (1507) is provided with an electronic cam controller (1509), the punching upper convex die (1506) is provided with a stripping plate (1510), the punching upper push plate (1502) is provided with a stripping cylinder (1511) for driving the stripping plate (1510), and the punching frame (1501) is further slidingly provided with a deviation correction sensor (1513) through a deviation correction adjusting screw (1512); the material control servo motor (1610) is electrically connected with the film running servo motor (1702), the punching servo motor (1507) and the deviation correction sensor (1513), and the control box (3).
2. The high speed horizontal double aluminium packaging machine according to claim 1, characterized in that: The rack (1) is provided with a vibration lifting device (18) on the side of the feeding device (4), the vibration lifting device (18) comprises a vibration frame (1801) and a lifting frame (1802), the vibration frame (1801) is provided with a vibrator (1803) and a vibrating sieve disc (1804), the vibrating sieve disc (1804) is arranged on the upper side of the vibrator (1803), and the vibrating sieve disc (1804) is uniformly provided with sieve holes (1805), the lower side of the vibration frame (1801) is provided with a dust suction hopper (1806) at the position of the vibrating sieve disc (1804) provided with the sieve holes (1805), the upper side of the vibrating sieve disc (1804) is provided with a plurality of air nozzles (1807), the vibrating sieve disc (1804) is provided with dust blocking curtains (1808) on the two sides of the air nozzles (1807), the vibration frame (1801) is provided with a feeding hopper (1809) above the side of the vibrating sieve disc (1804), the lifting frame (1802) is provided with a lifting assembly (1810), the lifting assembly (1810) is reversely provided with a feeding rotary hopper (1811), the vibrating sieve disc (1804) and the feeding rotary hopper (1811) are provided with a movable sieve disc (1812), the lifting frame (1802) is provided with a feeding chute (1813) communicated with the feeding device (4) on one side, the lifting frame (1802) is provided with a rotary hopper limiting block (1814) at the feeding chute (1813), and the feeding rotary hopper (1811) is provided with a reversing limiting block (1815).
3. The high speed horizontal double aluminum packaging machine according to claim 1, characterized in that: The rack (1) is provided with a material bearing roller (19) on the two sides of the heat sealing device (6), the rack (1) is provided with a film butting device (20) between the material bearing roller (19) and the heat sealing device (6), the film butting device (20) comprises a butt bottom plate (2001), the rack (1) is provided with butt rotating rollers (2002) on the two sides of the butt bottom plate (2001), the butt bottom plate (2001) is reversely provided with butt pressing plates (2003) at the two ends of the upper side, the upper side of the butt pressing plate (2003) on the side of the butt bottom plate (2001) facing the material bearing roller (19) is provided with a cutting guide rail (2004), the cutting guide rail (2004) is slidably provided with a cutting knife plate (2005) and a cutting blade (2006), the rack (1) is provided with a butt transmission shaft (2007) and a butt motor (2008) on the lower side of the butt bottom plate (2001), the rack (1) is provided with a color mark sensor (2009) between the heat sealing device (6) and the butt transmission shaft (2007), the butt bottom plate (2001) is provided with a detection port (2010) on the side close to the cutting knife plate (2005), and the rack (1) is provided with a tail material detection device (2011) in the detection port (2010), and the color mark sensor (2009), the butt motor (2008) and the tail material detection device (2011) are electrically connected with the control box (3).
4. The high speed horizontal double aluminum packaging machine according to claim 1, characterized in that: The heat sealing device (6) comprises a heat sealing frame (601), two groups of hot pressing rollers (602) are arranged at the outlet of the blanking channel (1602), heat sealing bearing seats (603) are arranged on the inner and outer sides of the heat sealing frame (601), the two groups of hot pressing rollers (602) are arranged on the heat sealing bearing seats (603) respectively, two groups of heat sealing connecting plates (604) are arranged on the rack (1), heat sealing reducers (605) for driving the two groups of hot pressing rollers (602) to rotate are arranged on the two groups of heat sealing connecting plates (604) respectively, the two groups of heat sealing reducers (605) are connected through a spline sleeve assembly (606), one of the heat sealing connecting plates (604) is provided with a heat sealing driving motor (607) for driving the heat sealing reducer (605) on the heat sealing connecting plate (604), the heat sealing driving motor (607) is electrically connected with the control box (3), the heat sealing frame (601) is provided with heat sealing wheel shafts (608) for controlling the sliding of the heat sealing bearing seats (603), the rack (1) is provided with a heat sealing adjusting motor (609) for driving one of the heat sealing wheel shafts (608) to rotate, the heat sealing adjusting motor (609) is electrically connected with the control box (3), the heat sealing wheel shaft (608) is provided with a transmission worm (610), the heat sealing frame (601) is rotatably provided with an adjusting screw (611) connected with the heat sealing bearing seat (603), the end of the adjusting screw (611) is provided with a transmission turbine (612) connected with the transmission worm (610), and the outer end of the heat sealing wheel shaft (608) is provided with a heat sealing hand wheel (613).
5. The high speed horizontal double aluminum packaging machine according to claim 1, characterized in that: The rack (1) is provided with a track moving seat (1613), a horizontal moving groove (1614) is formed in the side wall of the track moving seat (1613), the blanking track (1601) is slidably arranged in the moving groove (1614) through a track linear bearing (1615), the outer side of the track moving seat (1613) is provided with a track positioning plate (1616) and a tension knob (1617) for locking the blanking track (1601), and the side of the track moving seat (1613) opposite to the blanking track (1601) is provided with a dust collection cover (1618) communicated with the inner cavity of the blanking track (1601).
6. The high speed horizontal twin aluminum packaging machine according to claim 1, characterized in that: The package material tension accumulator (17) is arranged below the secondary traction device (9), the package material tension accumulator (17) further comprises a rotating shaft (1704), a tension motor (1705) for driving the rotating shaft (1704) to rotate, the tension motor (1705) is electrically connected with the control box (3), the rotating shaft (1704) is provided with a tension swing arm (1706) at both ends, two tension swing arms (1706) are provided with a tension shaft (1707) between, the rack (1) is provided with a rear wall plate (1708), the rear wall plate (1708) is provided with a long sliding hole (1709) horizontally, the rear side of the rear wall plate (1708) is provided with a storage linear bearing (1710) on the upper and lower sides of the long sliding hole (1709), the film installation plate (1701) is slidably arranged on the storage linear bearing (1710), the rear side of the rear wall plate (1708) is provided with a long sliding groove (1711) covering the long sliding hole (1709), the film installation plate (1701) is provided with a cover plate (1712), and the cover plate (1712) is slidably arranged in the long sliding groove (1711).
7. The high speed horizontal twin aluminum packaging machine according to claim 1, characterized in that: The rack (1) is provided with a station mounting frame (21), the secondary traction device (9) and the punching device (15) are arranged at both ends of the station mounting frame (21), the station mounting frame (21) is provided with an optical axis sliding rail (2101), the camera detection device (10), the easy-to-tear line pressing device (11), the batch number pressing device (12), the cutting device (13) and the tertiary traction device (14) are slidably arranged on the optical axis sliding rail (2101), the bottom of the camera detection device (10), the easy-to-tear line pressing device (11), the batch number pressing device (12), the cutting device (13) and the tertiary traction device (14) is provided with a moving rack (2102), a locking assembly (2103) and a moving scale (2104), the station mounting frame (21) is provided with a gear shaft (2105) engaged with the moving rack (2102) and a worm handle (2106) for driving the gear shaft (2105) to rotate, and the outer side of the station mounting frame (21) is provided with a decorative scale (2107) corresponding to the moving scale (2104).
8. The high speed horizontal twin aluminum packaging machine according to claim 1, characterized in that: The discharge device (5) includes an outer conveyor belt (501), one end of the outer conveyor belt (501) extends to the inside of the punching device (15), a plurality of separation convex strips (502) are uniformly arranged on the surface of the outer conveyor belt (501), the rack (1) is provided with a mechanical hand module (503) on the upper side of the outer conveyor belt (501), the end of the mechanical hand module (503) extends to the outside of the outer conveyor belt (501), a suction cup mounting rack (504) is slidably arranged on the mechanical hand module (503), a mechanical hand cylinder (505) is fixedly arranged at the lower end of the suction cup mounting rack (504), a suction cup large plate (506) is arranged at the end of the piston rod of the mechanical hand cylinder (505), a plurality of groups of vacuum suction cups (507) are arranged on the suction cup large plate (506), and the vacuum suction cups (507) are electrically connected with the control box (3).
9. The high speed horizontal twin aluminum packaging machine according to claim 1, characterized in that: The rack (1) is provided with a deviation rectifying device (22) between the punching device (15) and the output device, the deviation rectifying device (22) includes a rectifying guide shaft (2201) and a rectifying rack plate (2202) slidably arranged on the rectifying guide shaft, a deviation rectifier (2203) is arranged between the rectifying rack plate (2202) and the rack (1), a traction bearing seat (2204) is arranged at the bottom of the rectifying rack plate (2202), a rectifying driving shaft (2205) is arranged on the traction bearing seat (2204), a traction sliding block (2207) is slidably arranged in the traction bearing seat (2204) through a traction adjusting screw (2206), a rectifying driven shaft (2208) is arranged on the traction sliding block (2207), a transmission gear (2209) is sleeved on the rectifying driving shaft (2205) and the rectifying driven shaft (2208) and is in meshing connection, a rectifying motor (2210) for driving the rectifying driving shaft (2205) to rotate is arranged on the rectifying rack plate (2202), and the rectifying motor (2210) is electrically connected with the control box (3).
10. The high speed horizontal twin aluminium packaging machine according to claim 9, characterized in that: The rack (1) is provided with an internal edge recovery device (23) at the lower side of the slitting device (13), the internal edge recovery device (23) includes a recovery fan (2301) and a recovery hopper (2302) connected with the recovery fan (2301), a recovery pipe (2303) is arranged between the inner cavity of the recovery hopper (2302) and the slitting device (13), and a recovery cutter plate (2304) is rotatably arranged at the pipe opening of the recovery pipe (2303); the rectifying rack plate (2202) is provided with an external edge recovery device (24), the external edge recovery device (24) includes a waste shaft (2401) and a recovery motor (2402) for driving the waste shaft (2401) to rotate, two groups of recovery turning rollers (2403) are arranged at the top of the rectifying rack plate (2202), and a floating roller (2404) is slidably arranged in the rectifying rack plate (2202) between the two groups of recovery turning rollers (2403).