Integrated aluminum foil embossing production device

By using an integrated aluminum foil embossing production device, which utilizes servo motors and microcontrollers for control, the device enables automatic adjustment of the aluminum foil pattern depth and real-time adjustment of the tension. This solves the problem of inflexible adjustment in existing equipment, improves production efficiency and equipment space utilization, and reduces costs.

CN223946599UActive Publication Date: 2026-02-27LUOYANG TAIMENG MASCH MFG CO LTD
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Patent Information

Application Number
CN202422852473.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2026-02-27
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

Existing aluminum foil embossing equipment cannot flexibly adjust the roller spacing, resulting in inflexible production, large equipment size, large space occupation, complex debugging, high cost, and inability to achieve continuous pattern depth adjustment.

Method used

Adopting an integrated structure, combined with servo motors and microcontroller control, it realizes automatic adjustment of pattern depth and real-time adjustment of tension. The servo motor drives the adjusting gear and gear plate, which, together with the sliding block and connecting frame, realize the continuous rolling of aluminum foil and flexible control of embossing depth.

Benefits of technology

The equipment is small in size, highly efficient, and low in cost. It can flexibly adjust the pattern depth during continuous rolling, reducing manual labor intensity and lowering production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of aluminum foil machining corollary equipment, in particular to an integrated aluminum foil embossing production device. Comprising two connecting side plates, a bottom rotating shaft, a bottom pressing roller, a sliding block, a connecting shaft, a top pressing roller, a connecting base, a driving base, a hoisting screw rod, a connecting frame, a servo motor A, an adjusting gear, a supporting frame, a servo motor B, a driving gear, a driven fluted disc, an aluminum foil body, a servo motor C and a single chip microcomputer. Sliding grooves are formed in the middle positions of the upper ends of the connecting side plates, the two ends of the bottom rotating shaft are rotationally connected to the surfaces of the middle positions of the connecting side plates correspondingly, and the bottom pressing roller is connected to the surface of the middle of the bottom rotating shaft in a matched mode. And the effect of changing the depth of patterns in the continuous rolling process can be achieved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of aluminum foil processing supporting equipment, in particular to an integrated aluminum foil embossing production device. BACKGROUND

[0002] Aluminum foil is a common packaging material and carrier material in existing production and life, and is used in a large amount in the fields of sealing, decoration, battery and the like, in order to improve the strength or aesthetic degree of the aluminum foil, some aluminum foils are subjected to embossing treatment in production, the aluminum foil is subjected to embossing treatment by passing through the upper and lower parallel arranged embossing rollers with patterns, this form of embossing equipment is a high-efficiency rolling mode at present, but the roller shafts required for processing of this type of rolling equipment are fixedly connected, the spacing between the embossing rollers cannot be flexibly adjusted in the use process, when aluminum strips with different thicknesses need to be processed, the spacing of the rollers needs to be adjusted or different diameters are replaced, the adjustment process is laborious and the production speed is slow, and in the existing processing process, the aluminum foil used in some specific scenarios needs to process patterns with different depths on the continuous surface, the embossing depth needs to be changed continuously, but the existing processing equipment cannot meet the continuous pattern depth adjustment, manual operation is required to adjust the depth, in the existing production mode, a multiple interval rolling mode is generally adopted, the aluminum strip is rolled in batches, or the length of the rolling equipment is increased, a plurality of groups of rolling rollers with different intervals are connected in series and distributed on the running route of the aluminum foil, so as to realize the change of the embossing depth of the continuous aluminum strip, but this results in a large volume of the equipment in the production process, a large amount of space in the workshop is occupied, the other processing space in the workshop is affected, the adjustment process of the equipment is complex, the maintenance difficulty is high after failure, and the production cost is high, therefore, it is necessary to provide an integrated aluminum foil embossing production device to solve these problems. CONTENT OF THE UTILITY MODEL

[0003] In view of the deficiencies in the prior art, the purpose of the present application is to provide an integrated aluminum foil embossing production device with small equipment volume, high running stability, low use cost and the ability to realize the change of the pattern depth in the continuous rolling process.

[0004] The above application purpose of the present application is realized by the following technical scheme:

[0005] The utility model provides an integrated aluminum foil embossing production device, it includes connecting side plate, bottom pivot, bottom press roll, sliding block, connecting shaft, top press roll, connecting seat, drive seat, hoisting screw rod, connecting frame, servo motor A, adjusting gear, support frame, servo motor B, drive gear, driven gear plate, aluminum foil body, servo motor C and singlechip, the connecting side plate is provided with two, the middle position of each upper end of connecting side plate is equipped with the sliding slot, the both ends of bottom pivot are rotatably connected on the surface of the middle position of connecting side plate, the surface on the middle part of bottom press roll is matched and is connected, the sliding block is slidably connected in the sliding slot of connecting side plate upper end, the both ends of connecting shaft are rotatably connected in the middle position of sliding block, the surface on the middle part of connecting shaft is fixedly connected with top press roll, top press roll and bottom press roll are matched and are connected, the upper end of connecting side plate is fixedly connected with connecting seat respectively, the middle position of connecting seat is rotatably connected with drive seat respectively, the middle part of drive seat is equipped with threaded hole respectively, the outer side surface of drive seat is equipped with the gear slot, the middle part of drive seat is screwed with hoisting screw rod respectively, the lower end of hoisting screw rod is fixedly connected with sliding block together, the appearance of connecting frame is Z shape, the upper end of connecting frame is fixedly connected with the upper end of connecting seat two sides respectively, servo motor A is fixedly connected with the middle position of connecting frame upper end, adjusting gear is fixedly connected with the end of servo motor A output shaft, adjusting gear is engagedly connected with the gear slot of drive seat outer side together, support frame is fixedly connected on the connecting side plate below bottom pivot, servo motor B is fixedly connected on support frame upper end, drive gear is fixedly connected with the end of servo motor B output shaft, driven gear plate is fixedly connected with the end of bottom pivot on the one side of drive gear corresponding, drive gear is engagedly connected with driven gear plate together, servo motor C is fixedly connected on the one side of one sliding block, the output shaft of servo motor C is fixedly connected with one end of connecting shaft together, the aluminum foil body passes through between top press roll and bottom press roll, the input of singlechip is electrically connected with the output of external power, the output of singlechip is electrically connected with the input of servo motor A, servo motor B and servo motor C respectively.

[0006] Optionally, it further includes bottom support strip, the bottom support strip is provided with two, the lower surface of the middle position of bottom support strip is fixedly connected with the lower end of connecting side plate.

[0007] Optionally, it further includes connecting arms, tensioning rollers, connecting bases and electric telescopic rods, the connecting arms are provided with two, one end of the connecting arms is movably connected with the inner side surface of the connecting side plates close to the lower end respectively, the two ends of the tensioning rollers are rotatably connected with the other ends of the connecting arms respectively, the aluminum foil body passes the lower end of the tensioning roller from top to bottom and enters between the top compression roller and the bottom compression roller, the connecting bases are fixedly connected on the surface of the bottom support strips close to the right end, the lower end of the electric telescopic rod is movably connected with the upper end of the connecting bases, the upper end of the electric telescopic rod is movably connected with the outer side surface of the connecting arms, and the connecting bases are connected with pressure sensors.

[0008] Optionally, it further includes connecting strips, the connecting strips are fixedly connected on the inner side surfaces of the two ends and the middle part of the bottom support strips respectively.

[0009] Optionally, it further includes clamping protrusions and support rods, the clamping protrusions are fixedly connected on the lower ends of the support rods in pairs, the clamping protrusions are connected with the two sides of the bottom support strips respectively, and the lower surfaces of the support rods are slidably connected with the upper surfaces of the bottom support strips.

[0010] Optionally, it further includes sliding seats, guide rods, mounting arms, guide wheels, positioning knobs A and positioning knobs B, the sliding seat is in the appearance of an inverted U shape, the sliding seat is slidably connected with the upper surface of the support rod, the lower end of the guide rod is fixedly connected with the upper surface of the sliding seat, the mounting arms are slidably connected with the upper ends of the guide rods respectively, the guide rod is in the rectangular section, the guide wheels are rotatably connected with the end portions of the mounting arms respectively, and the two sides of the aluminum foil body are connected with the guide wheels respectively.

[0011] Optionally, it further includes scale lines, the scale lines are equidistantly arranged on the left side surface of the support rod.

[0012] Optionally, it further includes connecting protrusions, lead screws, adjusting wheels and a servo motor D, the connecting protrusions are fixedly connected on the upper surfaces of the connecting strips arranged on the left side and the middle position of the bottom support strips respectively, the two ends of the lead screw are rotatably connected together with the connecting protrusions, the middle position of the support rod is threadedly connected with the lead screw, the adjusting wheel is fixedly connected with the left end of the lead screw, the servo motor D is fixedly connected with the connecting protrusion on the right side, the output shaft of the servo motor D is fixedly connected with the right end of the lead screw, and the input end of the servo motor D is electrically connected with the output end of the single-chip microcomputer.

[0013] Optionally, it further includes matching seats, clamping sleeves and connecting rods, the matching seats are matchedly connected on the surface of the support rod, the clamping sleeves are matchedly connected on the surface of the guide rod close to the lower end, the upper ends of the connecting rods are fixedly connected with one side of the clamping sleeves respectively, and the lower ends of the connecting rods are movably connected with the upper ends of the matching seats.

[0014] Optionally, it further comprises a protective shell fixedly connected to the outer surface of the connecting seat.

[0015] The integrated aluminum foil embossing production device can quickly adapt to existing aluminum foils of different thicknesses through the combined structure, meet the embossing needs of aluminum foils of different thicknesses, adjust the embossing depth, realize the combination of continuous production and embossing depth, and meet the subsequent processing needs of some folded cell structures and other aluminum foil carriers.

[0016] Compared with existing rolling equipment, the integrated aluminum foil embossing production device is greatly reduced in size, occupies less production space in the workshop, and can replace the production effect of multiple existing roller groups after installation, has the effects of lower energy consumption and higher production efficiency.

[0017] The integrated aluminum foil embossing production device can automatically adjust the tension degree through the matching components during the adjustment of the embossing depth, reduces the labor intensity of personnel, is simpler to operate, reduces the production cost, and has good application prospects. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 is a schematic diagram of the overall structure provided by the embodiments of the present application;

[0019] Figure 2 is a schematic diagram of the left side structure provided by the embodiments of the present application;

[0020] Figure 3 is a schematic diagram of the right side bottom structure provided by the embodiments of the present application.

[0021] Reference signs: 1, connecting side plate; 2, bottom rotating shaft; 3, bottom pressing roller; 4, sliding block; 5, connecting shaft; 6, top pressing roller; 7, connecting seat; 8, driving seat; 9, lifting screw; 10, connecting frame; 11, servo motor A; 12, adjusting gear; 13, support frame; 14, servo motor B; 15, driving gear; 16, driven gear disc; 17, connecting arm; 18, tensioning roller; 19, connecting base; 20, electric telescopic rod; 21, bottom support bar; 22, scale line; 23, sliding seat; 24, guide rod; 25, mounting arm; 26, guide wheel; 27, positioning knob A; 28, positioning knob B; 29, clamping protrusion; 30, support rod; 31, connecting strip; 32, connecting protrusion; 33, lead screw; 34, adjusting wheel; 35, servo motor D; 36, matching seat; 37, clamping sleeve; 38, connecting rod; 39, protective shell; 40, single-chip microcomputer; 41, aluminum foil body; 42, servo motor C. DETAILED DESCRIPTION

[0022] The present application will be further described in detail below with reference to the accompanying drawings.

[0023] In order to more clearly understand the technical solutions shown in the embodiments of the present application, first, the working principle of the existing integrated aluminum foil embossing production device is introduced.

[0024] The existing aluminum foil production is rolled into a large roll for transportation, and then reaches the aluminum foil processing enterprise, only cutting and simple stretching, embossing and other processing are carried out. In the embossing process, due to the limitation of the existing equipment level, manual adjustment of the distance between the two rollers is needed to realize the adjustment of the embossing depth. However, there is difficulty in real-time adjustment during the production process, and it is impossible to achieve continuous embossing effect of different depths. This form of embossing effect is more suitable in some folded battery cells, variable diameter packaging materials and other fields, which can effectively increase the volume of the carrier and reduce the fracture after folding, and improve the performance of the downstream products. In the existing implementation means, a larger diameter roller is used and grooves are made on its surface to realize continuous and different depth rolling of the aluminum foil. However, this form of rolling equipment has a large volume, and the length of the assembly line occupies a large space in the workshop, affecting the production of other processes, and the installation and manufacturing cost of the equipment is high, and the subsequent depth adjustment and other operations are more complicated, and the production efficiency is low. In order to solve this characteristic, the design structure of the present application is proposed to solve the existing problems and improve the production efficiency.

[0025] Please refer to Figure 1 and Figure 2The utility model discloses an integrated aluminum foil embossing production device, including: connecting side plate 1, bottom pivot 2, bottom press roll 3, sliding block 4, connecting shaft 5, top press roll 6, connecting seat 7, drive seat 8, hoist screw rod 9, connecting frame 10, servo motor A 11, adjusting gear 12, support frame 13, servo motor B 14, drive gear 15, driven gear 16, aluminum foil body 41, servo motor C 42 and singlechip 40, connecting side plate 1 is provided with two, and the middle position of each upper end of connecting side plate 1 is equipped with the sliding slot, and the both ends of bottom pivot 2 are rotatably connected on the surface of the middle position of connecting side plate 1, and bottom press roll 3 is connected on the surface of the middle part of bottom pivot 2, and sliding block 4 is slidably connected in the sliding slot of the upper end of connecting side plate 1, and the both ends of connecting shaft 5 are rotatably connected in the middle position of sliding block 4, and top press roll 6 is fixedly connected on the surface of the middle part of connecting shaft 5, and top press roll 6 and bottom press roll 3 are connected, and connecting seat 7 is fixedly connected on the upper end of connecting side plate 1 respectively, and drive seat 8 is rotatably connected in the middle position of connecting seat 7 respectively, and the middle part of drive seat 8 is equipped with the screw hole respectively, and the outer side surface of drive seat 8 is equipped with the gear slot, and hoist screw rod 9 is threadedly connected in the middle part of drive seat 8 respectively, and the lower end of hoist screw rod 9 is fixedly connected with sliding block 4, and connecting frame 10 appearance is Z-shaped, and the lower end of connecting frame 10 is fixedly connected on the upper end of the both sides of connecting seat 7 respectively, and servo motor A 11 is fixedly connected in the middle position of connecting frame 10 upper end, and adjusting gear 12 is fixedly connected on the end of servo motor A 11 output shaft, and adjusting gear 12 is meshingly connected with the gear slot of the outer side of drive seat 8, and support frame 13 is fixedly connected on the connecting side plate 1 below bottom pivot 2, and servo motor B 14 is fixedly connected on support frame 13 upper end, and drive gear 15 is fixedly connected on the end of servo motor B 14 output shaft, and driven gear 16 is fixedly connected on the end of the corresponding bottom pivot 2 of drive gear 15 side, and drive gear 15 is meshingly connected with driven gear 16, and servo motor C 42 is fixedly connected on the side of one of sliding block 4, and the output shaft of servo motor C 42 is fixedly connected with one end of connecting shaft 5, and aluminum foil body 41 passes between top press roll 6 and bottom press roll 3, and singlechip 40 is fixedly connected on the surface on the side of connecting side plate 1, and the input end of singlechip 40 is electrically connected with the output end of external power supply, and the output end of singlechip 40 is electrically connected with the input end of servo motor A 11, servo motor B 14 and servo motor C 42 respectively.

[0026] Specific speaking, the parallel arranged connecting side plates 1 provide connecting and fixed support, further realize the connection of the bottom rotating shaft 2, the outer fixed connection of the bottom rotating shaft 2 is the bottom pressure roller 3, a certain depth pattern groove is opened on the bottom pressure roller 3, the normal demand of the embossing is met, and the bottom pressure roller 3 can be replaced, the demand of different patterns is met, the sliding block 4 can slide vertically on the upper end of the connecting side plate 1 for a distance, the vertical movement of the connecting shaft 5 position is realized, the top pressure roller 6 can cooperate with the bottom pressure roller 3, the embossing of the pattern is realized, the connecting seat 7 provides the connecting and fixed support position, the driving seat 8 can be driven to rise or fall by rotating the lifting screw 9, the screw rotation is changed into vertical movement, and it is helpful to reduce the moving distance, improve the adjustment accuracy, the connecting frame 10 can be connected to the servo motor A 11, and then the servo motor A 11 drives the adjustment gear 12 to rotate by a certain angle, and then the driving of the driving seat 8 is realized, the screw groove in the inner side of the driving seat 8 can rotate by a certain angle, and then the sliding block 4 rises or falls by a certain distance, the speed is faster, the pattern rolling depth adjustment in the continuous processing process can be realized, compared with the existing manual adjustment and series embossing structure, the volume is smaller, the convenience is higher, the support frame 13 can be connected and fixed to the servo motor B 14, and then the driving gear 15 fixedly connected to the end of the servo motor B 14 drives the driven gear plate 16, and then drives the bottom rotating shaft 2 to rotate at a certain speed, the servo motor C 42 can directly drive the connecting shaft 5 to rotate, the diameter of the top pressure roller 6 is smaller than that of the bottom pressure roller 3 when setting, which is convenient to improve the weight of the top and is helpful to ensure the stability in the process of continuous adjustment depth, in the actual production process, patterns can be opened on one or both surfaces of the bottom pressure roller 3 or the top pressure roller 6 as needed, when the aluminum foil body 41 passes between the two, the pattern on the surface can be realized, so as to realize the single or double embossing demand of the aluminum foil, further improve the function richness in the use process, the single-chip microcomputer 40 is used for automatically controlling different driving components to rotate at a certain speed, reducing the labor intensity of manual work, and being helpful to long time continuous operation.

[0027] Please refer to Figure 2 , as another specific embodiment provided by the application, further comprising a bottom support strip 21, the bottom support strip 21 is provided with two, the lower surface of the middle position of the bottom support strip 21 is fixedly connected with the lower end of the connecting side plate 1.

[0028] Specific speaking, the bottom support strip 21 can improve the support area of the bottom of the connecting side plate 1, and facilitate the vertical and stable connection. The mounting hole is opened on the bottom support strip 21, which is convenient for connection on different support planes.

[0029] Please refer to Figure 1As another specific embodiment provided by the application, the other specific embodiment further comprises connecting arms 17, tension rollers 18, a connecting base 19 and an electric telescopic rod 20. The connecting arms 17 are provided with two, and one end of each of the connecting arms 17 is movably connected to the inner side surface of the connecting side plate 1 close to the lower end. The two ends of the tension rollers 18 are rotatably connected to the other end of the connecting arms 17. The aluminum foil body 41 passes the lower end of the tension rollers 18 from top to bottom and enters between the top compression roller 6 and the bottom compression roller 3. The connecting base 19 is fixedly connected to the surface of the bottom support strip 21 close to the right end. The lower end of the electric telescopic rod 20 is movably connected to the upper end of the connecting base 19. The upper end of the electric telescopic rod 20 is movably connected to the outer side surface of the connecting arm 17. The connecting base 19 is connected with a pressure sensor.

[0030] Specifically, the connecting arms 17 can support the tension rollers 18, and then realize the tensioning of the aluminum foil body 41 through the tension rollers 18. The connecting base 19 can be used for connecting the electric telescopic rod 20. The pressure sensor is arranged between the connecting base 19 and the electric telescopic rod 20. The pressure sensor can transmit the pressure value to the single-chip microcomputer 40 in the form of an electric signal in real time, so as to realize the real-time regulation of the telescopic length of the electric telescopic rod 20, and then make the connecting arms 17 swing at different angles. The tensioning degree of the aluminum foil body 41 is adjusted in real time through the tension rollers 18 at the end, so as to improve the embossing effect and avoid the occurrence of the slipping phenomenon.

[0031] Please refer to Figure 1 As another specific embodiment provided by the application, the other specific embodiment further comprises connecting strips 31, which are fixedly connected to the inner side surfaces of both ends and the middle of the bottom support strip 21.

[0032] Specifically, the connecting strips 31 can fix the bottom support strip 21, so as to improve the stability thereof and ensure the parallelism of the two sides and the stable operation in the use process.

[0033] Please refer to Figure 1 and Figure 3 As another specific embodiment provided by the application, the other specific embodiment further comprises clamping protrusions 29 and a support rod 30. The clamping protrusions 29 are symmetrically fixedly connected to the lower end of the support rod 30. The clamping protrusions 29 are movably connected to the two sides of the bottom support strip 21, respectively. The lower surface of the support rod 30 is movably connected to the upper surface of the bottom support strip 21.

[0034] Further, it further includes sliding seat 23, guide rod 24, mounting arm 25, guide wheel 26, positioning knob A 27 and positioning knob B 28, the appearance of sliding seat 23 is inverted U-shaped, the sliding seat 23 is slidably connected to the upper surface of the support rod 30, the lower end of the guide rod 24 is fixedly connected to the upper surface of the sliding seat 23, the mounting arm 25 is slidably connected to the upper end of the guide rod 24 respectively, the guide rod 24 is rectangular in cross section, the guide wheels 26 are rotatably connected to the ends of the mounting arms 25 respectively, and the two sides of the aluminum foil body 41 are connected with the guide wheels 26 respectively.

[0035] Specifically, the clamping protrusion 29 can realize stable sliding connection between the support rod 30 and the bottom support strip 21, and the guide rod 24 can move on the sliding seat 23, the mounting arm 25 can be connected to the guide rod 24 at a certain height through the positioning knob A 27, the guide wheels 26 at the ends can realize the connection of the edges of the aluminum foil body 41, adjust the direction, reduce the deviation angle, and facilitate the subsequent rolling up neatly, and the positioning knob B 28 can fix the position of the sliding seat 23, so that the guide wheels 26 can connect the aluminum foil bodies 41 of different widths.

[0036] Please refer to Figure 2 As another specific embodiment provided by the application, the scale line 22 is equidistantly provided on the left side surface of the support rod 30.

[0037] Specifically, the scale line 22 can facilitate people to observe the adjusted distance more intuitively, improve the convenience, and have good flexibility.

[0038] Please refer to Figure 1 As another specific embodiment provided by the application, it further includes connecting protrusions 32, lead screws 33, adjusting wheels 34 and a servo motor D 35, the connecting protrusions 32 are fixedly connected to the upper surfaces of the connecting strips 31 provided at the left side and the middle position of the bottom support strip 21 respectively, the two ends of the lead screw 33 are rotatably connected together with the connecting protrusions 32, the middle position of the support rod 30 is threadedly connected with the lead screw 33, the adjusting wheel 34 is fixedly connected to the left end of the lead screw 33, the servo motor D 35 is fixedly connected to the right connecting protrusion 32, the output shaft of the servo motor D 35 is fixedly connected with the right end of the lead screw 33, and the input end of the servo motor D 35 is electrically connected with the output end of the single-chip microcomputer 40.

[0039] Specifically, the connecting protrusions 32 can connect the lead screw 33, the adjusting wheel 34 at the end can drive the lead screw 33, and the position of the support rod 30 can be adjusted through the lead screw 33, so as to facilitate the deviation limiting adjustment in the direction of the aluminum foil body 41, have good flexibility, and meet the production needs of the actual scene.

[0040] Please see Figure 1 As another specific embodiment provided in the application, it also includes a mating seat 36, a snap-fit ​​sleeve 37 and a connecting rod 38. The mating seat 36 is mated and connected to the surface of the support rod 30, the snap-fit ​​sleeve 37 is mated and connected to the surface of the guide rod 24 near the lower end, the upper end of the connecting rod 38 is fixedly connected to one side of the snap-fit ​​sleeve 37, and the lower end of the connecting rod 38 is movably connected to the upper end of the mating seat 36.

[0041] Specifically, the mounting base 36 supports the connecting rod 38, which in turn supports the guide rod 24 through the snap-fit ​​sleeve 37, which helps to stabilize the adjustment process and improve accuracy.

[0042] Please see Figure 2 As another specific embodiment provided in the application, it also includes a protective shell 39, which is fixedly connected to the outer surface of the connecting seat 7.

[0043] Specifically, the protective shell 39 can cover the components at the connector 7, thereby improving protection performance, reducing equipment damage caused by collisions, and helping to improve safety performance.

[0044] The embodiments described in this specific implementation are preferred embodiments of this application and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. An integrated embossing production apparatus for aluminum foil, characterized by, Comprising: Connecting side plate (1), bottom pivot (2), bottom pressure roller (3), sliding block (4), connecting shaft (5), top pressure roller (6), connecting seat (7), drive seat (8), lifting screw rod (9), connecting frame (10), servo motor A (11), adjusting gear (12), support frame (13), servo motor B (14), drive gear (15), driven gear (16), aluminum foil body (41), servo motor C (42) and single-chip microcomputer (40), the connecting side plate (1) is provided with two, the middle position of the upper end of each connecting side plate (1) is provided with a sliding groove, the both ends of the bottom pivot (2) are rotatably connected on the surface of the middle position of the connecting side plate (1), the bottom pressure roller (3) is connected on the surface of the middle part of the bottom pivot (2), the sliding block (4) is slidably connected in the sliding groove on the upper end of the connecting side plate (1), the both ends of the connecting shaft (5) are rotatably connected on the middle position of the sliding block (4), the top pressure roller (6) is fixedly connected on the surface of the middle part of the connecting shaft (5), the top pressure roller (6) and the bottom pressure roller (3) are connected, the connecting seat (7) is fixedly connected on the upper end of the connecting side plate (1), the drive seat (8) is rotatably connected on the middle position of the connecting seat (7), the middle part of the drive seat (8) is provided with a threaded hole, the outer surface of the drive seat (8) is provided with a gear slot, the lifting screw rod (9) is threadedly connected on the middle part of the drive seat (8), the lower end of the lifting screw rod (9) is fixedly connected with the sliding block (4), the connecting frame (10) is Z-shaped in appearance, the lower end of the connecting frame (10) is fixedly connected on the upper end of the both sides of the connecting seat (7), the servo motor A (11) is fixedly connected on the middle position of the upper end of the connecting frame (10), the adjusting gear (12) is fixedly connected on the end of the output shaft of the servo motor A (11), the adjusting gear (12) is meshedly connected with the gear slot on the outer side of the drive seat (8), the support frame (13) is fixedly connected on the connecting side plate (1) below the bottom pivot (2), the servo motor B (14) is fixedly connected on the upper end of the support frame (13), the drive gear (15) is fixedly connected on the end of the output shaft of the servo motor B (14), the driven gear (16) is fixedly connected on the end of the bottom pivot (2) corresponding to one side of the drive gear (15), the drive gear (15) is meshedly connected with the driven gear (16), the servo motor C (42) is fixedly connected on one side of one of the sliding blocks (4), the output shaft of the servo motor C (42) is fixedly connected with one end of the connecting shaft (5), the aluminum foil body (41) passes through between the top pressure roller (6) and the bottom pressure roller (3), the input end of the single-chip microcomputer (40) is electrically connected with the output end of the external power supply, the output end of the single-chip microcomputer (40) is electrically connected with the input end of each of the servo motor A (11), the servo motor B (14) and the servo motor C (42). It further includes two bottom support bars (21), the lower surface of which is fixedly connected to the lower end of the connecting side plate (1); It further includes two connecting arms (17), a tensioning roller (18), a connecting base (19) and an electric telescopic rod (20), one end of the connecting arm (17) is movably connected to the inner side surface of the connecting side plate (1) near the lower end, the other end of the connecting arm (17) is rotatably connected to the tensioning roller (18), the lower end of the tensioning roller (18) is rotatably connected to the other end of the connecting arm (17), the aluminum foil body (41) passes through the lower end of the tensioning roller (18) from top to bottom and enters between the top compression roller (6) and the bottom compression roller (3), the connecting base (19) is fixedly connected to the surface of the bottom support bar (21) near the right end, the lower end of the electric telescopic rod (20) is movably connected to the upper end of the connecting base (19), the upper end of the electric telescopic rod (20) is movably connected to the outer side surface of the connecting arm (17), and the connecting base (19) is connected with a pressure sensor.

2. The integrated embossing device for aluminum foil according to claim 1, characterized in that: It further includes a connecting strip (31) fixedly connected to the inner side surface of both ends and the middle part of the bottom support bar (21).

3. The integrated embossing device for aluminum foil according to claim 1, characterized in that: It further includes a clamping protrusion (29) and a support rod (30), the clamping protrusion (29) is fixedly connected to the lower end of the support rod (30), the clamping protrusion (29) is movably connected to the two sides of the bottom support bar (21), and the lower surface of the support rod (30) is movably connected to the upper surface of the bottom support bar (21).

4. The integrated embossing device for aluminum foil production according to claim 3, characterized in that: It further includes a sliding seat (23), a guide rod (24), a mounting arm (25), a guide wheel (26), a positioning knob A (27) and a positioning knob B (28), the sliding seat (23) is in the appearance of an inverted U shape, the sliding seat (23) is movably connected to the upper surface of the support rod (30), the lower end of the guide rod (24) is fixedly connected to the upper surface of the sliding seat (23), the mounting arm (25) is movably connected to the upper end of the guide rod (24), the guide rod (24) is in the shape of a rectangle, the guide wheel (26) is rotatably connected to the end of the mounting arm (25), and the two sides of the aluminum foil body (41) are movably connected to the guide wheel (26).

5. The integrated embossing device for aluminum foil according to claim 3, characterized in that: It further includes a scale line (22) equidistantly arranged on the left side surface of the support rod (30).

6. The integrated embossing device for aluminum foil production according to claim 3, characterized in that: It also includes connecting protrusions (32), lead screws (33), adjusting wheels (34) and servo motors D (35), the connecting protrusions (32) are respectively fixedly connected on the upper surfaces of the connecting strips (31) arranged at the left side and the middle position of the bottom support strips (21), both ends of the lead screws (33) are rotatably connected with the connecting protrusions (32) together, the middle position of the support rods (30) is threadedly connected with the lead screws (33), the adjusting wheels (34) are fixedly connected on the left ends of the lead screws (33), the servo motors D (35) are fixedly connected on the right connecting protrusions (32), the output shafts of the servo motors D (35) are fixedly connected with the right ends of the lead screws (33), and the input ends of the servo motors D (35) are electrically connected with the output ends of the single-chip microcomputers (40).

7. The integrated embossing device for aluminum foil according to claim 3, characterized in that: It also includes matching seats (36), clamping sleeves (37) and connecting rods (38), the matching seats (36) are matchingly connected on the surface of the support rods (30), the clamping sleeves (37) are matchingly connected on the surfaces of the guide rods (24) near the lower ends, the upper ends of the connecting rods (38) are respectively fixedly connected with one side of the clamping sleeves (37), and the lower ends of the connecting rods (38) are respectively movably connected with the upper ends of the matching seats (36).

8. The integrated embossing device for aluminum foil production of claim 1, wherein: It also includes protective shells (39), and the protective shells (39) are fixedly connected on the outer side surfaces of the connecting seats (7).