Divided-flow transportation device for driving multi-directional adjustment of corrugated carton printing and forming interlocking machine

By designing a multi-directional adjustable corrugated cardboard box printing and forming linkage machine diversion and transportation device, the problems of inconvenient equipment maintenance and low utilization rate were solved, achieving efficient transportation of various sizes of cardboard and improving production efficiency.

CN223631123UActive Publication Date: 2025-12-05欣嘉源装备投资(深圳)有限公司 +1
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Patent Information

Application Number
CN202423085050.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2025-12-05
Estimated Expiration
2034-12-13

AI Technical Summary

Technical Problem

In existing corrugated cardboard box printing and forming lines, equipment maintenance is inconvenient and equipment utilization is low, making it difficult to adapt to the needs of products with a wide range of sizes.

Method used

Design a diversion and conveying device for a corrugated cardboard box printing and forming linkage machine with multi-directional adjustment. The device includes a main frame, a lifting platform, a rotating conveyor, and a conveyor belt. It can adapt to the height difference of the equipment by lifting and adjusting the angle, and can switch between linkage or diversion working modes.

Benefits of technology

This allows for maintenance without moving the equipment, improving production efficiency and equipment applicability, and adapting to the conveying needs of cardboard of different sizes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a split-flow conveying device of a corrugated carton printing forming interlocking machine. The split-flow conveying device drives multi-directional adjustment. According to the technical scheme, the corrugated carton printing forming interlocking machine flow dividing conveying device capable of driving multi-directional adjustment comprises a machine frame body, a linkage feeding table, a lifting table and a rotary conveying table are arranged in the machine frame body, and the lifting table is slidably connected to the interior of the machine frame body; the inner side end of the lifting table is rotationally connected with a rotary conveying table, a motor base for material conveying is installed at the top end of the rotary conveying table, the upper end of the interior of the rotary conveying table is rotationally connected with a first driving shaft, and the lower end of the interior of the rotary conveying table is rotationally connected with a second driving shaft. The side end of the rotary conveying table is fixedly connected with a plurality of sliding rods, and the side end of the rotary conveying table is slidably connected with an upper conveying table through the sliding rods. According to the device, the conveying device can be adjusted at multiple angles, the linkage working mode and the shunting working mode can be rapidly switched, and the production efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to corrugated case processing technical field, concretely is a corrugated case printing forming linkage machine shunt transport device of driving multidirectional adjustment. BACKGROUND

[0002] The most efficient equipment commonly used in the corrugated case manufacturing process is a printing and forming case integrated machine, which is commonly known as a linkage line in the industry. The structure of the linkage line is composed of a printing machine and a forming machine connected in series. Due to the precision requirements of the forming process, the two machine groups must be closely connected. Due to the close connection of the interface of the two large equipment, it is difficult for maintenance personnel to enter, making it very inconvenient to maintain any one of the equipment at the interface. The current solution in the industry is to move the 50-ton printing unit as a whole to create space for maintenance, and then reset it after completion. The key point is that this operation is a mandatory operation item in some process requirements, and frequent operation is very inconvenient.

[0003] A linkage line design cannot meet the requirements of multiple forming requirements or size ranges, while the printing machine that matches it fully meets the needs of various product pre-processes. The average use efficiency of the linkage line in processing certain specific processes or size ranges of products is low, leading to the widespread phenomenon of low equipment utilization and low input-output ratio. UTILITY MODEL CONTENTS

[0004] The purpose of the utility model is to provide an integrated solution to the above problems. The implementation method is a separate shunt machine. This equipment can be built in a new device or installed in an existing market. After installation, the equipment can improve the production efficiency of the printing machine, and the original large machine group does not need to be moved during maintenance. A corrugated case printing forming linkage machine shunt transport device with multidirectional adjustment is provided.

[0005] The technical scheme adopted by the utility model is as follows:

[0006] In a preferred implementation, a corrugated carton printing and forming machine with multi-directional adjustment and split conveying device includes a rack body, a linkage feeding table, a lifting table and a rotating conveying table are arranged in the rack body, the lifting table is slidably connected in the rack body, the rotating conveying table is rotatably connected to the inner side end of the lifting table, a motor base for conveying is installed at the top end of the rotating conveying table, a first driving shaft is rotatably connected to the inner upper end of the rotating conveying table, a second driving shaft is rotatably connected to the inner lower end of the rotating conveying table, a plurality of slide rods are fixedly connected to the side end of the rotating conveying table, an upper conveying table is slidably connected to the side end of the rotating conveying table through the slide rods, a lower conveying table is slidably connected below the upper conveying table at the side end of the rotating conveying table, a plurality of upper transmission wheels are installed at the side end of the upper conveying table, an upper transmission belt is sleeved on the surface of the upper transmission wheels, a plurality of upper transmission wheels are installed in the lower conveying table, a lower transmission belt is installed on the side end of the lower conveying table through the upper transmission wheels, a front rotating frame is rotatably connected to the outer side end of the upper conveying table, a front transmission wheel is rotatably connected to the front inner side end of the front rotating frame, and an upper transmission belt is sleeved on the surface of the front transmission wheel.

[0007] In a preferred implementation, a front rotating frame is rotatably connected to the outer side end of the upper conveying table.

[0008] In a preferred implementation, a first connecting seat is fixedly connected above the front rotating frame at the side end of the upper conveying table, an electric telescopic rod is rotatably connected to the surface of the first connecting seat, a second connecting seat is rotatably connected to the top end of the electric telescopic rod, and a front rotating frame is fixedly connected to the side end of the second connecting seat.

[0009] In a preferred implementation, a rear rotating frame is rotatably connected to the rear end of the upper conveying table, a rear transmission wheel is rotatably connected to the front end of the rear rotating frame, and an upper transmission belt is sleeved on the surface of the rear transmission wheel.

[0010] In a preferred implementation, a plurality of upper slide grooves are formed in the interior of the upper conveying table, a plurality of lower slide grooves are formed in the interior of the lower conveying table, and a slide rod is slidably connected in the interior of the upper slide groove.

[0011] In a preferred implementation, an upper slide rail is fixedly installed at the upper side end of the rotating conveying table, an upper slide seat is slidably connected in the interior of the upper slide rail, and the upper conveying table is fixedly connected to the lower end of the upper slide seat.

[0012] In a preferred implementation, a lower slide rail is fixedly installed at the lower side end of the rotating conveying table, a lower slide seat is slidably connected in the interior of the lower slide rail, and the lower conveying table is fixedly installed at the upper end of the lower slide seat.

[0013] In a preferred implementation form, the top of the rack body is fixedly provided with a hydraulic rod, the lower end of the hydraulic rod is fixedly connected with a threaded plate, the lower end of the threaded plate is threadedly connected with a lifting platform, the rear end of the lifting platform is fixedly connected with a lifting sliding seat, the inner side of the rack body is fixedly provided with a lifting sliding rail, and the lifting sliding rail is slidably connected with the lifting sliding seat.

[0014] In a preferred implementation form, the lifting platform is rotatably connected with a rotating shaft at the inner side, the outer side of the lifting platform is fixedly provided with an adjusting motor base, the lower end of the adjusting motor base is fixedly connected with a worm gear rod, the side end of the worm gear rod is meshedly connected with a worm gear, the top end of the worm gear is fixedly connected with the rotating shaft, and the inner side of the lifting platform is rotatably connected with a rotary conveying platform through the rotating shaft.

[0015] In a preferred implementation form, the rear end of the rack body is fixedly connected with a linkage feeding platform, the linkage feeding platform is internally provided with a linkage conveying belt, and the rear end of the rack body is placed with a shunt collecting table.

[0016] In conclusion, due to the adoption of the above technical scheme, the present application has the following advantages:

[0017] 1. In the present application, when the equipment is installed between the printing machine and the forming machine, the linkage or shunt function is provided. The lifting platform which can be adjusted up and down is installed in the inner side of the rack body. The lifting platform can drive the conveying device in the inner side to be adjusted up and down as a whole. According to the height difference between the printing machine and the forming machine, the appropriate position is found through the adjustment of the lifting and the angle. When the hydraulic rod is started, the lifting platform can be moved up and down through the threaded plate, and then the rotary conveying platform and the conveying device in the inner side of the lifting platform are moved up and down as a whole. Before installation, when the height of the inlet and outlet of the front-end equipment and the rear-end equipment is different, the inclination angle of the conveying device can be adjusted to complete the adaptation and improve the applicability of the device. When the equipment needs to be maintained and repaired, the angle of the conveying device can be adjusted to be vertical, and the maintenance avoidance mode is started to leave enough space for the maintenance between the two ends of the equipment.

[0018] 2. In the present application, when facing the corrugated paperboards with different widths, the distance between the adjacent two groups of conveying devices can be adjusted left and right, and then the width of the conveying device is controlled to improve the application range of the device. A plurality of groups of conveying devices are installed in the rotary conveying platform, and each group of conveying devices can be adjusted and slid left and right in the rotary conveying platform. When the upper conveying platform and the lower conveying platform slide, the upper sliding rail and the lower sliding rail can be used to improve the stability during the movement.

[0019] 3、The utility model discloses a can switch linkage work mode and shunt work mode fast. When printing and forming process are in accord, linkage mode can be started at this moment, and corrugated paper is transported through two groups of transmission devices between upper conveying table and lower conveying table, is clamped between both and is transported through transmission belt of opposite rotation direction, and is transported to next equipment and processes. When the product of printing and forming process is not in accord, the front rotating frame can be turned upward at this moment, and the angle between upper conveying table front end feed port and lower conveying table can be adjusted through front rotating frame and front transmission wheel, can enlarge the feed size, finds the proper receiving to feed, and stabilizes the paper receiving. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 It is a paper box printing forming linkage machine shunt conveying device structural diagram for the utility model;

[0021] Figure 2 It is rotating conveying table and partial abutment structure diagram for the utility model in middle;

[0022] Figure 3 It is lifting platform and partial abututment structure diagram for the utility model in middle;

[0023] Figure 4 It is conveying device linkage mode plane structure diagram for the utility model in middle;

[0024] Figure 5 It is conveying device shunt mode plane structure diagram for the utility model in middle;

[0025] Figure 6 It is conveying device linkage mode side end structure diagram for the utility model in middle;

[0026] Figure 7 It is conveying device shunt mode side end structure diagram for the utility model in middle;

[0027] Figure 8 It is maintenance state avoidance mode side end structure diagram for the utility model in middle.

[0028] Marked in the figure: 1-frame main body, 2-linkage feeding table, 3-hydraulic rod, 4-lifting table, 5-rotary conveying table, 6-first driving shaft, 7-second driving shaft, 8-sliding rod, 9-upper conveying table, 10-lower conveying table, 11-adjusting motor base, 12-worm rod, 13-worm wheel, 14-rotary shaft, 15-threaded plate, 16-lifting slide rail, 17-lifting slide base, 18-upper slide rail, 19-lower slide rail, 20-feeding motor base; 21-upper slide groove; 22-upper conveying belt, 23-upper conveying wheel, 24-rear rotary frame, 25-rear conveying wheel, 26-upper slide base, 27-connection rotary shaft, 28-front rotary frame, 29-front conveying wheel, 30-first connection base, 31-electric telescopic rod, 33-second connection base, 34-lower conveying belt, 35-lower slide groove, 36-lower slide base, 37-linkage conveying belt, 38-diversion collection table. DETAILED DESCRIPTION

[0029] In order to make the purpose, technical scheme and advantages of the utility model more clearly, the following will make further detailed description to the utility model by combining with the drawings and examples. It should be understood that the specific examples described here are only used to explain the utility model, and are not used to limit the utility model.

[0030] REFERENCE Figures 1-8The utility model provides a kind of paperboard conveying device, including rack body 1, the inside of rack body 1 is provided with linkage feeding table 2, lifting platform 4, rotary conveying table 5, lifting platform 4 is slidably connected in the inside of rack body 1, the inner side end of lifting platform 4 is rotatably connected with rotary conveying table 5, the top end of rotary conveying table 5 is installed with material conveying motor base 20, the inside upper end of rotary conveying table 5 is rotatably connected with first driving shaft 6, the inside lower end of rotary conveying table 5 is rotatably connected with second driving shaft 7, the side end of rotary conveying table 5 is fixedly connected with multiple slide bars 8, the side end of rotary conveying table 5 is slidably connected with upper conveying table 9 by slide bar 8, the side end of rotary conveying table 5 and below upper conveying table 9 is slidably connected with lower conveying table 10, the side end of upper conveying table 9 is installed with multiple upper transmission wheels 23, the surface of upper transmission wheel 23 is equipped with upper transmission belt 22, the inside of lower conveying table 10 is installed with multiple upper transmission wheels 23, the side end of lower conveying table 10 is installed with lower transmission belt 34 by upper transmission wheel 23, the outside end of upper conveying table 9 is rotatably connected with front rotary frame 28, the inner side front end of front rotary frame 28 is rotatably connected with front transmission wheel 29, the surface of front transmission wheel 29 is equipped with upper transmission belt 22. Rack body 1 is the main rack body of equipment, when being installed in the middle of printing machine and forming machine, the linkage or shunt effect is provided. Rack body 1 is installed with the lifting platform 4 that can be adjusted up and down in the inside, lifting platform 4 can drive the whole up and down adjustment of inside conveying device, according to the height difference of printing machine and forming machine two equipment, by lifting and angle adjustment, find the position of adaptation. The side end of lifting platform 4 is rotatably connected with rotary conveying table 5 by rotating shaft 14, and the frame body of conveying device is formed by rotary conveying table 5, and the inside of rotary conveying table 5 is divided into upper end and lower end, and upper conveying table 9 and lower conveying table 10 are installed on the upper end and the lower end respectively. First driving shaft 6 and second driving shaft 7 are installed on the two ends of rotary conveying table 5 respectively, and two slide bars 8 are also installed on the two ends, for inserting and installing upper conveying table 9 and lower conveying table 10. Material conveying motor base 20 installed on the upper end of rotary conveying table 5 drives first driving shaft 6 and second driving shaft 7 to rotate at the same speed and in opposite directions through transmission belt and matched transmission wheel, and first driving shaft 6 and second driving shaft 7 drive upper transmission belt 22 and lower transmission belt 34 on upper conveying table 9 and lower conveying table 10 to rotate respectively. The front rotary frame 28 of upper conveying table 9 front end can be rotatably adjusted, when front rotary frame 28 is downwardly rotated and close to the front end of lower conveying table 10, the equipment is in linkage state, at this time, the front end of upper conveying table 9 and lower conveying table 10 can be used for conveying paperboard, when printing and forming process are consistent, at this time, linkage mode can be started, corrugated paperboard is transmitted through two sets of transmission devices between upper conveying table 9 and lower conveying table 10, is clamped between two and is transmitted through transmission belt rotating in opposite directions, is sent to next equipment for processing.When the product does not match the forming process, the front rotating frame 28 can be turned up at this time, the angle between the upper conveying table 9 front end feeding port and the lower conveying table 10 can be adjusted through the front rotating frame 28 and the front transmission wheel 29, the feeding size can be expanded, the appropriate receiving feeding can be found, the paper receiving can be stabilized, and the whole rotating conveying table 5 can be rotated at the same time, when the feeding port of the upper conveying table 9 and the lower conveying table 10 is upwardly inclined, the discharging port is downwardly inclined, and the paperboard is discharged by using the flow separation.

[0031] Referring to Figure 4 and Figure 5 , the outer side end of the upper conveying table 9 is rotationally connected with a connecting rotating shaft 27, and the surface of the connecting rotating shaft 27 is fixedly connected with a front rotating frame 28. The connecting rotating shaft 27 can drive the front rotating frame 28 to rotate, thereby switching the working conveying mode and changing the size of the feeding port angle.

[0032] Referring to Figure 4 and Figure 5 , the side end of the upper conveying table 9 and above the front rotating frame 28 is fixedly connected with a first connecting seat 30, the surface of the first connecting seat 30 is rotationally connected with an electric telescopic rod 31, the top end of the electric telescopic rod 31 is rotationally connected with a second connecting seat 33, and the side end of the second connecting seat 33 is fixedly connected with the front rotating frame 28. When the front rotating frame 28 needs to be turned up, the electric telescopic rod 31 can be started to shrink at this time, the electric telescopic rod 31 will be shortened and pull the front rotating frame 28 to turn up. When the electric telescopic rod 31 is started to extend, the front rotating frame 28 can be pushed to turn down.

[0033] Referring to Figure 4 and Figure 5 , the rear end of the upper conveying table 9 is rotationally connected with a rear rotating frame 24, the front end of the rear rotating frame 24 is rotationally connected with a rear transmission wheel 25, and the surface of the rear transmission wheel 25 is sleeved with an upper transmission belt 22. The rear rotating frame 24 and the rear transmission wheel 25 are used for connecting the rear discharging port of the transmission device.

[0034] Referring to Figure 2 and Figure 4 , a plurality of upper sliding grooves 21 are arranged in the interior of the upper conveying table 9, a plurality of lower sliding grooves 35 are arranged in the interior of the lower conveying table 10, and a sliding rod 8 is slidably connected in the interior of the upper sliding groove 21. A plurality of groups of transmission devices are installed in the interior of the rotating conveying table 5, and each group of transmission devices can be adjusted to slide left and right in the interior of the rotating conveying table 5.

[0035] Referring to Figure 2 and Figure 4 , an upper sliding rail 18 is fixedly installed at the upper side end of the rotating conveying table 5, an upper sliding seat 26 is slidably connected in the interior of the upper sliding rail 18, and the lower end of the upper sliding seat 26 is fixedly connected with the upper conveying table 9. When the upper conveying table 9 and the lower conveying table 10 slide, the stability during movement can be improved by using the upper sliding rail 18 and the lower sliding rail 19.

[0036] With reference to Figure 2 and Figure 4 , the lower end of the rotating conveying table 5 is fixedly installed with a lower sliding rail 19, the inside of the lower sliding rail 19 is slidingly connected with a lower sliding seat 36, and the upper end of the lower sliding seat 36 is fixedly installed with a lower conveying table 10. When facing corrugated paperboards of different width sizes, the distance between the adjacent two groups of conveying devices can be adjusted left and right, thereby controlling the width of the conveying device and improving the application range of the device.

[0037] With reference to Figure 1 and Figure 3 , the top of the rack body 1 is fixedly installed with a hydraulic rod 3, the lower end of the hydraulic rod 3 is fixedly connected with a threaded plate 15, the lower end of the threaded plate 15 is threadedly connected with a lifting table 4, the rear end of the lifting table 4 is fixedly connected with a lifting sliding seat 17, the inner side end of the rack body 1 is fixedly installed with a lifting sliding rail 16, and the inside of the lifting sliding rail 16 is slidingly connected with the lifting sliding seat 17. When the hydraulic rod 3 is started, the lifting table 4 can be driven to move up and down through the threaded plate 15, thereby driving the rotating conveying table 5 and the conveying device at the inner side end of the lifting table 4 to move up and down as a whole. When the working mode needs to be adjusted, the height of the rotating conveying table 5 can be first controlled to be lowered by the hydraulic rod 3, so that the feeding ports of the upper conveying table 9 and the lower conveying table 10 are lower than the discharge port of the front-end equipment, then the rotating conveying table 5 as a whole is rotated, so that the feeding ports of the upper conveying table 9 and the lower conveying table 10 are inclined upward and the included angle of the feeding ports is expanded, thereby aligning with the discharge port of the front-end equipment and facilitating the split conveying. Before installation, when the feeding and discharging ports of the front-end equipment and the rear-end equipment are not at the same height, the inclination angle of the conveying device can be adjusted to complete the adaptation and improve the applicability of the device.

[0038] With reference to Figure 1 and Figure 3 , the inside of the lifting table 4 is rotatably connected with a rotating shaft 14, the outer side end of the lifting table 4 is fixedly installed with an adjusting motor seat 11, the lower end of the adjusting motor seat 11 is fixedly connected with a worm rod 12, the side end of the worm rod 12 is meshingly connected with a worm gear 13, the top end of the worm gear 13 is fixedly connected with the rotating shaft 14, and the inner side end of the lifting table 4 is rotatably connected with the rotating conveying table 5 through the rotating shaft 14. When the adjusting motor seat 11 is started, the worm rod 12 can be driven to rotate, thereby driving the worm gear 13 at the side end of the worm rod 12 and the rotating shaft 14 to rotate, so as to control the adjustment angle of the rotating conveying table 5 as a whole. The driving device of the rotating shaft 14 is located on the surface of the lifting table 4 between the lifting table 4 and the rack body 1.

[0039] With reference to Figure 6 and Figure 7The rear end of the rack body 1 is fixedly connected with a linkage feeding table 2, the linkage feeding table 2 is internally provided with a linkage conveying belt 37, and the rear end bottom of the rack body 1 is provided with a shunt collection table 38. The linkage feeding table 2 and the linkage conveying belt 37 are used as the feeding port of the rear end processing equipment, and the shunt collection table 38 is used for collecting the paperboard that does not meet the processing standard in the shunt mode.

[0040] Working principle: the rack body 1 is the main rack body of the equipment, when being installed in the middle of the printing machine and the forming machine, linkage or shunt is provided. The inside of the rack body 1 is internally provided with an adjustable lifting table 4, the lifting table 4 can drive the whole lifting of the internal conveying device, according to the height difference between the printing machine and the forming machine, the position is found through the lifting and angle adjustment. When the hydraulic rod 3 is started, the lifting table 4 can be driven to move up and down through the threaded plate 15, and then the rotating conveying table 5 and the conveying device inside the lifting table 4 are driven to move up and down. When the working mode needs to be adjusted, the rotating conveying table 5 can be first controlled to lower the height by the hydraulic rod 3, so that the feeding port of the upper conveying table 9 and the lower conveying table 10 is lower than the discharging port of the front end equipment, then the rotating conveying table 5 is rotated as a whole, the feeding port of the upper conveying table 9 and the lower conveying table 10 is inclined upward, and the feeding port angle is expanded, so that the front end equipment discharging port is aligned, and the shunt conveying is facilitated. Before installation, when the feeding and discharging ports of the front end equipment and the rear end equipment are not the same height, the inclination angle of the conveying device can be adjusted to complete the adaptation and improve the applicability of the device.

[0041] A plurality of groups of conveying devices are installed in the rotating conveying table 5, each group of conveying devices can slide left and right in the rotating conveying table 5. When the upper conveying table 9 and the lower conveying table 10 slide, the upper slide rail 18 and the lower slide rail 19 can be used to improve the stability during movement. When facing different width sizes of corrugated paperboard, the distance between the adjacent two groups of conveying devices can be adjusted left and right, and then the width of the conveying device is controlled, and the application range of the device is improved.

[0042] The front rotating frame 28 at the front end of the upper conveying table 9 can be adjusted by rotating, when the front rotating frame 28 is rotated downward to be close to the front end of the lower conveying table 10, the equipment is in linkage state, at this time, the front end of the upper conveying table 9 and the lower conveying table 10 can be used for conveying paperboard, when the printing and the forming process are consistent, at this time, the linkage mode can be started, the corrugated paper is conveyed through the two groups of conveying devices between the upper conveying table 9 and the lower conveying table 10, is clamped between the two groups of conveying devices and is conveyed through the conveying belts in opposite rotating directions, is conveyed to the next equipment for processing. When the product is not consistent with the printing and the forming process, at this time, the front rotating frame 28 can be rotated upward, the angle between the feeding port at the front end of the upper conveying table 9 and the lower conveying table 10 is adjusted through the front rotating frame 28 and the front conveying wheel 29, the feeding size can be expanded, the appropriate receiving feeding is found, the paper receiving is stabilized, and at the same time, the rotary conveying table 5 is rotated as a whole, when the feeding ports of the upper conveying table 9 and the lower conveying table 10 are upwardly inclined, the discharging ports are downwardly inclined, the paperboard is conveyed out by using the flow separation.

[0043] The above only describes the preferred embodiments of the present application and is not intended to limit the present application, and any modification, equivalent replacement and improvement within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A corrugated carton printing and forming gang link conveyor device with multi-orientation adjustment, comprising a frame body (1), characterized in that: The inside of the rack body (1) is provided with linkage feeding table (2), lifting platform (4), rotating conveying table (5), the inside of the rack body (1) is slidably connected with lifting platform (4), the inner side end of lifting platform (4) is rotatably connected with rotating conveying table (5), the top end of rotating conveying table (5) is provided with motor base (20) for material transportation, the inside upper end of rotating conveying table (5) is rotatably connected with first drive shaft (6), the inside lower end of rotating conveying table (5) is rotatably connected with second drive shaft (7), the side end of rotating conveying table (5) is fixedly connected with a plurality of slide rods (8), the side end of rotating conveying table (5) is slidably connected with upper conveying table (9) through slide rod (8), the side end of rotating conveying table (5) and below upper conveying table (9) is slidably connected with lower conveying table (10), the side end of upper conveying table (9) is provided with a plurality of upper transmission wheels (23), the surface of upper transmission wheel (23) is provided with upper transmission belt (22), the inside of lower conveying table (10) is provided with a plurality of upper transmission wheels (23), the side end of lower conveying table (10) is provided with lower transmission belt (34) through upper transmission wheel (23), the outer side end of upper conveying table (9) is rotatably connected with front rotating frame (28), the inner side front end of front rotating frame (28) is rotatably connected with front transmission wheel (29), the surface of front transmission wheel (29) is provided with upper transmission belt (22).

2. A multi-way adjustable corrugated box printing and forming machine distributing conveyor as claimed in claim 1, characterized in that: The outer side end of the upper conveying table (9) is rotatably connected with the connecting shaft (27), and the surface of the connecting shaft (27) is fixedly connected with the front rotating frame (28).

3. A multi-way adjustable corrugated box printing and forming machine distributing conveyor as claimed in claim 1, wherein: The side end of the upper conveying table (9) and above the front rotating frame (28) is fixedly connected with the first connecting seat (30), the surface of the first connecting seat (30) is rotatably connected with the electric telescopic rod (31), the top end of the electric telescopic rod (31) is rotatably connected with the second connecting seat (33), and the side end of the second connecting seat (33) is fixedly connected with the front rotating frame (28).

4. A multi-way adjustable corrugated box printing and forming machine distributing conveyor as claimed in claim 1, wherein: The rear end of the upper conveying table (9) is rotatably connected with the rear rotating frame (24), the front end of the rear rotating frame (24) is rotatably connected with the rear transmission wheel (25), and the surface of the rear transmission wheel (25) is provided with the upper transmission belt (22).

5. A multi-way adjustable corrugated box printing and forming machine distributing conveyor as claimed in claim 1, wherein: A plurality of upper sliding grooves (21) are formed in the inside of the upper conveying table (9), a plurality of lower sliding grooves (35) are formed in the inside of the lower conveying table (10), and the inside of the upper sliding groove (21) is slidably connected with the slide rod (8).

6. A multi-way adjustable corrugated box printing and forming machine distributing conveyor as claimed in claim 1, wherein: The upper side end of the rotating conveying table (5) is fixedly installed with the upper sliding rail (18), the inside of the upper sliding rail (18) is slidably connected with the upper sliding seat (26), and the lower end of the upper sliding seat (26) is fixedly connected with the upper conveying table (9).

7. A multi-way adjustable corrugated box printing and forming machine distributing conveyor as claimed in claim 1, wherein: The lower side end of the rotating conveying table (5) is fixedly installed with the lower sliding rail (19), the inside of the lower sliding rail (19) is slidably connected with the lower sliding seat (36), and the upper end of the lower sliding seat (36) is fixedly installed with the lower conveying table (10).

8. A multi-way adjustable corrugated box printing and forming machine distributing conveyor as claimed in claim 1, wherein: The top of the rack body (1) is fixedly installed with a hydraulic rod (3), the lower end of the hydraulic rod (3) is fixedly connected with a threaded plate (15), the lower end of the threaded plate (15) is threadedly connected with a lifting platform (4), the rear end of the lifting platform (4) is fixedly connected with a lifting sliding seat (17), the inner side end of the rack body (1) is fixedly installed with a lifting sliding rail (16), and the lifting sliding rail (16) is slidably connected with the lifting sliding seat (17).

9. A multi-way adjustable corrugated box printing and forming machine distributing conveyor as claimed in claim 1, wherein: The inside of the lifting platform (4) is rotatably connected with a rotating shaft (14), the outer side end of the lifting platform (4) is fixedly installed with an adjusting motor seat (11), the lower end of the adjusting motor seat (11) is fixedly connected with a worm gear rod (12), the side end of the worm gear rod (12) is meshedly connected with a worm gear (13), the top end of the worm gear (13) is fixedly connected with the rotating shaft (14), and the inner side end of the lifting platform (4) is rotatably connected with a rotary conveying table (5) through the rotating shaft (14).

10. A multi-way adjustable corrugated box printing and forming machine distributing conveyor as claimed in claim 1, wherein: The rear end of the rack body (1) is fixedly connected with a linkage feeding table (2), the linkage feeding table (2) is internally installed with a linkage conveying belt (37), and the rear end bottom of the rack body (1) is placed with a shunt collecting table (38).