Vertical hydraulic paper box bubble pressing device
By designing a vertical hydraulic cranking box pressing device, using hydraulic drive components and conveyor belt system, the problems of the quality of the pressing box and adapting to different cranking boxes in the prior art are solved, and a more efficient and high-quality cranking effect is achieved.
Patent Information
- Application Number
- CN202520658648.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-09
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2035-04-09
AI Technical Summary
Existing carton presses have challenges in improving the quality of the bubble and adapting to different carton states (such as vertical or inverted) and are difficult to meet the needs of high-quality and efficient production.
A vertical hydraulic cubic pressure device is designed, and the cubic pressure plate is driven by hydraulic drive components to perform bubble pressure operation, and is equipped with a box conveyor belt, a box feeding mechanism, a box feeding mechanism and a box conveyor belt to ensure that the input and output of the paper box at the bubble pressing station is more convenient and efficient.
Through the hydraulically driven bubble pressing device, the bubble pressing effect and pressure are significantly improved, ensuring that the paper box is flatter after bubble pressing, and at the same time, the convenience and efficiency of the paper box input and output are improved, and the production needs of different paper box states are adapted to the production needs.
Smart Images

Figure CN222858891U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a vertical hydraulic paper box bubble pressing device. Background Art
[0002] The carton bubble press is a commonly used carton production equipment, which can be used to press and flatten the bubbles or gaps between the face paper of the carton and the box body. After the carton is placed on the corresponding mold, the mold is usually placed inside the carton to support the box body, and then the corresponding bubble press plate applies pressure to it on the sides (such as the front, back, left, and right sides). At present, the quality requirements for carton are getting higher and higher, so the requirements for bubble pressing quality are also increasing. Therefore, how to improve the quality of bubble pressing remains to be solved. In addition, the bubble press can be connected in series in the carton production line. How to make the bubble press fit in the carton production line and how to better adapt to different carton states (such as upright or inverted) remain to be solved. Utility Model Content
[0003] In view of the technical problems existing in the background technology, the utility model aims to provide a vertical hydraulic paper box bubble pressing device with better bubble pressing effect.
[0004] In order to solve the above technical problems, the utility model adopts the following technical solutions: a vertical hydraulic paper box bubble pressing device, a bubble pressing station is provided on its frame, and corresponding bubble pressing units are respectively arranged on the front, back, left and right sides of the bubble pressing station, the bubble pressing unit includes a bubble pressing plate and a bubble pressing driving component, and the bubble pressing plate is transmission-connected with the bubble pressing driving component, and is characterized in that: the bubble pressing driving component adopts a hydraulic driving component, the hydraulic driving component includes a hydraulic cylinder, the input side of the bubble pressing station is equipped with a box feeding conveyor belt, a box clamping and feeding mechanism is provided between the box feeding conveyor belt and the bubble pressing station, the output side of the bubble pressing station is equipped with a box outlet conveyor belt, and a box clamping and feeding mechanism is provided between the bubble pressing station and the box outlet conveyor belt.
[0005] The following various optimizations or supplementary explanations can be made on the above technical solutions respectively.
[0006] For example, the input end of the box-entering conveyor belt is also connected to the input conveyor belt, and the box-entering conveyor belt is arranged on the first bracket, and the first bracket is provided with a first rotating shaft and a second rotating shaft, the first rotating shaft is connected to the second rotating shaft in driving connection, and the box-entering conveyor belt is connected to the first rotating shaft in driving connection, and the input conveyor belt is arranged on the second bracket, and the second bracket is hinged on the second rotating shaft, and the input conveyor belt is connected to the second rotating shaft in driving connection, and a bracket rotation adjustment driving device is also provided between the second bracket and the frame, and the bracket rotation adjustment driving device is connected to the second bracket in driving connection.
[0007] Among them, a rotating bearing is provided between the first rotating shaft and the first bracket, and a rotating bearing is provided between the second rotating shaft and the first bracket and the second bracket respectively. The bracket rotation adjustment driving device includes a driving cylinder, the cylinder body of the driving cylinder is hinged on the frame, the piston rod of the driving cylinder is hinged on the second bracket, and a cross plate is installed on the lower side of the second bracket, and the piston rod is hinged to the cross plate.
[0008] Among them, a first transmission wheel is provided at the shaft end of the first rotating shaft, and a second transmission wheel is provided at the shaft end of the second rotating shaft. The first transmission wheel is connected to the second transmission wheel in transmission. The first transmission wheel and the second transmission wheel adopt sprockets, pulleys or gears, and the axes of the first rotating shaft and the second rotating shaft are arranged horizontally.
[0009] For further optimization, a box flipping and inverting device is provided on the input conveyor belt.
[0010] For example, the box body flipping and inverting device includes a flipping drive component, a flipping shaft, and left and right clamps of the box body. The flipping drive component is transmission-connected to the flipping shaft, the left and right clamps of the box body are connected to the flipping shaft, the flipping shaft and the left and right clamps of the box body are located above the input conveyor belt, and the left and right clamps of the box body include a left clamping component and a right clamping component.
[0011] It can also be optimized by providing a hanging frame on the flip axis, and the left and right clamps of the box body are arranged on the hanging frame; the flip axis is also provided with a box body forward movement input positioning stop box component, and the box body forward movement input positioning stop box component and the hanging frame are arranged on the same side relative to the flip axis.
[0012] For another example, the clamping box feeding mechanism includes a transverse plate, a left feeding clamping plate and a right feeding clamping plate. The transverse plate is provided with a transverse guide rail, and the transverse guide rail is provided with a left transverse adjustment seat and a right transverse adjustment seat. The left transverse adjustment seat is provided with a left front cantilever. The left feeding clamping plate is connected to the left front cantilever through a left clamping driving component, and the right transverse adjustment seat is provided with a right front cantilever. The right feeding clamping plate is connected to the right front cantilever through a right clamping driving component. The left feeding clamping plate and the right feeding clamping plate cooperate in the clamping and releasing action, and the transverse plate is connected to the longitudinal movement frame through a lifting driving component. Among them, the left transverse adjustment seat and the right transverse adjustment seat are respectively connected to the transverse shift adjustment screw rod nut transmission mechanism, and the transverse shift adjustment screw rod nut transmission mechanism includes a bidirectional screw rod, a forward nut is provided on the left transverse adjustment seat, and a reverse nut is provided on the right transverse adjustment seat. The two ends of the bidirectional screw rod are respectively connected to the forward nut and the reverse nut for transmission.
[0013] For another example, the clamping box delivery mechanism includes a left delivery clamp and a right delivery clamp, which cooperate in the clamping and releasing action. The left delivery clamp is assembled and connected to the left longitudinal movement seat through a left clamping power component, and the right delivery clamp is assembled and connected to the right longitudinal movement seat through a right clamping power component. The left longitudinal movement seat and the right longitudinal movement seat are arranged for synchronous longitudinal movement; the left delivery clamp is relatively adjusted in transverse position on the left longitudinal movement seat, and the right delivery clamp is relatively adjusted in transverse position on the right longitudinal movement seat. The left longitudinal movement seat and the right longitudinal movement seat are respectively provided with transverse long assembly holes.
[0014] The beneficial effect of the utility model is that the vertical hydraulic paper box bubble pressing device is driven by a hydraulic pressure to operate the bubble pressing plate, which improves the bubble pressing effect, and the box input and output at the bubble station are completed by the cooperation of the box input conveyor belt, the box clamping feeding mechanism, the box clamping feeding mechanism, and the box output conveyor belt, making the box input and output more convenient and efficient. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] The following describes the relevant details and working principles of the implementation methods and embodiments of the present utility model in conjunction with the accompanying drawings.
[0016] Figure 1 It is a schematic diagram of the lateral structure of the utility model.
[0017] Figure 2 for Figure 1 Top view of the .
[0018] Figure 3 Schematic diagram of the structure of the cartridge feeding mechanism in this embodiment.
[0019] Figure 4 Schematic diagram of the structure of the cartridge delivery mechanism in this embodiment.
[0020] In the figure:
[0021] 0. Paper box; 1. Frame; 10. Conveyor belt for unloading boxes;
[0022] 2. Bubble pressing station;
[0023] 3. Bubble pressing unit; 31. Bubble pressing plate; 32. Bubble pressing driving component;
[0024] 4. Box feeding conveyor belt; 40. First bracket; 41. First rotating shaft; 42. Second rotating shaft; 47. First transmission wheel; 48. Second transmission wheel; 44. Rotating bearing; 45. Rotating bearing;
[0025] 5. Clamp box feeding mechanism; 50. Horizontal plate; 51. Left feeding clamping plate; 52. Right feeding clamping plate; 53. Left lateral adjustment seat; 54. Right lateral adjustment seat; 55. Left front cantilever; 56. Right front cantilever; 57. Left clamp driving component; 58. Right clamp driving component; 59. Horizontal guide rail; 501. Lifting driving component; 502. Longitudinal frame;
[0026] 6. Clamp box delivery mechanism; 61. Left delivery clamp; 62. Right delivery clamp; 63. Left longitudinal shift seat; 64. Right longitudinal shift seat; 65. Left clamp power component; 66. Right clamp power component; 67. Horizontal strip assembly hole; 68. Sliding seat;
[0027] 7. Input conveyor belt; 70. Second bracket; 71. Crossbeam; 72. Bracket rotation adjustment drive device;
[0028] 8. Box body flipping and inverting device; 80. Flipping driving component; 81. Left clamping component; 82. Right clamping component; 83. Flipping axis; 84. Suspension frame; 86. Box body forward movement input positioning block box component; 88. Cylinder;
[0029] 9. Transverse displacement adjustment screw and nut transmission mechanism; 90. Bidirectional screw. DETAILED DESCRIPTION
[0030] The technical solutions in the embodiments of the utility model will be clearly and completely described below in conjunction with the drawings in the embodiments of the utility model; it is obvious that the described embodiments are only part of the embodiments of the implementation of the utility model, rather than all of the embodiments, and all other embodiments obtained by ordinary technicians in this field without making creative work based on the embodiments of the utility model are within the scope of protection of the utility model.
[0031] Referring to the accompanying drawings, in the example of the present embodiment, a vertical hydraulic carton bubble pressing device is provided on a frame 1, and corresponding bubble pressing units 3 are respectively arranged on the front, back, left and right sides of the bubble pressing station 2. Each bubble pressing unit 3 includes a bubble pressing plate 31 and a bubble pressing driving component 32. The bubble pressing plate 31 is transmission-connected with the bubble pressing driving component 32, and the bubble pressing driving component 32 cooperates to drive the bubble pressing plate 31 to perform bubble pressing operation. The bubble pressing station 2 is also equipped with a corresponding support plate and a lifting carton mold (which contains a core mold for demolding), which is a mature technology.
[0032] In the utility model, the bubble pressing driving component 32 adopts a hydraulic driving component, and the hydraulic driving component includes a hydraulic cylinder, which cooperates with the hydraulic cylinder to drive the bubble pressing plate 31 to move back and forth to cooperate with the bubble pressing operation, so that the bubble pressing effect is better, the bubble pressing pressure can better meet the needs, and the bubble pressing is flatter; in addition, the input side of the bubble pressing station 2 is equipped with a box input conveyor belt 4, and a box clamping and feeding mechanism 5 is arranged between the box input conveyor belt 4 and the bubble pressing station 2. The box clamping and feeding mechanism 5 cooperates to clamp the paper box 0 to be bubbled on the box input conveyor belt 4 and send it into the bubble pressing station 2 for bubble pressing; the output side of the bubble pressing station 2 is equipped with a box output conveyor belt 10, and a box clamping and feeding mechanism 6 is arranged between the bubble pressing station 2 and the box output conveyor belt 10. The box clamping and feeding mechanism 6 cooperates to clamp the paper box 0 that has completed bubble pressing at the bubble pressing station 2 and send it out and place it on the box output conveyor belt 10 for output.
[0033] In the vertical hydraulic carton bubble pressing device, the bubble pressing plate 31 is driven by hydraulic pressure to improve the bubble pressing effect. In addition, the box input conveyor belt 4, the box clamping feeding mechanism 5, the box clamping feeding mechanism 6, and the box output conveyor belt 10 cooperate to complete the carton input and output at the bubble station, making the carton input and output more convenient and efficient; even two conveyor belts can be connected in series in the carton production line, which is more efficient.
[0034] The following optimization or further explanation may be performed based on the above embodiments.
[0035] For example, the input end of the box-entering conveyor belt 4 is also connected to the input conveyor belt 7, and the input conveyor belt 7 cooperates to input the paper box onto the box-entering conveyor belt 4; wherein, the box-entering conveyor belt 4 is arranged on the first bracket 40, and a limit stop gauge for positioning the paper box in place can be arranged above the box-entering conveyor belt 4. The first bracket 40 is provided with a first rotating shaft 41 and a second rotating shaft 42, and the first bracket 40 cooperates to support the box-entering conveyor belt 4, the first rotating shaft 41 and the second rotating shaft 42 for stable operation; the first rotating shaft 41 and the second rotating shaft 42 are connected in transmission, operate in linkage, and can share power, The structure is compact and the cost is low. The first rotating shaft 41 can be used to drive the second rotating shaft 42 to rotate and operate. Among them, the box-input conveyor belt 4 is connected to the first rotating shaft 41 for transmission and operation. The input conveyor belt 7 is arranged on the second bracket 70, and the second bracket 70 cooperates to support the input conveyor belt 7 to run stably. The second bracket 70 is hinged on the second rotating shaft 42, and the input conveyor belt 7 is connected to the second rotating shaft 42 for transmission. The second bracket 70 and the input conveyor belt 7 thereon can rotate around the second rotating shaft 42, and the input conveyor belt 7 can be driven to run by the second rotating shaft 42. In this structure, the paper box is input to the box-input conveyor belt 4 with the assistance of the input conveyor belt 7, and the input conveyor belt 7 can switch and adjust the position state with the overall rotation of the second bracket 70, so that folding and folding can be realized, which is more practical, and even the high and low connection positions (i.e. different inclination angles) during input can be adjusted, so as to facilitate the adaptation of the connection production line. Moreover, the power of the input conveyor belt 7 is input and driven by the first rotating shaft 41 in cooperation with the second rotating shaft 42, and only the first rotating shaft 41 needs to be equipped with a power motor. In addition, a support rotation adjustment driving device 72 is provided between the second support 70 and the frame 1. The support rotation adjustment driving device 72 is connected to the second support 70 by transmission. The support rotation adjustment driving device 72 cooperates with the second support 70 to drive the second support 70 to rotate and adjust the angle of the second support 70 relative to the frame 1, that is, the tilt angle can be adjusted to better connect the paper box input; it can even be turned downward and folded to be in an idle state. In this structure, the second support 70 and the input conveyor belt 7 do not affect the matching structures such as the first support 40 and the box input conveyor belt 4 and the clamping box feeding mechanism 5, and are relatively more stable.
[0036] Among them, a rotating bearing 44 is provided between the first rotating shaft 41 and the first bracket 40, and a rotating bearing 45 is provided between the second rotating shaft 42 and the first bracket 40 and the second bracket 70, respectively, so that the first rotating shaft 41 and the second rotating shaft 42 can rotate relatively more smoothly. For example, the bracket rotation adjustment driving device 72 includes a driving cylinder, the cylinder body of the driving cylinder is hinged on the frame 1, the piston rod of the driving cylinder is hinged on the second bracket 70, and a crossbeam 71 is installed on the lower side of the second bracket 70, and the piston rod is hinged to the crossbeam 71. A cylinder with an adjustable stroke can be used as the driving cylinder.
[0037] For example, a first transmission wheel 47 is provided at the shaft end of the first rotating shaft 41, and a second transmission wheel 48 is provided at the shaft end of the second rotating shaft 42. The first transmission wheel 47 is transmission-connected with the second transmission wheel 48. The first transmission wheel 47 and the second transmission wheel 48 are sprocket wheels, pulley wheels or gear wheels, and the axes of the first rotating shaft 41 and the second rotating shaft 42 are arranged transversely. In the figure, the first transmission wheel 47 and the second transmission wheel 48 are transmission-connected with each other using sprocket wheels and corresponding chains.
[0038] In addition, further optimization can be performed by setting a box body flipping and inverting device 8 on the input conveyor belt 7, which is used to flip and invert the box body upside down, that is, the box mouth of the vertical paper box can be flipped and inverted upward or downward according to needs, and can adapt to more production lines. For example, some production lines have paper boxes in an upright state after production, while others are in an inverted state. For example, the box body flipping and inverting device 8 includes a flipping drive component 80 (such as a motor or a cylinder, etc.), a flip shaft 83, and left and right clamps of the box body. The flipping drive component 80 is connected to the flip shaft 83 in a transmission manner to drive the flip shaft 83 to flip, such as flipping back and forth. The left and right clamps of the box body are connected to the flip shaft 83, and the left and right clamps of the box body cooperate to clamp and release the box body from the left and right. After clamping, it flips (180 degrees) with the flip shaft 83 to cooperate with flipping and inverting the box body. Among them, the left and right clamps of the box body include a left clamping component 81 and a right clamping component 82. The left clamping component 81 and the right clamping component 82 are closed together to clamp the paper box body, and separated from each other to release the paper box. The left clamping component 81 and the right clamping component 82 can be respectively equipped with power (such as a cylinder 88) to control the left and right movements of the left clamping component 81 and the right clamping component 82 to clamp the paper box.
[0039] Further optimization, for example, a hanging frame 84 is provided on the flip shaft 83, and the hanging frame 84 is a frame radially hanging relative to the flip shaft 83, and the left and right clamps of the box body are arranged on the hanging frame 84. During the back and forth flipping of the flip shaft 83, the input conveyor belt 7 does not need to stop running, and the control is relatively more convenient. Other structures also do not need to stop and cooperate, and the efficiency is higher. During the continuous operation of the input conveyor belt 7, it has the cooperation of the hanging frame 84 to drive the carton body to flip and stand upside down, and at the same time, it also moves the carton body forward and puts it back on the input conveyor belt 7; of course, intermittent pauses are also possible. In addition, the flip shaft 83 is also provided with a box body forward movement input positioning stop box component 86, which is used to block the advancement of the paper box body on the positioning input conveyor belt 7, and ensure that the left and right clamps of the box body can be smoothly blocked and the positioned paper box body is clamped and flipped. During operation, the flip shaft 83 flips into place and waits for the paper box body to be input and positioned by the input conveyor belt 7; wherein, the box body forward movement input positioning stop box component 86 and the hanging frame 84 are arranged on the same side relative to the flip shaft 83, and the state in the figure is at the rear side waiting to block the positioning paper box and clamp the paper box.
[0040] There are many types of clamping box feeding mechanisms 5. For example, the clamping box feeding mechanism 5 includes a transverse plate 50, a left feeding clamping plate 51 and a right feeding clamping plate 52. The transverse plate 50 is provided with a transverse guide rail 59. The transverse guide rail 59 is provided with a left transverse adjustment seat 53 and a right transverse adjustment seat 54, which can move left and right relative to adjust the relative position, so that the corresponding clamping plates can adapt to the needs of paper boxes of different specifications and sizes. The left transverse adjustment seat 53 is provided with a left front cantilever 55. The left feeding clamping plate 51 is connected to the left front cantilever 55 through a left clamping driving component 57 (such as a cylinder, etc.). The right transverse adjustment seat 54 is provided with a right front cantilever 56. The right feeding clamping plate 52 is connected to the right front cantilever 56 through a right clamping driving component 58 (such as a cylinder, etc.). The left feeding clamping plate 51 and the right feeding clamping plate 52 are equipped with a left front cantilever 55. During the clamping and releasing action (closing together to clamp the carton, and separating from each other to release the carton), the front cantilever structure can extend forward to the bubble pressing station 2 during the conveying process, and the longitudinal moving frame 502 that moves forward and backward of the clamping box feeding mechanism 5 does not need to be directly moved to the bubble pressing station 2, so as to avoid occupying and interfering with the operation of other structures above the bubble pressing station 2 (such as the lifting carton mold, which can respond to the decline and cooperate with the operation in time), and the structure is more reasonable and the operation is more efficient; wherein, the horizontal plate 50 is connected to the longitudinal moving frame 502 through a lifting drive component 501 (such as a cylinder, etc.), and the longitudinal moving frame 502 moves forward and backward to drive the clamping box feeding mechanism 5 to move forward and backward as a whole, and the lifting drive component 501 drives them (the horizontal plate 50, the left feeding clamping plate 51 and the right feeding clamping plate 52) to rise and fall to cooperate in lifting and lowering the carton.
[0041] There are many transverse adjustment structures of the left transverse adjustment seat 53 and the right transverse adjustment seat 54. For example, the left transverse adjustment seat 53 and the right transverse adjustment seat 54 are respectively connected to the transverse adjustment screw rod nut transmission mechanism 9, and the transverse adjustment screw rod nut transmission mechanism 9 includes a bidirectional screw rod 90. The left transverse adjustment seat 53 is provided with a forward nut, and the right transverse adjustment seat 54 is provided with a reverse nut. The two ends of the bidirectional screw rod 90 are respectively connected to the forward nut and the reverse nut for transmission. A screw rod seat can also be provided on the horizontal plate 50 to assist in supporting the operation of the bidirectional screw rod 90. The bidirectional screw rod 90 can be provided with a wrench fitting part or a hand wheel or a driving member for operating the rotation of the bidirectional screw rod 90. The rotation of the bidirectional screw rod 90 can drive the left transverse adjustment seat 53 and the right transverse adjustment seat 54 to move closer and apart on the corresponding transverse guide rail 59, so that the spacing between the left feeding clamping plate 51 and the right feeding clamping plate 52 becomes larger or smaller to adapt to the requirements of paper boxes of different specifications.
[0042] There are many types of the clamping box delivery mechanism 6. For example, the clamping box delivery mechanism 6 includes a left delivery clamping plate 61 and a right delivery clamping plate 62, which cooperate with the clamping action, close together to clamp the paper box, and separate from each other to release the paper box, wherein the left delivery clamping plate 61 is assembled and connected to the left longitudinal displacement seat 63 through a left clamping power component 65 (such as a cylinder, etc.), and the right delivery clamping plate 62 is assembled and connected to the right longitudinal displacement seat 64 through a right clamping power component 66 (such as a cylinder, etc.), and the left longitudinal displacement seat 63 and the right longitudinal displacement seat 64 are synchronously arranged for longitudinal movement, and are driven by corresponding power components to move left and right on the corresponding longitudinal displacement seat to cooperate with the clamping action, and with the longitudinal movement of the corresponding longitudinal displacement seat, the paper box that has completed the bubble pressing at the bubble pressing station 2 is clamped and delivered and placed on the box delivery conveyor belt 10. It can also be optimized, the left delivery clamp 61 is relatively adjusted in lateral position on the left longitudinal shift seat 63, and the right delivery clamp 62 is relatively adjusted in lateral position on the right longitudinal shift seat 64, so that the lateral position can be adjusted to meet the needs of paper boxes of different specifications and sizes; for example, lateral long strip assembly holes 67 are respectively provided on the left longitudinal shift seat 63 and the right longitudinal shift seat 64, and the relative lateral position can be adjusted according to the needs for assembly, and the left longitudinal shift seat 63 and the right longitudinal shift seat 64 can be installed on the corresponding slide 68 of the longitudinal shift module.
Claims
1. A vertical hydraulic carton foam pressing device, wherein a foam pressing station (2) is provided on a frame (1), and corresponding foam pressing units (3) are respectively provided on the front, rear, left and right sides of the foam pressing station (2), wherein the foam pressing unit (3) comprises a foam pressing plate (31) and a foam pressing driving component (32), wherein the foam pressing plate (31) is drivingly connected to the foam pressing driving component (32), and wherein: The bubble pressing driving component (32) is a hydraulic driving component, which includes a hydraulic cylinder. The input side of the bubble pressing station (2) is provided with a box feeding conveyor belt (4), and a box clamping and feeding mechanism (5) is provided between the box feeding conveyor belt (4) and the bubble pressing station (2). The output side of the bubble pressing station (2) is provided with a box discharging conveyor belt (10), and a box clamping and discharging mechanism (6) is provided between the bubble pressing station (2) and the box discharging conveyor belt (10).
2. The vertical hydraulic carton bubble pressing device according to claim 1, characterized in that: The input end of the box-feeding conveyor belt (4) is also connected to an input conveyor belt (7). The box-feeding conveyor belt (4) is arranged on the first bracket (40). The first bracket (40) is provided with a first rotating shaft (41) and a second rotating shaft (42). The first rotating shaft (41) and the second rotating shaft (42) are connected in a driving manner. The box-feeding conveyor belt (4) is connected in a driving manner to the first rotating shaft (41). The input conveyor belt (7) is arranged on the second bracket (70), the second bracket (70) is hinged on the second rotating shaft (42), and the input conveyor belt (7) is drivingly connected to the second rotating shaft (42). A bracket rotation adjustment driving device (72) is also provided between the second bracket (70) and the frame (1), and the bracket rotation adjustment driving device (72) is drivingly connected to the second bracket (70).
3. The vertical hydraulic carton bubble pressing device according to claim 2, characterized in that: A rotating bearing is provided between the first rotating shaft (41) and the first bracket (40). Rotation bearings are provided between the second rotating shaft (42) and the first bracket (40) and the second bracket (70), respectively. The support rotation adjustment driving device (72) comprises a driving cylinder, the cylinder body of the driving cylinder is hinged on the frame (1), the piston rod of the driving cylinder is hinged on the second support (70), a crossbeam (71) is installed on the lower side of the second support (70), and the piston rod is hinged to the crossbeam (71).
4. The vertical hydraulic carton bubble pressing device according to claim 2, characterized in that: A first transmission wheel (47) is provided at the shaft end of the first rotating shaft (41), and a second transmission wheel (48) is provided at the shaft end of the second rotating shaft (42). The first transmission wheel (47) and the second transmission wheel (48) are connected in transmission. The first transmission wheel (47) and the second transmission wheel (48) are sprocket wheels, belt wheels or gear wheels. The axes of the first rotating shaft (41) and the second rotating shaft (42) are arranged transversely.
5. The vertical hydraulic carton bubble pressing device according to claim 2, characterized in that: A box body flipping and inverting device (8) is provided on the input conveyor belt (7).
6. The vertical hydraulic carton bubble pressing device according to claim 5, characterized in that: The box body flipping and inverting device (8) comprises a flipping driving component (80), a flipping shaft (83), and left and right clamps of the box body. The flipping driving component (80) is drivingly connected to the flipping shaft (83), the left and right clamps of the box body are connected to the flipping shaft (83), and the flipping shaft (83) and the left and right clamps of the box body are located above the input conveyor belt (7). The left and right clamps of the box body include a left clamping component (81) and a right clamping component (82).
7. The vertical hydraulic carton bubble pressing device according to claim 6, characterized in that: A suspension frame (84) is provided on the turning shaft (83), and left and right clamps of the box body are arranged on the suspension frame (84); A box body forward movement input positioning stop box component (86) is also provided on the flip shaft (83), and the box body forward movement input positioning stop box component (86) and the hanging frame (84) are arranged on the same side relative to the flip shaft (83).
8. The vertical hydraulic carton bubble pressing device according to claim 1, characterized in that: The cartridge feeding mechanism (5) comprises a transverse plate (50), a left feeding clamping plate (51) and a right feeding clamping plate (52). The transverse plate (50) is provided with a transverse guide rail (59). The transverse guide rail (59) is provided with a left transverse adjustment seat (53) and a right transverse adjustment seat (54). A left front cantilever (55) is provided on the left transverse adjustment seat (53), and the left feeding clamping plate (51) is connected to the left front cantilever (55) via a left clamping driving component (57). A right front cantilever (56) is provided on the right transverse adjustment seat (54), and the right feeding clamping plate (52) is connected to the right front cantilever (56) via a right clamping driving component (58). The left feeding clamping plate (51) and the right feeding clamping plate (52) cooperate with each other in clamping and releasing action. The transverse plate (50) is connected to the longitudinal moving frame (502) via a lifting drive component (501).
9. The vertical hydraulic carton bubble pressing device according to claim 8, characterized in that: The left lateral adjustment seat (53) and the right lateral adjustment seat (54) are respectively connected to a lateral adjustment screw rod and nut transmission mechanism (9), the lateral adjustment screw rod and nut transmission mechanism (9) comprising a bidirectional screw rod (90), a forward nut being provided on the left lateral adjustment seat (53), and a reverse nut being provided on the right lateral adjustment seat (54), the two ends of the bidirectional screw rod (90) being respectively connected to the forward nut and the reverse nut for transmission.
10. The vertical hydraulic carton bubble pressing device according to claim 1, characterized in that: The cartridge delivery mechanism (6) comprises a left delivery clamping plate (61) and a right delivery clamping plate (62). The left delivery clamping plate (61) and the right delivery clamping plate (62) cooperate with each other in the clamping and releasing action. The left delivery clamp (61) is assembled and connected to the left longitudinal displacement seat (63) through the left clamping power component (65). The right delivery clamp (62) is assembled and connected to the right longitudinal displacement seat (64) through the right clamping power component (66). The left longitudinal shift seat (63) and the right longitudinal shift seat (64) are arranged to move longitudinally synchronously; The left delivery clamping plate (61) is relatively adjusted in lateral position on the left longitudinal displacement seat (63). The right delivery clamping plate (62) is relatively adjusted in lateral position on the right longitudinal displacement seat (64). The left longitudinal displacement seat (63) and the right longitudinal displacement seat (64) are respectively provided with transverse long strip assembly holes (67).