Transverse moving device for packaging machine
By designing the support plate, power assembly, and push assembly, and utilizing telescopic rods and ball joints for connection, the transverse movement device can adapt to the needs of production lines of different widths without changing the overall structure. This solves the problem of insufficient adaptability of existing devices and improves the flexibility and production efficiency of the equipment.
Patent Information
- Application Number
- CN202423154370.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2034-12-19
AI Technical Summary
The existing transverse transfer device cannot adapt to production lines of different widths, resulting in equipment incompatibility and requiring additional time and cost for adjustment or replacement.
The design incorporates a support plate, a power assembly, and a push assembly. It utilizes first and second telescopic rods and ball joints for connection, combined with wedge-shaped blocks and bolt structures, to achieve multi-directional angle adjustment and flexible connection. The power assembly drives the slide plate to move via a motor, transmitting power to the connecting parts.
It has improved the application range and practicality of the transverse movement device, enhanced operational precision and reliability, reduced the cost and time waste caused by equipment incompatibility, and improved the versatility and production efficiency of the packaging machine.
Smart Images

Figure CN223778727U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to packing machine mechanism technical field especially relates to a packing machine is with horizontal shift device. BACKGROUND
[0002] A packing machine is an automatic device used for packaging products in appropriate containers, widely used in food, beverage, medicine, cosmetics and other industries. It realizes efficient packaging of products through a series of mechanical actions such as filling, sealing and labeling. Modern packing machines are usually equipped with various auxiliary devices such as conveyor belts, positioning systems and horizontal shift mechanisms to ensure the continuity and precision of the packaging process. These devices not only improve production efficiency, but also ensure the consistency of product quality, and are an indispensable part of modern production lines.
[0003] The horizontal shift mechanism is one of the key components of the packing machine, responsible for moving materials or packaging materials horizontally from one position to another. The existing horizontal shift device adopts a fixed structure design, and its movement range and operation mode are relatively single, which is difficult to adapt to production lines of different widths. Specifically, when the width of the production line changes, the traditional horizontal shift device cannot flexibly adjust its working range, resulting in device incompatibility, which requires additional time and cost for adjustment or replacement.
[0004] The utility model aims at solving the problem that the existing horizontal shift device cannot adapt to production lines of different widths. UTILITY MODEL CONTENT
[0005] The utility model adopts the following technical scheme to solve the problem that the existing horizontal shift device cannot adapt to production lines of different widths.
[0006] A horizontal shift device for a packing machine, comprising a support plate, a power assembly is installed on one side of the support plate, the power assembly comprises a sliding plate, a pushing assembly is installed on the other side of the support plate, the pushing assembly comprises a rod body, the rod body is rotatably connected with the support plate, at least two transmission arms are connected with the rod body, one end of the sliding plate is connected with a first telescopic rod through a spherical joint, the other end of the first telescopic rod is connected with the transmission arm through a spherical joint. One end of the transmission arm is connected with a second telescopic rod through a spherical joint, one end of the second telescopic rod is connected with a connecting piece through a spherical joint.
[0007] As described above, a transverse movement device for a packaging machine includes a first telescopic rod and a second telescopic rod, each comprising a rod body and a connector. The connector includes a connecting cylinder, one side of which has a slot. A plurality of wedge-shaped blocks are installed in the slot. One end of each wedge-shaped block is fixedly connected to a connecting block. A bolt is fitted inside the connecting block, and the bolt is threadedly connected to the connecting block. One end of the bolt is fixedly connected to an extrusion member, and the extrusion member is fixedly connected to a hexagonal member.
[0008] In the transverse movement device for a packaging machine as described above, the side of the wedge-shaped card block that contacts the card slot is an arc-shaped surface, and the sidewall of the card slot is an arc-shaped surface that matches the arc-shaped surface of the wedge-shaped card block.
[0009] As described above, in a transverse movement device for a packaging machine, both ends of the rod are equipped with connecting cylinders, which are sleeved outside the rod and threadedly connected to it. The extrusion component is spherical.
[0010] As described above, a transverse movement device for a packaging machine includes a power component comprising a motor, a lead screw mounted on the rotor of the motor, a guide rail sleeved around the lead screw, the lead screw being rotatably connected to the guide rail, a sleeve frame mounted on the guide rail, the sleeve frame being slidably connected to the guide rail, the sleeve frame being sleeved around the lead screw, the sleeve frame being threadedly connected to the lead screw, and a sliding plate being fixedly connected to the sleeve frame.
[0011] As described above, in a transverse movement device for a packaging machine, the support plate has a through groove, the slide plate is disposed in the through groove, and the through groove is slidably connected to the slide plate.
[0012] As described above, in a transverse movement device for a packaging machine, a sleeve is installed at one end of the connecting rod, the sleeve is rotatably connected to the connecting rod, and the sleeve is fixedly connected to the side wall of the support plate. A support is installed at the other end of the connecting rod, the support is rotatably connected to the connecting rod, and the support is fixedly connected to the support plate.
[0013] As described above, in a packaging machine transverse movement device, a crossbar is fixedly connected between the two drive arms.
[0014] As described above, in a packaging machine traverse device, the transmission arm has a plurality of threaded holes for connecting the first telescopic rod.
[0015] As described above, in a transverse movement device for a packaging machine, one end of the wedge-shaped clamp has a rounded corner.
[0016] Implementing the embodiments of this utility model has the following beneficial effects:
[0017] 1、The utility model discloses a first telescopic rod and second telescopic rod all have telescopic ability and the characteristic of multidirectional angle adjustment, make the horizontal displacement device can be under the condition of not changing the overall structure, the position and angle of each component are adjusted flexibly, to adapt to the production line demand of different width. This not only greatly improves the application range and practicality of the device, also enhances its operating accuracy and reliability under various working conditions, can be widely applied to different specifications production line, the versatility and production efficiency of packaging machine are improved significantly, reduce the cost and time waste because of the incompatibility of equipment.
[0018] In conclusion, the utility model solves the problem that the existing horizontal displacement device cannot adapt to different width production lines. ACCURACY
[0019] In order to more clearly illustrate the technical scheme in the embodiment of the present application, the drawings needed in the embodiment description will be briefly introduced, and obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0020] Figure 1 It is the overall structure schematic diagram of a horizontal displacement device for packaging machine.
[0021] Figure 2 It is another angle structure schematic diagram of a horizontal displacement device for packaging machine.
[0022] Figure 3 It is the structure schematic diagram of the power assembly of a horizontal displacement device for packaging machine.
[0023] Figure 4 It is the structure schematic diagram of the pushing assembly of a horizontal displacement device for packaging machine.
[0024] Figure 5 It is the structure schematic diagram of the first telescopic rod of a horizontal displacement device for packaging machine.
[0025] Figure 6 It is the structure schematic diagram of the connecting head of a horizontal displacement device for packaging machine. DETAILED DESCRIPTION
[0026] The technical scheme in the embodiments of the utility model will be described clearly and completely in combination with the drawings in the embodiments of the utility model, obviously, the described embodiments are only some embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.
[0027] As Figures 1 to 6 The utility model provides a cross moving device for packing machine, including support plate 1, one side of support plate 1 is installed power assembly 2, power assembly 2 includes slide 23, the other side of support plate 1 is installed and pushes assembly 3, and push assembly 3 includes rod body 331, and rod body 331 is rotatably connected with support plate 1, and rod body 331 is connected with at least two transmission arm 32 first telescopic link 33, one end of slide 23 is connected with first telescopic link 33 with spherical joint, and the other end of first telescopic link 33 is connected with transmission arm 32 with spherical joint. One end of transmission arm 32 is connected with second telescopic link 36 with spherical joint, and one end of second telescopic link 36 is connected with connecting piece 35 with spherical joint.
[0028] Further, as a preferred embodiment of the present application, the power assembly 2 is responsible for providing power to the entire cross moving device. When the power assembly 2 is activated, the slide 23 moves along a predetermined path. One end of the slide 23 is connected to the first telescopic link 33 through a spherical joint. The spherical joint allows the first telescopic link 33 to make multi-directional angle adjustments during the movement of the slide 23 to adapt to different motion requirements. The transmission arm 32 is connected to the first telescopic link 33 at one end and to the second telescopic link 36 through a spherical joint at the other end. As the slide 23 moves and the first telescopic link 33 acts, the transmission arm 32 rotates accordingly and transmits power to the second telescopic link 36. The second telescopic link 36 also transmits power to the connecting piece 35 through a spherical joint. With the transmission of power, one end of the second telescopic link 36 can move laterally and adjust the angle, ultimately pushing the articles or packaging materials on the production line to move laterally through the connecting piece 35. Since the first telescopic link 33 and the second telescopic link 36 both have telescopic capabilities and multi-directional angle adjustment features, this cross moving device can adapt to production lines of different widths by adjusting the positions and angles of the components without changing the overall structure. This greatly improves the application range and practicality of the device.
[0029] Further, as the preferred embodiment of the present application but not limited, the first telescopic rod 33 and the second telescopic rod 36 each comprise a rod body 331 and a connecting head 332, the connecting head 332 comprises a connecting barrel 3321, one side of the connecting barrel 3321 is provided with a clamping groove 3327, a plurality of wedge-shaped clamping blocks 3324 are installed in the clamping groove 3327, one end of the wedge-shaped clamping block 3324 is fixedly connected with a connecting block 3325, the connecting block 3325 is sleeved with a bolt 3326, the bolt 3326 is threadedly connected with the connecting block 3325, one end of the bolt 3326 is fixedly connected with a pressing piece 3323, the pressing piece 3323 is fixedly connected with a hexagonal piece 3322, the side of the wedge-shaped clamping block 3324 in contact with the clamping groove 3327 is an arc surface, and the side wall of the clamping groove 3327 is an arc surface matched with the arc surface of the wedge-shaped clamping block 3324. The design of the connecting head 332 facilitates disassembly. Specifically, the connecting block 3325 is used to connect external components, by rotating the hexagonal piece 3322 to drive the bolt 3326 to rotate, the pressing piece 3323 can be driven to exit from the plurality of wedge-shaped clamping blocks 3324, so as to release the pressing of the wedge-shaped clamping blocks 3324 by the pressing piece 3323, at this time, pulling the connecting block 3325 can drive the plurality of wedge-shaped clamping blocks 3324 to exit from the clamping groove 3327, so as to realize the disassembly of the connecting head 332, and vice versa, when installing, aligning the connecting barrel 3321 with the clamping groove 3327 on the component to be connected, the wedge-shaped clamping blocks 3324 in the connecting head 332 enter the corresponding clamping grooves 3327, rotating the hexagonal piece 3322 to drive the bolt 3326 to rotate, and then pushing the pressing piece 3323 to move towards the wedge-shaped clamping blocks 3324, with the movement of the pressing piece 3323, it will apply pressure to the wedge-shaped clamping blocks 3324, so that they are tightly embedded in the arc surface of the clamping groove 3327, realizing safe and reliable connection. Through simple rotation operation, the connecting head 332 can be quickly installed and disassembled, greatly simplifying the maintenance and repair process. The arc surface matching design of the wedge-shaped clamping blocks 3324 and the clamping grooves 3327 ensures that they are tightly fitted while allowing the connecting head 332 to freely rotate within a certain range, improving the stability, reliability and flexibility of the connection.
[0030] Further, as a preferred embodiment of the present application but not limited, the two ends of the rod body 331 are provided with connecting barrels 3321, which are sleeved outside the rod body 331 and are in threaded connection with the rod body 331, and the extruding piece 3323 is a spherical body. The connecting barrel 3321 is in threaded connection with the rod body 331, allowing the connecting barrel 3321 to be adjusted in rotation relative to the rod body 331, so as to realize the length adjustment. The extruding piece 3323 is designed as a spherical body, reducing the friction between the extruding piece 3323 and the wedge-shaped clamping blocks, so that the installation and dismounting are more smooth. When the bolt 3326 pushes the spherical extruding piece, the spherical extruding piece uniformly applies pressure to the four directions, ensuring that the wedge-shaped clamping blocks 3324 can be closely embedded in the clamping grooves 3327.
[0031] Further, as a preferred embodiment of the present application but not limited, one end of the wedge-shaped clamping block 3324 is provided with a rounded corner. The rounded corner at one end of the wedge-shaped clamping block 3324 can provide a smooth guide surface for the extruding piece 3323. When the bolt 3326 pushes the spherical extruding piece 3323 to move towards the wedge-shaped clamping block, the rounded corner can help the extruding piece to more easily slide between the plurality of wedge-shaped clamping blocks.
[0032] Further, as a preferred embodiment of the present application but not limited, the power assembly 2 comprises a motor 21, a screw rod is installed on the rotor of the motor 21, a guide rail 22 is sleeved outside the screw rod, the screw rod is in rotational connection with the guide rail 22, a sleeve frame 24 is installed on the guide rail 22, the sleeve frame 24 is in sliding connection with the guide rail 22, the sleeve frame 24 is sleeved outside the screw rod, the sleeve frame 24 is in threaded connection with the screw rod, and a sliding plate 23 is fixedly connected with the sleeve frame 24. When the motor 21 is started and rotated, the screw rod on the rotor also starts to rotate. Since the sleeve frame 24 is in threaded connection with the screw rod, the rotation of the screw rod can drive the sleeve frame to move along the axial direction of the screw rod. Since the sliding plate 23 is fixedly connected with the sleeve frame 24, the movement of the sleeve frame can drive the sliding plate 23 to move together. The guide rail 22 provides a sliding path for the sleeve frame 24, ensuring that the moving direction of the sliding plate 23 is accurate. The moving speed and direction of the sliding plate 23 can be changed by adjusting the rotating speed and direction of the motor 21, enhancing the flexibility and adaptability of the equipment.
[0033] Further, as a preferred embodiment of the present application but not limited, the support plate 1 is provided with a through groove 11, and the sliding plate 23 is arranged in the through groove 11 and in sliding connection with the through groove 11. The through groove 11 provides a clear moving path for the sliding plate 23, ensuring that the sliding plate 23 moves stably on the predetermined track.
[0034] Further, as a preferred embodiment of the present application but not limited, one end of the connecting rod 31 is provided with a sleeve 39, the sleeve 39 is rotatably connected with the connecting rod 31, the sleeve 39 is fixedly connected with the side wall of the support plate 1, the other end of the connecting rod 31 is provided with a support 38, the support 38 is rotatably connected with the connecting rod 31, and the support 38 is fixedly connected with the support plate 1. By fixing the two ends of the connecting rod 31 in the sleeve 39 and the support 38 respectively, and fixing the two components with the support plate 1, the connecting rod 31 is more stable, and the shaking and unnecessary displacement of the connecting rod 31 during rotation are reduced.
[0035] Further, as a preferred embodiment of the present application but not limited, the two transmission arms 32 are fixedly connected with a cross rod 37. The cross rod 37 is fixedly connected between the two transmission arms 32, so that they form a more stable overall structure, increase the rigidity between the transmission arms 32, and reduce the deformation or shaking that may occur during work.
[0036] Further, as a preferred embodiment of the present application but not limited, the transmission arm 32 is provided with a plurality of threaded holes 34 for connecting the first telescopic rod 33. The threaded holes 34 at different positions will change the relative position between the first telescopic rod 33 and the transmission arm 32, thereby affecting the rotation angle of the transmission arm 32 when subjected to force. The threaded hole close to the end of the transmission arm 32 will cause a larger rotation angle, and the threaded hole close to the middle will make the rotation angle decrease. The position of the connecting point will also affect the rotation speed of the transmission arm 32. Due to the principle of lever, the connecting point close to the end will make the end of the transmission arm 32 move faster.
[0037] Embodiment one:
[0038] The utility model provides a kind of horizontal moving device for packing machine, including support plate 1, one side of the support plate 1 is provided with power component 2, the power component 2 includes slide plate 23, the other side of the support plate 1 is provided with push component 3, the push component 3 includes stem 331, the stem 331 is rotatably connected with the support plate 1, the stem 331 is connected with at least two transmission arm 32 first telescopic rod 33, one end of the slide plate 23 is connected with first telescopic rod 33 by spherical joint, the other end of the first telescopic rod 33 is connected with transmission arm 32 by spherical joint. One end of the transmission arm 32 is connected with second telescopic rod 36 by spherical joint, one end of the second telescopic rod 36 is connected with connecting piece 35 by spherical joint.
[0039] The power assembly 2 is responsible for providing power for the entire traversing device. When the power assembly 2 is activated, the slide plate 23 moves along a predetermined path. One end of the slide plate 23 is connected to the first telescopic rod 33 through a spherical joint. The spherical joint allows the slide plate to adjust the angle of the first telescopic rod 33 in multiple directions during movement to adapt to different movement requirements. The transmission arm 32 is connected to the first telescopic rod 33 at one end and to the second telescopic rod 36 through a spherical joint at the other end. As the slide plate 23 moves and the first telescopic rod 33 moves, the transmission arm 32 will rotate accordingly and transmit power to the second telescopic rod 36, which will also transmit power to the connecting piece 35 through a spherical joint. With the transmission of power, one end of the second telescopic rod 36 can traverse and adjust the angle, and finally push the articles or packaging materials on the production line to move laterally through the connecting piece 35. Since the first telescopic rod 33 and the second telescopic rod 36 both have the characteristics of telescopic ability and multi-directional angle adjustment, this traversing device can adapt to production lines of different widths by adjusting the positions and angles of the components without changing the overall structure. This greatly improves the application range and practicality of the device.
[0040] The first telescopic rod 33 and the second telescopic rod 36 each comprise a rod body 331 and a connecting head 332, the connecting head 332 comprises a connecting barrel 3321, one side of the connecting barrel 3321 is provided with a clamping groove 3327, a plurality of wedge-shaped clamping blocks 3324 are installed in the clamping groove 3327, one end of the wedge-shaped clamping block 3324 is fixedly connected with a connecting block 3325, a bolt 3326 is sleeved in the connecting block 3325, the bolt 3326 is in threaded connection with the connecting block 3325, one end of the bolt 3326 is fixedly connected with a pressing piece 3323, the pressing piece 3323 is fixedly connected with a hexagonal piece 3322, one side of the wedge-shaped clamping block 3324 in contact with the clamping groove 3327 is an arc surface, and the side wall of the clamping groove 3327 is an arc surface matched with the arc surface of the wedge-shaped clamping block 3324. The design of the connecting head 332 facilitates disassembly. Specifically, the connecting block 3325 is used for connecting external components, by rotating the hexagonal piece 3322 to drive the bolt 3326 to rotate, the pressing piece 3323 can be driven to exit from the plurality of wedge-shaped clamping blocks 3324, so that the pressing of the pressing piece 3323 on the wedge-shaped clamping block 3324 is released, at this time, the connecting block 3325 is pulled to drive the plurality of wedge-shaped clamping blocks 3324 to exit from the clamping groove 3327, so that the disassembly of the connecting head 332 is realized, and vice versa, when installation, the connecting barrel 3321 is aligned with the clamping groove 3327 on the component to be connected, the wedge-shaped clamping block 3324 in the connecting head 332 is arranged in the corresponding clamping groove 3327, the hexagonal piece 3322 is rotated to drive the bolt 3326 to rotate, and then the pressing piece 3323 is pushed to move towards the wedge-shaped clamping block 3324, with the movement of the pressing piece 3323, the pressing piece 3323 applies pressure to the wedge-shaped clamping block 3324, so that the wedge-shaped clamping block 3324 is tightly embedded in the arc surface of the clamping groove 3327, and safe and reliable connection is realized. Through simple rotation operation, quick installation and disassembly of the connecting head 332 can be realized, and the maintenance and overhaul process is greatly simplified. The matching design of the wedge-shaped clamping block 3324 and the arc surface of the clamping groove 3327 ensures that the two are tightly fitted while allowing the connecting head 332 to freely rotate within a certain range, improving the stability, reliability and flexibility of the connection.
[0041] Both ends of the rod body 331 are provided with the connecting barrel 3321, the connecting barrel 3321 is sleeved outside the rod body 331 and is in threaded connection with the rod body 331, and the pressing piece 3323 is a spherical body. The connecting barrel 3321 is in threaded connection with the rod body 331, allowing the connecting barrel 3321 to be rotationally adjusted relative to the rod body 331, so as to realize length adjustment. The pressing piece 3323 is designed as a spherical body, reducing the friction between the pressing piece 3323 and the wedge-shaped clamping block, so that the installation and disassembly process is smoother. When the bolt 3326 pushes the spherical pressing piece, the spherical pressing piece uniformly applies pressure to the surrounding, ensuring that the wedge-shaped clamping block 3324 can be tightly embedded in the clamping groove 3327.
[0042] The wedge-shaped clamping block 3324 is provided with a rounded corner at one end. The rounded corner at one end of the wedge-shaped clamping block 3324 can provide a smooth guide surface for the extrusion piece 3323. When the bolt 3326 pushes the spherical extrusion piece 3323 towards the wedge-shaped clamping block, the rounded corner can help the extrusion piece to slide more easily between the plurality of wedge-shaped clamping blocks.
[0043] The power assembly 2 comprises a motor 21, a screw rod is installed on the rotor of the motor 21, the screw rod is provided with a guide rail 22, the screw rod is in rotational connection with the guide rail 22, the guide rail 22 is installed with a sleeve frame 24, the sleeve frame 24 is in sliding connection with the guide rail 22, the sleeve frame 24 is provided outside the screw rod, the sleeve frame 24 is in threaded connection with the screw rod, and the sliding plate 23 is fixedly connected with the sleeve frame 24. When the motor 21 starts to rotate, the screw rod on the rotor also starts to rotate, and due to the threaded connection between the sleeve frame 24 and the screw rod, the rotation of the screw rod can drive the sleeve frame to move along the axial direction of the screw rod. Since the sliding plate 23 is fixedly connected with the sleeve frame 24, the movement of the sleeve frame can drive the sliding plate 23 to move together, and the guide rail 22 provides a sliding path for the sleeve frame 24, thereby ensuring the moving direction of the sliding plate 23 to be accurate. The moving speed and direction of the sliding plate 23 can be changed by adjusting the rotating speed and direction of the motor 21, thereby enhancing the flexibility and adaptability of the equipment.
[0044] The support plate 1 is provided with a through groove 11, the sliding plate 23 is arranged in the through groove 11, and the through groove 11 is in sliding connection with the sliding plate 23. The through groove 11 provides a clear moving path for the sliding plate 23, thereby ensuring the stable movement of the sliding plate 23 on the predetermined track.
[0045] The two transmission arms 32 are fixedly connected with a cross rod 37. The cross rod 37 is fixedly connected between the two transmission arms 32, so that the two transmission arms 32 form a more stable overall structure, increase the rigidity between the transmission arms 32, and reduce the deformation or shaking that may occur during the working process.
[0046] Further, as a preferred embodiment of the present application but not limited, the transmission arm 32 is provided with a plurality of threaded holes 34 for connecting the first telescopic rod 33. The threaded holes 34 at different positions can change the relative position between the first telescopic rod 33 and the transmission arm 32, thereby affecting the rotation angle of the transmission arm 32 when subjected to force. The threaded hole close to the end of the transmission arm 32 can cause a larger rotation angle, and the threaded hole close to the middle part can cause a smaller rotation angle. The position of the connecting point can also affect the rotation speed of the transmission arm 32. Due to the principle of lever, the connecting point close to the end can make the end of the transmission arm 32 move faster.
[0047] The embodiment of the second embodiment is as follows:
[0048] The difference between the embodiment two and the embodiment one is that one end of the connecting rod 31 is provided with a sleeve 39, the sleeve 39 is rotationally connected with the connecting rod 31, the sleeve 39 is fixedly connected with the side wall of the support plate 1, the other end of the connecting rod 31 is provided with a support 38, the support 38 is rotationally connected with the connecting rod 31, and the support 38 is fixedly connected with the support plate 1. By fixing the two ends of the connecting rod 31 in the sleeve 39 and the support 38 respectively, and fixing the two components with the support plate 1, the connecting rod 31 is more stable, and the shaking and unnecessary displacement of the connecting rod 31 during rotation are reduced.
[0049] Specifically, the working principle of the novel is as follows:
[0050] The power of the transverse moving device comes from the motor 21, the rotor of which is provided with a screw rod, the screw rod is provided with a guide rail 22 outside and is rotationally connected with the guide rail 22. When the motor is started, the screw rod rotates to drive the sleeve frame 24 to move along the axial direction of the screw rod. Since the sliding plate 23 is fixedly connected with the sleeve frame 24, the movement of the sleeve frame 24 drives the sliding plate 23 to slide smoothly in the through groove 11 on the support plate 1. By adjusting the rotating speed and direction of the motor 21, the moving speed and direction of the sliding plate 23 can be flexibly controlled.
[0051] One end of the sliding plate 23 is connected to the first telescopic rod 33 through a spherical joint, allowing the first telescopic rod to make multidirectional angle adjustment during the movement of the sliding plate. One end of the transmission arm 32 is connected to the first telescopic rod 33, and the other end is connected to the second telescopic rod 36 through a spherical joint. With the movement of the sliding plate 23 and the action of the first telescopic rod 33, the transmission arm 32 will rotate correspondingly and transmit power to the second telescopic rod 36, which will also transmit power to the connecting piece 35 through a spherical joint, finally pushing the articles or packaging materials on the production line to move transversely. This design enables the device to adapt to the needs of production lines of different widths.
[0052] The two transmission arms 32 are fixedly connected with a cross bar 37, which enhances the rigidity between the transmission arms, ensures synchronous movement, and reduces deformation and shaking. Meanwhile, the first telescopic rod 33 and the second telescopic rod 36 are both connected with a connecting head 332, which allows the first telescopic rod 33 and the second telescopic rod 36 to freely adjust the angle in different directions while facilitating the assembly and disassembly of the connecting head 332.
[0053] In summary, the transverse moving device of the present application solves the problem that the existing transverse moving device cannot adapt to production lines of different widths.
[0054] It should be understood that the terms "first", "second" and the like in the present application are used to describe various information, but these information should not be limited to these terms, and these terms are only used to distinguish the same type of information from each other. For example, without departing from the scope of the present application, the "first" information can also be referred to as "second" information, and similarly, the "second" information can also be referred to as "first" information. In addition, the orientation or position relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0055] The above is the preferred embodiment of the present application, and it should be pointed out that for ordinary skilled in the art, without departing from the principles of the present application, a number of improvements and modifications can be made, and these improvements and modifications are also considered within the scope of protection of the present application.
Claims
1. A transverse movement device for a packaging machine, comprising a support plate (1), characterized in that, A power assembly (2) is installed on one side of the support plate (1). The power assembly (2) includes a slide plate (23). A push assembly (3) is installed on the other side of the support plate (1). The push assembly (3) includes a rod (331). The rod (331) is rotatably connected to the support plate (1). The rod (331) is engaged with at least two transmission arms (32) and first telescopic rods (33). One end of the slide plate (23) is connected to the first telescopic rod (33) by a ball joint. The other end of the first telescopic rod (33) is connected to the ball joint of the transmission arm (32). One end of the transmission arm (32) is connected to the second telescopic rod (36) by a ball joint. One end of the second telescopic rod (36) is connected to the connector (35) by a ball joint.
2. The transverse movement device for a packaging machine according to claim 1, characterized in that, Both the first telescopic rod (33) and the second telescopic rod (36) include a rod body (331) and a connector (332). The connector (332) includes a connecting cylinder (3321). A slot (3327) is provided on one side of the connecting cylinder (3321). A plurality of wedge-shaped blocks (3324) are installed in the slot (3327). A connecting block (3325) is fixedly connected to one end of the wedge-shaped block (3324). A bolt (3326) is sleeved in the connecting block (3325). The bolt (3326) is threadedly connected to the connecting block (3325). An extrusion piece (3323) is fixedly connected to one end of the bolt (3326). A hexagonal piece (3322) is fixedly connected to the extrusion piece (3323).
3. The transverse movement device for a packaging machine according to claim 2, characterized in that, The side of the wedge-shaped card block (3324) that contacts the card slot (3327) is an arc-shaped surface, and the sidewall of the card slot (3327) is an arc-shaped surface that matches the arc-shaped surface of the wedge-shaped card block (3324).
4. The transverse movement device for a packaging machine according to claim 2, characterized in that, Both ends of the rod (331) are equipped with connecting cylinders (3321), the connecting cylinders (3321) are sleeved on the outside of the rod (331) and threadedly connected to the rod (331), and the extrusion part (3323) is spherical.
5. A transverse movement device for a packaging machine according to claim 1, characterized in that, The power assembly (2) includes a motor (21), the rotor of the motor (21) is equipped with a lead screw, the lead screw is fitted with a guide rail (22), the lead screw is rotatably connected to the guide rail (22), the guide rail (22) is fitted with a sleeve (24), the sleeve (24) is slidably connected to the guide rail (22), the sleeve (24) is fitted outside the lead screw, the sleeve (24) is threadedly connected to the lead screw, and the slide plate (23) is fixedly connected to the sleeve (24).
6. The transverse movement device for a packaging machine according to claim 1, characterized in that, The support plate (1) has a through groove (11), and the slide plate (23) is disposed in the through groove (11). The through groove (11) and the slide plate (23) are slidably connected.
7. A transverse movement device for a packaging machine according to claim 1, characterized in that, The pushing assembly (3) includes a connecting rod (31), one end of which is fitted with a sleeve (39), which is rotatably connected to the connecting rod (31) and fixedly connected to the side wall of the support plate (1). The other end of the connecting rod (31) is fitted with a support (38), which is rotatably connected to the connecting rod (31) and fixedly connected to the support plate (1).
8. A transverse movement device for a packaging machine according to claim 1, characterized in that, A crossbar (37) is fixedly connected between the two transmission arms (32).
9. A transverse movement device for a packaging machine according to claim 1, characterized in that, The transmission arm (32) has several threaded holes (34) for connecting the first telescopic rod (33).
10. A transverse movement device for a packaging machine according to claim 2, characterized in that, One end of the wedge-shaped block (3324) has a rounded corner.