Convenient packaging equipment for paperboards

By designing the finishing components of the convenient packaging equipment for cardboard, and using vibration components and cylinders to organize the cardboard, the problems of misalignment and damage before packaging are solved, achieving convenient organization and reducing manual operation effects.

CN223001767UActive Publication Date: 2025-06-20HEFEI WANXING PACKAGING PAPERBOARD CO LTD
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Patent Information

Application Number
CN202422307631.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-06-20
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

Before packaging, the cardboard may be misaligned and untidy before packaging, which in turn causes cardboard damage after packaging, which usually requires manual tidying.

Method used

A convenient cardboard packaging equipment is designed, including finishing components, which uses vibration components, cylinders and push components to organize the cardboard so that it is placed neatly before packaging to avoid manual finishing and damage.

Benefits of technology

It realizes convenient sorting of cardboard before packaging, reduces the workload of manual sorting, and avoids post-packing damage caused by improper placement of cardboard.

✦ Generated by Eureka AI based on patent content.

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Abstract

The convenient paperboard packaging equipment comprises an arrangement assembly arranged at the rear end of a packaging machine, the arrangement assembly comprises a first mounting frame, a vibration assembly is mounted at the position, close to the bottom end, of the inner side of the first mounting frame, a flat plate is mounted at the upper end of the vibration assembly, and a pushing assembly is mounted at the position, close to the upper end, of the inner side of the first mounting frame; the center of the front end of the flat plate is fixedly connected with a shell, the top end penetrating through the shell is movably connected with a baffle, the center of the bottom end of the shell is fixedly connected with a first air cylinder, the output end of the first air cylinder is fixedly connected with the bottom end of the baffle, and the rear portion of the center of the bottom end of the flat plate is fixedly connected with a second mounting frame. The paperboard packaging device has the effect that the paperboards can be conveniently arranged before being packaged, the workload of manual arrangement is reduced, and the situation that the paperboards are damaged after being packaged due to the fact that the paperboards are placed irregularly is avoided.
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Description

Technical Field

[0001] This application relates to the technical field of cardboard packaging, and in particular to a convenient cardboard packaging device. Background Art

[0002] A cardboard baler is a packaging device specifically used for items such as cardboard and cartons. Through a series of mechanical actions and controls, it tightly compresses and packs the cardboard for easy storage, transportation, and reuse.

[0003] However, in practical applications, before the existing cardboard baler packs the cardboard, the cardboard may be misaligned with each other, resulting in uneven placement of the cardboard. The unevenly placed cardboard will be damaged after packing, and the unevenly placed cardboard is usually processed by manual sorting.

[0004] Therefore, those skilled in the art have provided a convenient cardboard packaging device to solve the problems raised in the above background art. Summary of the Utility Model

[0005] To solve the problems raised in the above background art, this application provides a convenient cardboard packaging device.

[0006] The convenient cardboard packaging device provided by this application adopts the following technical solutions:

[0007] A convenient cardboard packaging device includes a sorting component arranged at the rear end of the baler. The sorting component includes a first mounting frame. A vibration component is installed at the inner bottom end of the first mounting frame. A flat plate is installed at the upper end of the vibration component. A pushing component is installed at the inner upper end of the first mounting frame. A housing is fixedly connected to the center of the front end of the flat plate. A baffle is movably connected through the top end of the housing. A first cylinder is fixedly connected to the center of the bottom end of the housing. The output end of the first cylinder is fixedly connected to the bottom end of the baffle. A second mounting frame is fixedly connected to the center of the bottom end of the flat plate and behind. A second cylinder is fixedly connected through the front and rear ends of the second mounting frame near the top end. A second sorting plate is installed at the telescopic end of the second cylinder. An extrusion mechanism is installed between the second sorting plate and the second cylinder.

[0008] Preferably, the vibration assembly includes a mounting frame. On both sides inside the mounting frame, second mounting rods are respectively and fixedly connected. In the middle of the outer sides of the second mounting rods, mounting blocks are movably connected. At the top ends of the mounting blocks, connecting rods are fixedly connected. The top ends of the connecting rods are fixedly connected to the flat plate. On the outer sides of the second mounting rods and at the positions above and below the mounting blocks, second springs are respectively sleeved. In the middle of the front and rear ends of the mounting blocks, a double-shaft motor is fixedly connected through. On the output ends of the double-shaft motor, eccentric blocks are fixedly connected. On both sides of the mounting frame and at the positions near the upper and lower ends, first mounting rods are respectively and fixedly connected. On the outer sides of the first mounting rods, mounting plates are movably connected. On the outer sides of the first mounting rods and at the positions between the mounting plates and the mounting frame, first springs are sleeved. The bottom ends of the mounting plates are fixedly connected to the first mounting brackets.

[0009] Preferably, the pushing assembly includes a motor. On the output end of the motor, a bidirectional lead screw is fixedly connected. On the outer sides of the bidirectional lead screw near both ends, mounting strips are respectively threadedly connected. On the adjacent ends of the two mounting strips, extrusion mechanisms are respectively installed. At the ends of the extrusion mechanisms, moving blocks are fixedly connected. Through the upper and lower ends of the moving blocks, connecting strips are movably connected. On the adjacent ends of the two connecting strips, first sorting plates are fixedly connected.

[0010] Preferably, the extrusion mechanism includes a mounting housing. Through the end of the mounting housing, a moving strip is movably connected. On the outer side of the moving strip, a third spring is sleeved.

[0011] Preferably, through the lower ends of both sides of the mounting strip, limiting rods are movably connected. Both ends of the limiting rods are fixedly connected to the first mounting bracket. At the bottom ends of the first sorting plate and the second sorting plate, T-shaped blocks are fixedly connected. The T-shaped blocks are slidably connected to the flat plate.

[0012] In summary, the present application includes the following beneficial technical effects:

[0013] 1. The double-shaft motor cooperates with the eccentric block, the mounting plate, the first mounting rod, the mounting frame, the first spring, the second mounting rod, the mounting block and the second spring to drive the flat plate mounted on the connecting rod to vibrate. The flat plate drives the cardboard to vibrate, and gaps are generated between the cardboard. The first cylinder cooperates with the housing and the baffle to limit the cardboard. The second cylinder cooperates with the second sorting plate to push the cardboard to move. The motor cooperates with the bidirectional lead screw, the mounting strip, the first sorting plate, the moving block and the connecting strip to sort the cardboard, so that the cardboard is neatly placed before packing. The first sorting plate and the second sorting plate are in soft contact with the cardboard through the mounting housing, the moving strip and the third spring, avoiding damage to the cardboard. It has the effect of facilitating sorting before cardboard packing, reducing the workload of manual sorting, and avoiding the situation that the cardboard is damaged after packing due to uneven placement of the cardboard. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 is the overall structural schematic diagram of the present application;

[0015] Figure 2 is a schematic structural diagram of the sorting component of the present application;

[0016] Figure 3 is a second perspective schematic diagram of the sorting component of the present application;

[0017] Figure 4 is Figure 3 an enlarged view of part A in

[0018] Explanation of reference numerals in the drawings: 1, packing machine; 2, sorting component; 201, first mounting frame; 202, mounting plate; 203, first mounting rod; 204, mounting frame; 205, first spring; 206, second mounting rod; 207, mounting block; 208, second spring; 209, bi-axial motor; 210, eccentric block; 211, connecting rod; 212, flat plate; 213, housing; 214, baffle; 215, first cylinder; 216, motor; 217, bidirectional lead screw; 218, mounting strip; 219, limiting rod; 220, mounting housing; 221, moving strip; 222, third spring; 223, moving block; 224, connecting strip; 225, first sorting plate; 226, T-shaped block; 227, second mounting frame; 228, second cylinder; 229, second sorting plate. Detailed implementation manners

[0019] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0020] Embodiment 1

[0021] As Figures 1-3As shown in the figure, the present application discloses a convenient cardboard packaging device, which includes a sorting component 2 arranged at the rear end of a packaging machine 1. The sorting component 2 includes a first mounting frame 201. A vibration component is installed near the bottom end inside the first mounting frame 201. A flat plate 212 is installed at the upper end of the vibration component. A pushing component is installed near the upper end inside the first mounting frame 201. A housing 213 is installed in the center of the front end of the flat plate 212. A baffle 214 is installed through the top end of the housing 213. A first cylinder 215 is installed in the center of the bottom end of the housing 213. The output end of the first cylinder 215 is fixedly connected to the bottom end of the baffle 214. A second mounting frame 227 is installed near the rear center of the bottom end of the flat plate 212. A second cylinder 228 is installed through the front and rear ends near the top end of the second mounting frame 227. A second sorting plate 229 is installed at the telescopic end of the second cylinder 228. An extrusion mechanism is installed between the second sorting plate 229 and the second cylinder 228;

[0022] The first cylinder 215 drives the housing 213 to rise, and the second cylinder 228 drives the second sorting plate 229 to approach the cardboard, limits the cardboard placed on the flat plate 212, the vibration component cooperates with the pushing component to sort the cardboard, and the sorted cardboard is packaged by the packaging machine 1.

[0023] As Figures 1-3 shown in the figure, the vibration component includes a mounting frame 204. Second mounting rods 206 are respectively installed on both sides inside the mounting frame 204. Mounting blocks 207 are installed in the middle of the outer sides of the second mounting rods 206. Connecting rods 211 are installed at the top ends of the mounting blocks 207. The top ends of the connecting rods 211 are fixedly connected to the flat plate 212. Second springs 208 are respectively sleeved on the outer sides of the second mounting rods 206 at the upper and lower positions of the mounting blocks 207. A double-shaft motor 209 is installed through the front and rear ends in the center of the mounting blocks 207. Eccentric blocks 210 are installed at the output ends of the double-shaft motor 209. First mounting rods 203 are respectively installed at the upper and lower positions on both sides of the mounting frame 204. Mounting plates 202 are installed on the outer sides of the first mounting rods 203. First springs 205 are sleeved on the outer sides of the first mounting rods 203 at the positions between the mounting plates 202 and the mounting frame 204. The bottom ends of the mounting plates 202 are fixedly connected to the first mounting frame 201. The double-shaft motor 209 drives the eccentric blocks 210 to rotate, so that the mounting blocks 207 move along the directions of the second mounting rods 206 and the first mounting rods 203. The mounting blocks 207 drive the cardboard on the flat plate 212 to vibrate through the connecting rods 211, and gaps are generated between the cardboard, which is convenient for sorting it.

[0024] As Figures 1-3As shown in the figure, the pushing component includes a motor 216. A bidirectional lead screw 217 is installed at the output end of the motor 216. Installation bars 218 are respectively installed on the outer side of the bidirectional lead screw 217 near both ends. Extrusion mechanisms are respectively installed at the adjacent ends of the two installation bars 218. A moving block 223 is installed at the end of the extrusion mechanism. Connecting bars 224 are installed through the upper and lower ends of the moving block 223. First sorting plates 225 are respectively installed at the adjacent ends of the two connecting bars 224. The motor 216 drives the bidirectional lead screw 217 to drive the two installation bars 218 to move closer. The installation bars 218 drive the first sorting plates 225 to move closer to the cardboard to sort the cardboard. By setting the moving block 223 in cooperation with the connecting bars 224, the extrusion mechanism can be movably connected to the first sorting plates 225, avoiding the influence of limiting the first sorting plates 225 on the movement of the flat plate 212.

[0025] As Figure 2 , 4 shown in the figure, limiting rods 219 are installed at the bottom ends on both sides of the installation bars 218. Both ends of the limiting rods 219 are fixedly connected to the first mounting frame 201. T-shaped blocks 226 are installed at the bottom ends of the first sorting plates 225 and the bottom ends of the second sorting plates 229. The T-shaped blocks 226 are slidably connected to the flat plate 212. By setting the limiting rods 219 in cooperation with the installation bars 218, the stability of the movement of the installation bars 218 can be improved. By setting the T-shaped blocks 226, the stability of the movement of the first sorting plates 225 and the second sorting plates 229 on the flat plate 212 can be improved.

[0026] As Figures 2-4 shown in the figure, the extrusion mechanism includes an installation housing 220. A moving bar 221 is installed through the end of the installation housing 220. A third spring 222 is sleeved on the outer side of the moving bar 221. By setting the installation housing 220 in cooperation with the moving bar 221 and the third spring 222, the first sorting plates 225 and the second sorting plates 229 can be prevented from coming into hard contact with the cardboard, avoiding damage to the cardboard.

[0027] The standard parts used in the present utility model can all be purchased from the market. The special-shaped parts can be customized according to the description in the specification and the drawings. The specific connection methods of each part all adopt conventional means such as bolts, rivets, and welding that are mature in the prior art. The machines, parts, and equipment all adopt conventional models in the prior art. In addition, the circuit connection adopts the conventional connection method in the prior art, which will not be elaborated here.

[0028] At the same time, the content not described in detail in this specification belongs to the well-known prior art to those skilled in the art.

[0029] The implementation principle of a cardboard convenient packing device in an embodiment of the present application is as follows:

[0030] During use, place the cardboard to be packaged on the flat plate 212. The first cylinder 215 drives the baffle 214 in the housing 213 to rise. Start the second cylinder 228 and the motor 216. The second cylinder 228 drives the second sorting plate 229 close to the edge of the cardboard. The motor 216 drives the mounting strip 218 and the first sorting plate 225 close to the cardboard through the bidirectional lead screw 217. The double-shaft motor 209 drives the eccentric block 210 to rotate, driving the mounting block 207 to reciprocate along the directions of the second mounting rod 206 and the first mounting rod 203. The vibration is transmitted to the cardboard on the flat plate 212 through the connecting rod 211, creating gaps between the cardboards for subsequent sorting. The motor 216 drives the bidirectional lead screw 217 to drive the two mounting strips 218 to move closer to the middle. The mounting strip 218 drives the pressing mechanism and the first sorting plate 225 mounted at its end to contact the cardboard, sorting the cardboard to make it neatly arranged. The second cylinder 228 drives the second sorting plate 229 to contact the edge of the cardboard and drives the front end of the cardboard to contact the baffle 214, sorting the cardboard neatly. When pushing the first sorting plate 225 and the second sorting plate 229 to contact the cardboard, soft contact with the cardboard is achieved through the cooperation of the mounting housing 220, the moving strip 221, and the third spring 222 to avoid squeezing and deforming the cardboard. The first sorting plate 225 and the second sorting plate 229 move on the flat plate 212 through the T-shaped block 226. When the first sorting plate 225 moves up and down with the flat plate 212, the moving block 223 and the connecting strip 224 are used in cooperation to avoid obstructing the first sorting plate 225. After the cardboard sorting is completed, the first cylinder 215 drives the baffle 214 to descend. The second cylinder 228 pushes the cardboard towards the packing machine 1 again, and the cardboard is packed by the packing machine 1.

[0031] The above shows and describes the basic principles, main features and advantages of the present utility model. Those skilled in the art should understand that the present utility model is not limited by the above embodiments. The above embodiments and the descriptions in the specification are only preferred examples of the present utility model and are not used to limit the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and these changes and improvements all fall within the scope of the present utility model claimed. The scope of protection claimed by the present utility model is defined by the appended claims and their equivalents.

Claims

1. A cardboard convenient packaging device, comprising a collating component (2) arranged at the rear end of a packaging machine (1), characterized in that: The arranging component (2) comprises a first mounting frame (201), a vibration component is mounted on the inner side of the first mounting frame (201) near the bottom end, a plate (212) is mounted on the upper end of the vibration component, a pushing component is mounted on the inner side of the first mounting frame (201) near the upper end, a housing (213) is fixedly connected to the front end of the plate (212) in the middle, a baffle (214) is movably connected to the top end penetrating the housing (213), a first cylinder (215) is fixedly connected to the bottom end of the housing (213) in the middle, an output end of the first cylinder (215) is fixedly connected to the bottom end of the baffle (214), a second mounting frame (227) is fixedly connected to the bottom end of the plate (212) near the back, a second cylinder (228) is fixedly connected to the front and rear ends penetrating the second mounting frame (227) near the top end, a second arranging plate (229) is mounted on the telescopic end of the second cylinder (228), and a pressing mechanism is mounted between the second arranging plate (229) and the second cylinder (228).

2. A cardboard convenient packaging device according to claim 1, characterized in that: The vibration assembly comprises a mounting frame (204), the inside of the mounting frame (204) is fixedly connected to second mounting rods (206) on both sides, the outside of the second mounting rod (206) is movably connected to a mounting block (207) in the middle, the top of the mounting block (207) is fixedly connected to a connecting rod (211), the top of the connecting rod (211) is fixedly connected to a plate (212), and second springs (208) are respectively sleeved on the outside of the second mounting rod (206) and at the upper and lower ends of the mounting block (207), penetrating the front and rear ends of the mounting block (207). A dual-axis motor (209) is fixedly connected at the center of the end, an eccentric block (210) is fixedly connected to the output end of the dual-axis motor (209), first mounting rods (203) are fixedly connected to the two sides of the mounting frame (204) and at the upper and lower ends, respectively, a mounting plate (202) is movably connected to the outside of the first mounting rod (203), a first spring (205) is sleeved on the outside of the first mounting rod (203) and at a position between the mounting plate (202) and the mounting frame (204), and the bottom end of the mounting plate (202) is fixedly connected to the first mounting frame (201).

3. A cardboard convenient packaging device according to claim 1, characterized in that: The pushing assembly comprises a motor (216), the output end of the motor (216) is fixedly connected to a bidirectional screw rod (217), the outer side of the bidirectional screw rod (217) is respectively threadedly connected to mounting strips (218) at both ends, the adjacent ends of the two mounting strips (218) are respectively installed with extrusion mechanisms, the ends of the extrusion mechanisms are fixedly connected to a moving block (223), the upper and lower ends of the moving block (223) are movably connected to a connecting strip (224), and the adjacent ends of the two connecting strips (224) are respectively fixedly connected to a first sorting plate (225).

4. A cardboard convenient packaging device according to claim 1, characterized in that: The squeezing mechanism comprises a mounting shell (220), the end of which penetrates through the mounting shell (220) and is movably connected to a moving bar (221), and the outer side of the moving bar (221) is sleeved with a third spring (222).

5. The cardboard convenient packaging device according to claim 3, characterized in that: A limiting rod (219) is movably connected to the bottom of both sides of the mounting strip (218), and both ends of the limiting rod (219) are fixedly connected to the first mounting frame (201). The bottom ends of the first sorting plate (225) and the second sorting plate (229) are fixedly connected to a T-shaped block (226), and the T-shaped block (226) is slidably connected to the flat plate (212).