CN209834093U - Honeycomb paper core baling press - Google Patents

Honeycomb paper core baling press Download PDF

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Publication number
CN209834093U
CN209834093U CN201822269891.7U CN201822269891U CN209834093U CN 209834093 U CN209834093 U CN 209834093U CN 201822269891 U CN201822269891 U CN 201822269891U CN 209834093 U CN209834093 U CN 209834093U
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CN
China
Prior art keywords
paper core
honeycomb paper
traction
driving
honeycomb
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Application number
CN201822269891.7U
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Chinese (zh)
Inventor
王文明
黄帅
程珂
段军炜
廖志晖
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Guangzhou Honicel Honeycomb Materials Ltd By Share Ltd
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Guangzhou Honicel Honeycomb Materials Ltd By Share Ltd
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Priority to CN201822269891.7U priority Critical patent/CN209834093U/en
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Abstract

The utility model discloses a honeycomb paper core packer, which comprises a frame and a guide structure; the device comprises a rotary driving mechanism, a horizontal driving mechanism, a traction mechanism, a tray and a first lifting mechanism; the guide structure comprises a mounting seat and two guide arms; the mounting seat is mounted on the frame and moves along the horizontal direction relative to the frame; the two guide arms are respectively arranged on the mounting seat, and a vertical channel for the honeycomb paper core to pass through is formed between the two guide arms at intervals; the two guide arms are respectively and rotatably provided with a conveying wheel; the rotary driving mechanism is arranged on the guide arm and is used for selectively driving the conveying wheel to rotate; the two conveying wheels drive the honeycomb paper core to move downwards when rotating, and the honeycomb paper core is clamped in a matching manner when not rotating; the horizontal driving mechanism drives the mounting seat to move; the traction mechanism conveys the honeycomb paper core towards the direction of the vertical channel; the first lifting mechanism is used for driving the tray to lift. The utility model discloses can control the decline of honeycomb refill, avoid local piling up.

Description

Honeycomb paper core baling press
Technical Field
The utility model relates to a equipment for packing especially relates to a honeycomb refill baling press.
Background
In the production flow of the honeycomb paper core, the packaging of the honeycomb paper core is an important process link, the traditional packaging process is realized by manual operation, however, the current honeycomb paper core is operated by an automatic assembly line, the manual packaging mode cannot meet the efficient operation requirement of the assembly line, and the manual packaging mode becomes a node for limiting the work efficiency of the whole production line.
Therefore, the honeycomb paper core packing machine is adopted to realize the packing of the honeycomb paper core, but when the existing honeycomb paper core packing machine is used, the honeycomb paper core directly descends into the charging box under the self-weight of the honeycomb paper core, the descending of the honeycomb paper core is uncontrollable, and the honeycomb paper core is easy to be locally piled up in the charging box.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects of the prior art, the utility model aims to provide a honeycomb paper core packaging machine, which can control the descending of the honeycomb paper core and avoid local accumulation.
The purpose of the utility model is realized by adopting the following technical scheme:
a packer for honeycomb paper cores, which comprises
A frame;
a guide structure; the guide structure comprises a mounting seat and two guide arms; the mounting seat is horizontally movably mounted on the rack; the two guide arms are respectively installed on the installation seat, and a vertical channel for the honeycomb paper core to pass through is formed between the two guide arms at intervals; the two guide arms are respectively and rotatably provided with a conveying wheel;
a rotation driving mechanism; the rotary driving mechanism is arranged on the guide arm and is used for selectively driving the conveying wheel to rotate; the two conveying wheels drive the honeycomb paper core to move downwards when rotating, and cooperate to clamp the honeycomb paper core when not rotating;
a horizontal driving mechanism; the horizontal driving mechanism is used for driving the mounting seat to move;
a traction mechanism; the traction mechanism is used for conveying the honeycomb paper core towards the direction of the vertical channel;
a tray; the tray is positioned below the vertical channel;
a first lifting mechanism; the first lifting mechanism is used for driving the tray to lift.
Furthermore, the rotary driving mechanism comprises two first rotary motors, and the two first rotary motors are arranged in one-to-one correspondence with the two conveying wheels; the body of the first rotating motor is arranged on the guide arm, and an output shaft of the first rotating motor is in transmission connection with the corresponding conveying wheel.
Furthermore, the traction mechanism comprises at least two groups of traction units which are sequentially arranged at intervals along the length direction of the rack; the traction unit comprises a second rotating motor, an upper traction roller and a lower traction roller which are respectively pivoted on the rack; and the second rotating motor is used for driving the lower traction roller to rotate.
Further, the traction mechanism also comprises a supporting belt, and the supporting belt is wound on at least two lower traction rollers.
Furthermore, the upper traction roller can also lift relative to the frame; the honeycomb paper core packaging machine further comprises a second lifting mechanism, and the second lifting mechanism is used for driving the upper traction roller to lift.
Furthermore, the tray can be arranged on the rack in a lifting manner; the first lifting mechanism comprises a third rotating motor, a screw rod and a screw rod nut; the screw rod is arranged on the frame; the third rotating motor is used for driving the screw rod to rotate; the screw rod nut is sleeved outside the screw rod in a matching mode and is fixedly connected with the tray.
Compared with the prior art, the beneficial effects of the utility model reside in that:
the honeycomb paper core is conveyed downwards by adopting the matching of the rotary driving mechanism and the two conveying wheels when the rotary driving mechanism drives the conveying wheels to rotate; and when the rotary driving mechanism does not drive the conveying wheels to rotate, the two conveying wheels clamp the honeycomb paper core, so that the honeycomb paper core is controlled to descend, and the honeycomb paper core is prevented from being locally accumulated.
Drawings
FIG. 1 is a schematic structural view of the honeycomb paper core packaging machine of the present invention;
FIG. 2 is a second schematic structural view of the honeycomb paper core packaging machine of the present invention;
fig. 3 is a schematic structural view of the guiding structure of the present invention;
fig. 4 is a schematic structural view of the traction mechanism of the present invention;
fig. 5 is a schematic structural diagram of the first lifting mechanism of the present invention.
In the figure: 10. a frame; 20. a guide structure; 21. a mounting seat; 22. a guide arm; 23. a vertical channel; 30. a delivery wheel; 40. a rotation driving mechanism; 50. a traction mechanism; 51. a traction unit; 511. an upper pulling roll; 512. a lower traction roller; 513. a second rotating electrical machine; 52. a support band; 60. a first lifting mechanism; 61. a third rotating electrical machine; 62. a screw rod; 63. a feed screw nut; 70. a tray; 80. and a second lifting mechanism.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and the detailed description, and it should be noted that the embodiments or technical features described below can be arbitrarily combined to form a new embodiment without conflict.
A honeycomb core baler as shown in fig. 1-3 comprises a frame 10, a guide structure 20; a rotary driving mechanism 40, a horizontal driving mechanism, a traction mechanism 50, a tray 70 and a first lifting mechanism 60; the guide structure 20 comprises a mounting base 21 and two guide arms 22; the mounting base 21 is mounted on the frame 10 and moves in the horizontal direction relative to the frame 10; the two guide arms 22 are respectively installed on the installation seat 21, and a vertical channel 23 for the honeycomb paper core to pass through is formed between the two guide arms 22 at intervals; the two guide arms 22 are respectively provided with a conveying wheel 30 in a rotatable way; the rotary driving mechanism 40 is mounted on the guide arm 22 and is used for selectively driving the conveying wheel 30 to rotate; the two conveying wheels 30 drive the honeycomb paper core to move downwards when rotating, and cooperate to clamp the honeycomb paper core when not rotating; the horizontal driving mechanism is used for driving the mounting base 21 to move; the traction mechanism 50 is used for conveying the honeycomb paper core towards the vertical channel 23; the tray 70 is located below the vertical channel 23; the first lifting mechanism 60 is used for lifting the tray 70.
On the basis of the structure, when the honeycomb paper core packaging machine is used, the charging box is prevented from being arranged on the tray 70, and the first lifting mechanism 60 is adopted to drive the tray 70 to be linked with the charging box to lift to a proper position; the horizontal driving mechanism drives the mounting seat 21 to link the two guide arms 22 to move to one side of the charging box; the traction mechanism 50 conveys the honeycomb paper core to the vertical channel 23, then the honeycomb paper core enters the vertical channel 23 under the self weight of the honeycomb paper core and moves downwards under the self weight of the honeycomb paper core, when the honeycomb paper core enters between the two conveying wheels 30, the rotary driving mechanism 40 does not drive the conveying wheels 30 to rotate, and at the moment, the two conveying wheels 30 are matched to clamp the honeycomb paper core to prevent the honeycomb paper core from randomly descending to the charging box; then, a horizontal driving mechanism is adopted to drive the mounting seat 21 to link the two guide arms 22 to move towards the other side of the charging box, the rotary driving mechanism 40 drives the conveying wheel 30 to rotate, and under the action of friction force between the conveying wheel 30 and the honeycomb paper core, the honeycomb paper core moves downwards and is gradually laid in the charging box; if the honeycomb paper core is partially accumulated, the conveying of the rotary driving mechanism 40 to the conveying wheel 30 can be stopped, and the driving of the horizontal driving mechanism is continued to level the honeycomb paper core; therefore, after the honeycomb paper core is laid for one layer, the first lifting mechanism 60 is adopted to drive the tray 70 to descend, the loading box is linked to a proper position, and therefore the honeycomb paper core can be laid and packaged continuously by repeating the steps.
In the process, the honeycomb paper core is controlled to descend by adopting the matching of the rotary driving mechanism 40 and the two conveying wheels 30, so that the local accumulation is avoided; the horizontal driving mechanism can be an existing linear motor, an air cylinder and the like.
It should be noted that, when the bottom end of the conveying wheel 30 is located above the bottom end of the guide arm 22, the above-mentioned suitable position may be a position where the distance between the bottom of the loading box and the bottom end of the guide arm 22 is the thickness of one layer of honeycomb paper core; when the bottom end of the conveying wheel 30 is located below the bottom end of the guide arm 22, the above-mentioned suitable position may be a position where the distance between the bottom of the hopper and the bottom end of the conveying wheel 30 is one layer of the thickness of the honeycomb core.
The rotary driving mechanism 40 can adopt a structure that a motor, a conveyor belt and two transmission gears are matched, and the two transmission gears are respectively and fixedly connected with the two conveying wheels 30; the transmission belt is wound on the two transmission gears, and an output shaft of the motor is in transmission connection with one of the transmission gears; however, this arrangement of the conveyor belt may cause a positional obstruction to the movement of the honeycomb core along the vertical channel 23; in this embodiment, the rotation driving mechanism 40 is preferably implemented in a manner that the rotation driving mechanism 40 includes two first rotation motors, which are disposed in one-to-one correspondence with the two conveying wheels 30; the body of the first rotating motor is mounted on the guide arm 22, and the output shaft of the first rotating motor is in transmission connection with the corresponding conveying wheel 30; the output shaft of the rotating motor rotates to drive the conveying wheel 30 to rotate, a driving belt is not needed, and the honeycomb paper core can be ensured to move downwards.
As shown in fig. 4, in particular, the traction mechanism 50 includes at least two groups of traction units 51 arranged at intervals in sequence along the length direction of the rack 10; the drawing unit 51 comprises a second rotating motor 513, and an upper drawing roller 511 and a lower drawing roller 512 respectively pivoted on the frame 10; the second rotating motor 513 is used for driving the lower traction roller 512 to rotate; when the honeycomb paper core conveying device is used, a honeycomb paper core penetrates through the upper traction roller 511 and the lower traction roller 512, at the moment, the lower traction roller 512 is in friction contact with the honeycomb paper core respectively, the upper traction roller 511 and the lower traction roller 512 are matched to clamp the honeycomb paper core, the friction force between the lower traction roller 512 and the honeycomb paper core is increased, and then the second rotating motor 513 drives the lower traction roller 512 to rotate so as to convey the honeycomb paper core.
Further, the upper pulling roll 511 can also be lifted and lowered relative to the frame 10; the honeycomb paper core packaging machine further comprises a second lifting mechanism 80, wherein the second lifting mechanism 80 is used for driving the upper traction roller 511 to lift, so that the distance between the upper traction roller 511 and the lower traction roller 512 can be adjusted, and the honeycomb paper core packaging machine is suitable for honeycomb paper cores with different sizes; moreover, the friction force between the honeycomb paper core and the lower traction roller 512 can be changed, and the honeycomb paper core is prevented from being damaged due to excessive friction.
The second lifting mechanism 80 may be a conventional lifting cylinder, a lifting hydraulic cylinder, a linear motor, etc.
In order to achieve stable support of the honeycomb paper core, the pulling mechanism 50 preferably further comprises a support belt 52, and the support belt 52 is wound around at least two lower pulling rolls 512.
As shown in fig. 5, specifically, the tray 70 is installed on the frame 10 in a liftable manner; the first elevating mechanism 60 includes a third rotating motor 61, a lead screw 62, and a lead screw nut 63; the screw rod 62 is arranged on the frame 10; the third rotating motor 61 is used for driving the screw rod 62 to rotate; the screw rod nut 63 is sleeved outside the screw rod 62 in a matching manner and is fixedly connected with the tray 70; when the third rotating motor 61 drives the screw 62 to rotate, at this time, the screw nut 63 is limited by the tray 70, and under the action of the screw 62, the screw nut 63 moves along the extending direction of the screw 62, so that the tray 70 is lifted.
The above embodiments are only preferred embodiments of the present invention, and the protection scope of the present invention cannot be limited thereby, and any insubstantial changes and substitutions made by those skilled in the art based on the present invention are all within the protection scope of the present invention.

Claims (6)

1. The utility model provides a honeycomb refill baling press which characterized in that: comprises that
A frame;
a guide structure; the guide structure comprises a mounting seat and two guide arms; the mounting seat is horizontally movably mounted on the rack; the two guide arms are respectively installed on the installation seat, and a vertical channel for the honeycomb paper core to pass through is formed between the two guide arms at intervals; the two guide arms are respectively and rotatably provided with a conveying wheel;
a rotation driving mechanism; the rotary driving mechanism is arranged on the guide arm and is used for selectively driving the conveying wheel to rotate; the two conveying wheels drive the honeycomb paper core to move downwards when rotating, and cooperate to clamp the honeycomb paper core when not rotating;
a horizontal driving mechanism; the horizontal driving mechanism is used for driving the mounting seat to move;
a traction mechanism; the traction mechanism is used for conveying the honeycomb paper core towards the direction of the vertical channel;
a tray; the tray is positioned below the vertical channel;
a first lifting mechanism; the first lifting mechanism is used for driving the tray to lift.
2. The honeycomb paper core baler of claim 1, wherein: the rotary driving mechanism comprises two first rotary motors, and the two first rotary motors are arranged in one-to-one correspondence with the two conveying wheels; the body of the first rotating motor is arranged on the guide arm, and an output shaft of the first rotating motor is in transmission connection with the corresponding conveying wheel.
3. The honeycomb paper core baler of claim 1, wherein: the traction mechanism comprises at least two groups of traction units which are sequentially arranged at intervals along the length direction of the rack; the traction unit comprises a second rotating motor, an upper traction roller and a lower traction roller which are respectively pivoted on the rack; and the second rotating motor is used for driving the lower traction roller to rotate.
4. The honeycomb paper core baler of claim 3, wherein: the traction mechanism further comprises a supporting belt, and the supporting belt is wound on at least two lower traction rollers.
5. The honeycomb paper core baler of claim 3, wherein: the upper traction roller can also lift relative to the frame; the honeycomb paper core packaging machine further comprises a second lifting mechanism, and the second lifting mechanism is used for driving the upper traction roller to lift.
6. The honeycomb core baler of any one of claims 1 to 5, wherein: the tray is arranged on the rack in a lifting manner; the first lifting mechanism comprises a third rotating motor, a screw rod and a screw rod nut; the screw rod is arranged on the frame; the third rotating motor is used for driving the screw rod to rotate; the screw rod nut is sleeved outside the screw rod in a matching mode and is fixedly connected with the tray.
CN201822269891.7U 2018-12-29 2018-12-29 Honeycomb paper core baling press Active CN209834093U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201822269891.7U CN209834093U (en) 2018-12-29 2018-12-29 Honeycomb paper core baling press

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201822269891.7U CN209834093U (en) 2018-12-29 2018-12-29 Honeycomb paper core baling press

Publications (1)

Publication Number Publication Date
CN209834093U true CN209834093U (en) 2019-12-24

Family

ID=68901128

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201822269891.7U Active CN209834093U (en) 2018-12-29 2018-12-29 Honeycomb paper core baling press

Country Status (1)

Country Link
CN (1) CN209834093U (en)

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