CN209796040U - packing box seal paper board stacking device - Google Patents
packing box seal paper board stacking device Download PDFInfo
- Publication number
- CN209796040U CN209796040U CN201920618103.2U CN201920618103U CN209796040U CN 209796040 U CN209796040 U CN 209796040U CN 201920618103 U CN201920618103 U CN 201920618103U CN 209796040 U CN209796040 U CN 209796040U
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- underframe
- bearing
- disc
- film
- door frame
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Abstract
Packing box seal paperboard piles up pile buttress device, including underframe and the door frame of fixed connection on the underframe, be equipped with rotary mechanism on the underframe and put the membrane device, install roof pressure mechanism on the door frame, rotary mechanism includes the disc and installs the carousel bearing in the underframe, be equipped with the back shaft in the carousel bearing, the first sprocket of fixedly connected with on the back shaft, the disc is connected with first sprocket through many distance covers, fixedly connected with rotary mechanism has two sets ofly in the underframe, two sets of rotary mechanism settings are putting membrane device both sides, all install roof pressure mechanism on each rotary mechanism top door frame of organizing. The utility model discloses can compress piling up the seal paperboard, will fluffy pile up the seal paperboard compaction, reduce the seal paperboard volume to carry out monolithic stationary and protection piling up the seal paperboard.
Description
Technical Field
The utility model relates to a packing box printing plate piles up a pile device.
background
After printing, the printing paper boards of the packing box are stacked and stacked on the tray, the printing paper boards are bundled by using a binding belt and are transported to a packing workshop for use, however, the printing paper boards stacked and stacked on the tray are easy to damage or pollute the outer edges of the printing paper boards in the bundling and transporting processes; on the other hand, the stacked printing paperboard is in a fluffy state, and the fluffy printing paperboard occupies more storage space.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is that packing box seal board piles up pile up buttress device, can will pile up the seal board and compress, will fluffy pile up the seal board compaction, reduce the seal board volume to carry out monolithic stationary and protection to piling up the seal board.
In order to solve the above problem, the to-be-solved technical scheme of the utility model is:
the packing box printing paperboard stacking device comprises a bottom frame and a door frame fixedly connected to the bottom frame, wherein the bottom frame is provided with a rotating mechanism and a film placing device, the door frame is provided with a jacking mechanism,
the rotating mechanism comprises a disc and a turntable bearing arranged in the bottom frame, a support shaft is arranged in the turntable bearing, a first chain wheel is fixedly connected to the support shaft, the disc is connected with the first chain wheel through a plurality of distance sleeves, a plurality of channel steel are fixedly connected in the bottom frame, rollers are arranged in the channel steel and are uniformly distributed around the axis of the support shaft, a speed reducing motor is arranged on the bottom frame on one side of the disc, a second chain wheel is arranged on an output shaft of the speed reducing motor, and chains are lapped on the first chain wheel and the second chain wheel;
the film placing device comprises a support fixedly connected to a door frame, a top plate is installed in the support, a bearing seat is installed on each of the top plate and the bottom frame, conical insertion blocks are installed on the two bearing seats, a wound film roll is installed between the two conical insertion blocks, and a plurality of film winding rods are installed between the top plate and the bottom frame;
The jacking mechanism comprises an oil cylinder fixedly arranged on the door frame, and a piston rod of the oil cylinder is connected with the pressing plate through a thrust bearing.
the rotating mechanisms are provided with two groups, the two groups of rotating mechanisms are arranged at two sides of the film placing device, and the top pressing mechanisms are arranged on the door frames above the rotating mechanisms.
The top plate is connected with the bearing seat through an elastic device, the elastic device comprises a shaft rod and a shaft sleeve installed on the top plate, the upper end of the shaft rod is inserted into the shaft sleeve, the lower end of the shaft rod is installed in the bearing seat, a push plate is fixedly connected onto the shaft rod, a spring is sleeved outside the shaft rod, and two ends of the spring are respectively abutted to the push plate and the shaft sleeve.
The technical effects of the utility model are that:
1. After the forklift places the stacked printing paper boards on the disc, the oil cylinder pushes the pressing plate to be pressed on the printing paper boards, the stacked printing paper boards are compressed, gaps between the stacked printing paper boards are eliminated, the size of the stacked printing paper boards is reduced, and people can store and transport the stacked printing paper boards conveniently.
2. after the printing paperboard is compressed, the rotating mechanism drives the printing paperboard on the disc to rotate, meanwhile, the film arranged on the film placing device winds and fixes the stacked printing paperboard, the outer edge of the printing paperboard is protected by the film wound on the stacked printing paperboard, and the outer edge of the printing paperboard is prevented from being damaged by collision in the transportation process.
3. Two groups of rotating mechanisms can be used alternately, and the working efficiency is improved.
Drawings
The invention will be further explained with reference to the drawings:
figure 1 is a front view of the present invention,
Figure 2 is a top view of the present invention,
FIG. 3 is a schematic cross-sectional view taken along line A-A in FIG. 1,
figure 4 is a schematic view of a partial cross-sectional structure at B in figure 1,
Figure 5 is a schematic view of a partially enlarged structure at C in figure 1,
Figure 6 is a hydraulic schematic diagram of the present invention,
Fig. 7 is a circuit diagram of the present invention.
in the figure: the film winding machine comprises a bottom frame 1, a door frame 2, a film winding roll 3, an electric box 4, a rotating mechanism 5, a jacking mechanism 6, a film releasing device 7, a turntable bearing 50, a disc 51, a speed reducing motor 52, a channel steel 53, a roller 54, a first chain wheel 55, a distance sleeve 56, a second chain wheel 57, a chain 58, a supporting shaft 59, an oil cylinder 61, a thrust bearing 62, a pressing plate 63, a support frame 71, a top plate 72, a bearing seat 73, a film winding rod 74, a shaft sleeve 75, a shaft rod 76, a spring 77, a pushing plate 78 and an insert block 79.
Detailed Description
As shown in fig. 1 to 7, the packing box printing paperboard stacking device comprises a bottom frame 1 and a door frame 2 fixedly connected to the bottom frame 1, wherein a rotating mechanism 5 and a film placing device 7 are arranged on the bottom frame 1, a jacking mechanism 6 is arranged on the door frame 2,
The rotating mechanism 5 comprises a disc 51 and a turntable bearing 50 arranged in the bottom frame 1, a supporting shaft 59 is arranged in the turntable bearing 50, a first chain wheel 55 is fixedly connected to the supporting shaft 59, the disc 51 is connected with the first chain wheel 55 through a plurality of distance sleeves 56, the axis of the first chain wheel 55 is overlapped with the axis of the disc 51, a plurality of channel steel 53 are fixedly connected in the bottom frame 1, conical rollers 54 are arranged in the channel steel 53, the conical rollers 54 are uniformly distributed around the axis of the supporting shaft 59, and the thinner end of each conical roller 54 faces to the center of the disc 51; a speed reducing motor 52 is arranged on the bottom frame 1 on one side of the disc 51, a second chain wheel 57 is arranged on an output shaft of the speed reducing motor 52, a chain 58 is lapped on the first chain wheel 55 and the second chain wheel 57, a tension wheel is arranged on the bottom frame 1 and used for tensioning the chain 58, and the speed reducing motor 52 drives the disc 51 to rotate through the first chain wheel 55, the first chain wheel 55 and the chain 58; the turntable bearing 50 can be a 315-type turntable bearing 50 produced by Hebei Hongxing pipeline assembly and manufacturing limited company, and the turntable bearing 50 has the function of radially positioning the position of the disc 51 while keeping the disc 51 to normally rotate; the speed reducing motor 52 can be an NVC18-19-90S three-phase speed reducing motor manufactured by Baogomat industrial equipment Limited, Suzhou, and as shown in FIG. 7, the two speed reducing motors 52 are respectively controlled by a relay KA1 and a relay KA 2.
The film placing device 7 comprises a support 71 fixedly connected to the door frame 2, a top plate is installed in the support 71, a bearing seat 73 is respectively installed on the top plate 72 and the bottom frame 1, tapered insertion blocks 79 are respectively installed on the two bearing seats 73, the wound film roll 3 is installed between the two tapered insertion blocks 79, and at least 2 film winding rods 74 are installed between the top plate 72 and the bottom frame 1; the bearing seat 73 can be a UCF204 seated outer spherical bearing produced by Linqing aerospace bearing manufacturing Limited company, after the winding film roll 3 is installed in the two conical insertion blocks 79, the PE film pulled out of the winding film roll 3 bypasses each film winding rod 74, the stacked printing paper boards on the disc 51 are wound and wrapped, and the film winding rods 74 are used for providing resistance for the PE film pulled out of the winding film and keeping the PE film stretched straight; the wrapping film used may be 1 m PE film produced by "packaging materials Limited, Mass., Linxi county".
The jacking mechanism 6 comprises an oil cylinder 61 fixedly arranged on the door frame 2, and a piston rod of the oil cylinder 61 is connected with the pressing plate 63 through a thrust roller bearing. The hydraulic cylinder 61 may be an HSG type hydraulic cylinder 61 manufactured by "constant flight hydropneumatic equipment ltd of the tin-free city", and as shown in fig. 6 and 7, the two hydraulic cylinders 61 are controlled by two three-position four-way solenoid valves.
the utility model discloses a use method does: after the carton printing paper boards are stacked on the disc 51, the pallet and the printing paper boards are transported to the disc 51 by a forklift, then a worker pulls out a PE film from a winding film and presses the end of the PE film in the stacked printing paper boards by bypassing the film winding rods 74, then a switch SB2 is pressed, a switch YA2 is pressed to enable the three-position four-way electromagnetic valve to move to the right position, the oil cylinder 61 moves downwards to press the pressing plate 63 on the stacked printing paper boards, the stacked printing paper boards are compressed, gaps among the stacked printing paper boards are eliminated, the volume of the stacked printing paper boards is reduced, then the switch SB2 is released, the three-position four-way electromagnetic valve moves to the middle position, and the oil cylinder 61 stops moving downwards and maintains pressure; then, a switch SB5 is pressed, the speed reducing motor 52 is started, the PE film is wound on the stacked printing paper boards on the disc 51, after the winding is finished, the switch SB5 is loosened, the PE film stops winding, then the PE film is cut off, the stacked printing paper boards are fixed and protected by the PE film, finally, the switch SB1 is pressed, the three-position four-way electromagnetic valve moves to the left position, the oil cylinder 61 moves upwards, and the forklift takes down the stacked printing paper boards after the winding is finished.
The rotating mechanisms 5 are provided with two groups, the two groups of rotating mechanisms 5 are arranged at two sides of the film placing device 7, and the top pressing mechanisms 6 are arranged on the door frames 2 above the rotating mechanisms 5. When the film is wound on the stacked printing paper board on one group of the rotating mechanisms 5, the forklift can place the stacked printing paper board on the other group of the rotating mechanisms 5, so that the two groups of the rotating mechanisms 5 and the jacking mechanism 6 can be used alternately, and the working efficiency is improved.
The top plate 72 is connected with the bearing seat 73 through an elastic device, the elastic device comprises a shaft lever 76 and a shaft sleeve 75 installed on the top plate 72, the upper end of the shaft lever 76 is inserted into the shaft sleeve 75, the lower end of the shaft lever 76 is installed in the bearing seat 73, a push plate 78 is fixedly connected onto the shaft lever 76, a spring 77 is sleeved outside the shaft lever 76, and two ends of the spring 77 are respectively abutted against the push plate 78 and the shaft sleeve 75. This configuration facilitates the installation or removal of the roll of wrapping film 3 by moving the shaft 76 upward to compress the spring 77, placing the roll of wrapping film 3 between the two tapered inserts 79, and then releasing the shaft 76, with the spring 77 pushing the tapered inserts 79 into the mandrel of the roll of wrapping film 3 to complete the installation of the roll of wrapping film 3.
Claims (3)
1. packing box seal board piles up pile up buttress device, including underframe (1) and door frame (2) of fixed connection on underframe (1), be equipped with rotary mechanism (5) and put membrane device (7) on underframe (1), install roof pressure mechanism (6), its characterized in that on door frame (2):
The rotating mechanism (5) comprises a disc (51) and a turntable bearing (50) installed in the bottom frame (1), a supporting shaft (59) is arranged in the turntable bearing (50), a first chain wheel (55) is fixedly connected to the supporting shaft (59), the disc (51) is connected with the first chain wheel (55) through a plurality of distance sleeves (56), a plurality of channel steel (53) are fixedly connected in the bottom frame (1), rollers (54) are installed in the channel steel (53), the rollers (54) are uniformly distributed around the axis of the supporting shaft (59), a speed reducing motor (52) is installed on the bottom frame (1) on one side of the disc (51), a second chain wheel (57) is installed on an output shaft of the speed reducing motor (52), and chains (58) are lapped on the first chain wheel (55) and the second chain wheel (57);
the film placing device (7) comprises a support (71) fixedly connected to a door frame (2), a top plate is installed in the support (71), a bearing seat (73) is respectively installed on the top plate (72) and the bottom frame (1), conical insertion blocks (79) are installed on the two bearing seats (73), a winding film roll (3) is installed between the two conical insertion blocks (79), and a plurality of film winding rods (74) are installed between the top plate (72) and the bottom frame (1);
The jacking mechanism (6) comprises an oil cylinder (61) fixedly arranged on the door frame (2), and a piston rod of the oil cylinder (61) is connected with the pressing plate (63) through a thrust bearing (62).
2. The packing box printing paperboard stacking device as claimed in claim 1, wherein: the rotating mechanisms (5) are provided with two groups, the two groups of rotating mechanisms (5) are arranged at two sides of the film placing device (7), and the top pressing mechanisms (6) are arranged on the door frames (2) above the rotating mechanisms (5).
3. the packaging box printing paperboard stacking device according to claim 1 or 2, characterized in that: roof (72) are connected with bearing frame (73) through resilient means, resilient means includes axostylus axostyle (76) and installs axle sleeve (75) on roof (72), and insert in axle sleeve (75) axostylus axostyle (76) upper end, and install in bearing frame (73) axostylus axostyle (76) lower extreme, fixedly connected with push pedal (78) on axostylus axostyle (76), there are spring (77) at axostylus axostyle (76) overcoat, and spring (77) both ends lean on push pedal (78) and axle sleeve (75) respectively.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201920618103.2U CN209796040U (en) | 2019-04-30 | 2019-04-30 | packing box seal paper board stacking device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201920618103.2U CN209796040U (en) | 2019-04-30 | 2019-04-30 | packing box seal paper board stacking device |
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CN209796040U true CN209796040U (en) | 2019-12-17 |
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CN201920618103.2U Active CN209796040U (en) | 2019-04-30 | 2019-04-30 | packing box seal paper board stacking device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114572748A (en) * | 2022-03-14 | 2022-06-03 | 保定三叶橡胶机带制造有限公司 | Efficient is production of fire-retardant whole area core with piling up device in colliery |
-
2019
- 2019-04-30 CN CN201920618103.2U patent/CN209796040U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114572748A (en) * | 2022-03-14 | 2022-06-03 | 保定三叶橡胶机带制造有限公司 | Efficient is production of fire-retardant whole area core with piling up device in colliery |
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