CN112277456A - Flattening device for printing based on intelligent manufacturing - Google Patents

Flattening device for printing based on intelligent manufacturing Download PDF

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Publication number
CN112277456A
CN112277456A CN202011109168.8A CN202011109168A CN112277456A CN 112277456 A CN112277456 A CN 112277456A CN 202011109168 A CN202011109168 A CN 202011109168A CN 112277456 A CN112277456 A CN 112277456A
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China
Prior art keywords
shaped
frame
rack
rod
sliding
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Granted
Application number
CN202011109168.8A
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Chinese (zh)
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CN112277456B (en
Inventor
黄伍香
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
SHENZHEN YAJIATU PRINTING CO.,LTD.
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Guangzhou Fengzhao Electronic Technology Co ltd
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Priority to CN202011109168.8A priority Critical patent/CN112277456B/en
Publication of CN112277456A publication Critical patent/CN112277456A/en
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Publication of CN112277456B publication Critical patent/CN112277456B/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F23/00Devices for treating the surfaces of sheets, webs, or other articles in connection with printing
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H29/00Delivering or advancing articles from machines; Advancing articles to or into piles
    • B65H29/24Delivering or advancing articles from machines; Advancing articles to or into piles by air blast or suction apparatus
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41PINDEXING SCHEME RELATING TO PRINTING, LINING MACHINES, TYPEWRITERS, AND TO STAMPS
    • B41P2217/00Printing machines of special types or for particular purposes
    • B41P2217/50Printing presses for particular purposes
    • B41P2217/60Means for supporting the articles

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Feeding Of Articles By Means Other Than Belts Or Rollers (AREA)
  • Sheets, Magazines, And Separation Thereof (AREA)

Abstract

The invention relates to a flattening device, in particular to a flattening device for printing based on intelligent manufacturing. The flattening device for intelligent manufacturing and printing can effectively prevent articles from being crushed and quickly transport the articles. The utility model provides a flattening device based on printing is made to intelligence is used, including: the frame is used for mounting the whole device; the discharging assembly is arranged on the rack and discharges materials in a sliding mode; the flattening component is arranged on the frame and provides power for rolling; and the pulling assembly is arranged on the rack and moves in a rotating mode. According to the invention, through the matching of the first wedge-shaped block and the small sucker, printed objects can be rapidly moved and transported, through the matching of the rotating rod and the rotating drum, the objects can be stably flattened, the printed objects are effectively prevented from being damaged, and through the matching of the special-shaped rotating disc and the pull rod, enough power can be provided for moving the small sucker.

Description

Flattening device for printing based on intelligent manufacturing
Technical Field
The invention relates to a flattening device, in particular to a flattening device for printing based on intelligent manufacturing.
Background
Printing is a technique of transferring ink to the surface of a material such as paper, fabric, or leather by performing processes such as plate making, inking, and pressing on an original such as characters, pictures, or photographs, thereby mass-transferring the contents of the original. In a simple sense, printing is a process technology of transferring image-text information on an original to a printing stock by using a printing plate or other modes, and can also be understood as a copying process of transferring a coloring agent and a pigment to the printing stock by using an analog or digital image carrier, and after printing is finished, a worker is required to flatten fabrics.
Patent publication No. CN206551679U discloses a flattening device for newspaper and magazine printing, which comprises a fixed base, a conveying device, a flattening plate and a movable guide rail, wherein the bottom end of the fixed base is embedded with an anti-skid pad, and the top end of the fixed base is provided with a workbench, the conveying device is fixed at the inner side of the workbench, a damping spring is arranged at the bottom end of the conveying device, a bracket is arranged above the workbench, a fixing frame is fixed at the inner side of the bracket, the fixing frame is connected with the paging rod, the pressing plate is arranged at the right side of the fixing frame, the invention prints by extrusion, which can print and flatten, but the printed article is easily crushed and the article cannot be transported quickly.
Therefore, it is necessary to develop a pressing device for intelligent manufacturing printing, which can effectively prevent the articles from being crushed and can rapidly transport the articles.
Disclosure of Invention
In order to overcome the present mode of flattening printing to article and easily crushing the article that finishes printing, can not carry out quick transportation to article shortcoming, the technical problem that solves: the flattening device for intelligent manufacturing and printing can effectively prevent articles from being crushed and quickly transport the articles.
The technical scheme is as follows: the utility model provides a flattening device based on printing is made to intelligence is used, including: the frame is used for mounting the whole device; the discharging assembly is arranged on the rack and discharges materials in a sliding mode; the flattening component is arranged on the frame and provides power for rolling; and the pulling assembly is arranged on the rack and moves in a rotating mode.
Further, ejection of compact subassembly includes: the fixing frame is arranged on the rack; the printing machine is arranged on the fixed frame; the transverse plate is arranged on the rack; the first sliding block is slidably mounted on the transverse plate; the first wedge-shaped block is arranged on the transverse plate; the small sucker is arranged in the first sliding block in a sliding mode and is matched with the first wedge-shaped block; the first spring is connected between the small sucker and the first sliding block; the two L-shaped plates are arranged on the small sucker; and the arc blanking plate is arranged on the rack and is matched with the printing machine and the small sucker.
Further, the flattening assembly comprises: the mounting rack is mounted on the rack; the speed reducing motor is arranged on the mounting frame; the rotating rod is arranged on an output shaft of the speed reducing motor; the four L-shaped telescopic rods are in one group, and the number of the four L-shaped telescopic rods is two; the second spring is connected between the L-shaped telescopic rod and the telescopic component; the straight rotary drum is rotatably arranged between the L-shaped telescopic rods and is matched with the arc-shaped blanking plate; and the soft sleeve is arranged on the straight rotary drum.
Further, the pulling assembly comprises: the special-shaped turntable is arranged on the rotating rod; the fixed rod is arranged on the special-shaped turntable; the connecting sleeve is arranged on the fixed rod; and the pull rod is arranged on the connecting sleeve and matched with the L-shaped plate.
Further, the separation component comprises: the sliding sleeve is provided with a special-shaped hole on the arc blanking plate and is arranged on the frame; the top cylinder is slidably arranged in the sliding sleeve and is matched with the special-shaped hole; the third spring is connected between the top cylinder and the sliding sleeve; and the second wedge block is arranged on the top cylinder and matched with the L-shaped telescopic rod.
Further, the moving assembly comprises: the placing frame is arranged on the rack; the collecting frame is arranged in the placing frame in a sliding manner; a handle mounted on the collecting frame; a sliding plate slidably mounted in the collecting frame; the second sliding block is arranged on the sliding plate and is in sliding fit with the placing frame, and a tension spring is connected between the second sliding block and the placing frame; the third sliding block is arranged on the placing frame; the long rack is arranged on the third sliding block in a sliding manner and matched with the second sliding block; the first special-shaped rod is arranged on the mounting frame; the overrunning clutch is rotatably arranged on the first special-shaped rod; the first gear is arranged on the overrunning clutch; the second gear is arranged on a transmission shaft of the overrunning clutch; the single-toothed rod is arranged on the rack and matched with the second gear; the limiting plates are arranged on the placing frame, at least two limiting plates are arranged, and the collecting frame is provided with a discharging hole; and the weight is arranged on the single-tooth bar.
Further, get the material subassembly including: a second special-shaped rod installed on the collecting frame; the rotary cylinder is rotatably arranged on the second special-shaped rod; the baffle is arranged on the rotary cylinder; a third gear installed on the rotary cylinder; and the short rack is arranged on the mounting rack, and the third gear is matched with the short rack.
Further, the small suction cup has small suction force and can only carry objects for a short distance.
The beneficial effects are that: according to the invention, through the matching of the first wedge-shaped block and the small sucker, printed articles can be rapidly moved and transported, the articles can be stably flattened through the matching of the rotating rod and the rotating cylinder, the printed articles are effectively prevented from being damaged, through the matching of the special-shaped rotating disc and the pull rod, enough power can be provided for moving the small sucker, through the matching of the ejection cylinder and the second wedge-shaped block, the printed articles can be rapidly pushed upwards and can be rapidly pushed to the arc blanking plate, the printed articles can be effectively prevented from being attached to the arc blanking plate when being flattened, through the matching of the first gear and the single-tooth rod, the printed articles can be rapidly collected, and through the matching of the third gear and the short rack, the printed articles can be effectively prevented from falling out of the placing frame due to the uneven placing.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
FIG. 2 is a schematic view of a first partial body structure according to the present invention.
FIG. 3 is a schematic view of a second partial body structure according to the present invention.
Fig. 4 is a perspective view of a third embodiment of the present invention.
Fig. 5 is a perspective view of a fourth embodiment of the present invention.
FIG. 6 is a schematic view of a fifth partial body structure according to the present invention.
Reference numerals: 1_ frame, 2_ discharging component, 3_ flattening component, 4_ pulling component, 5_ separating component, 6_ moving component, 7_ discharging component, 21_ fixing frame, 22_ printing machine, 23_ cross plate, 24_ first slide block, 25_ first wedge block, 26_ small suction cup, 27_ first spring, 28_ L-shaped plate, 29_ arc-shaped discharging plate, 31_ mounting frame, 32_ speed reducing motor, 33_ rotating rod, 34_ L-shaped telescopic rod, 35_ second spring, 36_ straight rotating rod, 37_ soft sleeve, 41_ special-shaped rotating disk, 42_ fixing rod, 43_ connecting sleeve, 44_ pull rod, 51_ special-shaped hole, 52_ sliding sleeve, 53_ top cylinder, 54_ third spring, 55_ second wedge block, 61_ placing frame, 62_ collecting frame, 63_ handle, 64_ sliding plate, 65_ second slide block, 66_ third slide block, 67_ long rack, 68_ first special-shaped rod, 69_ overrunning clutch, 610_ first gear, 611_ second gear, 612_ single-tooth rod, 613_ limiting plate, 614_ blanking hole, 615_ weight, 71_ second profile rod, 72_ rotary barrel, 73_ baffle, 74_ third gear and 75_ short rack.
Detailed Description
The present invention will be described in detail below with reference to the accompanying drawings.
Example 1
The utility model provides a flattening device based on printing is made to intelligence, as shown in fig. 1-6, including frame 1, ejection of compact subassembly 2, the subassembly 3 and the pulling subassembly 4 of flattening, frame 1 is used for installing whole device, and frame 1 right part carries out ejection of compact subassembly 2 of ejection of compact through the sliding mode, and frame 1 middle part is equipped with the subassembly 3 that flattens that provides power and roll, and frame 1 rear side is equipped with the pulling subassembly 4 that removes through the rotation mode, removes subassembly 6 and ejection of compact subassembly 2 cooperation.
When needs are printed and are pressed article, start ejection of compact subassembly 2 and carry out work, then start the rotation of subassembly 3 that flattens, drive pulling subassembly 4 and transport the article that ejection of compact subassembly 2 produced, flatten the article that will produce through flattening subassembly 3 afterwards and promote left, after flattening finishing article, the staff with article collect can, after finishing processing all article, the staff closes ejection of compact subassembly 2 and flattens subassembly 3.
As shown in fig. 1 and fig. 2, the discharging assembly 2 includes a fixing frame 21, a printing machine 22, a transverse plate 23, a first sliding block 24, a first wedge-shaped block 25, a small suction cup 26, a first spring 27, an L-shaped plate 28 and an arc-shaped discharging plate 29, the fixing frame 21 is fixedly connected to the upper portion of the right side of the frame 1 through a bolt, the printing machine 22 is fixedly connected to the upper portion of the fixing frame 21 through a bolt, the transverse plate 23 is fixedly connected to the right side of the top of the frame 1 through a bolt, the first sliding block 24 is slidably arranged in the middle of the transverse plate 23, the first wedge-shaped block 25 is fixedly connected to the front side of the top of the transverse plate 23 through a bolt, the small suction cup 26 is slidably arranged in the first sliding block 24, the small suction cup 26 is matched with the first wedge-shaped block 25, the suction force of the small suction cup 26 is small, the first spring 27 is connected between the small suction cup 26, an arcuate stripper plate 29 cooperates with the printer 22 and the small suction cups 26.
When the objects are pressed normally, the printer 22 is started to print the objects, the L-shaped plate 28 is pulled to move leftward under the action of the pulling assembly 4 to drive the small suction cup 26 to move leftward, so as to drive the first sliding block 24 to move leftward, the small suction cup 26 is driven to slide upward under the action of the first spring 27 to loosen the objects, when the small suction cup 26 moves to the leftmost end, the objects are moved to the arc-shaped blanking plate 29, the pulling assembly 4 drives the small suction cup 26 and the upper device thereof to move rightward, so that the small suction cup 26 moves downward to suck the next object, after all the objects are printed, the worker closes the printer 22, and thus, the printed objects can be quickly moved and transported.
As shown in fig. 1 and 3, subassembly 3 flattens is including mounting bracket 31, gear motor 32, bull stick 33, L shape telescopic link 34, second spring 35, straight rotary drum 36 and soft cover 37, there is mounting bracket 31 in the frame 1 middle part outside through the bolt rigid coupling, there is gear motor 32 in the mounting bracket 31 front side through the bolt rigid coupling, be equipped with bull stick 33 on gear motor 32's the output shaft, there is L shape telescopic link 34 in the bull stick 33 middle part through the screw rigid coupling, L shape telescopic link 34 four is a set of, there are two sets of, be connected with second spring 35 between L shape telescopic link 34 and the telescopic part, equal rotary type is equipped with straight rotary drum 36 between the L shape telescopic link 34, the rotary drum cooperates with arc flitch 29 down, straight rotary drum 36 outside all overlaps soft cover 37.
When starting printing machine 22, start gear motor 32, it rotates to drive bull stick 33, and then drive L shape telescopic link 34 and rotate, it rotates to drive straight rotary drum 36, thereby drive soft cover 37 and rotate, when flitch 29 contact under soft cover 37 and arc, promote soft cover 37 inward shifting, drive straight rotary drum 36 inward shifting, make the extensible member shrink of L shape telescopic link 34, second spring 35 compresses, when flitch 29 drops under soft cover 37 and arc, the extensible member extension that drives L shape telescopic link 34 under the effect of second spring 35, so, can carry out stable flattening with article, effectively prevent to damage printing article.
As shown in fig. 1 and 3, the pulling assembly 4 includes a special-shaped rotating disc 41, a fixing rod 42, a connecting sleeve 43 and a pull rod 44, the special-shaped rotating disc 41 is fixedly connected to the rear portion of the rotating rod 33 through a screw, the fixing rod 42 is welded to the outer side of the rear side of the special-shaped rotating disc 41, the connecting sleeve 43 is arranged at the rear portion of the fixing rod 42, the pull rod 44 is welded to the right side of the connecting sleeve 43, and the pull rod 44 and the L-.
When the rotating rod 33 rotates, the special-shaped rotating disc 41 is driven to rotate, and then the fixing rod 42 is driven to rotate, the connecting sleeve 43 is driven to move left and right, so that the pull rod 44 is driven to move left and right, the L-shaped plate 28 is driven to move left and right, and when the rotating rod 33 stops rotating, the special-shaped rotating disc 41 and the device on the special-shaped rotating disc stop rotating, so that enough power can be provided for moving the small sucker 26.
Example 2
On the basis of embodiment 1, as shown in fig. 1 and 4, the separating assembly 5 includes a sliding sleeve 52, a top cylinder 53, a third spring 54 and a second wedge-shaped block 55, the left portion of the arc-shaped blanking plate 29 is provided with a special-shaped hole 51, the left portion of the front side of the frame 1 is fixedly connected with the sliding sleeve 52 through a screw, the sliding sleeve 52 is internally provided with the top cylinder 53 in a sliding manner, the top cylinder 53 is matched with the special-shaped hole 51, the third spring 54 is connected between the top cylinder 53 and the sliding sleeve 52, the top end of the top cylinder 53 is fixedly connected with the second wedge-shaped block 55 through a screw, and the second wedge-shaped block 55 is matched with the straight rotating cylinder 36.
When the L-shaped telescopic rod 34 at the front side rotates and contacts with the second wedge-shaped block 55, the second wedge-shaped block 55 is pushed to move upwards, the ejector 53 is driven to slide upwards, and then the third spring 54 is driven to stretch, when the L-shaped telescopic rod 34 rotates and is separated from the second wedge-shaped block 55, the ejector 53 and the upper device are driven to move downwards under the action of the third spring 54 to reset, so that printed objects can be quickly pushed upwards to separate from the arc-shaped lower material plate 29, and the printed objects are effectively prevented from being attached to the arc-shaped lower material plate 29 when being flattened.
In addition to embodiment 1, as shown in fig. 1 and 5, the moving assembly 6 includes a placing frame 61, a collecting frame 62, a handle 63, a sliding plate 64, a second sliding block 65, a third sliding block 66, a long rack 67, a first special-shaped rod 68, an overrunning clutch 69, a first gear 610, a second gear 611, a single-tooth rod 612, a limit plate 613 and a weight 615, the placing frame 61 is fixed to the lower portion of the left side of the rack 1 through bolts, the collecting frame 62 is slidably arranged in the placing frame 61, the handle 63 is welded to the rear portion of the front side of the collecting frame 62, the sliding plate 64 is slidably arranged in the collecting frame 62, the sliding block 65 is fixedly connected to the central position of the front side of the sliding plate 64 through a screw, the second sliding block 65 is slidably matched with the placing frame 61, a tension spring is connected between the second sliding block 65 and the placing frame 61, the third sliding block 66 is fixedly connected to the front side of the placing frame 61 through a screw, the long rack, the long rack 67 is matched with the second sliding block 65, a first special-shaped rod 68 is welded on the left side of the bottom of the mounting frame 31, an overrunning clutch 69 is rotatably arranged on the rear side of the first special-shaped rod 68, a first gear 610 is arranged on the outer side of the overrunning clutch 69, a transmission shaft of the overrunning clutch 69 is provided with a second gear 611, the second gear 611 is matched with the long rack 67, a single-tooth rod 612 is fixedly connected to the left portion of the front side of the rack 1 through screws, the single-tooth rod 612 is matched with the second gear 611, a limiting plate 613 is fixedly connected to the bottom of the placing frame 61 through bolts, one row of the limiting plates 613 is arranged, a blanking hole 614 is formed in the upper portion of the right side of the collecting frame 62, the blanking hole 614 is matched with.
When the soft sleeve 37 moves the printed matter left through the arc-shaped blanking plate 29, the printed matter is driven to fall onto the sliding plate 64 through the blanking hole 614, meanwhile, when the top cylinder 53 moves upwards, the single-tooth rod 612 is pushed to move upwards, when the single-tooth rod 612 contacts with the first gear 610, the first gear 610 is pushed to rotate, the overrunning clutch 69 is driven to rotate, the long rack 67 is pushed to move downwards, the second sliding block 65 is driven to slide downwards, the tension spring is compressed, when the top cylinder 53 is separated from the single-tooth rod 612, the single-tooth rod 612 is driven to move downwards under the action of the gravity of the weight 615, when the single-tooth rod 612 moves downwards to contact with the first gear 610, the first gear is pushed to rotate reversely 610, the overrunning clutch 69 is driven to idle, the second gear 611 is not driven to rotate any more, when the sliding plate 64 contacts with the limit plate 613, the worker pulls the handle 63 to move backwards, the collection frame 62 and the device on it move backward to drive, the staff afterwards with the printing article from collecting in the frame 62 take out can, drive second sliding block 65 and the device on it upward movement reset under tension spring's effect, after the staff takes out all the printing article that finish flattening, staff pulling handle 63 and the device on it move forward and reset, so, can be quick collect printing article.
On the basis of embodiment 1, as shown in fig. 1, 5 and 6, the material taking assembly 7 includes a second special-shaped rod 71, a rotary cylinder 72, a baffle plate 73, a third gear 74 and a short rack 75, the second special-shaped rod 71 is welded on the rear side of the top of the collecting frame 62, the rotary cylinder 72 is rotatably arranged on the second special-shaped rod 71, the baffle plate 73 is fixedly connected on the rear side of the rotary cylinder 72 through a screw, the third gear 74 is fixedly connected on the right side of the rotary cylinder 72 through a screw, the short rack 75 is fixedly connected on the left side of the rear mounting frame 31 through a screw, and the third gear 74 is matched with the short rack 75.
When the collecting frame 62 moves backwards, the second special-shaped rod 71 is driven to move backwards, and then the rotating cylinder 72 is driven to move backwards, the baffle plate 73 is driven to move backwards, so that the third gear 74 is driven to move backwards, when the third gear 74 contacts with the short rack 75, the third gear 74 is pushed to rotate, the rotating cylinder 72 is driven to rotate, the baffle plate 73 rotates upwards to open the collecting frame 62, when the collecting frame 62 moves forwards, the second special-shaped rod 71 and the upper device thereof are driven to move forwards to reset, when the third gear 74 contacts with the short rack 75, the third gear 74 is pushed to rotate reversely to drive the rotating cylinder 72 to rotate reversely, the baffle plate 73 rotates downwards to reset to close the collecting frame 62, and therefore the phenomenon that printed articles are placed unevenly to fall out of the collecting frame 62 can be effectively prevented.
While the present invention has been described with reference to exemplary embodiments, it is to be understood that the invention is not limited to the disclosed exemplary embodiments. The scope of the following claims is to be accorded the broadest interpretation so as to encompass all such modifications and equivalent structures and functions.

Claims (8)

1. The utility model provides a flattening device based on printing is used to intelligence manufacturing which characterized in that, including:
a frame (1) for mounting the entire device;
the discharging assembly (2) is arranged on the rack (1) and discharges materials in a sliding mode;
the flattening component (3) is arranged on the rack (1) and provides power for rolling;
the pulling assembly (4) is installed on the rack (1) and moves in a rotating mode.
2. Flattening device for smart-based manufacturing printing according to claim 1, characterized in that the outfeed assembly (2) comprises:
the fixing frame (21) is arranged on the rack (1);
a printer (22) mounted on the fixing frame (21);
the transverse plate (23) is arranged on the rack (1);
a first sliding block (24) which is slidably mounted on the transverse plate (23);
the first wedge-shaped block (25) is arranged on the transverse plate (23);
the small sucker (26) is arranged in the first sliding block (24) in a sliding mode, and the small sucker (26) is matched with the first wedge-shaped block (25);
a first spring (27) connected between the small suction cup (26) and the first slide block (24);
the L-shaped plates (28) are arranged on the small suckers (26), and the number of the L-shaped plates (28) is two;
the arc blanking plate (29) is installed on the rack (1), and the arc blanking plate (29) is matched with the printing machine (22) and the small sucker (26).
3. Flattening device for smart-based manufacturing printing according to claim 2, characterized in that the flattening assembly (3) comprises:
the mounting rack (31) is mounted on the rack (1);
a speed reduction motor (32) mounted on the mounting frame (31);
a rotating rod (33) mounted on the output shaft of the speed reducing motor (32);
the L-shaped telescopic rods (34) are arranged on the rotating rod (33), and four L-shaped telescopic rods (34) form one group, and two groups are provided;
a second spring (35) connected between the L-shaped telescopic rod (34) and the telescopic component;
the straight rotary drum (36) is rotatably arranged between the L-shaped telescopic rods (34) and is matched with the arc blanking plate (29);
a soft sleeve (37) is arranged on the straight rotary drum (36).
4. Flattening device for smart-based manufacturing printing according to claim 3, characterized in that the pulling assembly (4) comprises:
the special-shaped rotary table (41) is arranged on the rotary rod (33);
the fixing rod (42) is arranged on the special-shaped turntable (41);
a connecting sleeve (43) arranged on the fixed rod (42);
and the pull rod (44) is arranged on the connecting sleeve (43), and the pull rod (44) is matched with the L-shaped plate (28).
5. Flattening device for smart-based manufacturing printing according to claim 4, characterized in that the separation assembly (5) comprises:
the sliding sleeve (52) is provided with a special-shaped hole (51) on the arc-shaped blanking plate (29) and is arranged on the frame (1);
the top cylinder (53) is slidably arranged in the sliding sleeve (52), and the top cylinder (53) is matched with the special-shaped hole (51);
a third spring (54) connected between the top cylinder (53) and the sliding sleeve (52);
and the second wedge-shaped block (55) is arranged on the top barrel (53), and the second wedge-shaped block (55) is matched with the L-shaped telescopic rod (34).
6. Flattening device for smart-based manufacturing printing according to claim 5, characterized in that the moving assembly (6) comprises:
a placing frame (61) which is arranged on the frame (1);
a collecting frame (62) slidably mounted in the placing frame (61);
a handle (63) mounted on the collecting frame (62);
a sliding plate (64) slidably mounted within the collection frame (62);
the second sliding block (65) is arranged on the sliding plate (64), the second sliding block (65) is in sliding fit with the placing frame (61), and a tension spring is connected between the second sliding block (65) and the placing frame (61);
a third slider (66) mounted on the placement frame (61);
the long rack (67) is arranged on the third sliding block (66) in a sliding manner, and the long rack (67) is matched with the second sliding block (65);
a first profiled bar (68) mounted on the mounting bracket (31);
an overrunning clutch (69) rotatably mounted on the first special-shaped rod (68);
a first gear (610) mounted on the overrunning clutch (69);
a second gear (611) mounted on the drive shaft of the overrunning clutch (69);
the single-toothed bar (612) is installed on the rack (1), and the single-toothed bar (612) is matched with the second gear (611);
the limiting plates (613) are arranged on the placing frame (61), at least two limiting plates (613) are arranged, and the collecting frame (62) is provided with a blanking hole (614);
and a weight (615) mounted on the single rack bar (612).
7. Flattening device for smart-based manufacturing printing according to claim 6, characterized in that the material-taking assembly (7) comprises:
a second profile bar (71) mounted on the collection frame (62);
a rotary cylinder (72) rotatably mounted on the second special-shaped rod (71);
a baffle plate (73) mounted on the rotary drum (72);
a third gear (74) mounted on the rotary drum (72);
and the short rack (75) is arranged on the mounting frame (31), and the third gear (74) is matched with the short rack (75).
8. The intelligent manufacturing printing-based flattening device of claim 2, wherein:
the small suction cup (26) has small suction force and can only carry objects for a short distance.
CN202011109168.8A 2020-10-16 2020-10-16 Flattening device for printing based on intelligent manufacturing Active CN112277456B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202011109168.8A CN112277456B (en) 2020-10-16 2020-10-16 Flattening device for printing based on intelligent manufacturing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202011109168.8A CN112277456B (en) 2020-10-16 2020-10-16 Flattening device for printing based on intelligent manufacturing

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Publication Number Publication Date
CN112277456A true CN112277456A (en) 2021-01-29
CN112277456B CN112277456B (en) 2022-04-05

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113277346A (en) * 2021-05-07 2021-08-20 邓浩 Flattening device for intelligent printed matter manufacturing
CN113400797A (en) * 2021-06-07 2021-09-17 邓浩 Intelligent leveling device for manufacturing printed matter

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