CN2749673Y - Printing, slotting and die cutting machine equipped with ink distribution differential compensation mechanism - Google Patents

Printing, slotting and die cutting machine equipped with ink distribution differential compensation mechanism Download PDF

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Publication number
CN2749673Y
CN2749673Y CN 200420110375 CN200420110375U CN2749673Y CN 2749673 Y CN2749673 Y CN 2749673Y CN 200420110375 CN200420110375 CN 200420110375 CN 200420110375 U CN200420110375 U CN 200420110375U CN 2749673 Y CN2749673 Y CN 2749673Y
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CN
China
Prior art keywords
ink
printing
ink transfer
roller
reticulate pattern
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Expired - Lifetime
Application number
CN 200420110375
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Chinese (zh)
Inventor
丁根龙
周七成
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SHANGHAI DINGLONG MACHINERY CO Ltd
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SHANGHAI DINGLONG MACHINERY CO Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
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Priority to CN 200420110375 priority Critical patent/CN2749673Y/en
Application granted granted Critical
Publication of CN2749673Y publication Critical patent/CN2749673Y/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Abstract

The utility model provides a printing, slotting and die cutting machine provided with an ink distribution differential compensation mechanism. The utility model is characterized in that a printing unit is provided with the ink distribution differential compensation mechanism which comprises an ink transfer texture roller linkage gear, an ink distribution rubber roller gear and an ink distribution rubber roller one-way compensating bearing. The ink transfer texture roller linkage gear is arranged on the inner side of an ink transfer texture roller gear and is fixedly connected with an ink transfer texture roller shaft in a transmission way. The ink distribution rubber roller gear is arranged on one shaft end of an ink distribution rubber roller shaft and is engaged and connected with the ink transfer texture roller linkage gear in a transmission way. The ink distribution rubber roller one-way compensating bearing is nested in the ink distribution rubber roller gear, an outer ferrule of the ink distribution rubber roller one-way compensating bearing is fixedly connected with the ink distribution rubber roller gear, and an inner ferrule is fixedly connected with the ink distribution rubber roller shaft. The utility model can solve that the error of linear velocity is large after an ink distribution rubber roller and the ink transfer texture roller are worn in the process of running, and can solve various defects because the linear velocity is unequal; thus, the printing quality and the qualification rate can be obviously enhanced.

Description

Be provided with the printing slotting die-cutting machine of even black differential compensation mechanism
Technical field
The utility model relates to a kind of package packing machine, relates in particular to a kind of printing slotting die-cutting machine that is provided with even black differential compensation mechanism.
Background technology
Printing slotting die-cutting machine is widely used a kind of package packing machine, its primary structure as shown in Figure 1, comprise paper feed unit 11, a plurality of printing element 12, fluting unit 13 and die cutting unit 14, each unit is unified cooperating in harmony under the effect of power-equipment and transmission mechanism, finishes printing, fluting and the cross cutting of cardboard jointly.Its printing element employing ink transfer anilox roll and printed panel roller mode in relative rotation carry out ink transfer, and employing ink transfer anilox roll and printing ink glue roller mode are in relative rotation spared China ink, adopt the printed panel roller to print.The primary structure of the printing element in the prior art printing slotting die-cutting machine as shown in Figure 2, it comprises and is installed in printing slotting die-cutting machine both sides wallboard 21, between 22 and the printing ink glue roller 23 that is arranged above and below, ink transfer anilox roll 24 and printed panel roller 25, the axle head of the printed panel roll shaft 251 outside a framed side wallboard 21 is equipped with printed panel roller gear 252 and links to each other with the transmission of printed panel roll shaft, the axle head of the ink transfer reticulate pattern roll shaft 241 outside the same side wallboard 21 is equipped with ink transfer reticulate pattern roller gear 242 and links to each other with printed panel roller gear engaged transmission, at the embedded unidirectional compensation bearing 243 of anilox line roller that is with of ink transfer reticulate pattern roller gear, the unidirectional compensation bearing of this ink transfer anilox roll links to each other with the unidirectional transmission of ink transfer reticulate pattern roller gear, and links to each other with the unidirectional transmission of ink transfer reticulate pattern roll shaft; Outside framed side wallboard 22, be provided with by ink dry-proof motor wheel 26 and the ink dry-proof wheel 27 ink dry-proof transmission mechanisms of forming, ink dry-proof motor wheel 26 is installed on the motor, on the motor installation side wallboard 22, the axle head that ink dry-proof wheel 27 is installed in printing ink glue roll shaft 231 and ink dry-proof motor are taken turns that 26 transmissions link to each other and are linked to each other with printing ink glue roll shaft 231 fixed conveyor.
When printing, actuating unit by printing slotting die-cutting machine drives 25 rotations of printed panel roller by its driving-chain, printed panel roller 25 drives and is engaged with 242 rotations of continuous ink transfer reticulate pattern roller gear, drive unidirectional compensation bearing 243 runnings of ink transfer anilox roll by ink transfer reticulate pattern roller gear 242 again, the unidirectional compensation bearing 243 of ink transfer anilox roll this moment is equivalent to a connector, it drives ink transfer anilox roll 24 runnings that are attached thereto then, is relatively rotated to finish by friction drive printing ink glue roller 23 by the ink transfer anilox roll and draws together black function.Dry in order to prevent printing ink to occur when suspending printing, when suspending printing, the ink dry-proof transmission mechanism starts, and drives 23 runnings of printing ink glue roller, drives 24 runnings of anilox line roller to prevent that ink dries from drying up by the printing ink glue roller by friction again.This constantly the unidirectional compensation bearing 243 of anilox line roller be equivalent to a plain bearing, the rotation of ink transfer anilox roll 24 can not be passed to ink transfer reticulate pattern roller gear 242, thereby also can not drive printed panel roller 25 and rotate.In real work, because the performance of printing ink is different with effect, often the printing ink glue roller and stops when changeing during the ink transfer anilox roll in the running that does not stop, and causes the concentrated wear of ink transfer anilox roll, causes the sheet squamous occurring when printing and prints vestige.And when the moving printing ink glue roller of ink transfer knurled belt turns round, because the extruding force difference, and the linear velocity difference, mottled printing vestige and ambiguous phenomenon can appear again, had a strong impact on printing quality.
Summary of the invention
The purpose of this utility model, be for a kind of printing slotting die-cutting machine that is provided with even black differential compensation mechanism is provided, to guarantee that printing ink glue pad and ink transfer anilox roll realize run-in synchronism, solve the on-stream wearing and tearing of printing ink glue pad and ink transfer anilox roll back linear velocity and do not wait the printing quality problem that is caused.
Technical solution adopted in the utility model is: a kind of printing slotting die-cutting machine that is provided with even black differential compensation mechanism mainly comprises paper feed unit, a plurality of printing element, fluting unit and die cutting unit; Described each printing element respectively comprises and is installed between the wallboard of printing slotting die-cutting machine both sides and the printing ink glue roller that is arranged above and below, ink transfer anilox roll and printed panel roller, the axle head of the printed panel roll shaft outside a framed side wallboard is equipped with the printed panel roller gear and links to each other with the transmission of printed panel roll shaft, the axle head of the ink transfer reticulate pattern roll shaft outside the wallboard of the same side is equipped with ink transfer reticulate pattern roller gear and links to each other with printed panel roller gear engaged transmission, at the embedded unidirectional compensation bearing of anilox line roller that is with of ink transfer reticulate pattern roller gear, the outer collar and the ink transfer reticulate pattern roller gear of the unidirectional compensation bearing of this ink transfer anilox roll are fixedly linked, and its inside race and ink transfer reticulate pattern roll shaft are fixedly linked; Be provided with the ink dry-proof transmission mechanism outside the opposite side wallboard, this mechanism comprises ink dry-proof motor wheel and ink dry-proof wheel, and the two transmission links to each other, and is characterized in:
Also comprise even black differential compensation mechanism, this even black differential compensation mechanism comprises the unidirectional compensation bearing of ink transfer anilox roll linkage gear, printing ink glue roller gear and printing ink glue roller; The inboard that described ink transfer anilox roll linkage gear is installed in ink transfer reticulate pattern roller gear links to each other with ink transfer reticulate pattern roll shaft fixed conveyor, described printing ink glue roller gear is installed in an axle head of printing ink glue roll shaft and links to each other with ink transfer anilox roll linkage gear engaged transmission, the unidirectional compensation bearing of described printing ink glue roller is nested in the printing ink glue roller gear, its outer collar and printing ink glue roller gear are fixedly linked, and its inside race and printing ink glue roll shaft are fixedly linked; Another axle head that described ink dry-proof wheel is installed in ink transfer reticulate pattern roll shaft links to each other with ink transfer reticulate pattern roll shaft fixed conveyor.
The printing slotting die-cutting machine of even black differential compensation mechanism that is provided with of the present utility model is owing to be provided with even black differential compensation mechanism in its printing element, guaranteed that printing ink glue pad and ink transfer anilox roll realize run-in synchronism, can solve the linear velocity error of being brought after printing ink glue roller and ink transfer anilox roll are worn and torn and reach more greatly in operation process, printing quality and qualification rate are obviously improved because linear velocity does not wait the various drawbacks that produced.
Description of drawings
Fig. 1 is the primary structure schematic diagram of printing slotting die-cutting machine;
Fig. 2 is the primary structure schematic diagram of a printing element of prior art printing slotting die-cutting machine;
Fig. 3 is the primary structure schematic diagram that the utility model is provided with a printing element of the printing slotting die-cutting machine of sparing black differential compensation mechanism.
The specific embodiment
The primary structure of the printing slotting die-cutting machine that is provided with even black differential compensation mechanism of the present utility model mainly comprises paper feed unit, a plurality of printing element, fluting unit and die cutting unit as shown in Figure 1.The primary structure of a printing element wherein as shown in Figure 3, it comprises and is installed between the printing slotting die-cutting machine both sides wallboard 31,32 and the printing ink glue roller 33 that is arranged above and below, ink transfer anilox roll 34 and printed panel roller 35.The axle head of the printed panel roll shaft 351 outside framed side wallboard 31 is equipped with printed panel roller gear 352 and links to each other with the transmission of printed panel roll shaft.The axle head of the ink transfer reticulate pattern roll shaft 341 outside framed side wallboard 31 is equipped with ink transfer reticulate pattern roller gear 342, and it links to each other with printed panel roller gear 352 engaged transmission.At the ink transfer reticulate pattern roller gear 342 embedded unidirectional compensation bearings 343 of anilox line roller that are with, the outer collar and the ink transfer reticulate pattern roller gear 342 of the unidirectional compensation bearing 343 of this ink transfer anilox roll are fixedly linked, its inside race and ink transfer reticulate pattern roll shaft 341 are fixedly linked, installed inside at ink transfer reticulate pattern roller gear 342 has ink transfer anilox roll linkage gear 344, and it links to each other with ink transfer reticulate pattern roll shaft 341 fixed conveyor.The axle head of the printing ink glue roll shaft 331 outside framed side wallboard 31 is equipped with printing ink glue roller gear 332, and it links to each other with ink transfer anilox roll linkage gear 344 engaged transmission.At the printing ink glue roller gear 332 embedded unidirectional compensation bearings 333 of printing ink glue roller that are with, its outer collar and printing ink glue roller gear 332 are fixedly linked, and its inside race and printing ink glue roll shaft 331 are fixedly linked.The unidirectional compensation bearing 33 of ink transfer anilox roll linkage gear 44, printing ink glue roller gear 32 and printing ink glue roller is formed even black differential compensation mechanism.Outside framed side wallboard 32, be provided with by ink dry-proof motor wheel 36 and the ink dry-proof wheel 37 ink dry-proof transmission mechanisms of forming, ink dry-proof motor wheel 36 is installed on the motor, on the motor installation side wallboard 32, ink dry-proof wheel 37 is fixedly mounted on the axle head of ink transfer reticulate pattern roll shaft 341 and takes turns 36 transmissions with the ink dry-proof motor and links to each other.
Operation principle of the present utility model can further specify as follows in conjunction with Fig. 3:
When printing, the transmission mechanism that starts printing slotting die-cutting machine drives printed panel roll shaft 351 and rotates, correspondingly drive printed panel roller gear 352 and 35 rotations of printed panel roller, printed panel roller gear 352 and then drive are engaged with continuous ink transfer reticulate pattern roller gear 342 and rotate, at this moment, the unidirectional compensation bearing 343 of ink transfer anilox roll that is located in the ink transfer reticulate pattern roller gear 342 is equivalent to a connector, whole along with ink transfer reticulate pattern roller gear 342 rotates and drive 341 rotations of ink transfer reticulate pattern roll shaft together, and then drive ink transfer anilox roll 34 works and printed panel roller 35 rotations in opposite directions.In this course, ink transfer anilox roll 34 is finished the function of ink transfer with depositing on the flexible cardboard that inking roller is attached to printed panel roller 35 in the mesh.On the other hand, the rotation of ink transfer reticulate pattern roll shaft 341 also drives ink transfer anilox roll linkage gear 344 and rotates together, ink transfer anilox roll linkage gear 344 drives again and is engaged with continuous printing ink glue roller gear 332 and rotates together, at this moment, the unidirectional compensation bearing 333 of printing ink glue roller that is located in the printing ink glue roller gear 332 is equivalent to a connector, whole along with printing ink glue roller gear 332 rotates and drive 331 rotations of printing ink glue roll shaft together, and then drive printing ink glue roller 33 works and ink transfer anilox roll 34 rotations in opposite directions.In this course, by the extruding of 33 pairs of ink transfer anilox roll 34 of printing ink glue roller, surplus China ink is extruded the China ink amount of depositing that makes on the ink transfer anilox roll 34 be controlled at optimum state.35 on printed panel roller again and again with ink printing on passing cardboard.
When suspending printing, the ink dry-proof transmission mechanism starts, ink dry-proof motor wheel 36 drives ink dry-proof wheel 37 and rotates, ink dry-proof wheel 37 drives the ink transfer reticulate pattern roll shaft 341 that is fixedly linked with it and rotates, (the direction of rotation when at this moment, the rotation direction of ink transfer reticulate pattern roll shaft 341 is just in time with printing.) at this moment, the unidirectional compensation bearing 343 of ink transfer anilox roll that is connected ink transfer reticulate pattern roll shaft 341 another axle heads is equivalent to a plain bearing, can not drive ink transfer reticulate pattern roller gear 342 and rotate, rotate together and can only drive printing ink glue roller gear 332 by the ink transfer anilox roll linkage gear 344 that is fixedly linked with it.And the unidirectional compensation bearing 333 of printing ink glue roller that be located in the printing ink glue roller gear 332 this moment is equivalent to a plain bearing, can not drive printing ink glue roll shaft 331 and 33 rotations of printing ink glue roller, rotate synchronously by the friction masterpiece between printing ink glue roller 33 and the ink transfer anilox roll 34, reach the linear velocity unanimity.So just solved because long-term friction and extruding make 33 wearing and tearing of printing ink glue roller, caused printing ink glue roller 33 and the ink transfer anilox roll 34 unequal problem of linear velocity in the running, and the other problem that produces therefrom.

Claims (1)

1, a kind of printing slotting die-cutting machine that is provided with even black differential compensation mechanism mainly comprises paper feed unit, a plurality of printing element, fluting unit and die cutting unit; Described each printing element respectively comprises and is installed between the wallboard of printing slotting die-cutting machine both sides and the printing ink glue roller that is arranged above and below, ink transfer anilox roll and printed panel roller, the axle head of the printed panel roll shaft outside a framed side wallboard is equipped with the printed panel roller gear and links to each other with the transmission of printed panel roll shaft, the axle head of the ink transfer reticulate pattern roll shaft outside the wallboard of the same side is equipped with ink transfer reticulate pattern roller gear and links to each other with printed panel roller gear engaged transmission, at the embedded unidirectional compensation bearing of anilox line roller that is with of ink transfer reticulate pattern roller gear, the outer collar and the ink transfer reticulate pattern roller gear of the unidirectional compensation bearing of this ink transfer anilox roll are fixedly linked, and its inside race and ink transfer reticulate pattern roll shaft are fixedly linked; Be provided with the ink dry-proof transmission mechanism outside the opposite side wallboard, this mechanism comprises ink dry-proof motor wheel and ink dry-proof wheel, and the two transmission links to each other, and it is characterized in that:
Also comprise even black differential compensation mechanism, this even black differential compensation mechanism comprises the unidirectional compensation bearing of ink transfer anilox roll linkage gear, printing ink glue roller gear and printing ink glue roller; The inboard that described ink transfer anilox roll linkage gear is installed in ink transfer reticulate pattern roller gear links to each other with ink transfer reticulate pattern roll shaft fixed conveyor, described printing ink glue roller gear is installed in an axle head of printing ink glue roll shaft and links to each other with ink transfer anilox roll linkage gear engaged transmission, the unidirectional compensation bearing of described printing ink glue roller is nested in the printing ink glue roller gear, its outer collar and printing ink glue roller gear are fixedly linked, and its inside race and printing ink glue roll shaft are fixedly linked; Another axle head that described ink dry-proof wheel is installed in ink transfer reticulate pattern roll shaft links to each other with ink transfer reticulate pattern roll shaft fixed conveyor.
CN 200420110375 2004-11-26 2004-11-26 Printing, slotting and die cutting machine equipped with ink distribution differential compensation mechanism Expired - Lifetime CN2749673Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 200420110375 CN2749673Y (en) 2004-11-26 2004-11-26 Printing, slotting and die cutting machine equipped with ink distribution differential compensation mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 200420110375 CN2749673Y (en) 2004-11-26 2004-11-26 Printing, slotting and die cutting machine equipped with ink distribution differential compensation mechanism

Publications (1)

Publication Number Publication Date
CN2749673Y true CN2749673Y (en) 2006-01-04

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Application Number Title Priority Date Filing Date
CN 200420110375 Expired - Lifetime CN2749673Y (en) 2004-11-26 2004-11-26 Printing, slotting and die cutting machine equipped with ink distribution differential compensation mechanism

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112808518A (en) * 2021-02-05 2021-05-18 广东汕樟轻工股份有限公司 Movable semi-flexible plate coating device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112808518A (en) * 2021-02-05 2021-05-18 广东汕樟轻工股份有限公司 Movable semi-flexible plate coating device

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GR01 Patent grant
C17 Cessation of patent right
CX01 Expiry of patent term

Expiration termination date: 20141126

Granted publication date: 20060104