CN205932773U - Cross cutting machine paper feeding flies nearly drive mechanism - Google Patents
Cross cutting machine paper feeding flies nearly drive mechanism Download PDFInfo
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- CN205932773U CN205932773U CN201620667988.1U CN201620667988U CN205932773U CN 205932773 U CN205932773 U CN 205932773U CN 201620667988 U CN201620667988 U CN 201620667988U CN 205932773 U CN205932773 U CN 205932773U
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- 238000013016 damping Methods 0.000 claims description 17
- 239000000725 suspension Substances 0.000 claims description 16
- 230000007704 transition Effects 0.000 claims description 11
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- 230000005611 electricity Effects 0.000 claims description 3
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- 238000010586 diagram Methods 0.000 description 3
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Abstract
The utility model relates to a cross cutting machine paper feeding flies nearly drive mechanism, includes main drive chain, time fine setting chain, the tightener sprocket, adjustment sprocket, the output drive sprocket that link to each other with time fine setting chain respectively, hand wheel axle bevel gear, paper feeding time adjustment unit that guide rail etc. Constitute, fly to reach first transmission separation and reunion unit by what output driven sprocket, single position electromagnetic clutch etc. Constituted, fly to reach first power drive unit by what fly nearly sprocket, transmission shaft, rotatory roof beam, rotatory roof beam motor, support frame, fly nearly the sliding shaft, fly nearly the transmission lead screw, bevel gear is adjusted behind motor, driving sprocket, transmission shaft bevel gear, gallows, screw, fei datou, main synchronous pulley, semi -axis, the sliding shaft around, to the hexagonal sliding shaft etc. Constituted, the utility model discloses a fly to reach operation, the front and back distance adjustment of head and each other do not influence along with rotatory roof beam is rotatory, machine range of application width, parts are not fragile, and work efficiency is high, and the rejection rate is low, and paper adaptability is strong.
Description
Technical field
This utility model is related to a kind of printing packaging machinery, and particularly a kind of die-cutting machine paper feeding flies up to drive mechanism.
Background technology
Paper feeding on existing auto-die-cutting machine flies up to drive mechanism, is to be transmitted by main frame sprocket wheel in transmission process
Power, then spline through-drive is driven to flying up to by Hooks coupling universal coupling sprocket wheel, due to flying up to adjust before and after head (paper distributing mechanism) needs
Whole it is easy to causing Hooks coupling universal coupling unbalance stress and damaging it is therefore desirable to regularly replace, and this structure does not enable to fly up to
Head adjusts the angle of pitch it is impossible to use on auto-manual die-cutting machine along fixing axle rotation.
Content of the invention
Technical solutions of the utility model are intended to overcome parts rapid wear in background technology, fly up to limited by a spinfunction, application
The defect of narrow range, provides and a kind of does not fly up to drive mechanism using the paper feeding of Hooks coupling universal coupling.
The technical solution of the utility model is:
Die-cutting machine paper feeding flies up to drive mechanism, by main transmission chain interior paper feeding time adjustment unit, fly up to head transmission
Clutch unit, fly up to power transmission unit and constitute;
Described paper feeding time adjustment unit, including main transmission chain, time fine tuning chain, respectively with time fine tuning chain phase
Tightener sprocket even, adjustment sprocket wheel, output drive sprocket, handwheel shaft bevel gears, screw rod bevel gear, guide rail, sliding shoe, screw rod,
Sliding panel, hand wheel shaft, output chain gear axle, handwheel shaft bevel gears, screw rod bevel gear are connected on hand wheel shaft and screw rod, guide rail
It is fixed on little wallboard, sliding panel is placed on guide rail, sliding shoe one end is fixed on screw rod, the other end is fixed on sliding panel,
The axle head of adjustment sprocket wheel is also secured on sliding panel, and output drive sprocket is fixed on of output chain gear axle;
The described head that flies up to is driven clutch unit, including output driven sprocket, driving face main chain, driving face main chain chain
Wheel, connect sprocket wheel, clutch shaft, single position electromagnetic clutch, separated chain wheel, clutch-pedal support, wallboard, upper damping block, under
Damping block, stage clip, friction sleeve, transition duplex chain wheel, output driven sprocket is fixed on the other end of output chain gear axle and drives biography
Dynamic face main chain, driving face main chain drives driving face main chain sprocket wheel, and driving face main chain sprocket wheel is connected by driving chain
Connection sprocket wheel, connect sprocket wheel and be fixed on clutch shaft, single position electromagnetic clutch is by fixed part and rotation joint portion two
Part forms, and fixed part is connected with clutch shaft, and rotation joint portion is connected with separated chain wheel, and separated chain wheel is arranged on by bearing
On clutch shaft, clutch shaft is fixed on a framed side wallboard by clutch-pedal support, and upper damping block, lower damping block are embraced by stage clip
It is combined on friction sleeve, friction sleeve is connected with separated chain wheel, separated chain wheel is connected to the mistake being disposed there above by driving chain
Cross duplex chain wheel, transition duplex chain wheel flies up to sprocket wheel by driving chain connection;
Described fly up to a power transmission unit, including fly up to sprocket wheel, power transmission shaft, rotating beam, rotating beam motor, bracing frame,
Fly up to sliding axle, fly up to drive lead screw, six side's sliding axles, in front and back adjustment motor, drive sprocket, transmission shaft bevel gears, sliding axle
Front bevel gear, suspension bracket, screw, fly up to head, main synchronous pulley, semiaxis, bevel gear, main synchronous bevel gear after sliding axle, fly up to chain
Wheel is fixed on of power transmission shaft, and power transmission shaft is fixed by bearings at both ends in rotating beam, and rotating beam is arranged on both sides by bearing
Between wallboard, being fixed with rotating beam motor on the wallboard of side provides rotary power for rotating beam, is fixed with rotating beam
Bracing frame, bracing frame is provided with and flies up to sliding axle, flies up to drive lead screw, six side's sliding axles and adjust motor in front and back, fly up to slide
Moving axis head is fixed with drive sprocket, and drive sprocket passes through chain and adjusts motor connection in front and back, and transmission shaft bevel gears are fixed on
The other end of power transmission shaft, before sliding axle, bevel gear is fixed on the front end of six side's sliding axles, and suspension bracket is slidably disposed within and flies up to drive lead screw
On, suspension bracket side is fixed with the screw matching with the screw thread flying up to sliding axle, and one of suspension bracket is fixed with and flies up to head, suspension bracket
Other end be provided with main synchronous pulley, semiaxis, secondary synchronous pulley, bevel gear, main synchronous bevel gear after sliding axle, after sliding axle
Bevel gear is slidably disposed within six side's sliding axles, and main synchronous bevel gear is meshed with bevel gear after sliding axle, and main synchronous pulley is fixed
On the axle of main synchronous bevel gear, and it is connected with the secondary synchronous pulley on semiaxis by Timing Belt.
The adjustment of described paper feeding time, be by turn handwheel make adjustment sprocket wheel along guide rail move forward and backward and when realizing paper feeding
Between adjustment;
The described transmission clutch flying up to head, is " to be inhaled by single position electromagnetic clutch fixed part and rotation joint portion
Close ", "off" action and complete to fly up to any start and stop of head;
The described power transmission flying up to head, is by rotating beam, the bevel gear of pairing, six side's sliding axles, synchronous pulley etc.
Part co-operating, thus realize flying up to head operating, fly up to head with rotating beam rotation, fly up to the adjustment of longitudinal separation.
This utility model both can guarantee that the power transmission flying up to head, and does not affect to fly up to adjusting in front and back of head, simultaneously can be real
Now fly up to head to rotate with rotating beam and adjust the angle of pitch, because using bevel gear curved tooth drive mechanism, operating steadily, noise is low, machine
Part is hardly damaged;Achieved using single position electromagnetic clutch and fly up to power disengaging any with main frame and engage, make to fly up to
Head adjustment is more convenient;The design of paper feeding time regulating mechanism, can be significantly it is achieved that automatic paper feed and artificial paper feeding dual-use function
Improve machine paper adaptability, reduce the generation of waste product, beneficial effect is, fly up to the operating of head, longitudinal separation adjustment and with
Rotating beam rotation is independent of each other, machine application wide ranges, and parts are hardly damaged, high working efficiency, and percent defective is low, and paper adapts to energy
Power is strong.
Brief description
Fig. 1 is structural representation of the present utility model;
Fig. 2 is paper feeding time adjustment unit side-looking diagram;
Fig. 3 is that paper feeding time adjustment unit overlooks diagram;
Fig. 4 is to fly up to head transmission clutch unit front view;
Fig. 5 is to fly up to head transmission clutch unit dorsal view;
Fig. 6 is to fly up to a power transmission unit schematic diagram.
In accompanying drawing:A paper feeding time adjustment unit, B fly up to head transmission clutch unit, C flies up to a power transmission unit
1 main transmission chain, 2 time fine tuning chain, 3 tightener sprocket 4 adjustment sprocket wheel 5 output drive sprocket A6 hand wheel shaft
Bevel gear, B6 screw rod bevel gear 7 guide rail, 8 sliding shoe, 9 screw rod, 10 sliding panel, 11 hand wheel shaft 12 output chain gear axle 13 export
Driven sprocket 14 driving face main chain 15 driving face main chain sprocket wheel 16 connects sprocket wheel 17 clutch shaft 18 single position electricity
Under damping block on magnet clutch 19 separated chain wheel, 20 clutch-pedal support 21 wallboard 22-1,22-2, damping block 23 stage clip 24 rubs
Wiping set 25 transition duplex chain wheels 26 fly up to sprocket wheel 27 power transmission shaft, 28 rotating beam, 29 rotating beam motor 30 bracing frame 31 and fly up to
Sliding axle 32 flies up to adjustment motor 35 drive sprocket C36 transmission shaft bevel gears before and after drive lead screw 33 6 side's sliding axle 34
Before D36 sliding axle, bevel gear 37 suspension bracket 38 screw 39 bores tooth after flying up to a 40 main synchronous pulley 41 semiaxis E42 sliding axle
The wheel main synchronous bevel gear of F42
Specific embodiment
By embodiment, this utility model is described in detail below in conjunction with the accompanying drawings.
As shown in figure 1, paper feeding fly up to drive mechanism include paper feeding time adjustment unit A, fly up to head transmission clutch unit B,
Fly up to power transmission unit C.
As shown in Figure 2,3, described paper feeding time adjustment unit A, including main transmission chain 1, time fine tuning chain 2, difference
The tightener sprocket 3 that is connected with time fine tuning chain 2, adjustment sprocket wheel 4, output drive sprocket 5, handwheel shaft bevel gears A6, screw rod is bored
Gear B 6, guide rail 7, sliding shoe 8, screw rod 9, sliding panel 10, hand wheel shaft 11, output chain gear axle 12, handwheel shaft bevel gears A6, screw rod
Bevel gear B6 is connected on hand wheel shaft 11 and screw rod 9, and guide rail 7 is fixed on little wallboard, and sliding panel 10 is placed on guide rail 7,
Sliding shoe 8 one end is fixed on screw rod 9, and the other end is fixed on sliding panel 10, and the axle head of adjustment sprocket wheel 4 is also secured at sliding panel
On 10, output drive sprocket 5 is fixed on of output chain gear axle 12;
As shown in Figure 4,5, the described head that flies up to is driven clutch unit B, including output driven sprocket 13, driving face main chain
14th, driving face main chain sprocket wheel 15, connect sprocket wheel 16, clutch shaft 17, single position electromagnetic clutch 18, separated chain wheel 19,
Clutch-pedal support 20, wallboard 21, upper damping block 22-1, lower damping block 22-2, stage clip 23, friction sleeve 24, transition duplex chain wheel 25,
Output driven sprocket 13 is fixed on the other end of output chain gear axle 12 and drives driving face main chain 14, and driving face main chain 14 carries
Dynamic driving face main chain sprocket wheel 15, driving face main chain sprocket wheel 15 is connected to connect sprocket wheel 16 by driving chain, connects sprocket wheel
16 are fixed on clutch shaft 17, and single position electromagnetic clutch 18 is made up of fixed part and rotation joint portion two parts, fixing
Portion is connected with clutch shaft 17, and rotation joint portion is connected with separated chain wheel 19, and separated chain wheel 19 is arranged on clutch by bearing
On axle 17, clutch shaft 17 is fixed on a framed side wallboard 21 by clutch-pedal support 20, upper damping block 22-1, lower damping block 22-2
By stage clip 23 obvolvent on friction sleeve 24, friction sleeve 24 is connected with separated chain wheel 19, and separated chain wheel 19 is by driving chain even
Then the transition duplex chain wheel 25 being disposed there above, transition duplex chain wheel 25 flies up to sprocket wheel 26 by driving chain connection;
As shown in fig. 6, described fly up to power transmission unit C, including fly up to sprocket wheel 26, power transmission shaft 27, rotating beam 28, rotation
Turn beam motor 29, bracing frame 30, fly up to sliding axle 31, fly up to drive lead screw 32, six side's sliding axles 33, in front and back adjustment motor 34,
Drive sprocket 35, transmission shaft bevel gears C36, sliding axle inner cone gear D 36, suspension bracket 37, screw 38, fly up to a 39, main Timing Belt
Wheel 40, semiaxis 41, bevel gear E42, main synchronous bevel gear F42 after sliding axle, fly up to that sprocket wheel 26 is fixed on power transmission shaft 27 one,
Power transmission shaft 27 is fixed by bearings at both ends in rotating beam 28, and rotating beam 28 is arranged between both sides wallboard 21 by bearing, one
Being fixed with rotating beam motor 29 on the wallboard 21 of side provides rotary power for rotating beam 28, is fixed with bracing frame on rotating beam 28
30, bracing frame 30 is provided with and flies up to sliding axle 31, fly up to drive lead screw 32, six side's sliding axles 33 and adjust motor 34 in front and back,
Fly up to sliding axle 31 head and be fixed with drive sprocket 35, drive sprocket 35 is passed through chain and is connected with adjustment motor 34 in front and back, transmission
Shaft bevel gears C36 is fixed on the other end of power transmission shaft 27, and sliding axle inner cone gear D 36 is fixed on the front end of six side's sliding axles 33,
Suspension bracket 37 is slidably disposed within and flies up on drive lead screw 32, and suspension bracket 37 side is fixed with the silk matching with the screw thread flying up to sliding axle 31
Female 38, one of suspension bracket 37 is fixed with and flies up to 39, the other end of suspension bracket 37 be provided with main synchronous pulley 40, semiaxis 41, secondary with
Bevel gear E42, main synchronous bevel gear F42 after step belt wheel, sliding axle, after sliding axle, bevel gear E42 is slidably disposed within six side's sliding axles
On 33, main synchronous bevel gear F42 is meshed with bevel gear E42 after sliding axle, and main synchronous pulley 40 is fixed on main synchronous bevel gear
On the axle of F42, and it is connected with the secondary synchronous pulley on semiaxis 41 by Timing Belt.
Working Examples of the present utility model:
The paper feeding time adjusts as shown in Figure 2,3:When main frame runs, power is delivered to paper feeding time tune by main transmission chain 1
Whole unit A, when needing to adjust the paper feeding time, makes handwheel shaft bevel gears A6 drive screw rod to bore tooth by handwheel turn hand wheel shaft 11
Wheel B6 and screw rod 9 rotate, and screw rod 9 drives sliding shoe 8 to make sliding panel 10 along guide rail 7 horizontal shifting, due to adjusting sprocket wheel
4 are also secured on sliding panel 10, therefore the cooperation by the tensioning adjustment effect of tightener sprocket 3, there is horizontal stroke in the axle center of adjustment sprocket wheel 4
Move it is achieved that the movement of time fine tuning chain 2, and then drive defeated paper cam rotation to change the paper feeding time.
Fly up to head transmission clutch as shown in Figure 4,5, 6:By time fine tuning chain 2, power is transmitted by output chain gear axle 12
To driving face main chain 14, driving face main chain 14 drives driving face main chain sprocket wheel 15 to operate, then is driven even by driving chain
Chain link wheel 16 rotary motion, when to electricity, the fixed part of single position electromagnetic clutch 18 and rotation joint portion adhesive, disengaging latch
Power is passed through driving chain and passes to transition duplex chain wheel 25 successively and fly up to 39 by wheel 19, realizes flying up to 39 and operates;When
During power-off, the fixed part of single position electromagnetic clutch 18 and rotation joint portion separately, make to be fixed on dividing on clutch shaft 17
Bearing inner race on sprocket wheel 19 is realized power with outer ring and is separated, and flies up to 39 and shuts down, for avoiding power to separate when separating
Sprocket wheel 19 continues rotation because of inertia, and the decrement that upper damping block 22-1 and lower damping block 22-2 passes through to adjust stage clip 23 is realized and rubbed
Wiping the friction obvolvent of set 24, serving the damping action to separated chain wheel 19 it is achieved that flying up to 39 any start and stop.
Fly up to a power transmission, this part includes flying up to 39 operating, flies up to 39 and rotate, fly up to head with rotating beam 28
39 front and back position adjustment, as shown in Figure 6:Transition duplex chain wheel 25 is driven by driving chain and flies up to sprocket wheel 26 and power transmission shaft
27th, rotary power vertical transmission is given six side's sliding axles by sliding axle inner cone gear D 36 by transmission shaft bevel gears C36 rotation then
33, after sliding axle bevel gear E42 both can with six side's sliding axle 33 synchronous rotary, again can on six side's sliding axles 33 slide anteroposterior,
After six side's sliding axles 33 and sliding axle during bevel gear E42 rotation, power is transmitted to main synchronous pulley by main synchronous bevel gear F42
40, main synchronous pulley 40 is connected with the secondary synchronous pulley on semiaxis 41 by Timing Belt, finally imparts power to fly up to input
Axle, realizes flying up to 39 operating;When the work luffing angle needing adjustment to fly up to 39, rotating beam motor 29 starts, rotation
Turn beam 28 and drive and fly up to 39 and rotate to required angle;When the front and back position needing adjustment to fly up to 39, adjust motor in front and back
34 startups, are made drive sprocket 35, are flown up to sliding axle 31 and rotate by driving chain, and screw 38 moves along before and after fly up to sliding axle 31
Dynamic, make to fly up to 39 flying up to drive lead screw 32, slide anteroposterior is adjusted it is achieved that flying up to 39 front and back position on six side's slide-bars 33
Whole and have auto-lock function.Be can be seen that while flying up to 39 operating by this part-structure feature, both can be flown up to
39 angle rotation it is also possible to simultaneously carry out flies up to a 39 front and back position adjustment, and three kinds of actions are independent of each other.
Claims (3)
1. die-cutting machine paper feeding flies up to drive mechanism, it is characterized in that, by main transmission chain interior paper feeding time adjustment unit (A),
Fly up to head transmission clutch unit (B), fly up to power transmission unit composition (C);
Described paper feeding time adjustment unit (A), including main transmission chain (1), time fine tuning chain (2), respectively with time fine tuning
The connected tightener sprocket (3) of chain (2), adjustment sprocket wheel (4), output drive sprocket (5), handwheel shaft bevel gears (A6), screw rod is bored
Gear (B6), guide rail (7), sliding shoe (8), screw rod (9), sliding panel (10), hand wheel shaft (11), output chain gear axle (12), handwheel
Shaft bevel gears (A6), screw rod bevel gear (B6) are connected on hand wheel shaft (11) and screw rod (9), and guide rail (7) is fixed on wallette
On plate, sliding panel (10) is placed on guide rail (7), and sliding shoe (8) one end is fixed on screw rod (9), and the other end is fixed on sliding panel
(10) on, the axle head of adjustment sprocket wheel (4) is also secured on sliding panel (10), and output drive sprocket (5) is fixed on output chain gear axle
(12) one;
The described head that flies up to is driven clutch unit (B), including output driven sprocket (13), driving face main chain (14), driving face master
Chain sprocket (15), connect sprocket wheel (16), clutch shaft (17), single position electromagnetic clutch (18), separated chain wheel (19), from
Clutch support (20), wallboard (21), upper damping block (22-1), lower damping block (22-2), stage clip (23), friction sleeve (24), transition
Duplex chain wheel (25), output driven sprocket (13) is fixed on the other end of output chain gear axle (12) and drives driving face main chain
(14), driving face main chain (14) drives driving face main chain sprocket wheel (15), and driving face main chain sprocket wheel (15) passes through driving-chain
Bar is connected to connect sprocket wheel (16), connects sprocket wheel (16) and is fixed on clutch shaft (17), single position electromagnetic clutch (18)
It is made up of fixed part and rotation joint portion two parts, fixed part is connected with clutch shaft (17), rotates joint portion and separated chain wheel
(19) connect, separated chain wheel (19) is arranged on clutch shaft (17) by bearing, clutch shaft (17) passes through clutch-pedal support
(20) it is fixed on a framed side wallboard (21), upper damping block (22-1), lower damping block (22-2) pass through stage clip (23) obvolvent in friction
On set (24), friction sleeve (24) is connected with separated chain wheel (19), and separated chain wheel (19) is connected to be arranged on it by driving chain
The transition duplex chain wheel (25) of top, transition duplex chain wheel (25) flies up to sprocket wheel (26) by driving chain connection;
Described fly up to a power transmission unit (C), including fly up to sprocket wheel (26), power transmission shaft (27), rotating beam (28), rotating beam electricity
Machine (29), bracing frame (30), fly up to sliding axle (31), fly up to drive lead screw (32), six side's sliding axles (33), in front and back adjust motor
(34), drive sprocket (35), transmission shaft bevel gears (C36), bevel gear (D36), suspension bracket (37), screw (38) before sliding axle, fly
Reach head (39), main synchronous pulley (40), semiaxis (41), bevel gear (E42), main synchronous bevel gear (F42) after sliding axle, fly up to chain
Wheel (26) is fixed on of power transmission shaft (27), and power transmission shaft (27) is fixed by bearings at both ends in rotating beam (28), rotating beam
(28) it is arranged between both sides wallboard (21) by bearing, being fixed with rotating beam motor (29) on the wallboard (21) of side is rotation
Turning beam (28) provides rotary power, is fixed with bracing frame (30) on rotating beam (28), bracing frame (30) is provided with and flies up to slide
Moving axis (31), fly up to drive lead screw (32), six side's sliding axles (33) and in front and back adjustment motor (34), fly up to sliding axle (31) head
It is fixed with drive sprocket (35), drive sprocket (35) is passed through chain and is connected with adjustment motor (34) in front and back, is driven shaft bevel gears
(C36) it is fixed on the other end of power transmission shaft (27), before sliding axle, bevel gear (D36) is fixed on the front end of six side's sliding axles (33),
Suspension bracket (37) is slidably disposed within and flies up on drive lead screw (32), and suspension bracket (37) side is fixed with and the screw thread phase flying up to sliding axle (31)
Identical screw (38), one of suspension bracket (37) is fixed with and flies up to head (39), and the other end of suspension bracket (37) is provided with main Timing Belt
Bevel gear (E42), main synchronous bevel gear (F42) after wheel (40), semiaxis (41), secondary synchronous pulley, sliding axle, bore tooth after sliding axle
Wheel (E42) is slidably disposed within six side's sliding axles (33), and main synchronous bevel gear (F42) is meshed with bevel gear after sliding axle (E42),
Main synchronous pulley (40) is fixed on the axle of main synchronous bevel gear (F42), and synchronous with the pair on semiaxis (41) by Timing Belt
Belt wheel is connected.
2. die-cutting machine paper feeding according to claim 1 flies up to drive mechanism, it is characterized in that, makes adjustment chain by turn handwheel
Wheel (4) moves forward and backward along guide rail (7) and realizes the adjustment of paper feeding time.
3. die-cutting machine paper feeding according to claim 1 flies up to drive mechanism, it is characterized in that, by single position electromagnetic clutch
Device (18) fixed part and rotation " adhesive " of joint portion, "off" action and complete to fly up to any start and stop of head (39).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201620667988.1U CN205932773U (en) | 2016-06-30 | 2016-06-30 | Cross cutting machine paper feeding flies nearly drive mechanism |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201620667988.1U CN205932773U (en) | 2016-06-30 | 2016-06-30 | Cross cutting machine paper feeding flies nearly drive mechanism |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN205932773U true CN205932773U (en) | 2017-02-08 |
Family
ID=57930012
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN201620667988.1U Active CN205932773U (en) | 2016-06-30 | 2016-06-30 | Cross cutting machine paper feeding flies nearly drive mechanism |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN205932773U (en) |
Cited By (8)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN107472943A (en) * | 2017-09-08 | 2017-12-15 | 浙江大源机械有限公司 | Hand-operated and automatic flies up to paper advance mechanism |
| CN108107830A (en) * | 2017-12-31 | 2018-06-01 | 汕头市龙华包装机械有限公司 | A kind of double synchronous conveyer band control systems of Bag Making Machine |
| CN110153261A (en) * | 2019-06-10 | 2019-08-23 | 江西鼎力旋压装备有限公司 | Wheel hub roller press rotates break bar control structure |
| WO2020034306A1 (en) * | 2018-08-15 | 2020-02-20 | 深圳市路远智能装备有限公司 | Feeder for conveniently fastening and positioning |
| CN112660860A (en) * | 2019-10-15 | 2021-04-16 | 玉田县炬兴印刷包装机械制造有限公司 | Split paper feeding mechanism and working method thereof |
| CN112721301A (en) * | 2020-12-31 | 2021-04-30 | 深圳市国润自动化设备有限公司 | Leather shell conveying and gluing integrated machine |
| CN112850247A (en) * | 2019-11-27 | 2021-05-28 | 玉田县炬兴印刷包装机械制造有限公司 | Paper feeding mechanism with paper identification function and working method thereof |
| CN115258742A (en) * | 2022-08-19 | 2022-11-01 | 温州永邦机械有限公司 | Novel feda conveying device |
-
2016
- 2016-06-30 CN CN201620667988.1U patent/CN205932773U/en active Active
Cited By (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN107472943A (en) * | 2017-09-08 | 2017-12-15 | 浙江大源机械有限公司 | Hand-operated and automatic flies up to paper advance mechanism |
| CN107472943B (en) * | 2017-09-08 | 2023-11-21 | 浙江大源机械有限公司 | Manual and automatic dual-purpose paper feeding mechanism for flying machine |
| CN108107830A (en) * | 2017-12-31 | 2018-06-01 | 汕头市龙华包装机械有限公司 | A kind of double synchronous conveyer band control systems of Bag Making Machine |
| WO2020034306A1 (en) * | 2018-08-15 | 2020-02-20 | 深圳市路远智能装备有限公司 | Feeder for conveniently fastening and positioning |
| CN110153261A (en) * | 2019-06-10 | 2019-08-23 | 江西鼎力旋压装备有限公司 | Wheel hub roller press rotates break bar control structure |
| CN112660860A (en) * | 2019-10-15 | 2021-04-16 | 玉田县炬兴印刷包装机械制造有限公司 | Split paper feeding mechanism and working method thereof |
| CN112850247A (en) * | 2019-11-27 | 2021-05-28 | 玉田县炬兴印刷包装机械制造有限公司 | Paper feeding mechanism with paper identification function and working method thereof |
| CN112721301A (en) * | 2020-12-31 | 2021-04-30 | 深圳市国润自动化设备有限公司 | Leather shell conveying and gluing integrated machine |
| CN115258742A (en) * | 2022-08-19 | 2022-11-01 | 温州永邦机械有限公司 | Novel feda conveying device |
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