CN205023028U - Advance to mark device - Google Patents

Advance to mark device Download PDF

Info

Publication number
CN205023028U
CN205023028U CN201520738467.6U CN201520738467U CN205023028U CN 205023028 U CN205023028 U CN 205023028U CN 201520738467 U CN201520738467 U CN 201520738467U CN 205023028 U CN205023028 U CN 205023028U
Authority
CN
China
Prior art keywords
guide roller
mark
assembly
bevel gear
rubber ring
Prior art date
Legal status (The legal status 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 status listed.)
Withdrawn - After Issue
Application number
CN201520738467.6U
Other languages
Chinese (zh)
Inventor
史中伟
樊杰飞
孙志芳
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.)
Hangzhou Zhongya Machinery Co Ltd
Original Assignee
Hangzhou Zhongya 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.)
Filing date
Publication date
Application filed by Hangzhou Zhongya Machinery Co Ltd filed Critical Hangzhou Zhongya Machinery Co Ltd
Priority to CN201520738467.6U priority Critical patent/CN205023028U/en
Application granted granted Critical
Publication of CN205023028U publication Critical patent/CN205023028U/en
Withdrawn - After Issue legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Delivering By Means Of Belts And Rollers (AREA)

Abstract

The utility model provides an advance to mark device, spatial layout is compact, installation and debugging easy operation, high durability and convenient use, it is main including the mounting bracket, advance to mark subassembly and drive assembly, it distributes on the mounting bracket side by side to advance to mark the subassembly, it includes the shell to advance to mark the subassembly, it is leading to roller group spare, vice direction roller group spare and direction subassembly, the shell is installed on the mounting bracket, it is leading to roller group spare, vice direction roller group spare and the integration of direction subassembly are on the shell, the leading factor is connected to roller group spare and the transmission of vice direction roller group spare, the leading factor is equipped with the power input to roller group spare, the direction subassembly is located leadingly to between roller group spare and the vice direction roller group spare, drive assembly includes driving motor and pivot, driving motor's output and pivot are connected, driving motor rotating band operation axle rotates, bevel gear is installed to the power input, all install bevel gear in the bevel gear position that corresponds every power input in the pivot, the bevel gear and the meshing of the epaxial bevel gear of commentaries on classics of power input.

Description

One enters device for mark
Technical field
The utility model relates to package packing machine field, is specifically related to a kind ofly enter device for mark for what carry millimeter paper.
Background technology
Publication number is that the Chinese patent of CN104260137A discloses a kind of upholstery border feed arrangement, the assembly that enters to mark of this upholstery border feed arrangement is made up of a pair guide roller and two pairs of guide plates, often pair of guide plate is made up of two guide plates, two paired guide plates are oppositely arranged, wherein a pair guide plate is formed with input channel, another is formed with delivery channel to guide plate, a pair guide roller is located between input channel and delivery channel, upholstery border inputs from input channel, through the gap paired two guide rollers, export from delivery channel again, the end winding support of guide roller have gear and gear set on the outer wall of guide roller, gear external toothing on gear in often pair of guide roller on one of them guide roller and another guide roller, the synchronous backward being embodied as two right guide rollers rotates, and then upholstery border is moved from input channel towards delivery channel, a pair guide plate forming input channel has conveying mechanism input port, a pair guide plate forming delivery channel has conveying mechanism delivery port, end away from guide roller on the guide plate of formation input channel is outwards bent to form kink, two kinks are V-shaped is arranged so that conveying mechanism input port is V-shaped, so that upholstery border input.
Said structure meets the requirement that millimeter paper (i.e. upholstery border) is carried to a certain extent.But in said structure, the main body section of two guide rollers is all in cylindrical, the planeness on its surface causes the retaining part of two guide rollers to be not parallel or irregular because of the inconsistent of processing technology, this just cannot ensure millimeter paper between two guide rollers by time stressed be balanced, so just easily damage millimeter paper entering in mark process, or, in course of conveying, cause unfairness due to a variety of causes when millimeter paper or produce fold, and this irregular millimeter paper between two guide rollers through out-of-date, two guide rollers can form extruding to millimeter paper, the fold position of easy beacon paper is forced out folding line, affect millimeter paper quality and outward appearance.
And in said structure, being especially all discreet component between guide plate between all parts, is the structure combined by separating component and formed, the problem of low, the Installation and Debugging complex operation of compactedness in Existential Space layout.
In addition, in said structure, when many groups enter to mark assembly combinationally use time, often group enters to mark assembly is by independent driven unit driving work, on the one hand, this can cause each group to enter to mark between assembly is very difficult synchronous working, therefore often group enter to mark assembly to enter timestamp length be different, very easily cause the situation of millimeter paper feeding confusion to occur; On the other hand, because the quantity of driven unit is more, can make that the integral structure of this upholstery border feed arrangement is too fat to move, manufacturing cost is high, take up room large.
Summary of the invention
Technical problem to be solved in the utility model is to provide one to enter device for mark, and this enters device for mark and can improve the compactedness in space layout and simplify Installation and Debugging operation, easy to use.
For solving above-mentioned existing technical matters, the utility model adopts following scheme: one enters device for mark, comprise erecting frame, enter to mark assembly and driven unit, describedly enter to mark assembly and be distributed in side by side on erecting frame, describedly enter to mark assembly and comprise shell, dominate to roll assembly, secondary guide roller assembly and guidance set, described shell is installed on erecting frame, describedly dominate to roll assembly, secondary guide roller assembly and guidance set are integrated on shell, described dominating is in transmission connection to roll assembly and secondary guide roller assembly, described dominating is provided with power intake to roll assembly, described guidance set is located at and is dominated between roll assembly and secondary guide roller assembly, described driven unit comprises drive motor and rotating shaft, described drive motor and rotating shaft are installed on erecting frame, the mouth of described drive motor is connected with rotating shaft, described drive motor rotates and drives axis of rotation, described power intake is positioned at the side into mark assembly towards rotating shaft, described power intake is provided with finishing bevel gear cuter I, finishing bevel gear cuter I position at each power intake of correspondence in described rotating shaft is all provided with the finishing bevel gear cuter II engaged with this finishing bevel gear cuter I.
This enters device for mark and is arranged side by side in erecting frame by entering to mark assembly by many groups, and every group is entered to mark Components integration on a shell, then many groups are driven to enter to mark component synchronization work by one group of driven unit, make this enter device for mark and form modular construction on the whole, the operation of Installation and Debugging is avoided in its assembling, use procedure, improve the convenience that this enters device for mark use, the design of unitary module structure simultaneously constrains its space structure, compact conformation further.
As preferably, described power intake is provided with rubber ring II, and described finishing bevel gear cuter I is installed on described power intake by rubber ring II.Owing to arranging rubber ring II between finishing bevel gear cuter I and power intake, finishing bevel gear cuter I and power intake actually on be rely on the distortion of rubber ring II and link together, therefore can do relative motion between this finishing bevel gear cuter I and power intake when overcoming the friction force produced by rubber ring II, produce the situation that finishing bevel gear cuter I is motionless and power intake rotates, the power input structure dominated like this to roll assembly just has clutch feature, the drive characteristics that between main guide roller with finishing bevel gear cuter I, there is separation and merge can be made, greatly facilitate the debugging operations by rotating main guide roller adjustment millimeter paper position.
As preferably, the surface of described power intake is smooth surface, and the inwall of finishing bevel gear cuter I is provided with the groove for installing rubber ring II.The reason of this structure is adopted to be, in actual manufacturing process, power intake is metal material, for improving the resistance to abrasion of power intake, power intake needs through Technology for Heating Processing process, if at power intake surface fluting for installation rubber ring II, this will certainly impact power intake, especially the later performance of power intake heat treatment can be affected, and the size of the groove of power intake also can be made when heat-treating to change and then affect the installation of rubber ring II, so for ease of heat-treating power intake and impacting the performance of power intake for avoiding, its surface does not arrange groove, but employing smooth surface, and finishing bevel gear cuter I 1 aspect its be not suitable for heat treatment, within it wall fluting is little to the performance impact of finishing bevel gear cuter I, and on the other hand, due to its reasons in structure, within it wall fluting is also relatively more easy.
As preferably, described dominating comprises main guide roller and rubber ring I to roll assembly, described rubber ring I spaced set is in the main body section of main guide roller, described secondary guide roller assembly comprises secondary guide roller, the main body section of described secondary guide roller is cylindrical structure, the main body section of described secondary guide roller is just to the main body section of main guide roller, the surface contact of described rubber ring I and secondary guide roller, described guidance set is provided with two guide channels, described guide channel is distributed in the both sides of rubber ring I and secondary guide roller junction, one end of described main guide roller is power intake, the other end of described main guide roller is connected by gears meshing with secondary guide roller.This enters to mark assembly by arranging in the main body section of main guide roller the rubber ring I equally arranged, spacious region is formed between adjacent rubber ring I, the surface contact of rubber ring I and the secondary guide roller in cylindrical shape, dominate and realize being in transmission connection by gears meshing to roll assembly and secondary guide roller assembly, two relatively traditional guide roller surfaces are the structure of smooth side, entering in mark process, on the one hand, after the power intake input power of main guide roller, this power makes main guide roller and secondary guide roller synchronous backward rotate to secondary guide roller by gear transmission, when millimeter paper is from when passing through between main guide roller and secondary guide roller, millimeter paper is pushed to secondary guide roller position in the side of millimeter paper by the rubber ring I of main guide roller, the side of millimeter paper is subject to the squeezing action of rubber ring I, opposite side is subject to the supporting role of secondary guide roller, simultaneously, due to main guide roller, secondary guide roller synchronous backward rotates, millimeter paper both sides are made to be subject to from rubber ring I respectively, the friction force of secondary guide roller, the application force that this friction force moves ahead as millimeter paper, make millimeter paper can better onwards transmission, on the other hand, due to the setting of rubber ring I, main guide roller and secondary guide roller just form certain space between adjacent two rubber rings I, when unfairness or have the millimeter paper of fold between main guide roller and secondary guide roller through out-of-date, this space provides the space that is held millimeter paper unfairness position or fold position, and millimeter paper can be avoided to produce folding line at this position thus affect attractive in appearance.Guide channel passes through between main guide roller and secondary guide roller for guiding millimeter paper, the position, both sides of millimeter paper lays respectively in each guide channel in the process, guide channel limits the edge of millimeter paper, and then avoid millimeter paper edge to swing, give the bearing force of millimeter paper necessity simultaneously, the probability that millimeter paper produces fold can be reduced.
As preferably, described guidance set is provided with tapering type guiding channel at the input end of guide channel, the width of described tapering type guiding channel diminishes gradually on the throughput direction of millimeter paper.The setting party of tapering type guiding channel millimeter paper enter guidance set.
As preferably, the connecting portion that described guidance set comprises two guide parts and is connected with two guide parts, described two guide parts are oppositely arranged, one end of described guide part is connected with connecting portion, each guide part is equipped with a guide channel, described tapering type guiding channel is positioned on connecting portion, and described guide channel is communicated with tapering type guiding channel.By guidance set being arranged to two guide parts be oppositely arranged and the connecting portion being connected two guide parts, make this enter to mark assembly more succinct on integral structure, it is more easy to manufacture, and assembling uses more convenient.
As preferably, described main guide roller is equipped with annular groove in the position of each rubber ring I of correspondence, and described rubber ring I is spacing in annular groove.By rubber ring I is placed in annular groove, the deformation range of rubber ring I position and control rubber ring I can be limited.
Beneficial effect:
Adopt after technique scheme, the utility model enters device for mark and improves compactedness in space layout, simplifies Installation and Debugging operation, assembling, very easy to use.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model;
Fig. 2 is cutaway view of the present utility model;
Fig. 3 is the enlarged drawing at A place in Fig. 2;
Fig. 4 is the front view entering to mark assembly in the utility model;
Fig. 5 be enter to mark in the utility model assembly remove shell after structural representation I;
Fig. 6 be enter to mark in the utility model assembly remove shell after structural representation II;
Fig. 7 be enter to mark in the utility model assembly remove shell after structural representation III;
Fig. 8 be enter to mark in the utility model assembly remove shell after structural representation IV.
Detailed description of the invention
As Fig. 1 to 8 be depicted as the utility model a kind of enter the preferred embodiment of device for mark, this enters device for mark primarily of erecting frame 1, six groups are entered to mark assembly and one group of driven unit composition, enter to mark assembly and driven unit is installed on erecting frame 1, six groups are entered to mark assembly and are arranged in a row side by side, often group enters to mark assembly by shell 11, dominate to roll assembly, secondary guide roller assembly and guidance set composition, shell 11 is installed on erecting frame 1, dominate to roll assembly, secondary guide roller assembly and guidance set are integrated on shell 11, dominate and be in transmission connection to roll assembly and secondary guide roller assembly, dominate and be provided with power intake to roll assembly, guidance set is located at and is dominated between roll assembly and secondary guide roller assembly.
In this embodiment, dominate and comprise main guide roller 4 and three rubber rings I 421 to roll assembly, main guide roller 4 is made up of a main body section and the imput shaft 2 being located at main body section two ends, the integrative-structure that the main body section of main guide roller 4 and imput shaft 2 are one of the forming, the main body section of main guide roller 4 is cylindrical structure, the main body section of main guide roller 4 is provided with three annular grooves 41, three annular grooves 41 equally distribute on the axial direction of main guide roller 4, a rubber ring I 421 is arranged in an annular groove 41, and rubber ring I 421 protrudes on the surface of main guide roller 4, therefore three rubber rings I 421 also equally distribute, secondary guide roller assembly mainly comprises secondary guide roller 5, secondary guide roller 5 is made up of a main body section and the driven shaft 3 being located at main body section two ends, the integrative-structure that the main body section of secondary guide roller 5 and driven shaft 3 are one of the forming, the main body section of secondary guide roller 5 is cylindrical structure, the main body section surface of secondary guide roller 5 is smooth side, the main body section of secondary guide roller 5 is relative with the position of the main body section of main guide roller 4, rubber ring I 421 on main guide roller 4 forms contact relation with the surface of the main body section of secondary guide roller 5, because rubber ring I 421 protrudes on the surface of the main body section of main guide roller 4, the main body section of main guide roller 4 and the main body section of secondary guide roller 5 just form certain space 43 between adjacent two rubber rings I 421, as shown in figs. 3 and 6.
Imput shaft 2 on main guide roller 4 and between the driven shaft 3 on secondary guide roller 5 in the position relationship be parallel to each other, imput shaft 2 and driven shaft 3 are all arranged on shell 11 by bearing, the imput shaft 2 being positioned at main body section one end of main guide roller 4 is provided with driving gear 7, the driven shaft 3 being positioned at main body section one end of secondary guide roller 5 is provided with driven gear 8 in the position corresponding with driving gear 7, driving gear 7 and driven gear 8 engage, make main guide roller 4 thus, the mode engaged by driving gear 7 and driven gear 8 between secondary guide roller 5 realizes being in transmission connection, imput shaft 2 end being positioned at the main body section other end of main guide roller 4 is provided with finishing bevel gear cuter I 91, and this end forms power intake.
As shown in Figures 1 to 3, driven unit forms primarily of drive motor 10 and rotating shaft 101, drive motor 10 and rotating shaft 101 are installed on erecting frame 1, the mouth connection reducer of drive motor 10, retarder is connected with rotating shaft 101 by the connection structures such as coupler 102 again, power intake is positioned at the side into mark assembly towards rotating shaft 101, finishing bevel gear cuter I 91 position at each power intake of correspondence in rotating shaft 101 is all provided with finishing bevel gear cuter II 92, the finishing bevel gear cuter I 91 of power intake engages with the finishing bevel gear cuter II 92 in rotating shaft 101, the power intake of main guide roller is made to realize power input by being in transmission connection with drive motor 10 thus.During work, drive motor 10 rotates and drives rotating shaft 101 to rotate, and rotating shaft 101 is driven to dominate rotated to running roller by finishing bevel gear cuter II 92, finishing bevel gear cuter I 91 transmission.
In figs. 2 and 3, rubber ring II 422 is provided with between the imput shaft 2 at the finishing bevel gear cuter I 91 on main guide roller and this finishing bevel gear cuter I 91 place, rely on the distortion of rubber ring II 422 therebetween between finishing bevel gear cuter I 91 and imput shaft 2 and link together, after adopting this structure, when overcoming the friction force produced by rubber ring II 422, can do relative motion between finishing bevel gear cuter I 91 and main guide roller, produce the situation that the motionless and main guide roller of finishing bevel gear cuter I 91 rotates.When drive motor 10 is in out-of-work state, rotating shaft 101 and the finishing bevel gear cuter on it II 92 are in actionless state, because the finishing bevel gear cuter I 91 on main guide roller engages with the finishing bevel gear cuter II 92 in rotating shaft 101, so the finishing bevel gear cuter I 91 on main guide roller is also in motionless state, now, when needing to adjust the position of the millimeter paper between main guide roller 4 and secondary guide roller 5 on millimeter paper throughput direction, by enough External Force Actings on main guide roller 4, the friction force making main guide roller 4 overcome the rubber ring II 422 between finishing bevel gear cuter I 91 and imput shaft 2 to produce, and then main guide roller 4 is rotated, because main guide roller 4 rotates, so secondary guide roller 5 synchronous backward rotates, so millimeter paper then can move the object reaching adjustment millimeter paper position because of the friction force be subject to from the rubber ring I 421 in the main body section of main guide roller 4 and secondary guide roller.
In this embodiment, as shown in Figure 3, the surface of imput shaft 2 is smooth surface, and be provided with groove at the inwall of finishing bevel gear cuter I 91, rubber ring II 422 is arranged in this groove.Because in actual manufacturing process, imput shaft 2 is metal material, for improving the resistance to abrasion of imput shaft 2, imput shaft 2 needs through Technology for Heating Processing process, if at imput shaft 2 surface fluting for installation rubber ring II 422, this will certainly impact imput shaft, especially the performance of imput shaft 2 after heat treatment can be affected, and the size of imput shaft 2 upper groove can be made when heat-treating to change and then affect the installation of rubber ring II 422, so for ease of heat-treating imput shaft 2 and impacting the performance of imput shaft 2 for avoiding, its surface does not arrange groove, but employing smooth surface, and finishing bevel gear cuter I 91 1 aspect its be not suitable for heat treatment, within it wall fluting is little to the performance impact of finishing bevel gear cuter I 91, and on the other hand, due to its reasons in structure, within it wall fluting is also relatively more easy.
Guidance set is being dominated between roll assembly and secondary guide roller assembly.This guidance set is made up of with the connecting portion 61 being connected two guide parts 62 two guide parts 62, two guide parts 62 are distributed in the both sides of rubber ring I and secondary guide roller junction, the position of two guide parts 62 is oppositely arranged, each guide part 62 is equipped with towards rubber ring I and the side of secondary guide roller junction the guide channel 621 linearly extended, and on the axial direction of secondary guide roller, rubber ring I, secondary guide roller connecting portion and two guide channel 621 places are at grade; Connecting portion 61 is fixedly installed on shell 11, and connecting portion 61 is positioned at one end of two guide parts 62, and this end that guide part 62 is connected with connecting portion 61 is the input end of guide channel 621; Tapering type guiding channel 611 is provided with in connecting portion 61, tapering type guiding channel 611 is communicated with two guide channels 621, and the width of tapering type guiding channel 611 diminishes gradually on the throughput direction of millimeter paper, this makes tapering type guiding channel 611 form the v-shaped structure of a tip towards main guide roller 4 and secondary guide roller 5 in the cross section perpendicular to main guide roller 4 and secondary guide roller 5 line of centers, makes the input port opening of tapering type guiding channel 611 comparatively large so that millimeter paper enters tapering type guiding channel 611.
In this embodiment, often group enter to mark in assembly the effect dominated to roll assembly and secondary guide roller assembly be when millimeter paper between main guide roller and secondary guide roller by time in order to drive millimeter paper drive transfer, the Main Function of guidance set from the process passed through between main guide roller and secondary guide roller, limits millimeter paper edge at guiding millimeter paper to swing.During specific works, drive motor 10 rotates the drive six groups imput shaft 2 entering to mark on assembly and rotates simultaneously and then drive six groups of main guide roller 4 synchronous axial system entering to mark on assembly, imput shaft 2 drives driven shaft 3 to rotate by driving gear 7 and driven gear 8 and then drives six groups of secondary guide roller 5 synchronous axial system entering to mark on assembly simultaneously, now, often group enters to mark main guide roller 4 on assembly and secondary guide roller 5 synchronous backward rotates, when millimeter paper enters to mark through tapering type guiding channel 611 and along guide channel 621 from every group between main guide roller 4 assembly and secondary guide roller 5 through out-of-date, millimeter paper is pushed to secondary guide roller position in the side of millimeter paper by the rubber ring I 421 of main guide roller, the side of millimeter paper is subject to the squeezing action of rubber ring I 421, opposite side is subject to the supporting role of secondary guide roller, simultaneously, due to main guiding roller, secondary guide roller synchronous backward rotates, millimeter paper both sides are made to be subject to from rubber ring I 421 respectively, the friction force of secondary guide roller, the application force that this friction force moves ahead as millimeter paper, millimeter paper is driven to be fed forward along the direction of arrow as shown in FIG. 7 and 8 thus, millimeter paper from dominate between roll assembly and secondary guide roller assembly by time, the space 43 between main guide roller and secondary guide roller is produced folding line at this position by main guide roller and the extruding of secondary guide roller to avoid millimeter paper for millimeter paper provides a space holding millimeter paper unfairness position or fold position, and, at millimeter paper from the process passed through between main guide roller 4 and secondary guide roller 5, the edge of millimeter paper is embedded in guide channel, guide channel limits the edge of millimeter paper, the edge avoiding millimeter paper swings, guide channel gives the bearing force of millimeter paper necessity simultaneously, can reduce the probability that millimeter paper produces fold.
In this embodiment, due to imput shaft 2, driven shaft 3 and connecting portion 61 are all installed on shell 11, make thus to dominate to roll assembly, secondary guide roller assembly and guidance set are integrated in shell 11, and shell 11 is installed on erecting frame 1, six groups are made to enter to mark Components integration in erecting frame 1 thus, and then make this enter the modular construction of device for mark on the whole in integral type, the operation avoiding Installation and Debugging in device for mark use procedure is entered at this, improve the convenience that it uses, the design of unitary module structure simultaneously constrains its space structure further, more compact in structure.

Claims (7)

1. one kind is entered device for mark, it is characterized in that: comprise erecting frame (1), enter to mark assembly and driven unit, describedly enter to mark assembly and be distributed on erecting frame (1) side by side, describedly enter to mark assembly and comprise shell (11), dominate to roll assembly, secondary guide roller assembly and guidance set, described shell (11) is installed on erecting frame (1), describedly dominate to roll assembly, secondary guide roller assembly and guidance set are integrated on shell (11), described dominating is in transmission connection to roll assembly and secondary guide roller assembly, described dominating has power intake to roll assembly, described guidance set is located at and is dominated between roll assembly and secondary guide roller assembly, described driven unit comprises drive motor (10) and rotating shaft (101), described drive motor (10) and rotating shaft (101) are installed on erecting frame (1), the mouth of described drive motor (10) is connected with rotating shaft (101), described drive motor (10) rotates and drives rotating shaft (101) to rotate, described power intake is positioned at the side into mark assembly towards rotating shaft (101), described power intake is provided with finishing bevel gear cuter I (91), described rotating shaft (101) is all provided with at correspondence each finishing bevel gear cuter I (91) position place the finishing bevel gear cuter II (92) engaged with this finishing bevel gear cuter I (91).
2. one according to claim 1 enters device for mark, it is characterized in that: described power intake is provided with rubber ring II (422), and described finishing bevel gear cuter I (91) is installed on described power intake by rubber ring II.
3. one according to claim 2 enters device for mark, it is characterized in that: the surface of described power intake is smooth surface, and the inwall of finishing bevel gear cuter I (91) is provided with the groove for installing rubber ring II (422).
4. the one according to claim 1 or 2 or 3 enters device for mark, it is characterized in that: described dominating comprises main guide roller (4) and rubber ring I (421) to roll assembly, described rubber ring I (421) spaced set is in the main body section of main guide roller (4), described secondary guide roller assembly comprises secondary guide roller (5), the main body section of described secondary guide roller (5) is cylindrical structure, the main body section of described secondary guide roller (5) is just to the main body section of main guide roller (4), the surface contact of described rubber ring I (421) and secondary guide roller (5), described guidance set is provided with two guide channels (621), described guide channel (621) is distributed in the both sides of rubber ring and secondary guide roller junction, one end of described main guide roller is power intake, the other end of described main guide roller is connected by gears meshing with secondary guide roller.
5. one according to claim 4 enters device for mark, it is characterized in that: described guidance set is provided with tapering type guiding channel (611) at the input end of guide channel (621), the width of described tapering type guiding channel (611) diminishes gradually on the throughput direction of millimeter paper.
6. one according to claim 5 enters device for mark, it is characterized in that: the connecting portion (61) that described guidance set comprises two guide parts (62) and is connected with two guide parts (62), described two guide parts (62) are oppositely arranged, one end of described guide part (62) is connected with connecting portion (61), each guide part (62) is equipped with a guide channel (621), described tapering type guiding channel (611) is positioned on connecting portion (61), described guide channel (621) is communicated with tapering type guiding channel (611).
7. one according to claim 4 enters device for mark, it is characterized in that: described main guide roller is equipped with annular groove (41) in the position of each rubber ring I (421) of correspondence, described rubber ring I (421) is spacing in annular groove (41).
CN201520738467.6U 2015-09-22 2015-09-22 Advance to mark device Withdrawn - After Issue CN205023028U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520738467.6U CN205023028U (en) 2015-09-22 2015-09-22 Advance to mark device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520738467.6U CN205023028U (en) 2015-09-22 2015-09-22 Advance to mark device

Publications (1)

Publication Number Publication Date
CN205023028U true CN205023028U (en) 2016-02-10

Family

ID=55255587

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520738467.6U Withdrawn - After Issue CN205023028U (en) 2015-09-22 2015-09-22 Advance to mark device

Country Status (1)

Country Link
CN (1) CN205023028U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105173290A (en) * 2015-09-22 2015-12-23 杭州中亚机械股份有限公司 Label feeding device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105173290A (en) * 2015-09-22 2015-12-23 杭州中亚机械股份有限公司 Label feeding device
CN105173290B (en) * 2015-09-22 2017-10-10 杭州中亚机械股份有限公司 One kind enters device for mark

Similar Documents

Publication Publication Date Title
CN105129472A (en) Millimeter paper feeding assembly
CN205023576U (en) Advance to mark subassembly
CN103708255B (en) The minute-pressure dedusting paper feeder of water-based printing of corrugated paper plate machine
WO2010048853A1 (en) Automatic bending machine for reinforcing steel bar with synchronous belt transmission mechanism
CN204524511U (en) The two pressure regulating wire feeding of Dual Drive double pressing roller type frame
CN205023028U (en) Advance to mark device
CN207293720U (en) A kind of thin-film unreeling device with laminating mechanism
CN214872558U (en) TPR rubber burning pipe wheel type tractor stable in operation
CN102285152A (en) Equipment for manufacturing square paper pipe
CN105173290A (en) Label feeding device
CN202015761U (en) Sheet metal leveling host machine
CN204545744U (en) Dual Drive high pulling torque wire feeder
CN205023029U (en) Supply mark to cut out mark device
CN205023027U (en) Label feeding mechanism
CN202573341U (en) Driving mechanism of automatic stamping device
CN205767725U (en) Paper bag bag arrangement
CN210368159U (en) Novel fabric traction device of flat knitting machine
CN104353750B (en) A kind of Multifunctional air tube forming machine
CN210253632U (en) Winding forming device
CN105173291B (en) Label feeding and tailoring device
CN202688660U (en) Driving mechanism of normal sewing machine
CN207785762U (en) Solar energy treadmill
CN203639662U (en) Roller mechanism of computerized flat knitting machine
CN107988752B (en) Umbrella cloth beading machine that accommodation is wide
CN220426434U (en) Television frame roller bending machine

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20160210

Effective date of abandoning: 20171010

AV01 Patent right actively abandoned