CN210792444U - Coating printing machine side rule device - Google Patents
Coating printing machine side rule device Download PDFInfo
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- CN210792444U CN210792444U CN201921079491.8U CN201921079491U CN210792444U CN 210792444 U CN210792444 U CN 210792444U CN 201921079491 U CN201921079491 U CN 201921079491U CN 210792444 U CN210792444 U CN 210792444U
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- side gauge
- adjusting
- sliding
- gauge device
- frame
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Abstract
The utility model discloses a coating printing machine side rule device, including the frame, its characterized in that: the machine frame is internally provided with a sliding device and a fine adjustment device, the sliding device and the fine adjustment device are provided with an elastic side gauge device and a rigid side gauge device, the machine frame is internally provided with a driving device, the driving device drives the elastic side gauge device and the rigid side gauge device, the elastic side gauge device is provided with two elastic adjusting devices, the rigid side gauge device is provided with two bolt adjusting devices, and the lower ends of the elastic side gauge device and the rigid side gauge device are respectively provided with a single waveform side gauge device; the pressure is adjusted by the aid of the elastic adjusting device to meet the use requirements of iron sheets with different thicknesses, the iron sheets with right angle errors are adapted by the aid of the bolt adjusting device, the fine adjusting device is used for fine adjustment of one line and two lines, the waveform side gauge device is used for adapting to waveform side edges of the iron sheet plates, the driving device drives the iron sheet plates to push each iron sheet plate to the middle during working, and the purpose of positioning the iron sheet plates left and right is achieved.
Description
Technical Field
The utility model relates to a seal and scribble production technical field, more specifically say, it relates to a coating printing machine side rule device.
Background
In recent years, the amount of use and demand of multicolor metal sheet printing products have been increasing, and in order to save materials, the iron sheet plates on the side of the waveform gradually replace the iron sheet plates on the side of the straight line, and after printing and coating, a large iron sheet needs to be cut, and the large iron sheet needs to be cut into small iron sheets to be made into cans. In the process of cutting the iron sheet plate, in order to ensure the cutting quality of the iron sheet, the iron sheet plate is generally cut one by one, when the iron sheet plate is adsorbed on a conveying mechanism, the position deviation can be prevented from being overlarge by virtue of the baffle plates on two sides, but the position of the iron sheet plate needs to be accurately calibrated and positioned in the cutting process, if a manual side gauge is adopted, the cost is high, errors are easy to occur, the size of the iron sheet is bound to have slight errors in actual production, the position needs to be taken into consideration when the position is corrected, the station of a side gauge device is fixed, when the side gauge is used, external force is applied to the iron sheet plate through axial movement to adjust, the iron sheet plate is quite rigid, and the device cannot be adjusted longitudinally and transversely.
SUMMERY OF THE UTILITY MODEL
To the not enough of prior art existence, the utility model aims to provide a coating printing machine side rule device solves foretell one or more problem.
In order to achieve the above purpose, the utility model provides a following technical scheme:
a coating printing machine side rule device comprises a frame, wherein a sliding device and a fine adjustment device are arranged in the frame, the sliding device and the fine adjustment device are respectively arranged at two ends inside the frame along the length direction of the frame, an elastic side rule device and a rigid side rule device are arranged on the sliding device and the fine adjustment device, two ends of the elastic side rule device and two ends of the rigid side rule device are respectively connected with the sliding device and the fine adjustment device, the elastic side rule device and the rigid side rule device are oppositely arranged along the width direction of the frame, a driving device is further arranged inside the frame, the driving device drives the elastic side rule device and the rigid side rule device, two elastic adjusting devices are arranged on the elastic side rule device, two bolt adjusting devices are arranged on the rigid side rule device, and the lower ends of the elastic side gauge device and the rigid side gauge device are respectively provided with an independent wave-shaped side gauge device.
Furthermore, the sliding device comprises two guide rail support plates, two sliding guide rails, two sliding block seats and two rear supports, the two guide rail support plates are respectively arranged at two ends inside the frame along the width direction of the frame, the two sliding guide rails are respectively arranged on the two guide rail support plates, the two sliding block seats are respectively in sliding connection with the two sliding guide rails, the two rear supports are respectively arranged on one surfaces, away from the sliding guide rails, of the two sliding block seats, and the two rear supports are respectively connected with the elastic side gauge device and the rigid side gauge device.
Further, the fine adjustment device comprises two guide rails with scales, two coarse adjustment sliders, two fine adjustment bolts, two lead screw devices, two clamping handles and two connecting sliders, the two guide rails are respectively arranged at two ends inside the frame along the width direction of the frame, the two lead screw devices are respectively arranged inside the two guide rails, the two coarse adjustment sliders are respectively arranged on the two guide rails, the two coarse adjustment sliders are respectively slid on the corresponding guide rails by the aid of the corresponding lead screw devices, the two fine adjustment bolts are respectively arranged on the two coarse adjustment sliders along the width direction of the frame, the two fine adjustment bolts are respectively in threaded connection with the corresponding coarse adjustment sliders, the two fine adjustment bolts are oppositely arranged, and the two guide rails are provided with through movable grooves along the vertical direction, the two clamping handles penetrate through the two rough adjusting sliding blocks respectively and are inserted into the corresponding movable grooves, clamping blocks are arranged at the tail ends of the two clamping handles respectively and are clamped by the clamping handles in a rotary corresponding mode, the two connecting sliding blocks are arranged between the two rough adjusting sliding blocks and are connected with the two guide rails in a sliding mode respectively, and the two connecting sliding blocks are further connected with the elastic side gauge device and the rigid side gauge device respectively.
Furthermore, the elastic side gauge device comprises a first crossbeam, two baffles, two limit blocks, two movable sliding plates and two sliding top plates, wherein two ends of the first crossbeam are respectively connected with the corresponding connecting slide block and the rear support, two ends of the first crossbeam are respectively provided with an independent mounting groove, the two baffles are respectively arranged in the two mounting grooves, the two limit blocks are respectively arranged at one side of the two baffles, the two movable sliding plates are respectively arranged at the tops of the two baffles, the two sliding top plates are both arranged on the frame, the lower ends of the two sliding top plates are respectively provided with a mounting matching groove, the two mounting matching grooves are respectively provided with a bayonet lock, the corresponding mounting grooves and the mounting matching grooves are enclosed to form a closed groove body, the two movable sliding plates respectively drive the corresponding baffles to slide in the mounting grooves and the mounting matching grooves, two the elasticity adjusting device all passes first girder, two the elasticity adjusting device is respectively contradicted on two the stopper.
Further, the elasticity adjusting device includes pressure adjusting bolt, extensible member and pressure spring, pressure adjusting bolt lateral surface is seted up screw thread and inside has been seted up flexible groove, pressure adjusting bolt inserts and establishes on the first girder, the extensible member inserts flexible groove, the extensible member with pressure adjusting bolt swing joint, the pressure spring cover is established outside the extensible member, the pressure spring both ends are contradicted respectively pressure adjusting bolt with on the extensible member, the top of extensible member is contradicted on the stopper.
Further, the rigidity side gauge device includes second girder, two wall built-up and two regulation supports, the both ends of second girder with correspond link block with correspond the back support is connected, two the wall built-up is inserted and is established on the second girder bottom surface, two the wall built-up is located symmetrically the second girder both ends, two the regulation support is located the top surface of second girder, two the regulation support is located two respectively the top of wall built-up, two bolt adjusting device passes respectively and corresponds the regulation support, two all seted up the through groove along vertical direction on the regulation support, two bolt adjusting device respectively with correspond the wall built-up be in the position department cooperation of through groove is connected.
Further, the bolt adjusting device comprises an angle adjusting bolt and an adjusting bearing, the angle adjusting bolt penetrates through the corresponding adjusting support, the adjusting bearing is located above the through groove of the adjusting support, the adjusting bearing is arranged on the angle adjusting bolt, and the adjusting bearing is in threaded fit connection with the corresponding top of the wall hanging.
Furthermore, the wave-shaped side gauge device comprises a roller plate and a plurality of rollers, wherein the two different roller plates are respectively arranged on the first girder and the second girder, and the rollers are arranged on the roller plate in an array manner.
Furthermore, a plurality of pin holes are formed in the roller plate, an individual bearing pin is arranged in each pin hole, and the plurality of rollers are respectively connected with the plurality of bearing pins through ball bearings.
Further, the driving device comprises a driving motor and a cam device, the driving motor and the cam device are both arranged on the rack, and the driving motor drives the elastic side gauge device and the rigid side gauge device by means of the cam device.
By adopting the technical scheme, the waveform side gauge device on the rigid side gauge device can be finely adjusted in the width direction of the rack through the rotation angle adjusting bolt to adapt to the iron sheet plate with right angle error, the pressure spring is compressed or released by screwing or unscrewing the pressure adjusting bolt, the pressure of the elastic side gauge device on the iron sheet plate is further adjusted to meet the use requirements of the iron sheet plates with different thicknesses, the elastic side gauge device and the rigid side gauge device are moved to approximate positions by moving the rough adjusting slide block of the fine adjusting device, the clamping handle is rotated to clamp the slide block, the position of the top of the fine adjusting bolt is adjusted by rotating the fine adjusting bolt, the elastic side gauge device and the rigid side gauge device are clamped by the top of the fine adjusting bolt to specifically adapt to the size of the iron sheet plate, the side gauge device is simultaneously pushed to the iron sheet plate placed in the center of the rack by the elastic side gauge device and the rigid side gauge device, and then adjust the left and right position of the iron sheet plate, with the edge of the rigid side gauge device as the reference, the elastic side gauge device as the adjusting edge, and contact with the iron sheet plate by means of two waveform side gauge devices to perform the side gauge operation, the structure of the rigid side gauge device is fixed, and only makes reciprocating linear motion under the drive of the drive device, so that the elastic side gauge device can be the reference edge, because of the existence of the pressure spring, the iron sheet plate exerts the reaction force on the waveform side gauge device on the elastic side gauge device, the waveform side gauge device drives the limit block to move in the direction far away from the iron sheet plate through the transmission, the limit block exerts the force on the expansion piece, thereby compressing the pressure spring, absorbing the reaction force by the pressure spring, achieving the flexible adjustment effect, and being capable of adapting to the size error on the edge of some iron sheet plates, the device is driven by a motor, and is completely automatic when performing the side gauge operation, the labor-saving and labor-saving rolling wheel device has the advantages that the rolling wheel plate is provided with the plurality of bearing pins, the rolling wheels of the waveform side gauge device are connected with the bearing pins through the ball bearings, the rolling wheel device is more sensitive and free to rotate, the position of the iron sheet plate can be adjusted and adapted, and the rolling wheel is guaranteed to be abutted in the wave troughs of the waveforms on the two sides of the iron sheet plate.
Drawings
Fig. 1 is a schematic structural view of a side lay device of a coating printing machine according to an embodiment of the present invention;
fig. 2 is a schematic structural diagram of a rigid side gauge device according to an embodiment of the present invention;
fig. 3 is a schematic structural diagram of an elastic side gauge device according to an embodiment of the present invention;
fig. 4 is a schematic structural diagram of a driving device according to an embodiment of the present invention;
fig. 5 is a schematic structural diagram of an elasticity adjusting apparatus according to an embodiment of the present invention;
fig. 6 is a schematic structural diagram of a bolt adjusting device according to an embodiment of the present invention;
fig. 7 is a schematic structural diagram of a wave side gauge device according to an embodiment of the present invention;
fig. 8 is a schematic view of a connection structure between a bearing pin and a roller according to an embodiment of the present invention;
fig. 9 is a schematic structural diagram of a side baffle according to an embodiment of the present invention.
In the figure: 1. a frame; 11. a side dam; 12. pressing a plate; 2. a sliding device; 21. a guide rail support plate; 22. a sliding guide rail; 23. a slider seat; 24. a rear support; 3. a fine adjustment device; 31. a guide rail; 32. roughly adjusting the sliding block; 33. fine-tuning the bolt; 34. a screw device; 35. the handle is clamped tightly; 36. connecting the sliding block; 4. an elastic side gauge device; 41. a first girder; 42. a baffle plate; 43. a limiting block; 44. a movable slide plate; 45. a sliding top plate; 5. a rigid side gauge device; 51. a second girder; 52. hanging the wall; 53. adjusting the support; 6. a drive device; 61. a drive motor; 62. a cam device; 7. an elastic adjustment device; 71. a pressure adjusting bolt; 72. a telescoping member; 73. a pressure spring; 8. a bolt adjusting device; 81. an angle adjusting bolt; 82. adjusting the bearing; 9. a wave-shaped side gauge device; 91. a roller plate; 92. a roller; 93. and (7) a bearing pin.
Detailed Description
The present invention will be described in further detail with reference to the accompanying fig. 1 to 9.
Example 1:
a coating printing machine side gauge device is disclosed, as shown in figures 1-8, and comprises a frame 1, wherein a sliding device 2 and a fine adjustment device 3 are arranged in the frame 1, the sliding device 2 and the fine adjustment device 3 are respectively arranged at two ends inside the frame 1 along the length direction of the frame 1, an elastic side gauge device 4 and a rigid side gauge device 5 are arranged on the sliding device 2 and the fine adjustment device 3, two ends of the elastic side gauge device 4 and two ends of the rigid side gauge device 5 are respectively connected with the sliding device 2 and the fine adjustment device 3, the elastic side gauge device 4 and the rigid side gauge device 5 are oppositely arranged along the width direction of the frame 1, a driving device 6 is further arranged inside the frame 1, the driving device 6 drives the elastic side gauge device 4 and the rigid side gauge device 5, two elastic adjustment devices 7 are arranged on the elastic side gauge device 4, two bolt adjustment devices 8 are arranged on the rigid side gauge device 5, and independent waveform side gauge devices 9 are respectively arranged at the lower ends of the elastic side gauge device 4 and the rigid side .
The sliding device 2 comprises two guide rail support plates 21, two sliding guide rails 22, two sliding block seats 23 and two rear supports 24, the two guide rail support plates 21 are respectively arranged at two ends inside the frame 1 along the width direction of the frame 1, the two sliding guide rails 22 are respectively arranged on the two guide rail support plates 21, the two sliding block seats 23 are respectively in sliding connection with the two sliding guide rails 22, the surfaces, away from the sliding guide rails 22, of the two sliding block seats 23 are respectively provided with the two rear supports 24, and the two rear supports 24 are respectively connected with the elastic side gauge device 4 and the rigid side gauge device 5.
The fine adjustment device 3 comprises two guide rails 31 with scales, two coarse adjustment sliders 32, two fine adjustment bolts 33, two screw rod devices, two clamping handles 35 and two connecting sliders 36, the two guide rails 31 are respectively arranged at two ends inside the frame 1 along the width direction of the frame 1, the two screw rod devices are respectively arranged inside the two guide rails 31, the two coarse adjustment sliders 32 are respectively arranged on the two guide rails 31, the two coarse adjustment sliders 32 respectively slide on the corresponding guide rails 31 by virtue of the corresponding screw rod devices, the two fine adjustment bolts 33 are respectively arranged on the two coarse adjustment sliders 32 along the width direction of the frame 1, the two fine adjustment bolts 33 are respectively in threaded connection with the corresponding coarse adjustment sliders 32, the two fine adjustment bolts 33 are oppositely arranged, through movable grooves are formed in the two guide rails 31 along the vertical direction, the two clamping handles 35 respectively penetrate through the two coarse adjustment sliders 32 and are inserted into the corresponding movable grooves, the tail ends of the two clamping handles 35 are provided with clamping blocks, the clamping blocks clamp the corresponding screw rod devices through rotating the corresponding clamping handles 35, the two connecting sliding blocks 36 are arranged between the two rough adjusting sliding blocks 32, the two connecting sliding blocks 36 are respectively in sliding connection with the two guide rails 31, and the two connecting sliding blocks 36 are further respectively connected with the elastic side gauge device 4 and the rigid side gauge device 5.
The elastic side gauge device 4 comprises a first crossbeam 41, two baffles 42, two limit blocks 43, two movable sliding plates 44 and two sliding top plates 45, wherein two ends of the first crossbeam 41 are respectively connected with the corresponding connecting slide block 36 and the rear support 24, two ends of the first crossbeam 41 are respectively provided with an independent mounting groove, the two baffles 42 are of a z-shaped structure, the higher ends of the two baffles 42 are respectively arranged in the two mounting grooves, the two limit blocks 43 are respectively arranged on one side of the two baffles 42, the two movable sliding plates 44 are respectively arranged on the tops of the two baffles 42, the two sliding top plates 45 are both arranged on the frame 1, the lower ends of the two sliding top plates 45 are respectively provided with mounting matching grooves, clamping pins are respectively arranged in the two mounting matching grooves, the corresponding mounting grooves and the mounting matching grooves are enclosed to form a closed groove body, the two movable sliding plates 44 respectively drive the corresponding baffles 42 to slide in the mounting grooves, when the movable sliding plate 44 and the baffle plate 42 slide, the clamping pin abuts against the baffle plate 42 to limit the moving range of the baffle plate, the part is prevented from being separated from the first crossbeam 41, the structure of the baffle plate 42 can ensure that the whole moving part moves in the other direction, the clamping pin abuts against the first crossbeam 41 to limit the moving range in the other direction, the movable sliding plate 44 is finally ensured to have a sliding limit, the whole structure of the device is stable and reliable, the two elastic adjusting devices 7 all penetrate through the first crossbeam 41, and the two elastic adjusting devices 7 respectively abut against the two limiting blocks 43.
The elastic adjusting device 7 comprises a pressure adjusting bolt 71, an expansion piece 72 and a pressure spring 73, the outer side surface of the pressure adjusting bolt 71 is provided with threads and is internally provided with an expansion groove, the pressure adjusting bolt 71 is inserted into the first girder 41, the expansion piece 72 is inserted into the expansion groove, the expansion piece 72 is movably connected with the pressure adjusting bolt 71, the pressure spring 73 is sleeved outside the expansion piece 72, two ends of the pressure spring 73 are respectively abutted on the pressure adjusting bolt 71 and the expansion piece 72, and the top of the expansion piece 72 is abutted on the limiting block 43.
The rigid side gauge arrangement 5 comprises a second girder 51, two hanging walls 52 and two adjusting supports 53, two ends of the second girder 51 are connected with the corresponding connecting slide blocks 36 and the corresponding rear supports 24, the two hanging walls 52 are inserted on the bottom surface of the second girder 51, threads are formed on the tops of the two hanging walls 52, the two hanging walls 52 are symmetrically arranged at two ends of the second girder 51, the two adjusting supports 53 are arranged on the top surface of the second girder 51, the two adjusting supports 53 are both in an L-shaped structure, the two adjusting supports 53 are respectively positioned above the two hanging walls 52, the longer sides of the two adjusting supports 53 are both connected with the second girder 51, the two bolt adjusting devices 8 respectively penetrate through the shorter sides of the corresponding adjusting supports 53, through grooves are formed in the long sides of the two adjusting supports 53 in the vertical direction, and the two bolt adjusting devices 8 are respectively connected with the corresponding hanging walls 52 in a matching manner at the positions of the through grooves.
The bolt adjusting device 8 comprises an angle adjusting bolt 81 and an adjusting bearing 82, the angle adjusting bolt 81 penetrates through the corresponding adjusting support 53, the adjusting bearing 82 is located above a through groove of the adjusting support 53, threads are formed in the side face of the adjusting bearing 82, the adjusting bearing 82 is arranged on the angle adjusting bolt 81, the adjusting bearing 82 is connected with the top of the corresponding wall hanging 52 in a threaded fit mode, and the adjusting bearing 82 drives the wall hanging 52 to slide along the width direction of the rack 1 when rotating.
The wave-shaped side gauge device 9 comprises a roller plate 91 and a plurality of rollers 92, wherein two different roller plates 91 are respectively arranged on the first girder 41 and the second girder 51, and the rollers 92 are arranged on the roller plate 91 in an array.
A plurality of pin holes are formed in the roller plate 91, an individual bearing pin 93 is arranged in each pin hole, and the rollers 92 are connected with the bearing pins 93 through ball bearings respectively.
The driving device 6 comprises a driving motor 61 and a cam device 62, the driving motor 61 and the cam device 62 are both arranged on the frame 1, and the driving motor 61 drives the elastic side gauge device 4 and the rigid side gauge device 5 by means of the cam device 62.
The drive motor 61 is preferably a stepping motor, and can be a BY series permanent magnet stepping motor produced BY Changzhou Toyoyuan micro special motor company Limited.
The working principle is as follows: the iron sheet plate is placed at a designed conveying position and fixed, the screw rod device is used for pushing the rough adjusting slide block 32 to move along the guide rail 31, the rough adjusting slide block 32 pushes the connecting slide block 36 to move together in the process, when the two wavy side gauge devices 9 are just abutted to the wavy iron sheet plate, the rotating clamping handle 35 is used for locking the rough adjusting slide block 32 at the current position, then the fine adjusting bolt 33 is rotated to the limit, the two wavy side gauge devices 9 are completely abutted to two side edges of the iron sheet plate, whether the bolt adjusting device 8 is needed to compensate errors is selected according to whether the iron sheet plate has right angle errors or not, if so, the two angle adjusting bolts 81 are rotated or one corresponding angle adjusting bolt 81 is rotated, the rotation of the angle adjusting bolt 81 drives the wall hanging 52 which is in threaded fit connection with the angle adjusting bolt to move on the second girder 51 along the width direction of the rack 1, the pressure adjusting bolt is rotated properly according to the thickness of the iron sheet plate, the pressure spring 73 is compressed or released properly, the adjusting pressure is increased according to the larger the thickness is, the adjustment is carried out according to the principle that the pressure adjusting bolt is screwed properly, and vice versa, but a proper compression allowance is left for the pressure spring 73, the iron sheet plate is guaranteed to have a size error due to the edge, the pressure spring 73 can be flexibly compressed adaptively to carry out real-time compensation, after all fine adjustment is completed, the iron sheet plate is guaranteed to be clamped and fixed by the device completely, at the moment, the read number of the top of the fine adjustment bolt 33 corresponding to the guide rail 31 is recorded by means of the ruler, calculation is carried out according to the size condition of the iron sheet plate, the movement of.
In the actual production process, the settings of the elastic adjusting device 7 and the bolt adjusting device 8 are not changed in advance, only the fine adjusting device 3 moves towards the two relatively farthest ends and locks the positions again, the driving motor 61 drives the elastic side gauge device 4 and the rigid side gauge device 5 to do reciprocating linear motion towards each other along the guide rail 31 and the sliding guide rail 22 by means of the transmission of the cam mechanism, the iron sheet plate is conveyed to the preset position, the waveform side gauge devices 9 at the two sides are simultaneously contacted with the waveform iron sheet plate and push the waveform iron sheet plate to move properly to perform side gauge adjustment, the side gauge device 5 is taken as the reference, the elastic side gauge device 4 is taken as the adjusting side, the rigid side gauge device 5 is fixed and immovable in structure and only does reciprocating linear motion under the driving of the driving device 6, so that the rigid side gauge device 4 can be taken as the reference side, and the elastic side gauge device 4 is provided with a pressure spring 73, the iron sheet plate exerts a counterforce on the waveform side gauge device 9 on the elastic side gauge device 4, the waveform side gauge device 9 drives the movable sliding plate 44 and the baffle plate 42 connected with the waveform side gauge device 9 to synchronously move, the limiting block 43 on the baffle plate 42 tightly abuts against the telescopic part 72, then the telescopic part 72 is driven to move in the telescopic groove on the pressure adjusting bolt 71, and because two ends of the pressure spring 73 are respectively connected to the top cap of the telescopic part 72 and the pressure adjusting bolt 71, the relative movement of the telescopic part 72 and the pressure adjusting bolt 71 drives the pressure spring 73 to compress, the influence of the size error of the edge of the iron sheet plate on the side gauge can be corrected by the spring, and because of the characteristic of the spring, the influence on the next iron sheet plate can not be influenced, so one side of the elastic side gauge device 4 is used as a movable.
Be equipped with a plurality of bearing pins 93 on the gyro wheel board 91, be connected through ball bearing between gyro wheel 92 of wave form side rule device 9 and the bearing pin 93, it is more sensitive free to rotate, the position of each gyro wheel 92 corresponds the trough of iron sheet board wave form side, and gyro wheel 92 can rotate on bearing pin 93, can borrow the roll of gyro wheel 92 to adjust the adaptation to iron sheet board position, guarantee that gyro wheel 92 contradicts in the trough of iron sheet board both sides wave form, because the existence of elasticity side rule device 4, the process of this adjustment also is that device self can adapt to the regulation, because both sides are equipped with elasticity side rule device 4 and rigidity side rule device 5, no matter whether gyro wheel 92 on the wave form side rule device 9 can direct contact the trough position of wave form side on the iron sheet board, the device can both carry out accurate adjustment, then fix a position about going on the iron sheet board.
Example 2
The difference from the example 1 is that the device can be used normally by replacing the product object from the corrugated iron sheet plate to the ordinary rectangular iron sheet plate.
In this embodiment, the planning of the route and the position only needs to be properly adjusted in the preset stage, and the rectangular iron sheet plate can be positioned left and right.
Example 3
The difference from embodiment 1 is that, as shown in fig. 9, separate side guards 11 are provided on the outer sides of the first girder 41 and the second girder 51, the two side guards 11 are connected to the frame 1, and the upper end of the side guard 11 is provided with a pressing plate 12 along the inclined surface thereof.
The two side guards 11 in this embodiment are implemented as a preventive means only in order to prevent the iron sheet plates from falling off the conveyor during the conveyance, and have no substantial influence on the gauge portion.
It should be noted that all expressions using "first" and "second" in the embodiments of the present invention are used for distinguishing two entities with the same name but different names or different parameters, and it is understood that "first" and "second" are only used for convenience of expression and should not be understood as limitations to the embodiments of the present invention, and the following embodiments do not describe any more.
The present embodiment is only for explaining the present invention, and it is not limited to the present invention, and those skilled in the art can make modifications to the present embodiment without inventive contribution as required after reading the present specification, but all of them are protected by patent laws within the scope of the claims of the present invention.
Claims (10)
1. A coating printing machine side gauge device comprises a machine frame (1), and is characterized in that: be equipped with slider (2) and micromatic setting (3) in frame (1), slider (2) with micromatic setting (3) are followed respectively the length direction of frame (1) is located the inside both ends of frame (1), slider (2) with be equipped with elasticity side rule device (4) and rigidity side rule device (5) on micromatic setting (3), the both ends of elasticity side rule device (4) and the both ends of rigidity side rule device (5) are equallyd divide respectively with slider (2) with micromatic setting (3) are connected, elasticity side rule device (4) and rigidity side rule device (5) are followed the width direction of frame (1) sets up in opposite directions, frame (1) inside still is equipped with drive arrangement (6), drive arrangement (6) drive elasticity side rule device (4) and rigidity side rule device (5), the elastic side gauge device (4) is provided with two elastic adjusting devices (7), the rigid side gauge device (5) is provided with two bolt adjusting devices (8), and the lower ends of the elastic side gauge device (4) and the rigid side gauge device (5) are provided with independent wave-shaped side gauge devices (9).
2. A coating press sidelay apparatus according to claim 1, wherein: the sliding device (2) comprises two guide rail support plates (21), two sliding guide rails (22), two sliding block seats (23) and two rear supports (24), the two guide rail support plates (21) are arranged at two ends inside the frame (1) respectively along the width direction of the frame (1), the two sliding guide rails (22) are arranged on the two guide rail support plates (21), the two sliding block seats (23) are connected with the two sliding guide rails (22) in a sliding mode, the two sliding block seats (23) are far away from one surface of each sliding guide rail (22) and are respectively provided with two rear supports (24), and the two rear supports (24) are respectively connected with the elastic side gauge device (4) and the rigid side gauge device (5).
3. A coating press sidelay apparatus according to claim 2, wherein: the fine adjustment device (3) comprises two guide rails (31), two coarse adjustment sliding blocks (32), two fine adjustment bolts (33), two screw rod devices (34), two clamping handles (35) and two connecting sliding blocks (36), the two guide rails (31) are respectively arranged at two ends inside the frame (1) along the width direction of the frame (1), the two screw rod devices (34) are respectively arranged inside the two guide rails (31), the two coarse adjustment sliding blocks (32) are respectively arranged on the two guide rails (31), the two coarse adjustment sliding blocks (32) respectively slide on the corresponding guide rails (31) by means of the corresponding screw rod devices (34), the two fine adjustment bolts (33) are respectively arranged on the two coarse adjustment sliding blocks (32) along the width direction of the frame (1), and the two fine adjustment bolts (33) are respectively in threaded connection with the corresponding coarse adjustment sliding blocks (32), two fine setting bolt (33) set up in opposite directions, two seted up the activity groove that link up along vertical direction on guided way (31), two chucking handle (35) pass two rough adjusting slider (32) respectively and insert the correspondence the activity groove, two the end of chucking handle (35) all has the chucking piece, the chucking piece corresponds through the rotation chucking handle (35) block the correspondence lead screw device (34), two coupling block (36) are located two between rough adjusting slider (32), two coupling block (36) respectively with two guided way (31) sliding connection, two coupling block (36) still respectively with elasticity side gauge device (4) with rigidity side gauge device (5) are connected.
4. A coating press sidelay apparatus according to claim 3, wherein: the elastic side gauge device (4) comprises a first crossbeam (41), two baffles (42), two limiting blocks (43), two movable sliding plates (44) and two sliding top plates (45), wherein the two ends of the first crossbeam (41) are respectively connected with the corresponding connecting slide block (36) and the rear support (24), the two ends of the first crossbeam (41) are respectively provided with an independent mounting groove, the two baffles (42) are respectively arranged in the two mounting grooves, the two limiting blocks (43) are respectively arranged on one side of the two baffles (42), the two movable sliding plates (44) are respectively arranged at the tops of the two baffles (42), the two sliding top plates (45) are respectively arranged on the rack (1), the lower ends of the two sliding top plates (45) are respectively provided with mounting matching grooves, and the two mounting grooves are respectively provided with clamping pins, correspond mounting groove with installation cooperation groove encloses into a confined cell body, two movable slide (44) drive respectively and correspond baffle (42) are in mounting groove with slide in the installation cooperation groove, two elasticity adjusting device (7) all pass first girder (41), two elasticity adjusting device (7) are contradicted respectively two on stopper (43).
5. A coating press sidelay apparatus according to claim 4, wherein: elasticity adjusting device (7) include pressure adjusting bolt (71), extensible member (72) and pressure spring (73), pressure adjusting bolt (71) lateral surface set up screw thread and inside and seted up flexible groove, pressure adjusting bolt (71) are inserted and are established on first girder (41), extensible member (72) insert flexible groove, extensible member (72) with pressure adjusting bolt (71) swing joint, pressure spring (73) cover is established outside extensible member (72), pressure spring (73) both ends are contradicted respectively pressure adjusting bolt (71) with on extensible member (72), the top of extensible member (72) is contradicted on stopper (43).
6. A coating press sidelay apparatus according to claim 5, wherein: the rigid side gauge device (5) comprises a second girder (51), two hanging walls (52) and two adjusting supports (53), the both ends of second girder (51) with correspond link block (36) and the back support (24) that corresponds are connected, two wall built-up (52) are inserted and are established on second girder (51) bottom surface, two wall built-up (52) are symmetrically located second girder (51) both ends, two adjust support (53) and locate the top surface of second girder (51), two adjust support (53) and be located two respectively the top of wall built-up (52), two bolt adjusting device (8) pass respectively and correspond adjust support (53), two all seted up through groove along vertical direction on adjusting support (53), two bolt adjusting device (8) respectively with correspond wall built-up (52) are in the position cooperation of through groove is connected.
7. A coating press sidelay apparatus according to claim 6, wherein: bolt adjusting device (8) include angle adjusting bolt (81) and adjusting bearing (82), angle adjusting bolt (81) pass corresponding adjust support (53), adjusting bearing (82) are located adjust the support link up the groove top, adjusting bearing (82) are located on angle adjusting bolt (81), adjusting bearing (82) with correspond wall built-up (52) top screw-thread fit is connected.
8. A coating press sidelay apparatus according to claim 7, wherein: the wave-shaped side gauge device (9) comprises a roller plate (91) and a plurality of rollers (92), the two different roller plates (91) are respectively arranged on the first girder (41) and the second girder (51), and the rollers (92) are arranged on the roller plate (91) in an array manner.
9. A coating press sidelay apparatus according to claim 8, wherein: the roller plate (91) is provided with a plurality of pin holes, each pin hole is internally provided with an independent bearing pin (93), and the rollers (92) are respectively connected with the bearing pins (93) through ball bearings.
10. A coating press sidelay apparatus according to claim 9, wherein: the driving device (6) comprises a driving motor (61) and a cam device (62), the driving motor (61) and the cam device (62) are arranged on the rack (1), and the driving motor (61) drives the elastic side gauge device (4) and the rigid side gauge device (5) through the cam device (62).
Priority Applications (1)
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CN201921079491.8U CN210792444U (en) | 2019-07-11 | 2019-07-11 | Coating printing machine side rule device |
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CN201921079491.8U CN210792444U (en) | 2019-07-11 | 2019-07-11 | Coating printing machine side rule device |
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CN210792444U true CN210792444U (en) | 2020-06-19 |
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CN201921079491.8U Withdrawn - After Issue CN210792444U (en) | 2019-07-11 | 2019-07-11 | Coating printing machine side rule device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110271270A (en) * | 2019-07-11 | 2019-09-24 | 江苏华宇印涂设备集团有限公司 | A kind of coating and printing machine side gauge device |
-
2019
- 2019-07-11 CN CN201921079491.8U patent/CN210792444U/en not_active Withdrawn - After Issue
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110271270A (en) * | 2019-07-11 | 2019-09-24 | 江苏华宇印涂设备集团有限公司 | A kind of coating and printing machine side gauge device |
CN110271270B (en) * | 2019-07-11 | 2023-08-15 | 江苏华宇印涂设备集团有限公司 | Side gauge device of coating printer |
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