CN215206942U - Quick bill changing device for digital printer - Google Patents

Quick bill changing device for digital printer Download PDF

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Publication number
CN215206942U
CN215206942U CN202120613455.6U CN202120613455U CN215206942U CN 215206942 U CN215206942 U CN 215206942U CN 202120613455 U CN202120613455 U CN 202120613455U CN 215206942 U CN215206942 U CN 215206942U
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CN
China
Prior art keywords
warehousing
track
adjusting
working
hole
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Active
Application number
CN202120613455.6U
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Chinese (zh)
Inventor
刘义
刘文峰
李晨瑶
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Shenzhen Kofa Machinery Manufacture Co ltd
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Shenzhen Kofa Machinery Manufacture Co ltd
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Priority to CN202120613455.6U priority Critical patent/CN215206942U/en
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Abstract

The utility model discloses a quick single device that trades in storage of digital printer, wherein, a quick single device that trades in storage of digital printer, include: the system comprises a warehousing track and a working track, wherein the working track is butted with the warehousing track; the printing workpiece is placed below the working track, and the printer body moves on the warehousing track and the working track. Through dividing the track into the warehouse entry track with the work track, only need when needing to change the printing work piece with in the printer body immigration warehouse entry track and with the work track lift up change printing work piece, need not to move the printer out of the track, the operation is light convenient more to can realize one-man operation.

Description

Quick bill changing device for digital printer
Technical Field
The utility model relates to a digital printing technical field, in particular to quick device of changing orders of putting in storage of digital printer.
Background
In the digital printing machine industry, diversified demands for products and simple and humanized simple operation are more and more demanding, so that the same problems exist in the equipment in the market. Because the demand of the digital printer for the product can appear single printed product, the printing area is not large when the digital printer faces the printing workpiece of the batch order, but the demand of the overlarge overall dimension also increases great difficulty for the operator, because every time the digital printer is repeated, the digital printer needs to be moved out of the track, then another printing work is carried out, and then the digital printer is placed in the track. This is not favorable for improving the production efficiency and reducing the cost.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a digital printer's quick single device that trades in storage aims at realizing the single purpose of reloading and printing.
In order to achieve the above object, the utility model provides a quick bill device that trades in storage of digital printer, include:
warehousing the track; and
the working track is butted with the warehousing track;
the printing workpiece is placed below the working track, and the printer body moves on the warehousing track and the working track.
Further, the warehousing fast order changing device of the digital printer further comprises:
the fixing mechanism is fixedly arranged on the placing surface; and
the rocking arm, the rocking arm with work track fixed connection, the rocking arm through the pivot with fixed establishment rotates the connection, the axis of pivot is higher than the height of work track.
Further, the fixing mechanism includes: the fixing base with install lifting unit on the fixing base, the rocking arm pass through the pivot with lifting unit rotates and connects.
Furthermore, the lifting assembly comprises a fixed shaft and an adjusting clamp, the fixed shaft is connected with the fixed seat and extends upwards from the fixed seat, the adjusting clamp is clamped on the fixed shaft, and the rotating arm is rotatably connected with the rotating shaft.
Optionally, a first rotation hole is formed in the rotating arm, and the first rotation hole is rotatably connected with the rotation shaft through a bearing assembly.
Optionally, the adjusting clip is provided with a first adjusting hole for accommodating the fixing shaft, and a first adjusting slit penetrating through a hole wall surface of the first adjusting hole and an outer surface of the adjusting clip, the first adjusting slit penetrates through the adjusting clip along an axial direction of the fixing shaft, and a first bolt assembly penetrates through the adjusting clip to adjust a width of the first adjusting slit, so that the fixing shaft is clamped by the first adjusting hole.
Optionally, the adjusting clamp is provided with a second rotating hole for accommodating the rotating shaft, and a second adjusting slit penetrating through a hole wall surface of the second rotating hole and an outer surface of the adjusting clamp, the second adjusting slit penetrates through the adjusting clamp along an axial direction of the rotating shaft, and a second bolt assembly penetrates through the adjusting clamp to adjust a width of the second adjusting slit, so that the rotating shaft is clamped by the second adjusting hole.
Optionally, the fixing seat is provided with a fixing hole for accommodating the fixing shaft, and a third adjusting slit penetrating through a hole wall surface of the fixing hole and an outer surface of the fixing seat, the third adjusting slit penetrates through the fixing seat along an axial direction of the fixing shaft, and a third bolt assembly penetrates through the fixing seat to adjust a width of the third adjusting slit, so that the fixing shaft is clamped by the third adjusting hole.
Optionally, a fixing foot is installed on the outer side face of the warehousing track rail, a threaded through hole is formed in the fixing foot, and the adjusting bolt penetrates through the threaded through hole to abut against the placing face.
Optionally, the warehousing track comprises two symmetrically arranged warehousing slide rails, and the two warehousing slide rails are fixedly connected through a warehousing straining beam; the working track comprises two symmetrically arranged working slide rails which are fixedly connected through a working pull beam; the two working slide rails are respectively butted with the two warehousing slide rails.
Optionally, a handle is arranged on the working straining beam.
The utility model discloses technical scheme through divide into the rail put in storage rail with the work rail, only need when needing to change the printing work piece with printer body immigration put in storage rail in and lift up the change printing work piece with the work rail, need not to move the printer out of the rail outside, the operation is light convenient more to can realize one-man operation.
The working track is rotatably connected with the fixing mechanism through the rotating arm, so that the working track can rotate conveniently, the rotating shaft of the rotating arm is higher than the height of the working track, the working track can not interfere with the warehousing track when rotating, and the warehousing track can not move due to the rotation of the working track. The printing accuracy is improved.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the structures shown in the drawings without creative efforts.
Fig. 1 is a front view of an embodiment of a warehousing quick bill-changing device of the digital printer of the present invention;
fig. 2 is a top view of the warehousing quick document changing device of the digital printer of the present invention in the embodiment of fig. 1;
fig. 3 is a schematic structural view of the warehousing quick document changing device of the digital printer of the present invention in the embodiment of fig. 1;
FIG. 4 is an enlarged view of a portion of FIG. 3 at a;
fig. 5 is a schematic structural view of another view angle of the warehousing quick document changing device of the digital printer of the present invention shown in fig. 1;
fig. 6 is a partial enlarged view of fig. 5 at b.
The reference numbers illustrate:
reference numerals Name (R) Reference numerals Name (R)
100 Rotating arm 200 Fixing mechanism
110 Rotating shaft 210 Fixed seat
120 Bearing assembly 211 Strip-shaped hole
121 Outer ring bearing 220 Lifting assembly
122 Inner ring bearing 221 Fixed shaft
300 Warehousing track 222 Adjusting clamp
310 Sliding rail for warehousing 230 First adjustment slit
320 Warehouse entry straining beam 231 Second adjustment slit
330 Fixing foot 240 Bolt hole
400 Working rail 500 Printer body
410 Working slide rail 600 Cushion block
420 Working draw beam 700 Printing workpiece
430 Handle bar
The objects, features and advantages of the present invention will be further described with reference to the accompanying drawings.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
In the description of the present invention, unless expressly stated or limited otherwise, the terms "mounted," "provided," "connected," and the like are to be construed broadly, e.g., "connected," which may be fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood in specific cases to those skilled in the art.
It should be noted that all the directional indicators (such as upper, lower, left, right, front and rear … …) in the embodiment of the present invention are only used to explain the relative position relationship between the components, the motion situation, etc. in a specific posture (as shown in the drawings), and if the specific posture is changed, the directional indicator is changed accordingly.
In addition, the descriptions related to "first", "second", etc. in the present invention are for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicit ly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature. In addition, "and/or" in the whole text includes three schemes, taking a and/or B as an example, including a technical scheme, and a technical scheme that a and B meet simultaneously; in addition, the technical solutions in the embodiments may be combined with each other, but it must be based on the realization of those skilled in the art, and when the technical solutions are contradictory or cannot be realized, the combination of the technical solutions should not be considered to exist, and is not within the protection scope of the present invention.
The utility model provides a digital printer's quick device of changing orders of putting in storage.
Referring to fig. 1 to 3, in an embodiment of the present invention, the warehousing fast bill changing device of the digital printer includes:
warehousing the track; and
the working track is butted with the warehousing track;
the printing workpiece is placed below the working track, and the printer body moves on the warehousing track and the working track. It can be understood that the moving manner includes rolling and sliding, and what moving manner is specifically adopted needs to be adaptively adjusted according to the printer requirement, in this embodiment, the printer body 500 rolls on the warehousing track rail 300 and the working track rail 400. The utility model discloses a to put in storage rail 300 with work rail 400 docks, printer body 500 is in put in storage rail 300 with move on the work rail 400, get printer body 500 immigration when needing to get when putting printing work piece 700 and put in storage rail, lift up work rail and get and put printing work piece, can not remove the track with printer body 500 and can get and put printing work piece 700, played very important guard action to printer body 500 to can also stop and lead to damaging printer body 500 because of the maloperation that shifts out printer body 500, have very strong practicality.
Further, the warehousing fast order changing device of the digital printer further comprises:
the fixing mechanism 200 is fixedly arranged on the placing surface; the placing surface is a plane used for installing the warehousing quick bill changing device of the digital printer, has no specific limitation and changes according to the change of working environment, and can be a worktable top, a placing table top or even the ground, and
the rotating arm 100, the rotating arm 100 with the working track 400 is fixedly connected, the rotating arm 100 through the rotating shaft 110 with the fixing mechanism 200 is rotatably connected, the axis of the rotating shaft 110 is higher than the height of the working track 400.
As shown in fig. 1 to fig. 3, a digital printer developed by my currently comprises a storage track 300, a working track 400 and a printer body 500, wherein the storage track 300 is abutted with the working track 400, the printer body 500 moves on the storage track 300 and the working track 400, a printing workpiece is placed below the working track 400, the working track 400 needs to be taken away and the printing workpiece needs to be placed for printing each time, the operation is complicated, the efficiency is low, the picking and placing of the printing workpiece can be performed by lifting a working draw beam of the working track 400, however, since the working track 400 and the storage track 300 need to be abutted together in a seamless manner, when the working track 400 is lifted, since a rotation center is on the bottom edge of the working track 400, a corner at the top of the working track 400 pushes the storage track 300, and a thin gap is generated between the working track 400 and the storage track 300 when the working track 400 is put down again, when the printer body 500 is pushed to the warehousing track rail 300 from the working track rail 400, the printer body is clamped in the slit, so that the printing effect and the working efficiency are influenced, and the fixing mechanism 200 is rotatably connected with the rotating shaft 110 of the rotating arm 100 through the height that the rotating shaft 110 of the rotating arm 100 is higher than the height of the working track rail 400; the fixing mechanism 200 plays a role in supporting the working rail 400, when the working rail 400 is lifted, the working rail 400 does not interfere with the warehousing rail 300 due to the fact that the rotating center of the working rail 400 is above the working rail 400, and therefore the warehousing rail 300 cannot displace after a printing workpiece is taken and placed, and working efficiency and product printing quality are improved. The fixed connection of the swivel arm 100 and the working rail 400 includes welding, riveting or bolt fixing, and in this embodiment, the swivel arm 100 and the working rail 400 are fixedly connected by a bolt.
It is understood that, in order to lift the working track 400, the fixed position is the fixed connection point of the rotating arm 100 and the working track 400, and the lifting points of the rotating shaft 110 of the rotating arm 100 and the worker should be distributed on two sides of the fixed position, and of course, in extreme conditions, the rotating shaft 110 of the rotating arm 100 can be arranged right above the fixed position, and the arrangement can also lift the working track 400. It is envisioned that the warehousing rail 300 should abut the working rail 400 from the side near the rotation shaft 110 to achieve that the working rail 400 does not interfere with the warehousing rail 300 when lifted.
Referring to fig. 5 and fig. 6, the structure of the rotating arm 100 is not limited in the present invention, and may be a bar-shaped lifting structure, an arc-shaped stretching structure, or a special-shaped lifting structure, and optionally, the bottom of the rotating arm 100 is a planar structure, so as to be convenient for being attached to a planar placing surface such as a desktop or a workbench. Further, a spacer 600 is disposed between the pivot arm 100 and the working rail 400, and by disposing the spacer 600, the pivot 110 can be disposed away from the printer body 500, so that the printer can be prevented from interfering with the pivot arm 100 due to its large size.
Referring to fig. 3 and 4, since the diversified demands for products and the simple operation of simple humanization are more and more demanding in the digital printing machine industry, the thickness of the printing workpiece 700 is different from product to product, the utility model discloses because the working track 400 is connected with the fixing mechanism 200 through the rotating arm 100 in a rotating manner, when changing the printing workpiece 700 with thicker/thinner thickness, because the position of the rotating shaft 110 is limited, the working track 400 can be tilted/lifted down, and the printing effect is affected, optionally, the fixing mechanism 200 includes: the rotating arm 100 is rotatably connected with the lifting assembly 220 through the rotating shaft 110. The rotating shaft 110 and the lifting assembly 220 may be rotatably connected or fixedly connected. When the rotating arm 100 is fixedly connected with the lifting assembly 220, the rotating shaft 110 is rotatably connected with the rotating arm. Compared with the conventional lifting assembly 220, the lifting assembly 220 has a simple structure, does not need power supply, and is rotatably connected with the lifting assembly 220 through the rotating arm 100. When printing the printing work piece 700 of different thickness, through the high state of adjustment back track 400 of adjustment lift subassembly 220 and then adjustment, guarantee that track 400 all can keep the horizontality when printing the product of different thickness. Optionally, the lifting assembly 220 may be an electric screw, a lifting cylinder, a hydraulic telescopic rod, or other common lifting mechanisms in the prior art. Preferably, the lifting assembly 220 includes a fixing shaft 221 and an adjusting clip 222, the fixing shaft 221 is connected to the fixing base 210 and extends upward from the fixing base 210, the adjusting clip 222 is fastened to the fixing shaft 221, and the rotating arm 100 is rotatably connected to the rotating shaft 110.
Because the fixing shaft 221 and the rotating shaft 110 need to pass through the adjusting clamp 222, the adjusting clamp 222 is provided with a first adjusting hole for accommodating the fixing shaft 221 and a second rotating hole for accommodating the rotating shaft 110, but when the rotating shaft 110 is processed or processed, the precision of the rotating shaft 110 and the processed hole is not high, so that the rotating shaft 110 is easily in interference fit with the second rotating hole, and the rotating shaft 110 cannot extend into the second rotating hole, in order to solve the above problem, optionally, the adjusting clamp 222 is provided with a first adjusting hole for accommodating the fixing shaft 221, a first adjusting slit 230 for controlling the aperture of the first adjusting hole is arranged on the side surface of the first adjusting hole, specifically, the adjusting clamp 222 is provided with a first adjusting slit 230 for penetrating through the wall surface of the first adjusting hole and the outer surface of the adjusting clamp, the first adjusting slit 230 penetrates through the adjusting clamp 222 along the axial direction of the fixing shaft 221, and a first bolt assembly penetrates through the adjusting clamp 222, so as to adjust the width of the first adjustment slit 230, and the first adjustment hole clamps the fixing shaft 221. The first bolt assembly penetrates the first adjusting slot 230 to clamp the adjusting clamp on the fixing column. The tightness degree of the fixing shaft on the first adjusting hole is adjusted by fastening and adjusting the first adjusting slit 230 through the first bolt assembly. When the adjusting clamp is in work, the adjusting clamp 222 is clamped and fixed in the first adjusting hole through the first bolt component, the adjusting clamp can be prevented from loosening during work, the work track and the warehousing track are accurately butted, when printing workpieces 700 with different thicknesses are replaced, the first bolt component is only required to be loosened, the height of the adjusting clamp 222 is adjusted to balance the work track, then the first bolt component is fixed, and the adjustment of the adjusting clamp is completed.
The warehousing track is also provided with a fixing foot for adjusting the height of the warehousing track opposite to the working track, the fixing foot is provided with a threaded through hole, an adjusting bolt is in threaded connection with the fixing foot through the threaded through hole, and the adjusting bolt penetrates through the threaded through hole to abut against the placing surface. When the height of the warehousing track needs to be adjusted, only the adjusting bolt on the fixing foot needs to be rotated, and the height of the adjusting bolt penetrating through the thread of the fixing foot is the raised height of the warehousing track. Preferably, the height of the warehousing track is flush with that of the working track, and it is expected that printing on the printing workpiece can be realized even if the height of the warehousing track is slightly less than 1-3mm of the working track. Further, in order to ensure that the warehousing track 300 is more stable, the number of the fixing pins is four, and the four fixing pins 330 are respectively installed at the end portions of the warehousing slide rail 310. Further, be equipped with bar hole 211 on the fixed block, pass bar hole 211 through bolt assembly and place a threaded connection, can make the installation of warehousing slide rail 310 more firm, can not take place the displacement under the drive of printing machine body.
Because the warehousing track 300 and the accessories of the warehousing track 300 need to be installed, and sometimes the fixing seat 210 can be fixed with the threaded hole on the placing surface, in order to ensure that the fixing seat 210 avoids interference with other accessories and enable the fixing seat 210 to be better matched with the threaded hole, the adjusting clamp is provided with a second rotating hole for accommodating the rotating shaft, the side surface of the second rotating hole is provided with a second adjusting seam for controlling the aperture of the second rotating hole, specifically, the adjusting clamp 222 is provided with a second adjusting seam which penetrates through the wall surface of the second rotating hole and the outer surface of the adjusting clamp, the second adjusting seam penetrates through the adjusting clamp 222 along the axial direction of the rotating shaft 110, and a second bolt component penetrates through the adjusting clamp 222 to adjust the width of the second adjusting seam so as to clamp the rotating shaft 110 through the second adjusting hole. The second bolt assembly penetrates through the second adjusting slot to clamp and fix the adjusting clamp on the rotating shaft 110. When the fixing base 210 needs to be adjusted, only the second bolt assembly needs to be loosened, the adjusting clamp 222 slides along the rotating shaft 110 to drive the position of the fixing base 210 to move, and then the second bolt assembly is fastened, so that the adjustment of the fixing base is completed, and the structure is simple and reliable. In order to facilitate the adjusted fixing seat 210 to be able to lie on the placing surface, optionally, the rotating shaft 110 is disposed parallel to the placing surface and the rotating shaft 110 is disposed perpendicular to the working track 400. The above arrangement of the rotating shaft 110 can ensure that the adjusting clamp 222 can be attached to the placing surface no matter how the fixing base 210 slides on the rotating shaft 110.
The fixing seat 210 is provided with a fixing hole for accommodating the fixing shaft 221, a third adjusting seam for controlling the aperture of the fixing hole is arranged on the side surface of the fixing hole, specifically, the fixing seat 210 is provided with a third adjusting seam which penetrates through the wall surface of the fixing hole and the outer surface of the fixing seat 210, the third adjusting seam penetrates through the fixing seat 210 along the axial direction of the fixing shaft 221, and a third bolt assembly penetrates through the fixing seat 210 to adjust the width of the third adjusting seam so that the fixing shaft 221 is clamped and fixed by the third adjusting hole. The third bolt assembly penetrates through the third adjusting slot to clamp and fix the fixing shaft 221 on the fixing seat 210. The third bolt assembly is arranged, so that the fixing seat and the fixing shaft can be conveniently detached. When the machining error of the rotating shaft 110 and/or the fixed shaft 221 is large, and the rotating shaft 110 is in interference fit with the second rotating hole, because the adjusting clamp 222 has a certain tension, the second rotating hole can stretch the rotating shaft 110 into the second rotating hole by opening and closing the second adjusting seam 231, the first adjusting hole can stretch the fixed shaft 221 into the first adjusting hole by opening and closing the first adjusting seam 230, and the machining error of the rotating shaft 110 and/or the fixed shaft 221 can still be used within a certain range. Through the fastening of bolt assembly to the adjustment seam, even produced wearing and tearing after fixed axle 221 and pivot 110 are dismantled many times, the aperture of the adjustment second rotation hole, first adjustment hole and the fixed orifices of bolt assembly ability by a small margin for the second rotates the change that the hole can adapt to pivot 110, and first adjustment hole and fixed orifices can adapt to the change of fixed axle 221, great extension fixed establishment 200's life. Further, each adjustment slit 230 has at least two bolt holes 240 penetrating through the adjustment slit 230, and correspondingly, each adjustment slit 230 is fixed by more than two sets of bolt assemblies, so as to more firmly fix the fixing shaft 221 and/or the rotating shaft 110.
In the prior art, a hinge is usually adopted to rotatably connect a rotating arm and a rotating shaft, but the precision of the rotating shaft of the hinge is not high, so that the inner diameter of the inner periphery of the hinge is usually 3-5mm lower than the inner diameter of the outer shaft of the hinge, and when the hinge is applied to a working rail, the working rail and a warehousing rail cannot be leveled, and meanwhile, because the working rail is longer and heavier, the hinge is easy to deform when rotating on an object bearing high weight, and further the working rail and the warehousing rail cannot be leveled easily; in this application, be equipped with first rotation hole on the rocking arm, first rotation hole pass through bearing assembly with the axis of rotation rotates to be connected, and bearing assembly 120 includes outer ring bearing 121 and inner ring bearing 122, first rotation hole endotheca is equipped with outer ring bearing 121, and inner ring bearing 122 is established to outer ring bearing 121 endotheca, passes inner ring bearing 122 and pivot 110 one end fixed connection through the bolt, the second that the pivot 110 other end passed the adjustment and presss from both sides 222 rotates the hole and is connected with the adjustment clamp 222 rotation. The bearing assembly 120 is combined with the rotary shaft 110, so that deformation is not generated even on a heavy working rail, thereby achieving the purpose of facilitating the rotation of the working rail 400 with the fixing mechanism 200 and ensuring the alignment of the working rail 400 with the warehousing rail. The type of bearing assembly 120 is limited herein and may be a deep groove ball bearing or a self-aligning roller bearing. In one embodiment, the bearing assembly 120 includes an outer ring bearing 121 and an inner ring bearing 122, the outer ring bearing 121 is sleeved in the first rotating hole, the inner ring bearing 122 is sleeved in the outer ring bearing 121, and the rotation of the rotating arm 100 and the adjusting clamp 222 is realized by fixedly connecting the inner ring bearing 122 and the adjusting clamp 222. In order to prevent the outer ring bearing 121 from moving and falling off during rotation, an outer folded edge is disposed at the end of the outer ring bearing 121, and the outer folded edge abuts against the adjusting clamp 222, so as to prevent the outer ring bearing 121 from falling off from the adjusting clamp 222 during rotation.
Further, in order to fix the fixing seat 210 with the placing surface, a strip-shaped hole 211 is formed in the fixing seat 210, the bolt assembly is fixedly connected with a threaded hole corresponding to the placing surface through the strip-shaped hole 211, optionally, the number of the strip-shaped holes 211 is two, the two strip-shaped holes 211 are arranged in parallel, and a group of bolt assemblies can be fixed on each strip-shaped hole 211 at least by arranging the two strip-shaped holes 211, so that at least two groups of bolt assemblies fixed with the placing surface are arranged on the fixing seat 210, and the firmness of the fixing seat 210 is guaranteed.
Referring to fig. 3, the warehousing track 300 includes two symmetrically disposed warehousing slide rails 310, and the two warehousing slide rails 310 are fixedly connected by a warehousing straining beam 320; in order to keep the two symmetrical warehousing slide rails 310 parallel to each other, the warehousing slide rails 310 are fixedly connected through the warehousing tension beams 320, so that the two warehousing slide rails 310 can be arranged in parallel, the number of the warehousing tension beams 320 is more than one, in some embodiments, the warehousing tension beams 320 are formed by drawing planar tension bodies, such as square tension bodies, rectangular tension bodies, circular tension bodies and other structures, the warehousing tension beams 320 are arranged at the end parts of the bag warehousing track rails 300, the end surfaces of the two ends of the warehousing tension beams 320 abut against the side surfaces of the warehousing slide rails 310, and the warehousing tension beams 320 are fixedly connected with the warehousing slide rails 310, at this time, the warehousing tension beams 320 not only can play a role in arranging the two warehousing slide rails 310 in parallel, but also can play a role in limiting the printer body 500 to move out of the track.
Similarly, referring to fig. 3 again, the working track 400 includes two symmetrically disposed working slide rails 410, and the two working slide rails 410 are fixedly connected by a working tie beam 420; in order to keep the two symmetrical work sliding rails 410 parallel to each other, the work sliding rails 410 are fixedly connected through the work tension beam 420, so that the two work sliding rails 410 can be arranged in parallel, the number of the work tension beams 420 is more than one, in some embodiments, the work tension beam 420 is formed by pulling a planar pull-up body, such as a square pull body, a rectangular pull body, a circular pull body and the like, the work tension beam 420 is arranged at the end of the work track rail 400, the end faces of the two ends of the work tension beam 420 abut against the side faces of the work sliding rails 410, the work tension beam 420 is fixedly connected with the work sliding rails 410, and at the moment, the work tension beam 420 can play a role in arranging the two work sliding rails 410 in parallel and can play a role in limiting the printer body 500 to move out of the track.
Since the picking and placing of the printed workpiece 700 are all completed by lifting the working rail 400, generally, an operator can lift the working draw beam 420 to pick and place the printed workpiece 700, in order to lift the working draw beam 420 more conveniently, optionally, a handle 430 is fixedly installed on the working draw beam 420, and further, the handle 430 is disposed towards a side away from the working rail 400.
The utility model discloses a digital printer can advance accurate location on the track, single can print the operation, and is more convenient to printer body 500 can only put in storage rail 300 with slide on the work rail 400, also play very important protection to the protection of equipment, can not damage digital printer because of the maloperation that shifts out digital printer. When printing large workpieces, the number of hands is not increased, one person can easily finish the printing operation, and the printing workpieces 700 with different sizes can be printed. The printing work 700 can be quickly changed and the entering track 300 is not interfered when the order is changed.
The working process of the warehousing quick ticket changing device of the digital printer is as follows:
when a printing workpiece 700 needs to be placed in, the printer main body is moved into the warehousing rail 300, a worker lifts the working rail 400 through the handle 430, the printing workpiece 700 is placed below the working rail 400, the working rail 400 is then placed down to press the printing workpiece 700, the printer main body is moved into the end part of the working draw beam 420 of the working rail 400 to start the printer main body to print the printing workpiece 700 below, the printer main body moves towards the warehousing rail 300 to print the printing workpiece 700, the printer main body enters the warehousing rail 300 after printing is completed, the worker lifts the working rail 400, takes out the printing workpiece 700 and then places a new printing workpiece 700 below the working rail 400, and printing of the printing workpiece 700 is completed.
The above is only the optional embodiment of the present invention, and not therefore the limit of the patent scope of the present invention, all of which are in the concept of the present invention, the equivalent structure transformation of the content of the specification and the drawings is utilized, or the direct/indirect application is included in other related technical fields in the patent protection scope of the present invention.

Claims (10)

1. The utility model provides a quick device that trades single of putting in storage of digital printer which characterized in that includes:
warehousing the track; and
the working track is butted with the warehousing track;
the printing workpiece is placed below the working track, and the printer body moves on the warehousing track and the working track.
2. The warehousing fast ticket changing device of a digital printer as claimed in claim 1, wherein the warehousing fast ticket changing device of a digital printer further comprises:
the fixing mechanism is fixedly arranged on the placing surface; and
the rocking arm, the rocking arm with work track fixed connection, the rocking arm through the pivot with fixed establishment rotates the connection, the axis of pivot is higher than the height of work track.
3. The warehousing fast ticket changing device of a digital printer as claimed in claim 2, wherein said fixing mechanism comprises: the fixing base with install lifting unit on the fixing base, the rocking arm pass through the pivot with lifting unit rotates and connects.
4. The device for rapidly changing the order in a warehouse of a digital printer as claimed in claim 3, wherein the lifting assembly comprises a fixed shaft and an adjusting clamp, the fixed shaft is connected with the fixed seat and extends upwards from the fixed seat, the adjusting clamp is clamped on the fixed shaft, and the rotating arm is rotatably connected with the rotating shaft.
5. The device for fast changing the warehousing entry of a digital printer as claimed in claim 4, wherein the tumbler is provided with a first rotation hole, and the first rotation hole is rotatably connected to the rotation shaft through a bearing assembly.
6. The device for rapidly changing the entry of the digital printer as claimed in claim 4, wherein the adjusting clip is provided with a first adjusting hole for receiving the fixing shaft and a first adjusting slit passing through a wall surface of the first adjusting hole and an outer surface of the adjusting clip, the first adjusting slit passes through the adjusting clip in an axial direction of the fixing shaft, and a first bolt assembly passes through the adjusting clip to adjust a width of the first adjusting slit, so that the fixing shaft is clamped by the first adjusting hole.
7. The warehousing fast document changing device of a digital printer as claimed in claim 4, wherein the adjusting clamp is provided with a second rotating hole for accommodating the rotating shaft and a second adjusting slit penetrating through a wall surface of the second rotating hole and an outer surface of the adjusting clamp, the second adjusting slit penetrates through the adjusting clamp along an axial direction of the rotating shaft, and a second bolt assembly penetrates through the adjusting clamp to adjust a width of the second adjusting slit so as to clamp the rotating shaft by the second rotating hole.
8. The warehousing rapid order changing device of a digital printer according to claim 3, characterized in that the outside of the warehousing track is provided with a fixed foot, the fixed foot is provided with a threaded through hole, and the adjusting bolt passes through the threaded through hole to abut against the placing surface.
9. The warehousing fast order-changing device of a digital printer according to claim 1, characterized in that the warehousing track comprises two symmetrically arranged warehousing slide rails, and the two warehousing slide rails are fixedly connected through a warehousing straining beam; the working track comprises two symmetrically arranged working slide rails which are fixedly connected through a working pull beam; the two working slide rails are respectively butted with the two warehousing slide rails.
10. The device for quickly changing the entering library of a digital printer as claimed in claim 9, wherein a handle is provided on the working draw beam.
CN202120613455.6U 2021-03-25 2021-03-25 Quick bill changing device for digital printer Active CN215206942U (en)

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CN202120613455.6U CN215206942U (en) 2021-03-25 2021-03-25 Quick bill changing device for digital printer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120613455.6U CN215206942U (en) 2021-03-25 2021-03-25 Quick bill changing device for digital printer

Publications (1)

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CN215206942U true CN215206942U (en) 2021-12-17

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Family Applications (1)

Application Number Title Priority Date Filing Date
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CN (1) CN215206942U (en)

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