CN216583378U - A mechanism is collected to label for label detection line - Google Patents
A mechanism is collected to label for label detection line Download PDFInfo
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- CN216583378U CN216583378U CN202122900162.9U CN202122900162U CN216583378U CN 216583378 U CN216583378 U CN 216583378U CN 202122900162 U CN202122900162 U CN 202122900162U CN 216583378 U CN216583378 U CN 216583378U
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- pinch roller
- conveying surface
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Abstract
The utility model relates to a label collecting mechanism for a label detection line, which belongs to the field of label production equipment and comprises a rack, wherein a conveying mechanism is arranged on the rack, the conveying mechanism comprises a first rotating shaft and a second rotating shaft which are arranged at the left and right, the first rotating shaft and the second rotating shaft are arranged along the front and back direction and are rotatably arranged on the rack, an annular conveying belt is sleeved on the first rotating shaft and the second rotating shaft, and a conveying surface is formed on the upper surface of the annular conveying belt; still rotationally be provided with the pinch roller in the frame, the pinch roller is located the top on the right side of conveying surface, just the axis of pinch roller sets up along the fore-and-aft direction, the lower extreme of pinch roller with conveying surface butt, conveying surface is located the part on the right side of the lower extreme of pinch roller forms the portion of accepting. The utility model can facilitate the collection of the labels of the label detection line.
Description
Technical Field
The utility model relates to the field of label production equipment, in particular to a label collecting mechanism for a label detection line.
Background
In the production field, various products are attached with labels, such as clothes, and identification codes are sprayed on the labels. In the production process of the label, the identification code on the label needs to be checked, the existing checking mode is to detect the identification code on the label by using a label detecting line, wherein the label detecting line comprises a conveying belt and a code detector arranged above the conveying belt, and the code detector is used for detecting the label conveyed by the conveying belt and sequentially passing through the lower part of the conveying belt. In order to facilitate storage and transportation of labels, after the labels are detected, the labels conveyed by the conveyor belt need to be collected in a stacked manner so as to facilitate storage and transportation of the labels.
SUMMERY OF THE UTILITY MODEL
Based on this, it is necessary to provide a label collecting mechanism for a label detecting line, which includes a frame, wherein a conveying mechanism is arranged on the frame, the conveying mechanism includes a first rotating shaft and a second rotating shaft which are arranged left and right, the first rotating shaft and the second rotating shaft are arranged along a front-back direction and rotatably arranged on the frame, an annular conveying belt is sleeved on the first rotating shaft and the second rotating shaft, and a conveying surface is formed on the upper surface of the annular conveying belt; still rotationally be provided with the pinch roller in the frame, the pinch roller is located the top on the right side of conveying surface, just the axis of pinch roller sets up along the fore-and-aft direction, the lower extreme of pinch roller with conveying surface butt, conveying surface is located the part on the right side of the lower extreme of pinch roller forms the portion of accepting.
The utility model is used for matching with a label detection line, and the conveying speed of the conveying surface of the utility model is lower than that of a conveying belt of the label detection line. In the utility model, the bearing part is butted with the conveyer belt of the label detection line and is used for receiving the labels from the conveyer belt of the label detection line, and the receiving process comprises the following steps: the labels are conveyed by the conveying belt to move rapidly, when the labels move to the left end of the conveying belt, the labels are conveyed to the bearing part due to inertia until the end parts of the labels abut against the lower end of the pressing wheel, then the labels are conveyed on the conveying surface along with the conveying speed of the conveying surface under the movement of the annular conveying belt and the rotation conveying of the pressing wheel, and because the conveying speed of the conveying surface is smaller than the conveying speed of the conveying belt of the label detection line, subsequent labels are stacked above the right side of the previous label, therefore, the labels are conveyed on the conveying surface in a staggered and stacked mode.
The height of the right end of the conveying surface is preferably slightly lower than the height of the left end of the conveying belt of the label detection line, so that the labels can be smoothly thrown onto the bearing part by the conveying belt.
The conveying surface is formed on the upper surface of the annular conveying belt which surrounds the first rotating shaft and the second rotating shaft, the annular conveying belt on the first rotating shaft and the second rotating shaft can be moved by anticlockwise rotation of the first rotating shaft and the second rotating shaft, and then the conveying surface formed on the annular conveying belt can have a conveying direction from right to left.
Further, a mounting frame is arranged on the rack corresponding to the pinch roller, the mounting frame comprises a support fixedly arranged on the rack, a mounting round rod is fixedly arranged on the support, the mounting round rod is arranged along the front-back direction, a sleeve is rotatably sleeved on the mounting round rod, a connecting rod is fixedly arranged on the sleeve and is perpendicular to the mounting round rod, a third rotating shaft is rotatably arranged at one end, away from the mounting round rod, of the connecting rod, and the pinch roller and the third rotating shaft are coaxially and fixedly arranged on the third rotating shaft; the sleeve is further provided with an adjusting threaded hole penetrating through the side wall of the sleeve, and an adjusting bolt is arranged in the adjusting threaded hole.
The connecting rod is rotatably sleeved on the installation round rod through the sleeve, and the sleeve is fixed on the installation round rod through the adjusting bolt, so that the angle of the sleeve relative to the installation round rod can be adjusted at will, the height of the lower end of the pressing wheel relative to the conveying surface can be adjusted, and further the height of a gap between the pressing wheel and the conveying surface can be adjusted according to the thickness of the label, so that the utility model can be suitable for collecting labels with different thicknesses. For example, when the thickness of the label is thick, the pressing wheel can be moved upwards so as to prevent the label from being unable to pass through the pressing wheel with the lower end abutting against the conveying surface.
Wherein, the third pivot can rotationally set up on the connecting rod through bearing structure: the connecting rod is provided with a mounting hole corresponding to the third rotating shaft, and the third rotating shaft is inserted into the mounting hole and is rotatably connected with the mounting hole through a bearing.
Furthermore, a baffle is vertically arranged above the conveying surface, the baffle is arranged on the rack in a left-right sliding mode through a sliding mechanism, and the lower end of the baffle is abutted to the conveying surface.
Wherein, but the setting of baffle through glide machanism horizontal slip is in the frame, consequently, through making the baffle move to fixed position department from a left side to the right side, can pile up the crisscross range upon range of label of being carried by the transport face in the fixed position department of transport face, at this moment, operating personnel can take away the label of piling up in this fixed position department, and need not to walk to the left side of transport face and promote the operation in order to pile up the label to the label, can make things convenient for operating personnel to the operation of taking of label.
Furthermore, the sliding mechanism comprises a rodless cylinder fixedly arranged on the rack, and the baffle is connected with the rodless cylinder through a connecting frame.
Further, annular conveyor belt is including the first annular conveyor belt and the second annular conveyor belt that set up from beginning to end, the interval formation of having between first annular conveyor belt and the second annular conveyor belt is windowed, the lower extreme of baffle corresponds the windowing is provided with the pin, the pin extends to in the windowing.
Wherein, the pin of baffle below extends to in the windowing, consequently, when the baffle removed, the existence of pin can ensure that the baffle can promote the label on the conveying face smoothly, can prevent to lead to the label to pass the clearance between baffle and the conveying belt because of annular conveying belt's downward deformation.
Further, the axes of the first rotating shaft and the second rotating shaft are located in the same horizontal plane, and correspondingly, the conveying surface is horizontally arranged.
Furthermore, a driving motor is arranged on the rack and is in driving connection with the first rotating shaft.
The driving motor is used for driving the first rotating shaft to rotate, and then the conveying surface is driven to move.
The principle and effect of the present invention will be further explained by combining the above technical scheme and the accompanying drawings:
in the utility model, the bearing part is butted with the conveyer belt of the label detection line and is used for receiving the labels from the conveyer belt of the label detection line, and the receiving process comprises the following steps: the labels are conveyed by the conveying belt to move rapidly, when the labels move to the left end of the conveying belt, the labels are conveyed to the bearing part due to inertia until the end parts of the labels abut against the lower end of the pressing wheel, then the labels are conveyed on the conveying surface along with the conveying speed of the conveying surface under the movement of the annular conveying belt and the rotation conveying of the pressing wheel, and because the conveying speed of the conveying surface is smaller than the conveying speed of the conveying belt of the label detection line, subsequent labels are stacked above the right side of the previous label, therefore, the labels are conveyed on the conveying surface in a staggered and stacked mode.
Drawings
FIG. 1 is a schematic top view of a label collecting mechanism for a label detecting line according to an embodiment of the present invention;
FIG. 2 is a schematic cross-sectional view of a label collecting mechanism for a label detecting line according to an embodiment of the present invention;
fig. 3 is a schematic structural diagram of the label of the embodiment of the utility model when the label is alternatively laminated on the conveying surface.
Description of reference numerals:
1-frame, 21-first rotating shaft, 22-second rotating shaft, 23-annular conveying belt, 231-first annular conveying belt, 232-second annular conveying belt, 3-baffle, 31-stop rod, 4-rodless cylinder, 5-connecting frame, 61-bracket, 62-installation round rod, 71-sleeve, 712-adjusting bolt, 72-connecting rod, 73-third rotating shaft, 74-pinch roller, 8-driving motor and 9-label.
Detailed Description
For the convenience of understanding of those skilled in the art, the present invention will be described in further detail below with reference to the accompanying drawings and examples:
as shown in fig. 1-3, a label collecting mechanism for a label detecting line includes a frame 1, a conveying mechanism is disposed on the frame 1, the conveying mechanism includes a first rotating shaft 21 and a second rotating shaft 22 disposed at left and right sides, the first rotating shaft 21 and the second rotating shaft 22 are disposed along a front-back direction and rotatably disposed on the frame 1, an annular conveying belt 23 is sleeved on the first rotating shaft 21 and the second rotating shaft 22, and a conveying surface is formed on an upper surface of the annular conveying belt 23; still rotationally be provided with pinch roller 74 on frame 1, pinch roller 74 is located the right side of conveying surface's top, and the axis of pinch roller 74 sets up along fore-and-aft direction, the lower extreme of pinch roller 74 with conveying surface butt, conveying surface is located the part on the right side of the lower extreme of pinch roller 74 forms the accepting part.
The utility model is used for matching with a label 9 detection line, and the conveying speed of the conveying surface of the utility model is less than the conveying speed of the conveying belt of the label 9 detection line. In the utility model, the bearing part is butted with the conveyer belt of the label 9 detection line and is used for receiving the labels 9 from the conveyer belt of the label 9 detection line, and the receiving process is as follows: the labels 9 are conveyed by the conveying belt to move rapidly, when the labels 9 move to the left end of the conveying belt, the labels 9 are conveyed to the bearing part due to inertia until the end parts of the labels 9 abut against the lower end of the pressing wheel 74, then, under the movement of the annular conveying belt 23 and the rotation conveying of the pressing wheel 74, the labels 9 are conveyed on the conveying surface along with the conveying speed of the conveying surface, and the conveying speed of the conveying surface is smaller than the conveying speed of the conveying belt of the label 9 detection line, so that the subsequent labels 9 are stacked above the right side of the previous label 9, therefore, the labels 9 are conveyed on the conveying surface in a staggered and stacked mode, when the labels 9 need to be collected, an operator pushes the labels 9 from left to right, the labels 9 can be stacked together neatly, the collection of the labels 9 is facilitated, and the collection speed of the labels 9 is improved.
The right end of the conveying surface is preferably slightly lower than the left end of the conveyor belt for detecting the labels 9, so that the labels 9 can be smoothly thrown onto the receiving portion by the conveyor belt.
Wherein, the upper surface of the endless conveyor belt 23 encircling the first rotating shaft 21 and the second rotating shaft 22 forms a conveying surface, the endless conveyor belt 23 thereon can be moved by the counterclockwise rotation of the first rotating shaft 21 and the second rotating shaft 22, and the conveying surface formed on the endless conveyor belt 23 can have a conveying direction from right to left.
In one embodiment, a mounting rack is arranged on the rack 1 corresponding to the pressing wheel 74, the mounting rack includes a bracket 61 fixedly arranged on the rack 1, a mounting round rod 62 is fixedly arranged on the bracket 61, the mounting round rod 62 is arranged along the front-back direction, a sleeve 71 is rotatably sleeved on the mounting round rod 62, a connecting rod 72 is fixedly arranged on the sleeve 71, the connecting rod 72 is arranged perpendicular to the mounting round rod 62, a third rotating shaft 73 is rotatably arranged at one end of the connecting rod 72 far away from the mounting round rod 62, and the pressing wheel 74 and the third rotating shaft 73 are coaxially and fixedly arranged on the third rotating shaft 73; an adjusting threaded hole penetrating through the side wall of the sleeve 71 is further formed in the sleeve 71, and an adjusting bolt 712 is arranged in the adjusting threaded hole.
In this embodiment, the connecting rod 72 is rotatably sleeved on the mounting round rod 62 through the sleeve 71, and the sleeve 71 is fixed on the mounting round rod 62 through the adjusting bolt 712, so that the angle of the sleeve 71 relative to the mounting round rod 62 can be adjusted at will, the height of the lower end of the pressing wheel 74 relative to the conveying surface can be adjusted, and further the height of the gap between the pressing wheel 74 and the conveying surface can be adjusted according to the thickness of the label 9, so that the utility model can be suitable for collecting labels 9 with different thicknesses. For example, when the thickness of the label 9 is thick, the pressing roller 74 may be moved upward so that the label 9 cannot pass the pressing roller 74 whose lower end abuts the conveying surface.
Wherein, the third rotating shaft 73 can be rotatably arranged on the connecting rod 72 through a bearing structure: the connecting rod 72 is provided with a mounting hole corresponding to the third rotating shaft 73, and the third rotating shaft 73 is inserted into the mounting hole and rotatably connected with the mounting hole through a bearing.
In one embodiment, a baffle 3 is vertically arranged above the conveying surface, the baffle 3 is arranged on the rack 1 in a left-right sliding manner through a sliding mechanism, and the lower end of the baffle 3 is abutted to the conveying surface.
In this embodiment, but baffle 3 passes through the setting of glide machanism horizontal slip on frame 1, consequently, through making baffle 3 move to fixed position department from a left side to the right, can pile up the crisscross range upon range of label 9 that is carried by the transport face in the fixed position department of transport face, at this moment, operating personnel can take away the label 9 that piles up in this fixed position department, and need not to walk to the left side of transport face and promote the operation in order to pile up label 9 to label 9, can make things convenient for operating personnel to the operation of taking of label 9.
In one embodiment, the sliding mechanism includes a rodless cylinder 4 fixedly disposed on the frame 1, and the baffle 3 is connected to the rodless cylinder 4 through a connecting frame 5.
One of them kind of embodiment, annular conveyor belt 23 is including the first annular conveyor belt 231 and the second annular conveyor belt 232 that set up from beginning to end, it forms windowing to have the interval between first annular conveyor belt 231 and the second annular conveyor belt 232, the lower extreme of baffle 3 corresponds it is provided with pin 31 to window, pin 31 extends to in the windowing.
In this embodiment, the stop rod 31 below the baffle 3 extends into the window, so that when the baffle 3 moves, the stop rod 31 can ensure that the baffle 3 can smoothly push the label 9 on the conveying surface, and the label 9 can be prevented from passing through the gap between the baffle 3 and the conveying belt due to the downward deformation of the annular conveying belt 23.
In one embodiment, the axes of the first rotating shaft 21 and the second rotating shaft 22 are located in the same horizontal plane, and accordingly, the conveying surface is horizontally arranged.
In one embodiment, a driving motor 8 is arranged on the frame 1, and the driving motor 8 is in driving connection with the first rotating shaft 21.
In this embodiment, the driving motor 8 is used for driving the first rotating shaft 21 to rotate, so as to drive the conveying surface to move.
The above examples only show some embodiments of the present invention, and the description thereof is more specific and detailed, but not to be construed as limiting the scope of the utility model. It should be noted that, for a person skilled in the art, several variations and modifications can be made without departing from the inventive concept, which falls within the scope of the present invention. Therefore, the protection scope of the present patent shall be subject to the appended claims.
Claims (7)
1. A label collecting mechanism for a label detection line is characterized by comprising a rack, wherein a conveying mechanism is arranged on the rack and comprises a first rotating shaft and a second rotating shaft which are arranged on the left and right sides, the first rotating shaft and the second rotating shaft are arranged along the front and back direction and are rotatably arranged on the rack, an annular conveying belt is sleeved on the first rotating shaft and the second rotating shaft, and a conveying surface is formed on the upper surface of the annular conveying belt; still rotationally be provided with the pinch roller in the frame, the pinch roller is located the top on the right side of conveying surface, just the axis of pinch roller sets up along the fore-and-aft direction, the lower extreme of pinch roller with conveying surface butt, conveying surface is located the part on the right side of the lower extreme of pinch roller forms the portion of accepting.
2. The label collecting mechanism for the label detecting line according to claim 1, wherein a mounting frame is arranged on the frame corresponding to the pinch roller, the mounting frame comprises a bracket fixedly arranged on the frame, a mounting round bar is fixedly arranged on the bracket, the mounting round bar is arranged along the front-back direction, a sleeve is rotatably sleeved on the mounting round bar, a connecting rod is fixedly arranged on the sleeve, the connecting rod is arranged perpendicular to the mounting round bar, a third rotating shaft is rotatably arranged at one end of the connecting rod away from the mounting round bar, and the pinch roller and the third rotating shaft are coaxially and fixedly arranged on the third rotating shaft; the sleeve is further provided with an adjusting threaded hole penetrating through the side wall of the sleeve, and an adjusting bolt is arranged in the adjusting threaded hole.
3. The label collecting mechanism for the label detecting line according to claim 1, wherein a baffle is vertically arranged above the conveying surface, the baffle is slidably arranged on the rack from left to right by a sliding mechanism, and the lower end of the baffle abuts against the conveying surface.
4. The label collection mechanism for a label detecting line of claim 3, wherein the sliding mechanism comprises a rodless cylinder fixedly disposed on the frame, and the baffle is connected to the rodless cylinder through a connecting frame.
5. The label collecting mechanism for the label detecting line according to claim 3, wherein the endless conveyor belts include a first endless conveyor belt and a second endless conveyor belt which are arranged in a front-back direction, a window is formed between the first endless conveyor belt and the second endless conveyor belt at a spacing, a stop lever is arranged at a lower end of the baffle corresponding to the window, and the stop lever extends into the window.
6. The label collecting mechanism for the label detecting line according to claim 1, wherein axes of the first rotating shaft and the second rotating shaft are located in a same horizontal plane, and accordingly, the conveying surface is horizontally disposed.
7. The label collecting mechanism for the label detecting line according to claim 1, wherein a driving motor is provided on the frame, and the driving motor is drivingly connected to the first rotating shaft.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122900162.9U CN216583378U (en) | 2021-11-24 | 2021-11-24 | A mechanism is collected to label for label detection line |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202122900162.9U CN216583378U (en) | 2021-11-24 | 2021-11-24 | A mechanism is collected to label for label detection line |
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Publication Number | Publication Date |
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CN216583378U true CN216583378U (en) | 2022-05-24 |
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CN202122900162.9U Active CN216583378U (en) | 2021-11-24 | 2021-11-24 | A mechanism is collected to label for label detection line |
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2021
- 2021-11-24 CN CN202122900162.9U patent/CN216583378U/en active Active
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