CN210527751U - A single piece-rate system for mixing article arrangement - Google Patents

A single piece-rate system for mixing article arrangement Download PDF

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Publication number
CN210527751U
CN210527751U CN201921029175.XU CN201921029175U CN210527751U CN 210527751 U CN210527751 U CN 210527751U CN 201921029175 U CN201921029175 U CN 201921029175U CN 210527751 U CN210527751 U CN 210527751U
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belt
conveying roller
conveying
conveying device
roller group
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CN201921029175.XU
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Chinese (zh)
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吴家春
霍春江
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Suzhou Zihong Intelligent Logistics Equipment System Co ltd
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Suzhou Zihong Intelligent Logistics Equipment System Co ltd
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Abstract

The utility model discloses a single piece separating system for mixed article arrangement and arrangement, which comprises a frame, wherein both sides of the top surface of the frame are provided with guard plates, the middle part of the top surface of the frame is sequentially provided with a belt transmission device, a classification mechanism and an arrangement mechanism along the article moving direction, and the frames at both sides of the belt transmission device are sequentially provided with a belt feeding mechanism and a material distribution mechanism along the article moving direction; the belt feeding mechanism comprises two first conveying roller groups which are positioned at two sides of the belt conveying device and roll towards the belt conveying device and a first conveying roller group driving device arranged at the bottom of the rack; the material distributing mechanism comprises two second conveying roller sets and a second conveying roller set driving device, wherein the two second conveying roller sets are located on two sides of the belt conveying device and roll towards the guard plate respectively, the second conveying roller set driving device is arranged at the bottom of the rack, and mixed articles are changed into a single-piece queue state from a stacking state through position alignment, shunting, distance control and arraying of the articles, so that the unloading link speed is improved, the manual consumption is reduced, and the circulation speed of the articles and vehicles is improved.

Description

A single piece-rate system for mixing article arrangement
Technical Field
The utility model relates to a commodity circulation letter sorting technical field, concretely relates to a single piece-rate system for mixed goods arrangement is arranged.
Background
With the rapid development of the logistics industry, particularly the express industry, in China, the sorting demand rises rapidly, but most of high-efficiency sorting equipment is high in manufacturing, installation and maintenance cost, so that most of manufacturers are difficult to accept, and low-cost sorting equipment is low in sorting efficiency and accuracy and is not suitable for the sorting industry with large demand and rapid growth, so that the popularization rate of automatic sorting equipment in China is low, and most of automatic sorting equipment is manual sorting.
The existing traditional unloading link needs a large amount of manual work to unload one by one according to requirements to place articles, the requirement on the distance for placing the articles by unloading is high, the speed of the unloading link is low, the time consumption is long, the circulation speed of the articles and vehicles is reduced, and the time and the labor are wasted.
SUMMERY OF THE UTILITY MODEL
To solve the above technical problem, we propose a single-piece separating system for mixed-article collating arrangements, the purpose of which is: through the whole position, the branch road, the accuse interval and the permutation to article, will mix article and change into the single form state of being listed as from piling up the state, improve the link speed of unloading, reduce artificial consumption, improve the circulation speed of article and vehicle.
In order to achieve the above purpose, the technical scheme of the utility model is as follows:
a single piece separating system for mixed article arrangement comprises a rack, wherein two sides of the top surface of the rack are provided with guard plates, the middle part of the top surface of the rack is sequentially provided with a belt conveying device, a classifying mechanism and an arranging mechanism along the article moving direction, and the racks on two sides of the belt conveying device are sequentially provided with a belt feeding mechanism and a distributing mechanism along the article moving direction;
the belt feeding mechanism comprises two first conveying roller groups which are positioned at two sides of the belt conveying device and roll towards the belt conveying device, and a first conveying roller group driving device which is arranged at the bottom of the rack and is axially connected with the first conveying roller groups;
the material distribution mechanism comprises two second conveying roller sets which are positioned at two sides of the belt conveying device and roll towards the guard plate respectively, and a second conveying roller set driving device which is arranged at the bottom of the frame and is axially connected with the second conveying roller sets;
the sorting mechanism is provided with a main channel conveying device corresponding to the belt conveying device, a near channel conveying device corresponding to one second conveying roller group and a secondary channel conveying device corresponding to the other second conveying roller group;
the alignment mechanism comprises a third conveying roller group and a third conveying roller group driving device, wherein the third conveying roller group rolls towards the guard plate, and the third conveying roller group driving device is arranged at the bottom of the rack and is axially connected with the third conveying roller group;
the included angle between the central line of the roller used by the first conveying roller group and the conveying direction of the belt conveying device is thirty-seventy-five degrees;
the included angle between the central line of the roller used by the second conveying roller group and the conveying direction of the belt conveying device is thirty-fifty degrees to seventy-five degrees;
the included angle between the central line of the roller used by the third conveying roller group and the conveying direction of the belt conveying device is thirty-seventy-five degrees;
the guard plates on two sides of the arraying mechanism are provided with sliding rollers corresponding to the articles.
Preferably, the centre line of the roller used in the first set of conveyor rollers makes an angle of seventy-five degrees with the conveying direction of the belt conveyor.
Preferably, the centre line of the roller used in the second set of conveyor rollers makes an angle of seventy-five degrees with the conveying direction of the belt conveyor.
Preferably, the centre line of the roller used in the third set of conveyor rollers makes an angle of seventy-five degrees with the conveying direction of the belt conveyor.
Preferably, the adjacent first conveying roller group and the second conveying roller group are symmetrical to each other.
Through the technical scheme, the utility model conveys articles to the belt conveying device through the first conveying roller group and arranges the original articles on the belt conveying device, thereby realizing the positioning step; the main channel conveying device receives the articles transmitted by the belt conveying device, the second conveying roller set divides the articles without peeling the belt conveying device, and conveys the articles without peeling the belt conveying device to the tops of the near channel conveying device and the secondary channel conveying device, so that the dividing step is realized; when articles are arranged on the near channel conveying device and the secondary channel conveying device, the main channel conveying device stops conveying the articles to the third conveying roller group, the articles are conveyed to the third conveying roller group by the near channel conveying device and the secondary channel conveying device, and after the articles on the near channel conveying device and the secondary channel conveying device are conveyed, the main channel conveying device conveys the articles to the third conveying roller group again, so that the step of controlling the distance is realized; finally, the third conveying roller group pushes the articles to be close to the guard plate on one side, the arrangement step is realized, and the mixed articles are changed from the accumulation state into the single-piece queue state through the steps of position arrangement, shunting, distance control and arrangement of the articles, so that the unloading link speed is improved, the manual consumption is reduced, and the circulation speed of the articles and vehicles 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 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 these drawings without creative efforts.
Fig. 1 is a schematic front view of a single-piece separating system for mixed article collating and arranging according to the present invention;
fig. 2 is a schematic left side view of a single piece separation system for a mixed article collation arrangement as disclosed in the present invention;
FIG. 3 is a schematic perspective view of a single piece separation system for a mixed product collation arrangement as disclosed in the present invention;
FIG. 4 is a schematic top view of a single piece separation system for a mixed product collation according to the present invention;
FIG. 5 is an enlarged view of FIG. 4 at A;
FIG. 6 is an enlarged view of FIG. 4 at B;
fig. 7 is an enlarged view of fig. 4 at C.
The corresponding part names indicated by the numbers and letters in the drawings:
1. the conveying device comprises a frame 11, a guard plate 12, a sliding roller 2, a belt conveying device 31, a main channel conveying device 32, a near channel conveying device 33, a secondary channel conveying device 41, a third conveying roller group 42, a third conveying roller group driving device 51, a first conveying roller group 52, a first conveying roller group driving device 61, a second conveying roller group 62 and a second conveying roller group driving device.
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.
The following describes the embodiments of the present invention in further detail with reference to the schematic drawings.
As shown in fig. 1, fig. 2, fig. 3, fig. 4, fig. 5, fig. 6 and fig. 7, a single piece separating system for mixed article arrangement and arrangement comprises a frame 1, wherein guard plates 11 are arranged on two sides of the top surface of the frame 1, a belt conveying device 2, a sorting mechanism and an arrangement mechanism are sequentially arranged in the middle of the top surface of the frame 1 along the article moving direction, and a belt feeding mechanism and a material distributing mechanism are sequentially arranged on the frames on two sides of the belt conveying device 2 along the article moving direction.
The belt feeding mechanism comprises two first conveying roller sets 51 which are arranged on two sides of the belt conveying device 2 and roll towards the belt conveying device 2, and a first conveying roller set driving device 52 which is arranged at the bottom of the machine frame 1 and is axially connected with the first conveying roller sets 51.
The material separating mechanism comprises two second conveying roller sets 61 which are arranged at two sides of the belt conveying device 2 and roll towards the guard plate 11 respectively, and a second conveying roller set driving device 62 which is arranged at the bottom of the frame 1 and is axially connected with the second conveying roller sets 61.
The sorting mechanism is provided with a main channel conveying device 31 corresponding to the belt conveying device 2, a near channel conveying device 32 corresponding to one second conveying roller group 61 and a secondary channel conveying device 33 corresponding to the other second conveying roller group 61, and the main channel conveying device 31, the near channel conveying device 32 and the secondary channel conveying device 33 are all controlled by photoelectric devices (not shown in the figure).
The aligning mechanism includes a third transport roller group 41 that rolls toward the protector plate 11 and a third transport roller group drive device 42 that is provided at the bottom of the frame 1 and is axially connected to the third transport roller group 41.
The angle between the center line of the roller used in the first conveying roller group 51 and the conveying direction of the belt conveying device 2 is seventy-five degrees, the angle between the center line of the roller used in the second conveying roller group 61 and the conveying direction of the belt conveying device 2 is seventy-five degrees, and the angle between the center line of the roller used in the third conveying roller group 41 and the conveying direction of the belt conveying device 2 is seventy-five degrees.
The adjacent first conveying roller group 51 and the second conveying roller group 61 are symmetrical to each other, and the article dislocation phenomenon is prevented.
The protective plates 11 on two sides of the arraying mechanism are provided with the sliding rollers 12 corresponding to the articles, and the sliding rollers 12 can effectively prevent the articles from rubbing against the protective plates 11, so that the articles are prevented from being damaged by packaging.
The working process of the single-piece separation system is as follows: the first conveying roller group 51 conveys articles to the belt conveying device 2 and arranges the original articles on the belt conveying device 2, so that the position alignment step is realized; the main channel conveying device 31 receives the articles conveyed by the belt conveying device 2, the second conveying roller group 52 divides the articles without peeling the belt conveying device 2, and conveys the articles without peeling the belt conveying device 2 to the tops of the near channel conveying device 32 and the secondary channel conveying device 33, so that the dividing step is realized; when there is an article on the near-path conveying device 32 and the sub-path conveying device 33, the main-path conveying device 31 stops conveying the article to the third conveying roller group 41, the article is conveyed to the third conveying roller group 41 by the near-path conveying device 32 and the sub-path conveying device 33, and after the article conveying on the near-path conveying device 32 and the sub-path conveying device 33 is completed, the main-path conveying device 31 conveys the article to the third conveying roller group 41 again, so that the distance control step is realized; finally, the third conveying roller group 41 pushes the articles to be close to the guard plate on one side, the arrangement step is realized, and the mixed articles are changed from the accumulation state into the single-piece queue state through the steps of position arrangement, shunting, distance control and arrangement of the articles, so that the unloading link speed is improved, the manual consumption is reduced, and the circulation speed of the articles and vehicles is improved.
The structure characteristics and the working process of the single-piece separating system for mixed article arrangement and arrangement have the advantages that: through the whole position, the branch road, the distance control and the whole row of the article, the mixed article is changed into a single-piece row state from the accumulation state, the unloading link speed is improved, the manual consumption is reduced, and the circulation speed of the article and the vehicle is improved.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, many modifications and improvements can be made without departing from the inventive concept, and all of them belong to the protection scope of the present invention.

Claims (5)

1. A single piece separating system for mixed article arrangement and arrangement is characterized by comprising a rack (1), wherein two sides of the top surface of the rack (1) are provided with guard plates (11), the middle part of the top surface of the rack (1) is sequentially provided with a belt conveying device (2), a classifying mechanism and an arranging mechanism along the article moving direction, and the racks on two sides of the belt conveying device (2) are sequentially provided with a belt feeding mechanism and a distributing mechanism along the article moving direction;
the belt feeding mechanism comprises two first conveying roller sets (51) which are arranged on two sides of the belt conveying device (2) and roll towards the belt conveying device (2) and a first conveying roller set driving device (52) which is arranged at the bottom of the rack (1) and is axially connected with the first conveying roller sets (51);
the material distribution mechanism comprises two second conveying roller sets (61) which are positioned at two sides of the belt conveying device (2) and roll towards the guard plate (11) respectively, and a second conveying roller set driving device (62) which is arranged at the bottom of the rack (1) and is axially connected with the second conveying roller sets (61);
the sorting mechanism is provided with a main channel conveying device (31) corresponding to the belt conveying device (2), a near channel conveying device (32) corresponding to one second conveying roller group (61) and a secondary channel conveying device (33) corresponding to the other second conveying roller group (61);
the arraying mechanism comprises a third conveying roller group (41) rolling towards the guard plate (11) and a third conveying roller group driving device (42) which is arranged at the bottom of the rack (1) and is axially connected with the third conveying roller group (41);
the included angle between the central line of the roller used by the first conveying roller group (51) and the conveying direction of the belt conveying device (2) is thirty degrees to seventy-five degrees;
the included angle between the central line of the roller used by the second conveying roller group (61) and the conveying direction of the belt conveying device (2) is thirty degrees to seventy-five degrees;
the included angle between the central line of the roller used by the third conveying roller group (41) and the conveying direction of the belt conveying device (2) is thirty degrees to seventy-five degrees;
the guard plates (11) at the two sides of the arraying mechanism are provided with sliding rollers (12) corresponding to the articles.
2. A singulator separation system for a mixed-article collation according to claim 1 wherein the first set of conveyor rollers (51) uses rollers whose centre lines are at an angle of seventy-five degrees to the direction of conveyance of the belt conveyor (2).
3. A singulator separation system for a mixed-article collation according to claim 1 wherein the second set of conveyor rollers (61) uses rollers whose centre lines are at an angle of seventy-five degrees to the direction of conveyance of the belt conveyor (2).
4. A singulator separation system for a mixed-article collation according to claim 1 wherein the third set of conveyor rollers (41) uses rollers whose centre lines are at seventy-five degrees to the direction of conveyance of the belt conveyor (2).
5. A single-piece separation system for a mixed-article collating arrangement according to claim 1, wherein adjacent first and second sets of conveyor rollers (51, 61) are symmetrical to each other.
CN201921029175.XU 2019-07-03 2019-07-03 A single piece-rate system for mixing article arrangement Active CN210527751U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921029175.XU CN210527751U (en) 2019-07-03 2019-07-03 A single piece-rate system for mixing article arrangement

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921029175.XU CN210527751U (en) 2019-07-03 2019-07-03 A single piece-rate system for mixing article arrangement

Publications (1)

Publication Number Publication Date
CN210527751U true CN210527751U (en) 2020-05-15

Family

ID=70597075

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921029175.XU Active CN210527751U (en) 2019-07-03 2019-07-03 A single piece-rate system for mixing article arrangement

Country Status (1)

Country Link
CN (1) CN210527751U (en)

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