CN210635271U - Single-row goods arranging device - Google Patents

Single-row goods arranging device Download PDF

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Publication number
CN210635271U
CN210635271U CN201921158728.1U CN201921158728U CN210635271U CN 210635271 U CN210635271 U CN 210635271U CN 201921158728 U CN201921158728 U CN 201921158728U CN 210635271 U CN210635271 U CN 210635271U
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belt conveyor
machine
roller machine
goods
inclined roller
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CN201921158728.1U
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杨恩春
刘战利
徐京民
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Kengic Intelligent Technology Co Ltd
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Kengic Intelligent Equipment Co ltd
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Abstract

Single row tally device, provide a trinity concentrated tally and recovery plant, realize arranging the goods into the single row and carry, rationally reduce conveying density based on the packing size of current conventional goods to reach side by side, accumulational goods through arrangement and reposition of redundant personnel's mode, sweep a yard discernment process through the follow-up with stable, orderly singles, improve whole letter sorting and recognition efficiency. The single-row goods sorting device comprises a first belt conveyor, a first inclined roller machine, a goods sorting machine, a second belt conveyor, a tension distance belt conveyor and scanning equipment which are arranged in the conveying direction. The tallying machine comprises a third belt conveyor, a second inclined roller machine and a straight roller machine which are arranged side by side; the rollers of the first inclined roller machine and the second inclined roller machine are obliquely arranged towards the direction of the third belt conveyor; a return conveying device is connected between the first belt conveyor and the second belt conveyor.

Description

Single-row goods arranging device
Technical Field
The utility model relates to a realize that arrangement goods are single row and pass through to the sign indicating number recognition efficiency's device is swept in the improvement, belongs to logistics storage technical field.
Background
At present, in the logistics and warehousing industry, in order to improve the code scanning recognition efficiency, a tally machine is adopted to carry out goods sorting and sequencing.
For example, in the existing three-dimensional conveying line system, goods are unloaded from a plurality of input ends and then are in an excessively dense conveying situation, so that the phenomenon of packet blocking and stacking is easily caused. The goods that are too intensive are carried, easily cause the confusion, pile up, sweep a yard low grade problem of success rate when getting into artifical package of pulling or sweeping yard identification equipment usually to form great restriction for subsequent intelligent letter sorting and processing procedure.
Moreover, the conventional goods arranging equipment is generally designed by connecting an inclined roller machine and a narrow belt conveyor behind the inclined roller machine, and after the inclined roller machine arranges the goods close to the edge, the narrow belt conveyor obviously limits the size of the goods, but limits the transportation of the goods with medium and large sizes, so that the single goods arranging of the goods with medium and large sizes cannot be realized.
In view of this, the present patent application is specifically proposed.
SUMMERY OF THE UTILITY MODEL
Single row tally device, lie in solving the problem that above-mentioned prior art exists and provide a trinity concentrated tally and recovery plant, realize being the single row with the goods arrangement based on the packing size of current conventional goods and carry, rationally reduce conveying density to reach side by side, the mode that accumulational goods pass through arrangement and reposition of redundant personnel, in order to singly sweep a yard discernment process through the follow-up in succession, thereby improve whole letter sorting and recognition efficiency.
Another design objective of the present application is to solve the problem that the prior art is faced with the problem that the medium and large cargo cannot be sorted individually.
In order to achieve the design purpose, the single-row goods sorting device comprises a first belt conveyor, a first inclined roller machine, a goods sorting machine, a second belt conveyor, a tension distance belt conveyor and scanning equipment which are arranged in the conveying direction.
The sorting machine is characterized by comprising a third belt conveyor, a second inclined roller machine and a straight roller machine which are arranged side by side;
the rollers of the first inclined roller machine and the second inclined roller machine are obliquely arranged towards the direction of the third belt conveyor;
a return conveying device is connected between the first belt conveyor and the second belt conveyor.
According to the basic scheme, in the goods conveying process, single-row arrangement and sorting are carried out through the goods arranging machine. The goods conveyed from the first oblique roller machine are sorted, the goods close to the innermost belt conveyor preferentially pass through, and other goods positioned in two rows or multiple rows are screened out and enter the return conveying device along the outer side.
Goods in the standard size range pass through the tension distance belt conveyor one by one, and finally code scanning identification is carried out at the scanning equipment.
Like above-mentioned single row tally device, the goods carries out the single row through trinity tally machine and carries tally, can stably get into in order the follow-up sign indicating number recognition device that sweeps, and the goods obtains concentrating the letter sorting arrangement, and work efficiency can wholly improve.
In order to improve the recovery and the re-arrangement of multiple rows of goods, the improvement scheme of the return conveying device is that the return conveying device comprises a first chute connected with a second inclined roller machine, a second chute connected with a second belt machine and multiple groups of steering conveying belts connected with the first belt machine.
The goods screened and sorted from the tally machine enter the chute from the outer side of the tally machine, and the split goods return to the first belt conveyor again through the steering conveyor belt so as to repeatedly enter the tally machine for tally sorting again.
The more preferable and refined improvement is that the tally machine is connected with a second inclined roller machine between a third belt conveyor and a straight roller machine.
Furthermore, a three-in-one tally machine design is adopted, the compactness and the fastening of the interconnection structure among the three parts are required for meeting the limit requirement of the width size of the three conveying parts, and the following installation mode of mutual overlapping can be adopted.
The bottom of the third belt conveyor, the bottom of the straight roller machine and the bottom of the second inclined roller machine are respectively arranged on the bottom frame;
the two sides of the second inclined roller machine are respectively connected with the side parts of the third belt conveyor and the straight roller machine through an inserting and stacking structure;
the inserting and stacking structure comprises a first frame body and a second frame body which are positioned on two sides and have U-shaped section structures; the first support body and the second support body after mutually inserting are connected through bolts, and an upper cover plate is vertically and fixedly connected with the first support body and the second support body.
The third belt conveyor, the straight roller machine and the second inclined roller machine respectively comprise independent frame structures and driving and transmission mechanisms, and the three parts are installed through the underframe to form a complete cargo handling machine. Adopt above-mentioned pile structure that alternates on each part transverse connection structure, can guarantee the bulk rigidity of reason goods machine, can guarantee transverse structure's compactedness and stability again, trinity reason goods machine overall width is less.
Aiming at the reasonable range of the packaging size of common goods in the existing logistics industry, in order to realize all conventional goods and give consideration to single-row tallies of medium and large goods, the scheme for refining the transverse width and the operation parameters of each part of the structure of the tally machine is as follows:
the ratio of the transverse width of the third belt conveyor to the minimum width of the small packing box is 1-1.5;
the inclination angle of the roller of the second inclined roller machine is between 10 and 15 degrees;
the ratio of the transverse width of the straight roller machine to the minimum width of the small packing box is 2/3-1.
In order to meet the operation requirement of subsequent code scanning identification, the following pull distance processing structure can be adopted. Namely, the tension distance belt conveyors comprise a plurality of groups of belt conveyors which are sequentially and longitudinally connected in series, and the running speed along the longitudinal direction is sequentially increased.
In summary, the single-row tally device has the following advantages:
1. based on the packing size of current conventional goods, realized that the goods is single to be carried the arrangement, avoided appearing side by side in the transportation process effectively, piled up phenomenon, swept the sign indicating number discernment for the follow-up and provided good basis, improved whole letter sorting and recognition efficiency obviously.
2. The sorting machine can effectively form single piece sorting for the medium and large goods, and has higher conveying and sorting efficiency of the whole machine.
Drawings
The present application will now be further described with reference to the following drawings.
FIG. 1 is a top view of a single row unit;
FIG. 2 is a schematic view of a structure of a cargo handling machine;
FIG. 3 is a side schematic view of FIG. 2;
FIG. 4 is a schematic diagram of an interpenetrating stack structure;
as shown in the figure, the first belt conveyor 1, the first inclined roller conveyor 2, the tally machine 3, the stretch distance belt conveyor 4, the scanning device 5, the second belt conveyor 6, the chute 7, the steering conveyor belt 8, the underframe 30, the third belt conveyor 31, the second inclined roller conveyor 32, the straight roller conveyor 33, the first frame body 34, the second frame body 35, the upper cover plate 36, the bolt 37, the second chute 70, the belt motor 311, the second inclined roller motor 321, and the straight roller motor 331.
Detailed Description
Embodiment 1, as shown in fig. 1 to 4, the single-row tally device includes a first belt conveyor 1, a first inclined roller 2, a tally machine 3, a second belt conveyor 6, a span belt conveyor 4, and a scanning device 5 arranged in a conveying direction.
The cargo handling machine 3 is a three-in-one cargo handling device, namely a third belt conveyor 31, a straight roller machine 33 and a second inclined roller machine 32 connected between the third belt conveyor 31 and the straight roller machine 33 are respectively arranged on the underframe 30;
the third belt conveyor 31 is powered by a belt motor 311 driving roller, and passes through a tensioning roller, a bend roller and a head-tail adjusting deviation roller to form an independent conveying unit. The roller of the second oblique roller machine 32 forms an oblique angle of 15 degrees with the transverse direction to ensure that goods are obliquely conveyed to the third belt conveyor 31, the roller is driven by a bottom friction belt, the friction belt is an independent assembly unit, and the roller is driven by a second oblique roller motor 321; the straight roller motor 33 is also driven by a friction belt, and the bottom is a friction assembly, and the roller is driven by a straight roller motor 331 to drive a single friction belt.
The rollers of the first inclined roller machine 2 and the second inclined roller machine 32 are both obliquely arranged towards the direction of the third belt conveyor 31;
a return conveying device is connected between the first belt conveyor 1 and the second belt conveyor 6. The return conveyor comprises a first chute 7 connected with the second inclined roller machine 32, a second chute 70 connected with the second belt machine 6, and a plurality of groups of steering conveyor belts 8 connected with the first belt machine 1.
The two sides of the second inclined roller 32 are respectively connected with the lateral parts of the third belt conveyor 31 and the straight roller 33 through the following penetrating and stacking structures: the first frame 34 and the second frame 35 which are located on both sides and have a U-shaped cross-section structure are fastened by bolts 37 after being inserted into each other, and an upper cover plate 36 is vertically installed and connected.
The inner side edge of the third belt conveyor 31 of the tally machine 3 is flush with the first inclined roller machine 2, and the longitudinal running speed of the tally machine is 36 m/min; the roll inclination angle of the second inclined drum machine 32 is 15 °, and the longitudinal running speed is 45 m/min; the longitudinal running speed of the straight drum machine 33 is 45 m/min;
the longitudinal running speed of the second belt conveyor 6 is 45 m/min;
the first chute 7 is connected with the second inclined roller machine 32 and the multiple groups of steering conveyer belts 8, the second chute 70 is connected with the second belt machine 6 and the multiple groups of steering conveyer belts 8, and the vertical inclination angles of the first chute 7 and the second chute 70 are both 30 degrees;
the tension distance belt conveyor 4 comprises 5 groups of long belt conveyors which are sequentially and longitudinally connected in series, the longitudinal running speed of the long belt conveyors is sequentially 1.1 m/min, 1.2 m/min, 1.3 m/min, 1.4 m/min and 1.5 m/min, namely the longitudinal running speed is gradually increased, and then the long belt conveyors enter scanning and sorting.
The application also realizes the following single-row goods sorting method flow:
setting the external packing sizes of three standard values, namely a small packing box, a middle packing box and a large packing box;
the first belt conveyor 1 conveys goods to a first inclined roller machine 2, and the goods enter a three-in-one tallying machine 3 after being trimmed by the side;
the cargo handling machine 3 comprises a third belt conveyor 31, a second inclined roller machine 32 and a straight roller 33;
when goods enter the goods handling machine 3 in piles or rows, the goods with the width dimension larger than the maximum width of the large packing box, namely the goods packed with the goods which do not accord with the standard dimension, are manually sorted out to be individually handled;
the goods which enter the large packing box along the longitudinal single row and have the width dimension smaller than the maximum width of the large packing box can be continuously conveyed forwards through the second belt conveyor 6;
the goods (inside goods) entering along the longitudinal multiple rows and approaching the third belt conveyor 31 are conveyed forwards continuously through the second belt conveyor 6; the unsorted goods and the goods positioned outside the third belt conveyor 31 directly return to the first belt conveyor 1 through the first chute 7 or the second chute 70, and the single-row goods sorting process in the above steps is continued;
the goods on the second oblique roller 32 and/or the straight roller 33 directly return to the first belt conveyor 1 through the first chute 7 and the steering conveyer belt 8, and the single-row goods sorting process of the steps is continued;
the goods returned to the first belt conveyor 1 are trimmed by the first inclined roller machine 2, enter the trimming machine 3 and are trimmed into a single row to pass through to the second belt conveyor 6;
the distance of the single goods conveyed to the second belt conveyor 6 is gradually increased through the distance belt conveyor 4, and finally the single goods is scanned and identified through the scanning device 5.
The ratio of the transverse width of the third belt conveyor 31 to the minimum width of the small packing box of the tally machine 3 is 1.2, and the longitudinal running speed of the belt is the same as the minimum speed of the long belt conveyor of the span belt conveyor 4; the roller inclination angle of the second inclined roller machine 32 is 15 degrees; the ratio of the transverse width of the straight roller 33 to the minimum width of the small packing box is 1, and the longitudinal running speed of a roller 0 of the straight roller is the same as the minimum speed of a long belt conveyor of the span belt conveyor 4.
In summary, the embodiments shown in the drawings are only the preferred embodiments for implementing the present application. Other alternative constructions consistent with the design concepts of the present application may be readily derived from the teachings contained herein by those skilled in the pertinent art. Other structural features thus obtained are intended to be within the scope of the solutions described in the present application.

Claims (6)

1. A single-row goods sorting device comprises a first belt conveyor (1), a first inclined roller machine (2), a goods sorting machine (3), a second belt conveyor (6), a tension distance belt conveyor (4) and a scanning device (5) which are arranged along the conveying direction,
the method is characterized in that: the cargo handling machine (3) comprises a third belt conveyor (31), a second inclined roller machine (32) and a straight roller machine (33) which are arranged side by side;
the rollers of the first inclined roller machine (2) and the second inclined roller machine (32) are obliquely arranged towards the third belt conveyor (31);
a return conveying device is connected between the first belt conveyor (1) and the second belt conveyor (6).
2. The single row sortation device as recited in claim 1, wherein: the return conveying device comprises a first chute (7) connected with a second inclined roller machine (32) and a plurality of groups of steering conveying belts (8) connected with the first belt conveyor (1).
3. The single row sortation device as recited in claim 2, wherein: the return conveying device comprises a second chute (70) connected with the second belt conveyor (6), and the second chute (70) is communicated to a plurality of groups of steering conveying belts (8).
4. The single row sorting device according to claim 2 or 3, wherein: the cargo handling machine (3) comprises a bottom frame (30), and the bottoms of the third belt conveyor (31), the straight roller machine (33) and the second inclined roller machine (32) are respectively arranged on the bottom frame (30);
two sides of the second inclined roller machine (32) are respectively connected with the side parts of the third belt conveyor (31) and the straight roller machine (33) through a penetrating and stacking structure;
the penetrating and stacking structure comprises a first frame body (34) and a second frame body (35), wherein the first frame body and the second frame body are positioned on two sides and have U-shaped section structures; the first frame body (34) and the second frame body (35) which are mutually inserted are connected through bolts, and an upper cover plate (36) is vertically and fixedly connected.
5. The single row sorting device according to claim 2 or 3, wherein: the ratio of the transverse width of the third belt conveyor (31) to the minimum width of the small packing boxes of the cargo handling machine (3) is 1-1.5;
the inclination angle of the roller of the second inclined roller machine (32) is between 10 and 15 degrees;
the ratio of the transverse width of the straight roller (33) to the minimum width of the small packing box is 2/3-1.
6. The single row sortation device of claim 3, wherein: the tension distance belt conveyor (4) comprises a plurality of groups of belt conveyors which are sequentially and longitudinally connected in series, and the running speed along the longitudinal direction is sequentially increased.
CN201921158728.1U 2019-07-23 2019-07-23 Single-row goods arranging device Active CN210635271U (en)

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Application Number Priority Date Filing Date Title
CN201921158728.1U CN210635271U (en) 2019-07-23 2019-07-23 Single-row goods arranging device

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Application Number Priority Date Filing Date Title
CN201921158728.1U CN210635271U (en) 2019-07-23 2019-07-23 Single-row goods arranging device

Publications (1)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110386430A (en) * 2019-07-23 2019-10-29 科捷智能装备有限公司 Single lifting device and its method
CN114162619A (en) * 2021-11-30 2022-03-11 苏州金峰物联网技术有限公司 Article separating apparatus, article separating method and article separating system

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110386430A (en) * 2019-07-23 2019-10-29 科捷智能装备有限公司 Single lifting device and its method
CN114162619A (en) * 2021-11-30 2022-03-11 苏州金峰物联网技术有限公司 Article separating apparatus, article separating method and article separating system

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Address after: No. 321, Jinrong Road, high tech Zone, Qingdao City, Shandong Province 266000

Patentee after: Kejie Intelligent Technology Co.,Ltd.

Address before: No. 321, Jinrong Road, high tech Zone, Qingdao City, Shandong Province 266000

Patentee before: KENGIC INTELLIGENT EQUIPMENT Co.,Ltd.

CP01 Change in the name or title of a patent holder