CN211687086U - Multi-surface code scanning and packaging conveying line - Google Patents

Multi-surface code scanning and packaging conveying line Download PDF

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Publication number
CN211687086U
CN211687086U CN201922221682.XU CN201922221682U CN211687086U CN 211687086 U CN211687086 U CN 211687086U CN 201922221682 U CN201922221682 U CN 201922221682U CN 211687086 U CN211687086 U CN 211687086U
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Prior art keywords
code scanner
conveying line
code
transfer chain
scanner
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CN201922221682.XU
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Chinese (zh)
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蔡熙
李凯
顾天飞
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Suzhou Jinfeng Iot Technology Co ltd
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Suzhou Jinfeng Iot Technology Co ltd
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Abstract

The utility model discloses a sign indicating number package transfer chain is swept to multiaspect, call the transfer chain, accelerate the transfer chain and sweep a yard device including buffer memory transfer chain, developments, sweep a yard device and include first sign indicating number ware and second sign indicating number ware at least, first sign indicating number ware is located the developments and calls transfer chain one side and be higher than the transfer surface of transfer chain is called to the developments, its camera lens court the transfer chain is called to the developments, and second sign indicating number ware is higher than first sign indicating number ware and its is close to the intermediate position of the output of transfer chain is called to the developments or is located the top intermediate position of buffer memory transfer chain, its camera lens orientation the transfer chain is called to the developments, sweep a yard device by being located the first photoelectric sensor of the input of transfer chain is. This scheme is through setting up side bar code scanner and preceding or bar code scanner at the back, can effectually be not suitable to the side of the major possession parcel of subsides sign indicating number requirement of reading to preceding or back bar code scanner is located higher centre position, and its identification range is big, can adapt to the sign indicating number requirement of reading of jumbo size parcel.

Description

Multi-surface code scanning and packaging conveying line
Technical Field
The utility model belongs to the technical field of logistics equipment and specifically relates to a sign indicating number transfer chain is swept to multiaspect.
Background
The package platform is the equipment of wrapping with intercrossing takes sorting machine cooperation use, and it includes buffer memory transfer chain, the transfer chain of weighing, conveyer, bar code recognition device isotructure with higher speed usually, and bar code recognition device sets up the top of the transfer chain of weighing and camera lens are down for discern the bar code or the two-dimensional code of parcel top surface.
The top code scanning mode needs the bar code or the two-dimensional code to be upward to realize the top code scanning mode, but for some large products with non-planar top surfaces, the two-dimensional code or the bar code is often attached to the side surface of the product, so that a structure capable of realizing the side code scanning mode is needed.
In addition, the code scanning device is usually fixed on the frame through bolts, the installation angle of the code scanning device is inconvenient to adjust, and the flexibility of adjustment is not high.
Further, for some structures requiring bottom surface identification, the existing devices are often not realized.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a sign indicating number transfer chain is swept to multiaspect in order to solve the above-mentioned problem that exists among the prior art.
The purpose of the utility model is realized through the following technical scheme:
a multi-surface code scanning and packaging conveying line comprises a caching conveying line, a dynamic weighing conveying line, an accelerating conveying line and a code scanning device, wherein the code scanning device at least comprises a first code scanner and a second code scanner, the first code scanner is positioned on one side of the dynamic weighing conveying line and higher than a conveying surface of the dynamic weighing conveying line, a lens of the first code scanner faces towards the dynamic weighing conveying line, the second code scanner is higher than the first code scanner and close to the middle position of the output end of the dynamic weighing conveying line or the middle position above the caching conveying line, the lens of the second code scanner faces towards the dynamic weighing conveying line, and the code scanning device is triggered by a first photoelectric sensor positioned at the input end of the dynamic weighing conveying line.
Preferably, in the multi-surface code scanning and packaging conveying line, the code scanning device further comprises a third code scanner, a fourth code scanner and a fifth code scanner, the third code scanner is opposite to the first code scanner, the fourth code scanner is opposite to the second code scanner, and the fifth code scanner is located right above the dynamic weighing conveying line and has a downward lens.
Preferably, in the multi-surface code scanning and packaging conveying line, the first code scanner, the second code scanner, the third code scanner, the fourth code scanner and the fifth code scanner are all arranged on the flexible support.
Preferably, in the multi-surface code scanning and packaging conveying line, the code scanning device further includes a sixth code scanner, the sixth code scanner is located below a first gap between the buffer conveying line and the dynamic weighing conveying line, a lens of the sixth code scanner faces the first gap, or the sixth code scanner is located below a second gap between the dynamic weighing conveying line and the accelerating conveying line, and the lens of the sixth code scanner faces the second gap.
Preferably, in the multi-face code-scanning bale conveying line, the first gap and the second gap are between 4 and 10 cm.
Preferably, in the multi-surface code scanning and packaging conveying line, transparent plates with top surfaces flush with the conveying surfaces of the cache conveying line, the dynamic weighing conveying line and the acceleration conveying line are arranged at the first gap and the second gap.
Preferably, in the multi-surface code-scanning and bag-feeding conveying line, the sixth code scanner is triggered by a second photoelectric sensor at the output end of the cache conveying line.
Preferably, in the multi-surface code-scanning and bag-loading conveying line, the number of the first photoelectric sensors is at least two, and the first photoelectric sensors are opposite in position and have a height difference.
The utility model discloses technical scheme's advantage mainly embodies:
the scheme has the advantages that the design is exquisite, the structure is simple, the side code reader and the front or rear code scanner are arranged, the side code reading requirement of large packages which are not suitable for code pasting on the top can be effectively met, in addition, the front or rear code scanner is positioned at a higher middle position, the identification range is large, and the code reading requirement of large size can be met; the two code scanners are effectively controlled to start and stop by combining the photoelectric sensors with a plurality of height differences, false triggering can be avoided, and data accuracy is guaranteed.
This scheme further sets up five faces and sweeps a yard and six faces and sweep a yard structure, can reduce the direction requirement of bar code or two-dimensional code on the parcel, and the effectual package of having reduced the degree of difficulty is favorable to raising the efficiency.
The bar code scanner of this scheme sets up on flexible support, and angular adjustment is convenient simple, and the adjustable space is big, and the flexibility is good, can the effectual requirement that adapts to various camera lens angles, and the suitability is good.
The reserved clearance provides probably for the sign indicating number is swept to the bottom surface between the transfer chain of this scheme to the effectual setting up of clearance size has guaranteed that the bottom bar code or the two-dimensional code that can the various common dimensions of effectual discernment bar code or two-dimensional code of bar code, and the commonality is good, and the discernment accuracy is high.
Set up the transparent plate in the clearance department of transfer chain, can effectually guarantee the smooth and easy nature that article carried between different transfer chains, avoid the parcel to warp the emergence that leads to the jamming condition.
Drawings
Figure 1 is an end view of a first embodiment of the present invention;
fig. 2 is a front view of a first embodiment of the present invention;
fig. 3 is an end view of a second embodiment of the invention;
fig. 4 is a front view of a second embodiment of the present invention;
fig. 5 is an end view of a third embodiment of the invention;
fig. 6 is a front view of a third embodiment of the present invention.
Detailed Description
Objects, advantages and features of the present invention will be illustrated and explained by the following non-limiting description of preferred embodiments. These embodiments are merely exemplary embodiments for applying the technical solutions of the present invention, and all technical solutions formed by adopting equivalent substitutions or equivalent transformations fall within the scope of the present invention.
In the description of the embodiments, it should be noted that the terms "center", "upper", "lower", "left", "right", "front", "rear", "vertical", "horizontal", "inner", "outer", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, but do not indicate or imply that the devices or elements referred to must have a specific orientation, be constructed in a specific orientation, and be operated, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance. In the description of the embodiment, the operator is used as a reference, and the direction close to the operator is a proximal end, and the direction away from the operator is a distal end.
The utility model discloses a multiaspect is swept a yard and is wrapped transfer chain and expounded in the following and is explained in combination with the attached drawing, as shown in attached drawing 1, 2, it includes buffer memory transfer chain 1, dynamic title transfer chain 2, accelerates transfer chain 3 and sweep a yard device, it includes first bar code collector 4 and second bar code collector 5 at least to sweep a yard device, first bar code collector 4 is located one side that dynamic title transfer chain 2 and is higher than the transport face that dynamic title transfer chain 2, its camera lens orientation dynamically title transfer chain 2, second bar code collector 5 is higher than first bar code collector 1 and its intermediate position that is close to the output of dynamic title transfer chain 2 or is located the top intermediate position of buffer memory transfer chain 1, its camera lens orientation dynamically title transfer chain 2, sweep a yard device by being located the first photoelectric sensor 6 trigger of the input of dynamic title transfer chain 2.
When the dynamic weighing and conveying line works, when a package is conveyed by the cache conveying line 1 and enters the dynamic weighing and conveying line 2, the first photoelectric sensor 6 is triggered, so that the first code scanner 4 and the second code scanner 5 are started to identify the bar codes or the two-dimensional codes of the side face, the front end face or the rear end face of the package, and the routing information is obtained.
Specifically, the specific structures of the cache conveying line 1, the dynamic call conveying line 2, and the acceleration conveying line 3 are known technologies, which are not the key points of the present solution, and are not described herein again.
In a preferred embodiment, in order to reduce the difficulty of loading the package by the operator, as shown in fig. 3 and fig. 4, the barcode scanning device further includes a third barcode scanner 7, a fourth barcode scanner 8 and a fifth barcode scanner 9, the third barcode scanner 7 is opposite to the first barcode scanner 4, the fourth barcode scanner 8 is opposite to the second barcode scanner 5, and the fifth barcode scanner 9 is located right above the dynamic conveying line 2 and has a lens facing downward, so that the multiple barcode scanners 5 can scan five surfaces (other surfaces except the bottom surface) of the package, and thus the operator only needs to place the barcode or the two-dimensional code facing downward.
In addition, in order to adapt to the identification requirements of the bar codes or two-dimensional codes of packages with different sizes, the positions of the first scanner 4, the second scanner 5, the third scanner 7, the fourth scanner 8 and the fifth scanner 9 need to be adjusted adaptively, in order to reduce the difficulty of adjustment, while increasing flexibility and freedom of adjustment, as shown in fig. 3 and 4, the first, second, third, fourth and fifth scanners 4, 5, 7, 8 and 9 are all disposed on a flexible support 10, the flexible support 10 may be a flexible metal tube, the two ends of the connecting structure are provided with connecting structures, such as a threaded connection or a connecting disc with a connecting hole, so that it can be quickly fixed to the frame 13 and the first, second, third, fourth and fifth scanners 4, 5, 7, 8, 9 can also be quickly mounted to the flexible support 10.
First bar code scanner 4, second bar code scanner 5, third bar code scanner 7, fourth bar code scanner 8 and fifth bar code scanner 9 are triggered 6 by first photoelectric sensor, first photoelectric sensor is preferably to the correlation photoelectric sensor, and first photoelectric sensor is at least two, and their position is just having the difference in height, preferably more to they form the light curtain, can effectual adaptation dysmorphism piece parcel, avoid appearing the condition of spurious triggering, as long as there is arbitrary first photoelectric sensor to sense the parcel during operation, then first bar code scanner 4, second bar code scanner 5, third bar code scanner 7, fourth bar code scanner 8 and fifth bar code scanner 9 are in the shooting state that starts.
In a more preferred embodiment, as shown in fig. 5 and fig. 6, the barcode scanning device further includes a sixth barcode scanner 11, the sixth barcode scanner 11 is located below the first gap of the cache conveyor line 1 and the dynamic balance conveyor line 2, the lens of the sixth barcode scanner 11 faces the first gap, or the sixth barcode scanner 11 is located below the second gap of the dynamic balance conveyor line 2 and the acceleration conveyor line 3, the lens of the sixth barcode scanner faces the second gap, the first gap and the second gap are between 4 cm and 10cm, and the specific lengths are determined according to the maximum diagonal length of the barcode or two-dimensional code to be recognized.
Thus, in the case of a parcel, the barcode or two-dimensional code on the parcel can be identified by six scanners, regardless of which direction the parcel is facing.
Further, in order to avoid the clearance to lead to the parcel to appear interfering when different transfer chain are carried, as shown in fig. 6 first clearance and second clearance department be provided with the top surface with the equal parallel and level transparent plate 12 of the transport face of buffer memory transfer chain 1, dynamic title transfer chain 2, transfer chain 3 with higher speed, transparent plate 12 can be transparent glass, like transparent toughened glass or transparent plastic board etc. specifically uses transparent plate 12 not to influence the effectual discernment parcel bottom bar code of sixth bar code scanner 11 or two-dimensional code as the prerequisite.
And, in a preferred embodiment, as shown in fig. 6, the sixth barcode scanner 11 is located below the first gap, the sixth barcode scanner 11 is triggered by a second photosensor 13 at the output end of the buffer conveying line 1, and the second photosensor 13 is also a plurality of correlation photosensors with opposite positions and height difference.
Finally, the first code scanner 4, the second code scanner 5, the third code scanner 7, the fourth code scanner 8, the fifth code scanner 9, and the sixth code scanner may be various known devices having a code scanning function, such as a code scanning gun, a camera, a mobile phone, or a CCD, and are known technologies here and will not be described in detail, and the whole device may be controlled by a PLC in an upper computer.
The utility model has a plurality of implementation modes, and all technical schemes formed by adopting equivalent transformation or equivalent transformation all fall within the protection scope of the utility model.

Claims (8)

1. Yard upper part of a bag transfer chain is swept to multiaspect, including buffer memory transfer chain (1), developments title transfer chain (2), accelerate transfer chain (3) and sweep a yard device, its characterized in that: the code scanning device at least comprises a first code scanner (4) and a second code scanner (5), wherein the first code scanner (4) is positioned on one side of the dynamic weighing conveying line (2) and is higher than the conveying surface of the dynamic weighing conveying line (2), a lens of the first code scanner faces the dynamic weighing conveying line (2), the second code scanner (5) is higher than the first code scanner (4) and is close to the middle position of the output end of the dynamic weighing conveying line (2) or is positioned at the upper middle position of the cache conveying line (1), the lens of the second code scanner faces the dynamic weighing conveying line (2), and the code scanning device is triggered by a first photoelectric sensor (6) positioned at the input end of the dynamic weighing conveying line (2).
2. The multi-face code-scanning ladle conveying line according to claim 1, wherein: the code scanning device further comprises a third code scanner (7), a fourth code scanner (8) and a fifth code scanner (9), the third code scanner (7) is opposite to the first code scanner (4), the fourth code scanner (8) is right opposite to the second code scanner (5), and the fifth code scanner (9) is located right above the dynamic weighing conveying line (2) and has a downward lens.
3. The multi-face code-scanning ladle conveying line according to claim 2, wherein: the first code scanner (4), the second code scanner (5), the third code scanner (7), the fourth code scanner (8) and the fifth code scanner (9) are all arranged on the flexible support (10).
4. The multi-face code-scanning ladle conveying line according to claim 1, wherein: the code scanning device further comprises a sixth code scanner (11), wherein the sixth code scanner (11) is located below a first gap of the cache conveying line (1) and the dynamic weighing conveying line (2), the lens of the sixth code scanner faces towards the first gap, or the sixth code scanner (11) is located below a second gap of the dynamic weighing conveying line (2) and the acceleration conveying line (3), and the lens of the sixth code scanner faces towards the second gap.
5. The multi-face code-scanning ladle conveying line according to claim 4, wherein: the first gap and the second gap are between 4-10 cm.
6. The multi-face code-scanning ladle conveying line according to claim 4, wherein: and transparent plates (12) with top surfaces flush with the conveying surfaces of the cache conveying line (1), the dynamic weighing conveying line (2) and the acceleration conveying line (3) are arranged at the first gap and the second gap.
7. The multi-face code-scanning ladle conveying line according to claim 4, wherein: the sixth code scanner (11) is triggered by a second photoelectric sensor (13) at the output of the buffer conveyor line (1).
8. The multi-face code-scanning ladle conveying line according to any one of claims 1 to 7, wherein: the number of the first photoelectric sensors is at least two, and the first photoelectric sensors are opposite in position and have a height difference.
CN201922221682.XU 2019-12-12 2019-12-12 Multi-surface code scanning and packaging conveying line Active CN211687086U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922221682.XU CN211687086U (en) 2019-12-12 2019-12-12 Multi-surface code scanning and packaging conveying line

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Application Number Priority Date Filing Date Title
CN201922221682.XU CN211687086U (en) 2019-12-12 2019-12-12 Multi-surface code scanning and packaging conveying line

Publications (1)

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CN211687086U true CN211687086U (en) 2020-10-16

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113770035A (en) * 2021-09-06 2021-12-10 华南农业大学 Logistics package sorting system and method with omnibearing intelligent code scanning function
CN114275505A (en) * 2020-12-21 2022-04-05 星猿哲科技(上海)有限公司 Multi-surface code scanning system

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114275505A (en) * 2020-12-21 2022-04-05 星猿哲科技(上海)有限公司 Multi-surface code scanning system
CN113770035A (en) * 2021-09-06 2021-12-10 华南农业大学 Logistics package sorting system and method with omnibearing intelligent code scanning function

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