CN220825138U - Novel weighing type abalone sorter - Google Patents

Novel weighing type abalone sorter Download PDF

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Publication number
CN220825138U
CN220825138U CN202322496184.2U CN202322496184U CN220825138U CN 220825138 U CN220825138 U CN 220825138U CN 202322496184 U CN202322496184 U CN 202322496184U CN 220825138 U CN220825138 U CN 220825138U
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China
Prior art keywords
sorting
conveying
support
abalone
feeding
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CN202322496184.2U
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Chinese (zh)
Inventor
宗成国
黄二帅
王钧
常丽荣
杨晓斌
姜子晨
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Weihai Changqing Ocean Science And Technology Co ltd
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Weihai Changqing Ocean Science And Technology Co ltd
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Abstract

The novel weighing abalone sorting machine comprises a feeding mechanism, wherein the output end of the feeding mechanism is provided with a conveying sorting mechanism, the output end of the conveying sorting mechanism is provided with a sorting mechanism, the conveying sorting mechanism comprises a conveying support, a conveying belt limiting plate is arranged on the conveying support, a conveying baffle is arranged on the conveying belt limiting plate, and one side of the conveying support is provided with a visual detection device. The abalone sorting machine can be used for abalone sorting, can realize automatic feeding and sorting of abalones one by one, can automatically sort the abalones according to different masses and weights, is more accurate and efficient in sorting process, realizes controllable abalone quality, saves labor cost, and is widely applied to the technical field of sorting machines.

Description

Novel weighing type abalone sorter
Technical Field
The utility model relates to the technical field of sorting machines, in particular to a novel weighing abalone sorting machine.
Background
Abalone with different quality and size grades has great difference in market selling price, so that classification and grading of abalone before selling abalone is important. Traditional abalone sorting mostly adopts manual sorting, has the conditions of low efficiency, high labor intensity and time and labor waste, and generally has lower sorting accuracy due to manual operation, so that the quality of the classified abalone is still uneven, and the requirements of people on abalones with different qualities can not be well met. In the prior art, abalone is sorted by utilizing abalone sorting equipment, and abalones are classified by adopting a sieve mesh sorting size and weighing sorting mode, and the abalone quality is only separated according to the size and the weight, so that the quality of the abalones cannot be controlled, the problems that the separated abalones are possibly damaged and incomplete and the like are caused, and the quality of abalone products is influenced; in addition, most of the prior art is in a semi-automatic mode, and certain links of abalone sorting still need manual cooperation for operation, so that labor is consumed, and the efficiency is low.
Disclosure of Invention
The utility model provides a novel weighing type abalone sorter which is labor-saving, efficient in sorting process, high in sorting accuracy and controllable in abalone quality, and aims to solve the problems of labor consumption, low sorting efficiency, poor sorting accuracy and uncontrollable abalone quality in the existing abalone sorting process.
In order to achieve the above purpose, the technical scheme of the utility model is as follows:
the utility model provides a novel weighing abalone sorter, which comprises a feeding mechanism, wherein the output end of the feeding mechanism is provided with a conveying and sorting mechanism; the conveying and sequencing mechanism comprises a conveying support, a conveying belt limiting plate is arranged on the conveying support, a plurality of conveying baffles are arranged on the conveying belt limiting plate, and a visual detection device is arranged on one side of the conveying support.
Preferably, the feeding mechanism comprises a feeding bracket, wherein a feeding storage box is arranged at the lower end of the feeding bracket and is connected with the feeding bracket; a feeding conveyor belt is arranged on the feeding support, and a plurality of feeding baffles are arranged on the feeding conveyor belt; the lower extreme of material loading support is equipped with the material loading driven shaft, and the upper end of material loading support is equipped with the material loading driving shaft, and the material loading driven shaft passes through the material loading conveyer belt and links to each other with the material loading driving shaft, is equipped with the material loading driving sprocket on the material loading driving shaft, is equipped with the material loading drive chain on the material loading driving sprocket.
Preferably, the conveying sequencing mechanism further comprises a conveying belt, the conveying belt is arranged on the conveying support, a conveying motor and a conveying speed reducer are arranged on one side of the conveying support, and the conveying motor is connected with the conveying speed reducer; one end of the conveying support, which is close to the feeding mechanism, is provided with a driving shaft which is connected with the conveying speed reducer, one end of the conveying support, which is far away from the feeding mechanism, is provided with a conveying driven shaft, and the conveying driven shaft is connected with the driving shaft through a conveying belt; the driving shaft is also provided with a driving chain wheel which is connected with the feeding transmission chain in a matched way.
Preferably, a conveying support discharge port is arranged on the conveying support, and a recovery box is arranged below the conveying support discharge port.
Preferably, a shifting piece limiting hole is formed in the position, close to the visual detection device, of the conveyor belt limiting plate.
Preferably, one side of the conveying and sequencing mechanism is provided with a visual detection device, the visual detection device comprises a base, a visual support and a plectrum mechanism are arranged on the base, a visual sensor is arranged at the upper end of the visual support, and the upper end of the plectrum mechanism is arranged in a plectrum limiting hole.
Preferably, the sorting mechanism comprises a sorting support and a sorting transmission chain, a sorting driving shaft and a sorting driven shaft are arranged on the sorting support, a sorting motor and a sorting speed reducer are arranged below the sorting support, the sorting motor is connected with the sorting speed reducer, the sorting speed reducer is connected with the sorting driving shaft, a sorting driving sprocket is arranged on the sorting driving shaft, a sorting driven sprocket is arranged on the sorting driven shaft, and the sorting driving sprocket is connected with the sorting driven sprocket through the sorting transmission chain.
Preferably, a tray overturning device is arranged on the sorting support, the tray overturning device comprises a tray device, a gravity sensor and a firing device, the tray device is arranged on the sorting transmission chain, the firing device is arranged on the sorting support, and the gravity sensor is arranged between the tray device and the sorting transmission chain.
Preferably, a plurality of sorting support discharge holes are formed in the sorting support, the sorting support discharge holes are matched with the firing device, and a sorting storage box is arranged below the sorting support discharge holes.
Preferably, the sorting mechanism is provided with a control module.
The conveying support in the conveying and sorting mechanism is provided with the conveying belt limiting plates, the conveying belt limiting plates are provided with the conveying baffles which are arranged in opposite directions in a staggered mode, the conveying baffles are matched with the operation of the conveying belt, abalones can be arranged one by one in a linear mode in the conveying process, so that the vision sensor can conveniently collect image information of the abalones arranged one by one, the control module and the poking sheet mechanism are matched to sort the abalones according to the quality, adhered abalones or incomplete abalones are removed in the conveying process, abnormal abalones are prevented from entering the subsequent weighing and sorting step, and the quality controllability of the abalones is realized. The feeding process, the conveying and quality sorting process and the weighing and sorting process of the novel weighing type abalone sorter are all highly automated, manual participation is not needed, labor is saved, the sorting process is more accurate and efficient, and meanwhile the quality of abalone is controllable.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic diagram of a loading mechanism and a transfer sequencing mechanism according to the present utility model;
Fig. 3 is an isometric view of a sorting mechanism according to the present utility model.
The symbols in the drawings illustrate:
1 feeding mechanism, 2 conveying sequencing mechanism, 3 visual detection device, 4 sorting mechanism, 5 tray turning device, 6 control module, 11 material loading bin, 12 material loading conveyer belt, 13 material loading support, 14 material loading driven shaft, 15 material loading driving shaft, 16 material loading driving sprocket, 17 material loading drive chain, 18 material loading baffle, 21 driving sprocket, 22 drive shaft, 23 conveying support, 24 conveyer belt, 25 conveying driven shaft, 26 conveying motor, 27 conveying speed reducer, 28 conveying baffle, 29 recovery box, 210 conveying support discharge gate, 211 conveyer belt limiting plate, 212 plectrum limiting hole, 31 visual sensor, 32 visual support, plectrum mechanism, 34 base, 41 sorting motor, 42 sorting decelerator, 43 sorting driving shaft, 44 sorting driving sprocket, 45 sorting driven sprocket, 46 sorting driven shaft, 47 sorting driving chain, 48 sorting support, 49 sorting bin, 410 sorting support discharge gate, 51 tray device, 52 gravity sensor, 53 firing device.
Detailed Description
In order to make the technical problems, technical schemes and beneficial effects to be solved more clear, the application is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the application.
In the description of the present utility model, it should be understood that the directions or positional relationships indicated by the terms "upper", "lower", "left", "right", "inner", "outer", etc., are based on the directions or positional relationships shown in the drawings, are merely for convenience of describing the present utility model and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as limiting the present utility model.
In the description of the present utility model, it should be noted that, unless explicitly specified and limited otherwise, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be either fixedly connected, detachably connected, or integrally connected, for example; can be directly connected or indirectly connected through an intermediate medium, and can be communication between two elements. The specific meaning of the above terms in the present utility model will be understood in specific cases by those of ordinary skill in the art.
Specific embodiments of the present utility model will be described in detail below with reference to the accompanying drawings.
As shown in fig. 1, the application is provided with a feeding mechanism 1, the output end of the feeding mechanism 1 is provided with a conveying and sorting mechanism 2, the output end of the conveying and sorting mechanism 2 is provided with a sorting mechanism 4, the sorting mechanism 4 is provided with a control module 6, as shown in fig. 2 and 3, the conveying and sorting mechanism 2 comprises a conveying bracket 23, the conveying bracket 23 is provided with a conveying belt limiting plate 211, the conveying belt limiting plate 211 is provided with a plurality of conveying baffles 28, and one side of the conveying bracket 23 is provided with a visual detection device 3.
Specifically, the feeding mechanism 1 is used for finishing the feeding of abalones and conveying the abalones to the conveying and sorting mechanism 2, the conveying and sorting mechanism 2 is used for finishing the sorting of the abalones one by one, removing abnormal abalones and conveying the abalones to the sorting mechanism 4, the sorting mechanism 4 is used for weighing and grading the abalones, and the control module 6 is used for receiving information, processing the information and then outputting control instructions; the conveyer belt limiting plate 211 is used for preventing the abalone from falling to the ground cracked in the conveying process, the section that the conveyer belt limiting plate 211 is close to feed mechanism 1 is equipped with a plurality of conveying baffles 28, conveying baffle 28 one end is fixed in on the conveyer belt limiting plate 211, the other end inclines towards the abalone direction of advance to set up, and be opposite direction staggered arrangement, be used for exerting resistance and play the guide effect to the abalone that is carried towards sorting mechanism 4, make it be the line and arrange one by one through influencing abalone transfer route and conveying speed, the back accessible visual detection device 3 carries out the discernment and the collection of outward appearance information to the abalone of arranging one by one, and transmit the outward appearance information of gathering to control module 6, further, can make the abalone get into sorting mechanism 4 one by one and weigh the classification.
In one embodiment, as shown in fig. 2, the feeding mechanism 1 includes a feeding bracket 13, the feeding bracket 13 is used for supporting and installing each component in the feeding mechanism 1, a feeding storage box 11 is arranged at the lower end of the feeding bracket 13, the feeding storage box 11 is fixedly connected with the feeding bracket 13, and the feeding storage box 11 is used for temporarily storing abalone to be fed; the feeding bracket 13 is provided with a feeding conveyer belt 12, and the feeding conveyer belt 12 is provided with a plurality of feeding baffles 18 which are arranged in a staggered way in a stepped opposite direction. When the feeding mechanism 1 operates, the feeding conveyer belt 12 moves towards the direction of the conveying and sorting mechanism 2, the feeding baffle 18 on the feeding conveyer belt 12 drives abalones in the feeding storage tank 11 to be conveyed towards the conveying and sorting mechanism 2, the arrangement of the baffle structure enables the abalones in the feeding storage tank 11 to automatically enter a partition space formed by the feeding baffle 18 to be stably arranged, compared with a roll-type feeding structure, the feeding mechanism is more stable, loss caused by falling and cracking of the abalones in the feeding process is prevented, meanwhile, the feeding baffles 18 are arranged in a stepped opposite staggered mode, the feeding quantity of the abalones is effectively controlled, compared with the baffles arranged in a straight shape, the number of the abalones which are singly conveyed to the conveying and sorting mechanism 2 can be halved through the opposite staggered baffles, accumulation of the abalones on the conveying belt 24 is prevented, and meanwhile, the total feeding efficiency can be kept unchanged; the lower extreme of material loading support 13 is equipped with material loading driven shaft 14, and the upper end of material loading support 13 is equipped with material loading driving shaft 15, and material loading driven shaft 14 links to each other with material loading driving shaft 15 through material loading conveyer belt 12, is equipped with material loading driving sprocket 16 on the material loading driving shaft 15, is equipped with material loading drive chain 17 on the material loading driving sprocket 16, and material loading drive chain 17 is arranged in transmitting the power in the sequencing mechanism 2 to feed mechanism 1 and makes its operation, and feeding mechanism 1 cooperates with the sequencing mechanism 2 of conveying and realizes the automatic feeding of abalone and sequencing one by one.
Further, as shown in fig. 2 and 3, the conveying sequencing mechanism 2 further comprises a conveying belt 24, the conveying belt 24 is arranged on a conveying bracket 23, a conveying motor 26 and a conveying speed reducer 27 are arranged on one side of the conveying bracket 23, and the conveying motor 26 is connected with the conveying speed reducer 27; one end of the conveying support 23, which is close to the feeding mechanism 1, is provided with a driving shaft 22, the driving shaft 22 is connected with a conveying speed reducer 27, one end of the conveying support 23, which is far away from the feeding mechanism 1, is provided with a conveying driven shaft 25, and the conveying driven shaft 25 is connected with the driving shaft 22 through a conveying belt 24; the driving shaft 22 is also provided with a driving chain wheel 21, and the driving chain wheel 21 is connected with the feeding transmission chain 17 in a matching way. When the conveying motor 26 runs, the power of the conveying motor is transmitted to the driving shaft 22 through the conveying speed reducer 27, and the driving shaft 22 rotates to drive the conveying belt 24 to run towards the sorting mechanism 4, so that the conveying function of the conveying and sorting mechanism 2 is realized; the rotation of the driving shaft 22 drives the driving chain wheel 21 to rotate so as to drive the feeding transmission chain 17 to run; the feeding driving chain 17 drives the feeding driving chain wheel 16 to rotate, the feeding driving chain wheel 16 drives the feeding driving shaft 15 to rotate, the feeding conveying belt 12 and the feeding driven shaft 14 start to run, and the feeding conveying belt 12 runs towards the direction of the conveying and sequencing mechanism 2 to finish the feeding of abalone.
Further, a shifting plate limiting hole 212 is arranged on the conveyor belt limiting plate 211 at a position close to the visual detection device 3; one side of the conveying and sequencing mechanism 2 is provided with a visual detection device 3, the visual detection device 3 comprises a base 34, a visual support 32 and a plectrum mechanism 33 are arranged on the base 34, a visual sensor 31 is arranged at the upper end of the visual support 32, and the upper end of the plectrum mechanism 33 is arranged in a plectrum limiting hole 212. The conveying support 23 is provided with a conveying support discharge hole 210, the conveying support discharge hole 210 is arranged below the poking sheet mechanism 33 in the visual inspection device 3, a recovery box 29 is arranged below the conveying support discharge hole 210, the conveying support discharge hole 210 is used for guiding abnormal abalone poked by the poking sheet mechanism 33 in the visual inspection device 3 into the recovery box 29, and the recovery box 29 is used for recovering the abnormal abalone.
Specifically, the vision sensor 31 cooperates with the conveying and sorting mechanism 2 and the pulling sheet mechanism 33, the vision sensor 31 can identify and collect image information of abalones arranged one by one on the conveying belt 24, and transmit the collected information to the control module 6, the control module 6 processes the information, and when the image information is identified as abnormal abalone, the control module 6 sends an instruction to the pulling sheet mechanism 33 to enable the pulling sheet mechanism 33 to open and close, and the abnormal abalone on the conveying belt 24 enters the recovery box 29 through the discharge port 210 of the conveying support.
In one embodiment, as shown in fig. 1 and 3, the sorting mechanism 4 comprises a sorting bracket 48 and a sorting transmission chain 47, a sorting driving shaft 43 and a sorting driven shaft 46 are arranged on the sorting bracket 48, a sorting motor 41 and a sorting speed reducer 42 are arranged below the sorting bracket 48, the sorting motor 41 is connected with the sorting speed reducer 42, the sorting speed reducer 42 is connected with the sorting driving shaft 43, a sorting driving sprocket 44 is arranged on the sorting driving shaft 43, a sorting driven sprocket 45 is arranged on the sorting driven shaft 46, and the sorting driving sprocket 44 is connected with the sorting driven sprocket 45 through the sorting transmission chain 47. When the sorting motor 41 operates, the sorting speed reducer 42 is driven to operate, the sorting driving shaft 43 and the sorting driving sprocket 44 are driven to rotate by the sorting speed reducer 42, and correspondingly, the sorting driving chain 47, the sorting driven sprocket 45 and the sorting driven shaft 46 which are in matched connection with the sorting speed reducer are also driven to rotate, so that the abalone to be sorted is matched and conveyed.
Further, a tray overturning device 5 is arranged on the sorting bracket 48, and the tray overturning device 5 comprises a tray device 51, a gravity sensor 52 and a firing device 53; specifically, a tray device 51 is arranged on the sorting transmission chain 47, a firing device 53 and a control module 6 are arranged on the sorting bracket 48, and a gravity sensor 52 is arranged between the tray device 51 and the sorting transmission chain 47. A plurality of sorting bracket discharge ports 410 are arranged on the sorting bracket 48, the sorting bracket discharge ports 410 are matched with the firing device 53, and a sorting storage box 49 is arranged below the sorting bracket discharge ports 410 and used for storing abalones with different weight grades.
Specifically, when the novel weighing abalone sorter operates, the abalones on the conveyor belt 24 drop into the tray device 51 one by one, the gravity sensor 52 below the tray device 51 weighs the abalones in the tray device 51 and transmits weight information to the control module 6, the control module 6 processes the information, and when the tray device 51 operates above the sorting storage box 49 corresponding to the abalone weight in the tray, the control module 6 sends an instruction to the corresponding firing device 53, so that the firing device 53 impacts the tray device 51, the tray device 51 turns over, and the abalones enter the corresponding sorting storage box 49 through the sorting bracket discharge hole 410. The number of the firing devices 53, the sorting rack discharge ports 410 and the sorting storage boxes 49 shown in fig. 3 is 4, and may be set to other numbers according to the use requirements in practical cases.
The working process of the utility model is described below:
When the novel weighing abalone sorter operates, the automatic feeding is realized through the feeding mechanism 1, the feeding conveyor belt 12 operates in the direction of the conveying and sorting mechanism 2, the feeding baffle 18 drives the abalones in the feeding storage tank 11 to convey and feed in the direction of the conveying and sorting mechanism 2, the abalones are conveyed in the direction of the sorting mechanism 4 after being fed onto the conveying belt 24, the conveying baffle 28 applies resistance to the abalones and plays a guiding role, the abalones are arranged in a linear mode one by one, the image information of the abalones which are sorted one by one is identified and collected through the vision sensor 31, the vision sensor 31 conveys the collected information to the control module 6, the control module 6 processes the information, when the image information is identified as abnormal abalones, the control module 6 sends an instruction to the shifting sheet mechanism 33 to enable the shifting sheet mechanism to open and close, abnormal abalones on the conveying belt 24 are shifted to enter the recovery box 29 through the conveying support discharge port 210, normal abalone individuals enter the tray device 51 one by one, the gravity sensor 52 weighs the abalones and transmits weight information to the control module 6, the control module 6 processes the information, when the tray device 51 runs above the sorting storage box 49 corresponding to the weight of the abalones in the tray, the control module 6 sends an instruction to the corresponding firing device 53, the firing device 53 impacts the tray device 51, the tray device 51 is overturned, and the abalones enter the sorting storage boxes 49 through the sorting support discharge port 410, so that the abalones with different weight grades are sorted.
In summary, the conveying support 23 in the conveying and sorting mechanism 2 of the novel weighing type abalone sorter provided by the utility model is provided with the conveying belt limiting plate 211, the conveying belt limiting plate 211 is provided with the conveying baffles 28 which are oppositely staggered, and the conveying baffles are matched with the operation of the conveying belt 24 to enable abalones to be arranged one by one in a linear manner in the conveying process, so that the vision sensor 31 can conveniently collect image information of the abalones arranged one by one, the control module 6 and the pulling sheet mechanism 33 are matched to sort the abalones according to the quality, adhered abalones or incomplete abalones are removed in the conveying process, abnormal abalones are prevented from entering the subsequent weighing and sorting steps, and the quality controllability of the abalones is realized. The feeding process, the conveying and quality sorting process and the weighing and sorting process of the novel weighing type abalone sorter are all highly automated, manual participation is not needed, labor is saved, the sorting process is more accurate and efficient, and meanwhile the quality of abalone is controllable.
The above description is only of the preferred embodiment of the present utility model and is not intended to limit the structure of the present utility model in any way. Various modifications and variations of the present utility model will be apparent to those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model should be included in the protection scope of the present utility model.

Claims (10)

1. The utility model provides a novel weighing type abalone sorter, includes feed mechanism, feed mechanism's output is equipped with conveying sorting mechanism, conveying sorting mechanism's output is equipped with sorting mechanism, a serial communication port, conveying sorting mechanism includes the conveying support, be equipped with the conveyer belt limiting plate on the conveying support, be equipped with a plurality of conveying baffles on the conveyer belt limiting plate, one side of conveying support is equipped with visual detection device.
2. A novel weighing abalone sorter as claimed in claim 1 wherein the feed mechanism includes a feed support, a feed storage tank is arranged at the lower end of the feed support, and the feed storage tank is connected with the feed support; a feeding conveyor belt is arranged on the feeding support, and a plurality of feeding baffles are arranged on the feeding conveyor belt; the lower extreme of material loading support is equipped with the material loading driven shaft, the upper end of material loading support is equipped with the material loading driving shaft, the material loading driven shaft passes through the material loading conveyer belt and links to each other with the material loading driving shaft, be equipped with the material loading driving sprocket on the material loading driving shaft, be equipped with the material loading drive chain on the material loading driving sprocket.
3. A novel weighing abalone sorter as claimed in claim 2 wherein the conveying sequencing mechanism further comprises a conveyor belt, the conveyor belt is arranged on the conveying support, a conveying motor and a conveying speed reducer are arranged on one side of the conveying support, and the conveying motor is connected with the conveying speed reducer; the conveying device comprises a conveying support, a feeding mechanism, a conveying driven shaft, a conveying speed reducer, a conveying belt and a conveying belt, wherein the conveying belt is arranged at one end, close to the feeding mechanism, of the conveying support; and the driving shaft is also provided with a driving chain wheel, and the driving chain wheel is connected with the feeding transmission chain in a matched manner.
4. A novel weighing abalone sorter as claimed in claim 3 wherein the conveying support is provided with a conveying support discharge port and a recovery tank is arranged below the conveying support discharge port.
5. A novel weighing abalone sorter as claimed in claim 1 wherein the conveyor belt limiting plate is provided with a plectrum limiting hole at a position close to the visual inspection device.
6. The novel weighing abalone sorter of claim 5, wherein a visual detection device is arranged on one side of the conveying and sorting mechanism, the visual detection device comprises a base, a visual support and a plectrum mechanism are arranged on the base, a visual sensor is arranged at the upper end of the visual support, and the upper end of the plectrum mechanism is arranged in a plectrum limiting hole.
7. A novel weighing abalone sorter as claimed in claim 1 wherein the sorting mechanism comprises a sorting support and a sorting drive chain, a sorting drive shaft and a sorting driven shaft are arranged on the sorting support, a sorting motor and a sorting speed reducer are arranged below the sorting support, the sorting motor is connected with the sorting speed reducer, the sorting speed reducer is connected with the sorting drive shaft, a sorting drive sprocket is arranged on the sorting drive shaft, a sorting driven sprocket is arranged on the sorting driven shaft, and the sorting drive sprocket is connected with the sorting driven sprocket through the sorting drive chain.
8. A novel weighing abalone sorter as claimed in claim 7 wherein the sorting support is provided with a tray turning device comprising a tray device, a gravity sensor and a firing device, the sorting transmission chain is provided with a tray device, the sorting support is provided with a firing device, and the gravity sensor is arranged between the tray device and the sorting transmission chain.
9. A novel weighing abalone sorter as claimed in claim 8 wherein the sorting support is provided with a plurality of sorting support discharge ports, the sorting support discharge ports are arranged in cooperation with firing means, and a sorting storage box is arranged below the sorting support discharge ports.
10. A novel weighing type abalone sorter as claimed in claim 7 wherein the sorting mechanism is provided with a control module.
CN202322496184.2U 2023-09-14 2023-09-14 Novel weighing type abalone sorter Active CN220825138U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322496184.2U CN220825138U (en) 2023-09-14 2023-09-14 Novel weighing type abalone sorter

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322496184.2U CN220825138U (en) 2023-09-14 2023-09-14 Novel weighing type abalone sorter

Publications (1)

Publication Number Publication Date
CN220825138U true CN220825138U (en) 2024-04-23

Family

ID=90724781

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322496184.2U Active CN220825138U (en) 2023-09-14 2023-09-14 Novel weighing type abalone sorter

Country Status (1)

Country Link
CN (1) CN220825138U (en)

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