CN203578236U - Conveying and sorting mechanism for automatic production line - Google Patents
Conveying and sorting mechanism for automatic production line Download PDFInfo
- Publication number
- CN203578236U CN203578236U CN201320803968.9U CN201320803968U CN203578236U CN 203578236 U CN203578236 U CN 203578236U CN 201320803968 U CN201320803968 U CN 201320803968U CN 203578236 U CN203578236 U CN 203578236U
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- sorting
- shaft assembly
- motor
- cylinder
- driving shaft
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Abstract
The utility model discloses a conveying and sorting mechanism for an automatic production line, and relates to a conveying and sorting mechanism, aiming to solve the problems that an existing sorting unit is slow in workpiece sorting speed and inaccurate in workpiece sorting. The conveying and sorting mechanism provided by the utility model comprises a diffusion-type photoelectric sensor, an optical fiber sensor and a plurality of magnetic induction approach sensors; two conveying belt supports are fixedly arranged on a base plate in parallel; a driving shaft assembly and a driven shaft assembly are sequentially arranged on two ends of the two conveying belt supports form left to right; a motor support frame is arranged at one side of the driving shaft assembly; a motor is fixed on the upper part of the motor support frame; a plurality of air cylinder supports are sequentially arranged on the two conveying belt supports from left to right; each air cylinder support is provided with an air cylinder; the opposite side of each air cylinder is provided with a sorting groove; the optical fiber sensor is arranged on a sorting region support; the plurality of magnetic induction approach sensors are sequentially arranged on the air cylinder. The conveying and sorting mechanism provided by the utility model is suitable for the conveying and sorting mechanism of an automatic production line.
Description
Technical field
The utility model relates to a kind of transmission and mechanism for sorting, is specifically related to a kind of transmission for automatic assembly line and mechanism for sorting.
Background technology
Automatic technology is widely used in the aspects such as industry, agricultural, military affairs, scientific research, communications and transportation, business, medical treatment, service and family.Large sized complete sets of equipment in automated system, claims again automation equipment.Refer to the process that machine or device program in accordance with regulations or instruction in the situation that of unmanned the intervention automatically operate or control.Sorting unit has been born the important process task of whole automatic producing device, the workpiece of processing and equipping is sorted, and existing sorting unit exists sorting work speed slowly and the inaccurate problem of sorting workpiece.
Utility model content
The purpose of this utility model is to have sorting work speed slowly and the inaccurate problem of sorting workpiece in order to solve existing sorting unit, and then a kind of transmission for automatic assembly line and mechanism for sorting are provided.
The technical solution of the utility model is: a kind of transmission for automatic assembly line and mechanism for sorting comprise base plate, described transmission and mechanism for sorting also comprise connecting gear, mechanism for sorting, diffuse type photoelectric sensor, Fibre Optical Sensor and a plurality of magnetic induction proximity sensor, mechanism for sorting is arranged on connecting gear, described connecting gear comprises two conveyer belt bearings, driving shaft assembly, driven shaft assembly, feed belt, motor support frame and motor, two conveyer belt bearings are fixedly installed on base plate side by side, driving shaft assembly and driven shaft assembly are successively set on the two ends of two conveyer belt bearings from left to right, between driving shaft assembly and driven shaft assembly, by feed belt, realizing band is in transmission connection, motor support frame is arranged on a side of driving shaft assembly, motor is fixed on the top of motor support frame, and the output of motor and driving shaft assembly are rotatably connected, diffuse type photoelectric sensor is arranged on the upper end of motor support frame, described mechanism for sorting comprises off-sorting station support, a plurality of cylinder saddles, a plurality of cylinders and a plurality of sorting groove, a plurality of cylinder saddles are successively set on two conveyer belt bearings from left to right, each cylinder saddle is provided with a cylinder, the relative side of each cylinder is provided with a sorting groove, off-sorting station support is arranged on motor support frame and from left to right on the driving shaft assembly between first cylinder, Fibre Optical Sensor is arranged on the support of off-sorting station, a plurality of magnetic induction proximity sensors are successively set on cylinder.
The quantity of described a plurality of cylinders is 3.
Described motor is three-phase reducing motor.
The utility model compared with prior art has following effect:
1. the utility model is provided with connecting gear and mechanism for sorting, connecting gear has sensed workpiece by diffuse type photoelectric sensor, starter motor is sent in mechanism for sorting by feed belt by workpiece fast, mechanism for sorting comprises Fibre Optical Sensor and a plurality of magnetic induction proximity sensor, according to the material properties feature of workpiece, can start accurately corresponding cylinder, workpiece is sorted in corresponding sorting groove, guaranteed that mechanism for sorting sorting work speed is fast and sorting workpiece is accurate, improved the operating efficiency of automatic assembly line, provide cost savings, and the feed belt in connecting gear can be more stable conveying work pieces, the operation that has guaranteed whole mechanism is smooth and easy.
2. the utility model is simple in structure, and labour has been saved in easy installation and removal, has improved operating efficiency.
Accompanying drawing explanation
Fig. 1 is overall structure schematic diagram of the present utility model.
Fig. 2 is the circuit diagram of PLC.
The specific embodiment
The specific embodiment one: present embodiment is described in conjunction with Fig. 1, present embodiment comprises base plate 1, described transmission and mechanism for sorting also comprise connecting gear, mechanism for sorting, diffuse type photoelectric sensor 11, Fibre Optical Sensor 12 and a plurality of magnetic induction proximity sensor 13, mechanism for sorting is arranged on connecting gear, described connecting gear comprises two conveyer belt bearings 2, driving shaft assembly 3, driven shaft assembly 4, feed belt 5, motor support frame 6 and motor 7, two conveyer belt bearings 2 are fixedly installed on base plate 1 side by side, driving shaft assembly 3 and driven shaft assembly 4 are successively set on the two ends of two conveyer belt bearings 2 from left to right, between driving shaft assembly 3 and driven shaft assembly 4, by feed belt 5, realizing band is in transmission connection, motor support frame 6 is arranged on a side of driving shaft assembly 3, motor 7 is fixed on the top of motor support frame 6, and the output of motor 7 and driving shaft assembly 3 are rotatably connected, diffuse type photoelectric sensor 11 is arranged on the upper end of motor support frame 6, described mechanism for sorting comprises off-sorting station support 14, a plurality of cylinder saddles 8, a plurality of cylinders 9 and a plurality of sorting groove 10, a plurality of cylinder saddles 8 are successively set on two conveyer belt bearings 2 from left to right, each cylinder saddle 8 is provided with a cylinder 9, the relative side of each cylinder 9 is provided with a sorting groove 10, off-sorting station support 14 is arranged on motor support frame 6 and from left to right on the driving shaft assembly 3 between first cylinder 9, Fibre Optical Sensor 12 is arranged on off-sorting station support 14, a plurality of magnetic induction proximity sensors 13 are successively set on cylinder 9.
As a kind of optimal way, the quantity of a plurality of cylinders 9 of present embodiment is 3.
As a kind of optimal way, the motor 7 of present embodiment is three-phase reducing motor.
In conjunction with Fig. 1, operation principle of the present utility model is described:
When workpiece was delivered on feed belt of the present utility model by last operation, diffuse type photoelectric sensor has detected workpiece, transfer signals to PLC, by the program starter motor of PLC, motor rotation drives feed belt work, workpiece is taken in the support of off-sorting station, if the workpiece entering in the support of off-sorting station is white, detect the Fibre Optical Sensor action of white mass, first cylinder enabling signal as the side that keeps left in a plurality of cylinders, white material is pushed in the sorting groove corresponding with cylinder, if the workpiece entering in the support of off-sorting station is black, detect the Fibre Optical Sensor action of black material, second cylinder enabling signal as the side that keeps left in a plurality of cylinders, black material is pushed in the sorting groove corresponding with cylinder, if the workpiece entering in the support of off-sorting station is metal, detect the Fibre Optical Sensor action of metalliferous material, the 3rd the cylinder enabling signal as the side that keeps left in a plurality of cylinders, metal charge is pushed in the sorting groove corresponding with cylinder.The process finishing of automatic assembly line.
Claims (3)
1. the transmission for automatic assembly line and mechanism for sorting, it comprises base plate (1), it is characterized in that: described transmission and mechanism for sorting also comprise connecting gear, mechanism for sorting, diffuse type photoelectric sensor (11), Fibre Optical Sensor (12) and a plurality of magnetic induction proximity sensor (13), mechanism for sorting is arranged on connecting gear, described connecting gear comprises two conveyer belt bearings (2), driving shaft assembly (3), driven shaft assembly (4), feed belt (5), motor support frame (6) and motor (7), two conveyer belt bearings (2) are fixedly installed on base plate (1) side by side, driving shaft assembly (3) and driven shaft assembly (4) are successively set on the two ends of two conveyer belt bearings (2) from left to right, between driving shaft assembly (3) and driven shaft assembly (4), by feed belt (5), realizing band is in transmission connection, motor support frame (6) is arranged on a side of driving shaft assembly (3), motor (7) is fixed on the top of motor support frame (6), and the output of motor (7) and driving shaft assembly (3) are rotatably connected, diffuse type photoelectric sensor (11) is arranged on the upper end of motor support frame (6), described mechanism for sorting comprises off-sorting station support (14), a plurality of cylinder saddles (8), a plurality of cylinders (9) and a plurality of sorting groove (10), a plurality of cylinder saddles (8) are successively set on two conveyer belt bearings (2) from left to right, each cylinder saddle (8) is provided with a cylinder (9), the relative side of each cylinder (9) is provided with a sorting groove (10), off-sorting station support (14) is arranged on motor support frame (6) and from left to right on the driving shaft assembly (3) between first cylinder (9), Fibre Optical Sensor (12) is arranged on off-sorting station support (14), a plurality of magnetic induction proximity sensors (13) are successively set on cylinder (9).
2. a kind of transmission for automatic assembly line according to claim 1 and mechanism for sorting, is characterized in that: the quantity of described a plurality of cylinders (9) is 3.
3. a kind of transmission for automatic assembly line according to claim 2 and mechanism for sorting, is characterized in that: described motor (7) is three-phase reducing motor.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201320803968.9U CN203578236U (en) | 2013-12-10 | 2013-12-10 | Conveying and sorting mechanism for automatic production line |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201320803968.9U CN203578236U (en) | 2013-12-10 | 2013-12-10 | Conveying and sorting mechanism for automatic production line |
Publications (1)
Publication Number | Publication Date |
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CN203578236U true CN203578236U (en) | 2014-05-07 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201320803968.9U Expired - Fee Related CN203578236U (en) | 2013-12-10 | 2013-12-10 | Conveying and sorting mechanism for automatic production line |
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CN (1) | CN203578236U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113917559A (en) * | 2021-09-08 | 2022-01-11 | 南京信息工程大学 | Online monitoring system based on digital twins |
-
2013
- 2013-12-10 CN CN201320803968.9U patent/CN203578236U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113917559A (en) * | 2021-09-08 | 2022-01-11 | 南京信息工程大学 | Online monitoring system based on digital twins |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20140507 Termination date: 20151210 |
|
EXPY | Termination of patent right or utility model |