1. Technical Field
The present disclosure relates to a system and a method, more particularly to a system and method for processing products.
2. Description of Related Art
Electronic components coming from a factory need to be processed before entering the market. Usually, a number of electronic components are put into a box through manual labor, which is laborious and time-consuming.
Many aspects of the embodiments can be better understood with references to the following drawings. The components in the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the embodiments. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the several views.
The disclosure is illustrated by way of example and not by way of limitation in the figures of the accompanying drawings in which like references indicate similar elements. It should be noted that references to “an” or “one” embodiment in this disclosure are not necessarily to the same embodiment, and such references mean at least one.
Referring to
The mounting mechanism 100 has a sensor device 102. The sensor device 102 includes a first sensor 101 and a second sensor 103. The first and second sensors 101, 103 are used to sensor whether a product is located in at predefined locations.
The transferring device 10 includes a first belt 11, a first controller 13 (a first electromotor), and a first detector 15. The first controller 13 is located on a first end of the first belt 11. The first detector 15 is located on a second end of the first belt 11 adjacent to the second transferring device 20, in one embodiment, the first detector 15 may be an infrared detector, or a gravity detector.
The first control device 200 is electronically connected to the second and third transferring devices 20, 40, and includes a first Electro Discharge Machining (EDM) cabinet 201, a first air cylinder 203 and a second cylinder 205. The first air cylinder 203 is electronically connected to the first EDM cabinet 201 and the second transferring device 20. The second cylinder 205 is electronically connected to the first EDM cabinet 201 and the third transferring device 40.
The second control device 300 includes a second EDM cabinet 301, a third air cylinder 303 electronically connected to the second EDM cabinet 301 and the catching device 30.
The second transferring device 20 includes a second belt 21, a second controller 23 (a second electromotor), and a second detector 25. The second controller 23 is located on a first end of the second belt 21. The second detector 25 is located on a second end of the second belt 21 adjacent to the third transferring device 40, in one embodiment, the second detector 25 may be an infrared detector, or a gravity detector.
The catching device 30 includes a claw 31 and a catching detector 33. In one embodiment, the catching device 30 is adjacent to the second sensor 103.
The third transferring device 40 includes a third belt 41, a third controller 43 (a third electromotor), and a third detector 45. The third controller 43 is located on a first end of the third belt 41. The third detector 45 is located on a second end of the third belt 41 adjacent to the fourth transferring device 50, in one embodiment, the third detector 45 may be an infrared detector, or a gravity detector.
The fourth transferring device 50 includes a fourth belt 51, a fourth controller 53 (a fourth electromotor), and a fourth detector 55. The fourth controller 53 is located on a first end of the fourth belt 51. The fourth detector 55 is located on a second end of the fourth belt 51, in one embodiment, the fourth detector 55 may be an infrared detector, or a gravitational detector.
Referring to
Step 10: the first transferring device 10 transmits a group of the products 80 along a flow direction of the flow line.
The group of product boxes 80, such as four product boxes 80, is placed on the first belt 11. The first detector 15 detects the group of product boxes 80 that is placed on the first belt 11 and sends a first signal to the first controller 13. When the first controller 13 receives the first signal of the first detector 15, the first controller 13 moves the first belt 11 along the flow direction, and the group of product boxes 80 can be moved to the second belt 21 (see
Step 20: the second transferring device 20 receives the group of products 80 from the first transferring device 10 and moves along a direction substantially biased to the flow direction. In one embodiment, the direction can be substantially perpendicular to the flow direction.
The second detector 25 detects the group of product boxes 80 is placed on the second belt 21 and send a first signal to the first control device 200. When the first control device 200 receives the first signal of the second detector 25, the first control device 200 starts the first air cylinder 201 to work. The first air cylinder 201 and the second transferring device 20 moves in unison upward (see
Step 30: the first sensor 101 detects whether the group of products 80 is located on the predefined location.
If yes, the first sensor 101 detects that the group of products 80 is located on the predefined location, the first sensor 101 sends a signal to the first control device 200. Thus, the first control device 200 stops the second transferring device 20 from moving upward. If no, the second transferring device 20 goes on moving upward.
Step 40: processing the group of products 80 when the second transferring device 20 is located in the predefined location. In one embodiment, the process can include manufacturing, assemblies, or packing.
A manipulator (not shown) automatically processes the first one of the group of product boxes 80. When the first one of the group of product boxes 80 is processed, a detector (not shown) on the manipulator sends a signal to the catching detector 33.
Step 50: the catching device 30 catches the processed product 80 to be located on the second transferring device 20.
When the catching detector 33 receives the first signal of the manipulator, the second control device 300 starts the third air cylinder 303. Thus, the third air cylinder 303 pushes the catching device 30 to move towards the first sensor 103 (see
Step 60: the third transferring device 40 receives the processed product 80 caught by the catching device 30.
When the first control device 200 receives the first signal of the second sensor 103, the first control device 200 starts the second air cylinder 203 to move upward, until the first one of the group of product boxes 80 can be placed on the third belt 41 (see
Step 70: the fourth transferring device 50 receives the processed product 80 from the third transferring device 40.
The third controller 43 starts to move the third belt 41 when receiving the second signal of the third detector 45. Thus, the group of product boxes 80 can be transmitted to the fourth belt 50 (see
It is to be understood, however, that even though numerous characteristics and advantages have been set forth in the foregoing description of embodiments, together with details of the structures and functions of the embodiments, the disclosure is illustrative only and changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the disclosure to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
Number | Date | Country | Kind |
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201010602168.1 | Dec 2010 | CN | national |