Device and method for grabbing and storing two-dimensional code card
10625954 ยท 2020-04-21
Assignee
Inventors
Cpc classification
B65G47/91
PERFORMING OPERATIONS; TRANSPORTING
B65G47/901
PERFORMING OPERATIONS; TRANSPORTING
G06K13/02
PHYSICS
G01R31/2893
PHYSICS
B65G47/90
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65G47/91
PERFORMING OPERATIONS; TRANSPORTING
G06K13/02
PHYSICS
B65G47/90
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Disclosed are a two-dimensional code card grabbing and storage device and method. The two-dimensional code card grabbing and storage device includes a horizontal base plate. First side plates and second side plates are sequentially disposed on the front side and the rear side of the horizontal base plate separately in the horizontal direction and perpendicularly fixed to the upper surface of the horizontal base plate. First baffles extending inwards are oppositely and perpendicularly disposed on the outer sides of the two first side plates, and second baffles extending inwards are oppositely and perpendicularly disposed on the inner sides of the two second side plates. A first guide plate used for storing tested two-dimensional code cards is obliquely disposed upward between the two first side plates, and a second guide plate used for storing to-be-tested two-dimensional code cards is obliquely disposed upward between the two second side plates. The two-dimensional code card grabbing and storage device further comprises a grabbing plate with one side attached with a nano micro-suction material and the other side fixedly connected with a mechanical claw controlled by a mechanical claw driving mechanism. The present invention has the beneficial effect of sequentially grabbing, discharging, sorting and storing two-dimensional code cards.
Claims
1. A two-dimensional code card grabbing and storage device, characterized by comprising a horizontal base plate; first side plates and second side plates sequentially disposed on a front side and a rear side of the horizontal base plate separately in the horizontal direction and perpendicularly fixed to an upper surface of the horizontal base plate, the first side plates being lower than the second side plates; two first baffles extending inwards are oppositely and perpendicularly disposed on outer sides of the two first side plates; and two second baffles extending inwards are oppositely and perpendicularly disposed on inner sides of the two second side plates; a first guide plate used for storing tested two-dimensional code cards is obliquely disposed upward between the two first side plates; and a second guide plate used for storing to-be-tested two-dimensional code cards is obliquely disposed upward between the two second side plates; wherein the two-dimensional code card grabbing and storage device further comprises a grabbing plate used for grabbing the to-be-tested two-dimensional code cards, a nano micro-suction material adheres to one side of the grabbing plate, and the other side of the grabbing plate is fixedly connected with a mechanical claw controlled by a mechanical claw driving mechanism; the mechanical claw is disposed beside the second side plates, and the distance between the two first baffles and the distance between the two second baffles are greater than the width of the grabbing plate and smaller than the width of the two-dimensional code cards.
2. The two-dimensional code card grabbing and storage device according to claim 1, characterized in that one end of the first guide plate is obliquely fixed upward to the two first baffles, one end of the second guide plate is obliquely fixed upward to the two second baffles, two sides of the first guide plate are fixedly connected with inner side faces of the two first side plates, and two sides of the second guide plate are fixedly connected with inner side faces of the two second side plates.
3. The two-dimensional code card grabbing and storage device according to claim 2, characterized in that the first guide plate is fixed between bottoms of the two first side plates, and the second guide plate is fixed between middle portions of the two second side plates.
4. The two-dimensional code card grabbing and storage device according to claim 1, characterized in that the first side plates located on the front side of the horizontal base plate are disposed adjacently, the second side plates located on the rear side of the horizontal base plate are disposed adjacently, and the inner sides of the two first side plates are connected with outer sides of the two second baffles.
5. The two-dimensional code card grabbing and storage device according to claim 1, characterized in that the first side plates and the second side plates are fixed to the horizontal base plates through bolts, the two first baffles are perpendicularly fixed to the two first side plates through bolts, and the two second baffles are perpendicularly fixed to the two second side plates through bolts.
6. A grabbing and storage method of the two-dimensional code card grabbing and storage device according to claim 1, characterized by comprising the following steps: Step S1, fixing the grabbing plate to the mechanical claw, and driving, by the mechanical claw driving mechanism, the mechanical claw to drive the grabbing plate to a position beside the second side plates; Step S2, moving, by the mechanical claw driving mechanism, the grabbing plate to a position above the second guide plate where the two-dimensional code cards are stacked to grab the two-dimensional code cards; Step S3, grabbing, by the grabbing plate, the uppermost two-dimensional code card on the second guide plate through the nano micro-suction material; Step S4, after the uppermost two-dimensional code card is grabbed, moving, by the mechanical claw driving mechanism, the grabbing plate to a position in front of a test device, and testing a two-dimensional code; Step S5, after the two-dimensional code card is tested, moving, by the mechanical claw driving mechanism, the grabbing plate to a position above the two first side plates, enabling the grabbing plate to be matched with the first baffles, clamping the two-dimensional code card between the two first baffles, and driving, by the mechanical claw driving mechanism, the grabbing plate to make the two-dimensional code card fall onto the first guide plate from the grabbing plate; and Step S6, observing whether all the two-dimensional code cards are grabbed or not; if yes, ending the test; or if not, performing Step S2.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
(1) The present invention is further described with the drawings as follows.
(2)
(3)
(4)
(5)
(6) In the FIGs: 1horizontal base plate, 2first side plate, 3second side plate, 4first baffle, 5second baffle, 6first guide plate, 7second guide plate, 8grabbing plate, 9nano microsuction material, 10two-dimensional code card.
DETAILED DESCRIPTION OF THE INVENTION
(7) A further description of the present invention is given as follows with the drawings and specific embodiment.
(8) As is shown in
(9) From the above description, the present invention has the following beneficial effects: The first guide plate is used for storing the tested two-dimensional code cards 10, the second guide plate is used for storing the to-be-tested two-dimensional code cards 10, and the first guide plate and the second guide plate are disposed obliquely, so that the two-dimensional code cards 10 are sorted automatically under the effect of gravity. Furthermore, the distance between the two first baffles 4 and the distance between the two second baffles 5 are greater than the width of the grabbing plate 8 and smaller than the width of the two-dimensional code cards 10, so that the tested two-dimensional code cards are separated from the grabbing plate 8 under the effect of the first baffles 4 and the mechanical claw driving mechanism. The grabbing plate 8 can automatically grab the two-dimensional code cards 10 through the nano micro suction material 9 on the grabbing plate 8 when close to the two-dimensional code cards 10. The grabbing plate 8 is controlled by a small existing universal three-coordinate robot comprising a mechanical claw capable of moving in the X-axis direction, Y-axis direction and Z-axis direction and a mechanical claw driving mechanism used for driving the mechanical claw.
(10) The nano microsuction material 9 adheres to one side of the grabbing plate 8 through fixing glue and is a nano micro-suction tape.
(11) Furthermore, in this embodiment, one end of the first guide plate 6 is obliquely fixed upward to the two first baffles 4, and one end of the second guide plate 7 is obliquely fixed upward to the two second baffle 5. The two sides of the first guide plate 6 are fixedly connected with the inner side faces of the two first side plates 2, and the two sides of the second guide plate 7 are fixedly connected with the inner side faces of the two second side plates 3.
(12) In this embodiment, the first guide plate 6 is fixed between the bottoms of the two first side plates 2, and the second guide plate 7 is fixed between the middle portions of two second side plates 3.
(13) In this embodiment, the first side plates 2 located on the front side of the horizontal base plate 1 are disposed adjacently, the second side plates 3 located on the rear side of the horizontal base plate 1 are disposed adjacently, and the inner sides of the two first side plates 2 are connected with the outer sides of the two second baffles 5.
(14) In this embodiment, the first side plates 2 and the second side plates 3 are fixed to the horizontal base plate 1 through bolts, the two first baffles 4 are perpendicularly fixed to the two first side plates 2 through bolts, and the two second baffles 5 are perpendicularly fixed to the two second side plates 3 through bolts.
(15) The present invention further provides a grabbing and storage method of the two-dimensional code card 10 grabbing and storage device. The grabbing and storage method comprises the following steps:
(16) Step S1, the grabbing plate 8 is fixed to the mechanical claw, and the mechanical claw is driven by the mechanical claw driving mechanism to drive the grabbing plate 8 to move to a position beside the second side plates 3;
(17) Step S2, the grabbing plate 8 is moved by the mechanical claw driving mechanism to a position above the second guide plate 7 where the two-dimensional code cards 10 are stacked 10 so as to grab the two-dimensional code cards 10;
(18) Step S3, the grabbing plate 8 grabs the uppermost two-dimensional code card 10 on the second guide plate 7 through the nano microsuction material 9;
(19) Step S4, the grabbing plate 8 is moved by the mechanical claw driving mechanism to a position in front of a test device after grabbing the uppermost two-dimensional code card 10, and then the two-dimensional code is tested;
(20) Step S5, after the two-dimensional code is tested, the grabbing plate 8 is moved by the mechanical claw driving mechanism to a position above the two first side plates 2 to be matched with the first baffles 4, the two-dimensional code card 10 is clamped between the two first baffles 4, and the grabbing plate 8 is driven by the mechanical claw driving mechanism to make the two-dimensional code card 10 fall onto the first guide plate 6 from the grabbing plate 8; and
(21) Step S6, whether all the two-dimensional code cards 10 are grabbed or not is observed; if yes, the test is ended; or if not, Step S2 is performed.
(22) The specific implementation process of the present invention is as follows. As is shown in
(23) As is shown in
(24) In conclusion, the two-dimensional grabbing and storage device and method of the present invention can grab two-dimensional code cards without grabbing power and can also discharge and automatically sort tested two-dimensional code cards.
(25) The purposes, technical scheme and advantages of the present invention are further described in detail with the preferred embodiment mentioned above. It would appreciate that the embodiment mentioned above is only one preferred embodiment of the present invention and is not used for limiting the present invention, and any modification, equivalent substitute and improvement made based on the spirit and principle of the present invention should fall within the protection scope of the present invention.