Feeding mechanism and method for toy projectile launcher
US-2025130001-A1 · Apr 24, 2025 · US
US9919431B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9919431-B2 |
| Application number | US-201514939233-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 12, 2015 |
| Priority date | Dec 11, 2014 |
| Publication date | Mar 20, 2018 |
| Grant date | Mar 20, 2018 |
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A charge feeding system includes: a frame extending in a direction parallel to a direction of gravity; a plurality of grippers which are attached to the frame, spaced apart from one another in the extension direction of the frame, and independently open and close to grip charges loaded in a charge loading unit; a tray configured to pass through locations where the grippers are disposed along the extension direction of the frame, and transfer the charges between the grippers; and a controller configured to control opening and closing of the grippers and movement of the tray.
Opening claim text (preview).
What is claimed is: 1. A charge feeding system comprising: a frame extending in a direction parallel to a direction of gravity; a plurality of grippers which are attached to the frame, spaced apart from one another in the extension direction of the frame, and independently open and close to grip charges loaded in a charge loading unit comprising a plurality of charge columns in which the charges are vertically stacked; a tray configured to pass through locations where the grippers are disposed along the extension direction of the frame, and transfer the charges between the grippers; a controller configured to control opening and closing of the grippers and movement of the tray; and a sensor configured to sense a number of the charges loaded on the charge loading unit, wherein the controller is configured to control the grippers based on a sensing signal received from the sensor to take the charges out from the charge loading unit. 2. The charge feeding system of claim 1 , further comprising: a driving motor configured to generate power for driving the grippers; and a power transmitter configured to transmit the power, wherein each of the grippers comprises: first and second fingers which are adjustable in location to move away from or closer to each other in a direction crossing the extension direction of the frame; a gripper shaft rotated by the power transmitted from the power transmitter to move at least one of the first and second fingers; and a power switch configured to transmit or block the power to the gripper shaft in response to a signal applied from the controller. 3. The charge feeding system of claim 2 , wherein the at least one of the first and second fingers is disposed to linearly move, and wherein the gripper shaft is disposed to penetrate the first and second fingers and has a screw surface screwed to the at least one of the first and second fingers. 4. The charge feeding system of claim 3 , wherein the screw surface of the gripper shaft has a first screw surface screwed to the first finger in a first rotation direction and a second screw surface screwed to the second finger in a second rotation direction which is opposite to the first rotation direction. 5. The charge feeding system of claim 2 , wherein each of the grippers further comprises: a hinge shaft configured to support the first and second fingers; and a slider screwed to the gripper shaft and configured to linearly move along the gripper shaft and apply pressure to the at least one of the first and second fingers as the gripper shaft is rotated, wherein the slider is coupled to an outer surface of the gripper shaft. 6. The charge feeding system of claim 5 , wherein each of the first and second fingers comprises a large hole through which the gripper shaft extends. 7. The charge feeding system of claim 5 , wherein each of the grippers further comprises an elastic unit configured to elastically support the at least one of the first and second fingers. 8. The charge feeding system of claim 2 , wherein the power transmitter comprises: a plurality of first gears respectively coupled to the grippers; and a plurality of second gears coupled between adjacent first gears, and wherein the driving motor is configured to rotate at least one of the first gears. 9. The charge feeding system of claim 1 , wherein the tray is configured to move from a location of a loaded gripper gripping a charge among the grippers to a location of a non-loaded gripper among the grippers, and transfer the charge from the loaded gripper to the non-loaded gripper. 10. The charge feeding system of claim 1 , further comprising: a transfer shaft comprising a transfer screw surface on an outer surface thereof, and configured to extend in the extension direction of the frame in a rotatable manner; and a transfer motor configured to generate power for rotating the transfer shaft, wherein the tray is screwed to the transfer shaft and configured to move along the transfer shaft as the transfer shaft is rotated. 11. A charge gripping device comprising: a frame extending in a direction parallel to a direction of gravity; a plurality of grippers disposed spaced apart from one another in the extension direction of the frame and configured to independently open and close to grip charges loaded in a charge loading unit; a driving motor configured to generate power for driving the grippers; and a power transmitter configured to transmit the power, wherein each of the grippers comprises: first and second fingers which are adjustable in location to move away from or closer to each other in a direction crossing the extension direction of the frame; a gripper shaft rotated by the power transmitted from the power transmitter to move at least one of the first and second fingers; and a power switch configured to transmit or block the power to the power to the gripper shaft, and wherein each of the grippers further comprises: a hingeshaft configured to support the first and second fingers; and a slider screwed to the gripper shaft and configured to lineary move along the gripper shaft and apply pressure to the at least one of the first and second fingers as the gripper shaft is rotated, wherein the slider is coupled to an outer surface of the gripper shaft. 12. The charge gripping device of claim 11 , wherein the at least one of the first and second fingers is disposed to linearly move, and wherein the gripper shaft is disposed to penetrate the first and second fingers and has a screw surface screwed to the at least one of the first and second fingers. 13. The charge gripping device of claim 12 , wherein the screw surface of the gripper shaft has a first screw surface screwed to the first finger in a first rotation direction and a second screw surface screwed to the second finger in a second rotation direction which is opposite to the first rotation direction. 14. The charge gripping device of claim 11 , wherein each of the first and second fingers comprises a large hole through which the gripper shaft extends. 15. The charge gripping device of claim 11 , wherein each of the grippers further comprises an elastic unit configured to elastically support the at least one of the first and second fingers. 16. The charge gripping device of claim 11 , wherein the power transmitter comprises: a plurality of first gears respectively coupled to the grippers; and a plurality of second gears coupled between the adjacent first gears, and wherein the driving motor is configured to rotate at least one of the first gears. 17. The charge gripping device of claim 11 , further comprising a tray configured to pass through locations where the grippers are disposed along the extension direction of the frame, and transfer the charges between the grippers.
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