Hand, robot system, and control method of hand
A second hand H 2 that couples a first workpiece to a second workpiece, where the first and second workpieces are to be coupled to each other by insertion coupling, includes: a second gripper 5 that grips the first workpiece; a straight-moving actuator 6 that moves the second gripper 5 straight in the direction of a predetermined axis E; and a rotation actuator 7 that rotates the second gripper 5 about the axis E. The second gripper 5 includes three second fingers 51 that grip the first workpiece, and a linkage 52 that opens and closes the three second fingers 51.
1 . A hand that grips a first workpiece and couples the first workpiece to a second workpiece, the first workpiece and the second workpiece being to be coupled to each other by insertion, the hand comprising:
a gripper that grips the first workpiece;
a straight-moving actuator that causes the gripper to move straight in a direction of a predetermined axis; and
a rotation actuator that rotates the gripper about the axis, wherein
the gripper includes at least two fingers that grip the first workpiece and a linkage that opens and closes the at least two fingers.
2 . The hand according to claim 1 , further comprising:
a push actuator that pushes the first workpiece released from gripping by the gripper in the direction of the axis.
3 . The hand according to claim 2 , wherein
the straight-moving actuator and the push actuator are integrated,
the straight-moving actuator includes a shaft extending in the direction of the axis and having a distal end to which the gripper is coupled, and a driver that moves the shaft straight in the direction of the axis, and
the push actuator includes a pusher disposed at the distal end of the shaft and pushes the first workpiece by the pusher.
4 . The hand according to claim 1 , further comprising
a damper that elastically supports the gripper in the direction of the axis.
5 . The hand according to claim 4 , wherein
in a case where the insertion coupling is screwing, the damper absorbs a difference in an amount of movement in the direction of the axis between the gripper and the first workpiece caused by a difference between an amount of movement of the gripper in the direction of the axis per one turn about the axis by the straight-moving actuator and the rotation actuator and a screw pitch of the first workpiece.
6 . The hand according to claim 1 , wherein
the linkage includes links coupled to the at least two fingers, and
the links are disposed at an inner side of the at least two fingers in a radial direction about the axis.
7 . The hand according to claim 1 , wherein
the gripper grips the first workpiece with the axis located at a center of gripping.
8 . The hand according to claim 1 , wherein
the gripper includes three fingers.
9 . A robot system that couples a first workpiece to a second workpiece, the first workpiece and the second workpiece being to be coupled to each other by insertion, the robot system comprising:
a hand; and
a controller that controls the hand, wherein
the hand includes
a gripper that grips the first workpiece,
a straight-moving actuator that moves the gripper straight in a direction of a predetermined axis, and
a rotation actuator that rotates the gripper about the axis,
the gripper includes at least two fingers that grip the first workpiece and a linkage that opens and closes the at least two fingers, and
the controller moves the gripper gripping the first workpiece straight in the direction of the axis by the straight-moving actuator while rotating the gripper about the axis by the rotation actuator, thereby performing rotational coupling of coupling the first workpiece to the second workpiece.
10 . The robot system according to claim 9 , further comprising
the hand further includes a push actuator that pushes the first workpiece released from gripping by the gripper in the direction of the axis,
the controller causes the push actuator to push the first workpiece in the direction of the axis with the first workpiece released from gripping by the gripper, thereby performing pushing coupling of coupling the first workpiece to the second workpiece, and
the first workpiece is partially coupled to the second workpiece by the rotational coupling, and then is further coupled to the second workpiece by the pushing coupling.
11 . The robot system according to claim 10 , wherein
the controller alternately repeats the rotational coupling and the pushing coupling, thereby coupling the first workpiece to the second workpiece.
12 . The robot system according to claim 10 , wherein
the straight-moving actuator and the push actuator are integrated,
the straight-moving actuator includes a shaft extending in the direction of the axis and having a distal end to which the gripper is coupled, and a driver that moves the shaft straight in the direction of the axis, and
the push actuator includes a pusher disposed at the distal end of the shaft and pushes the first workpiece by the pusher.
13 . The robot system according to claim 9 , further comprising
a damper that elastically supports the gripper in the direction of the axis.
14 . The robot system according to claim 13 , wherein
in a case where the insertion coupling is screwing, the damper absorbs a difference in an amount of movement in the direction of the axis between the gripper and the first workpiece caused by a difference between an amount of movement of the gripper in the direction of the axis per one turn about the axis by the straight-moving actuator and the rotation actuator and a screw pitch of the first workpiece.
15 . A control method of a hand including at least two fingers that grip a workpiece and a linkage that opens and closes the at least two fingers, the control method comprising:
gripping a first workpiece by the hand, the first workpiece being to be coupled to a second workpiece by insertion coupling;
rotating the hand gripping the first workpiece about a predetermined axis; and
moving the hand rotating about the axis straight in the direction of the axis, thereby performing rotational coupling of coupling the first workpiece to the second workpiece.
16 . The control method according to claim 15 , further comprising
partially coupling the first workpiece to the second workpiece by the rotational coupling and then pushing the first workpiece in the direction of the axis with the first workpiece released from gripping by the hand, thereby performing pushing coupling of coupling the first workpiece to the second workpiece.
17 . The control method according to claim 16 , wherein
the rotational coupling and the pushing coupling are alternately repeated, thereby coupling the first workpiece to the second workpiece.