Nova Patents
EP1857230A1

Joint structure of robot

Abstract

A joint structure of a robot performs a longitudinal swing motion and a lateral swing motion of a hand (8) coupled to an arm link (2). The joint structure includes: a base link (21) as a main body of the arm link (2) having a pair of facing portions (21a); a gimbal link (4) having a longitudinal shaft and (4a) a lateral shaft(4b) not parallel to each other for providing the longitudinal swing motion and lateral swing motion of the coupled body, the longitudinal shaft being supported between the pair of facing portions (21a) ; a main link (5) with one end thereof coupled to the lateral shaft (4b) of the gimbal link (4) and with the other end thereof coupled to the hand (8) ; and a sub link (6) with one end thereof coupled to the gimbal link (4) and with the other end thereof coupled to the hand (8), the sub link (6) being provided crosswise with the main link (5) to form a four link mechanism (1) therewith. This ensures a wide movable angle of the joint.

EP1857230A1, drawing sheet 1
Sheet 1 of 8

Term

0.3 yearsto projected expiry

Projected expiry 22 January 2027, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

10 claims: 2 independent, 8 dependent

  1. 1
    A joint structure of a robot for performing a longitudinal swing motion and a lateral swing motion of a coupled body coupled to a robot link using a drive mechanism, with respect to the robot link, the robot link being for use in a joint of the robot, the joint structure comprising:a base link as a main body of the robot link having a pair of facing portions;a gimbal link having a first rotational shaft and a second rotational shaft which are not parallel to each other so as to provide the longitudinal swing motion and the lateral swing motion of the coupled body, the first rotational shaft being supported between the pair of facing portions;a main link with one end thereof coupled to the second rotational shaft of the gimbal link and with the other end thereof coupled to the coupled body;and a sub link with one end thereof coupled to the gimbal link and with the other end thereof coupled to the coupled body, the sub link being provided crosswise with the main link to form a four link mechanism therewith.
  2. 2
    The joint structure of the robot according to Claim 1, wherein the first rotational shaft is a longitudinal shaft serving as a rotational shaft for the lateral swing motion of the coupled body, and wherein the second rotational shaft is a lateral shaft serving as a rotational shaft for the longitudinal swing motion of the coupled body, and is provided along a direction orthogonal to the longitudinal shaft.
  3. 3
    The joint structure of the robot according to Claim 2, wherein the robot is a humanoid robot;wherein the robot link is a link of an arm between an elbow and a wrist of the humanoid robot;wherein the coupled body is a hand between the wrist and finger tips of the humanoid robot;and wherein a swing direction of the longitudinal swing motion is directions in which a palm of the hand and a back of the hand are faced.
  4. 4
    The joint structure of the robot according to Claim 3, wherein the main link is longer than the sub link, and wherein the hand is coupled to the arm link, such that the main link is fixed to a palm side of the hand, and the sub link is fixed to a back side of the hand.
  5. 5
    The joint structure of the robot according to Claim 4, wherein the main link spans both sides of the lateral shaft;wherein a first rod and a second rod which pivot the main link in a direction for the longitudinal swing motion and in a direction for the lateral swing motion are coupled to the main link via adjustable joints;wherein the first rod is coupled to the main link in a different position from the lateral shaft, and, on one side of the lateral shaft, in a different position from the longitudinal shaft;and wherein the second rod is coupled to the main link in the different position from the lateral shaft, and, on the other side of the longitudinal shaft, in the different position from the longitudinal shaft.
  6. 6
    The joint structure of the robot according to Claim 4, wherein the main link spans both sides of the lateral shaft;wherein a first rod and a second rod which pivot the main link in a direction for the longitudinal swing motion and in a direction for the lateral swing motion are coupled to the main link via adjustable joints;wherein the first rod is coupled to the main link in a different position from the longitudinal shaft, and, on one side of the lateral shaft, in a different position from the lateral shaft;and wherein the second rod is coupled to the main link in the different position from the longitudinal shaft, and, on the other side of the lateral shaft, in the different position from the lateral shaft.
  7. 7
    The joint structure of the robot according to Claim 5 or 6, wherein a line connecting a first coupling point, at which the first rod is coupled to the main link, and a second coupling point, at which the second rod is coupled to the main link, are parallel to the longitudinal shaft or the lateral shaft;and wherein the first coupling point and the second coupling point are at equal distances from the longitudinal shaft and the lateral shaft, respectively.
  8. 8
    The joint structure of the robot according to Claim 7, wherein the gimbal link has a longitudinal shaft portion serving as the longitudinal shaft and a lateral shaft portion serving as the lateral shaft;has the longitudinal shaft portion and the lateral shaft portion being provided with each other in a cross shape;and has a ring portion with a through hole, in a middle portion in the cross shape, the longitudinal shaft portion and the lateral shaft portion protruding each to an outside of the ring portion.
  9. 9
    The joint structure of the robot according to Claim 8, wherein an other end of the first rod is coupled to a first motor included in the drive mechanism via an adjustable joint, and an other end of the second rod is coupled to a second motor included in the drive mechanism via an adjustable joint.
  10. 10
    A joint structure of a wrist of a humanoid robot, the joint structure performing a longitudinal swing motion and a lateral swing motion of a hand between a wrist and finger tips of the humanoid robot using a drive mechanism, with respect to an arm link between an elbow and the wrist thereof, the joint structure comprising:a base link as a main body of the arm link having a pair of facing portions;a gimbal link having a longitudinal shaft serving as a rotational shaft for the lateral swing motion of the hand, and a lateral shaft serving as a rotational shaft for the longitudinal swing motion, the longitudinal shaft being supported between the pair of facing portions so as to rotate in a direction for the lateral swing motion;a main link with one end thereof coupled to the lateral shaft of the gimbal link and with the other end thereof coupled to the hand, the main link pivoting about the lateral shaft in a direction for the longitudinal swing motion;and a sub link with one end thereof coupled to the gimbal link and with the other end thereof coupled to the hand, the sub link being provided crosswise with the main link to form a four link mechanism therewith, the main link spanning both sides of the longitudinal shaft, a first rod and a second rod for pivoting the main link in a direction for the longitudinal swing motion and in a direction for the lateral swing motion being coupled to the main link via adjustable joints, one end of the first rod being coupled to the main link in a different position from the longitudinal shaft, and, on one side of the lateral shaft, in a different position from the lateral shaft, and the other end of the first rod being coupled to a first motor included in the drive mechanism, via an adjustable joint, one end of the second rod being coupled to the main link in the different position from the lateral shaft, and, on the other side of the longitudinal shaft, in the different position from the longitudinal shaft, and the other end of the second rod being coupled to a second motor included in the drive mechanism, via an adjustable joint, a line connecting a first coupling point, at which the first rod is coupled to the main link, and a second coupling point, at which the second rod is coupled to the main link, being parallel to the longitudinal shaft or the lateral shaft, and the first coupling point and the second coupling point being at equal distances from the longitudinal shaft and the lateral shaft, respectively, and the hand being coupled to the arm link, such that a plane formed by the palm of the hand is substantially parallel to a plane formed by the first rod and the second rod, in a position where the hand is straight with respect to the arm link.