Work assistance robot
A work assistance robot includes articulated arms, lifting/lowering units that lift and lower the articulated arms, respectively, and a main housing on which the lifting/lowering units are mounted. Each articulated arm has seven or more degrees of freedom including a degree of freedom of an up-and-down movement of the lifting/lowering unit of the articulated arm.
1 . A work assistance robot comprising:
a plurality of articulated arms;
a plurality of lifting/lowering units configured to lift and lower the plurality of articulated arms, respectively; and
a main unit on which the plurality of lifting/lowering units are mounted,
wherein each of the plurality of articulated arms has seven or more degrees of freedom including a degree of freedom of an up-and-down movement of the lifting/lowering unit of the articulated arm,
the plurality of lifting/lowering units are arranged adjacent to each other on a top surface of the main unit, and
a closest joint of each of the plurality of articulated arms to the respective lifting/lowering unit extends vertically from a top surface of the respective lifting/lowering unit such that a rotation axis of the closet joint is along an axis of up-and-down movement of the respective lifting/lowering unit.
2 . The work assistance robot according to claim 1 , wherein:
the plurality of articulated arms include a first articulated arm and a second articulated arm,
the plurality of lifting/lowering units include a first lifting/lowering unit configured to lift and lower the first articulated arm and a second lifting/lowering unit configured to lift and lower the second articulated arm, and
when the first articulated arm is moved to a position higher than the second articulated arm by the first lifting/lowering unit, the first articulated arm is extendable toward an object of work assistance while overlapping with the second articulated arm in a vertical direction.
3 . The work assistance robot according to claim 2 , wherein:
the first articulated arm includes a first joint being the closest joint to the first lifting/lowering unit and a second joint being next to the first joint,
the first joint has a first rotation axis that is along an axis of up-and-down movement of the first lifting/lowering unit, and
the second joint has a second rotation axis that intersects with the first rotation axis.
4 . The work assistance robot according to claim 3 , wherein:
the second articulated arm includes a third joint being the closest joint to the second lifting/lowering unit and a fourth joint being next to the third joint,
the third joint has a third rotation axis that is along an axis of up-and-down movement of the second lifting/lowering unit, and
the fourth joint has a fourth rotation axis that intersects with the third rotation axis.
5 . The work assistance robot according to claim 1 , further comprising a moving mechanism configured to move the main unit to a predetermined position relative to an object of work assistance.
6 . The work assistance robot according to claim 5 , wherein the moving mechanism comprises a plurality of legs and a plurality of casters mounted respectively to the plurality of legs.
7 . The work assistance robot according to claim 1 , wherein each of the plurality of articulated arms has, at a leading end thereof, an attachment part to which one of a plurality of kinds of end effectors used as a surgical tool is selectively attachable.
8 . The work assistance robot according to claim 1 , wherein each of the plurality of lifting/lowering units comprises a shaft and a motor connected to the shaft to raise and lower the shaft.
9 . A work assistance robot comprising:
two articulated arms;
two lifting/lowering units on which the two articulated arms are respectively mounted, the two lifting/lowering units configured to lift and lower the two articulated arms, respectively; and
a housing to which the two lifting/lowering units are mounted,
wherein each of the two articulated arms has seven or more degrees of freedom including a degree of freedom of an up-and-down movement of the articulated arm,
wherein each articulated arm is mounted to the respective lifting/lowering unit via a link that extends from the lifting/lowering unit in a vertical direction, and
wherein when one articulated arm of the two articulated arms is at a position higher than the other arm of the two articulated arms, the one articulated arm is configured to rotate 360 degrees around the housing.
10 . The work assistance robot according to claim 9 , wherein:
the two articulated arms include a first articulated arm and a second articulated arm,
the two lifting/lowering units include a first lifting/lowering unit configured to lift and lower the first articulated arm and a second lifting/lowering unit configured to lift and lower the second articulated arm, and
when the first articulated arm is moved to a position higher than the second articulated arm by the first lifting/lowering unit, the first articulated arm is extendable toward an object of work assistance while overlapping with the second articulated arm in the vertical direction.
11 . The work assistance robot according to claim 10 , wherein:
the first articulated arm includes a first joint being closest to the first lifting/lowering unit and a second joint being immediately adjacent to the first joint,
the first joint has a first rotation axis that is along an axis of up-and-down movement of the first lifting/lowering unit, and
the second joint has a second rotation axis that intersects with the first rotation axis.
12 . The work assistance robot according to claim 11 , wherein:
the second articulated arm includes a third joint being closest the second lifting/lowering unit and a fourth joint being immediately adjacent to the third joint,
the third joint has a third rotation axis that is along an axis of up-and-down movement of the second lifting/lowering unit, and
the fourth joint has a fourth rotation axis that intersects with the third rotation axis.
13 . The work assistance robot according to claim 9 , wherein the two lifting/lowering units are adjacent to each other on an upper part of the housing.
14 . The work assistance robot according to claim 13 , further comprising a plurality of legs mounted to the housing and a plurality of casters mounted to respective ones of the plurality of legs.
15 . The work assistance robot according to claim 9 , further comprising a plurality of legs mounted to the housing and a plurality of casters mounted to respective ones of the plurality of legs.
16 . The work assistance robot according to claim 9 , wherein each of the two articulated arms has, at a distal end thereof, an attachment part to which a surgical tool is selectively attachable.
17 . A work assistance robot comprising:
a housing;
a first articulated arm;
a second articulated arm;
a first shaft connected to the housing and to the first articulated arm and a first motor attached to the first shaft to lift and lower the first shaft so as to lift and lower the first articulated arm in a vertical direction with respect to the housing; and
a second shaft connected to the housing and to the second articulated arm and a second motor attached to the second shaft to lift and lower the second shaft so as to lift and lower the second articulated arm in a vertical direction with respect to the housing,
wherein the first articulated arm has seven or more degrees of freedom including a degree of freedom of an up-and-down movement of the first articulated arm, and the second articulated arm has seven or more degrees of freedom including a degree of freedom of an up-and-down movement of the second articulated arm, and
wherein, when the first articulated arm is moved to a position higher than the second articulated arm by the first motor, the first articulated arm is extendable laterally with respect to the housing while overlapping with the second shaft in the vertical direction.