A moving body including a body, a wheel coupled to the body and configured to rotate relative to the body, and an auxiliary wheel connected to the body and configured to move upwards and downwards. The auxiliary wheel has an area protruding more downwards than the wheel when the auxiliary wheel is moved to a lowermost side.
1 . A moving body comprising:
a body;
a wheel coupled to the body and configured to rotate relative to the body;
an auxiliary wheel connected to the body and configured to move upwards and downwards relative to the body; and
a connector that connects the body and the auxiliary wheel to each other,
wherein at least a portion of the auxiliary wheel is configured to protrude downward relative to the wheel based on the auxiliary wheel moving to a lowermost side relative to the body,
wherein the connector comprises:
a rotary shaft that extends in a left-right direction,
an auxiliary wheel motor configured to rotate the rotary shaft,
a first rotary member coupled to the rotary shaft and configured to rotate about the rotary shaft based on rotation of the rotary shaft, and
a connection member that extends in an up-down direction and is connected to the auxiliary wheel, the connection member being configured to move upwards and downwards relative to the body based on rotation of the first rotary member about the rotary shaft,
wherein the rotary shaft faces the connection member in a forward direction or a rearward direction, wherein one of the forward direction or the rearward direction defines a reference direction, and
wherein the body has a contact part configured to contact a side surface of the first rotary member in the reference direction to thereby limit rotation of the first rotary member in the reference direction based on the auxiliary wheel moving to the lowermost side.
2 . The moving body of claim 1 , wherein the rotary shaft and the connection member are spaced apart from each other in a forward-rearward direction.
3 . The moving body of claim 1 , wherein the first rotary member comprises a protrusion disposed at a lower end of the first rotary member, the protrusion being configured to protrude in the reference direction based on the auxiliary wheel moving to the lowermost side.
4 . The moving body of claim 3 , wherein the body further comprises:
a support area configured to contact and support an upper surface of the protrusion, the support area being configured to be disposed below the upper surface of the protrusion based on the auxiliary wheel moving to the lowermost side.
5 . The moving body of claim 1 , wherein the auxiliary wheel is configured to rotate about a first axis extending in the up-down direction and to rotate about a second axis extending in a direction orthogonal to the up-down direction.
6 . The moving body of claim 1 , further comprising a controller configured to control the auxiliary wheel motor.
7 . The moving body of claim 1 , wherein the wheel is one of a pair of wheels disposed at left and right sides of the body, respectively, and
wherein the auxiliary wheel is disposed in the body between the pair of wheels.
8 . The moving body of claim 7 , wherein the body extends in a front-rear direction, and
wherein the auxiliary wheel is disposed at a rear side of the body.
9 . The moving body of claim 7 , wherein a diameter of the auxiliary wheel is less than a diameter of the pair of wheels.
10 . The moving body of claim 1 , wherein the contact part of the body is configured to, based on contacting the side surface of the first rotary member in the reference direction, restrict the auxiliary wheel from moving upward from the lowermost side.
11 . The moving body of claim 1 , wherein the connector further comprises:
a second rotary member having (i) an upper side connected to the first rotary member and configured to rotate relative to the first rotary member and (ii) a lower side connected to the connection member and configured to rotate relative to the connection member.
12 . The moving body of claim 11 , wherein the second rotary member is configured to be disposed in upward and downward directions based on the auxiliary wheel moving to the lowermost side.
13 . The moving body of claim 12 , wherein the rotary shaft faces the connection member in the forward direction or the rearward direction, and
wherein an upper end of the second rotary member is offset from a lower end of the second rotary member in the reference direction.
14 . The moving body of claim 11 , wherein the body further comprises:
a linear guide member disposed at front and rear sides of the connection member and configured to restrict the connection member from moving in the forward and rearward directions.
15 . The moving body of claim 14 , wherein the connection member defines grooves at front and rear surfaces of the connection member, the grooves extending in the up-down direction, and
wherein the linear guide member comprises an insertion portion configured to be inserted into the grooves.
16 . The moving body of claim 11 , wherein a length of the first rotary member is less than a length of the second rotary member.
17 . The moving body of claim 11 , wherein the first rotary member and the second rotary member are configured to rotate about a first rotation axis parallel to the rotary shaft, and
wherein the second rotary member and the connection member are rotate about a second rotation axis parallel to the rotary shaft.