Motor and cleaner comprising the same
A motor comprising: a stator; a rotating shaft arrangeable inside the stator; a rotor rotatable about the rotating shaft by electromagnetically interacting with the stator while the rotating shaft is arranged inside the stator; and an impeller coupleable to the rotating shaft to generate a flow of air. A protrusion or a groove is formed on the impeller to correct for an imbalance of the impeller.
1 . A motor comprising:
a stator;
a rotating shaft arrangeable inside the stator, the rotating shaft rotatable about a rotation axis;
a rotor coupleable to the rotating shaft, the rotor rotatable about the rotation axis of the rotating shaft by electromagnetically interacting with the stator while the rotating shaft is arranged inside the stator; and
an impeller coupleable to the rotating shaft to generate a flow of air,
wherein a plurality of protrusions or a plurality of grooves are formed on an inner surface of a hub which is opposite to a surface of the hub from which a plurality of blades protrude and facing inward toward the rotating shaft,
wherein the impeller further comprises a plurality of recesses, distinct from the plurality of protrusions or the plurality of grooves, formed on the impeller to correct for an imbalance of the impeller, wherein the plurality of recesses are spaced apart from each other along an axial direction of the rotating shaft,
wherein each of the plurality of recesses is formed by cutting at least a portion of the impeller.
2 . The motor of claim 1 , wherein the impeller comprises:
a shaft coupler to which the rotating shaft is coupleable;
a hub extending from an outer surface of the shaft coupler so as to allow the shaft coupler to be arranged at a center of the impeller; and
a plurality of blades protruding from one surface of the hub.
3 . The motor of claim 1 , wherein
the plurality of protrusions or the plurality of grooves is formed at a position adjacent to a rim of the hub.
4 . The motor of claim 1 , wherein
the plurality of protrusions or the plurality of grooves are injected-molded together with the impeller which is injected-molded.
5 . The motor of claim 1 , wherein
an outer radius of the rotor is less than 5 mm to reduce a centrifugal force of the rotor.
6 . The motor of claim 1 , wherein
when an outer radius of the rotor is r and a length of the rotor along an axial direction of the rotating shaft is t,
an equation r/t=0.17 to 0.26 is satisfied.
7 . The motor of claim 1 , further comprising:
a housing to accommodate the stator and the rotor; and
a bearing, coupleable to the housing, to support the rotating shaft to allow the rotor to be rotated relative to the stator while maintaining a predetermined gap therebetween.
8 . The motor of claim 7 , wherein
the housing comprises a first housing to cover one side of the stator and the rotor; and a second housing to cover another side of the stator and the rotor,
wherein the bearing comprises a first bearing coupleable to the first housing and a second bearing coupleable to the second housing.
9 . The motor of claim 8 , wherein
a rotor assembly, with which the impeller, the rotor, the first bearing, and the second bearing are coupleable to the rotating shaft, is coupleable to the housing by passing through the first housing or the second housing.
10 . The motor of claim 9 , wherein
the first housing or the second housing comprises an opening larger than an outer diameter of the first bearing or the second bearing to allow the rotor assembly to pass therethrough.