Motor shell, manufacturing method of motor shell, and electric fan
This application provides a motor shell, manufacturing method of motor shell, and electric fan. The motor shell includes an outer shell and a connecting part. The outer shell defines a holding cavity with an opening at one end of it. The connecting part extends along an axial direction of the outer shell on the holding cavity. The connecting part defines a matching surface which is at one end of the connecting part away from the bottom wall of the holding cavity. The matching surface is configured to abut against an inner ring of a bearing. A beneficial effect of this application is that a flatness of the matching surface is easier to improve, which is conducive to increasing a contact area between the matching surface and the inner ring, improving supporting effects of the bearing, reducing skids of the bearing and wears caused by the skids.
1 . A motor shell, configured for holding a rotor assembly rotationally installed on the motor shell via a bearing, and comprising:
an outer shell, comprising a holding cavity, and an opening at one end of the holding cavity;
a connecting part on and extending from a bottom wall of the holding cavity, an extension direction of the connecting part being parallel to an axial direction of the outer shell, the connecting part comprising a matching surface at one end of the connecting part away from the bottom wall of the holding cavity, wherein the matching surface is configured to abut against an inner ring of the bearing; a tolerance of a flatness of the matching surface along the axial direction of the outer shell is less than 0.03 mm; the outer shell comprises a through hole, the connecting part further comprises a ring plate extending from an edge of the through hole away from the bottom wall of the holding cavity; a surface of an end of the ring plate away from the bottom plate is the matching surface; the ring plate comprises a mounting hole configured to fix one end of a shaft core of the rotor assembly, the inner ring of the bearing is connected to an outer peripheral surface of the shaft core and abuts against the matching surface.
2 . The motor shell as claimed in claim 1 , wherein, the outer shell comprises a bottom plate and a lateral plate, the lateral plate is arranged around the bottom plate to form the holding cavity; the bottom plate is provided with the through hole.
3 . The motor shell as claimed in claim 2 , wherein, the ring plate and the bottom plate are integrally formed.
4 . An electric fan, comprising:
a rotor assembly, comprising a shaft core, a magnetic member, one or more fan blades, and a motor shell, wherein the motor shell comprises an outer shell and a connecting part; the outer shell comprises a holding cavity, and an opening at one end of the holding cavity, the connecting part is provided on and extending from a bottom wall of the holding cavity, an extension direction of the connecting part is being parallel to an axial direction of the outer shell, the connecting part comprising a matching surface is at one end of the connecting part away from the bottom wall of the holding cavity; a tolerance of a flatness of the matching surface along the axial direction of the outer shell is less than 0 . 03 mm; the outer shell comprises a through hole, the connecting part further comprises a ring plate extending from an edge of the through hole away from the bottom wall of the holding cavity; a surface of an end of the ring plate away from the bottom plate is the matching surface; the ring plate comprises a mounting hole configured to fix one end of a shaft core of the rotor assembly, the inner ring of the bearing is connected to an outer peripheral surface of the shaft core and abuts against the matching surface; one end of the shaft core extends through the connecting part along the axial direction of the outer shell, the magnetic member is arranged on a side wall of the holding cavity, the one or more fan blades are arranged on a peripheral side of the outer shell;
a bearing, wherein the matching surface is configured to abut against an inner ring of the bearing, the inner ring of the bearing is connected to an outer peripheral surface of the shaft core and abuts against the matching surface;
a support member, arranged on an outer peripheral surface of an outer ring of the bearing; and
a stator assembly, arranged on an outer surface of the support member.
5 . The electric fan as claimed in claim 4 , wherein, the shaft core is spot-welded and/or riveted with the connecting part.
6 . The electric fan as claimed in claim 5 , wherein, the support member is provided with a step hole comprising a first hole segment and a second hole segment; the first hole segment is configured to receive the bearing; the second hole segment is connected to one end of the first hole segment away from the bottom wall of the holding cavity, an aperture of the second hole segment is less than an aperture of the first hole segment; an inner surface of the first hole segment abuts against the outer ring of the bearing.
7 . The electric fan as claimed in claim 4 , wherein, the outer shell comprises a bottom plate and a lateral plate, the lateral plate is arranged around the bottom plate to form the holding cavity; the bottom plate is provided with the through hole.
8 . The electric fan as claimed in claim 7 , wherein, the ring plate and the bottom plate are integrally formed.