IP Library › Granted Patent US 11,437,882
Granted Patent B2
US 11,437,882 · App. 16/852,975 · Granted Sep 6, 2022

Motor-driven compressor and method of assembling motor-driven compressor

Inventors: Shuji Takimoto (Kariya, JP); Taku Adaniya (Kariya, JP); Shozo Hamana (Kariya, JP)
H02K5/225F04C2/04H02K3/50H02K7/14H02K11/0094H02K11/33H02K15/0062F04C2230/604F04C2240/40F04C2240/803
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Quick Facts
Patent No.
US 11,437,882
App. No.
16/852,975
Granted
Sep 6, 2022
Kind
B2
Abstract

The cluster block accommodates connection terminals and has conductive member insertion holes, into which the conductive members are inserted. The cluster block is disposed between the bottom wall of the housing and second coil ends. The conductive member insertion holes are located on the radially outer side of the inner circumferential surface of the stator core. The cluster block includes a second wall portion in the vicinity of the electric motor and a first wall in the vicinity of the bottom wall of the housing. The second wall portion has a pressed surface on the radially inner side of the inner circumferential surface of the stator core. The outer surface of the first wall portion has a contact surface that is lined up with the pressed surface in the axial direction of the stator core. The contact surface is allowed to contact the bottom wall of the housing.

Claims (43)

1. A motor-driven compressor comprising:

a compression portion, which compresses fluid;

an electric motor, which drives the compression portion and includes a stator, the stator including a tubular stator core and a coil end, which protrudes from an end face in an axial direction of the stator core;

a housing including

a circumferential wall, which includes an inner circumferential surface to which the stator core is fixed, and

an end wall, which is continuous with an end in the axial direction of the circumferential wall and is lined up with the electric motor in the axial direction of the stator core;

a motor drive circuit, which drives the electric motor;

a conductive member, which is electrically connected to the motor drive circuit via a through-hole in the housing;

a motor wire, which is routed out of the coil end;

a connection terminal, which connects the conductive member and the motor wire to each other; and

a cluster block, which accommodates the connection terminal and includes a conductive member insertion hole, into which the conductive member is inserted, the cluster block being disposed between the end wall of the housing and the coil end in the axial direction of the stator core, wherein

when viewed in the axial direction of the stator core, the conductive member insertion hole is located on an outer side in a radial direction of the inner circumferential surface of the stator core,

the cluster block includes a motor-side end face in the vicinity of the electric motor,

the motor-side end face includes a pressed surface,

when viewed in the axial direction of the stator core, the pressed surface is located on an inner side in the radial direction of the inner circumferential surface of the stator core,

the cluster block includes a housing-side end face in the vicinity of the end wall of the housing,

the housing-side end face includes a contact surface, which is lined up with the pressed surface in the axial direction of the stator core, and

the contact surface is allowed to contact the end wall of the housing.

2. The motor-driven compressor according to claim 1 , wherein the cluster block includes an engaging portion, which is engaged with a jig configured to press the pressed surface.

3. The motor-driven compressor according to claim 2 , wherein the cluster block includes another engaging portion.

4. The motor-driven compressor according to claim 1 , wherein

the cluster block includes a protrusion,

the protrusion protrudes from a part of a side surface that connects the housing-side end face and the motor-side end face to each other, the part being located on an inner side in the radial direction of the inner circumferential surface of the stator core when viewed in the axial direction of the stator core, and

the protrusion has a hole, which extends through the protrusion in the axial direction of the stator core.

5. The motor-driven compressor according to claim 1 , wherein

the end wall of the housing includes a motor-side wall surface in the vicinity of the electric motor,

the motor-side wall surface includes a recess, which accommodates a part of the cluster block, and

the contact surface of the contact surface is allowed to contact a bottom surface of the recess.

6. A method of assembling a motor-driven compressor, wherein the motor-driven compressor includes a compression portion, which compresses fluid,

an electric motor, which drives the compression portion and includes a stator, the stator including a tubular stator core and a coil end, which protrudes from an end face in an axial direction of the stator core,

a housing including

a circumferential wall, which includes an inner circumferential surface to which the stator core is fixed, and

an end wall, which is continuous with an end in the axial direction of the circumferential wall and is lined up with the electric motor in the axial direction of the stator core,

a motor drive circuit, which drives the electric motor,

a conductive member, which is electrically connected to the motor drive circuit via a through-hole in the housing,

a motor wire, which is routed out of the coil end,

a connection terminal, which connects the conductive member and the motor wire to each other, and

a cluster block, which accommodates the connection terminal and includes a conductive member insertion hole, into which the conductive member is inserted, the cluster block being disposed between the end wall of the housing and the coil end in the axial direction of the stator core,

the method of assembling the motor-driven compressor comprising:

disposing the cluster block between the end wall of the housing and the coil end in the axial direction of the stator core such that, when viewed in the axial direction of the stator core, the conductive member insertion hole is located on an outer side in a radial direction of an inner circumferential surface of the stator core;

pressing a part of the cluster block that is on an inner side in the radial direction of the inner circumferential surface of the stator core when viewed in the axial direction of the stator core toward the end wall of the housing from inside the stator core using a jig, thereby holding the cluster block with the jig and the end wall of the housing in a state in which a part of the cluster block that is located in the vicinity of the end wall of the housing and is lined up with a part pressed by the jig in the axial direction of the stator core is caused to contact the end wall of the housing;

inserting the conductive member into the through-hole of the housing and the conductive member insertion hole of the cluster block in a state in which the cluster block is held with the jig and the end wall of the housing; and

connecting the conductive member and the connection terminal to each other.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 20, 2020
From: TAKIMOTO, SHUJI; ADANIYA, TAKU; HAMANA, SHOZO
To: KABUSHIKI KAISHA TOYOTA JIDOSHOKKI
Reel/Frame 052442/0669 →
Priority Claims (1)
JP JP2019-084643 · Apr 25, 2019 · national
Continuity (1)
Related Publication 20200343783A1 · Oct 29, 2020
Cited By (2)
US 12,372,089 US 12,500,468