DRIVE MOTOR OF ELECTRIC VEHICLE HAVING INVERTER HOUSING MOUNTED THEREIN
20210313860 · 2021-10-07
Assignee
Inventors
Cpc classification
H02K2213/12
ELECTRICITY
H02K5/24
ELECTRICITY
B60K1/00
PERFORMING OPERATIONS; TRANSPORTING
H02K9/19
ELECTRICITY
B60Y2400/61
PERFORMING OPERATIONS; TRANSPORTING
B60K2001/003
PERFORMING OPERATIONS; TRANSPORTING
Y02T10/64
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
H02K7/006
ELECTRICITY
B60K2001/001
PERFORMING OPERATIONS; TRANSPORTING
International classification
H02K5/24
ELECTRICITY
B60K1/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A drive motor includes an inverter housing mounted therein, which couples an inverter housing to the top or side of a drive motor frame, wherein the inverter coupling bracket includes an inverter housing surface-contacting frame in which support gaps of first and second floor frames, surface-contacting the circumferential surface of a flange coupled to one end of the drive motor frame and the circumferential surface of a bracket coupled to the other end of the drive motor frame in the longitudinal direction, are integrally formed, and an arc-shaped drive motor frame circumferential surface-contacting portion is formed on the lower surface of the inverter housing surface-contacting frame, fixing pieces inclined inward are formed at the left and right ends of the first and second floor frames, respectively, and a fixing protruding piece is formed at each of the front and rear ends of the inverter housing surface-contacting frame.
Claims
1. A drive motor of an electric vehicle having an inverter housing (20) mounted therein, which couples an inverter housing (20) to the top or side of a drive motor frame (11) so as to be changeable in position, through an inverter coupling bracket (30) between the drive motor frame (11) and the inverter housing (20), wherein the inverter coupling bracket (30) comprises an inverter housing surface-contacting frame (33) in which support gaps (31a, 32a) of first and second floor frames (31, 32), surface-contacting the circumferential surface of a flange (15) coupled to one end of the drive motor frame (11) and the circumferential surface of a bracket (18) coupled to the other end of the drive motor frame (11) in the longitudinal direction, are integrally formed, and an arc-shaped drive motor frame circumferential surface-contacting portion (33a) is formed on the lower surface of the inverter housing surface-contacting frame (33), fixing pieces (31b, 32b) inclined inward are formed at the left and right ends of the first and second floor frames (31, 32), respectively, and a fixing protruding piece (33b) is formed at each of the front and rear ends of the inverter housing surface-contacting frame (33).
2. The drive motor of claim 1, wherein first and second withdrawal holes (18b, 18c) for guiding a lead wire (W) withdrawn from the inverter housing (20) are formed in the bracket (18), and a temporary stopper (18d) made of a rubber material is detachably inserted into any one of the first and second withdrawal holes (18b, 18c).
3. The drive motor of claim 1, wherein a lead wire guide hole (33c) is formed on one side of the inverter housing surface-contacting frame (33) of the inverter coupling bracket (30), and the lead wire guide hole (33c) corresponds to the first withdrawal hole (18b) or the second withdrawal hole 18c of the bracket (18).
4. The drive motor of claim 1, wherein the inverter coupling bracket (30) has an elastic member (310) made of a rubber material having a cushioning force in which a hollow part (310a) is formed in the fixing protruding pieces (33b) at each of the front and rear ends of the inverter housing surface-contacting frame (33) inserted, and the other end surface of the elastic member (310) is in surface-contact with and is coupled to one side surface of the fixing bracket (20a) at each of the front and rear ends of the inverter housing (20).
5. The drive motor of claim 1, wherein a cooling water circulation passage (20-2) is formed inside the inverter housing (20), a cooling water inlet (20b) and a cooling water outlet (20c) connected to the cooling water circulation passage (20-2) are protrudingly formed at both ends of the inverter housing (20), and the cooling water outlet (11b) of the drive motor frame (11) and the cooling water inlet (20b) of the inverter housing (20) are connected with a cooling water hose.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028] Hereinafter, the present invention will be described in detail with reference to the accompanying drawings.
BEST MODE FOR CARRYING OUT THE INVENTION
[0029]
[0030] Referring to
[0031] A drive motor 10 comprises a drive motor frame 11, a stator 12 fixedly installed inside the drive motor frame 11 to generate magnetic flux, and a rotor 14 arranged in a predetermined air gap with the stator 12 to rotate relative to a rotation shaft 13. A flange 15 and a reducer 16 are installed on one side of the drive motor frame 11, and a stop ring 17, a bracket 18, and a resolver cover 18a are sequentially assembled on the other side. The reducer 16 comprises a plurality of gears to reduce the rotation speed of the rotation shaft 13. For the sake of convenience, the accompanying drawings show only some of the housings of the reducer. The stop ring 16 serves the role of setting the position of the stator 12.
[0032] First and second withdrawal holes 18b and 18c for guiding a lead wire (W) withdrawn from the inverter housing 20 are formed on the top and one side of the bracket 18 at predetermined intervals. All of the withdrawal holes 18b and 18c or any one of them may be closed by having a temporary stopper 18d made of a rubber material inserted therein. Of course, the number of withdrawal holes may be formed in a plurality of three or more instead of two.
[0033] As shown in
[0034] As shown in
[0035] A fixing protruding piece 33b may be formed at each of the front and rear ends of the inverter housing surface-contacting frame 33. The inclined fixing pieces 31b and 32b surface-contact the circumferential surface of the flange 15 and the circumferential surface of the bracket 18 to be fixed with a fixing bolt 40. The fixing protruding piece 33b surface-contacts the fixing bracket 20a at each of the front and rear ends of the inverter housing 20 to be fixed with a fixing bolt 50. At this time, inside the arc-shaped drive motor frame circumferential surface-contacting portion 33a, support intervals 31a and 32a and gaps are formed between the arc-shaped drive motor frame circumferential surface-contacting portion 33a and the circumferential surface of the drive motor frame 11 due to the arc shape. Accordingly, the heat transferred to the inverter housing 20 may be minimized even when the heat generated while operating the drive motor 10 is transferred to the surface of the drive motor frame 11, thereby preventing damage caused by overheating of the drive motor 10, and improving the durability of the inverter.
[0036] A lead wire guide hole 33c is formed on one side of the inverter housing surface-contacting frame 33 of the inverter coupling bracket 30, and the lead wire guide hole 33c may be configured to correspond to the first withdrawal hole 18b or the second withdrawal hole 18c of the bracket 18. Therefore, as shown in
[0037]
[0038] As shown in
[0039] In the present invention, in order to enable accurate and quick assembly of the drive motor 10, as shown in
[0040] Fitting holes into which the fixing bolt 40 is inserted may be formed in advance along the circumferential surface of the flange 15 and the circumferential surface of the bracket 18, which are assembled with the fixing bolt 40, surface-contacting the inclined fixing pieces 31b and 32b of the first and second floor frames 31 and 32 of the inverter coupling bracket 30.
[0041] As such, the present invention allows the position of the inverter housing 20 to be changeable in correspondence to the internal space of the vehicle, by allowing the inverter housing 20 to be coupled through an inverter coupling bracket 30 having a vibration absorption function on the top of the drive motor frame 11 of the drive motor 10 as shown in
[0042]
[0043] A cooling water inlet 11a and a cooling water outlet 11b may be protrudingly formed on the outside of the drive motor frame 11, and the cooling water inlet 11a and the cooling water outlet 11b may be connected to a cooling water tank (not shown) so that the cooling water is circulated by a circulation pump (not shown). As shown in
[0044] It should be noted that the description of the present invention described above is merely an example for understanding the present invention, and is not intended to limit the scope of the present invention. The scope of protection of the present invention is defined by the accompanying claims, and it should be construed that simple modifications or alternations within the scope of the claims fall within the scope of the present invention.