US 12,404,853 B2
Electric oil pump for automobile transmission clutch engagement, electric oil pump control method for automobile transmission clutch engagement, vehicle, and vehicle electric oil pump for automobile transmission clutch engagement
Masahiro Ishijima, Kiryu (JP); Masahiro Fueki, Kiryu (JP); Shinji Shibuya, Kiryu (JP); Guodong Tan, Toyota (JP); Taiki Ishida, Toyota (JP); and Tomohiro Chimbe, Toyota (JP)
Assigned to Mitsuba Corporation, Gunma (JP); and Toyota Jidosha Kabushiki Kaisha, Aichi (JP)
Appl. No. 17/606,510
Filed by Mitsuba Corporation, Gunma (JP); and Toyota Jidosha Kabushiki Kaisha, Aichi (JP)
PCT Filed Feb. 6, 2020, PCT No. PCT/JP2020/004531
§ 371(c)(1), (2) Date Aug. 17, 2022,
PCT Pub. No. WO2020/250483, PCT Pub. Date Dec. 17, 2020.
Prior Publication US 2023/0246582 A1, Aug. 3, 2023
Int. Cl. F04B 49/06 (2006.01)
CPC F04B 49/06 (2013.01) [F16D 2500/70418 (2013.01)] 8 Claims
OG exemplary drawing
 
1. An electric oil pump for automobile transmission clutch engagement, comprising:
a temperature sensor that measures a temperature of oil supplied to an oil supply destination relating to clutch engagement of an automobile transmission;
an oil pump drive motor; and
a drive device that includes a computer and a program executed by the computer for realizing a current determination part and a rotation speed determination part,
wherein in a case where the temperature of the oil measured by the temperature sensor is equal to or less than a first temperature and a torque of the oil pump drive motor is smaller than a load of the oil pump drive motor, a current control is performed in which the current determination part determines a current value output to the oil pump drive motor to a predetermined current value determined such that the oil pump drive motor is capable of being driven without stopping, and the oil pump supplies oil to the oil supply destination by the oil pump drive motor being driven based on the determined current value; and
in a case where the temperature of the oil measured by the temperature sensor is larger than the first temperature and the torque of the oil pump drive motor is not smaller than the load of the oil pump drive motor, a rotation speed control is performed in which the rotation speed determination part determines a rotation speed of the oil pump drive motor per predetermined time based on a correspondence relationship between a command duty ratio and an aim rotation speed in response to a required flow rate of the oil supply destination, and the oil pump supplies oil to the oil supply destination by the oil pump drive motor being driven based on the determined rotation speed.