Hybrid drive system wherein clutch is engaged when engine speed has exceeded motor speed upon switching from motor drive mode to engine drive mode
First Claim
1. A hybrid drive system for an automotive vehicle, comprising:
- (a) an engine operable by combustion of a fuel to generate a drive force;
(b) an electric motor;
(c) an output member operatively connected to a drive wheel of the vehicle for driving the vehicle;
(d) a planetary gear device having a first rotary element connected to said engine, a second rotary element connected to said electric motor; and
a third rotary element;
(e) a first clutch through which said second rotary element is connected to said output member;
(f) a second clutch through which said third rotary element is connected to said output member;
(g) forward-motor-drive control means for engaging said first clutch and releasing said second clutch, to thereby establish a forward motor drive mode in which the automotive vehicle is driven in a forward direction by operation of said electric motor while said engine is at rest;
(h) forward-engine-drive control means for releasing said first clutch and engaging said second clutch, to thereby establish an engine-and-motor drive mode in which the automotive vehicle is driven in the forward direction by operation of both of said engine and said electric motor;
(i) said first clutch being a frictionally coupling clutch; and
(j) first-clutch-releasing stand-by means operable upon switching of a vehicle drive mode from said forward motor drive mode to said engine-and-motor drive mode, said first-clutch-releasing stand-by means reducing an engaging torque of said first clutch to a value not causing slipping of said first clutch, before said first clutch is released.
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Abstract
A hybrid vehicle drive system including (a) an engine, (b) an electric motor, (c) a planetary gear device having a first rotary element connected to the engine, a second rotary element connected to the electric motor and connected through a first clutch to an output member connected to vehicle drive wheel, and a third rotary element connected through a second clutch to the output member, (d) a forward motor drive control device for engaging the first clutch and releasing the second clutch to thereby establish a forward motor drive mode in which the vehicle is driven in a forward direction by the electric motor, (e) a forward-engine-drive control device for engaging at least the second clutch to establish an engine-drive mode in which the vehicle is driven in the forward direction by the engine, and (f) a second-clutch control device operable upon switching of a vehicle drive mode from the forward motor drive mode to the forward engine drive mode, for engaging the second clutch only after the engine speed has exceeded the motor speed.
46 Citations
4 Claims
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1. A hybrid drive system for an automotive vehicle, comprising:
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(a) an engine operable by combustion of a fuel to generate a drive force; (b) an electric motor; (c) an output member operatively connected to a drive wheel of the vehicle for driving the vehicle; (d) a planetary gear device having a first rotary element connected to said engine, a second rotary element connected to said electric motor; and
a third rotary element;(e) a first clutch through which said second rotary element is connected to said output member; (f) a second clutch through which said third rotary element is connected to said output member; (g) forward-motor-drive control means for engaging said first clutch and releasing said second clutch, to thereby establish a forward motor drive mode in which the automotive vehicle is driven in a forward direction by operation of said electric motor while said engine is at rest; (h) forward-engine-drive control means for releasing said first clutch and engaging said second clutch, to thereby establish an engine-and-motor drive mode in which the automotive vehicle is driven in the forward direction by operation of both of said engine and said electric motor; (i) said first clutch being a frictionally coupling clutch; and (j) first-clutch-releasing stand-by means operable upon switching of a vehicle drive mode from said forward motor drive mode to said engine-and-motor drive mode, said first-clutch-releasing stand-by means reducing an engaging torque of said first clutch to a value not causing slipping of said first clutch, before said first clutch is released. - View Dependent Claims (2, 3, 4)
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Specification