Power unit
A power unit includes a prime mover and a belt continuously variable transmission. The belt continuously variable transmission includes a drive pulley, a driven pulley, a belt wound around the drive pulley and the driven pulley, and a housing forming an accommodation space in which the belt is disposed. The belt continuously variable transmission changes a speed of rotation produced by drive power output from the prime mover. The power unit further includes a temperature sensor configured to detect a temperature of the belt or a temperature corresponding to the temperature of the belt.
1. A utility vehicle comprising:
a prime mover;
a belt continuously variable transmission comprising a drive pulley, a driven pulley, a belt wound around the drive pulley and the driven pulley, and a housing forming an accommodation space in which the belt is disposed, the belt continuously variable transmission being configured to change a speed of rotation produced by drive power output from the prime mover;
a temperature sensor configured to detect a temperature of the belt or a temperature corresponding to the temperature of the belt;
an intake duct connected to the housing; and
an exhaust duct connected to the housing, wherein
the housing includes a dividing wall dividing the accommodation space into a first flow passage and a second flow passage, the first flow passage communicating with an intake passage of the intake duct, the second flow passage communicating with an exhaust passage of the exhaust duct, the second flow passage accommodating the drive pulley, the driven pulley, and the belt;
the dividing wall is provided with an opening between the first flow passage and the second flow passage; and
the temperature sensor is configured to detect a temperature of air in the second flow passage.
2. The utility vehicle according to claim 1 , further comprising a cooling passage through which air flows to cool the belt, wherein
the temperature sensor detects a temperature of a portion of the cooling passage, the portion being located downstream of at least a part of the belt in a direction in which the air flows.
3. The utility vehicle according to claim 2 , wherein
the cooling passage comprises the intake passage of the intake duct, the accommodation space of the housing, and the exhaust passage of the exhaust duct, and
the temperature sensor detects a temperature of the accommodation space or the exhaust passage.
4. The utility vehicle according to claim 1 , further comprising an output device configured to provide a predetermined output to a user in response to a detection signal of the temperature sensor.
5. The utility vehicle according to claim 1 , further comprising an electronic control unit to which a detection signal of the temperature sensor is input, wherein
the electronic control unit sends a signal dependent on the temperature detected by the temperature sensor.
6. The utility vehicle according to claim 5 , further comprising an output device configured to receive the signal sent by the electronic control unit, wherein
the output device provides a predetermined output to a user in response to the signal.
7. The utility vehicle according to claim 5 , wherein when the temperature detected by the temperature sensor exceeds a predetermined threshold, the electronic control unit sends the signal operable to decrease an output of the prime mover.
8. The utility vehicle according to claim 1 , wherein the temperature sensor is mounted on the housing.
9. A utility vehicle comprising:
a prime mover;
a belt continuously variable transmission comprising a drive pulley, a driven pulley, a belt wound around the drive pulley and the driven pulley, and a housing forming an accommodation space in which the belt is disposed, the belt continuously variable transmission being configured to change a speed of rotation produced by drive power output from the prime mover;
an intake duct connected to the housing;
an exhaust duct connected to the housing; and
a temperature sensor, wherein
one of the drive pulley and the driven pulley includes a sheave with an impeller;
the belt continuously variable transmission further comprises an opening that faces the impeller such that a rotation of the impeller causes air to flow from the opening toward the belt;
the temperature sensor is configured to detect a temperature of the air downstream of the opening;
the housing includes a dividing wall dividing the accommodation space into a first flow passage and a second flow passage, the first flow passage communicating with an intake passage of the intake duct, the second flow passage communicating with an exhaust passage of the exhaust duct, the second flow passage accommodating the drive pulley, the driven pulley, and the belt;
the dividing wall is provided with an opening between the first flow passage and the second flow passage; and
the temperature sensor is configured to detect a temperature of air in the second flow passage.