Power transmitting system of a vehicle
US-2015354682-A1 · Dec 10, 2015 · US
US9279488B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9279488-B2 |
| Application number | US-201313864960-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 17, 2013 |
| Priority date | Apr 18, 2012 |
| Publication date | Mar 8, 2016 |
| Grant date | Mar 8, 2016 |
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A belt type variable speed-change mechanism transmitting a rotational power from a driving shaft to a driven shaft in a continuously variable manner and a constant-speed power-transmitting mechanism transmitting a rotational power at a constant-speed from the driving shaft to a constant-speed driven-side rotational body supported by the driven shaft in a relatively rotatable manner with respect thereto are accommodated in a casing. A planetary gear mechanism including a first element receiving a variable-speed rotational power through the driven shaft, a second element receiving a constant-speed rotational power through the constant-speed driven-side rotational body and a third element outputting a combined rotational power is supported by the driven shaft in the casing.
Opening claim text (preview).
What is claimed is: 1. A continuously variable transmission comprising: a driving shaft and a driven shaft; a casing that supports the driving shaft and the driven shaft so as to be substantially parallel to each other and be rotatable around respective axis lines while allowing the driving shaft to be operatively connected to a driving power source; a belt type variable speed-change mechanism that includes a driving-side pulley supported by the driving shaft in a non-rotatable manner relative to the driving shaft, and a driven-side pulley supported by the driven shaft in a non-rotatable manner relative to the driven shaft, the belt type variable speed-change mechanism being accommodated in the casing and transmitting a rotational power from the driving shaft to the driven shaft in a state capable of continuously varying a rotational speed of the rotational power to be transmitted to the driven shaft; a constant-speed power-transmitting mechanism that includes a constant-speed driven-side rotational body supported by the driven shaft in a rotatable manner relative to the driven shaft, the constant-speed power-transmitting mechanism being accommodated in the casing and transmitting the rotational power at a constant-speed from the driving shaft to the constant-speed driven-side rotational body; and a planetary gear mechanism that is supported by the driven shaft in the casing and that includes a sun gear supported by the driven shaft in a non-rotatable manner relative to the driven shaft so as to receive a variable-speed rotational power through the driven shaft, a carrier supported by the constant-speed driven-side rotational body so as to receive a constant-speed rotational power through the constant-speed driven-side rotational body and an internal gear outputting a rotational power made by combining the rotational power of the sun gear and the carrier, wherein the carrier supports a planetary gear in a rotatable manner around an axis line, and wherein the planetary gear revolves around the sun gear. 2. A continuously variable transmission according to claim 1 , wherein the casing is detachably mounted to a fixed construction and has an access opening that allows the internal gear to output the rotational power in a state where the casing is mounted to the fixed construction. 3. A continuously variable transmission according to claim 1 , wherein the casing includes an accommodation space that is divided in a liquid-tight manner into a first chamber for accommodating the belt type variable speed-change mechanism and a second chamber for accommodating the constant-speed power-transmitting mechanism and the planetary gear mechanism. 4. A working vehicle comprising a driving power source, an axle unit and the continuously variable transmission according to claim 1 , the axle unit including an axle input shaft, paired right and left driving axles, a differential gear device capable of transmitting the rotational power that has been input from the axle input shaft to the paired driving axles in a differential manner to each other, and an axle case that supports the axle input shaft and the paired driving shafts and that accommodates the differential gear device, wherein the internal gear is provided with output teeth for outputting the rotational power, wherein the casing is detachably connected to the axle case that functions as the fixed construction, and wherein the output teeth of the internal gear engage with a gear provided at the axle input shaft through the access opening in a state where the casing is connected to the axle case. 5. A working vehicle according to claim 4 , wherein the casing is mounted to the axle case in such a manner as that an arrangement direction of the driving shaft and the driven shaft is along the driving axles, wherein the working vehicle further includes right and left supporting stays arranged on both sides of a portion of the axle case that accommodates the differential gear device with respect to the axis line of the paired driving axles, and wherein the supporting stay has a bearing portion that is provided at a proximal end portion and into which the corresponding driving axle is inserted in a rotatable manner around the axis line, and directly or indirectly supports the casing in a state where it is supported by the corresponding driving axle through the supporting stay. 6. A continuously variable transmission comprising: a driving shaft and a driven shaft; a casing that supports the driving shaft and the driven shaft so as to be substantially parallel to each other and be rotatable around respective axis lines while allowing the driving shaft to be operatively connected to a driving power source; a belt type variable speed change mechanism that is accommodated in the casing and that transmits a rotational power from the driving shaft to the driven shaft in a state capable of continuously varying a rotational speed of the rotational power to be transmitted to the driven shaft; a constant-speed power-transmitting mechanism that is accommodated in the casing and that transmits the rotational power at a constant-speed from the driving shaft to a constant-speed driven-side rotational body supported by the driven shaft in a rotatable manner relative to the driven shaft; a planetary gear mechanism that is supported by the driven shaft in the casing and that includes a first element receiving a variable-speed rotational power through the driven shaft, a second element receiving a constant-speed rotational power through the constant-speed driven-side rotational body and a third element outputting a rotational power made by combining the rotational power of the first and second elements; and the casing including an accommodation space that is divided in a liquid-tight manner into a first chamber for accommodating the belt type variable speed-change mechanism and a second chamber for accommodating the constant-speed power-transmitting mechanism and the planetary gear mechanism.
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