The present invention relates to continuously variable ratio transmissions (“CVTs”). The invention is particularly applicable to such transmissions for industrial or agricultural vehicles, for example tractors, which require a very high torque at low speeds and which often require the vehicle to be shuttled back and forth at low speeds, but which also have the requirement for high forward and high reverse regimes for higher speed, lower torque conditions.
In accordance with a first aspect of the present invention, there is provided a continuously variable ratio transmission (CVT) comprising:
(a) a ratio varying unit (“variator”);
(b) a first epicyclic having two inputs connected to opposite sides of the variator:
(c) a second epicyclic having an input driven by a prime mover and components connected to opposite sides of the variator:
(d) a final drive shaft;
(e) a low regime clutch for selectively connecting the output of the first epicyclic to the final drive shaft in low regime;
(f) a third, mixing, epicyclic connected to the output of the first epicyclic and connected or connectable to the variator and being connectible with the final drive shaft in high regime by way of a high regime clutch;
wherein the high and low regimes are coincident at least one variator ratio and the variator operates in opposite directions in the low and high regimes.
Preferably, the operation ranges of the high and low regimes overlap.
In accordance with a second aspect of the present invention there is provided a continuously variable ratio transmission (CVT) comprising:
(a) a ratio varying unit (“variator”);
(b) a first epicyclic having two inputs connected to opposite sides of the variator:
(c) a second epicyclic having an input driven by a prime mover and components connected to opposite sides of the variator:
(d) a final drive shaft connectible with the variator by way of one of two alternative driven rotatable members connected to opposite sides of the variator respectively; and
(e) a first clutch disposed between an output of the first epicyclic and the final drive shaft for selectively connecting the output of the first epicyclic to the final drive shaft:
the transmission further comprising:
a third, mixing, epicyclic disposed between at least one of the driven rotatable members and the final drive shaft and receiving inputs from the output of the first epicyclic and said driven rotatable shaft; and
a second clutch disposed between said one driven rotatable member and the final drive shaft for selectively connecting the said one driven rotatable member to the final drive shaft via the third epicyclic.
In one embodiment a third clutch is disposed between said other driven rotatable member and the final drive shaft for selectively connecting the said other driven rotatable member to the final drive shaft via the third epicyclic.
The second and third clutches are preferably disposed respectively between the said one driven rotatable member and the third epicyclic and between the said other driven rotatable member and the third epicyclic.
In another embodiment, a fourth epicyclic is disposed between said other driven rotatable member and the final drive shaft and receiving inputs from the output of the first epicyclic and said other driven rotatable shaft and a third clutch is disposed between said other driven rotatable member and the final drive shaft for selectively connecting the said other driven rotatable member to the final drive shaft via the fourth epicyclic.
The second and third clutches are preferably disposed respectively between the third epicyclic and the final drive shaft and the fourth epicyclic and the final drive shaft.
By way of example only, specific embodiments of the present invention will now be described, with reference to the accompanying drawings, in which:—
Referring to
The shafts 32,34 are also connected to two components (the annulus A2 and the sun gear S2) of the recirculating epicyclic 18, the third component (the planet carrier C2) being connected by engagement of a low regime clutch L and via reduction gearing 38 to the output shaft 14.
In addition, the shafts 32,34 are selectively and alternatively connectible via respective reduction gearing 40,42 and respective high regime forward and reverse clutches F,R to the same component (the planet carrier C3) of the mixing epicyclic 20, another component (the annulus A3) of the epicyclic being permanently connected to the output (the planet carrier C2) of the recirculating epicyclic 18. In low regime, the low regime clutch L is engaged and the high regime forward and reverse clutches F,R are disengaged. In low regime, power recirculates through the epicyclic 18 and, as shown in
It will also be seen from
In high forward or high reverse regime, as illustrated in
A second embodiment is illustrated in
The invention is not restricted to the details of the foregoing embodiments.
Number | Date | Country | Kind |
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0326199.7 | Nov 2003 | GB | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/GB04/04736 | 11/10/2004 | WO | 00 | 11/7/2007 |