The present invention relates to a continuously variable transmission mechanism among the power transmissions.
In the continuously variable transmission mechanism, a practically used belt-type of CVT is a friction transmission between an input and output drive by means of a two-axis configuration, a toroidal-type of CVT is also power roller type of a friction transmission between an input and output drive, there are problems of a lot of a friction loss. Although in the both types a frictional resistance further increases during movement in the transmission range and thereby increasing the friction loss, they has been practically used.
The rotation transmission system in the planetary gear arrangement which has a low frictional resistance is a stepwise shift transmission method by the lock-up means wherein each gear ratio is fixed, and it has been practically insufficient to obtain a continuously variable transmission.
However, although in the input side planetary gear revolution driving method of controlling and driving a ring gear in the planetary gear arrangement, a driving method in which a sun gear is an output power can obtain the highest ratio of speed up, a brake controlling of the rotation of the ring gear during a revolution driving of the planetary gear, or a mechanism of controlling and driving a variable transmission by another power makes it possible to carry out a continuously variable transmission, but there have been disadvantages that frictions or other power load must continue to be added at all times from a stable low geared.
In the use of a continuously variable transmission, if there is not a large friction device or power load device, this disadvantages makes it possible to render a problem that it is impossible to drive and control the ring gear smoothly and continuously.
The problem to be solved is that in a shift and rotation transmission system by a set of the planetary gear arrangement, a brake controlling of the ring gear, or mechanisms such as those of controlling and driving by another power tends to become complicated and a large-scale, and it is impossible to obtain a continuously variable transmission arrangement from a stable low geared smoothly and simply.
The present invention is a configuration capable of carrying out a continuously variable transmission by an arrangement of a set of planetary gear, for example, as described in Figure, and the most important feature is a continuously variable transmission mechanism wherein an input rotational force, an output side load and a cam arm makes it possible to smoothly and simply carry out a continuously variable transmission from a stable low geared.
A planetary gear self-actuated control drive type continuously variable transmission mechanism according to the present invention makes it possible to carry out a continuously variable transmission by an arrangement of a set of planetary gear, and an input rotational force, an output side load and a cam arm makes it possible to smoothly carry out a continuously variable transmission from a stable low geared by a simple structure. This makes it possible to carry out applications and integration into the various rotary drive transmission and thereby the present invention having an advantage that it is possible to use it for a drive machine which is required for a smaller device than the belt type pf CVT mechanism.
In order to achieve an object that it is impossible to achieve a continuously variable transmission by a set of the planetary gear arrangement, the parent-child planetary gear control drive by the input rotational force through an output side load and a cam arm (2a, b, c, d) makes it possible to make change and carry out a continuously variable transmission.
A push gear (1a, b, c) with a power roller is meshed with the small gear of the a parent-child planetary gear (7a, b, to be able to carry out a reciprocating motion by the one-way mechanism (10). Both are supported by the support frame (4), a cam arm (2a, b, c, d) with cam mounts on the above and below is supported by an outer circumferential support frame (5), a control gear (6) and an outer cam (3) makes it possible to push and change a lift amount of a cam arm shown as r.
By an input rotation of a support frame (4) indicated as an arrow direction, an input rotational force as indicated by the arrow is transmitted to the large gear of the parent-child planetary gear (7a, b, c) and the small gear of the parent-child planetary gear (7a, b, c) via the one-way mechanism (10) through the load at the output side of the sun gear (9) to push the engaged push gear (1a, b, c) to the direction of an outer circumference. And the power roller (8) is pushed and stopped with a surface of the inner wall of the outer circumferential support frame (5) to rotate it integral with the support frame (4). And the input rotation by offsetting the load at the output side with a surface of the inner wall of the outer circumferential support frame (5) makes it possible to attain a stop of the reciprocating motion of the push gear (1a, b, c) to obtain a revolution drive wherein the rotation of the parent-child planetary gear (7a, b, c) is forcibly stopped.
The control gear (6) and the outer cam (3) push a cam arm (2a, b, c, d), every time the power roller (8) passes through the surface of the inner wall of the outer circumferential support frame (5) and the cam arm (2a, b, c, d), the reciprocating drive of the push gear is carried out through the one-way mechanism (10), and an addition of the forcible driving force of the rotation to the parent-child planetary gear (7a, b, c) continuously makes it possible to control the rotation and revolution drive of the large gear of the parent-child planetary gear (7a, b, c) universally.
In
In
The rotating and driving means of the outer cam (3) and an outer circumferential support frame (5) according to this control gear (6) makes it possible to attain a change of the lift amount of the cam arm (2a, b, c, d) to change of both high geared region and low geared region instantly with smaller resistance even if it is during an input or a state of stopping an input.
In
An overall outer circumference diameter can be small in
It is possible to apply it as a new another application comparing with two axes type of CVT by the friction drive, since it is a continuously variable transmission which is a set of the planetary gear arrangement by the one central axis, and is simple and a small size with no loss of friction.
1
a, b, c a push gear
2
a, b, c, d a cam arm
3 an outer cam
4 a support frame
5 an outer circumferential support frame
6 a control gear
7
a, b, c a parent-child planetary gear with one-way mechanism
8 a power roller
9 a sun gear
10 a one-way mechanism
11 a central axis
12 an axis (Supported by the support frame)
r an amount of lift
Number | Date | Country | Kind |
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2012-138212 | Jun 2012 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP2013/065902 | 6/3/2013 | WO | 00 |