The invention relates to a freewheel mechanism, usable for transmission of torque in machines.
The freewheel mechanisms are known from patent descriptions U.S. Pat. Nos. 3,166,169 and 4,932,508, in which a roll is squeezed between two surfaces, thus creating friction allowing transmission of torque. In a freewheel mechanism known from a patent description U.S. Pat. No. 2,150,715 there are wedges used to transmit torque. In a freewheel mechanism known from a patent description US 20130068581 there is a gear is squeezed between two surfaces, used as a mean to transmit torque.
The essence of invention is development of such a freewheel mechanism, where the transmitted torque is larger due to a wedge being pulled in between a raceway and a roll which move with a similar linear speed, due to using gear engagement. As the wedge is being pulled in between two synchronized surfaces of the raceway and the roll, the probability of slipping the raceway over the wedge is minimized. The essence of invention is also development of a freewheel mechanism with a good relation of weight and size to the value of transmitted torque. The essence of invention is also development of a freewheel mechanism, that ensures the coaxiality of the raceway in relation to the set of rolls.
The freewheel mechanism according to the invention is characterized in that it contains an external raceway and an external gear that are rigidly connected with each other, and it contains satellite gears and rolls that are rigidly connected with each other, wherein the satellite gears mate with the external gear, wherein the satellite gears are mounted on satellite axles, wherein the satellite axles are mounted in a yoke, wherein the freewheel mechanism contains wedges of type A, which are placed between the rolls and the external raceway.
Preferably freewheel mechanism contains the roll with a diameter close to the satellite gear pitch circle diameter.
Preferably freewheel mechanism contains the external raceway with a diameter close to the external gear pitch circle diameter.
Preferably freewheel mechanism contains satellite gears that are rotationally mounted on satellite axles.
Preferably freewheel mechanism contains satellite axles that are rotationally mounted in a yoke.
Preferably freewheel mechanism contains wedges of type A, which are pressed by springs of type A into the space between the rolls and the external raceway.
Preferably freewheel mechanism contains springs of type A, which are mounted on bolts.
Preferably freewheel mechanism contains external raceway which is rigidly connected to the chainring.
The invention relates also to a freewheel mechanism which is characterized in that it contains a sun raceway and a sun gear that are rigidly connected with each other, and it contains satellite gears and rolls that are rigidly connected with each other, wherein the satellite gears mate with the sun gear, wherein the satellite gears are mounted on satellite axles, wherein the satellite axles are mounted in a yoke, wherein the freewheel mechanism contains wedges of type B, which are placed between the rolls and the sun raceway.
Preferably freewheel mechanism contains the roll with a diameter close to the satellite gear pitch circle diameter.
Preferably freewheel mechanism contains the sun raceway with a diameter close to the sun gear pitch circle diameter.
Preferably freewheel mechanism contains satellite gears that are rotationally mounted on satellite axles.
Preferably freewheel mechanism contains satellite axles that are rotationally mounted in a yoke.
Preferably freewheel mechanism contains wedges of type B, which are pressed by springs of type B into the space between the rolls and the sun raceway.
Preferably freewheel mechanism contains springs of type 8, which are mounted on bolts.
The invention was explained in detail in the embodiment, as shown in the drawing, in which
In embodiment I of the freewheel mechanism according to the invention, as shown in
The process of freewheel mechanism operation in gripping mode according to embodiment I is shown in diagram depicted in
The process of freewheel mechanism operation in rolling mode according to embodiment I is shown in diagram depicted in
It is understood that modifications and variations of the arrangements and the details described herein will be apparent to others skilled in the art. For example, it is possible that wedges 9a in the freewheel can also be pushed in between the external raceway 1 and rolls 4 by other forces, than of a spring, including gravity or magnetic forces.
In embodiment II of the freewheel mechanism according to the invention, as shown in
In the process of freewheel mechanism operation in gripping mode, according to embodiment II, the freewheel transmits the torque in direction R1 from the yoke 8 on the satellite axles 7, and further on to the rolls 4, on to the wedges 9b, and on to the sun raceway 12.
Various modifications can be made without departing from the scope of the invention. The invention can be used in machines that require a one way transmission of torque. In particular, the invention can be used in bicycle planetary gearboxes and rear wheel hubs. The above described embodiments are merely illustrative for the principles of the present invention. It is understood that modifications and variations of the arrangements and the details described herein will be apparent to others skilled in the art. It is the intent, therefore, to be limited only by the scope of the impending patent claims and not by the specific details presented by way of description and explanation of the embodiments herein.
Number | Date | Country | Kind |
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414846 | Nov 2015 | PL | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/PL2016/000112 | 10/5/2016 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2017/086812 | 5/26/2017 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
1610794 | Keller, Sr. | Dec 1926 | A |
2150715 | De Falco | Mar 1939 | A |
3166169 | Wade et al. | Jan 1965 | A |
3442157 | Novinger | May 1969 | A |
3554339 | Richardson | Jan 1971 | A |
3945270 | Nelson | Mar 1976 | A |
4117918 | Silberschlag | Oct 1978 | A |
4184388 | Sfredda | Jan 1980 | A |
4302988 | Takahashi | Dec 1981 | A |
4481842 | Nelson | Nov 1984 | A |
4800996 | Loizeau | Jan 1989 | A |
4932508 | Lederman | Jun 1990 | A |
5024637 | Guichard | Jun 1991 | A |
7153230 | Ai | Dec 2006 | B2 |
8152677 | Knepper | Apr 2012 | B2 |
8597156 | Araki et al. | Dec 2013 | B2 |
20120125729 | Jimbo | May 2012 | A1 |
20130068581 | Araki et al. | Mar 2013 | A1 |
Number | Date | Country |
---|---|---|
356689 | Dec 1905 | FR |
405343 | Feb 1934 | GB |
462044 | Mar 1937 | GB |
Entry |
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International Search Report and Written Opinion for PCT/PL2016/000112 dated Apr. 4, 2017. |
Number | Date | Country | |
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20180328451 A1 | Nov 2018 | US |