The present invention relates generally to mechanical power systems, and more particularly, to mechanical devices having gears which reduce or increase speed or torque. This type of the epicyclic gear train could be used in transmissions for gasoline or hybrid cars, agricultural mechanisms, off highway and mining machines, ships and boats, industrial gear boxes, gear heads for electrical motor and in any power train applications.
Epicyclic gear train is used in various power train applications for transferring rotary power from an input to an output while changing speed to the output. The most popular use of epicyclic gear train is for planetary gears in automatic vehicles' transmissions. Conventional epicyclic gear train consists of spur or helical gears. Example of different designs of epicyclic gear train is described in U.S. Pat. No. 1,998,891 by Benson, U.S. Pat. No. 2,441,989 by Brown, U.S. Pat. No. 3,934,493 by Hillyer, U.S. Pat. No. 4,043,216 by Steer, U.S. Pat. No. 6,042,086 by Roberts and many patents with planetary gear transmissions.
Examples of using right angle face gears in epicyclic gear train are published in U.S. Pat. No. 6,183,388 by Hawkins, U.S. Pat. No. 2,313,183 by Trbojevich and U.S. Pat. No. 2,924,998 by Sem.
Enveloping worm gearsets, otherwise referred to as enveloping worm/worm gear transmissions, are known in the mechanical power transmission field. The worm gear is driven by the rotation of the enveloping worm with which it meshes. The rotational speed of the associated shaft of the worm gear is a function of the number of teeth on the worm gear and the number of threads on the enveloping worm. The enveloping worm may be single or multiple threaded. The most known enveloping worm is from U.S. Pat. No. 1,683,163 by Cone. Enveloping worm usually has 360 degree or more of thread revolution and is in mesh with matting worm gear where it is placed on top of the worm gear. Axis of rotation of enveloping worm and axis of rotation matting gear are crossed. They are not intersected. This type of mesh has sliding motion along gear tooth and some percentage of rolling motion around axis of worm gear rotation that produces low efficiency reduction and is not recommended to be used in power transferring of mechanical motion. Epicyclic gear train with enveloping worm/worm gear transmission is used as a differential. In U.S. Pat. No. 4,890,511 by Pedersen first enveloping worm satellite is in meshing engagement with first matting gear and second, exactly the same, enveloping worm satellite is in meshing engagement with second matting gear. To produce differential motion it has additional gears for kinematical connection of first enveloping worm satellite with second enveloping worm satellite. The enveloping worm satellites are not attached to each other. Due to low efficiency this epicyclic gear train is used only occasionally for correction of traction.
Accordingly, it is an object of the present invention to provide a new epicyclic gear train that is smaller and more efficient than any known epicyclic gear train. This gear train uses unique new enveloping worm gearing where enveloping pinion has less than one revolution of worm threads. Enveloping worm thread has meshing engagement with matting gear, where axis of rotations of enveloping worm and matting gear are intersected or parallel. In same face engagement when we have enveloping worm in mesh engagement with two matting gears at the same time it is possible to have axes of enveloping worm and matting gear crossed. This is not the traditional use of enveloping worm in mesh with matting gear. The enveloping worm face transmission or parallel axis transmission is a new type of right angle gears (U.S. patent application Ser. No. 10/435,143) and the basic set is comprised of an enveloping worm and a matting gear. Matting means that profile of the gear is generated by the profile of the enveloping worm. This generation could done by real machining where enveloping worm profile is used as a master profile for the hob or it could be generated mathematically or by a computer model where the profile of the matting gear is defining by the profile of the enveloping worm. Unique feature of this new gear set is able to generate matting gear by enveloping pinion with various ratios. It is possible to change ratio of matting gears for the same pinion by as much as 10%. This means that matting gear can provide good mechanical motion even with some design modifications or manufacturing errors. New unique gear train has motion mostly by rolling with very small percentage of sliding. In motion rolling contact pattern moves along matting gear tooth flank. Since said enveloping worm having a thread less than one revolution is positioned in mesh with matting gear it creates suction for better lubrication. This becomes more likely due to asymmetrical profile of the enveloping worm. (Standard enveloping worm always has a symmetrical design). During engagement, enveloping worm and matting gear make a combination of convex surface profile inside concave surface profile where they have very small difference in surface curvature. This significantly reduces contact stress. Enveloping profile of the worm increases contact ratio average by 30%, which also reduces the over all dimension of the gear set. The new gear set is about 50% smaller than any existing right or parallel axis gearing.
These and other objects of the present invention are obtained by providing an epicyclic gear train with a unique enveloping worm as a satellite gear. Enveloping worm epicyclic gear train according with the present invention has not been known. Thus, those skilled in the art did not consider enveloping worm in mesh with a matting gear having axis of rotation parallel or crossing to mating gear axis of rotation to be feasible for commercial applications. In contrast, the enveloping pinion epicyclic gear train of the present invention utilizes gears that are easily manufactured.
Rolling motion with small percentage of sliding motion significantly increases efficiency of epicyclic gear train. For the same size, this invention has almost twice the torque capacity of traditional helical gearing. Suction teeth action makes excellent teeth lubrication that also reduces heat. It allows different casting designs from not very heat conductive material, even from plastic or ceramic. As compared to prior planetary gear drive, new epicyclic gear train with enveloping worm pinion is more compact, quiet and efficient. Thus, the present invention can replace traditional epicyclic gear train like planetary transmissions in many power train applications, especially mobile transportation devices.
In the present invention, the enveloping worm can be with less than one revolution of threads, which can have only one supporting shaft. Further areas of applicability of the present invention will become apparent from the comprehensive description provided hereinafter. It should be understood however that the detailed description and specific examples, while indicating preferred embodiments of the invention, are intended for purposes of illustration only, since various changes and modifications within the spirit and scope of the invention will become apparent to those skilled in the art from this complete description.
The present invention will become more fully understood from the detailed described below:
The following discussion relating to
In the following design examples the epicyclic gear train could use one satellite gear for meshing engagement with matting gear but for the purpose of dynamic balance and better torque capacity the shown number of satellite gears is more than one.
In a pair of gears the pinion is a gear with less or equal number of gear teeth. Gears shown in schematic views
As will be detailed, an epicyclic gear train with a unique enveloping worm in mesh with matting gear embodying the principles of the present invention will be described below with reference to
The reason for using an enveloping worm as a satellite gear is better torque capacity and more efficient motion. A computer model simulation can be utilized to generate the configuration of the enveloping worm and the matting gear. Then gears could be machined using multi-tasking turning center or a special machine, like machines that are widely used for spiral bevel or helical gear production.
Referring now to the drawings.
An isometric view of an epicyclic gear train with enveloping worms 1 in internal and external mesh with parallel shaft matting gears 3 and 8 is shown in
In order to be able to transmit power by using epicyclic gear train we need to have one degree of motion of entire unit having three rotating input/output members: first matting gear, second matting gear and carrier. This could be done by grounding one of the members: first or second matting gears or carrier with satellite gears. Two other members will provide input/output motion with increased or decreased ratio.
The enveloping worm thread has a rolling action contact relationship with the teeth of the matting gear, which provides an increased efficiency compared to a helical planetary transmission. In the present application, it is a surface-to-surface contact between the enveloping worm gear teeth and the matting gear that increases the torque capacity of the epicyclic gear train.
The lower noise of the epicyclic gear train with satellites as enveloping worms compared to helical or spiral bevel epicyclic gear train make using the present invention more beneficial in motor vehicle powertrain applications. For the same size, this invention can provide almost twice the capacity of traditional helical planetary transmissions.
Transmit More Power with Smaller Gears.
Compact alternative for planetary transmissions with helical gears. Enveloping worm in mesh with matting gear has high torque capacity due to surface to surface contact mesh that reduces contact stresses.
In automotive power train applications it saves up to 30% of space and significantly reduces weight.
Efficiency is Extremely High
Enveloping worm face drive or enveloping worm parallel axis drive is very efficient. It has higher percentage of rolling/sliding motion and excellent dynamic lubrication. It has extended life even without lubrication.
Lower Noise
Each thread of the enveloping worm satellite most of the time is in mesh with two teeth. It reduces impact of engagement and disengagement, increases the contact ratio and makes quieter motion.
Manufacturability
Using existing gear cutting machines can make epicyclic gear train not more expensive than existing planetary transmissions. For some configuration, forging technology or power metallurgy could be applied as well.
Several embodiments of the present invention have been disclosed. A worker of ordinary skill in the art would recognize that certain modifications would come within the scope of this invention. In the invention being thus described, it will be obvious that the same may be varied in many ways. Such variations are not to be regarded, as a departure from the spirit and scope of the invention, and all such modifications as would be obvious to one skilled in the art are intended to be included within the scope of the following claims.
Number | Name | Date | Kind |
---|---|---|---|
781944 | Hall | Feb 1905 | A |
1567933 | Fahnestock | Dec 1925 | A |
1683163 | Cone | Sep 1928 | A |
1885686 | Cone | Nov 1932 | A |
1998891 | Benson | Apr 1935 | A |
2208614 | Watson | Jul 1940 | A |
2313183 | Trbojevich | Mar 1943 | A |
2441989 | Brown | May 1948 | A |
2924998 | Sem | Feb 1960 | A |
2973660 | Popper | Mar 1961 | A |
3899939 | Hilado | Aug 1975 | A |
3934493 | Hillyer | Jan 1976 | A |
4010653 | Mekjian | Mar 1977 | A |
4016778 | Von Greyerz | Apr 1977 | A |
4043216 | Steer | Aug 1977 | A |
4512211 | Stritzel | Apr 1985 | A |
5088970 | Dye | Feb 1992 | A |
5108353 | Brewer et al. | Apr 1992 | A |
5112284 | Dye | May 1992 | A |
5171193 | Gagliano | Dec 1992 | A |
5232415 | Brewer et al. | Aug 1993 | A |
5387162 | Yang | Feb 1995 | A |
5453062 | White et al. | Sep 1995 | A |
6148683 | Fleytman | Nov 2000 | A |
6183388 | Hawkins | Feb 2001 | B1 |
6402652 | Fleytman | Jun 2002 | B1 |
6447418 | Fleytman | Sep 2002 | B1 |
6582338 | Fleytman | Jun 2003 | B1 |
Number | Date | Country | |
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20050164824 A1 | Jul 2005 | US |