Rotary energy converter

阅读:129发布:2022-02-09

专利汇可以提供Rotary energy converter专利检索,专利查询,专利分析的服务。并且The disclosure is that of an invention directed to a rotary energy converter so constructed that it may be used either as an internal or external combustion engine, a fluid pump or as a gas or air compressor. The basic configuration consists of a stationary housing within which is rotatably mounted a disc-like primary circular rotor having a parallel-sided chamber symmetrically disposed with respect to its axis of rotation and a secondary circular rotor rotatable within the parallel sides of the chamber of the primary rotor and eccentrically affixed to a shaft that is mounted within the housing for rotation about an axis that is disposed in parallel offset relation to that of the primary rotor. The relation between the diameter of the secondary rotor within the parallel sides of the chamber of the primary rotor and the distance between the axes of the primary rotor and the shaft being such that for each revolution of the primary rotor with respect to the housing two revolutions of the shaft will occur and that due to the relative motions between the primary and secondary rotors there will be only a single relative revolution between the primary and secondary rotors. The housing and opposite ends of the primary rotor chamber are suitably ported for intake and discharge and the basic configurations may be arranged in multiples for operation with respect to a single shaft common to all secondary rotors. The basic configurations also may be arranged in dual units, each of which functions with suitable inter-stage manifolding as a two stage assembly, in order to provide substantially 360* power operation.,下面是Rotary energy converter专利的具体信息内容。

1. In a rotary energy converter, a fixed housing provided with a cylindrical chamber for receiving and operably supporting a primary rotor, said housing being provided with an intake port and an exhaust port extending from the exterior thereof into open communication with the interior of said cylindrical chamber; a circular primary rotor mounted within said cylindrical chamber for rotation about its own fixed axis; said primary rotor being provided with a first symmetrical diametrically-extending parallel-sided chamber having its opposed ends arranged for open communication with the exterior of said primary rotor for passing communication with said intake port and with an intake channel associated therewith; a first circular secondary rotor operably positioned within the said first chamber of said primary rotor between the parallel sides thereof, said first secondary rotor being eccentrically affixed to a shaft operably mounted in said housing for rotation about an axis disposed in parallel offset relation with respect to the axis of rotation of said primary rotor; said primary rotor being provided with a second symmetrical diametrically-extending parallel-sided chamber having its opposed ends arranged for open communication with the exterior of said primary rotor for passing communication with said exhaust port and with an exhaust channel associated therewith, said second parallel-sided chamber having its longitudinal axis oriented at an angle with respect to the longitudinal axis of said first parallel-sidedchamber, said first and second parallel-sided chambers being separated by a median web having a central aperture whereby to provide clearance around said shaft; a second circular secondary rotor operably positioned within said second parallel-sided chamber between the parallel sides thereof and being eccentrically affixed to said shaft at an orientation complementary to the longitudinal axis of said second parallel-sided chamber; one portion of the wall of said cylindrical chamber being provided with an intake channel having an end in open communication with said intake port and another portion of the wall of said cylindrical chamber being provided with a discharge channel, said intake and discharge channels lying in the general plane of said first parallel-sided chamber; the wall of said cylindrical chamber being provided with a transfer channel having one end in open connunication with an end of said discharge channel and its other end extending for communication with the said second parallel-sided chamber; another portion of the wall of said cylindrical chamber being provided with an exhaust channel having one end in open communication with said exhaust port and its other end closed, said exhaust channel lying in the general plane of said second parallel-sided chamber; and a spark plug mounted on said housing intermediate said intake and exhaust ports and extending radially inwardly toward communication with said second parallel-sided chamber whereby to permit said rotary energy converter to operate as a two-stage internal combustion engine.
2. The rotary energy converter of claim 1 additionally including a slip-ring seal mounted on the periphery of each of said first and second secondary rotors.
3. The rotary energy converter of claim 1 additionally including gearing connections between said primary rotor and said shaft for maintaining a predetermined rotational ratio therebetween.
4. The rotary energy converter of claim 3 in which said gearing connections, for a 1:1 rotational ratio between said housing and said primary rotor, maintain a 2:1 rotational ratio between said housing and said secondary rotors and their common shaft and maintain a 1:1 relative rotational ratio between said primary rotor and said secondary rotors and their common shaft.
5. The rotary energy converter of claim 1 in which the opposed ends of said first and second parallel-sided chambers are closed by arcuate end walls and in which the said arrangements for open communication with the exterior of said primary rotor comprise ports extending through said arcuate end walls.
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