IP Library Granted Patent US 12692930
Granted Patent B2
US 12692930 · App. 18/739,041 · Granted Jul 28, 2026

Rotary machine and power system comprising the rotary machine

Inventor: Hoe Jong Kim (River Edge, NJ)
F16H37/04
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Quick Facts
Patent No.
US 12692930
App. No.
18/739,041
Granted
Jul 28, 2026
Kind
B2
Abstract

A rotary machine for a power system includes a rotary drum having a rotational center shaft, a stationary half gear including a generally circular non-geared portion and a geared portion having gear teeth, and at least one pair of revolving gears formed of two revolving gears symmetrically positioned about the center shaft and configured to simultaneously revolve around the stationary half gear. At least one rack shaft is operably coupled to the revolving gears to reciprocate back and forth upon rotation of the revolving gears, and as the revolving gears revolve around the stationary half gear, one of the two revolving gears is configured to have gear engagement with the geared portion of the stationary half gear, while the other revolving gear is floating over the non-geared portion of the stationary half gear.

Claims (40)

1 . A rotary machine comprising:

a rotary drum having a center shaft and configured to be rotated relative to a frame or housing, the rotary drum including a body portion and at least one pair of gear positioning arms extended radially outwardly from the rotary drum;

a stationary half gear arranged on the center shaft and including a non-geared portion of generally a circular contour and a geared portion having gear teeth, an outer diameter of the gear teeth raised from the non-geared portion;

at least one pair of revolving gears, the revolving gears symmetrically coupled to corresponding gear positioning arms, respectively;

at least one pair of pinions coaxially coupled to corresponding revolving gears of the at least one pair of gear positioning arms, respectively; and

at least one rack shaft operably coupled to the pinions to provide a relative movement between the rack shaft and the pinions,

wherein as the revolving gears revolve around the stationary half gear, one of the two revolving gears is configured to have gear engagement with the geared portion of the stationary half gear, while the other revolving gear is configured to be idle to float over the non-geared portion of the stationary half gear.

2 . The rotary machine according to claim 1 , wherein the relative movement between the rack shaft and the pinions is either a reciprocating movement of the rack shaft upon rotation of the pinions, or a rotational movement of the pinions, and their associated revolving gears and rotary drum, upon reciprocating movement of the rack shaft.

3 . The rotary machine according to claim 2 , wherein each rack shaft includes linearly arranged gear teeth operably coupled with gear teeth of the pinions.

4 . The rotary machine according to claim 2 , further comprising at least one roller fixing plate, the roller fixing plate including a plurality of rollers for guiding reciprocal movements of the rack shaft.

5 . The rotary machine according to claim 4 , wherein the body portion of the rotary drum includes at least one guide slot diametrically formed there-through, and the rack shaft and the roller fixing plate are coupled to the guide slot(s).

6 . The rotary machine according to claim 2 , wherein the rotary machine has two or more pairs of revolving gears, and two or more pairs of pinions, and wherein the revolving gears and the pinions are positioned equal degrees apart to one another, respectively.

7 . The rotary machine according to claim 2 , further comprising two post bodies spaced apart to each other, the post bodies having at least one bearing for receiving the center shaft of the rotary machine thereto, and wherein the stationary half gear and the rotary drum are arranged between the two post bodies.

8 . The rotary machine according to claim 2 , wherein each rack shaft includes linearly arranged rollers operably coupled with gear teeth of the pinions to transfer the rotational motion of the pinion to a linear motion of the rollers engaged and the rack shaft in a longitudinal center line of the rack shaft, or vice versa.

9 . The rotary machine according to claim 8 , wherein the body portion of the rotary drum includes at least one guide slot diametrically formed there-through, and the rack shaft is coupled to the guide slot(s).

10 . The rotary machine according to claim 8 , wherein the rotary machine has three pairs of revolving gears, thus, a total of six revolving gears, and three pairs of pinions, thus, a total of six pinions, and wherein the revolving gears and the pinions are positioned 60 degrees apart to one another, respectively.

11 . A machine component comprising:

a rotary drum having a center shaft and configured to be rotated, the rotary drum including at least one pair of gear positioning arms extended radially outwardly from the rotary drum;

a stationary half gear arranged on the center shaft and including a non-geared portion of generally a circular contour and a geared portion having gear teeth, an outer diameter of the gear teeth raised from the non-geared portion;

at least one pair of revolving gears, each pair composed of two revolving gears symmetrically positioned to corresponding gear positioning arms; and

at least one rack shaft operably coupled with the revolving gears via a pinion coaxially coupled to each revolving gear to provide a relative movement between the rack shaft and the pinion,

wherein as the revolving gears revolve around the stationary half gear, one of the two revolving gears is configured to have gear engagement with the geared portion of the stationary half gear, while the other revolving gear is configured to be idle to float over the non-geared portion of the stationary half gear.

12 . A power system comprising:

a rotary machine, wherein the rotary machine comprises:

a rotary drum having a center shaft and configured to be rotated relative to a frame or housing, the rotary drum including a body portion and at least one pair of gear positioning arms extended radially outwardly from the rotary drum;

a stationary half gear arranged on the center shaft and including a non-geared portion of generally a circular contour and a geared portion having gear teeth, an outer diameter of the gear teeth raised from the non-geared portion;

at least one pair of revolving gears, the revolving gears symmetrically coupled to corresponding gear positioning arms, respectively;

at least one pair of pinions coaxially coupled to corresponding revolving gears of the at least one pair of gear positioning arms, respectively; and

at least one rack shaft operably coupled to the pinions to provide a relative movement between the rack shaft and the pinions,

wherein as the revolving gears revolve around the stationary half gear, one of the two revolving gears is configured to have gear engagement with the geared portion of the stationary half gear, while the other revolving gear is configured to be idle to float over the non-geared portion of the stationary half gear; and

wherein the power system further comprises:

at least two blades, each blade coupled to each terminal end portion of the rack shafts.

13 . The power system according to claim 12 , further comprising a yaw drive configured to control the orientation of the rotary machine, a gear box couples to the center shaft of the rotary machine, and a generator to convert the wind energy from the center shaft of the rotary machine to electrical energy.

14 . The power system according to claim 13 , further comprising an anemometer to measure the wind speed, and a wind vane to measure the wind direction.

15 . The power system according to claim 12 , wherein the relative movement between the rack shaft and the pinions is a rotational movement of the pinions, and their associated revolving gears and rotary drum, upon reciprocating movement of the rack shaft.

16 . The power system according to claim 15 , further comprising at least one roller fixing plate, the roller fixing plate including a plurality of rollers for guiding reciprocal movements of the rack shaft, wherein the body portion of the rotary drum includes at least one guide slot diametrically formed there-through, and the rack shaft and the roller fixing plate are coupled to the guide slot.

17 . The power system according to claim 12 , wherein the at least one rack shaft includes linearly arranged gear teeth operably coupled with the pinions.

18 . The power system according to claim 12 , wherein the at least one rack shaft includes linearly arranged rollers operably coupled with the pinions.

19 . The power system according to claim 12 , wherein the rotary machine has one pair of revolving gear and one pair of pinions, wherein the revolving gears and the pinions are positioned 180 degrees apart to each other.

20 . The power system according to claim 12 , wherein the rotary machine has two or more pairs of revolving gears and two or more pairs of pinions, wherein the revolving gears and the pinions are positioned equal degrees apart to one another, respectively.