IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0987321
(2004-11-15)
|
등록번호 |
US-7275712
(2007-10-02)
|
발명자
/ 주소 |
|
출원인 / 주소 |
|
대리인 / 주소 |
|
인용정보 |
피인용 횟수 :
21 인용 특허 :
35 |
초록
▼
A vehicle, including a vehicle frame, a duct carried by the vehicle frame with the longitudinal axis of the duct perpendicular to the longitudinal axis of the vehicle frame, a propeller rotatably mounted within the duct about the longitudinal axis of the duct to force an ambient fluid therethrough f
A vehicle, including a vehicle frame, a duct carried by the vehicle frame with the longitudinal axis of the duct perpendicular to the longitudinal axis of the vehicle frame, a propeller rotatably mounted within the duct about the longitudinal axis of the duct to force an ambient fluid therethrough from its inlet at the upper end of the duct through its exit at the lower end of the duct, and thereby to produce an upward lift force applied to the vehicle, and a plurality of parallel, spaced vanes pivotally mounted to and across the inlet end of the duct about pivotal axes perpendicular to the longitudinal axis of the duct and substantially parallel to the longitudinal axis of the vehicle frame, the vanes being selectively pivotal about their axes to produce a desired horizontal force component to the lift force applied to the vehicle.
대표청구항
▼
What is claimed is: 1. A vehicle, comprising: a vehicle frame; a duct carried by said vehicle frame with the longitudinal axis of the duct perpendicular to the longitudinal axis of the vehicle frame; propeller rotatably mounted within said duct about the longitudinal axis of the duct to force an am
What is claimed is: 1. A vehicle, comprising: a vehicle frame; a duct carried by said vehicle frame with the longitudinal axis of the duct perpendicular to the longitudinal axis of the vehicle frame; propeller rotatably mounted within said duct about the longitudinal axis of the duct to force an ambient fluid therethrough from its inlet at the upper end of the duct through its exit at the lower end of the duct, and thereby to produce an upward lift force applied to the vehicle; and a plurality of parallel, spaced vanes mounted to and across the inlet end of the duct about axes perpendicular to said longitudinal axis of the duct, said vanes being configured to produce a desired horizontal force component to the lift force applied to the vehicle, wherein said vanes include: a first group of parallel vanes extending across one half of the inlet of said duct at a predetermined acute angle with respect to the longitudinal axis of the vehicle frame; and a second group of parallel vanes extending across the remaining half of the inlet end of said duct at said predetermined angle, but in the opposite direction, with respect to the longitudinal axis of the vehicle frame, wherein said first and second groups of vanes are configured to produce a desired net control force in addition to the lift force applied to the vehicle. 2. The vehicle according to claim 1, wherein said predetermined angle is 45 degrees. 3. The vehicle according to claim 1, wherein said vanes are pivotally mounted to and across the inlet end of the duct about pivotal axes perpendicular to said longitudinal axis of the duct. 4. The vehicle according to claim 3 wherein said vanes are selectively pivotal about their axes to produce said desired horizontal force component. 5. A vehicle, comprising: a vehicle frame; a duct carried by said vehicle frame with the longitudinal axis of the duct perpendicular to the longitudinal axis of the vehicle frame; a propulsion unit mounted within the duct, arranged to force an ambient fluid therethrough from an inlet at the upper end of the duct through an exit at the lower end of the duct, and thereby to produce an upward lift force applied to the vehicle; and a plurality of parallel, pivotally mounted vanes extending across the inlet of the duct about pivotal axes perpendicular to said longitudinal axis of the duct and substantially parallel to said longitudinal axis of the vehicle frame, said vanes being selectively pivotal about their axes to produce a desired horizontal force component to the lift force applied to the vehicle. 6. The vehicle according to claim 5 wherein said vanes have a symmetrical airfoil shape. 7. The vehicle according to claim 5 wherein each of said vanes is split into two halves, each half of all the vanes being separately pivotal from the other half of all the vanes, whereby the force component to the lift force applied to the vehicle is a rotary moment force about the duct longitudinal axis. 8. The vehicle according to claim 5, wherein each of said vanes includes a fixed section and a pivotal section pivotally mounted at the trailing side of the fixed section. 9. The vehicle according to claim 5, wherein said duct includes a second plurality of parallel pivotally mounted vanes extending across said inlet end of the duct about second pivotal axes perpendicular to said pivotal axes of the first-mentioned plurality of vanes and perpendicular to said longitudinal axis the duct. 10. The vehicle according to claim 9 wherein the second pivotal axes of said second plurality of vanes are in a plane vertically spaced from the pivotal axes of said first-mentioned plurality of vanes. 11. The vehicle according to claim 9 wherein the second pivotal axes of said second plurality of vanes are in a common plane with that of the pivotal axes of said first-mentioned plurality of vanes. 12. The vehicle according to claim 5 wherein said duct includes a second plurality of parallel pivotally mounted vanes extending across said exit of the duct about pivotal axes perpendicular to said longitudinal axis of the duct and substantially parallel to said longitudinal axis of the vehicle frame to thereby produce a desired side force component, or a rotary moment force component about the duct transverse axis, to the lift force applied to the vehicle. 13. The vehicle according to claim 12 wherein said first and second plurality of vanes are respectively pivotable in opposite directions to thereby produce a rotary moment about a transverse axis of said duct. 14. The vehicle according to claim 12 wherein said first and second plurality of vanes are respectively pivotable in the same direction to thereby produce a side force on the vehicle. 15. The vehicle according to claim 5 wherein said duct, propulsion unit and plurality of vanes are carried by said vehicle at one end of the vehicle, and said vehicle includes a second duct, propulsion unit and plurality of vanes at the opposite end of the vehicle. 16. The vehicle according to claim 5 wherein the vehicle carried the duct propulsion unit and plurality of vanes at the center the vehicle. 17. A vehicle, comprising: a vehicle frame; a first duct carried by said vehicle frame with the longitudinal axis of the duct perpendicular to the longitudinal axis of the vehicle frame; a propulsion unit rotatably mounted within said first duct about the longitudinal axis of the duct to force an ambient fluid therethrough from its inlet at the upper end of the duct through its exit at the lower end of the duct, and thereby to produce an upward lift force applied to the vehicle; and a plurality of parallel, pivotally mounted vanes extending across the inlet end of the said first duct about pivotal axes perpendicular to said longitudinal axis of said first duct, said vanes being selectively pivotal about their axes to produce a desired horizontal force component to the lift force applied to the vehicle, wherein said vanes include: a first group of parallel vanes extending across one half of the inlet of said first duct and pivotal about axes at a predetermined acute angle with respect to the longitudinal axis of the vehicle frame; and a second group of parallel vanes extending across the remaining half of the inlet end of said first duct and pivotal about axes at said predetermined angle, but in the opposite direction, with respect to the longitudinal axis of the vehicle frame, wherein said first and second groups of vanes are selectively pivotal to produce a desired net control force in addition to the lift force applied to the vehicle. 18. The vehicle according to claim 17 wherein the predetermined angle is 45 degrees. 19. The vehicle according to claim 17 wherein said vehicle comprises a second duct, said first and second ducts located at opposite ends of the vehicle. 20. The vehicle according to claim 19 wherein said first and second ducts are coaxial with the vehicle longitudinal axis.
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