The present invention relates to vehicles, and particularly to Vertical Take-Off and Landing (VTOL) vehicles having multi-function capabilities.
VTOL vehicles rely on direct thrust from propellers or rotors, directed downwardly, for obtaining lift necessary to support the vehicle in the air. Many different types of VTOL vehicles have been proposed where the weight of the vehicle in hover is carried directly by rotors or propellers, with the axis of rotation perpendicular to the ground. One well known vehicle of this type is the conventional helicopter which includes a large rotor mounted above the vehicle fuselage. Other types of vehicles rely on a multitude of propellers that are either exposed (e.g., unducted fans), or installed inside circular cavities, shrouds, ducts or other types of nacelle (e.g., ducted fans), where the flow of air takes place inside ducts. Some VTOL vehicles (such as the V-22) use propellers having their axes of rotation fully rotatable (up to 90 degrees or so) with respect to the body of the vehicle; these vehicles normally have the propeller axis perpendicular to the ground for vertical takeoff and landing, and then tilt the propeller axis forward for normal flight. Other vehicles use propellers having nearly horizontal axes, but include aerodynamic deflectors installed behind the propeller which deflect all or part of the flow downwardly to create direct upward lift.
A number of VTOL vehicles have been proposed in the past where two or four propellers, usually mounted inside ducts (i.e., ducted fans), were placed forwardly of, and rearwardly of, the main payload of the vehicle. One typical example is the Piasecki VZ-8 ‘Flying Jeep’ which had two large ducts, with the pilots located to the sides of the vehicle, in the central area between the ducts. A similar configuration was used on the Chrysler VZ-6 and on the CityHawk flying car. Also the Bensen ‘Flying Bench’ uses a similar arrangement. The Curtiss Wright VZ-7 and the Moller Skycar use four, instead of two, thrusters where two are located on each side (forward and rear) of the pilots and the payload, the latter being of fixed nature at the center of the vehicle, close to the vehicle's center of gravity.
The foregoing existing vehicles are generally designed for specific functions and are therefore not conveniently capable of performing a multiplicity of functions.
An object of the present invention is to provide a vehicle of a relatively simple inexpensive construction and yet capable of performing a multiplicity of different functions.
According to the present invention, there is provided a vehicle, comprising: a fuselage having a longitudinal axis and a transverse axis; at least one lift-producing propeller carried by the fuselage on each side of the transverse axis; a pilot's compartment formed in the fuselage between the lift-producing propellers and substantially aligned with the longitudinal axis; and a pair of payload bays formed in the fuselage between the lift-producing propellers and on opposite sides of the pilot's compartment.
According to further features in the preferred embodiments of the invention described below, each of the payload bays includes a cover deployable to an open position providing access to the payload bay, and to a closed position covering the payload bay. In some described preferred embodiments, the cover of each of the payload bays is pivotally mounted to the fuselage along an axis parallel to the longitudinal axis of the fuselage at the bottom of the respective payload bay, such that when the cover is pivoted to the open position it also serves as a support for supporting the payload or a part thereof in the respective payload bay.
Various embodiments of the invention are described below, wherein the lift propellers are ducted or unducted fans, and wherein the fuselage carries a pair of the lift producing propellers on each side of the transverse axis, a vertical stabilizer at the rear end of the fuselage, or a horizontal stabilizer at the rear end of the fuselage.
Several preferred embodiments are also described below wherein the fuselage further carries a pair of pusher propellers at the rear end of the fuselage, on opposite sides of the longitudinal axis. In the described embodiments, the fuselage carries two engines, each for driving one of the lift-producing propellers and pusher propellers with the two engines being mechanically coupled together in a common transmission. In one described preferred embodiment, the two engines are located in engine compartments in pylons formed in the fuselage on opposite sides of its longitudinal axis. In another described embodiment, the two engines are located in a common engine compartment aligned with the longitudinal axis of the fuselage and underlying the pilot's compartment.
One preferred embodiment is described wherein the vehicle is a vertical take-off and landing (VTOL) vehicle and includes a pair of stub wings each pivotally mounted under one of the payload bays to a retracted, stored position, and to an extended, deployed position for enhancing lift. Another embodiment is described wherein the vehicle includes a flexible skirt extending below the fuselage enabling the vehicle to be used as, or converted to, a hovercraft for movement over ground or water. A further embodiment is described wherein the vehicle includes large wheels attachable to the rear end of the fuselage for converting the vehicle to an all terrain vehicle (ATV).
As will be described more particularly below, a vehicle constructed in accordance with the foregoing features may be of a relatively simple and inexpensive construction capable of conveniently performing a host of different functions besides the normal functions of a VTOL vehicle. Thus, the foregoing features enable the vehicle to be constructed as a utility vehicle for a large array of tasks including serving as a weapons platform; transporting personnel, weapons, and/or cargo; evacuating medically wounded, etc., without requiring major changes in the basic structure of the vehicle when transferring from one task to another.
Further features and advantages of the invention will be apparent from the description below.
The invention is herein described, by way of example only, with reference to the accompanying drawings, wherein:
a, 6b and 6c are side, top and rear views, respectively, illustrating another VTOL vehicle constructed in accordance with the present invention and including pusher propellers in addition to the lift-producing propellers;
a–8d illustrate examples of various tasks and missions capable of being accomplished by the vehicle of
a and 9b are side and top views, respectively, illustrating another VTOL vehicle constructed in accordance with the present invention;
a and 11b are side and top views, respectively, illustrating a VTOL vehicle constructed in accordance with any one of
c and 11d are views corresponding to those of
It is to be understood that the foregoing drawings, and the description below, are provided primarily for purposes of facilitating understanding the conceptual aspects of the invention and various possible embodiments thereof, including what is presently considered to be a preferred embodiment. In the interest of clarity and brevity, no attempt is made to provide more details than necessary to enable one skilled in the art, using routine skill and design, to understand and practice the described invention. It is to be further understood that the embodiments described are for purposes of example only, and that the invention is capable of being embodied in other forms and applications than described herein.
As indicated earlier, the present invention provides a vehicle of a novel construction which permits it to be used for a large variety of tasks and missions with no changes, or minimum changes, required when converting from one mission to another.
The basic construction of such a vehicle is illustrated in
Vehicle 10 further includes a pilot's compartment 13 formed in the fuselage 11 between the lift-producing propellers 12a, 12 and substantially aligned with the longitudinal axis LA and transverse axis TA of the fuselage. The pilot's compartment 13 may be dimensioned so as to accommodate a single pilot or two (or more) pilots, as shown, for example, in
Vehicle 10 illustrated in
Vehicle 10 illustrated in
Vehicle 20 illustrated in
Vehicle 20 illustrated in
Vehicle 20 illustrated in
Vehicle 30 illustrated in
Vehicle 50 illustrated in
a, 6b and 6c are side, top and rear views, respectively, of another vehicle constructed in accordance with the present invention. The vehicle illustrated in
Vehicle 60 further includes a pilot's compartment 63 centrally of the fuselage 61, a pair of payload bays 64a, 64b laterally of the fuselage and of the pilot's compartment, a front landing gear 65a, a rear landing gear 65b, and a stabilizer, which, in this case, is a horizontal stabilizer 66 extending across the rear end of the fuselage 61.
Vehicle 60 illustrated in
The two pusher propellers 67a, 67b are preferably variable-pitch propellers enabling the vehicle to attain higher horizontal speeds. The horizontal stabilizer 66 is used to trim the vehicle's pitching moment caused by the ducted fans 62a, 62b, thereby enabling the vehicle to remain horizontal during high speed flight.
Each of the pusher propellers 67a, 67b is driven by an engine enclosed within the respective pylon 61a, 61b. The two engines are preferably turbo-shaft engines. Each pylon is thus formed with an air inlet 68a, 68b at the forward end of the respective pylon, and with an air outlet (not shown) at the rear end of the respective pylon.
In the pictorial illustration of
Thus, as shown in
In
The latter feature is more particularly shown in
a and 9b are side and top views, respectively, illustrating another vehicle, generally designated 90, of a slightly modified construction from vehicle 60 described above. Thus, vehicle 90 illustrated in
As shown in
a–11d illustrate another vehicle, therein generally designated 110, which is basically of the same construction as vehicle 60 described above with respect to
The front and rear landing gear, shown at 115a and 115b, could also by pivoted to a stowed position to enable higher speed flight, as shown in
Vehicles constructed in accordance with the present invention may also be used for movement on the ground. Thus, the front and rear wheels of the landing gears can be driven by electric or hydraulic motors included within the vehicle.
When the vehicle is used as an ATV as shown in
It will thus be seen that the invention thus provides a utility vehicle of a relatively simple structure which is capable of performing a wide variety of VTOL functions, as well as many other tasks and missions, with minimum changes in the vehicle to convert it from one task or mission to another.
While the invention has been described with respect to several preferred embodiments, it will be appreciated that these are set forth merely for purposes of example, and that many other variations, modifications and applications of the invention will be apparent.
This application is a continuation of U.S. patent application Ser. No. 10/479,618, filed Dec. 4, 2003 now U.S. Pat. No. 6,883,748, which is a U.S. National Phase Application under 35 U.S.C. 371 of PCT International Application No. PCT/IL02/00439, which has an international filing date of Jun. 4, 2002, and which claims priority from U.S. patent application Ser. No. 60/295,005, filed Jun. 4, 2001.
Number | Name | Date | Kind |
---|---|---|---|
1287076 | Moses | Dec 1918 | A |
2077471 | Fink | Apr 1937 | A |
2138999 | Clark | Dec 1938 | A |
2242201 | Woods | May 1941 | A |
2273724 | Nelson et al. | Feb 1942 | A |
2709947 | Woods | Jun 1955 | A |
2734705 | Robertson | Feb 1956 | A |
2777649 | Williams | Jan 1957 | A |
2899149 | Breguet | Aug 1959 | A |
2930544 | Howell | Mar 1960 | A |
2936969 | Griffith et al. | May 1960 | A |
2939649 | Shaw | Jun 1960 | A |
2951661 | Dorman et al. | Sep 1960 | A |
2955780 | Hulbert | Oct 1960 | A |
2968453 | Bright | Jan 1961 | A |
2975676 | Butler | Mar 1961 | A |
2988301 | Fletcher | Jun 1961 | A |
3033493 | Wilde et al. | May 1962 | A |
3039537 | Heidelberg | Jun 1962 | A |
3082977 | Arlin | Mar 1963 | A |
3116898 | Clark et al. | Jan 1964 | A |
3136500 | Kerry | Jun 1964 | A |
3174573 | Chaplin | Mar 1965 | A |
3179353 | Peterson | Apr 1965 | A |
3181810 | Olson | May 1965 | A |
3184183 | Plasecki | May 1965 | A |
3187817 | Colley | Jun 1965 | A |
3198082 | Kerris | Aug 1965 | A |
3201067 | Meyerhoff | Aug 1965 | A |
3203645 | Shaw | Aug 1965 | A |
3223354 | Seibold et al. | Dec 1965 | A |
3231221 | Platt | Jan 1966 | A |
3262657 | Anker-Holth | Jul 1966 | A |
3265329 | Postelson-Apostolescu | Aug 1966 | A |
3276528 | Tucknott et al. | Oct 1966 | A |
3397852 | Katzen | Aug 1968 | A |
3397854 | Reyle | Aug 1968 | A |
3463420 | Butler et al. | Aug 1969 | A |
3519224 | Boyd et al. | Jul 1970 | A |
3559921 | Timperman | Feb 1971 | A |
3580530 | Wada | May 1971 | A |
3606208 | Postelson-Apostolescu | Sep 1971 | A |
3614030 | Moller | Oct 1971 | A |
3665809 | Darlington et al. | May 1972 | A |
3752417 | Lagace | Aug 1973 | A |
3827527 | Bertelsen | Aug 1974 | A |
3904155 | Chavis | Sep 1975 | A |
3955780 | Postelson | May 1976 | A |
4043421 | Smith | Aug 1977 | A |
4149688 | Miller, Jr. | Apr 1979 | A |
4469294 | Clifton | Sep 1984 | A |
4505443 | Bradfield et al. | Mar 1985 | A |
4598890 | Herzog et al. | Jul 1986 | A |
4701602 | Schaefer et al. | Oct 1987 | A |
4754940 | Deter | Jul 1988 | A |
4765568 | Carl et al. | Aug 1988 | A |
4796836 | Buchelt | Jan 1989 | A |
4834319 | Ewy et al. | May 1989 | A |
4892274 | Pohl et al. | Jan 1990 | A |
5064143 | Bucher | Nov 1991 | A |
5419514 | Ducan | May 1995 | A |
5454531 | Melkuti | Oct 1995 | A |
5505407 | chiappetta | Apr 1996 | A |
5666483 | McClary | Sep 1997 | A |
5738302 | Freeland | Apr 1998 | A |
5746390 | Chiappetta et al. | May 1998 | A |
5806805 | Elbert et al. | Sep 1998 | A |
5890441 | Swinson et al. | Apr 1999 | A |
6119985 | Clapp et al. | Sep 2000 | A |
6254032 | Bucher | Jul 2001 | B1 |
6318668 | Ulanoski et al. | Nov 2001 | B1 |
6382559 | Sutterfield et al. | May 2002 | B1 |
6431494 | Kinkead et al. | Aug 2002 | B1 |
6446911 | Yount et al. | Sep 2002 | B1 |
6464166 | Yoeli | Oct 2002 | B1 |
6568630 | Yoeli | May 2003 | B2 |
6704624 | Ortega et al. | Mar 2004 | B2 |
6708920 | Fukuyama | Mar 2004 | B2 |
6745977 | Long et al. | Jun 2004 | B1 |
6817570 | Yoeli | Nov 2004 | B2 |
6843447 | Morgan | Jan 2005 | B2 |
6883748 | Yoeli | Apr 2005 | B2 |
6886776 | Wagner et al. | May 2005 | B2 |
6892979 | Milde | May 2005 | B2 |
6913226 | Huynh | Jul 2005 | B2 |
20020161488 | Guillemin et al. | Oct 2002 | A1 |
20030038213 | Yoeli | Feb 2003 | A1 |
20030062442 | Milde, Jr. | Apr 2003 | A1 |
20030062443 | Wagner et al. | Apr 2003 | A1 |
20030195673 | Foch et al. | Oct 2003 | A1 |
20040149857 | Yoeli | Aug 2004 | A1 |
20040155143 | Yoeli | Aug 2004 | A1 |
20050065669 | Roux et al. | Mar 2005 | A1 |
20050178881 | Yoeli | Aug 2005 | A1 |
20060113426 | Yoeli | Jun 2006 | A1 |
Number | Date | Country |
---|---|---|
0 236583 | Sep 1987 | EP |
0 922925 | Jun 1999 | EP |
935884 | Sep 1963 | GB |
951186 | Mar 1964 | GB |
666076 | Aug 1964 | IT |
184314 | Jun 1963 | SE |
WO 0193039 | Dec 2001 | WO |
WO 02096750 | Dec 2002 | WO |
WO 02098732 | Dec 2002 | WO |
WO 03016134 | Feb 2003 | WO |
WO 2004012993 | Feb 2004 | WO |
WO 2004031876 | Apr 2004 | WO |
WO 2005039972 | May 2005 | WO |
Number | Date | Country | |
---|---|---|---|
20050242231 A1 | Nov 2005 | US |
Number | Date | Country | |
---|---|---|---|
60295005 | Jun 2001 | US |
Number | Date | Country | |
---|---|---|---|
Parent | 10479618 | US | |
Child | 11061652 | US |