TRANSFORMATION METHOD OF HYBRID TRANSPORTATION VEHICLE FOR GROUND AND AIR, AND HYBRID TRANSPORTATION VEHICLE ITSELF
20170297395 ยท 2017-10-19
Assignee
Inventors
Cpc classification
B64C25/04
PERFORMING OPERATIONS; TRANSPORTING
B60F5/003
PERFORMING OPERATIONS; TRANSPORTING
Y02T50/10
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B64C3/56
PERFORMING OPERATIONS; TRANSPORTING
B64C2025/003
PERFORMING OPERATIONS; TRANSPORTING
International classification
B64C3/56
PERFORMING OPERATIONS; TRANSPORTING
B60F5/00
PERFORMING OPERATIONS; TRANSPORTING
B64C3/38
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Transformation method of hybrid transportation vehicle for ground and air includes the following transformation and reciprocal steps: Tilting the compensation cover (7) on. Expansion of both whole wings (1) from the transportation vehicle longitudinal position around two vertical axes (2) into the flying position. Expansion of rear parts of wings (1) from the top front parts of wings (1) into the spread flying position by tilting the rear of each wing (1) around a horizontal axis (3). The take-off and landing tilting of wings (1) by an angle of attack alpha=0 to 40 of the wings onset. Front wheels track (5) is reduced by axially shifting the front wheels (5) towards the fuselage. Furthermore, a corresponding hybrid transportation vehicle for ground and air is described which contains reciprocal transformation mechanisms for transformation from a sterling double or four-track automobile into a sterling aircraft for take-off and landing on the ground or water, and vice versa.
Claims
1. A hybrid transportation vehicle for ground and air comprising: a body, a cabin, a set of retractable wings, a chassis, a driving unit that switches a torque transfer between a propeller situated at the rear of the vehicle and a pair of driven wheels, and a plurality of reciprocal transformation mechanisms for transformation of the vehicle into an automobile or into an aircraft for take-off and landing on the ground or water; wherein two first reciprocal transformation mechanisms for retraction and expansion of the wings from or to a flying position are situated in the middle of the body; wherein each first reciprocal transformation mechanism contains an actuator and a vertical axis for retraction and expansion of the wing by rotating around the vertical axis between the flying position in which an axis of the wing is approximately perpendicular to a longitudinal axis of the vehicle, and a retracted position in which the wing axis is approximately parallel to the longitudinal axis of the vehicle; and wherein two second reciprocal transformation mechanisms for changing the platform outline of the wings, each being situated separately in a wing body of each wing and each containing a horizontal axis of the wing and an actuator, for tilting a rear part of each wing onto a corresponding top front part of each wing.
2. The vehicle according to claim 1, wherein the body contains an actuator for tilting of the set of wings by an angle of attack alpha=0 to 40 for take-off and landing.
3. The vehicle according to claim 1, wherein the body is equipped with a pop-up compensation cover behind the cabin.
4. The vehicle according to claim 3, wherein the pop-up compensation cover is equipped with an actuator.
5. The vehicle according to claim 1, wherein the actuators are at least one of electric, pneumatic, and hydraulic.
6. The vehicle according to claim 1, where the wheels are equipped with aerodynamic fenders or hollow floats.
7. A method of transforming a hybrid vehicle, wherein the hybrid vehicle comprises a body, a cabin, a set of retractable wings, a chassis, a driving unit that switches a torque transfer between a propeller situated at the rear of the vehicle and a pair of driven wheels, and a plurality of reciprocal transformation mechanisms for transformation of the vehicle into an automobile or into an aircraft for take-off and landing on the ground or water, the method comprising: transformation of the automobile into the aircraft for take-off and landing on the ground or water, which includes: expansion of the wings from a retracted position in which a wing axis is approximately parallel to a longitudinal axis of the vehicle to a flying position in which the wing axis is approximately perpendicular to the longitudinal axis of the vehicle around a pair of vertical axes using a pair of first reciprocal transformation mechanisms; and expansion of rear parts of the wings using a pair of second reciprocal transformation mechanisms from a top front parts of the wings into the spread flying position; and reciprocal transformation of the aircraft into the automobile includes: retraction of the rear parts of the wings from the spread flying position onto the top front parts of wings using the pair of second reciprocal transformation mechanisms; and retraction of the wings from the flying position in which the wing axis is approximately perpendicular to the longitudinal axis of the vehicle into the retracted position in which the wing axis is approximately parallel to the longitudinal axis of the vehicle around the pair of vertical axes using the pair of first reciprocal transformation mechanisms.
8. The method according to claim 7, wherein the body is equipped with a pop-up compensation cover behind the cabin, wherein that prior to expansion of the wings and expansion of the rear parts of the wings, tilting the compensation cover up is executed.
9. The method according to claim 7, wherein the body is equipped with a pop-up compensation cover behind the cabin, wherein that prior to retraction of the rear parts of the wings and retraction of the wings, tilting the compensation cover up is executed.
10. The method according to claim 7, wherein after the expansion of the wings and expansion of the rear parts of the wings, the wings are tilted by an angle of attack alpha=0 to 40 for take-off and landing.
Description
DESCRIPTION OF THE DRAWINGS
[0023] The invention will be further explained on drawings, where at
DETAILED DESCRIPTION
[0024] It is understood that various realizations of the invention are presented for illustration purposes, not as restrictions of technical solutions. Experts understanding the state of the art will find or will be able to find, using not more than routine experimentation, many equivalents of specific realizations of the invention. Such equivalents shall fall within the scope of the following patent claims.
[0025] For professionals understanding the state of the art it cannot be problem to submit optimal system, therefore these characteristics have not been solved in details.
EXAMPLE 1
[0026] In this example of invention subject specific realization, a hybrid transportation vehicle in its simplest basic modification is described. Before transformation it has a characteristic of a sterling sports automobile, which is illustrated in
EXAMPLE 2
[0027] In this example of invention subject specific realization, a hybrid transportation vehicle in its improved modification is also described. Again, prior to transformation it has a characteristic of a sterling sports automobile, the construction of which is sufficiently described in example 1. Moreover, in this extended modification, the body 4 of hybrid transportation vehicle for ground and air contains one to two fourth actuators with electric drive for take-off and landing tilting of the wings 1 by a angle of attack alpha=30, as illustrated in
EXAMPLE 3
[0028] In this example of invention subject specific realization, a hybrid transportation vehicle in its another improved modification is also described. Again, it has a characteristic of a sterling sports automobile, the construction of which is sufficiently described in example 1. Moreover, in this extended modification, the body 4 of hybrid transportation vehicle for ground and air is behind cabin 6 equipped with pop-up compensation cover 7. Tilting of the pop-up compensation cover 7 up and down is provided by the fifth actuator with electric drive, as illustrated in
EXAMPLE 4
[0029] In this example of invention subject specific realization, a hybrid transportation vehicle in its another modification is also described. Again, prior to the transformation it has a characteristic of a sterling sports automobile, the construction of which is sufficiently described at least in one of examples 1 to 3. After the transformation it has a characteristic of a sterling sports amphibian. Construction is adapted so that front wheels shouldering 5 is equipped with aerodynamic hollow floats. This enables amphibian's take-off and landing on the water.
EXAMPLE 5
[0030] In this example of invention subject specific realization, a hybrid transportation vehicle in its another modification is also described. Again, prior to the transformation it has a characteristic of a sterling sports automobile, the construction of which is sufficiently described at least in one of examples 1 to 4. After the transformation it has a characteristic of a sterling sports aircraft or amphibian. Construction is adapted so that actuators can be in variation with pneumatic or hydraulic drive. Another modification can consist in the variation that hybrid transportation vehicle will be four-tracked. Another modification can consist in the variation that hybrid transportation vehicle will be equipped with hybrid drive, as illustrated in
EXAMPLE 6
[0031] In this example of invention subject specific realization, a hybrid transportation vehicle in the most perfect modification is also described. Again, after the transformation from aircraft or amphibian it has a characteristic of a sterling sports automobile, the construction of which is in summary described at least in one of examples 1 to 5, and illustrated in
[0032] The description of functionality example of transformation method of a sterling double track automobile into a sterling aircraft for take-off from ground according to this invention follows, where in
[0033] The description of functionality example of reciprocal transformation method of a sterling aircraft for landing on the ground into a sterling double track automobile according to this invention follows, where in
INDUSTRIAL APPLICABILITY
[0034] Transformation method of hybrid transportation vehicle for ground, water and air, and hybrid transportation vehicle according to the invention finds its applicability in the aircraft and automotive industry.