IMPACT RESISTANT FUSELAGE
20180281917 ยท 2018-10-04
Inventors
- Edouard Menard (Getafe, ES)
- Esteban MARTINO GONZ?LEZ (Getafe, ES)
- Fernando Iniesta Lozano (Getafe, ES)
Cpc classification
B64C1/062
PERFORMING OPERATIONS; TRANSPORTING
F41H5/0471
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
An impact resistant fuselage of an aircraft, the fuselage extending along a central longitudinal direction, wherein transversal sections of the fuselage are comprised in a vertical plane perpendicular to the central longitudinal direction. The impact resistant fuselage comprises at least a ballistic material membrane extended along the longitudinal direction for absorbing high energy impacts. The membrane according to a transversal section, comprising at least one section between two tensional elements, wherein the material membrane is located inside the fuselage of the aircraft, the at least one section of the membrane is mechanically linked to the inside of the fuselage by the tensional elements, and the two tensional elements stress the membrane.
Claims
1. An impact resistant fuselage of an aircraft, said fuselage being extended along a central longitudinal direction, wherein transversal sections of the fuselage are comprised in a vertical plane which is perpendicular to the central longitudinal direction, the impact resistant fuselage comprises at least a ballistic material membrane extended along the longitudinal direction for absorbing high energy impacts, the at least ballistic material membrane according to a transversal section, comprising at least one section between two tensional elements, wherein the at least ballistic material membrane is located inside the fuselage of the aircraft, the at least one section of the ballistic material membrane is mechanically linked to the inside of the fuselage by the tensional elements, and the two tensional elements stress the ballistic material membrane.
2. The impact resistant fuselage according to claim 1, further comprising a plurality of ballistic material membranes extended along the longitudinal direction for absorbing high energy impacts, each ballistic material membrane according to a transversal section, comprising at least one section between two tensional elements, wherein the plurality of ballistic material membranes is located inside the fuselage of the aircraft, at least one section of each ballistic material membrane is mechanically linked to the inside of the fuselage by the tensional elements, wherein said tensional elements stress said ballistic material membrane, and the plurality of ballistic material membranes is arranged in a way free to contact each other.
3. The impact resistant fuselage according to claim 1, wherein the tensional elements are end tensional elements which mechanically link the at least one section of the ballistic material membrane in a zone of the ballistic material membrane which is substantially closer to opposite ends of the ballistic material membrane.
4. The impact resistant fuselage according to claim 3, wherein the end tensional elements are fixing supports which are joined to the inside of the fuselage, such that said fixing supports fix the ballistic material membrane to the inside of the fuselage.
5. The impact resistant fuselage according to claim 3, wherein the end tensional elements are tearable joints.
6. The impact resistant fuselage according to claim 5, wherein the tearable joints comprise a line of fuse rivets.
7. The impact resistant fuselage according to claim 3, wherein the end tensional elements are rotating supports which are joined to the inside of the fuselage, such rotating supports comprise a sliding surface with which the ballistic material membrane is in contact such that said ballistic material membrane is arranged in a sliding manner around the sliding surface, and the ballistic material membrane is fixed in its opposite ends to the inside of the fuselage.
8. The impact resistant fuselage according to claim 1, further comprising at least one intermediate tensional element providing a plurality of sections of the ballistic material membrane, and said at least one intermediate tensional element being located between a pair of consecutive sections of the ballistic material membrane such that said sections are arranged in a way free to contact each other.
9. The impact resistant fuselage according to claim 8, wherein the intermediate tensional elements are: rotating supports located between a pair of consecutive sections and joined to the inside of the fuselage, such rotating supports comprising a sliding surface with which the ballistic material membrane is in contact such that said ballistic material membrane is arranged in a sliding manner around the sliding surface, fixing supports located between a pair of consecutive sections and joined to the inside of the fuselage, such that said fixing supports fix each of the two fixed sections of the ballistic material membrane to the inside of the fuselage, tearable joints located between a pair of consecutive sections, or any combination of them.
10. The impact resistant fuselage according to claim 8, wherein the plurality of sections of the ballistic material membrane is arranged such a way such sections are parallel between them.
11. The impact resistant fuselage according to claim 1, wherein the ballistic material membrane comprises at least two sections between the tensional elements such that such tensional elements are intermediate tensional elements and the ballistic material membrane defines a closed space.
12. The impact resistant fuselage according to claim 11, further comprising at least one intermediate tensional element providing a plurality of sections of the ballistic material membrane and said at least one intermediate tensional element being located between a pair of consecutive sections of the ballistic material membrane such that said sections are arranged in a way free to contact each other.
13. The impact resistant fuselage according to claim 12, wherein the intermediate tensional elements comprise: a rotating support located between a pair of consecutive sections and joined to the inside of the fuselage, such rotating supports comprise a sliding surface with which the ballistic material membrane is in contact such that said ballistic material membrane is arranged in a sliding manner around the sliding surface, a fixing support located between a pair of consecutive sections and joined to the inside of the fuselage, such that said fixing supports fix each of the two fixed sections of the ballistic material membrane to the inside of the fuselage, tearable joints located between a pair of consecutive sections, or any combination of them.
14. The impact resistant fuselage according to claim 1, wherein the ballistic material membrane is configured to receive impacts.
15. An aircraft comprising an impact resistant fuselage according to claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0062] These and other characteristics and advantages of the invention will become clearly understood in view of the detailed description of the invention which becomes apparent from a preferred embodiment of the invention, given just as an example and not being limited thereto, with reference to the drawings.
[0063]
[0064]
[0065]
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0070]
[0071] In
[0072] In a particular example, the ballistic material membrane (1) is linked to the inside of the fuselage (6) in such a way that the outermost section of the ballistic material membrane (1), that corresponds to the opposite ends (1.1, 1.2), is free of stress.
[0073] In
[0074] In
[0075] In a particular example, the intermediate tensional elements (4) are rotating supports which are joined to the inside of the fuselage (6) and configured to allow that the ballistic material membrane (1) slides around a sliding surface (8) of the rotating support (shown in
[0076] Additionally,
[0077] According to
[0078] In
[0079] In this embodiment, two ballistic material membranes (1) are arranged in a similar manner to that shown in
[0080] Additionally,
[0081]
[0082] Each ballistic material membrane (1) comprising two sections (2), each section (2) arranged between two tensional elements which are intermediate tensional elements (4), in such a way that each ballistic material membrane (1) defines a closed space.
[0083]
[0084]
[0085] While at least one exemplary embodiment of the present invention(s) is disclosed herein, it should be understood that modifications, substitutions and alternatives may be apparent to one of ordinary skill in the art and can be made without departing from the scope of this disclosure. This disclosure is intended to cover any adaptations or variations of the exemplary embodiment(s). In addition, in this disclosure, the terms comprise or comprising do not exclude other elements or steps, the terms a or one do not exclude a plural number, and the term or means either or both. Furthermore, characteristics or steps which have been described may also be used in combination with other characteristics or steps and in any order unless the disclosure or context suggests otherwise. This disclosure hereby incorporates by reference the complete disclosure of any patent or application from which it claims benefit or priority.