Claims
- 1. A truss structure having a plurality of truss elements, said truss structure comprising:
- a foldable first truss element having:
- (i) a frame obtained by assembling a plurality of beam members into a cube, both ends of each of said beam members being pivotally hinged to a plurality of node portions of said cube;
- (ii) foldable diagonal beam members located on diagonals of two opposing planes of said frame, respectively, both ends of each of said foldable diagonal beam members being pivotally hinged to said node portions; and
- (iii) telescopic diagonal beam members located on diagonals of four planes other than said two planes of said frame, respectively, both ends of each of said telescopic diagonal beam members being pivotally hinged to said node portions;
- (b) a foldable second truss element having:
- (i) a frame obtained by assembling a plurality of beam members into a cube, both ends of each of said beam members being pivotally hinged to a plurality of node portions of said cube;
- (ii) foldable diagonal beam members located on diagonals of two opposing planes of said frame, respectively, both ends of each of said foldable diagonal beam members being pivotally hinged to said node portions; and
- (iii) telescopic diagonal beam members located on diagonals of three planes other than said two planes of said frame, respectively, both ends of each of said telescopic diagonal beam members being pivotally hinged to said node portions;
- (c) a foldable third truss element having:
- (i) a frame obtained by assembling a plurality of beam members into a cube, both ends of each of said beam members being pivotally hinged to a plurality of node portions of said cube, and
- (ii) a telescopic diagonal beam member located on the diagonal connecting farthest node portions of said frame, both ends of said telescopic diagonal beam member being pivotally hinged to said node portions; and
- (d) adjusting for adjusting the length of each telescopic diagonal beam member mounted in said first, second, and third truss elements.
- 2. A structure according to claim 1, wherein, assuming that a total number of said nodes of said truss structure is J and a total number of said beam members, said foldable diagonal beam members, and said telescopic diagonal beam members of said truss structure is M, said first, second, and third truss elements are assembled to satisfy a relation of M=3J-6.
- 3. A structure according to claim 1, wherein said first, second, and third truss elements are arranged so that each truss element obtains a statically determinate structure.
- 4. A structure according to claim 1, wherein said first truss element is located at the center of said truss structure, said second truss element is hinged to each of four side planes of said first truss element, another second truss element is hinged to an outer side plane of each of said second truss elements, and said third truss elements are located at both sides of each of said second truss elements, thereby forming a rectangle each side of which consists of five truss elements.
- 5. A structure according to claim 1, wherein said length adjusting means includes a motor and a ball screw mounted on said telescopic diagonal beam member.
Priority Claims (1)
Number |
Date |
Country |
Kind |
62-213544 |
Aug 1987 |
JPX |
|
Parent Case Info
This application is a continuation-in-part of application Ser. No. 07/236,847, filed on Aug. 26, 1988, now abandoned.
US Referenced Citations (5)
Foreign Referenced Citations (1)
Number |
Date |
Country |
61-98699 |
May 1986 |
JPX |
Non-Patent Literature Citations (2)
Entry |
H. G. Bush et al., "Synchronously Deployable Tetrahedral Truss Reflector", Large Space Antenna Systems Technology-1984, Dec. 4-6, 1984, pp. 237-250. |
J. V. Coyner, "Box Truss Development and its Applications", Large Space Antenna Systems Technology--1984, Dec. 4-6, 1984, pp. 214-233. |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
236847 |
Aug 1988 |
|