Recently developed analysis techniques for thin shells that can be folded elastically and are able to self-deploy are used to develop an iterative design approach for this type of structure. The proposed approach considers a series of potential designs and then evaluates, for each trial design, key performance parameters through a complete simulation of its folding and deployment behavior. This design approach is applied to a boom concept consisting of a thin-walled tube in which two tape-spring hinges are made by cutting diametrically opposite slots; the geometry of the slots is fully defined by the length, width, and end diameter of the cuts. A design for a two-hinge, 1-m-long, lightweight self-deployable boom that can be wrapped around...
Deployable structures are required to either enable orbit transfer of very large structure or to mak...
The necessity of deployable mechanisms in the field of aerospace is inevitable due to volume limitat...
In this work we investigated the stability behavior and the folding capability of an ultrathin tubul...
Recently developed analysis techniques for thin shells that can be folded elastically and are able t...
Deployable structures made from ultra-thin composite materials can be folded elastically and are abl...
This paper presents a 1 m long self-deployable boom that could be folded around a spacecraft. Previo...
This paper considers a lightweight boom with an integral hinge consisting of a thin-walled tube made...
Thin shells made of high modulus material are widely used as lightweight deployable space structures...
This work presents an analysis and validation of a foldable boom actuated by tape-spring foldable el...
This paper presents an optimization study of a lightweight hinge consisting of a thin walled tube ma...
An experimental and numerical study of the dynamic deployment of stored strain energy deployable boo...
An experimental and numerical study of the dynamic deployment of stored strain energy deployable boo...
For advanced space missions, meeting the concurrent requirements of increasing payload size while mi...
A promising candidate for deployable composite structures is the two-shelled Collapsible Tubular Mas...
Nowadays the interest in nano-satellites and microsatellites is rapidly growing, and with that the d...
Deployable structures are required to either enable orbit transfer of very large structure or to mak...
The necessity of deployable mechanisms in the field of aerospace is inevitable due to volume limitat...
In this work we investigated the stability behavior and the folding capability of an ultrathin tubul...
Recently developed analysis techniques for thin shells that can be folded elastically and are able t...
Deployable structures made from ultra-thin composite materials can be folded elastically and are abl...
This paper presents a 1 m long self-deployable boom that could be folded around a spacecraft. Previo...
This paper considers a lightweight boom with an integral hinge consisting of a thin-walled tube made...
Thin shells made of high modulus material are widely used as lightweight deployable space structures...
This work presents an analysis and validation of a foldable boom actuated by tape-spring foldable el...
This paper presents an optimization study of a lightweight hinge consisting of a thin walled tube ma...
An experimental and numerical study of the dynamic deployment of stored strain energy deployable boo...
An experimental and numerical study of the dynamic deployment of stored strain energy deployable boo...
For advanced space missions, meeting the concurrent requirements of increasing payload size while mi...
A promising candidate for deployable composite structures is the two-shelled Collapsible Tubular Mas...
Nowadays the interest in nano-satellites and microsatellites is rapidly growing, and with that the d...
Deployable structures are required to either enable orbit transfer of very large structure or to mak...
The necessity of deployable mechanisms in the field of aerospace is inevitable due to volume limitat...
In this work we investigated the stability behavior and the folding capability of an ultrathin tubul...