This paper is concerned with spatial linkages forming a closed loop. In one extreme configura-tion (deployed), these linkages form a frame of polygonal shape, such as a square or a hexagon, and in the other extreme (folded) configuration form a tight bundle. Throughout their motion range, they have mobility one. These linkages have potential applications for next-generation deployable spacecraft structures. The paper presents a systematic study of the kinematics of closed-loop structures with these special properties, and presents a numerical scheme for simu-lating their deployment without making any assumptions about particular symmetry features. The proposed simulation technique is applied to three examples that show different behaviour d...
approach to the kinematic analysis of deployable structures forming a closed loo
Deployable structures are structures whose shape can undergo large geometric transformation to meet ...
Ever wondered what kind of mechanism makes an umbrella open and close? Or a satellite when it is dep...
This paper is concerned with a novel kind of deployable structures that form closed loops that fold ...
With the advancement of membrane/blanket technology as an alternative choice to the conventional sol...
A closed-loop overconstrained spatial mechanism composed of six hinge-jointed bars, which has three ...
Abstract. This paper deals with the kinematic simulation of deployable structures that go through bi...
Abstract: Deployable structure technology has been used in aerospace and civil engineering structure...
This paper presents a novel deployable mechanism. Unlike most deployable structures, which have one ...
Abstract: In a sister paper, the authors have proved mathematically that the three-dimensional 4R ov...
The chapter presents a family of new deployable mechanisms obtained by conjoining an indefinite numb...
A novel family of deployable mechanisms (DMs) is presented. Unlike most such devices, which have one...
Applications of deployable mechanisms can be found in aeronautic and civil engineering, often in the...
Foldable and deployable space structures refer to a broad category of pre-fabricated structures that...
This paper presents a one-degree-of-freedom network of Bennett linkages which can be deployed to app...
approach to the kinematic analysis of deployable structures forming a closed loo
Deployable structures are structures whose shape can undergo large geometric transformation to meet ...
Ever wondered what kind of mechanism makes an umbrella open and close? Or a satellite when it is dep...
This paper is concerned with a novel kind of deployable structures that form closed loops that fold ...
With the advancement of membrane/blanket technology as an alternative choice to the conventional sol...
A closed-loop overconstrained spatial mechanism composed of six hinge-jointed bars, which has three ...
Abstract. This paper deals with the kinematic simulation of deployable structures that go through bi...
Abstract: Deployable structure technology has been used in aerospace and civil engineering structure...
This paper presents a novel deployable mechanism. Unlike most deployable structures, which have one ...
Abstract: In a sister paper, the authors have proved mathematically that the three-dimensional 4R ov...
The chapter presents a family of new deployable mechanisms obtained by conjoining an indefinite numb...
A novel family of deployable mechanisms (DMs) is presented. Unlike most such devices, which have one...
Applications of deployable mechanisms can be found in aeronautic and civil engineering, often in the...
Foldable and deployable space structures refer to a broad category of pre-fabricated structures that...
This paper presents a one-degree-of-freedom network of Bennett linkages which can be deployed to app...
approach to the kinematic analysis of deployable structures forming a closed loo
Deployable structures are structures whose shape can undergo large geometric transformation to meet ...
Ever wondered what kind of mechanism makes an umbrella open and close? Or a satellite when it is dep...