This paper provides an efficient method of analysis for a fixed-guided compliant beam with an inflection point, subjected to beam end load or displacement boundary conditions, or a combination thereof. To enable this, such a beam is modeled as a pair of well-established pseudo-rigid-body models (PRBMs) for fixed-free compliant beam segments. The analysis procedure relies on the properties of inflection in developing the necessary set of parametric, static equilibrium and compatibility equations for solution. The paper further discusses the multiplicity of possible solutions, including displacement configura-tions, for any two specified beam end displacement boundary conditions, depending on the locations and types of the effecting loads on ...
This paper presents the shape optimization of a compliant beam for prescribed load-displacements res...
Traditionally, the deflected configuration of compliant segments is determined through rigorous math...
The objective of the dissertation is to develop and describe kinematic models (Pseudo-Rigid-Body Mod...
This paper provides an efficient method of analysis for a fixed-guided compliant beam with an inflec...
This paper provides an efficient method of analysis for a fixed-guided compliant beam with an inflec...
Compliant mechanisms is one of the emerging researches today. Compliant mechanisms derive their some...
Compliant mechanisms are defined as mechanical systems that derive some or all of their mobility fro...
The pseudo-rigid-body model (PRBM) concept allows compliant mechanisms to be modeled using existing ...
The deflection of compliant mechanism (CM) which involves geometrical nonlinearity due to large defl...
Geometric nonlinearities often complicate the analysis of systems containing large-deflection member...
Pseudo-rigid-body models help expedite the compliant mechanism design process by aiding the analysis...
Traditionally, the deflected configuration of compliant segments is determined through rigorous math...
International audienceCompliant Mechanisms (CMs) present several desired properties for mechanical a...
Rigid-body discretization of continuum elements was developed as a method for simplifying the kinema...
The deflection of compliant mechanism CM which involves geometrical nonlinearity due to large defle...
This paper presents the shape optimization of a compliant beam for prescribed load-displacements res...
Traditionally, the deflected configuration of compliant segments is determined through rigorous math...
The objective of the dissertation is to develop and describe kinematic models (Pseudo-Rigid-Body Mod...
This paper provides an efficient method of analysis for a fixed-guided compliant beam with an inflec...
This paper provides an efficient method of analysis for a fixed-guided compliant beam with an inflec...
Compliant mechanisms is one of the emerging researches today. Compliant mechanisms derive their some...
Compliant mechanisms are defined as mechanical systems that derive some or all of their mobility fro...
The pseudo-rigid-body model (PRBM) concept allows compliant mechanisms to be modeled using existing ...
The deflection of compliant mechanism (CM) which involves geometrical nonlinearity due to large defl...
Geometric nonlinearities often complicate the analysis of systems containing large-deflection member...
Pseudo-rigid-body models help expedite the compliant mechanism design process by aiding the analysis...
Traditionally, the deflected configuration of compliant segments is determined through rigorous math...
International audienceCompliant Mechanisms (CMs) present several desired properties for mechanical a...
Rigid-body discretization of continuum elements was developed as a method for simplifying the kinema...
The deflection of compliant mechanism CM which involves geometrical nonlinearity due to large defle...
This paper presents the shape optimization of a compliant beam for prescribed load-displacements res...
Traditionally, the deflected configuration of compliant segments is determined through rigorous math...
The objective of the dissertation is to develop and describe kinematic models (Pseudo-Rigid-Body Mod...