This paper presents the analysis of a linear stiffness model of an elliptical flexure hinge. The purpose of the study is to support the mechanical designer in choosing the geometric dimensions of the hinge based on design specifications, driven by the accuracy that can later be achieved in planning its motion using the related stiffness model. Results are presented as a comparison between the analytical model and a finite element model of the flexure hinge, showing the practical range of applicability of the analytical model and its limitations. A case study show how to design a flexure hinge of small size for micro scale robotic or mechatronic operations
Advantages and problems related to the use of compliant hinges in articulated robotic structures are...
Advantages and problems related to the use of compliant hinges in articulated robotic structures are...
Advantages and problems related to the use of compliant hinges in articulated robotic structures are...
This paper presents the analysis of a linear stiffness model of an elliptical flexure hinge. The pur...
This paper presents the analysis of a linear stiffness model of an elliptical flexure hinge. The pur...
This paper presents the analysis of a linear stiffness model of an elliptical flexure hinge. The pur...
Flexure hinges are widely used in mechanical devices, especially for micro- or even nano-scale appli...
Flexure hinges have been used to produce frictionless and backlashless transmissions in a variety of...
Flexure hinges are commonly used in many applications which require precise and smooth motions in th...
Flexure hinges are commonly used in many applications which require precise and smooth motions in th...
Flexure hinges inherently lose stiffness in supporting directions when deflected. In this paper a me...
A flexure which retains its support stiffness characteristics for large deflections, is optimized wi...
Compliant mechanisms based on flexure hinges are widely used in precision engineering applications. ...
A flexure which retains its support stiffness characteristics for large deflections, is optimized wi...
Advantages and problems related to the use of compliant hinges in articulated robotic structures are...
Advantages and problems related to the use of compliant hinges in articulated robotic structures are...
Advantages and problems related to the use of compliant hinges in articulated robotic structures are...
Advantages and problems related to the use of compliant hinges in articulated robotic structures are...
This paper presents the analysis of a linear stiffness model of an elliptical flexure hinge. The pur...
This paper presents the analysis of a linear stiffness model of an elliptical flexure hinge. The pur...
This paper presents the analysis of a linear stiffness model of an elliptical flexure hinge. The pur...
Flexure hinges are widely used in mechanical devices, especially for micro- or even nano-scale appli...
Flexure hinges have been used to produce frictionless and backlashless transmissions in a variety of...
Flexure hinges are commonly used in many applications which require precise and smooth motions in th...
Flexure hinges are commonly used in many applications which require precise and smooth motions in th...
Flexure hinges inherently lose stiffness in supporting directions when deflected. In this paper a me...
A flexure which retains its support stiffness characteristics for large deflections, is optimized wi...
Compliant mechanisms based on flexure hinges are widely used in precision engineering applications. ...
A flexure which retains its support stiffness characteristics for large deflections, is optimized wi...
Advantages and problems related to the use of compliant hinges in articulated robotic structures are...
Advantages and problems related to the use of compliant hinges in articulated robotic structures are...
Advantages and problems related to the use of compliant hinges in articulated robotic structures are...
Advantages and problems related to the use of compliant hinges in articulated robotic structures are...