Exact(3)
Shape memory alloys based on NiTi have a high potential for a large variety of applications.
A new constitutive model for porous shape memory alloys, based on the Gurson Tvergaard Needleman formulation, is proposed.
We propose a constitutive model for shape memory alloys, based on a micromechanical formulation with two macroscopic internal variables; a scalar one (the global volume fraction of martensite) and a tensorial one (the mean transformation strain).
Similar(57)
For small-to-medium-sized actuator applications shape memory alloy based actuator systems are a promising technology.
In this aim, an original dynamical modelling of a magnetic shape memory alloy based actuator is presented.
A shape memory alloy based articulated quadrilateral bracing system is developed and experimentally tested for seismic resisting applications.
As a result, recommendations for these actuator systems are provided.It is vital to introduce the relevant areas like shape memory alloy based actuator systems, industrial product service systems, maintenance and business models in the field of mechanical engineering first.
A shape memory alloy-based curved bending actuator manufactured by double casting is introduced in this work.
For in vivo biomedical applications of shape memory alloys, actuators based on the R-phase/austenite transformation as present in certain TiNi alloys are particularly suited.
Shape memory alloy (SMA) based implants were developed to allow for non-invasive stiffness alteration during the fracture healing process.
In this work, we propose the design and characterization of a new shape memory alloy actuator based on a slider and slot mechanism.
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