3D Constitutive Modeling of Superelastic Shape Memory Alloys: Constitutive Modeling of Superelastic Shape Memory Alloys Considering Rate Dependent Non-mises Tension-torsion Behavior - Masood Taheri Andani - Books - LAP LAMBERT Academic Publishing - 9783659514029 - January 19, 2014
In case cover and title do not match, the title is correct

3D Constitutive Modeling of Superelastic Shape Memory Alloys: Constitutive Modeling of Superelastic Shape Memory Alloys Considering Rate Dependent Non-mises Tension-torsion Behavior

Price
HK$ 310
excl. VAT

Ordered from remote warehouse

Expected to be ready for shipping Sep 11 - 17
Get notified about new Masood Taheri Andani releases
Add to your iMusic wish list

Not rated yet

Within this work is the presentation of a general 3D model capable of capturing the multiaxial behavior of superelastic shape memory alloys (SMAs) under quasi-static isothermal or dynamic loading conditions. A semi-analytical framework is developed to numerically implement the model. An extended experimental study is conducted on NiTi thin walled tubes to investigate the performance of the model. The proposed approach is shown to be able to capture the non-Mises thermomechanical response of NiTi under complex tension-torsion loading conditions. The effect of loading sequence and loading rate is also experimentaly studied. The main motivation of the present study is to develop a platform for analyzing and designing biomedical devices with SMA actuator under combined tension-torsion loading conditions. The torsional stiffness of NiTi is shown to be adjustable by applying an extra axial load. This will lead to developing desirable torque response in NiTi tubes and rods by varying the axial load. A possible application of this technique in the form of an assistive device is discussed.

Media Books     Paperback Book   (Book with soft cover and glued back)
Released January 19, 2014
ISBN13 9783659514029
Publishers LAP LAMBERT Academic Publishing
Pages 68
Dimensions 150 × 4 × 225 mm   ·   119 g
Language German