Deformation of a Shape Memory Alloy Helical Spring : Analysis Based on Stress-Strain-Temperature Relation
スポンサーリンク
概要
- 論文の詳細を見る
In the design of a shape memory alloy helical spring, a basic method of designing the spring based on the stress-strain-temperature relation of the material is an important problem to be solved. In the current study, the deformation behavior of the shape memory alloy helical spring was analyzed based on stress-strain-temperature relation of the material. The relationship between load and deflection of the spring as well as the behavior of transformed region is discussed. The main results are summarized as follows. (1) The relation between the load and deflection of the spring is represented by using a simple model of the stress-strain-temperature relation. (2) For a certain maximum deflection, recoverable force and recoverable strain energy increase with temperature. Dissipated strain energy takes a maximum value at a certain temperature. (3) The transformed region in the cross section of the wire expands into the center from the surface under the loading process, but contracts toward the surface under the unloading process. For a certain maximum deflection, the transformed region is small but the load increases as the temperature increases.
- 一般社団法人日本機械学会の論文
- 1991-01-15
著者
-
TOBUSHI Hisaaki
Aichi Institute of Technology
-
Tanaka Kikuaki
Tokyo Metropolitan Institute Of Technology
-
Tobushi Hisaaki
Aichi Inst. Tech. Dept. Of Mechanical Engineering
関連論文
- Cyclic Characteristics of Pseudoelasticity of Ti-Ni Alloys : Effect of Maximum Strain, Test Temperature and Shape Memory Processing Temperature
- Cyclic Characteristics of the Shape Memory Effect in Ti-Ni Alloy Wires and Helical Springs
- Creep Deformation of Softened Celluloid under Nonproportional Variable Stresses
- FORMULATION OF DEFORMATION BEHAVIOUR OF SOFTENED CELLULOID UNDER PROPORTIONAL LOADING BASED ON NON-LINEAR VISCOELASTIC THEORY
- Basic Research on Output Power Characteristics of a Shape Memory Alloy Heat Engine : (Twin Crank Heat Engine)
- Basic Research on Shape Memory Alloy Heat Engine : Output Power Characteristics and Problems in Development
- Biaxial Creep Deformation of Softened Celluloid under Variable Stresses
- Deformation of a Shape Memory Alloy Helical Spring : Analysis Based on Stress-Strain-Temperature Relation
- 654 Bending Fatigue Properties of TiNi Shape Memory Alloy
- Impact of Strain Rate on Thermomechanical Coupling Effects in TiNi SMA Subjected to Compression