Recently, there is an increasing interest in applying the high damping capacity of shape memory alloys (SMAs). The purpose is to explore the feasibility of those materials for the protection of buildings and other civil constructions as a result of earthquake damages. So far, few experimental results have been reported concerning the mechanical cyclic behaviour of SMAs in their martensitic state (ferroelastic). In the present work, the experimental results on the mechanical behaviour of martensitic NiTi SMAs under tension-compression cyclic deformation up to strains of +/-4% are summarized with major attention to the damping capacity, characteristic stresses and strains as a function of deformation cycles. Effect of strain rate, strain ampl...
The results of cyclic tensile tests on superelastic NiTi Shape Memory Alloy (SMA) wires are presente...
Since NiTi shape memory alloy (SMA) was discovered in the early 1960s, great progress has been made ...
Cyclic loading of superelastic NiTi shape memory alloy (SMA) causes forward and reverse austenite–ma...
Shape memory alloys exhibit a high damping capacity in the martensite state. Results obtained from b...
Shape memory alloys exhibit a high damping capacity in the martensite state. Results obtained from b...
Abstract. Shape memory alloys exhibit a high damping capacity in the mktensite state. Results obtain...
It has been shown that quasi-static, cyclic, isothermal mechanical loading influences the mechanical...
In this paper, high-cycle fatigue mechanisms of a pseudoelastic NiTi shape memory alloy (SMA) under ...
The mechanical behavior of a martensitic NiTi shape memory alloy (SMA) under very high strain rate c...
The mechanical behaviour of several specimens of nickel–titanium Shape Memory Alloy (SMA) has been d...
The mechanical behaviour of several specimens of nickel–titanium Shape Memory Alloy (SMA) has been d...
The mechanical behaviour of several specimens of nickel–titanium Shape Memory Alloy (SMA) has been d...
Experimental results have shown that, during mechanical cycling under tension-compression load withi...
The results of cyclic tensile tests on superelastic NiTi Shape Memory Alloy (SMA) wires are presente...
The results of cyclic tensile tests on superelastic NiTi Shape Memory Alloy (SMA) wires are presente...
The results of cyclic tensile tests on superelastic NiTi Shape Memory Alloy (SMA) wires are presente...
Since NiTi shape memory alloy (SMA) was discovered in the early 1960s, great progress has been made ...
Cyclic loading of superelastic NiTi shape memory alloy (SMA) causes forward and reverse austenite–ma...
Shape memory alloys exhibit a high damping capacity in the martensite state. Results obtained from b...
Shape memory alloys exhibit a high damping capacity in the martensite state. Results obtained from b...
Abstract. Shape memory alloys exhibit a high damping capacity in the mktensite state. Results obtain...
It has been shown that quasi-static, cyclic, isothermal mechanical loading influences the mechanical...
In this paper, high-cycle fatigue mechanisms of a pseudoelastic NiTi shape memory alloy (SMA) under ...
The mechanical behavior of a martensitic NiTi shape memory alloy (SMA) under very high strain rate c...
The mechanical behaviour of several specimens of nickel–titanium Shape Memory Alloy (SMA) has been d...
The mechanical behaviour of several specimens of nickel–titanium Shape Memory Alloy (SMA) has been d...
The mechanical behaviour of several specimens of nickel–titanium Shape Memory Alloy (SMA) has been d...
Experimental results have shown that, during mechanical cycling under tension-compression load withi...
The results of cyclic tensile tests on superelastic NiTi Shape Memory Alloy (SMA) wires are presente...
The results of cyclic tensile tests on superelastic NiTi Shape Memory Alloy (SMA) wires are presente...
The results of cyclic tensile tests on superelastic NiTi Shape Memory Alloy (SMA) wires are presente...
Since NiTi shape memory alloy (SMA) was discovered in the early 1960s, great progress has been made ...
Cyclic loading of superelastic NiTi shape memory alloy (SMA) causes forward and reverse austenite–ma...