Shape memory alloys exhibit a high damping capacity in the martensite state. Results obtained from both DMA and cyclic tests under tension-compression load show that the martensite damping capacity in NiTi SMAs is a function of both strain amplitude and annealing temperature. Internal friction due to movements of martensite twin boundaries within both elastic (accommodation) and inelastic (reorientation) ranges as a function of strain amplitude seems to be consistent. A critical annealing temperature exists for deformed NiTi SMAs in order to obtain a high martensite damping capacity. Under tension-compression cyclic loading, the martensite damping decreases as the number of cycles increases, and it tends to stabilize with further cycling
It has been shown that quasi-static, cyclic, isothermal mechanical loading influences the mechanical...
The damping characteristics of Ti50Ni50−xCux (x = 0~30 at.%) shape memory alloys (SMAs) at a low fre...
A high damping capacity is considered as one of the important functional properties of shape memory ...
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...
Recently, there is an increasing interest in applying the high damping capacity of shape memory allo...
The damping capacity, tensile behaviour and the transformation characteristics of a NiTi shape memor...
This study focuses on the investigation of the influencing factors of damping capacity in NiTi shape...
In recent years, there has been an increasing interest in the study of shape memory alloys (SMAs) by...
In recent years, there has been an increasing interest in the study of shape memory alloys (SMAs) by...
High damping capacity is one of the prominent properties of NiTi shape memory alloy (SMA), having ap...
High damping materials have been attracting much interest and attention in engineering applications....
Recent achievements have been analysed in designing and application of shape memory alloys as high-d...
Shape memory alloys attract increasing interest as materials that can be used for passive as well as...
The damping characteristics of Ti50Ni50−xCux (x = 0~30 at.%) shape memory alloys (SMAs) at a low fre...
It has been shown that quasi-static, cyclic, isothermal mechanical loading influences the mechanical...
The damping characteristics of Ti50Ni50−xCux (x = 0~30 at.%) shape memory alloys (SMAs) at a low fre...
A high damping capacity is considered as one of the important functional properties of shape memory ...
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...
Recently, there is an increasing interest in applying the high damping capacity of shape memory allo...
The damping capacity, tensile behaviour and the transformation characteristics of a NiTi shape memor...
This study focuses on the investigation of the influencing factors of damping capacity in NiTi shape...
In recent years, there has been an increasing interest in the study of shape memory alloys (SMAs) by...
In recent years, there has been an increasing interest in the study of shape memory alloys (SMAs) by...
High damping capacity is one of the prominent properties of NiTi shape memory alloy (SMA), having ap...
High damping materials have been attracting much interest and attention in engineering applications....
Recent achievements have been analysed in designing and application of shape memory alloys as high-d...
Shape memory alloys attract increasing interest as materials that can be used for passive as well as...
The damping characteristics of Ti50Ni50−xCux (x = 0~30 at.%) shape memory alloys (SMAs) at a low fre...
It has been shown that quasi-static, cyclic, isothermal mechanical loading influences the mechanical...
The damping characteristics of Ti50Ni50−xCux (x = 0~30 at.%) shape memory alloys (SMAs) at a low fre...
A high damping capacity is considered as one of the important functional properties of shape memory ...