A high damping Cu-Mn alloy with a nominal composition of 48Cu-48Mn-1.5Al-0.27Si-0.072Sn-0.028C-0.05Er (all compositions in wt pct) was studied to determine the mechanism of the loss of damping capacity during room-temperature storage. In this study, it was found that an Er-modified alloy sample that was artificially aged for 16 hours at 400 °C was stable even after 68 weeks of room-temperature storage. However, a loss of damping capacity was exhibited in the same material when aged to produce an underaged or peakaged condition. The decrease in damping capacity was found to be thermally activated with at least three relaxation processes. Each of the three relaxation processes appear to be related to the diffusion of carbon within the Mn-rich...
γ→ε transformation behavior in a Fe-21Mn alloy with different grain size and a Fe-32Mn-6Si alloy wit...
The damping capacity as well as Young's modulus has been measured by flexural vibration (220-310Hz) ...
<div><p>Alloys of CuAlMn are known as cheap, high strength shape memory alloys with an excellent dam...
This paper reviews the physical metallurgy and damping characteristics of copper-manganese (Cu-Mn) a...
Data on the damping capacity of Mn – Cu alloys are adduced. The results of studying the influence of...
The temperature and frequency dependent damping behavior of Ni added Mn-Cu alloys were investigated....
High damping manganese-copper alloys lose their high damping character after storage at room tempera...
The effect of C on the damping and mechanical properties of thermally trained Fe-17 wt%Mn-X wt%C (0 ...
Incramute alloys (nominal composition of 53Cu-45Mn-2Al in wt. %) having a specific damping capacity ...
Effect of carbon content on damping capacity of Fe-17%Mn alloy is investigated by varying the carbon...
Effect of carbon and Ti on γ ↔ ε martensitic transformation behavior and damping capacity is investi...
The purpose is to study the appropriatenesses of the structure formation and the damping properties ...
Effect of carbon and Ti on γ ←→ εmartensitic transformation behavior and damping capacity has been i...
The Smith-Birchak model for magnetoelastic damping was successfully applied to model the damping obs...
Fe-Mn alloys with non-thermoelastic fcc(g)3hcp(e) martensitic transformation have become attractive ...
γ→ε transformation behavior in a Fe-21Mn alloy with different grain size and a Fe-32Mn-6Si alloy wit...
The damping capacity as well as Young's modulus has been measured by flexural vibration (220-310Hz) ...
<div><p>Alloys of CuAlMn are known as cheap, high strength shape memory alloys with an excellent dam...
This paper reviews the physical metallurgy and damping characteristics of copper-manganese (Cu-Mn) a...
Data on the damping capacity of Mn – Cu alloys are adduced. The results of studying the influence of...
The temperature and frequency dependent damping behavior of Ni added Mn-Cu alloys were investigated....
High damping manganese-copper alloys lose their high damping character after storage at room tempera...
The effect of C on the damping and mechanical properties of thermally trained Fe-17 wt%Mn-X wt%C (0 ...
Incramute alloys (nominal composition of 53Cu-45Mn-2Al in wt. %) having a specific damping capacity ...
Effect of carbon content on damping capacity of Fe-17%Mn alloy is investigated by varying the carbon...
Effect of carbon and Ti on γ ↔ ε martensitic transformation behavior and damping capacity is investi...
The purpose is to study the appropriatenesses of the structure formation and the damping properties ...
Effect of carbon and Ti on γ ←→ εmartensitic transformation behavior and damping capacity has been i...
The Smith-Birchak model for magnetoelastic damping was successfully applied to model the damping obs...
Fe-Mn alloys with non-thermoelastic fcc(g)3hcp(e) martensitic transformation have become attractive ...
γ→ε transformation behavior in a Fe-21Mn alloy with different grain size and a Fe-32Mn-6Si alloy wit...
The damping capacity as well as Young's modulus has been measured by flexural vibration (220-310Hz) ...
<div><p>Alloys of CuAlMn are known as cheap, high strength shape memory alloys with an excellent dam...