In this study, microstructure and mechanical properties of an austenite NiTi alloy treated with laser shock peening (LSP) was investigated. It was found that the thickness of shock affected layer is about 250-300 μm. The surface hardness of the specimen is increased by approximately 10% after LSP. Laser induced shock introduces slightly residual compressive stress in the peened specimen. The superleastic stress-strain curves of the fully LSP processed NiTi material show no change in phase transition stress, about 100 MPa decrease in martensite yield stress, and a loss of maximum transition strain about 12% after LSP. The ultrahigh-strain-rate plastic deformation by LSP results in dislocation substructure and amorphization underneath the ...
Laser shock peening (LSP), an innovative surface treatment technique, generates compressive residual...
Laser Engineered Net Shaping (LENS), a commercially available additive manufacturing technology, has...
The aim of this work is to study the effect of heat treatment on the microstructure, phase transform...
In this paper, partial amorphization of NiTi alloys by laser shock peening (LSP) is reported. The mi...
In this study, laser shock peening (LSP) was utilized to generate localized deformation induced mart...
In this paper, surface nanocrystallization of NiTi intermetallic alloy by a novel method is reported...
The shock effects in laser shock processing of NiTi shape memory alloy were studied by dimensional a...
This investigation focused on the tensile deformation behavior of a single crystal nickel-base super...
International audienceIn this study, a near equiatomic NiTi alloy was fabricated by selective laser ...
In order to study the effect of laser shock processing (LSP) on mechanical properties of Ti-45.5Al-2...
Laser shock peening of cold rolled Nitinol was carried out at high power density (7 and 9 GW/cm2) an...
The Laser Shock Peening (LSP) is applied to the surface of Nimonic 263 alloy. The changes in microst...
Selective laser melting (SLM) is used to manufacture dense NiTi parts. The microstructure and textur...
Nanoindention tests and SEM microstructure observations were conducted on a single crystal nickel ba...
The Laser Shock Peening (LSP) is applied to the surface of Nimonic 263 alloy. The changes in microst...
Laser shock peening (LSP), an innovative surface treatment technique, generates compressive residual...
Laser Engineered Net Shaping (LENS), a commercially available additive manufacturing technology, has...
The aim of this work is to study the effect of heat treatment on the microstructure, phase transform...
In this paper, partial amorphization of NiTi alloys by laser shock peening (LSP) is reported. The mi...
In this study, laser shock peening (LSP) was utilized to generate localized deformation induced mart...
In this paper, surface nanocrystallization of NiTi intermetallic alloy by a novel method is reported...
The shock effects in laser shock processing of NiTi shape memory alloy were studied by dimensional a...
This investigation focused on the tensile deformation behavior of a single crystal nickel-base super...
International audienceIn this study, a near equiatomic NiTi alloy was fabricated by selective laser ...
In order to study the effect of laser shock processing (LSP) on mechanical properties of Ti-45.5Al-2...
Laser shock peening of cold rolled Nitinol was carried out at high power density (7 and 9 GW/cm2) an...
The Laser Shock Peening (LSP) is applied to the surface of Nimonic 263 alloy. The changes in microst...
Selective laser melting (SLM) is used to manufacture dense NiTi parts. The microstructure and textur...
Nanoindention tests and SEM microstructure observations were conducted on a single crystal nickel ba...
The Laser Shock Peening (LSP) is applied to the surface of Nimonic 263 alloy. The changes in microst...
Laser shock peening (LSP), an innovative surface treatment technique, generates compressive residual...
Laser Engineered Net Shaping (LENS), a commercially available additive manufacturing technology, has...
The aim of this work is to study the effect of heat treatment on the microstructure, phase transform...