[HTML][HTML] A review of various materials for additive manufacturing: Recent trends and processing issues

M Srivastava, S Rathee, V Patel, A Kumar… - Journal of Materials …, 2022 - Elsevier
Tremendous growth has been witnessed in the field of additive manufacturing (AM)
technology over the last few decades. It offers a plethora of applications and is already being …

Deformation physics of shape memory alloys–fundamentals at atomistic frontier

P Chowdhury, H Sehitoglu - Progress in Materials Science, 2017 - Elsevier
Application spectrum of shape memory alloys (SMA) is expanding rapidly and
proportionately so is the engineering demand for superior materials. An essential …

The influence of heat treatment on the thermomechanical response of Ni-rich NiTi alloys manufactured by selective laser melting

S Saedi, AS Turabi, MT Andani, C Haberland… - Journal of Alloys and …, 2016 - Elsevier
This study presents the effects of solution annealing and subsequent aging on shape
memory response of Ni-rich Ni 50.8 Ti 49.2 alloys fabricated by Selective Laser Melting …

Texture, aging, and superelasticity of selective laser melting fabricated Ni-rich NiTi alloys

S Saedi, AS Turabi, MT Andani, NS Moghaddam… - Materials Science and …, 2017 - Elsevier
This work studies the impact of selective laser melting (SLM) fabrication on the
microstructure and texture of Ni-rich NiTi alloy. SLM NiTi samples were fabricated with a …

Additive manufacturing of NiTiHf high temperature shape memory alloy

M Elahinia, NS Moghaddam, A Amerinatanzi, S Saedi… - Scripta Materialia, 2018 - Elsevier
A NiTi-20Hf high temperature shape memory alloy (HTSMA) was additively manufactured by
selective laser melting (SLM) technique using NiTiHf powder. The thermomechanical and …

Predicting the martensitic transition temperatures in ternary shape memory alloys Ni0. 5Ti0. 5− xHfx from first principles

Z Wu, H Malmir, O Benafan, JW Lawson - Acta Materialia, 2023 - Elsevier
Martensitic transition temperatures (MTTs) can be tuned by alloying binaries with other
elements to create multi-component shape memory alloys (SMAs). However, it is inefficient …

Relationship between crystallographic compatibility and thermal hysteresis in Ni-rich NiTiHf and NiTiZr high temperature shape memory alloys

A Evirgen, I Karaman, R Santamarta, J Pons… - Acta Materialia, 2016 - Elsevier
The relationship between the crystallographic compatibility of austenite and martensite
phases and the transformation thermal hysteresis (ΔT) of Ni-rich Ni 50.3 Ti 29.7 Hf 20 and Ni …

High strength NiTiHf shape memory alloys with tailorable properties

SM Saghaian, HE Karaca, H Tobe, AS Turabi, S Saedi… - Acta Materialia, 2017 - Elsevier
Microstructure of NiTiHf shape memory alloys can be engineered to have high strength and
operate at high stress levels for a large temperature window. Nanoprecipitation is well …

[HTML][HTML] Processing and scalability of NiTiHf high-temperature shape memory alloys

O Benafan, GS Bigelow, A Garg, RD Noebe… - Shape Memory and …, 2021 - Springer
Abstract Development of melting and processing techniques for NiTiHf high-temperature
shape memory alloys at the laboratory scale has resulted in pronounced success and …

[HTML][HTML] The prediction model for additively manufacturing of NiTiHf high-temperature shape memory alloy

M Mehrpouya, A Gisario, M Nematollahi… - Materials today …, 2021 - Elsevier
NiTi-based alloys are one of the most well-known alloys among shape memory alloys
having a wide range of applications from biomedical to aerospace areas. Adding a third …