Microstructure and calorimetric behavior of laser welded open cell foams in CuZnAl shape memory alloy

Author:

Biffi Carlo Alberto1,Previtali Barbara2,Tuissi Ausonio1

Affiliation:

1. National Research Council — Institute of Condensed Matter Chemistry and Technologies for Energy, CNR ICMATE, C.so Promessi Sposi 29, 23900 Lecco (Italy) Corso Promessi Sposi 29, Lecco 23900, Italy

2. Department of Mechanical Engineering, Politecnico di Milano, Via La Masa 1, Milano 20156, Italy

Abstract

Cellular shape memory alloys (SMAs) are very promising smart materials able to combine functional properties of the material with lightness, stiffness, and damping capacity of the cellular structure. Their processing with low modification of the material properties remains an open question. In this work, the laser weldability of CuZnAl SMA in the form of open cell foams was studied. The cellular structure was proved to be successfully welded in lap joint configuration by using a thin plate of the same alloy. Softening was seen in the welded bead in all the investigated ranges of process speed as well as a double stage heat affected zone was identified due to different microstructures; the martensitic transformation was shifted to higher temperatures and the corresponding peaks were sharper with respect to the base material due to the rapid solidification of the material. Anyways, no compositional variations were detected in the joints.

Publisher

World Scientific Pub Co Pte Lt

Subject

General Materials Science

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