Hostname: page-component-586b7cd67f-dlnhk Total loading time: 0 Render date: 2024-11-28T15:21:43.164Z Has data issue: false hasContentIssue false

A Theory of Shape-Memory Thin Films with Applications

Published online by Cambridge University Press:  10 February 2011

K. Bhattacharya
Affiliation:
Division of Engineering and Applied Science, 104–44 California Institute of Technology, Pasadena CA 91125, USA; [email protected]
R. D. James
Affiliation:
Department of Aerospace Engineering and Mechanics, University of Minnesota, Minneapolis, MN 55455, USA; [email protected]
Get access

Extract

Shape-memory alloys have the largest energy output per unit volume per cycle of known actuator systems [1]. Unfortunately, they are temperature activated and hence, their frequency is limited in bulk specimens. However, this is overcome in thin films; and hence shape-memory alloys are ideal actuator materials in micromachines[l]. The heart of the shape-memory effect lies in a martensitic phase transformation and the resulting microstructure. It is well-known that microstructure can be significantly different in thin films as compared to bulk materials. In this paper, we report on a theory of single crystal martensitic this films. We show that single crystal films of shape memory material offer interesting possibilities for producing very large deformations, at small scales.

Type
Research Article
Copyright
Copyright © Materials Research Society 1997

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

REFERENCES

1. Krulevitch, P., Lee, A.P., Ramsey, P.B., Trevino, J., Hamilton, J. and Northrup, M.A., to appear in J. MEMS.Google Scholar
2. Ball, J.M. and James, R.D., Arch. Rat. Mech. Anal. 100, 13, (1987).Google Scholar
3. Bhattacharya, K. and James, R.D., In preparation.Google Scholar
4. Naghdi, P.M., Handbuch der Physik, Vol VI a/3 (1972).Google Scholar
5. Matsumoto, O., Miyazaki, S., Otsuka, K. and Tamura, H., Acta Metall. 35, 2137, (1987).Google Scholar
6. Bhattacharya, k., in preparation.Google Scholar