Biomedical Engineering Reference
In-Depth Information
Grujicic, M., Saylor, J., Beasley, D., DeRosset, W., and Helfritch, D. (2003)
Computational analysis of the interfacial bonding between feed-powder
particles and the substrate in the cold-gas-dynamic-spray process. Applied
Surface Science, 219, 211-227.
Hermanek, F. (2002). Thermal spraying: What it was and what it has become.
The International Journal of Powder Metallurgy, 38, 35-44.
Jen, T., Li, L., Cui, W., Chen, Q., and Zhang, X. Numerical investigations on
cold gas dynamic spray process with nano-and microsize particles.
International Journal of Heat and Mass Transfer, 48, 4384-4396.
Kim, H., Lee, C., and Hwang, S. (2005) Superhard nano WC-12%Co coating
by cold spray deposition. Materials Science and Engineering, 391, 243-
248.
Klinkov, S., Kosarev, V., and Rein, M. (2005) Cold spray deposition:
Significance of particle impact phenomena. Aerospace Science and
Technology, 9, 582-591.
Morgan, R., and Stalker, R. (1982) Fast-acting hydrogen valve. Journal of
Physics and Scientific Instruments, 16, 205-207 .
Nabulsi, S., Paget, N., Duval, A., Seabrook, Y., and Scott, K. (1993). A gas-
driven gene gun for microprojectile methods of genetic engineering. Meas.
Sci. Technol., 5, 267-274.
Papyrin, A. (2001). Cold spray produces high quality coatings for a wide
spectrum of applications. Advanced Materials and Processes, 9, 49-51 .
Raletz., F., Vardelle, M., and Ezo'o, G. (2006). Critical particle velocity under
cold spray conditions. Surface and Coatings Technology, 201, 1942-1947.
Rinberg, D., Simmonet, C., and Groisman, A. (2005). Applied Physics Letters,
87.
Shen, Z., Xing, Y., Chen, J., Liu, C., Wu, C., and Yang, S. (1995). Fast
electromagnetic gas valve. Meas. Sci. Technol, 6, 324-328.
Viniar, I., and Sudo, S. (1996). Repeating pneumatic pipe-gun for plasma
fueling. Review of Scientific Instrument, 68, 1444-1.
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