Supersolidus liquid phase sintering (SLPS) is an important liquid phase sintering variant that is used to densify prealloyed powders. The densification behaviour of a boron doped 316L stainless steel during SLPS is treated using a master sintering curve (MSC) concept based on the integral time–temperature work of sintering. With this approach, the MSC analysis is able to identify a fundamental change in the densification rate that is indicative of a mechanistic shift during SLPS.
GermanR. M.: ‘Sintering theory and practice’: 1996, New York, John Wiley and Sons, Inc.
2.
HansenJ. D., RusinR. P., TengM. H. and Lynn JohnsonD.: J. Am. Ceram. Soc., 1992, 75, (5), 1129–1135.
3.
ChuM. Y., RahamanM. N., de JongheL. C. and BrookR. J.: J. Am. Ceram. Soc., 1991, 74, (6), 1217–1225.
4.
WangJ. and RajR.: J. Am. Ceram. Soc., 1990, 73, (5), 1172–1175.
5.
RahamanM. N., de JongheL. C. and ChuM. Y.: J. Am. Ceram. Soc., 1991, 74, (3), 514–519.
6.
SuH. and JohnsonD. L.: J. Am. Ceram. Soc., 1996, 79, (12), 3211–3217.
7.
JohnsonD. L. and SuH.: in ‘Advances in powder metallurgy and particulate materials,’ Vol. 2, 115–121; 1997, Princeton, NJ, Metal Powder Industries Federation.
8.
JohnsonD. L.: Proc. Sintering 2003, (ed. CornwallR. G., GermanR. M. and MessingG. L.); 2003, University Park, PA, Materials Research Institute and Pennsylvania State University.
9.
KuttyT. R. G., KhanK. B., HedgeP. V., SenguptaA. K., MajumdarS. and KamathH. S.: Sci. Sinter., 2003, 35, 125–132.
10.
TengM. H., LaiY. C. and ChenY. T.: Western Pac. Earth Sci., 2002, 2, (2), 171–180.
11.
ParkS. J., ChungS. H., BlaineD., SunP. and GermanR. M.: in ‘Advances in powder metallurgy and particulate materials’, Vol. 1, 13–24; 2004, Princeton, NJ, Metal Powder Industries Federation.
12.
GermanR. M.: ‘Liquid phase sintering’: 1985, New York, NY, Plenum Press.
13.
ParkS. J., MartinJ. M., GuoJ. F., JohnsonJ. L. and GermanR. M.: Metall. Mater. Trans. A, 2006, 37A, 2837–2848.