Heat shield labyrinth seal
A seal for sealing a combustor heat shield against an interior surface of a combustor shell, the seal comprising: a first sealing surface on the interior surface of the combustor shell; and a second sealing surface on a rail on an edge of a heat shield, wherein each of the first and second sealing surfaces include first and second projections defining a non-linear leakage path between the projections.
1. A seal for sealing a gap between a combustor heat shield and an interior surface of a combustor shell, the seal comprising:
a first sealing surface on the interior surface of the combustor shell; and
a second sealing surface on a rail extending from the combustor heat shield,
wherein the first and second sealing surfaces respectively include first and second projections, which jointly define a non-linear leakage path between the projections, and
wherein the first and second projections each comprise a serrated series of mating triangular ridges.
2. The seal according to claim 1 wherein the first projections are manufactured using a direct metal laser sintering (DMLS) process.
3. The seal according to claim 1 wherein the second projections are manufactured using a metal injection molding (MIM) process.
4. A gas turbine engine combustor comprising: a combustor shell, a heat shield having a back face positioned in spaced-apart facing relationship with an interior surface of the combustor shell to define an air gap between the heat shield and the combustor shell, a first sealing surface on the interior surface of the combustor shell; and a second sealing surface on a rail extending from the back face of the combustor heat shield, the first and second sealing surfaces respectively having first and second projections, which jointly define a non-linear leakage path between the projections, wherein the first and second projections comprise a serrated series of mating triangular ridges.