Injection molded seals for compressors
Improved seal components for compressors, such as scroll compressors, are provided. Such seal components have a molded composite on a seal plate that is preformed, which serves as an improved face seal for floating seal assemblies. The preformed seal plate may be formed of a sintered powder metal or cast gray iron. The molded composite comprises a thermoplastic polymer and at least one reinforcing or lubricating particle. Methods of forming such seal components for a scroll compressor by injection molding are also provided.
1. A scroll compressor comprising:
a first non-orbiting scroll member having a baseplate defining a first side and a second side opposite to the first side, wherein the first side comprises an involute portion extending from the baseplate and the second side comprises a cavity having a floating seal assembly disposed therein, the floating seal assembly comprising a seal plate and a molded structural portion overmolded onto a region of the seal plate, wherein the seal plate comprises a metal, the molded structural portion comprises a thermoplastic polymer and at least one reinforcing or lubricating particle, the molded structural portion defines a first contact surface; and
a second contact surface on a partition plate that interfaces with at least a region of the first contact surface of the molded structural portion.
2. The scroll compressor of claim 1 , wherein the seal plate is an upper seal plate and the floating seal assembly further comprises a second metallic seal plate that is a lower seal plate.
3. The scroll compressor of claim 1 , wherein the seal plate comprises a non-machined sintered porous powder metal material and the second contact surface on the partition plate comprises a non-machined cast metallic material.
4. The scroll compressor of claim 1 , wherein the seal plate defines at least one locking feature to interact with and retain said molded structural portion.
5. The scroll compressor of claim 4 , wherein the seal plate comprises a centrally disposed opening and the at least one locking feature is disposed adjacent to the centrally disposed opening, wherein the at least one locking feature is selected from the group consisting of: a circumferential groove, an annular protrusion, a circumferential flange, a longitudinal channel, a locking wing, and combinations thereof.
6. The scroll compressor of claim 1 , wherein the thermoplastic polymer is selected from the group consisting of: polyaryletherketone (PAEK), polyetherketone (PEK), polyetheretherketone (PEEK), polyetheretheretherketone (PEEEK), polyetherketoneketone (PEKK), polyetheretherketoneketone (PEEKK) polyetherketoneetheretherketone (PEKEEK), polyetheretherketonetherketone (PEEKEK), poly(phenylene sulphide) (PPS), poly(sulphone) (PS), polyamide imide (PAI), polyimide (PI), and combinations thereof.
7. The scroll compressor of claim 1 , wherein the at least one reinforcing or lubricating particle is selected from the group consisting of: polytetrafluoroethylene (PTFE), molybdenum disulfide (MoS 2 ), tungsten disulfide (W 5 2 ), antimony trioxide, hexagonal boron nitride, carbon fiber, graphite, graphene, lanthanum fluoride, carbon nanotubes, polyimide, polybenzimidazole (PBI), and combinations thereof.
8. The scroll compressor of claim 1 , wherein the thermoplastic polymer comprises polyetheretherketone (PEEK) and the at least one reinforcing or lubricating particle is selected from the group consisting of:
polytetrafluoroethylene (PTFE), graphite, carbon fibers, and combinations thereof.
9. The scroll compressor of claim 1 , wherein the first contact surface is a face seal contact surface and the second contact surface is a wear surface on the partition plate.