Linear compressor with oil splash shield
US-2020355176-A1 · Nov 12, 2020 · US
US12092092B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12092092-B2 |
| Application number | US-202217568036-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 4, 2022 |
| Priority date | Jan 4, 2022 |
| Publication date | Sep 17, 2024 |
| Grant date | Sep 17, 2024 |
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A linear compressor or sealed system may include a casing, a piston, an driving coil, an inner back iron assembly, and a planar spring assembly. The casing may include a cylinder assembly defining a chamber along an axial direction. The piston may be slidably received within the chamber of the cylinder assembly. The inner back iron assembly may be positioned in the driving coil. The planar spring assembly may be mounted to the inner back iron assembly. The planar spring assembly may include a first planar spring, a second planar spring axially spaced apart from the first planar spring, and a polymer shim layer disposed between at least a portion of the first planar spring and the second planar spring.
Opening claim text (preview).
What is claimed is: 1. A linear compressor for an appliance, the linear compressor comprising: a casing comprising a cylinder assembly defining a chamber along an axial direction; a piston slidably received within the chamber of the cylinder assembly; a driving coil; an inner back iron assembly positioned in the driving coil; and a planar spring assembly mounted to the inner back iron assembly, the planar spring assembly comprising a first planar spring, a second planar spring axially spaced apart from the first planar spring, a polymer shim layer disposed between at least a portion of the first planar spring and the second planar spring, and a spacer plug disposed between the first planar spring and the second planar spring, wherein the polymer shim layer is sandwiched between the spacer plug and the first planar spring. 2. The linear compressor of claim 1 , wherein the first and second planar springs comprise a metal material. 3. The linear compressor of claim 2 , wherein the spacer plug comprises the metal material. 4. The linear compressor of claim 1 , wherein the spacer plug defines a radial plug footprint, wherein the polymer shim layer defines a radial shim plug footprint axially aligned with and larger than the radial plug footprint. 5. The linear compressor of claim 1 , wherein the first planar spring comprises an inner ring extending circumferentially about the axial direction, a radial arm extending from the inner ring to a distal tip, wherein the polymer shim layer is an inner shim layer axially aligned with the inner ring, and wherein the planar spring assembly further comprises an outer shim layer radially spaced apart from the inner shim layer and axially aligned with the radial arm at the distal tip. 6. The linear compressor of claim 5 , wherein the inner shim layer comprises a first polymer material, and wherein the outer shim layer comprises a second polymer material, the second polymer material being different from the first polymer material. 7. The linear compressor of claim 5 , wherein the inner shim layer comprises a first polymer material, and wherein the outer shim layer comprises the first polymer material. 8. The linear compressor of claim 1 , wherein the polymer shim layer comprises a polymer sheet. 9. The linear compressor of claim 1 , wherein the polymer shim layer comprises a polymer coating formed on the first planar spring. 10. A sealed system for an appliance, comprising: a linear compressor defining an axial direction and comprising a casing comprising a cylinder assembly defining a chamber; a piston slidably received within the chamber of the cylinder assembly; a driving coil; an inner back iron assembly positioned in the driving coil; and a first planar spring mounted to the inner back iron assembly, a second planar spring mounted to the inner back iron assembly and axially spaced apart from the first planar spring, a polymer shim layer disposed between at least a portion of the first planar spring and the second planar spring, and a spacer plug disposed between the first planar spring and the second planar spring, wherein the polymer shim layer is sandwiched between the spacer plug and the first planar spring; a shell defining an internal volume enclosing the linear compressor and lubrication oil therein; a condenser in downstream fluid communication with the linear compressor to receive a compressed refrigerant therefrom; and an evaporator in upstream fluid communication with the linear compressor to direct an expanded refrigerant thereto. 11. The sealed system of claim 10 , wherein the first and second planar springs comprise a metal material. 12. The sealed system of claim 11 , wherein the spacer plug comprises the metal material. 13. The sealed system of claim 10 , wherein the spacer plug defines a radial plug footprint, wherein the polymer shim layer defines a radial shim plug footprint axially aligned with and larger than the radial plug footprint. 14. The sealed system of claim 10 , wherein the first planar spring comprises an inner ring extending circumferentially about the axial direction, a radial arm extending from the inner ring to a distal tip, wherein the polymer shim layer is an inner shim layer axially aligned with the inner ring, and wherein linear compressor further comprises an outer shim layer radially spaced apart from the inner shim layer and axially aligned with the radial arm at the distal tip. 15. The sealed system of claim 14 , wherein the inner shim layer comprises a first polymer material, and wherein the outer shim layer comprises a second polymer material, the second polymer material being different from the first polymer material. 16. The sealed system of claim 14 , wherein the inner shim layer comprises a first polymer material, and wherein the outer shim layer comprises the first polymer material. 17. The sealed system of claim 10 , wherein the polymer shim layer comprises a polymer sheet. 18. The sealed system of claim 10 , wherein the polymer shim layer comprises a polymer coating formed on the first planar spring. 19. A linear compressor for an appliance, the linear compressor comprising: a casing comprising a cylinder assembly defining a chamber along an axial direction; a piston slidably received within the chamber of the cylinder assembly; a driving coil; an inner back iron assembly positioned in the driving coil; and a planar spring assembly mounted to the inner back iron assembly, the planar spring assembly comprising a first planar spring comprising an inner ring extending circumferentially about the axial direction and a radial arm extending from the inner ring to a distal tip, a second planar spring axially spaced apart from the first planar spring, and a polymer shim layer disposed between at least a portion of the first planar spring and the second planar spring, the polymer shim layer comprising an inner shim layer axially aligned with the inner ring, and an outer shim layer radially spaced apart from the inner shim layer and axially aligned with the radial arm at the distal tip. 20. The sealed system of claim 19 , wherein the spacer plug defines a radial plug footprint, wherein the inner shim layer defines a radial shim plug footprint axially aligned with and larger than the radial plug footprint.
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