Linear compressor
US-9429150-B2 · Aug 30, 2016 · US
US9702352B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9702352-B2 |
| Application number | US-201414524165-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 27, 2014 |
| Priority date | Oct 27, 2014 |
| Publication date | Jul 11, 2017 |
| Grant date | Jul 11, 2017 |
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A linear compressor is provided. The linear compressor includes a spring assembly. An inner back iron assembly is fixed to the spring assembly at a middle portion of the spring assembly. A driving coil is operable to move the inner back iron assembly in order to reciprocate a piston within a chamber of a cylinder assembly. A related spring assembly is also provided.
Opening claim text (preview).
What is claimed is: 1. A linear compressor, comprising: a casing having a first end portion and a second end portion, the casing having a cylinder assembly positioned at the second end portion of the casing, the cylinder assembly defining a chamber; a piston slidably received within the chamber of the cylinder assembly; a driving coil mounted to the casing; an inner back iron assembly positioned in the driving coil, the inner back iron assembly having an outer surface; a magnet mounted to the inner back iron assembly at the outer surface of the inner back iron assembly such that the magnet faces the driving coil; and a spring assembly comprising a first cylindrical portion mounted to the casing at the first end portion of the casing; a second cylindrical portion positioned within and fixed to the inner back iron assembly; a first helical portion mounted to the first and second cylindrical portions such that the first helical portion extends between and couples the first and second cylindrical portions together; a third cylindrical portion mounted to the casing at the second end portion of the casing; and a second helical portion mounted to the second and third cylindrical portions such that the second helical portion extends between and couples the second and third cylindrical portions together. 2. The linear compressor of claim 1 , wherein the first, second and third cylindrical portions and the first and second helical portions of the spring assembly are positioned coaxially relative to one another. 3. The linear compressor of claim 1 , wherein the first, second and third cylindrical portions and the first and second helical portions of the spring assembly are discrete from one another. 4. The linear compressor of claim 1 , wherein the inner back iron assembly comprises an outer cylinder defining the outer surface of the inner back iron assembly and an inner surface positioned opposite the outer surface, the inner back iron assembly also comprising a sleeve positioned on the inner surface of the outer cylinder, the sleeve extending between the inner surface of outer cylinder and the second cylindrical portion of the spring assembly. 5. The linear compressor of claim 4 , wherein a first interference fit between the sleeve and the outer cylinder fixes the sleeve to the outer cylinder at the inner surface of the outer cylinder, wherein a second interference fit between the sleeve and the second cylindrical portion of the spring assembly fixes the sleeve to the second cylindrical portion of the spring assembly. 6. The linear compressor of claim 4 , wherein the second cylindrical portion comprises a first cylindrical segment positioned at the first helical portion and a second cylindrical segment positioned at the second helical portion, the sleeve positioned over a joint between the first and second cylindrical segments. 7. The linear compressor of claim 1 , wherein the first helical portion is riveted, fastened, brazed, welded, insert-casted, clinched, press-fit or adhered to the first and second cylindrical portions and the second helical portion is riveted, fastened, brazed, welded, insert-casted, clinched, press-fit or adhered to the second and third cylindrical portions. 8. The linear compressor of claim 1 , further comprising a plurality of fasteners, fasteners of the plurality of fasteners extending through the first cylindrical portion into the first helical portion in order to mount the first helical portion to the first cylindrical portion, fasteners of the plurality of fasteners extending through the second cylindrical portion into the first helical portion in order to mount the first helical portion to the second cylindrical portion, fasteners of the plurality of fasteners extending through the second cylindrical portion into the second helical portion in order to mount the second helical portion to the second cylindrical portion, fasteners of the plurality of fasteners extending through the third cylindrical portion into the second helical portion in order to mount the second helical portion to the third cylindrical portion. 9. The linear compressor of claim 8 , further comprising a plurality of wedges, fasteners of the plurality of fasteners extending through the first cylindrical portion and the first helical portion into a first one of the plurality of wedges in order to mount the first helical portion to the first cylindrical portion, fasteners of the plurality of fasteners extending through the second cylindrical portion and the first helical portion into a second one of the plurality of wedges in order to mount the first helical portion to the second cylindrical portion, fasteners of the plurality of fasteners extending through the second cylindrical portion and the second helical portion into a third one of the plurality of wedges in order to mount the second helical portion to the second cylindrical portion, fasteners of the plurality of fasteners extending through the third cylindrical portion and the second helical portion into a fourth one of the plurality of wedges in order to mount the second helical portion to the third cylindrical portion. 10. The linear compressor of claim 9 , wherein fasteners of the plurality of fasteners are threaded to only a respective one of the first, second, third and fourth wedges. 11. The linear compressor of claim 1 , wherein the first helical portion of the spring assembly includes a first pair of helices that are separate from each other and the second helical portion of the spring assembly includes a second pair of helices that are separate from each other, each helix of the first pair of helices extending between the first and second cylindrical portions, each helix of the second pair of helices extending between the second and third cylindrical portions. 12. The linear compressor of claim 11 , wherein the first and second pair of helices are oppositely wound. 13. A linear compressor defining a radial direction, a circumferential direction and an axial direction, the linear compressor comprising: a casing having a first end portion and a second end portion spaced along the axial direction, the casing having a cylinder assembly positioned at the second end portion of the casing, the cylinder assembly defining a chamber; a piston received within the chamber of the cylinder assembly such that the piston is slidable along a first axis within the chamber of the cylinder assembly; a spring assembly extending between the first and second end portions of the casing; an inner back iron assembly extending about the spring assembly along the circumferential direction, the inner back iron assembly fixed to the spring assembly at a middle portion of the spring assembly; a driving coil extending about the inner back iron assembly along the circumferential direction, the driving coil operable to move the inner back iron assembly along a second axis during operation of the driving coil, the first and second axes being substantially parallel to the axial direction; a magnet mounted to the inner back iron assembly such that the magnet is spaced apart from the driving coil by an air gap along the radial direction. 14. The linear compressor of claim 13 , wherein the spring assembly comprises: a first cylindrical portion positioned at the first end portion of the casing; a second cylindrical portion positioned at the middle portion of the spring assembly; a first helical portion mounted to the first and second cylindrical portions such that the first helical portion extends between and couples the first and second cylindrical portions together; a third cylindrical portion positioned at t
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