IP Library Granted Patent US 12,656,030
Granted Patent B2
US 12,656,030 · App. 18/428,735 · Granted Jun 16, 2026

Linear compressor with a self-aligned coupling

Inventor: Gregory William Hahn (Mt. Washington, KY)
Assignee: Haier US Appliance Solutions, Inc.
F25B31/023F04B35/045F04B39/0016F04B53/12F25B2400/073
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Quick Facts
Patent No.
US 12,656,030
App. No.
18/428,735
Granted
Jun 16, 2026
Kind
B2
Abstract

A linear compressor may include a driving coil, a mover, a piston, and a coupling. The mover may be positioned adjacent the driving coil. The driving coil may be operable to reciprocate the mover relative to the driving coil. The piston may have a piston head and a cylindrical side wall. The inner surface of the cylindrical side wall may define a ball seat. The coupling may extend between the mover and the piston. The coupling may include a flex mount and a ball nose.

Claims (36)

1 . A linear compressor, comprising:

a driving coil;

a mover positioned adjacent the driving coil, the driving coil operable to reciprocate the mover relative to the driving coil;

a piston having a piston head and a cylindrical side wall, an inner surface of the cylindrical side wall defining a ball seat; and

a coupling extending between the mover and the piston, the coupling comprising:

a flex mount extending between a first end portion and a second end portion, the flex mount connected to the mover away from the first end portion of the flex mount,

a ball nose positioned at the first end portion of the flex mount, the ball nose contacting the piston at the ball seat of the piston, and

a freeze ring positioned at the first end portion of the flex mount radially inward from the ball nose to guide variable axial alignment of the ball nose,

wherein the flex mount defines a frustoconical edge at the first end portion in contact with a rearward edge of the ball nose.

2 . The linear compressor of claim 1 , wherein the frustoconical edge is defined at a set angle relative to a radial direction, the set angle being between 10° and 30°.

3 . The linear compressor of claim 1 , wherein a radial gap is defined between a guide wall segment of the freeze ring and an internal surface of the ball nose.

4 . The linear compressor of claim 1 , wherein the flex mount comprises an internal seat extending radially inward between the first end portion and the second end portion, and

wherein the freeze ring is supported against the internal seat within the flex mount.

5 . The linear compressor of claim 1 , wherein the freeze ring comprises a shoulder segment defining a shoulder outer diameter and a guide wall segment defining a wall outer diameter, the shoulder outer diameter being greater than the wall outer diameter, and

wherein the ball nose defines an internal nose diameter less than the shoulder outer diameter to axially restrict movement of the freeze ring at the shoulder segment.

6 . The linear compressor of claim 1 , wherein the coupling further comprises a post extending from the piston and through the freeze ring into the flex mount.

7 . The linear compressor of claim 6 , wherein the coupling further comprises a spring coupled to the post and the flex mount rearward from the freeze ring such that the spring urges the ball nose against the ball seat of the piston.

8 . The linear compressor of claim 1 , wherein the flex mount comprises a tubular wall between the mover and the piston, a channel within the tubular wall configured for directing refrigerant through the flex mount towards the piston head of piston.

9 . The linear compressor of claim 8 , wherein the mover is mounted to the flex mount such that the mover extends around the tubular wall.

10 . A linear compressor, comprising:

a driving coil;

a mover positioned adjacent the driving coil, the driving coil operable to reciprocate the mover relative to the driving coil;

a piston having a piston head and a cylindrical side wall, an inner surface of the cylindrical side wall defining a ball seat; and

a coupling extending between the mover and the piston, the coupling comprising:

a flex mount extending between a first end portion and a second end portion, the flex mount connected to the mover away from the first end portion of the flex mount, the flex mount defining a frustoconical edge at the first end portion, and

a ball nose positioned at the first end portion of the flex mount in contact with the frustoconical edge, the ball nose further contacting the piston at the ball seat of the piston.

11 . The linear compressor of claim 10 , wherein the frustoconical edge is defined at a set angle relative to a radial direction, the set angle being between 10° and 30°.

12 . The linear compressor of claim 10 , wherein the coupling further comprises a freeze ring positioned at the first end portion of the flex mount radially inward from the ball nose to guide variable axial alignment of the ball nose, the freeze ring defining a radial gap between a guide wall segment of the freeze ring and an internal surface of the ball nose.

13 . The linear compressor of claim 12 , wherein the flex mount comprises an internal seat extending radially inward between the first end portion and the second end portion, and

wherein the freeze ring is supported against the internal seat within the flex mount.

14 . The linear compressor of claim 12 , wherein the freeze ring comprises a shoulder segment defining a shoulder outer diameter and a guide wall segment defining a wall outer diameter, the shoulder outer diameter being greater than the wall outer diameter, and

wherein the ball nose defines an internal nose diameter less than the shoulder outer diameter to axially restrict movement of the freeze ring at the shoulder segment.

15 . The linear compressor of claim 12 , wherein the coupling further comprises a post extending from the piston and through the freeze ring into the flex mount.

16 . The linear compressor of claim 15 , wherein the coupling further comprises a spring coupled to the post and the flex mount rearward from the freeze ring such that the spring urges the ball nose against the ball seat of the piston.

17 . The linear compressor of claim 10 , wherein the flex mount comprises a tubular wall between the mover and the piston, a channel within the tubular wall configured for directing refrigerant through the flex mount towards the piston head of piston.

18 . The linear compressor of claim 17 , wherein the mover is mounted to the flex mount such that the mover extends around the tubular wall.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 1, 2024
From: HAHN, GREGORY WILLIAM
To: HAIER US APPLIANCE SOLUTIONS, INC.
Reel/Frame 066322/0812 →
Continuity (1)
Related Publication 20250244060A1 · Jul 31, 2025
References Cited (8)
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US 10066615B2 · Hahn · 2018 [cited by applicant]
US 10100819B2 · Hahn · 2018 [cited by examiner]
US 11530695B1 · Hahn · 2022 [cited by examiner]
US 20190345924A1 · Hahn · 2019 [cited by examiner]
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CN 112502962A · 2021 [cited by applicant]