Systems and methods for preventing rotation of rotor bearings in a stator

US9438089B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9438089-B2
Application numberUS-201414199524-A
CountryUS
Kind codeB2
Filing dateMar 6, 2014
Priority dateMar 6, 2014
Publication dateSep 6, 2016
Grant dateSep 6, 2016

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

Systems and methods for preventing rotation of rotor bearings in electric motors which enable retrofitting of conventionally designed bearings to use spring-loaded keys instead of elastomeric T-rings to prevent rotation while allowing axial movement of the bearings within a stator bore. An elongated, curved spring arm is positioned in the nesting groove at the outer periphery of the bearing. One end of the spring may be secured to the bearing by positioning an S-shaped bend in the spring arm through a hole in the floor of the nesting groove. A key at the opposite end of the spring arm is urged radially outward by the spring arm. The key may be positioned in a slot in the outer portion of the bearing, and the spring arm may be retained in the groove by a retaining pin installed in the groove.

First claim

Opening claim text (preview).

What is claimed is: 1. An apparatus comprising: a rotor bearing having a nesting groove in an outer periphery of the rotor bearing in a circumferential direction, wherein the nesting groove extends in an arc of at least 30 degrees around an axis of the bearing; a curved spring arm positioned in the nesting groove, wherein the spring arm extends in an arc of at least 30 degrees around an axis of the bearing, wherein the spring arm has a first end that is secured to the bearing and resists circumferential movement of the spring arm with respect to the bearing, wherein the spring arm has a second end opposite the first end, wherein the spring arm has a key connected to the second end, and wherein when the key is positioned within an outer diameter of the bearing, the spring arm is deformed against a floor of the nesting groove and thereby provides a spring force that urges the key radially outward from the bearing; and a stator, wherein the stator has a bore therethrough and wherein the bore has a keyway therein, wherein the rotor bearing is positioned within the bore and the key is urged by the spring arm into contact with the stator, wherein when the key is aligned with the keyway, the key is urged into the keyway by the spring arm. 2. An apparatus comprising: a rotor bearing having a nesting groove in an outer periphery of the rotor bearing in a circumferential direction, wherein the nesting groove extends in an arc of at least 30 degrees around an axis of the bearing; a curved spring arm positioned in the nesting groove, wherein the spring arm extends in an arc of at least 30 degrees around an axis of the bearing, wherein the spring arm has a first end that is secured to the bearing and resists circumferential movement of the spring arm with respect to the bearing, wherein the spring arm has a second end opposite the first end, wherein the spring arm has a key connected to the second end, and wherein when the key is positioned within an outer diameter of the bearing, the spring arm is deformed against a floor of the nesting groove and thereby provides a spring force that urges the key radially outward from the bearing; and a slot in an outer portion of the rotor bearing, wherein the slot is connected to the nesting groove and extends axially across the nesting groove, wherein at least a portion of the key is positioned within the slot. 3. The apparatus of claim 2 , wherein the key is wider than the nesting groove, wherein at least a portion of the key is positioned in the slot. 4. An apparatus comprising: a rotor bearing having a nesting groove in an outer periphery of the rotor bearing in a circumferential direction, wherein the nesting groove extends in an arc of at least 30 degrees around an axis of the bearing; a curved spring arm positioned in the nesting groove, wherein the spring arm extends in an arc of at least 30 degrees around an axis of the bearing, wherein the spring arm has a first end that is secured to the bearing and resists circumferential movement of the spring arm with respect to the bearing, wherein the spring arm has a second end opposite the first end, wherein the spring arm has a key connected to the second end, and wherein when the key is positioned within an outer diameter of the bearing, the spring arm is deformed against a floor of the nesting groove and thereby provides a spring force that urges the key radially outward from the bearing; and wherein the key has one or more chamfered edges. 5. An apparatus comprising: a rotor bearing having a nesting groove in an outer periphery of the rotor bearing in a circumferential direction, wherein the nesting groove extends in an arc of at least 30 degrees around an axis of the bearing; a curved spring arm positioned in the nesting groove, wherein the spring arm extends in an arc of at least 30 degrees around an axis of the bearing, wherein the spring arm has a first end that is secured to the bearing and resists circumferential movement of the spring arm with respect to the bearing, wherein the spring arm has a second end opposite the first end, wherein the spring arm has a key connected to the second end, and wherein when the key is positioned within an outer diameter of the bearing, the spring arm is deformed against a floor of the nesting groove and thereby provides a spring force that urges the key radially outward from the bearing wherein the spring arm has an S-shaped bend in the first end; and wherein the apparatus has a hole in one of: the floor of the nesting groove; and a wall of the nesting groove, wherein the S-shaped bend in the first end extends through the hole and thereby secures the first end to the bearing. 6. An apparatus comprising: a rotor bearing having a nesting groove in an outer periphery of the rotor bearing in a circumferential direction, wherein the nesting groove extends in an arc of at least 30 degrees around an axis of the bearing; a curved spring arm positioned in the nesting groove, wherein the spring arm extends in an arc of at least 30 degrees around an axis of the bearing, wherein the spring arm has a first end that is secured to the bearing and resists circumferential movement of the spring arm with respect to the bearing, wherein the spring arm has a second end opposite the first end, wherein the spring arm has a key connected to the second end, and wherein when the key is positioned within an outer diameter of the bearing, the spring arm is deformed against a floor of the nesting groove and thereby provides a spring force that urges the key radially outward from the bearing, wherein the spring arm comprises a first portion adjacent to the second end of the spring arm having a second radius that is greater than the radius of the floor of the groove, and wherein the spring arm further comprises a second, friction-fit portion adjacent to the first end of the spring arm having a first radius that is less than a radius of the floor of the groove. 7. An apparatus comprising: a rotor bearing having a nesting groove in an outer periphery of the rotor bearing; a spring arm positioned in the nesting groove, wherein the spring arm has a first end that is secured to the bearing and resists circumferential movement of the spring arm with respect to the bearing, wherein the spring arm has a second end opposite the first end, wherein the spring arm has a key connected to the second end, and wherein when the key is positioned within an outer diameter of the bearing, the spring arm is deformed and thereby provides a spring force that urges the key radially outward from the bearing; and a retaining pin positioned in the nesting groove, radially outward from the spring arm, wherein the retaining pin holds the spring arm in the nesting groove; and a stator, wherein the stator has a bore therethrough and wherein the bore has a keyway therein, wherein the rotor bearing is positioned within the bore and the key is urged by the spring arm into contact with the stator, wherein when the key is aligned with the keyway, the key is urged into the keyway by the spring arm.

Assignees

Inventors

Classifications

  • H02K15/50Primary

    Disassembling, repairing or modifying dynamo-electric machines (repairing of cooling fluid boxes H02K15/38) · CPC title

  • Structural association with bearings · CPC title

  • Machines characterised by thrust bearings · CPC title

  • F16C35/077Primary

    between housing and outer race ring · CPC title

  • Rotor · CPC title

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What does patent US9438089B2 cover?
Systems and methods for preventing rotation of rotor bearings in electric motors which enable retrofitting of conventionally designed bearings to use spring-loaded keys instead of elastomeric T-rings to prevent rotation while allowing axial movement of the bearings within a stator bore. An elongated, curved spring arm is positioned in the nesting groove at the outer periphery of the bearing. On…
Who is the assignee on this patent?
Baker Hughes Inc
What technology area does this patent fall under?
Primary CPC classification H02K15/50. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Sep 06 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).