IP Library Granted Patent US 11,266,238
Granted Patent B2
US 11,266,238 · App. 16/944,705 · Granted Mar 8, 2022

Drawer glide mechanism

Inventors: Edward William Roy Lachman (Corona Del Mar, CA); Bradly Anderson (Pomona, CA)
Assignee: American Woodmark Management Company
A47B88/487A47B88/423A47B88/43A47B88/447A47B88/453F16C43/04A47B88/40A47B2088/4235A47B2210/0018A47B2210/0032A47B2210/0059F16C2314/72
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Quick Facts
Patent No.
US 11,266,238
App. No.
16/944,705
Granted
Mar 8, 2022
Kind
B2
Abstract

A drawer glide mechanism can include a first elongate guide member, a second elongate guide member, a ball bearing component, a v-notch socket, a release mechanism, and/or a roller support. The first elongate guide member can include a distal end that is configured to fit within an opening in the v-notch socket. The drawer glide mechanism can further include one or more floating members and fixed members. In some cases, the drawer glide mechanism includes a release member configured to facilitate separation of the first and second elongate guide members when actuated and to inhibit or prevent accidental separation of the first and second elongate guide members.

Claims (80)

1. A drawer glide mechanism comprising:

a first elongate guide member having:

a first end and a second end opposite the first end;

a web;

a first flange extending from the web; and

a second flange extending from the web and spaced from the first flange;

a second elongate guide member having:

a first end and a second end opposite the first end;

a web;

a first flange extending from the web of the second elongate guide member; and

a second flange extending from the web of the second elongate guide member and spaced from the first flange of the second elongate guide member;

a ball bearing component configured to facilitate movement of the second elongate guide member relative to the first elongate guide member in a first direction and a second direction opposite the first direction;

a stop extending from the web of the first elongate guide member at least partially toward the second elongate guide member, the stop positioned between and spaced apart from the first and second flanges of the first elongate guide member; and

a release member connected to the web of the second elongate guide member, the release member comprising:

a first end and a second end opposite the first end;

an actuation portion between the first and second ends of the release member; and

an obstruction portion between the first and second ends of the release member,

wherein the obstruction portion extends from a surface of the release member in a direction that is transverse with respect to said surface;

wherein, when the release member is in an obstructing position and the second elongate guide member moves in the first direction beyond a predetermined maximum extension point, the obstruction portion is configured to interfere with the stop and inhibit decoupling of the second elongate guide member from the first elongate guide member;

wherein the release member is biased to the obstructing position and configured to transition to a releasing position when a force is applied to the actuation portion in a third direction at least partially toward the web of the second elongate guide member; and

wherein, when the release member is in the releasing position, the release member permits decoupling of the second elongate guide member from the first elongate guide member in the first direction.

2. The drawer glide mechanism of claim 1 , wherein the release member is welded to the web of the second elongate guide member.

3. The drawer glide mechanism of claim 1 , wherein the obstruction portion comprises a tab.

4. The drawer glide mechanism of claim 3 , wherein the stop comprises a tab.

5. The drawer glide mechanism of claim 1 , wherein the stop comprises a bent portion of the web of the first elongate guide member.

6. The drawer glide mechanism of claim 1 , wherein the stop is configured to prevent the ball bearing component from decoupling from the first elongate guide member.

7. A drawer glide mechanism comprising:

a first elongate guide member having:

a first end and a second end opposite the first end;

a web;

a first flange extending from the web; and

a second flange extending from the web and spaced from the first flange;

a second elongate guide member having:

a first end and a second end opposite the first end;

a web;

a first flange extending from the web of the second elongate guide member; and

a second flange extending from the web of the second elongate guide member and spaced from the first flange of the second elongate guide member;

a ball bearing component configured to facilitate movement of the second elongate guide member relative to the first elongate guide member in a first direction and a second direction opposite the first direction;

a stop extending from the first elongate guide member; and

a release member connected to the second elongate guide member, the release member comprising:

a first end and a second end opposite the first end;

an actuation portion between the first and second ends of the release member; and

an obstruction portion between the first and second ends of the release member,

wherein the obstruction portion extends from a surface of the release member in a direction that is transverse with respect to said surface;

wherein, when the release member is in an obstructing position and the second elongate guide member moves in the first direction beyond a predetermined maximum extension point, the obstruction portion is configured to interfere with the stop and inhibit decoupling of the second elongate guide member from the first elongate guide member;

wherein the release member is configured to transition to a releasing position when a force is applied to the actuation portion; and

wherein, when the release member is in the releasing position, the release member permits decoupling of the second elongate guide member from the first elongate guide member.

8. The drawer glide mechanism of claim 7 , wherein each of the obstruction portion and the stop comprises a tab.

9. The drawer glide mechanism of claim 7 , wherein the stop comprises a bent portion of the web of the first elongate guide member.

10. The drawer glide mechanism of claim 7 , wherein the stop is positioned between and spaced from the first and second flanges of the first elongate guide member.

11. The drawer glide mechanism of claim 7 , wherein the release member is biased to the obstructing position.

12. The drawer glide mechanism of claim 7 , wherein, when the release member is in the releasing position, the release member permits decoupling of the second elongate guide member from the first elongate guide member in the first direction.

13. A drawer system comprising the drawer glide mechanism of claim 7 and further comprising:

a drawer cabinet having a back panel and a first side panel; and

a drawer having a first sidewall;

wherein the first elongate guide member of the drawer glide mechanism is configured to secure to at least one of the back panel and the first side panel of the drawer cabinet; and

wherein the second elongate guide member of the drawer glide mechanism is configured to secure to the first sidewall of the drawer.

14. A drawer glide mechanism comprising:

a first elongate guide member having:

a first end and a second end opposite the first end;

a web;

a first flange extending from the web; and

a second flange extending from the web and spaced from the first flange;

a second elongate guide member having:

a first end and a second end opposite the first end;

a web;

a first flange extending from the web of the second elongate guide member; and

a second flange extending from the web of the second elongate guide member and spaced from the first flange of the second elongate guide member;

a ball bearing component configured to facilitate movement of the second elongate guide member relative to the first elongate guide member; and

a release member connected to the second elongate guide member, the release member comprising:

an actuation portion; and

an obstruction portion configured to inhibit decoupling of the second elongate guide member from the first elongate guide member when the release member is in an obstructing position, wherein the obstruction portion extends from a surface of the release member in a direction that is transverse with respect to said surface;

wherein the release member is configured to transition to a releasing position when a force is applied to the actuation portion; and

wherein, when the release member is in the releasing position, the release member permits decoupling of the second elongate guide member from the first elongate guide member.

15. The drawer glide mechanism of claim 14 , wherein the ball bearing component is configured to facilitate movement of the second elongate guide member relative to the first elongate guide member in a first direction and a second direction opposite the first direction, and wherein, when the release member is in the releasing position, the release member permits decoupling of the second elongate guide member from the first elongate guide member in the first direction.

16. The drawer glide mechanism of claim 14 , further comprising a stop extending from the first elongate guide member, wherein, when the release member is in the obstructing position, the stop is configured to interfere with the obstruction portion to inhibit decoupling of the second elongate guide member from the first elongate guide member.

17. The drawer glide mechanism of claim 16 , wherein each of the obstruction portion and the stop comprises a tab.

18. The drawer glide mechanism of claim 16 , wherein the stop comprises a bent portion of the web of the first elongate guide member.

19. The drawer glide mechanism of claim 16 , wherein the stop is positioned between and spaced from the first and second flanges of the first elongate guide member.

20. The drawer glide mechanism of claim 14 , wherein the release member is configured to transition to the releasing position when the force is applied to the actuation portion in a third direction at least partially toward the second elongate guide member.

Assignments (6)
RELEASE OF SECURITY INTEREST (REEL/FRAME NO. 056009/0019) Recorded May 28, 2026
From: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
To: AMERICAN WOODMARK MANAGEMENT CORPORATION
Reel/Frame 075643/0626 →
RELEASE OF SECURITY INTEREST (REEL/FRAME NO. 068877/0300) Recorded May 28, 2026
From: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
To: AMERICAN WOODMARK MANAGEMENT CORPORATION
Reel/Frame 075643/0670 →
SECURITY INTEREST Recorded Oct 11, 2024
From: AMERICAN WOODMARK MANAGEMENT COMPANY
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 068877/0300 →
CHANGE OF NAME Recorded Jan 14, 2022
From: RSI HOME PRODUCTS MANAGEMENT, INC.
To: AMERICAN WOODMARK MANAGEMENT COMPANY
Reel/Frame 058741/0445 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 12, 2022
From: LACHMAN, EDWARD WILLIAM ROY; ANDERSON, BRADLY
To: RSI HOME PRODUCTS MANAGEMENT, INC.
Reel/Frame 058636/0656 →
SECURITY INTEREST Recorded Apr 22, 2021
From: RSI HOME PRODUCTS MANAGEMENT, INC.
To: WELLS FARGO, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 056009/0019 →