IP Library Granted Patent US 11,352,823
Granted Patent B2
US 11,352,823 · App. 17/405,823 · Granted Jun 7, 2022

Integrated stowage bin assembly

Inventors: David Chadwell (Renton, WA); Richard J. LaConte (Black Diamond, WA)
Assignee: Harper Engineering Company
E05F1/1292B64D11/003E05D3/06E05Y2900/50Y10T16/53834
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Quick Facts
Patent No.
US 11,352,823
App. No.
17/405,823
Granted
Jun 7, 2022
Kind
B2
Abstract

A stowage bin assembly includes a bin bucket assembly having a bin bucket which includes at least one sidewall, the at least one sidewall including a notch and the at least one sidewall having an interior surface. The stowage bin assembly also includes at least one hinge assembly. The at least one hinge assembly includes a housing which is received in the notch, the housing having an interior surface, wherein the interior surface of the housing is substantially flush with the interior surface of the at least one sidewall when the housing of the at least one hinge assembly is received in the notch. The stowage bin assembly also includes a stowage bin door pivotably coupled to the bin bucket assembly via the at least one hinge assembly, the stowage bin door moveable between an open position and a closed position. Related components, assemblies, and devices are also provided.

Claims (45)

1. A stowage bin assembly comprising:

a bin bucket assembly including a first bin bucket having an opening and a first sidewall, the first sidewall including a first notch;

a bin door coupled to the bin bucket assembly, the bin door being movable relative to the first bin bucket between an open position and a closed position, the bin door in the closed position covering the opening;

a first hinge assembly having a first housing received in the first notch, the first hinge assembly having an interior cavity; and

a first self-opening mechanism received in the interior cavity of the first hinge assembly, the first self-opening mechanism including:

a rotary crank having a pivot pin aperture and an opening aperture;

a rotary pin received in the opening aperture; and

a biasing device directly coupled to the rotary pin, the biasing device urging the rotary crank about the rotary pin to counteract a gravitational torque applied to the rotary crank by the bin door when the bin door moves between the open position and the closed position.

2. The stowage bin assembly of claim 1 wherein the first housing includes a first interior surface that substantially aligns with a first interior surface of the first sidewall.

3. The stowage bin assembly of claim 1 wherein a center of the pivot pin aperture defines a pivot axis about which the bin door moves between the open position and the closed position.

4. The stowage bin assembly of claim 1 , wherein the first bin bucket comprises a second sidewall having a second notch.

5. The stowage bin assembly of claim 4 wherein the second hinge assembly includes a second housing received in the second notch.

6. The stowage bin assembly of claim 5 wherein the second hinge assembly includes another self-opening mechanism including:

a rotary crank having a pivot pin aperture and an opening aperture;

a rotary pin received in the opening aperture; and

a biasing device directly coupled to the rotary pin.

7. The stowage bin assembly of claim 1 wherein the biasing device includes a first member, a second member directly coupled to the rotary pin, and a spring coupled to the first and second members.

8. The stowage bin assembly of claim 1 comprising a pivot pin received in the pivot pin aperture and wherein the rotary pin is offset from the pivot pin.

9. The stowage bin assembly of claim 1 wherein the self-opening mechanism includes a damper that controls a rate of pivoting movement of the bin door between the open and closed positions.

10. The stowage bin assembly of claim 1 comprising a cover plate positioned adjacent to the first housing.

11. The stowage bin assembly of claim 1 comprising a coupling flange that fixedly couples the bin bucket assembly to the bin door.

12. The stowage bin assembly of claim 11 wherein the coupling flange includes one or more slots, the one or more slots being sized and shaped to allow the stowage bin assembly to be positionally moveable during assembly.

13. An integrated stowage bin assembly, comprising:

a bin bucket assembly including a bin bucket having:

a first sidewall having a first interior surface;

a second sidewall having a second interior surface;

a partition wall positioned between the first sidewall and the second sidewall;

a first notch extending through the first sidewall, the first notch positioned near an upper corner of the first sidewall; and

a second notch extending through the second sidewall, the second notch positioned near an upper corner of the second sidewall;

a stowage bin door pivotably coupled to the first sidewall and the partition wall, the stowage bin door moveable relative to the bin bucket and the partition wall between an open position and a closed position, the stowage bin door in the closed position covering an opening of the bin bucket;

a first hinge assembly including:

a first housing having an interior surface, the interior surface substantially aligned with the first interior surface of the first sidewall; and

a self-opening mechanism including:

a rotary crank having a pivot pin aperture and an opening aperture;

a rotary pin received in the opening aperture; and

a biasing device directly coupled to the rotary pin, the biasing device urging the rotary crank about the rotary pin to counteract a gravitational torque applied to the rotary crank by the stowage bin door when the stowage bin door moves between the open position and the closed position; and

a second hinge assembly coupled to the partition wall.

14. The integrated stowage bin assembly of claim 13 wherein the first hinge assembly includes a first interior cavity that houses one or more of the rotary crank, the rotary pin and the biasing device of the self-opening mechanism.

15. The integrated stowage bin assembly of claim 13 comprising a third hinge assembly, the third hinge assembly including a housing having an interior surface substantially aligned with the second interior surface of the second sidewall.

16. The integrated stowage bin assembly of claim 13 wherein the biasing member includes a first member, a second member directly coupled to the rotary pin, and a spring coupled to the first and second members.

17. The integrated stowage bin assembly of claim 13 comprising a pivot pin received in the pivot pin aperture and wherein the rotary pin is offset from the pivot pin.

18. The integrated stowage bin assembly of claim 13 wherein the self-opening mechanism includes a damper that controls a rate of pivotable movement of the stowage bin door between the open and closed positions.

19. The integrated stowage bin assembly of claim 18 wherein the damper is offset from the biasing device.

20. The integrated stowage bin assembly of claim 13 comprising a coupling flange that fixedly couples the bin bucket assembly to the storage bin door.

21. The integrated stowage bin assembly of claim 20 wherein the coupling flange includes one or more slots, the one or more slots that is sized and shaped to allow the stowage bin assembly to be positionally moveable during assembly.

Assignments (2)
ENTITY CONVERSION Recorded Mar 16, 2026
From: HARPER ENGINEERING COMPANY
To: HARPER ENGINEERING COMPANY LLC
Reel/Frame 075094/0751 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 22, 2025
From: CHADWELL, DAVID; LACONTE, RICHARD J.
To: HARPER ENGINEERING CO.
Reel/Frame 072641/0765 →
Continuity (5)
Continuation 17007703 · Aug 31, 2020
Continuation 16941018 · Jul 28, 2020
Continuation 16036048 · Jul 16, 2018
Provisional Application 62533575 · Jul 17, 2017
Related Publication 20210372183A1 · Dec 2, 2021
Cited By (1)
US 12,326,025